GB2372435A - Multi cyclone vacuum cleaner - Google Patents

Multi cyclone vacuum cleaner Download PDF

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Publication number
GB2372435A
GB2372435A GB0109403A GB0109403A GB2372435A GB 2372435 A GB2372435 A GB 2372435A GB 0109403 A GB0109403 A GB 0109403A GB 0109403 A GB0109403 A GB 0109403A GB 2372435 A GB2372435 A GB 2372435A
Authority
GB
United Kingdom
Prior art keywords
vacuum cleaner
cyclone
cyclones
separating apparatus
cyclonic separating
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
GB0109403A
Other versions
GB0109403D0 (en
Inventor
James Dyson
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Dyson Ltd
Original Assignee
Dyson Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Dyson Ltd filed Critical Dyson Ltd
Publication of GB0109403D0 publication Critical patent/GB0109403D0/en
Priority to US10/468,304 priority Critical patent/US6974488B2/en
Priority to CNB028048822A priority patent/CN1306897C/en
Priority to AT02715586T priority patent/ATE329520T1/en
Priority to CA002438079A priority patent/CA2438079C/en
Priority to ES02715586T priority patent/ES2265492T3/en
Priority to PCT/GB2002/000358 priority patent/WO2002067757A1/en
Priority to AU2002225232A priority patent/AU2002225232B2/en
Priority to DE60212336T priority patent/DE60212336T2/en
Priority to EP02715586A priority patent/EP1361815B1/en
Priority to KR1020037010686A priority patent/KR100866354B1/en
Priority to JP2002567134A priority patent/JP3940082B2/en
Priority to DK02715586T priority patent/DK1361815T3/en
Priority to MYPI20020595A priority patent/MY131872A/en
Publication of GB2372435A publication Critical patent/GB2372435A/en
Priority to HK04103376A priority patent/HK1060270A1/en
Priority to JP2007029750A priority patent/JP4838165B2/en
Priority to JP2009291229A priority patent/JP5319511B2/en
Withdrawn legal-status Critical Current

Links

Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L9/00Details 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
    • A47L9/10Filters; Dust separators; Dust removal; Automatic exchange of filters
    • A47L9/16Arrangement or disposition of cyclones or other devices with centrifugal action
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L9/00Details 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
    • A47L9/10Filters; Dust separators; Dust removal; Automatic exchange of filters
    • A47L9/16Arrangement or disposition of cyclones or other devices with centrifugal action
    • A47L9/1616Multiple arrangement thereof
    • A47L9/1625Multiple arrangement thereof for series flow
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L9/00Details 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
    • A47L9/10Filters; Dust separators; Dust removal; Automatic exchange of filters
    • A47L9/16Arrangement or disposition of cyclones or other devices with centrifugal action
    • A47L9/1616Multiple arrangement thereof
    • A47L9/1641Multiple arrangement thereof for parallel flow
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D45/00Separating dispersed particles from gases or vapours by gravity, inertia, or centrifugal forces
    • B01D45/12Separating dispersed particles from gases or vapours by gravity, inertia, or centrifugal forces by centrifugal forces
    • B01D45/16Separating dispersed particles from gases or vapours by gravity, inertia, or centrifugal forces by centrifugal forces generated by the winding course of the gas stream, the centrifugal forces being generated solely or partly by mechanical means, e.g. fixed swirl vanes
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B04CENTRIFUGAL APPARATUS OR MACHINES FOR CARRYING-OUT PHYSICAL OR CHEMICAL PROCESSES
    • B04CAPPARATUS USING FREE VORTEX FLOW, e.g. CYCLONES
    • B04C5/00Apparatus in which the axial direction of the vortex is reversed
    • B04C5/02Construction of inlets by which the vortex flow is generated, e.g. tangential admission, the fluid flow being forced to follow a downward path by spirally wound bulkheads, or with slightly downwardly-directed tangential admission
    • B04C5/04Tangential inlets
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B04CENTRIFUGAL APPARATUS OR MACHINES FOR CARRYING-OUT PHYSICAL OR CHEMICAL PROCESSES
    • B04CAPPARATUS USING FREE VORTEX FLOW, e.g. CYCLONES
    • B04C5/00Apparatus in which the axial direction of the vortex is reversed
    • B04C5/24Multiple arrangement thereof
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B04CENTRIFUGAL APPARATUS OR MACHINES FOR CARRYING-OUT PHYSICAL OR CHEMICAL PROCESSES
    • B04CAPPARATUS USING FREE VORTEX FLOW, e.g. CYCLONES
    • B04C5/00Apparatus in which the axial direction of the vortex is reversed
    • B04C5/24Multiple arrangement thereof
    • B04C5/26Multiple arrangement thereof for series flow
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B04CENTRIFUGAL APPARATUS OR MACHINES FOR CARRYING-OUT PHYSICAL OR CHEMICAL PROCESSES
    • B04CAPPARATUS USING FREE VORTEX FLOW, e.g. CYCLONES
    • B04C5/00Apparatus in which the axial direction of the vortex is reversed
    • B04C5/24Multiple arrangement thereof
    • B04C5/28Multiple arrangement thereof for parallel flow

