HOSE COUPLING SYSTEM FOR A VACUUM CLEANER
20210015328 · 2021-01-21
Inventors
- Sonya WÖRZ (Penzing, DE)
- Hans RUPPRECHT (Muenchen, DE)
- Xaver Hanslmeier (Mauerstetten, DE)
- Helmut Specht (Bad Woerishofen, DE)
- John Van TAACK-TRAKRANEN (Muenchen, DE)
Cpc classification
F16L23/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A hose coupling system including an inlet fitting, which is to be arranged or is arranged on a vacuum cleaner, and including a tubular connection piece, which is to be connected or is connected to a suction hose, wherein the connection piece is to be inserted into the inlet fitting in the coaxial direction, wherein the hose coupling system has an actuable latching element by means of which the connection piece can be held in the inlet fitting in a form-fitting manner and can be released again as required.
Claims
1-12. (canceled)
13. A hose coupling system comprising: an inlet fitting to be arranged or arranged on a vacuum cleaner; a connection piece to be connected or connected to a suction hose, the connection piece to be inserted into the inlet fitting in a coaxial direction; and an actuable latch element, the connection piece holdable in the inlet fitting in a form-fitting manner and releasable as required via the actuable latch element.
14. The hose coupling system as recited in claim 13 wherein the connection piece is held in the inlet fitting in a form-fitting manner when the latching element is unactuated.
15. The hose coupling system as recited in claim 13 wherein the latch element is in the form of a spring-mounted holding clip with an outer actuating surface.
16. The hose coupling system as recited in claim 15 wherein the connection piece has a latching rim, the spring-mounted holding clip being in engagement with the latching ring in a form-fitting manner when the holding clip is in an unactuated state.
17. The hose coupling system as recited in claim 16 wherein the latching rim is an encircling latching rim.
18. The hose coupling system as recited in claim 15 wherein the spring-mounted holding clip has two holding lugs to hold the holding clip in a housing of the vacuum cleaner.
19. The hose coupling system as recited in claim 15 wherein the latching rim an oblique flank to facilitate latching-in of the spring-mounted holding clip.
20. The hose coupling system as recited in claim 13 wherein the connection piece has at least one encircling support rings to align the connection piece in the inlet fitting in a manner free from play.
21. The hose coupling system as recited in claim 20 wherein the at least one encircling support ring is two encircling support rings.
22. The hose coupling system as recited in claim 13 wherein the connection piece has a ring end surface, the ring end surface, when the connection piece is accommodated in the inlet fitting and latched therein, resting on a corresponding ring end surface of the inlet fitting.
23. The hose coupling system as recited in claim 13 wherein the connection piece has a cylindrical sealing surface, the cylindrical sealing surface, when the connection piece is accommodated in the inlet fitting and latched therein, resting on a corresponding cylindrical sealing surface of the inlet fitting.
24. The hose coupling system as recited in claim 23 wherein the corresponding cylindrical sealing surface of the inlet fitting extends at most over one third of a total length of the inlet fitting.
25. The hose coupling system as recited in claim 13 wherein the connection piece is held in the inlet fitting exclusively in a form-fitting manner.
26. The hose coupling system as recited in claim 25 wherein the connection piece is held in the inlet fitting in a manner free from a conical pairing.
27. A vacuum cleaner comprising: a suction hose; and the hose coupling system as recited in claim 13, wherein the inlet fitting is arranged on the vacuum cleaner, and the connection piece is connected to the suction hose.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017] In the figures, identical components and components of identical type are designated by the same reference signs. In the figures:
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
DETAILED DESCRIPTION
[0024] A preferred exemplary embodiment of a hose coupling system 100 according to the invention is illustrated in
[0025] The inlet fitting 10 is arranged on a vacuum cleaner 200, in more precise terms, is installed in a housing 210 of the vacuum cleaner. On the left side, the inlet fitting 10 is bounded by a manifold 29 of the vacuum cleaner 200. The manifold 29 leads to a suction turbine, not illustrated here.
