NZ719546B2 - Surface cleaning apparatus configurable in a storage position - Google Patents
Surface cleaning apparatus configurable in a storage position Download PDFInfo
- Publication number
- NZ719546B2 NZ719546B2 NZ719546A NZ71954615A NZ719546B2 NZ 719546 B2 NZ719546 B2 NZ 719546B2 NZ 719546 A NZ719546 A NZ 719546A NZ 71954615 A NZ71954615 A NZ 71954615A NZ 719546 B2 NZ719546 B2 NZ 719546B2
- Authority
- NZ
- New Zealand
- Prior art keywords
- surface cleaning
- cleaning unit
- air inlet
- support structure
- cleaning
- Prior art date
Links
- 238000004140 cleaning Methods 0.000 title claims abstract description 234
- 230000005484 gravity Effects 0.000 claims abstract description 19
- 230000007246 mechanism Effects 0.000 claims description 11
- 238000004891 communication Methods 0.000 claims description 9
- 238000000034 method Methods 0.000 description 8
- 230000008878 coupling Effects 0.000 description 6
- 238000010168 coupling process Methods 0.000 description 6
- 238000005859 coupling reaction Methods 0.000 description 6
- 230000008569 process Effects 0.000 description 6
- 238000013461 design Methods 0.000 description 2
- 239000000463 material Substances 0.000 description 2
- 239000002245 particle Substances 0.000 description 2
- 238000006243 chemical reaction Methods 0.000 description 1
- 230000000368 destabilizing effect Effects 0.000 description 1
- 238000004146 energy storage Methods 0.000 description 1
- 239000012530 fluid Substances 0.000 description 1
- 238000003780 insertion Methods 0.000 description 1
- 230000037431 insertion Effects 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 230000001681 protective effect Effects 0.000 description 1
- 230000000717 retained effect Effects 0.000 description 1
- 238000012546 transfer Methods 0.000 description 1
Classifications
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L5/00—Structural features of suction cleaners
- A47L5/12—Structural features of suction cleaners with power-driven air-pumps or air-compressors, e.g. driven by motor vehicle engine vacuum
- A47L5/22—Structural features of suction cleaners with power-driven air-pumps or air-compressors, e.g. driven by motor vehicle engine vacuum with rotary fans
- A47L5/225—Convertible suction cleaners, i.e. convertible between different types thereof, e.g. from upright suction cleaners to sledge-type suction cleaners
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L5/00—Structural features of suction cleaners
- A47L5/12—Structural features of suction cleaners with power-driven air-pumps or air-compressors, e.g. driven by motor vehicle engine vacuum
- A47L5/22—Structural features of suction cleaners with power-driven air-pumps or air-compressors, e.g. driven by motor vehicle engine vacuum with rotary fans
- A47L5/24—Hand-supported suction cleaners
- A47L5/26—Hand-supported suction cleaners with driven dust-loosening tools
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L9/00—Details or accessories of suction cleaners, e.g. mechanical means for controlling the suction or for effecting pulsating action; Storing devices specially adapted to suction cleaners or parts thereof; Carrying-vehicles specially adapted for suction cleaners
- A47L9/009—Carrying-vehicles; Arrangements of trollies or wheels; Means for avoiding mechanical obstacles
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L9/00—Details or accessories of suction cleaners, e.g. mechanical means for controlling the suction or for effecting pulsating action; Storing devices specially adapted to suction cleaners or parts thereof; Carrying-vehicles specially adapted for suction cleaners
- A47L9/10—Filters; Dust separators; Dust removal; Automatic exchange of filters
- A47L9/106—Dust removal
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L9/00—Details or accessories of suction cleaners, e.g. mechanical means for controlling the suction or for effecting pulsating action; Storing devices specially adapted to suction cleaners or parts thereof; Carrying-vehicles specially adapted for suction cleaners
- A47L9/10—Filters; Dust separators; Dust removal; Automatic exchange of filters
- A47L9/16—Arrangement or disposition of cyclones or other devices with centrifugal action
- A47L9/1683—Dust collecting chambers; Dust collecting receptacles
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L9/00—Details or accessories of suction cleaners, e.g. mechanical means for controlling the suction or for effecting pulsating action; Storing devices specially adapted to suction cleaners or parts thereof; Carrying-vehicles specially adapted for suction cleaners
- A47L9/24—Hoses or pipes; Hose or pipe couplings
- A47L9/242—Hose or pipe couplings
- A47L9/246—Hose or pipe couplings with electrical connectors
Abstract
surface cleaning apparatus may include a surface cleaning head having a dirty air inlet and a support structure moveably mounted to the surface cleaning head. A cleaning unit having an air flow path extending from a cleaning unit air inlet to a clean air outlet, a suction motor and a cyclone chamber provided in the airflow path, and a dirt collection chamber may be configured so that the cleaning unit air inlet is detachably connectable to the support structure to fluidly connect the dirty air inlet. The apparatus can be configured in a use configuration, in which the cleaning unit air inlet is connected to the support structure, and a storage configuration in which the cleaning unit air inlet is disconnected from the dirty air inlet and the cleaning unit is mounted on at least one of the support structure and the surface cleaning head for altering the location of the center of gravity to improve the stability of surface cleaning apparatus to remain upright when in the storage configuration. er provided in the airflow path, and a dirt collection chamber may be configured so that the cleaning unit air inlet is detachably connectable to the support structure to fluidly connect the dirty air inlet. The apparatus can be configured in a use configuration, in which the cleaning unit air inlet is connected to the support structure, and a storage configuration in which the cleaning unit air inlet is disconnected from the dirty air inlet and the cleaning unit is mounted on at least one of the support structure and the surface cleaning head for altering the location of the center of gravity to improve the stability of surface cleaning apparatus to remain upright when in the storage configuration.
