Coupling device with integrated stopcock and device for supplying a flowable substance
10900600 ยท 2021-01-26
Inventors
Cpc classification
F16L37/256
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L2201/60
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L37/56
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16L37/47
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L37/256
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A coupling device having an integrated stopcock for placement in a flow connection between a first line and a second line includes a carrier body having a connection for the second line, a plug part having a connection for the first line, and a rotary part being rotatable by the plug part, disposed in the carrier body between the connections and having an opening. The two connections are connected for flow through the opening in a rotated end position of the rotary part. A plug-and-rotate lock is formed between the plug part and the carrier body. The plug part is detachably plugged into the rotary part and can be rotated in the carrier body together with the rotary part. A device for supplying a flowable substance from a container to a discharge point is also provided.
Claims
1. A coupling device with an integrated stopcock for placement in a flow connection between a first line and a second line, the coupling device comprising: a carrier body having a hollow cylindrical shape, a connection for the second line, and a lateral cut-out opposite said connection for the second line; a plug part having a connection for the first line; a cylindrical rotary part disposed in said carrier body between said connections, said rotary part having an opening and being rotatable by using said plug part; said connections being connected for flow through said opening in a rotated end position of said rotary part; and a plug-and-rotate lock formed between said plug part and said carrier body; said plug part being detachably inserted into said rotary part and being rotatable together with said rotary part in said carrier body; said rotary part having a receiving space for said plug part being accessible through said cut-out of said carrier body, and said rotary part having a through hole associated with said plug-and-rotate lock; said plug-and-rotate lock having a slot formed in said carrier body and a bolt projecting from said plug part and engaging behind said slot of said carrier body through the through hole in said rotary part.
2. The coupling device according to claim 1, wherein said plug part is inserted into said receiving space of said rotary part through said lateral cut-out of said carrier body.
3. The coupling device according to claim 1, wherein said slot starts from an extension having a clear width corresponding at least to said bolt of said plug part.
4. The coupling device according to claim 3, wherein said plug part has an operating handle on a side opposite said bolt.
5. The coupling device according to claim 1, wherein: the first line is one of two first lines and the second line is one of two second lines configured for a flow connection therebetween; said carrier body has a hollow cylindrical shape and two connections for the two second lines; said plug part has two connections for the two first lines; and said plug-and-rotate lock is formed centrally between said connections.
6. A device for supplying a flowable substance from a container to a discharge point, the device comprising: a flow connection between the container and the discharge point, said flow connection being configured to be disconnected and shut off; a pump disposed upstream of the discharge point; and a coupling device according to claim 5 disposed in said flow connection.
7. The device according to claim 6, wherein each of the first line and the second line is a flexible hose.
8. A device for supplying a flowable substance from a container to a discharge point, the device comprising: a flow connection between the container and the discharge point, said flow connection being configured to be disconnected and shut off; and a coupling device according to claim 1 disposed in said flow connection.
9. The device according to claim 8, wherein each of the first line and the second line is a flexible hose.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWING
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DETAILED DESCRIPTION OF THE INVENTION
(8) Referring now to the figures of the drawings in detail and first, particularly, to
(9) The coupling device 1 is shown in longitudinal sections in
(10) The carrier body 10 has a hollow cylindrical interior which has a central cut-out 13 that extends approximately 180 with respect to an axis 9 of the carrier body 10 (shown by the dashed line in
(11) The rotary part 15 has bearing rings 30 on both sides and is centrally furnished with a receiving space 16 located inside the cut-out 13 of the carrier body 10. This makes the receiving space 16 of the rotary part 15 accessible through the cut-out 13 and suitable for accommodating the plug part 20.
(12) The carrier body 10 has the connections 11, 12 which are opposite the cut-out 13 and are connected to the second lines 5, 7. An O-ring 26 is inserted around each connection 11, 12 between the carrier body 10 and the rotary part 15. In the rotary part 15, starting from the receiving space 16, there are furnished a first opening 17, a through hole 19 and a second opening 18. In the position of the rotary part 15 shown in
(13) As is shown in greater detail in
(14) The coupling device 1 has a plug-and-rotate lock between the carrier body 10 and the plug part 20, which also includes the through hole 19 of the rotary part 15 and the slot 14 in the carrier body 10. At the plug part 20, a bolt 23 with a widened head is provided opposite or in an extension of the operating handle 24, and the slot 14 ends on one side in an extension 27 that at least corresponds to the widened head of the bolt 23. The plug-and-rotate lock is in the form of a bayonet joint, i.e. the plug part 20 is inserted into the rotary part 15 when the same is in its locked position, and the head of the bolt 23 passes through the through hole 19 of the rotary part 15 and the extension 27 of the slot 14. The plug part 20 may now be swiveled together with the rotary part 15 from the position of
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(16) The coupling device 1 may be operated with one hand, and coupling devices may also be manufactured in the same way, having symmetrical or asymmetrical connection pairs in addition to the plug-and-rotate lock, for example 2/1 connection pairs for three flow connections or 2/2 connection pairs for four flow connections.