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Fluid Mechanics (AREA)
  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Filters For Electric Vacuum Cleaners (AREA)
  • Cyclones (AREA)

Abstract

The invention provides a vacuum cleaner (10) having an external surface and incorporating cyclonic separating apparatus (100) comprising a plurality of cyclones (104) arranged in parallel to one another, characterised in that each cyclone (104) has a tapering body (104a) having an outside wall (104b) and in that at least a pan (104d) of each outside wall (104b) forms part of the external surface of the vacuum cleaner (10).

Description

Vacuum Cleaner The invention relates to a vacuum cleaner. Particularly, the invention relates to a vacuum cleaner incorporating cyclonic separating apparatus.
I Over the last decade or so, the use of cyclonic separating apparatus to separate particles from an airflow in a vacuum cleaner has been developed and introduced to the market. Detailed descriptions of cyclonic separating apparatus for use in vacuum cleaners are given in, inter alia, US 3,425, 192, US 4, 373, 228 and EP 0 042 723. From these and other prior art documents, it can be seen that it is known to provide two cyclone units in series so that the airflow passes sequentially through at least two cyclones. This allows the larger dirt and debris to be extracted from the airflow in the first cyclone, leaving the second cyclone to operate under optimum conditions and so effectively to remove very fine particles in an efficient manner. This type of arrangement has been found to be effective when dealing with airflows in which is entrained a variety of matter having a wide particle size distribution, as is the case in vacuum cleaners.
Some arrangements have been proposed in which the downstream cyclone has been replaced by a plurality of downstream cyclones arranged in parallel. Examples are shown in US 3,425, 192 and JP 52-14775. In both of these arrangements, the downstream cyclones are housed within a casing which surrounds the cyclones so that the volume occupied by the cyclones is not minimised.
It is an object of the present invention to provide cyclonic separating apparatus which occupies a relatively small volume. It is another object of the invention to provide cyclonic separating apparatus suitable for use in vacuum cleaners and capable of ensuring that the size of the vacuum cleaner is as small as possible compared to the prior art. It is a further object of the invention to provide cyclonic separating apparatus capable of mitigating the disadvantages of the prior art.
The invention provides a vacuum cleaner having an external surface and incorporating cyclonic separating apparatus comprising a plurality of cyclones arranged in parallel to one another, characterised in that each cyclone has a tapering body having an outside wall and in that at least a part of each outside wall forms part of the external surface of the vacuum cleaner.
The incorporation of at least part of the outer walls of the tapering bodies of the cyclones into the external surface of the vacuum cleaner allows the overall volume of the vacuum cleaner to be kept to a minimum. A cover which might otherwise have been provided simply to smooth or streamline the external surface of the vacuum cleaner is not required. Also, the visual effect of being able to see the shape of the functional parts of the cyclonic separating apparatus is pleasing to the consumer and thus desirable. This effect can be enhanced by arranging the cyclones equi-angularly about an axis of the cyclonic separating apparatus and/or by providing that each cyclone has an axis which is inclined towards the axis of the cyclonic separating apparatus.
In a preferred embodiment, the cyclonic separating apparatus comprises at least one further cyclone arranged in parallel to the plurality of cyclones, and the or each further cyclone has a tapering body with an outside wall which does not form part of the external surface of the vacuum cleaner. Hence the number of cyclones arranged in parallel with one another is not limited by the physical limitations of the vacuum cleaner in question. Additional cyclones which do not form part of the external surface of the vacuum cleaner can be placed inside a ring of cyclones which do form part of the external surface of the vacuum cleaner.
Other preferred features are set out in the subsidiary claims.
Embodiments of the invention will now be described with reference to the accompanying drawings, wherein: Figures la and lb are front and side views, respectively, of a vacuum cleaner according to the invention; Figures 2a, 2b and 2c are front, side and plan views, respectively, of a first embodiment of cyclonic separating apparatus forming part of the vacuum cleaner of Figures 1 a and Ib ; Figures 3a and 3b are front and sectional side views, respectively, of the cyclonic separating apparatus of Figures 2a, 2b and 2c, Figure 3b being taken along the line III III of Figure 3a ; and Figures 4a, 4b and 4c are perspective, plan and sectional side views, respectively, of a portion of the cyclonic separating apparatus of Figures 2a, 2b and 2c, Figure 4c being taken along line IV-IV of Figure 4b.
Figures la and lb show a domestic vacuum cleaner 10 according to the present invention. The vacuum cleaner 10 comprises an upstanding body 12 at a lower end of which is located a motor casing 14. A cleaner head 16 is mounted in an articulated fashion on the motor casing 14. A suction inlet 18 is provided in the cleaner head 16 and wheels 20 are rotatably mounted on the motor casing 14 to allow the vacuum cleaner 10 to be manoeuvered over a surface to be cleaned.
Cyclonic separating apparatus 100 is mounted on the upstanding body 12 above the motor casing 14. The cyclonic separating apparatus 100 is seated on a generally horizontal surface formed by a filter cover 22. The filter cover 22 is located above the motor casing 14 and provides a cover for a post-motor filter (not shown). The cyclonic separating apparatus 100 is also secured to the upstanding body 12 by means of a clip 24 located at the top of the cyclonic separating apparatus 100. The upstanding body 12 incorporates upstream ducting (not shown) for carrying dirty air to an inlet of the cyclonic separating apparatus 100 and downstream ducting 26 for carrying cleaned air away from the cyclonic separating apparatus 100.
The upstanding body 12 further incorporates a hose and wand assembly 28 which may be retained in the configuration shown in the drawings so as to function as a handle for manoeuvering the vacuum cleaner 10 over a surface to be cleaned. Alternatively, the hose and wand assembly 28 may be released to allow the distal end 28a of the wand to be used in conjunction with a floor tool (not shown) to perform a cleaning function, eg on stairs, upholstery, etc. The structure and operation of the hose and wand assembly 28 is not material to the present invention and will not be described any further here. The general structure and operation of the hose and wand assembly 28 illustrated in Figures la and lb is similar to that described in US patent number Re 32,257 which is incorporated herein by reference. Also, several tools and accessories 30a, 30b, 30c, are releasably mounted on the upstanding body 12 for storage purposes between periods of use.