Description
(12) d patent specificaon (19) NZ (11) 719546 (13) B2
(47) Publicaon date: 2021.12.24
(54) SURFACE NG APPARATUS CONFIGURABLE IN A STORAGE POSITION
(51) Internaonal Patent Classificaon(s):
A47L 5/24 A47L 5/26 A47L 9/00 A47L 9/10 A47L 9/16 A47L 9/24 A47L 5/22
(22) Filing date: (73) Owner(s):
2015.01.21 SharkNinja ing LLC
(23) Complete specificaon filing date: (74) Contact:
2015.01.21 Pizzeys Patent and Trade Mark Attorneys P
ty Ltd
(30) Internaonal Priority Data:
US 14/086,475 2013.11.21 (72) Inventor(s):
GIDWELL, opher
(86) Internaonal Applicaon No.:
(87) Internaonal Publicaon number:
WO/2015/077802
(57) Abstract:
A surface cleaning apparatus may include a surface cleaning head having a dirty air inlet and a
support structure ly d to the surface cleaning head. A cleaning unit having an
air flow path extending from a cleaning unit air inlet to a clean air outlet, a sucon motor and a
cyclone chamber provided in the airflow path, and a dirt collecon chamber may be configured
so that the cleaning unit air inlet is detachably connectable to the support structure to fluidly
connect the dirty air inlet. The apparatus can be configured in a use configuraon, in which the
cleaning unit air inlet is connected to the support structure, and a storage configuraon in which
the cleaning unit air inlet is disconnected from the dirty air inlet and the cleaning unit is mounted
on at least one of the support structure and the surface cleaning head for altering the locaon of
the center of gravity to e the stability of surface cleaning tus to remain upright when
in the storage configuraon.
NZ 719546 B2
TITLE: SURFACE CLEANING APPARATUS CONFEGURABLE IN A STORAGE POSITION
FIELD
The present subject matter of the teachings described herein reiates
generatly to a surface cleaning apparatus. in a preferred embodiment, the surface cleaning
apparatus is configurable in a use position and a e on.
INTRODUCTION
Various types of surface cleaning apparatus are known. Surface cleaning
apparatus include vacuum rs. Currently, a vacuum cleaner typically uses at least
one cyclonic cleaning stage. More recently. cyclonic hand vacuum cleaners have been
deveioped. See for example, US 7,931,7t6 and US 2010/0229328. Each of these
discloses a hand vacuum cleaner which includes a cyclonic cleaning stage. US 7,931,716
ses a cyclonic cleaning stage utilizing two ic cieaning stages wherein both
cyclonic stages have cyclone axis that extends verticaily. US 2010/0229328 discloses a
cyctonic hand vacuum cleaner wherein the cyclone axis extends horizontally and is co-axiai
with the suction motor. in addition, hand carriable (e.g., pod style) cyclonic vacuum
rs are also known (see US 8,346,201).
SUMMARY
This summary is intended to introduce the reader to the more detailed
description that foilows and not to limit or define any claimed or as yet unclaimed ion.
One or more inventions may reside in any combination or sub—combination of the elements
or process steps disclosed in any part of this document including its ciaims and figures.
{0004] According to one broad aspect of the teachings described herein, a surface
ng apparatus may include a surface cieaning head having a dirty air iniet and a
support structure moveably mounted to the surface cleaning head. The t ure
may be moveabie n an inclined position and an upright position retative to the
surface cieaning head. The apparatus may include a cleaning unit having an air ftow path
extending from a cleaning unit air inlet to a clean air outlet, a suction motor and a cycione
chamber provided in the airfiow path, and a dirt collection r. The cleaning unit air
inlet may be detachabiy connectabie to the t structure to fluidly connect the dirty air
inlet and the cleaning unit air iniet. The surface cleaning apparatus may be configurable in
a use configuration, in which the cleaning unit air inlet is connected to the support structure
and is in air flow communication with the dirty air inlet, and a storage configuration in which
the cieaning unit air inlet is disconnected from the dirty air iniet and the cieaning unit is
mounted on at least one at the t structure and the surface cleaning head.
A storage mount may be provided on the support structure and the cieaning
unit may be mounted to the storage mount when in the storage configuration.
The cieaning unit may be spaced from the surface cieaning head when in the
storage configuration.
[000?] The storage mount may be provided toward the first end of the rigid suction
‘10 conduit.
[0008} The cleaning unit may include a bottom face configured to rest upon a surface
and a mounting member engageabie with the storage mount and the mounting member
may be provided on the bottom face.
The dirt coliection chamber may include at least one openable wait for
emptying the dirt collection chamber, and the cieaning unit may include a mounting
member able with the storage mount and the mounting member may be provided
on and may be moveabie with the openabie wall.
The ng unit may inciude a mounting member engageabie with the
support structure when in the storage position and the mounting member may at ieast
partially underiie the cyclone chamber and the dirt coilection chamber.
The cieaning unit may include a mounting member engageable with the
e mount and the mounting member and e mount may be ured to retain
the cleaning unit on the storage mount solely due to the influence of gravity. Optionaily, the
mounting membei may be removable from the storage mount in the absence of
disengaging a g mechanism.
{0012] The ng unit may also include a front end, back end and a mounting
member abie with the support structure when in the e position and the
mounting member may be positioned forward of the suction motor.
The storage mount may e an upwardly opening hook member and the
cieaning unit may inciude a mounting member having a slot to receive the hook.
The storage mount may be positioned on a front e of the support
structure and when surface cleaning apparatus is in the storage configuration the mass of
the cleaning unit may urge the support structure toward the upright position.
The surface cieaning apparatus may include a first alignment member on the
surface cleaning head and a corresponding second ent member on the support
structure, wherein when the support structure is in the upright position relative rotation
between the surface cteaning head and the support structure is prevented by engagement
between the first and second alignment members.
The support structure may be self-supporting and generally verticaliy
extending when the surface cieaning apparatus is in the storage configuration and the
cleaning unit is mounted to the support structure.
The support structure may include an te rigid n conduit having a
first end and that is connectable to the cieaning head and a second end that is spaced
apart from the first end.
The cieaning unit air inlet may be connectahie in air flow ication to
the second end of the rigid suction conduit.
The s cleaning unit air inlet may be directly connectable in air flow
communication to the second end of the rigid suction conduit.
