FLUID CONNECTION ELEMENT
20230182048 · 2023-06-15
Inventors
Cpc classification
B01D35/005
PERFORMING OPERATIONS; TRANSPORTING
F01M2011/031
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
B01D35/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A fluid connection element for a housing element is disclosed. The fluid connection element includes an inlet opening for introducing a fluid into the fluid connection element and an outlet opening for discharging the fluid from the fluid connection element. The outlet opening engages the housing element when the fluid connection element is coupled to the housing element in an installed state. The inlet opening and the outlet opening are coupled via a channel. A valve assembly is arranged in the channel such that the valve assembly is opened or closed as a function of an impulse. The valve assembly in the installed state is arranged at least partially within the housing element.
Claims
1. A fluid connection element for a housing element, comprising: an inlet opening for introducing a fluid into the fluid connection element, an outlet opening for discharging the fluid from the fluid connection element, the outlet opening engaging in the housing element when the fluid connection element is in an installed state and coupled to the housing element, the inlet opening and the outlet opening connected via a channel, a valve assembly arranged in the channel such that the valve assembly is opened or closed as a function of an impulse, and wherein the valve assembly in the installed state is arranged at least partially within the housing element.
2. The fluid connection element according to claim 1, further comprising a plug connection arranged in an area of the inlet opening on an outer circumference of the fluid connection element.
3. The fluid connection element according to claim 1, wherein a coupling area is arranged in an area of the outlet opening on an outer circumference of the fluid connection element to couple the fluid connection element to the housing element.
4. The fluid connection element according to claim 1, further comprising a first fluid connection housing element and a second fluid connection housing element that are connected via a coupling device.
5. The fluid connection element according to claim 4, wherein the coupling device is a snap connection, a bayonet connection or a screw connection.
6. The fluid connection component according to claim 1, wherein the valve assembly comprises a valve body, a spring and a seal, wherein the seal is arranged such that the valve body is held in the fluid connection element when not activated.
7. The fluid connection element according to claim 1, wherein the inlet opening is arranged at an angular range of 0-90° with respect to the outlet opening.
8. A filter system, comprising: a fluid connection element according to and a housing element, the fluid connection element including: an inlet opening for introducing a fluid into the fluid connection element; an outlet opening for discharging the fluid from the fluid connection element the outlet opening engaging in the housing element when the fluid connection element is in an installed state and coupled to the housing element; the inlet opening and the outlet opening connected via a channel; a valve assembly arranged in the channel such that the valve assembly is opened or closed as a function of an impulse; and wherein the valve assembly in the installed state is arranged at least partially within the housing element.
9. The filter system according to claim 8, wherein the filter system is an oil filter system.
10. The filter system according to claim 8, further comprising a plug connection arranged in an area of the inlet opening on an outer circumference of the fluid connection element.
11. The filter system according to claim 8, further comprising a coupling area arranged in an area of the outlet opening on an outer circumference of the fluid connection element to couple the fluid connection element to the housing element in the installed state.
12. The filter system according to claim 11, wherein the coupling area comprises a thread or a bayonet closure.
13. The filter system according to claim 8, wherein the fluid connection element includes a first fluid connection housing element and a second fluid connection housing element that are connected via a coupling device.
14. The filter system according to claim 13, wherein the coupling device includes a snap connection, a bayonet connection, or a screw connection.
15. The filter system according to claim 8, wherein the valve assembly comprises a valve body, a spring, and a seal.
16. The filter system according to claim 15, wherein the seal is arranged such that the valve body is held in the fluid connection element when the valve assembly is not activated.
17. The filter system according to claim 8, wherein the inlet opening is arranged at an angular range of 0° to 90° with respect to the outlet opening.
18. The filter system according to claim 17, wherein the angular range of the inlet opening relative to the outlet opening is 45° to 90°.
19. The fluid connection element according to claim 1, wherein the housing element is a filter housing element.
20. The fluid connection element according to claim 1, wherein the inlet opening is arranged at an angular range of 45° to 90° with respect to the outlet opening.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017] It shows, each schematically
[0018]
[0019]
DETAILED DESCRIPTION
[0020] According to
[0021] The second fluid connection housing element 3 has an outlet opening 5. The inlet opening 4 is arranged at an angle of 90° to the outlet opening, but can also be arranged in alternative angular arrangements. Due to the different designs in different angular arrangements of the inlet opening 4 to the outlet opening 5, it is possible in a simple way to design the installation space and the piping around the fluid connection component 1 according to the given installation space requirements and customer wishes, since only the first fluid connection housing component 2 has to be adapted. The second fluid connection housing element 3 further comprises a valve assembly 10 arranged at least partially within the second fluid connection housing element.
[0022] Both fluid connection housing elements are connected to each other via a coupling area 15, in particular detachably connected to each other. The two-part design makes it possible for different embodiments of the first and second fluid connection housing elements 2.3 to be combined; in particular, with the angled design of the first fluid connection housing element 2 shown, it is possible to install the valve assembly 10 in the second fluid connection housing element 3 in a simple manner via the coupling area.
[0023]
[0024] In a preferred embodiment, the second fluid connection housing element 3 further comprises a separate seal 9, which in a particularly preferred embodiment is configured as a circumferential ring.
[0025]
[0026] The second fluid connector housing element 3 has the valve assembly 10 within the fluid connection housing element 3.
[0027] The valve assembly 10 has a valve body 12, a valve spring 13 and a seal 11. The valve body 12, which in a preferred embodiment is made of a plastic, in particular a polyamide, has at least two struts 12.1, in a preferred embodiment three struts 12.1. The struts 12.1 connect a circumferential collar 12.2 to a valve head 12.3. The valve head 12.3 has a circumferential groove to accommodate a seal 11 therein.
[0028] The valve spring 13 of the valve assembly 10 is supported on a contact surface of the second fluid connection housing element 3 as well as on the circumferential collar 12.2 of the valve body. This preloads the valve assembly 10 in the second fluid connection housing element 3. When the valve assembly 10 is closed, the seal 11 of the valve head 12.3 rests against a seal seat 14 of the second fluid connection housing element 3, which thus also serves as a valve seat. The seal 11 thereby holds the spring-loaded valve assembly 10 in the second fluid connection housing element 3. Due to the design of the valve assembly 10 and the interaction of the valve assembly 10 with the second fluid connection housing element 3, a backflow check valve system requiring fewer elements is provided.
[0029] The valve assembly 10 is actuated by means of an impulse, in particular an impulse generated by the force of an incoming fluid. In each case, the force must be greater than the valve spring force, which preloads the valve body against the valve seat and thus closes it. If no impulse is applied, i.e. no force is applied that is greater than the spring force of the valve, the valve closes or the valve does not open.
[0030] With the fluid connection element 1 according to the invention, it is possible for the first time to provide a fluid connection element 1 with an integrated valve assembly 10 for a housing element 8, in particular a filter housing element, which is optimized in terms of installation space.