The precise details of the features of the vacuum cleaner 10 described above are not material to the present invention. The invention is concerned with the details of the cyclonic separation apparatus 100 forming part of the vacuum cleaner 10. In order for the cyclonic separation apparatus 100 to be brought into operation, the motor located in the motor casing 14 is activated so that air is drawn into the vacuum cleaner via either the suction inlet 18 or the distal end 28a of the hose and wand assembly 28. This dirty air (being air having dirt and dust entrained therein) is passed to the cyclonic separation apparatus 100 via the upstream ducting. After the air has passed through the cyclonic separation apparatus 100, it is ducted out of the cyclonic separating apparatus 100 and down the upstanding body 12 to the motor casing 14 via the downstream ducting 26. The cleaned air is used to cool the motor located in the motor casing 14 before being exhausted from the vacuum cleaner 10 via the filter cover 22.
This principle of operation of the vacuum cleaner 10 is known from the prior art. This invention is concerned with the cyclonic separation apparatus 100 which is illustrated in Figures 2a, 2b and 2c in isolation from the vacuum cleaner 10. The cyclonic separation apparatus 100 illustrated in Figure 2 comprises an upstream cyclone unit 101 consisting of a single upstream cyclone 102 and a downstream cyclone unit 103 consisting of a plurality of downstream cyclones 104. The upstream cyclone 102 consists essentially of a cylindrical bin 106 having a closed base 108. The open upper end 110 of the cylindrical bin abuts against a circular upper moulding 112 which defines an upper end of the upstream cyclone 102. An inlet port 114 is provided in the cylindrical bin 106 in order to allow dirty air to be introduced to the interior of the upstream cyclone 102. The inlet port 114 is shaped, positioned and configured to communicate with the upstream ducting which carries dirt-laden air from the cleaner head 16 to the cyclonic separating apparatus 100. A handle 116 and a catch 118 are provided on the cylindrical bin 106 and the upper moulding 112 respectively in order to provide means for releasing the cylindrical bin 106 from the upper moulding 112 when the cylindrical bin 106 requires to be emptied. A seal (not shown) can be provided between the cylindrical bin 106 and the upper moulding 112 if required.
The base 108 of the cylindrical bin can be hingedly connected to the remainder of the cylindrical bin in order to provide further access to the interior of the cylindrical bin 106 for emptying purposes if required. The embodiment illustrated herein will include a mechanism for allowing the base 108 to be hingedly opened in order to allow emptying, but the details of such a mechanism form the subject of a copending application and will not be described any further here.
Seven identical downstream cyclones 104 are provided in the downstream cyclone unit 103. The downstream cyclones 104 are equi-angularly spaced about the central longitudinal axis 150 of the downstream cyclone unit 103, which is coincident with the longitudinal axis of the upstream cyclone unit 101. The arrangement is illustrated in Figure 2c. Each downstream cyclone 104 is frusto-conical in shape with the larger end thereof located lowermost and the smaller end uppermost. Each downstream cyclone 104 has a longitudinal axis 148 (see Figure 3b) which is inclined slightly towards the longitudinal axis 150 of the downstream cyclone unit 103. This feature will be described in more detail below. Also, the outermost point of the lowermost end of each downstream cyclone 104 extends radially further from the longitudinal axis 150 of the downstream cyclone unit 103 than the wall of the cylindrical bin 106. The uppermost ends of the downstream cyclones 104 project inside a collection moulding 120 which extends upwardly from the surfaces of the downstream cyclones 104. The collection moulding 120 supports a handle 122 by means of which the entire cyclonic separation apparatus 100 can be transported. A catch 124 is provided on the handle 122 for the purposes of securing the cyclonic separation apparatus 100 to the upstanding body 12 at the upper end thereof. An outlet port 126 is provided in the upper moulding 112 for conducting cleaned air out of the cyclonic separating apparatus 100. The outlet port 126 is arranged and configured to co-operate with the downstream ducting 26 for carrying the cleaned air to the motor casing 14.
As can be seen from Figures 4a and 4b, each cyclone 104 has a tapering body 104a which is frusto-conical in shape. Each cyclone 104 has an outer wall 104b. A first portion 104c of the outer wall 104b is located inside the collection moulding 120 whilst a further portion 104d is located outside the collection moulding 120. The portion 104d of each outer wall 104b located outside the collection moulding 120 forms part of the external surface of the vacuum cleaner, as can clearly be seen from Figures la and I b.
The collection moulding 120 also carries an actuating lever 128 designed to activate a mechanism for opening the base 108 of the cylindrical bin 106 for emptying purposes as mentioned above.
The internal features of the cyclonic separating apparatus 100 will now be described with reference to Figure 3b. Figure 3a corresponds to Figure 2a and indicates the line III-III on which the section of Figure 3b is taken.
The internal features of the upstream cyclone 102 include an internal wall 132 extending the entire length thereof. The internal space defined by the internal wall 132 communicates with the interior of the collection moulding 120 as will be described below. The purpose of the internal wall 132 is to define a collection space 134 for fine dust. Located inside the internal wall 132 and in the collection space 134 are components for allowing the base 108 to open when the actuating lever 128 is actuated. The precise details and operation of these components is immaterial to the present invention and will not be described any further here.
Mounted externally of the internal wall 132 are four equi-spaced baffles or fins 136 which project radially outwardly from the internal wall 132 towards the cylindrical bin 106. These baffles 136 assist with the deposition of large dirt and dust particles in the collection space 138 defined between the internal wall 132 and the cylindrical bin 106 adjacent the base 108. The particular features of the baffles 136 are described in more detail in WO 00/04816.