The cleaning unit may inciude a centre of gravity and when the cleaning unit
is in the storage configuration the centre of gravity may be oned above the surface
cleaning head.
When the cieaning unit is in the storage configuration the suction motor may
be at a higher elevation than the mounting .
DRAWiNGS
The drawings inciuded herewith are for rating s examples of
articles, methods, and apparatuses of the teaching of the present specification and are not
intended to limit the scope of what is taught in any way.
.. 3 _
in the drawings:
Figure 1 is a perspective view of an embodiment of a surface cieaning
apparatus;
Figure 2 is a partiatly ed View of the surface cleaning tus of
Figure 1;
Figure 3 is a side View of the surface cieaning apparatus of Figure 1 in an
inclined position;
Figure 4 is a side view of the surface cleaning apparatus of Figure 1 in an
upright position;
[0028] Figure 5 is a side view of the surface cleaning apparatus of Figure 1 in a
storage configuration;
Figure 6 is enlarged view of a portion of Figure 5, with a portion of the surface
cleaning apparatus shown in section;
Figure 7 is a side view of a portion of the surface cleaning apparatus of Figure
1;
Figure 8 is ctive View of a n of the e cleaning apparatus of
Figure 1;
Figure 9 is a section view taken along fine 9-9 in Figure 8;
Figure 10 is the section view of Figure 9 with an and wait in an open position;
[0034] Figure 11 is a side view of another portion of the surface cleaning apparatus
of Figure “E; and
Figure i2 is a side view of another portion of the surface cleaning apparatus
of Figure 1.
DETAILED DESCRIPTION
[0038] s apparatuses or processes wili be described below to provide an
exampie of an embodiment of each claimed ion. No embodiment described below
limits any ciaimed invention and any d invention may cover processes or
apparatuses that differ from those described below. The ciairned inventions are not iimited
_ 4 _
to apparatuses or processes having all of the es of any one apparatus or process
described below or to features common to multiple or all of the apparatuses described
below. it is possible that an apparatus or process described below is not an embodiment of
any claimed invention. Any invention disclosed in an apparatus or process described below
that is not claimed in this document may be the subject matter of another protective
instrument, for example, a continuing patent application, and the applicants, inventors or
owners do not intend to abandon, disclaim or dedicate to the public any such invention by
its disclosure in this document.
Referring to Figure 1, an embodiment of a surface cleaning apparatus 100 is
1O shown. in the embodiment iliustrated, the surface cleaning apparatus is a hand carriable or
handnheld vacuum cleaner. it wilt be appreciated that surface cleaning apparatus couid be
carried by a hand of a user, a shoulder strap or the iike and could be in the form of a pod or
other portabie surface cleaning apparatus. The surface ng apparatus couid be a
vacuum cleaner, an extractor or the iike. All such surface cleaning apparatuses are
referred to herein as a hand carriable surface cleaning apparatus. Optionally, surface
cleaning apparatuses could be biy mounted on a base so as to form, for example,
an upright vacuum cleaner, a canister vacuum r, a stick vac, a wet-dry vacuum
cleaner and the iike. Power can be ed to the surface cleaning apparatus by an
electrical cord that can be connected to a standard wali electrical outlet. Alternatively, or in
2O addition, the power source for the surface cleaning apparatus can be an onboard energy
storage device, including, for example, one or more batteries.
in the configuration iliustrated in Figure ‘l, the surface cleaning apparatus 100
includes a cleaning unit 102, a surface ng head 104 for roiling along a e to be
cleaned and support structure that extends between the cleaning unit 102 and the surface
ng head 104. In the illustrated embodiment, the support structure includes a rigid air
flow conduit in the form of a wand 106. Aiternatively, the t structure may have any
other le configuration and may, for example, include a rigid structural member in
combination with a separate, optionally nonrigid, air t, such as a hose.
[0039} Preferably, the t structure is y coupled to the surface ng
head 104. This may allow the t structure and cleaning unit 102 mounted thereto to
be moved into a variety of positions reiative to the cleaning head 104. For example, in the
illustrated ment, the wand 106 is lly coupied to the surface cleaning head 104
(and optionaily may aiso be rotationaily coupled) to the surface cleaning head 104 such
that it can be pivoted between an t position (Figure 4) and an inciined position
(Figure 3). in both of these urations the cleaning unit 102 is connected in air fiow
communication with the surface cieaning head 104, and can be considered to be in a use
configuration as the an air flow path is maintained between the surface cleaning head 104
and the ng unit 102. The illustrated embodiment of a surface cleaning apparatus 100
can be used to clean a floor or other surface in a manner analogous to conventionai
upright-styie vacuum cieaners.
The wand 106 may be any type of conduit that can provide air flow
communication between the surface cleaning unit 102 and the surface cleaning head 104.
in the illustrated embodiment the wand 106 is also rigid such that it can transmit driving
forces between the cleaning unit 102 and the surface cleaning head 104. The wand 106
i5 may also be configured so that it has sufficient strength to support the weight of the
cieaning unit 102, for exampie when the support structure is in the upright position (Figure
4). Optionaily, onai ning or support s may be provided on the support
structure to help support the wand 106 and/or to help transfer the driving force from the
cleaning unit 102 to the cleaning head 104.
[0041] Referring to Figures 2 and ti, in the iliustrated e, the wand 106 has an
upper end 108 and a iower end 110 spaced apart from each other atong a wand axis 112
by a wand length 114. The wand length 114 may be any suitable length that provides a
desired on of the cleaning unit 102 while the surface cleaning apparatus 100 is in use,
and may be, for example between about 40cm and about 120cm, between about 700m and
about 100cm and/or between about 750m and 90cm. For example, the length 114 may
seiected so that the cleaning unit 102 is approximateiy waist height for a user when in the
use configuration and/or white in the inciineci position (Figure 1). The upper end 108
inciudes an upper coupiing portion 116 that is configured to detachably connect to the
cleaning unit 102. The lower end 110 includes a tower coupling portion 118 that is
configured to ably connected to the surface cieaning head 104 (Figure 2).
