Apparatus for Compensating Pressure Surges
20220280004 ยท 2022-09-08
Inventors
Cpc classification
A47L7/0095
HUMAN NECESSITIES
F16L55/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A47L9/0072
HUMAN NECESSITIES
International classification
A47L9/00
HUMAN NECESSITIES
Abstract
An apparatus for a vacuum cleaner for compensating air pressure surges, where a first air flow is flowable in a first flow direction through the apparatus and a second air flow is flowable in a second flow direction through the apparatus, includes a main body having a first cross-sectional area of flow and a flow resistance element. A free end of the flow resistance element projects from the main body and produces a second cross-sectional area of flow. The first cross-sectional area of flow is larger than the second cross-sectional area of flow such that the second air flow flowable in the second flow direction is reduced.
Claims
1.-4. (canceled)
5. An apparatus for a vacuum cleaner for compensating air pressure surges, wherein a first air flow is flowable in a first flow direction through the apparatus and a second air flow is flowable in a second flow direction through the apparatus, comprising: a main body having a first cross-sectional area of flow; and a flow resistance element, wherein a free end of the flow resistance element projects from the main body and produces a second cross-sectional area of flow and wherein the first cross-sectional area of flow is larger than the second cross-sectional area of flow such that the second air flow flowable in the second flow direction is reduced.
6. The apparatus as claimed in claim 5, wherein the main body is configured in a form of a cylinder and wherein the flow resistance element is configured in a form of a funnel such that a stagnation volume for at least some of the second air flow is formed between an outer lateral surface of the flow resistance element and an inner lateral surface of the main body.
7. A vacuum cleaner hose, comprising: the apparatus as claimed in claim 5.
8. A vacuum cleaner, comprising: the apparatus as claimed in claim 5.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0014]
[0015]
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
DETAILED DESCRIPTION OF THE DRAWINGS
[0023]
[0024] Here, the vacuum cleaner 1 substantially comprises a suction head 3, a storage container 4 and an intake device 5.
[0025] As can be seen from
[0026] The turbine 6 serves to produce a vacuum, by virtue of which a first air flow LS1 flows into the interior of the vacuum cleaner 1. By means of the first air flow LS1, dust particles and dirt particles can be sucked up and conveyed into the storage container 4 for storage.
[0027] The filter 6 serves to filter dust and dirt particles out of a first air flow HS drawn in by the vacuum cleaner 1, and thus, inter alia, protects the turbine 8 from dust and contamination.
[0028] The filter clearing device 7 serves to clean the filter 6 by a brief reversal of the first air flow LS1 from a first flow direction HS into a second air flow LS2 along a second flow direction NS. The sudden reversal of the air flow produces a pressure surge, which dislodges the dust and dirt accumulated on or in the filter 6 in the direction of the storage container 4. As a result, the filter 6 once more becomes free and functional. By means of the filter clearing device 7, the second air flow LS2 along the second flow direction NS is then readjusted to the first air flow LS1 along the first flow direction HS. The functioning and, in particular, the adjustment of the filter clearing device 7 to the first or second air flow LS1, LS2 is controlled by a control device 9.
[0029] The storage container 4 is configured substantially as a container with a holding volume. Four wheels 10 are provided on the underside of the storage container 4 configured as a container to ensure mobility of the vacuum cleaner 1. Only two wheels 10 are shown in the figures.
[0030] The intake device 5 substantially comprises a vacuum cleaner hose 11, a fastening element 12 and a nozzle. The nozzle may be, for example, a floor nozzle. The nozzle is not illustrated in the figures.
[0031] The fastening element 12 is configured substantially as a cylindrical tube and serves as an interface or connection for the vacuum cleaner hose 11 to the storage container 4.