Located outwardly of the internal wall 132 in an upper portion of the upstream cyclone 102 is a shroud 140. The shroud extends upwardly from the baffles 136 and, together with the internal wall 132, defines an air passageway 142. The shroud 140 has a perforated portion 144 allowing air to pass from the interior of the upstream cyclone 102 to the air passageway 142. The air passageway 142 communicates with the inlet 146 of each of the downstream cyclones 104. Each inlet 146 is arranged in the manner of a scroll so that air entering each downstream cyclone 104 is forced to follow a helical path within the respective downstream cyclone 104.
As previously mentioned, the longitudinal axis 148 of each downstream cyclone 104 is inclined towards the longitudinal axis 150 of the downstream cyclone unit 103. The upper end of each downstream cyclone 104 is closer to the longitudinal axis 150 than the lower end thereof. In this embodiment, the angle of inclination of the relevant axes 148 is substantially 7. 5 .
The upper ends of the downstream cyclones 104 project inside the collection moulding 120, as previously mentioned. The interior of the collection moulding 120 defines a chamber 152 with which the upper ends of the downstream cyclones 104 communicate. The collection moulding 120 and the surfaces of the downstream cyclones 104 together define an axially extending passageway 154, located between the downstream cyclones 104, which communicates with the collection space 134 defined by the internal wall 132. It is thus possible for dirt and dust which exits the smaller ends of the downstream cyclones 104 to pass from the chamber 152 to the collection space 134 via the passageway 154.
Each downstream cyclone 104 has an air exit in the form of a vortex finder 156. Each vortex finder 156 is located centrally of the lowermost end of the respective downstream cyclone 104, as is the norm. In this embodiment, a centre body 158 is located in each vortex finder 156. Each vortex finder communicates with an annular chamber 160 which, in turn, communicates with the outlet port 126 (see Fig 2c).
Figures 4a, 4b and 4c illustrate the arrangement of the downstream cyclones 104 in greater detail. In particular, this helps to illustrate the configuration of the passageway 154. Figure 4b also helps to illustrate the fact that the side of each of the downstream cyclones 104 closest to the longitudinal axis of the downstream cyclone unit 103 lies substantially parallel thereto.
Figures 4a, 4b and 4c also illustrate the fact that each of the seven downstream cyclones 104 is moulded integrally with the remaining six cyclones 104 in a single part. The moulding illustrated in Figures 4a, 4b and 4c can be and is manufactured as a single part and this has advantages from the manufacturing and assembly point of view. Specifically, the cost of manufacturing this arrangement as a single part is cheaper than the cost of manufacturing the cyclones individually and assembling them together into the required configuration. Furthermore, the risk of errors occurring in the assembly procedure is eliminated by manufacturing the cyclones as a single unit. If the cyclones were manufactured separately and subsequently assembled, the risk of pressure inequalities occurring in the system would be increased and this could affect the separation performance of the cyclone assembly as a whole.
The mode of operation of the apparatus described above is as follows. Dirty air (being air in which dirt and dust is entrained) enters the cyclonic separating apparatus 100 via the inlet port 114. The arrangement of the inlet port 114 is essentially tangential to the wall of the cylindrical bin 106 which causes the incoming air to follow a helical path around the inside of the cylindrical bin 106. Larger dirt and dust particles, along with fluff and other large debris, are deposited in the collection space 138 adjacent the base 108 by virtue of the effect of centrifugal forces acting on the particles, as is well known.
Partially cleaned air travels inwardly and upwardly away from the base 108, exiting the upstream cyclone 102 via the perforated portion 144 of the shroud 140. The partiallycleaned air then moves along the air passageway 142 in which it is divided into seven portions. Each portion enters one of the downstream cyclones 104 via the respective inlet 146. As has been mentioned above, each inlet 146 is a scroll inlet which forces the incoming air to follow a helical path inside the downstream cyclone 104. The tapering shape of the downstream cyclone 104 causes further, intense cyclonic separation to take place inside the downstream cyclone 104 so that very fine dirt and dust particles are separated from the main airflow. The dirt and dust particles exit the uppermost end of the downstream cyclone 104 whilst the cleaned air returns to the lower end of the downstream cyclone 104 along the axis 148 thereof and exits via the vortex finder 156. The cleaned air passes from the vortex finder 156 into the annular chamber 162 and from there to the outlet port 126. Meanwhile, the dirt and dust which has been separated from the airflow in the downstream cyclone 104 falls from the chamber 152 through the passage way 154 to the collection space 134.
When it is desired to empty the cyclonic separating apparatus 100, the base 108 can be hingedly released from the sidewall of the cylindrical bin 106 so that the dirt and debris collected in collection spaces 134 and 138 can be allowed to drop into an appropriate receptacle. As previously explained, the detailed operation of the emptying mechanism does not form part of the present invention and will not be described any further here.
The invention is not limited to the precise details of the embodiments described above. It must be stressed that the features of the vacuum cleaner external to the cyclonic cleaning apparatus are immaterial to the invention. It will be appreciated that there is no particular need for the apparatus to be arranged so that the axes of the cyclone units are vertical and the axes may indeed be inclined to the vertical or even horizontal if desired.
The fact that centrifugal separation is not greatly affected by gravity makes this possible as long as the collecting areas of the cyclone units are arranged to collect the debris without interference to the airflow paths necessary to effect separation. In a further variation to the embodiments described in detail above, the downstream cyclones illustrated above may be arranged so that their respective axes are arranged parallel to one another instead of being inclined towards the axis of the downstream cyclone unit as shown in the drawings. Furthermore, as has been mentioned above, additional downstream cyclones may be provided in parallel to those illustrated in the embodiment described above. This can be achieved by increasing the number of cyclones spaced equi-angularly about the axis of the cyclonic separating apparatus, by adding additional cyclones inside the ring of cyclones already provided, or by a combination of both of these. Other variations and modifications will be apparent to a skilled reader.