Alternatively, the lower end 110 of the wand 106 need not be detachable from the surface
cleaning head 104.
[0042} The surface cieaning head may be any le type of cleaning head, and
may include a y of different components including, for example, a rotating agitator
brush, lights, and other ents. Referring the s 1 and 12, in the illustrated
exampie the surface ng head 104 es a body portion 120 having an outer
housing 122 and a dirty air inlet 124. The body portion 120 is supported by a pair of
support wheeis 126 that are rotatabie about a rotation axis 128. The wheels 126 may be of
any design and may be provided at any suitabie location on the surface cleaning head 104.
1O in the illustrated example, the wheels 126 are provided toward the rear portion 130 of the
surface cleaning head 104. The wheels 126 may be the only wheels on the cieaning head
104, or alternatively one or more additional wheels or rollers may be provided toward the
front portion 132 of the cieaning head 104. In the t application, the terms front!
forward and rear/backward are used with reference to directions in which the e
cleaning apparatus 100 is likely to be moved by a user across a surface. Referring to
Figures 1 and 12, the front portion 132 is illustrated toward the left side of Figure 12, and
the forward direction is understood to generally to the left as illustrated. For example, in the
illustrated embodiment the dirty air inlet 124 is understood to be forward of the wheels 126
and on axis 128.
[0043] A support post 134 is provided toward the rear of the surface cleaning head
104 and is pivotaily coupied to the body 120 (using any suitable pivotabie connection, such
as an axel or pin joint) so that it can pivot about a pivot axis 136. The pivot axis 136 may
be co—axial with the rotational axis 128 of the wheels 126, or alternatively may be spaced
apart from, but preferabiy generaiiy parallel to, the rotational axis 128. In the rated
embodiment, the rotational axis 128 and the pivot axis 336 are (so-linear.
The support post 134 is configured to be detachably coupled to the tower
coupling portion 118 on the lower end 110 of the wand 106. Preferably, as illustrated, the
tower end 110 of the wand 106 can be fastened to the support post 134 so that it can
remain attached when the surface cleaning head 104 is pushed ionivard and pulied
backward via the wand 106. in the illustrated exampie, the support post 134 includes a
WO 77802
releasable latch 140 that can engage a notch 142 (Figure 11) on the lower coupling portion
118 on the wand 106.
Referring to Figure 7, in the iliustrated embodiment, the ng unit 102
includes a handle 144, a dirty air iniet $46, a clean air outiet 148, an air flow path extending
therebetween and an air treatment member 150 in the airflow path. in the embodiment
shown, the dirty air inlet 146 is the inlet end 152 (see also Figure 8) of a connector 154.
Optionally, the inlet end 152 can be used to directly clean a surface. Alternatively, the inlet
end 152 can be connected to the downstream and of any suitable hose, conduit, cleaning
tooi or accessory, including, including the wand 106 as illustrated. The cleaning unit 102
‘10 also s a cleaning unit length 145. The cleaning unit length 145 may be any suitable
, and may be between about 20cm and about 500m, or may be less than 20cm or
greater than 500m. Optionally, as illustrated, the cieaning unit length 145 may be less than
the wand length 114, and preferably may be between about 10% and about 70%, between
about 30% and about 60% and/or between about 40% and about 50% of the wand length
114.
The connector 154 may be any suitable connector that is operable to connect
to, and preferably detachably connect to, a hose, cleaning tool, other accessory and/or the
wand 106 as illustrated. in addition to providing an air flow connection, in the illustrated
example the connector also includes an optional ical connection which may allow
cleaning tools and accessories that are coupled to the connector to be powered by the
e cleaning apparatus. For e, the surface cleaning unit 102 can be used to
provide both power and suction to a e cleaning head l04, or other suitable tool. in
the illustrated embodiment, the connector 152 es an electrical coupling in the form of
a first connector 154 and a corresponding second connector 156 (Figure 11) is provided on
the upper coupling portion 116 of the wand 106. Another electricai coupling is provided
between the lower end of the wand and the surface cleaning head.
[0047} From the dirty air inlet 146, the air flow path s downstream through the
air treatment member 150. The air treatment member 150 may be any suitable member
that can treat the air in a desired manner, including, for example, ng dirt particles
and debris from the air. in the illustrated example, the air treatment member 150 is
provided in the form of a cyclone bin assembly 150. Alternatively, the air ent
member can comprise a bag, a filter or other air treating means.
{0048] in the illustrated embodiment, the cyclone bin assembly 150 forms part of the
main body 160 of the cleaning unit 102. A suction motor 162 (see Figure 9) is mounted
within a motor housing portion 164 of the main body 160 and is in fluid communication with
the cyclone bin assembly 150. In this uration, the section motor 162 is downstream
from the cyclone bin assembly 150 and the clean air outlet 148 is downstream from the
suction motor 162.
The following is a ption of a cyclone and a cyclone bin assembly 150
that may be used by itself in any surface ng apparatus or in any combination or sub—
combination with any other feature or features disclosed herein.
Referring to Figure 9, in the illustrated embodiment, the cyclone bin assembly
150 includes a cyclone chamber 166 and a dirt collection chamber 168. The cyclone
chamber 166 and the dirt collection chamber 168 may be of any suitable configuration.
{0051] lo the illustrated embodiment the dirt collection chamber 168 is positioned
outside or exterior to and ntially below the cyclone r 166. Preferably, a least
a portion, if not all, of the dirt collection chamber 168 is below the cyclone chamber 166.
The dirt collection chamber 168 comprises a sidewall 170, a first end wall 172 and an
opposed second end wall 174. The dirt collection chamber extends along a dirt collection
axis 176.