[0032]
[0033] The main body 13 according to the first embodiment has a substantially cylindrical, tubular shape with a first end 13a and a second end 13b. The main body 13 has a first cross-sectional area of flow A. As can be seen, in particular, from
[0034] According to a first embodiment, the flow resistance element 14 is configured substantially as a funnel. The flow resistance element 14 configured as a funnel comprises a first end 14a and a second end 14b. By means of the first end 14a, the flow resistance element 14 configured as a funnel is positioned on an inner lateral surface 16 of the main body 13. The second end 14b of the flow resistance element 14 projects into the interior of the main body 13, with the result that a circular opening 17 of the flow resistance element 14 configured as a funnel forms a second cross-sectional area of flow B. As shown in
[0035] The flow resistance element 14 is positioned and aligned in the interior of the main body 13 in such a way that a stagnation volume SV for at least some of the second air flow LS2 is formed between an outer lateral surface 18 of the flow resistance element 14 configured as a funnel and an inner lateral surface 16 of the main body 13. The stagnation volume may also be referred to as a stagnation space or dead space.
[0036] As illustrated in
[0037]
[0038] As shown in
[0039] As already mentioned above,
[0040]
[0041]
[0042] According to another embodiment of the apparatus 2 for compensating air pressure surges, the apparatus 2 is of modular construction or has a modular construction (cf. exploded illustration in
[0043] To form the apparatus 2, the first end 14a of the first flow resistance element 14 is positioned on the first hose portion 11a. The second end 14b of the first flow resistance element 14 is, in turn, mounted on the first end 19a of the first connecting element 19. The first end 114a of the second flow resistance element 114 is positioned in the interior of the first flow resistance element 14. The second end 19b of the first connecting element 19 is secured to the second end 114b of the second flow resistance element 114. The first end 119a of the second connecting element 119 is likewise positioned at the second end 114b of the second flow resistance element 114. Finally, the second end 119b of the second connecting element 119 is secured to the first end 15a of the attachment element 15. The second end 15b of the attachment element 15 is secured to the second hose portion 11b of the vacuum cleaner hose 11. In this case, the fastenings are configured in such a way that they can be released again, thus enabling the individual components of the apparatus 2 to be released from one another again. As a result, the apparatus 2 can be of modular configuration, and the number of flow resistance elements 14, 114 for the apparatus 2 is a matter of free choice.
[0044] The first end 14a of the first flow resistance element 14 and the first end 114a of the second flow resistance element 114 may also be referred to as the free end.
[0045]
[0046]
LIST OF REFERENCE CHARACTERS
[0047] 1 Vacuum cleaner [0048] 2 Apparatus for a vacuum cleaner for compensating air pressure surges [0049] 3 Suction head [0050] 4 Storage container [0051] 5 Intake device [0052] 6 Filter [0053] 7 Filter clearing device [0054] 8 Turbine [0055] 9 Control device [0056] 10 Wheels [0057] 11 Vacuum cleaner hose [0058] 11a First hose portion [0059] 11b Second hose portion [0060] 12 Fastening element [0061] 13 Main body [0062] 13a First end of the main body [0063] 13b Second end of the main body [0064] First flow resistance element [0065] 14a First end of the first flow resistance element [0066] 14b Second end of the first flow resistance element [0067] 114 Second flow resistance element [0068] 114a First end of the second flow resistance element [0069] 114b Second end of the second flow resistance element [0070] 15 Attachment element [0071] 15a First end of the attachment element [0072] 15b Second end of the attachment element [0073] 16 Inner lateral surface of the main body [0074] 17 Opening in the flow resistance element [0075] 18 Lateral surface of the flow resistance element [0076] 19 First connecting element [0077] 19a First end of the first connecting element [0078] 19b Second end of the first connecting element [0079] 119 Second connecting element [0080] 119a First end of the second connecting element [0081] 119b Second end of the second connecting element [0082] LS1 First air flow [0083] LS2 Second air flow [0084] HS First flow direction [0085] NS Second flow direction [0086] SV Stagnation volume [0087] A First cross-sectional area of flow [0088] B Second cross-sectional area of flow [0089] C Cross-sectional area of flow of the first hose portion [0090] D Cross-sectional area of flow of the second hose portion