Claims (13)

  1. Claims: 1. A vacuum cleaner having an external surface and incorporating cyclonic separating apparatus comprising a plurality of cyclones arranged in parallel to one another, characterised in that each cyclone has a tapering body having an outside wall and in that at least a part of each outside wall forms part of the external surface of the vacuum cleaner.
  2. 2. A vacuum cleaner as claimed in claim 1, wherein the cyclones are equiangularly arranged about an axis of the cyclonic separating apparatus.
  3. 3. A vacuum cleaner as claimed in claim 2, wherein each cyclone has an axis which is inclined towards the axis of the cyclonic separating apparatus.
  4. 4. A vacuum cleaner as claimed in any one of claims 1 to 3, wherein the cyclonic separating apparatus comprises at least one further cyclone arranged in parallel to the plurality of cyclones, the or each further cyclone having a tapering body with an outside wall which does not form part of the external surface of the vacuum cleaner.
  5. 5. A vacuum cleaner as claimed in claim 2 or 3 and claim 4, wherein the or each further cyclone is arranged closer to the axis of the cyclonic separating apparatus than those which are equi-angularly arranged about the axis.
  6. 6. A vacuum cleaner as claimed in any one of the preceding claims, wherein each tapering body is frusto-conical in shape.
  7. 7. A vacuum cleaner as claimed in any one of the preceding claims, wherein all of the cyclones are substantially the same size and shape.
  8. 8. A vacuum cleaner as claimed in any one of the preceding claims, wherein each cyclone has a larger lower end and a smaller upper end.
  9. 9. A vacuum cleaner as claimed in claim 8, wherein the smaller end of each cyclone opens into a common collection area.
  10. 10. A vacuum cleaner as claimed in any one of the preceding claims, wherein the cyclonic separating apparatus comprises an upstream cyclone having an outer wall, at least a part of which forms part of the external surface of the vacuum cleaner.
  11. 11. A vacuum cleaner as claimed in claim 10, wherein the outer wall of the upstream cyclone is substantially cylindrical in shape.
  12. 12. A vacuum cleaner as claimed in claim 11, wherein the plurality of cyclones arranged in parallel to one another are located wholly outside the outer wall of the upstream cyclone.
  13. 13. A vacuum cleaner substantially as hereinbefore described with reference to the accompanying drawings.
GB0109403A 2001-02-24 2001-04-12 Multi cyclone vacuum cleaner Withdrawn GB2372435A (en)