The dirt collection chamber 168 may be ble by any means known in
the art and is preferably openable concurrently with the e r 166. ably,
the second dirt collection r end wall 174 is openable to allow the dirt collection
chamber 168 to be emptied. Preferably, the end wall 174 may be moveably connected to
the cleaning unit 102, and more preferably may be pivotally connected to the dirt collection
chamber sidewall 170, for e using hinge 178 as illustrated. in this configuration, the
second dirt collection chamber end wall 174‘functions as an openable door to empty the
dirt collection chamber 168 and can be opened as shown in Figure 10 to empty dirt and
debris from the interior of the dirt collection chamber 168. The second dirt collection
chamber end wall 174 can be retained in the closed position by any means known in the
_ g _
art, such as by a releasable latch 180. in the illustrated e, the hinge 178 is provided
on a back edge of the end wall 174 and the latch 180 is provided at the front of the end wall
174 so that the door swings backwardly when opened. Alternatively, the hinge and latch
may be in different positions, and the door may open in a different direction or manner.
Alternatively, instead of being moveably connected, the end wall 174 may be able or
removable.
in the embodiment shown, the cyclone chamber t66 extends along a cyclone
axis 182 and is bounded by a sidewall 184. The cyclone chamber 166 es an air inlet
186 and an air outlet 188 and two dirt outlets 190 in communication with the dirt collection
1O chamber 168. The air inlet 186, air outlet 188 and dirt outlets 190 may be of any design
known in the art.
in the example illustrated the cyclone bin assembly 150 and the cyclone
r 166 therein are arranged in a generally vertical, inverted cyclone ration. in
this configuration, the air inlet 186 and the air outlet 188 are provided toward the upper end
of the cyclone chamber l66. atively, the cyclone bin assembly and cyclone chamber
can be provided in another orientation, including, for example, as a horizontal cyclone or in
other configurations, 62.9., with the dirt collection chamber beside the cyclone r
andlor with the inlet and outlets at differing positions.
in alternative embodiments, the e chamber may include only a single
dirt outlet, or more than two dirt outlets.
A deflector or arrestor plate 192 may be positioned at the lower end of the
cyclone chamber 166, at the interface between the cyclone chamber 166 and the dirt
collection chamber 168. The arrestor plate 192 is preferably sized to cover substantially all
of the lower end of the cyclone chamber 166, and to abut the lower end of the cyclone
sidewall 184 to form a lower end wall of the cyclone r 166. When the arrestor plate
192 abuts the lower ends of the sidewall 184 it helps define the gaps or slots that form the
dirt s 190. In this configuration, the dirt outlet slots 190, are bounded on three sides
by the cyclone chamber sidewall 184 and on a fourth side by the arrestor plate 19?...
Alternatively, the dirt outlet slots 190 may be entirely bounded by the sidewall 184 and may
be spaced apart from the arrestor plate 190.
big.
In the illustrated embodiment, the arrestor plate 192 forms the bottom of the
cyclone chamber 166 and may be of any suitabie configuration. Optionally the arrestor
plate 192 may be fixed in its position adjacent the li 184, or may be moveabie or
openabie. Providing an openabie arrestor piate 192 may help faciiitate emptying of the
cyclone chamber 166. Optionally, the arrestor piate may be openable rently with
another n of the surface cleaning apparatus, including, for exampie, the dirt collection
chamber.
in the illustrated embodiment, the or plate 192 is mounted to and
supported spaced from the openable wall 174 by a support member 194. The support
member 194 may be of any suitable configuration and may be formed from any le
material that is capable of ting the arrestor plate 192 and ing stresses exerted
on the arrestor plate by the air flow in the e chamber 166 or dirt particles exiting the
cyclone chamber 166. in this configuration, the arrestor plate 192 is openable concurrently
with the end wall 174 so that g the end wall simultaneously opens the dirt collection
chamber 168 and the cyclone chamber 166. Alternatively, the arrestor plate 192 may be
mounted to the sidewail 184 (or other portion of the e cleaning apparatus) and need
not open in unison with the end wall 174, or at all.
ing to Figure 3, when the wand 106 is in the inclined position, a user
can carry the vacuum cieaner via the handle 144 and most of the weight of the cleaning
unit 102 is supported by the user. Optionaily, in some instances, some of the weight of the
cleaning unit 100 may be transferred to the surface cleaning head 104 via the wand 106,
However, the surface cleaning head 104 and wand 106 are not configured to independently
support the ng unit 102 in the inciined position (Figure 3) t assistance from the
user. In the inclined position, the centre of gravity 196 of the cleaning unit 102 is located
above and behind the surface cleaning head 104, and specifically behind a plane 198
containing the rotational axis 128 and the pivot axis $61 if a user were to release the
cleaning unit 102 in this configuration, it is likely that the surface cleaning unit 102 would fall
over, probabiy in a generaily rearward direction.
When not in use, the surface cleaning apparatus 100 may be stored.
Referring to Figure 4, when the surface cleaning apparatus 100 is stored the wand 106
2015/012287
may be pivoted to its upright position. However, in the illustrated configuration, it the
cieaning unit 102 remains attached to the upper end 108 of the wand 106 when the wand
106 is in the upright position, the e oieaning apparatus 100 may be unstable, and
may tend to tail over when unattended or jostied. For example, in the illustrated example,
when the wand t06 is in the upright position and the cieaning unit 102 is stili attached, the
centre of gravity 198 of the cieaning unit 102 is spaced above the axes 128, 136 by a
height 200 and is offset behind the axes 128, 136 by an offset distance 202.
in this configuration, the centre of gravity 198 is offset behind the surface
cleaning head 104, and does not overlie the surface cteaning head 104. With the cleaning
unit 102 in this position the weight of the ng unit 102 exerts a rotational moment force
204 about the axes 128, 136 that urges the e cleaning head 104 and wand 106 in a
lly rearward direction. if the magnitude of the moment force 204 is sufficiently iarge
it may cause the surface cieaning apparatus 100 to fail over backwards. Even if the
moment force 204 is not sufficiently iarge to cause the surface cleaning apparatus 100 to
t5 fail over on its own, it is a generaiiy destabilizing force which may make the e
cieaning apparatus 100 more prone to fat! over when subjected to an external force whiie
stored (such as being contacted by a child, a pet, a user or another ). A surface
cieaning apparatus that falls over while ] unattended may cause damage to the
cleaning unit, other portions of the surface cieaning apparatus, surrounding objects and/or
may pose a safety hazard for people and pets that are in ity to the surface cieaning
apparatus.