[0026] A suction hose 20 to be connected to the connection piece 25 is illustrated merely in schematic form on the right side of
[0027] According to the invention, the hose coupling system 100 has an actuable latching element 15 by means of which the connection piece 25 can be held in the inlet fitting 10 in a form-fitting manner and can be released again as required.
[0028] In the exemplary embodiment illustrated here, the latching element 15 is in the form of a spring-mounted holding clip 16 with an outer actuating surface 17. The spring-mounted holding clip 16 will be explained more precisely further on with respect to
[0029]
[0030] The preferred connection piece 25 illustrated in
[0031] Furthermore, spurious air is minimized by an intermediate space ZR which is defined between the oblique flank 28 and the inlet fitting 10, since this space constitutes, as it were, a labyrinth for possible spurious air.
[0032] As can be gathered from
[0033] As a further structural measure for minimizing the spurious air, the connection piece 25 has a cylindrical sealing surface 23 which, if the connection piece 25, as shown, is accommodated in the inlet fitting 10 and latched therein, lies against a corresponding, cylindrical sealing surface 24 of the inlet fitting 10. In the exemplary embodiment illustrated, the cylindrical sealing surface 23 has a constant cross-sectional area along a migrating cross section in the coaxial direction R. Alternatively, at least the cylindrical sealing surface can have a conical profile along the coaxial direction R in order, for example, to fasten a hose with a blowing function.
[0034] As shown with reference to the preferred exemplary embodiment illustrated in
[0035]
[0036] Said actuated state BZ is achieved by applying an actuating force F to the outer actuating surface 17 of the spring-loaded holding clip 16. The actuating force F acts counter to a spring force of the compression spring 19 here. It should be noted that a spring mounting of the holding clip 26 does not necessarily have to be achieved via a compression spring 19. Alternatively, use can be made, for example, of leaf springs, disk springs or the like as the spring element.
[0037] The actuating force F applied brings the spring-loaded holding clip 16 into the actuated state BZ shown, wherein the latching edge 13 is now no longer in engagement with the latching rim 26, in more precise terms is not located in the intermediate space between latching rim and first support ring 27.
[0038] As can be gathered from
[0039] In this actuated state BZ shown in
[0040]
[0041]
[0042]
[0043] The holding clip 16 has a main body GK through which the connection piece 25 can be pushed at least in sections. The latching edge 13 which serves for the form-fitting locking of the connection piece 25 is arranged in the lower region of the main body GK, opposite the actuating surface 17. It should be noted that the latching edge 13 does not necessarily have to be in the form of a discrete, protruding latching edge, but rather, as is apparent from the exemplary embodiment shown here, can be part of the main body GK itself. The compression spring 19, against the compressive force of which the holding clip 16 is to be actuated via the actuating surface 17, can readily be seen on the lower side of the main body GK.
[0044] The spring-mounted holding clip 16 furthermore has two holding lugs 18, 18 in order to hold the holding clip in a housing 210 of the vacuum cleaner 200.
[0045] When the connection piece 25 is arranged in the inlet fitting 10 and latched therein, the connection piece 25 is located at least in sections within the lumen L completely surrounded by the main body GK.
[0046]
LIST OF REFERENCE SIGNS
[0047] 10 Inlet fitting [0048] 13 Latching edge [0049] 15 Latching element [0050] 16 spring-mounted holding clip [0051] 17 Actuating surface [0052] 18, 18 Holding lug [0053] 19 Compression spring [0054] 20 Suction hose [0055] 20 Spiral passage [0056] 21 Ring end surface [0057] 22 corresponding ring end surface [0058] 23 Sealing surface [0059] 24 corresponding sealing surface [0060] 25 Connection piece [0061] 26 Latching rim [0062] 27, 27 Support rings [0063] 28 Flank [0064] 29 Manifold [0065] 200 Vacuum cleaner [0066] 210 Housing [0067] F Actuating force [0068] GL Total length [0069] GK Main body [0070] L Lumen [0071] OF Area [0072] R coaxial direction [0073] BZ actuated state [0074] UZ unactuated state [0075] ZR Intermediate space