Priority Applications (16)

Application Number Priority Date Filing Date Title
DK02715586T DK1361815T3 (en) 2001-02-24 2002-01-28 Vacuum cleaner
EP02715586A EP1361815B1 (en) 2001-02-24 2002-01-28 Vacuum cleaner
KR1020037010686A KR100866354B1 (en) 2001-02-24 2002-01-28 Vacuum cleaner
AT02715586T ATE329520T1 (en) 2001-02-24 2002-01-28 VACUUM CLEANER
CA002438079A CA2438079C (en) 2001-02-24 2002-01-28 Vacuum cleaner
ES02715586T ES2265492T3 (en) 2001-02-24 2002-01-28 A VACUUM CLEANER.
PCT/GB2002/000358 WO2002067757A1 (en) 2001-02-24 2002-01-28 Vacuum cleaner
AU2002225232A AU2002225232B2 (en) 2001-02-24 2002-01-28 Vacuum cleaner
DE60212336T DE60212336T2 (en) 2001-02-24 2002-01-28 VACUUM CLEANER
US10/468,304 US6974488B2 (en) 2001-02-24 2002-01-28 Vacuum cleaner
CNB028048822A CN1306897C (en) 2001-02-24 2002-01-28 Vacuum cleaner
JP2002567134A JP3940082B2 (en) 2001-02-24 2002-01-28 Vacuum cleaner
MYPI20020595A MY131872A (en) 2001-02-24 2002-02-21 Vacuum cleaner
HK04103376A HK1060270A1 (en) 2001-02-24 2004-05-13 Vacuum cleaner
JP2007029750A JP4838165B2 (en) 2001-02-24 2007-02-08 Vacuum cleaner
JP2009291229A JP5319511B2 (en) 2001-02-24 2009-12-22 Vacuum cleaner

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
GBGB0104668.9A GB0104668D0 (en) 2001-02-24 2001-02-24 Cyclonic separating apparatus

Publications (2)

Publication Number Publication Date
GB0109403D0 GB0109403D0 (en) 2001-05-30
GB2372435A true GB2372435A (en) 2002-08-28

Family

ID=9909491

Family Applications (5)

Application Number Title Priority Date Filing Date
GBGB0104668.9A Ceased GB0104668D0 (en) 2001-02-24 2001-02-24 Cyclonic separating apparatus
GB0109403A Withdrawn GB2372435A (en) 2001-02-24 2001-04-12 Multi cyclone vacuum cleaner
GB0109395A Withdrawn GB2372469A (en) 2001-02-24 2001-04-12 Cyclonic separating apparatus
GB0109405A Withdrawn GB2372470A (en) 2001-02-24 2001-04-12 Multiple series inverted cyclones, cyclonic separator apparatus
GB0109391A Withdrawn GB2372468A (en) 2001-02-24 2001-04-12 Cyclonic separating apparatus

Family Applications Before (1)

Application Number Title Priority Date Filing Date
GBGB0104668.9A Ceased GB0104668D0 (en) 2001-02-24 2001-02-24 Cyclonic separating apparatus

Family Applications After (3)

Application Number Title Priority Date Filing Date
GB0109395A Withdrawn GB2372469A (en) 2001-02-24 2001-04-12 Cyclonic separating apparatus
GB0109405A Withdrawn GB2372470A (en) 2001-02-24 2001-04-12 Multiple series inverted cyclones, cyclonic separator apparatus
GB0109391A Withdrawn GB2372468A (en) 2001-02-24 2001-04-12 Cyclonic separating apparatus

Country Status (4)

Country Link
JP (2) JP4965477B2 (en)
KR (1) KR100866354B1 (en)
GB (5) GB0104668D0 (en)
MY (2) MY131872A (en)