[0062} To help improve stability of the surface cleaning apparatus while stored/ not in
use, the surface ng apparatus 100 may be configured so that the cieaning unit air
iniet 146 is disconnected from the dirty air inlet 124 (Le. detached from the upper end of the
wand 106) and the cleaning unit 102 is mounted on the support structure at a different
location or the surface cleaning head. For exampte, the cieaning unit 102 can be detached
from the upper end 108 of the wand 106 and ed to the support structure at a tower
eievation and/or a more forward position (as compared to when the cieaning unit air iniet
146 is connected to the upper end of the wand 106). This may aiter the iocation of the
centre of gravity 196 and may affect the ity of the surface cleaning apparatus.
Alternatively, the cleaning unit 102 may be mounted directly to the surface cleaning head
104.
The cleaning unit 102 may be mounted to the support structure using any
suitable mechanism. For example, in the illustrated example the support structure is
provided with a e mount that is configured to receive and support the cleaning unit
102 when the surface cleaning apparatus is not in use. The storage mount may be any
suitabte , and ably may be provided on a lower portion of the wand 106 (eg.
below the midpoint 115 ot the wand 106, see Figure 5), a portion of the surface cleaning
head 104 or any other suitable location, which can support the ng unit 102 in a
storage uration in which it is spaced apart from the upper end 108 of the wand 106.
Preferably, when in the storage configuration the cieaning unit 102 is positioned at a lower
elevation than the upper and “£08 of the wand 106. Optionaliy, the surface cleaning
tus 100 can be configured so that when the cleaning unit 102 is in the storage
configuration the centre of gravity 196 of the cleaning unit 102 is ed ly above,
or preferably forward of the axes 128, 136, and overlies the body 120 of the e
cleaning head 104. For example, in the iilustrated example the storage mount is provided
on a front portion of the wand 106.
Positioning the cleaning unit 102 forward of one or both of the axes 128, 136
may cause the cleaning unit 102 to exert a generaliy forwardly acting moment force 206
(Figure 5) on the wand 106 and surface ng head 104, and may iocate the centre of
gravity 196 of the cleaning unit 102 ly above the surface cleaning head 104, in such
a position, the forward moment force 206 may tend to urge the wand 106 to pivot about its
pivot axis 136 in a forward direction. Such forces may be balanced by reaction forces 208
between the surface ng head 104 and the underlying surface which may tend to
prevent the surface cieaning apparatus 100 from falling fonrvard. This may increase the
stability of the surface cleaning apparatus 100 when in the storage configuration
Preferabty, when in the storage configuration and the cleaning unit 102 is mounted on the
support structure, the support structure is seifusupporting and generaily vertically extending.
ally, the same connector that is used to couple the surface cleaning
unit to the upper end of the wand (eg. connector 154) may function as a mounting member
that can be used to attach the cleaning unit to the storage mount. This may allow the
cleaning unit 102 to e only one attachment connector. Alternatively, the cleaning unit
102 may include a mounting member that is separate from the connector 154. Providing a
separate mounting member may ailow the mounting member to have a different
configuration, on and/or functionality than the connector 154. For example, the
mounting member may be configured as a gravity mount that is free from latches or other
types of retaining mechanisms. This may aiiow a user to place the cleaning unit 102 on the
storage mount, and retrieve it from the e mount using a single hand, and without the
need to disengage any looks or iatches.
{0066] Referring to Figure 4, in the illustrated embodiment the surface cieaning
apparatus 100 is ed with a e mount in the form of mount 210 (see also Figure 1
and 11) in the illustrated embodiment, the mount 210 is ed on a front surface of the
wand 106, and is positioned toward the lower end 110 of the wand 106. Alternatively, it
may be in a different location, and optionally may be provided on the surface cleaning head
instead of the wand.
[0067} ing to Figure 11, in the iilustrated embodiment the mount 210 includes
a body portion 212 that includes a generally upwardly extending protrusion member 214
and a base surface 216 ing between the protrusion member 214 and the front
surface of the wand 106.
[0068} The protrusion member 214 extends along a protrusion axis 218. in the
iiiustrated embodiment the sion axis 218 is generaily parallel to the wand axis 112
and is spaced apart from the wand axis 112 by a forward offset distance 220. The
protrusion member 214 may be made of any suitabie material, and in the e
illustrated is formed from plastic that is integraily molded with the body portion 212.
{0069] In the iilustrated embodiment, the protrusion member 214 has a generaliy
rectangular axial cross~sectional area and inciudes spaced apart front and rear surfaces
222 and 224 and a generally upwardly facing end surface 226 (see also Figure 6). The
rear surface 224 of the protrusion is spaced apart from the front e of the wand 106 by
a distance 228 to provide a gap to receive a portion of the cleaning unit 102. The distance
228 may be any suitable distance, based on the configuration of the cleaning unit 102, and
,14_
may be, for example, between about 3mm and about 50mm or more. ably, the
distance 228 is n about 10mm and about 25mm.
The base surface 236 may be of any suitable configuration, and in the
illustrated example is lly planar and ties in piane 230 (Figure 11). in the illustrated
configuration plane 230 is generaily orthogonal to the wand axis 112 and the protrusion
axis 218, but may be oriented differentiy in other embodiments.
To support the cleaning unit 102 on the mount 2t0, the cleaning unit is
provided with a complimentary ng member that is configured to engage the mount
210, The mounting member may be any suitabie mechanism or member that is compatibie
with the storage mount provided on the support ure or the surface cleaning head.
[0072} in the iilustrated embodiment, the mounting member is provided in the form of
a recess 232 (Figures 6 and 8) on the cieaning unit 102 that is sized to slidihgly receive the
protrusion member 214 and is provided on the bottom surface of the dirt coilection chamber
end wail 174. in the illustrated embodiment, the dirt collection chamber end wall 174
functions as an openable door, and the recess 232 is moveabie relative to the rest of the
cleaning unit 102, with the le door 174. Alternatively, the recess 232 may be
provided on another n of the cleaning unit 102, and need not be moveabie.