Cited By (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2399780A (en) * 2003-03-28 2004-09-29 Dyson Ltd Arrangement of cyclones for noise damping
WO2007021042A1 (en) * 2005-08-17 2007-02-22 Lg Electronics Inc. Dust collecting device for vacuum cleaner
WO2007021045A1 (en) * 2005-08-17 2007-02-22 Lg Electronics Inc. Dust collecting device for vacuum cleaner
WO2007021043A1 (en) * 2005-08-17 2007-02-22 Lg Electronics Inc. Dust collecting device for vacuum cleaner
CN1316934C (en) * 2005-03-01 2007-05-23 泰怡凯电器(苏州)有限公司 Whirlwind barrel for dust collector
US7273506B2 (en) 2004-05-12 2007-09-25 Samsung Gwangju Electronics Co., Ltd. Cyclone dust collecting apparatus and vacuum cleaner using the same
AU2006200986B2 (en) * 2005-06-14 2007-11-29 Samsung Electronics Co., Ltd. Multi-cyclone dust separating apparatus
CN100352394C (en) * 2004-02-11 2007-12-05 三星光州电子株式会社 Cyclone dust-collecting apparatus
US7686858B2 (en) 2005-10-10 2010-03-30 Samsung Gwangju Electronics Co., Ltd. Cyclone dust collection apparatus
US7749293B2 (en) 2006-03-10 2010-07-06 G.B.D. Corp. Vacuum cleaner with a removable cyclone array
RU2546464C2 (en) * 2009-11-16 2015-04-10 Дайсон Текнолоджи Лимитед Surface cleaner

Families Citing this family (25)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100474083B1 (en) * 2003-06-26 2005-03-14 삼성광주전자 주식회사 A vacuum cleaner for many purposes
KR101073503B1 (en) 2004-09-04 2011-10-17 삼성전자주식회사 Vacuum cleaner
KR100575319B1 (en) * 2004-12-27 2006-05-02 엘지전자 주식회사 Dust collecting unit of vacuum cleaner
KR100607442B1 (en) 2005-03-29 2006-08-02 삼성광주전자 주식회사 Multi-cyclone-dust-collecting apparatus and vacuum cleaner using the same
GB2424606C (en) * 2005-03-29 2010-12-01 Samsung Kwangju Electronics Co Cyclonic dust-separating apparatus.
KR100594587B1 (en) 2005-03-29 2006-06-30 삼성광주전자 주식회사 A multi cyclone dust-separating apparatus
KR100622550B1 (en) 2005-03-29 2006-09-13 삼성광주전자 주식회사 Cyclone dust collecting device for vacuum cleaner and vacuum cleaner having the same
GB2424604B (en) * 2005-03-29 2007-03-14 Samsung Kwangju Electronics Co Multi-cyclone dust separator
KR100594584B1 (en) * 2005-04-22 2006-06-30 삼성광주전자 주식회사 Filter assembly and cyclone dust collecting apparatus having the same
GB2426474A (en) * 2005-05-27 2006-11-29 Dyson Technology Ltd Cyclonic separating apparatus
GB2426473B (en) * 2005-05-27 2008-11-05 Dyson Technology Ltd Cyclonic separating apparatus
GB2426726B (en) 2005-05-27 2008-11-05 Dyson Technology Ltd Cyclonic separating apparatus
DE102005039059B3 (en) * 2005-08-18 2006-09-28 Haldex Brake Products Gmbh Replaceable air-cleaning cartridge for compressed air units in cars, contains a treatment- and/or filter-material and a cyclone separator system comprising several cyclones connected in parallel and-or in series
KR100667874B1 (en) 2005-10-10 2007-01-16 삼성광주전자 주식회사 Multi cyclone dust collecting apparatus
US20070234687A1 (en) * 2006-04-06 2007-10-11 Suzhou Kingclean Floorcare Co., Ltd. Second-stage separator device for a vacuum cleaner
CN101147663B (en) * 2006-09-21 2010-09-08 苏州金莱克家用电器有限公司 Vacuum cleaner
GB2478155B (en) * 2010-02-26 2014-05-14 Dyson Technology Ltd A vortex finder plate for a cyclonic separating apparatus
WO2012140452A1 (en) * 2011-04-15 2012-10-18 Dyson Technology Limited Cyclonic separator comprising an outlet duct extending between two adjacent cyclone bodies
US10299646B2 (en) 2016-05-03 2019-05-28 Lg Electronics Inc. Vacuum cleaner
US10271702B2 (en) 2016-05-03 2019-04-30 Lg Electronics Inc. Vacuum cleaner
US10299645B2 (en) 2016-05-03 2019-05-28 Lg Electronics Inc. Vacuum cleaner
US10299647B2 (en) 2016-05-03 2019-05-28 Lg Electronics Inc. Vacuum cleaner
KR101852435B1 (en) 2016-05-03 2018-04-26 엘지전자 주식회사 Vacuum cleaner
KR101822944B1 (en) 2016-05-03 2018-01-29 엘지전자 주식회사 Vacuum cleaner
DE202019105533U1 (en) 2019-10-08 2019-11-05 Chia-Chuan CHANG Dust collector

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0018197A1 (en) * 1979-04-19 1980-10-29 James Dyson Vacuum cleaning appliances

Family Cites Families (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE615004C (en) * 1933-12-31 1935-06-24 Hartmann A G Maschf Centrifugal dust collector
US3425192A (en) 1966-12-12 1969-02-04 Mitchell Co John E Vacuum cleaning system
US3738090A (en) * 1970-09-29 1973-06-12 R Kilian Particle separation system
JPS5214775U (en) * 1975-07-18 1977-02-02
US4219409A (en) * 1977-12-14 1980-08-26 Liller Delbert I Inlet line deflector and equalizer means for a classifying cyclone used for washing and method of washing using deflectors and equalizers
HU179869B (en) * 1980-05-29 1982-12-28 Malom Es Suetoipari Kutatoin Cyclone with double separation
US4344538A (en) * 1980-06-11 1982-08-17 Kabushiki Kaisha Kobe Seiko Sho Cyclone separator with influent guide blade
JPS5953861U (en) * 1982-10-04 1984-04-09 三菱重工業株式会社 Dust collection device
GB2199267A (en) * 1986-12-23 1988-07-06 James Dyson A gas separating apparatus
US5518695A (en) * 1994-11-10 1996-05-21 Uop Vented riser with compact multiple cyclone arrangement
JPH08322769A (en) * 1995-06-01 1996-12-10 Sharp Corp Electric vacuum cleaner
DE19630472C2 (en) * 1996-07-27 2002-10-17 Neuman & Esser Anlagenbau Gmbh Cyclone, especially cyclone separators and cyclone classifiers
GB2319738A (en) * 1996-11-29 1998-06-03 Notetry Ltd Apparatus for separating particles from a fluid flow

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0018197A1 (en) * 1979-04-19 1980-10-29 James Dyson Vacuum cleaning appliances

Cited By (18)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2399780A (en) * 2003-03-28 2004-09-29 Dyson Ltd Arrangement of cyclones for noise damping
CN100352394C (en) * 2004-02-11 2007-12-05 三星光州电子株式会社 Cyclone dust-collecting apparatus
US7273506B2 (en) 2004-05-12 2007-09-25 Samsung Gwangju Electronics Co., Ltd. Cyclone dust collecting apparatus and vacuum cleaner using the same
CN1316934C (en) * 2005-03-01 2007-05-23 泰怡凯电器(苏州)有限公司 Whirlwind barrel for dust collector
AU2006200986B2 (en) * 2005-06-14 2007-11-29 Samsung Electronics Co., Ltd. Multi-cyclone dust separating apparatus
KR100930897B1 (en) 2005-08-17 2009-12-10 엘지전자 주식회사 Dust collector of vacuum cleaner
WO2007021043A1 (en) * 2005-08-17 2007-02-22 Lg Electronics Inc. Dust collecting device for vacuum cleaner
WO2007021045A1 (en) * 2005-08-17 2007-02-22 Lg Electronics Inc. Dust collecting device for vacuum cleaner
WO2007021042A1 (en) * 2005-08-17 2007-02-22 Lg Electronics Inc. Dust collecting device for vacuum cleaner
KR100934668B1 (en) 2005-08-17 2009-12-31 엘지전자 주식회사 Dust collector of vacuum cleaner
US7753976B2 (en) 2005-08-17 2010-07-13 Lg Electronics Inc. Dust collecting device for vacuum cleaner
US7892305B2 (en) 2005-08-17 2011-02-22 Lg Electronics Inc. Dust collecting device for vacuum cleaner
US7935159B2 (en) 2005-08-17 2011-05-03 Lg Electronics Inc. Dust collecting device for vacuum cleaner
CN101277636B (en) * 2005-08-17 2012-03-14 Lg电子株式会社 Dust-collecting device for vacuum cleaner
US7686858B2 (en) 2005-10-10 2010-03-30 Samsung Gwangju Electronics Co., Ltd. Cyclone dust collection apparatus
US7749293B2 (en) 2006-03-10 2010-07-06 G.B.D. Corp. Vacuum cleaner with a removable cyclone array
US7931717B2 (en) 2006-03-10 2011-04-26 G.B.D. Corp. Vacuum cleaner with a removable cyclone array
RU2546464C2 (en) * 2009-11-16 2015-04-10 Дайсон Текнолоджи Лимитед Surface cleaner

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GB0109391D0 (en) 2001-05-30
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GB2372470A (en) 2002-08-28
KR100866354B1 (en) 2008-10-31

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