In the illustrated embodiment, the bottom of the dirt collection chamber end
wall t74 also functions as supporting surface that is generaliy planar and is configured to
support the cieaning unit 102 if it is pieced on a counter or other surface. Preferably, to
help preserve the supporting surface function, the recess 232 is formed in the interior of the
dii‘t collection r sidewall 174, and does not extend beyond or proud of the bottom
surface. This may help the cleaning unit t02 to sit evenly on a surface.
In this configuration, the recess 232 is an internal recess that is bounded by
opposed front and rear walls 234 and 236, a pair of spaced apart sidewalis 238 and an
endwali 240 at a closed end of the recess 232 (this orientation relates to when the cleaning
unit is mounted on the mount, is merely for ease of nce and is not intended to be
limiting or directed to a particular orientation). The recess 232 also has an open end 242
that is spaced apart from the l 240 and sized for receiving the protrusion 214. A
spacing between the front and rear walls 234 and 236 defines a recess width 244.
in the illustrated e, the recess 232 is integrally molded within the dirt
collection chamber end wall 174. Aiternatively, the recess may be provided by one or more
separate members that are affixed to the cieaning unit.
Referring to Figure 6, when the protrusion 214 is received within the recess.
the rear wail 236 of the recess bears against the rear surface 224 of the protrusion 214 and
the i 240 of the sion bears against the end surface 226 of the protrusion 216.
Because, in the iilustrated configuration, the recess width 244 is greater than a protrusion
width 246 (Figure 11), front wail 234 of the recess 232 remains spaced apart from the front
surface 222 of the protrusion 214.
{0077] Providing a recess width 244 that is greater than the protrusion width 246
may heip tate easy, interference free insertion and removal of the protrusion 214
relative to the recess 232. For example, in the iltustrated example, the recess width 244 is
between about 250% and about 300% of the protrusion width 246, and in other exampies
may be n about 125% and about 500% or more of the protrusion width 246.
Aiternatively, the recess width 244 may be selected to be generally equai to or oniy slightly
bigger than the protrusion width 246, for example n about 100% and about 150% of
the protrusion width 246. This may provide a snug engagement and/or a slight interference
fit between the sion 214 and the recess 232.
[0078} in the iilustrated exampie, the dirt coliection chamber end wait 174 also
includes a cavity 248 (Figure 8) that is external to the recess 232, but in communication
with the open end 242 of the recess 232. The cavity 248 is generaily bounded by a
sidewail 250 or rim and is sized to receive the protrusion member 214. The cavity 250 may
provide onal ciearance for receiving the protrusion member 214 and may help
faciiitate ment of the protrusion 214 within the recess 232. in this configuration, to
position in the cleaning unit 102 on the mount 210, the cavity 248 can be positioned
adjacent the protrusion 214, and the cleaning unit 102 can be shifted iateraily (i.e.
rearwardiy as shown) so that the protrusion 214 is positioned within the cavity 248 and is
aligned with the open end 242 of the recess 232. The cleaning unit 102 can then be moved
axiaiiy downward (in the direction of the protrusion axis 218) to insert the protrusion 214
within the recess 232. To remove the cieaning unit 102 it may be pulied generaily
-15,
upwardly, or generally upwardly and forwardly (see arrows 254 and 256 respectively) to
disengage the protrusion 214 from the recess 232, and separate the cleaning unit 102 from
the mount 210. Alternatively, instead of a generally vertical or axial movement, the mount
may be configured to receive the mounting member in a generally horizontal or lateral
direction.
ring the recess 232 to generally vertically receive the protrusion 214
may allow a user to manipulate the cleaning unit 102 via its handle 144 during the mounting
operation, and may allow the cleaning unit 102 to be mounted! dismounted in lly the
same orientation that it is in when mounted to the upper end 110 of the wand 106.
Providing generally vertical or upright engagement n the protrusion 214 and the
recess 232 may also facilitate the cleaning unit 102 being held on the mount 210 and in the
storage configuration by gravity, and without the need for additional s or retaining
mechanisms.
in the illustrated embodiment, when the ng unit 102 is in the storage
configuration (Figure 5) the n motor 162 is disposed at a higher elevation than the
protrusion 214 and the recess 232. In this configuration the centre of gravity 196 of the
cleaning unit is also located above the mount 210. in this arrangement the weight of the
cleaning unit 102 may tend to urge the cleaning unit 102 into engagement with the mount
210 (Le. urge recess endwall 240 against with the protrusion end e 226), as opposed
to urging the cleaning unit 102 away from the mount 210.
Also, in the illustrated ment, when the cleaning unit 102 is in the
storage configuration the recess 23?. and the protrusion 214 are generally aligned with and
on the same ion as the cyclone chamber 166 and the dirt collection chamber 168
(along the dirt collection chamber axis 176), and the dirt collection r 168 is axially
intermediate the recess 232 and the cyclone chamber 166. Further, in the illustrated
embodiment, when the cleaning unit 102 is in the storage configuration the suction motor
162 is positioned between the handle 144 and the support structure and es a portion
of the cyclone chamber 166 and the dirt collection chamber 168.
Referring still to Figure 5, in the illustrated example when the cleaning unit
102 is mounted to the wand 106 the entirety of the ng unit 102 is disposed below the
2015/012287
midpoint 115 of the wand l06, and the centre of gravity 196 is fonrvard of the support
structure and above the cleaning head 104.
Optionally, portions of the front wall 234, rear wait 236 and sidewalls 238
adjacent the open end 242 of the recess 232 may be curved or flared in a generally
outwardiy direction to define guiding surfaces. The guiding surfaces may help direct the
sion 214 into the recess 232, and may help tate mounting of the cleaning unit
102 in the storage configuration.
Optionally, a locking mechanism, such as a latch or other le member,
may be provided to secure the cleaning unit in the storage configuration. The locking
mechanism may act directly on the mount (Le. a mechanism to lock the protrusion within
the recess) or may act between other components, such as between the wand and housing
of the ng unit.
Alternatively, instead of a positively locking mechanism, the mount may be
include a tetaining mechanism, such as a detent that may help hold the cleaning unit in the
storage configuration, without positively locking it in place or preventing removal by a user.
While illustrated with a sion 214 on the wand 106 and a recess 232 on
the cleaning unit 102, the location of these components may be switched. For example,
instead of including a protrusion, the mount may include a recess or slot provided on the
wand or surface cleaning head, and the cleaning unit may include a protrusion that can be
inserted into the recess.
[0087} Optionally, instead of being provided on the wand, the mount member may be
provided on the surface cteaning head, and optionally may be provided on the support post,
as illustrated using m lines in Figure 12.
Alten‘iativeiy, instead of providing the mounting member, Le. the recess 232 in
the illustrated embodiment, on the bottom of the dirt tion chamber and wait 174, it
may be provided on any other portion of the cleaning unit 102. For example, the mounting
member may be provided on a non—moveable portion of the cieanlng unit, such as, for
e, the sidewalt t72 of the dirt collection r 166 and the motor housing.
w13.
What has been described above has been intended to be itiustrative of the
invention and nonelimittng and it will be understood by persons skilled in the art that other
variants and modifications may be made without departing from the scope of the invention
as defined in the ciaims appended hereto, The scope of the ciatms should not be limited by
the preferred ments and examples, but should be given the st interpretation
consistent with the description as a whote.
“19..
Claims (19)
1. A surface cleaning apparatus comprising: (a) a surface cleaning head having a dirty air inlet; (b) a support structure moveably mounted to the e cleaning head and moveable between an inclined position and an upright position relative to the surface cleaning head; (c) a ng unit having an air flow path extending from a cleaning unit air inlet to a clean air outlet, a suction motor and a e chamber provided in the airflow path, and a dirt collection chamber, the cleaning unit air inlet detachably connectable to the support ure to fluidly connect the dirty air inlet and the cleaning unit air inlet; (d) the surface ng apparatus is configurable in (i) a use configuration, in which the cleaning unit air inlet is connected to the support structure and is in air flow communication with the dirty air inlet, and (ii) a storage configuration in which the cleaning unit air inlet is disconnected from the dirty air inlet and the cleaning unit is mounted on at least one of the support structure and the surface cleaning head.
2. The e cleaning apparatus of claim 1, further comprising a storage mount provided on the at least one of the support structure and surface ng head and the cleaning unit is mounted to the storage mount when in the storage configuration.
3. The surface cleaning apparatus of claim 2, n the cleaning unit is spaced from the surface cleaning head when in the storage configuration.
4. The surface ng tus of claim 2, n the cleaning unit comprises a bottom face configured to rest upon a surface and a mounting member engageable with the storage mount and the mounting member is provided on the bottom face.
5. The surface cleaning apparatus of claim 2, wherein the dirt collection chamber comprises at least one openable wall for emptying the dirt collection chamber, and the cleaning unit comprises a mounting member engageable with the storage mount and the mounting member is ed on and is moveable with the openable wall.
6. The surface cleaning apparatus of claim 2, wherein the cleaning unit comprises a mounting member engageable with the t ure when in the storage configuration and the mounting member at least partially underlies the cyclone chamber and the dirt collection chamber.
7. The surface cleaning apparatus of claim 2, wherein the cleaning unit comprises a mounting member engageable with the storage mount and the mounting member and storage mount are configured to retain the cleaning unit on the storage mount solely due to the influence of gravity.
8. The surface cleaning apparatus of claim 7, wherein the mounting member is removable from the storage mount in the absence of disengaging a locking mechanism.
9. The surface cleaning apparatus of claim 2, wherein the cleaning unit further comprises a front end, back end and a mounting member engageable with the support structure when in a storage position and the mounting member is positioned d of the suction motor.
10. The surface cleaning apparatus of claim 2, wherein the storage mount comprises an upwardly opening hook member and the cleaning unit comprises a mounting member comprising a slot to receive the hook.
11. The surface cleaning apparatus of claim 2, wherein the e mount is positioned on a front e of the support structure and when surface cleaning tus is in the storage configuration the mass of the cleaning unit urges the support ure toward the upright position.
12. The surface cleaning apparatus of claim 11, further comprising a first alignment member on the surface cleaning head and a corresponding second alignment member on the support structure, wherein when the support structure is in the upright position relative rotation between the surface cleaning head and the support structure is prevented by engagement between the first and second alignment members.
13. The surface cleaning apparatus of claim 1, wherein the t structure is selfsupporting and generally vertically extending when the surface cleaning apparatus is in the storage uration and the ng unit is mounted to the support structure.
14. The surface cleaning apparatus of claim 2, wherein the support structure comprises an elongate rigid suction conduit having a first end and that is connectable to the cleaning head and a second end that is spaced apart from the first end.
15. The surface cleaning apparatus of claim 14, wherein the storage mount is ed toward the first end of the rigid suction t.
16. The surface cleaning apparatus of claim 14, wherein the ng unit air inlet is connectable in air flow communication to the second end of the rigid suction conduit.
17. The surface cleaning apparatus of claim 16, wherein the cleaning unit air inlet is directly connectable in air flow ication to the second end of the rigid n conduit.
18. The surface cleaning apparatus of claim 4, wherein the cleaning unit comprises a centre of gravity and when the cleaning unit is in the storage configuration the centre of gravity is positioned above the surface cleaning head.
19. The surface cleaning tus of claim 18, wherein when the cleaning unit is in the storage configuration the n motor is at a higher elevation than the mounting member.
Applications Claiming Priority (3)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US14/086,475 US9516979B2 (en) | 2013-11-21 | 2013-11-21 | Surface cleaning apparatus configurable in a storage position |
| US14/086,475 | 2013-11-21 | ||
| PCT/US2015/012287 WO2015077802A1 (en) | 2013-11-21 | 2015-01-21 | Surface cleaning apparatus configurable in a storage position |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| NZ719546A NZ719546A (en) | 2021-08-27 |
| NZ719546B2 true NZ719546B2 (en) | 2021-11-30 |
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ID=
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