Connecting apparatus
10024343 ยท 2018-07-17
Assignee
Inventors
- Sascha Alexander Biwersi (Mettlach, DE)
- Marcus Hettiger (Saarlouis, DE)
- Christoph Stoenner (St. Ingbert, DE)
Cpc classification
F15B2013/002
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B13/0871
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2013/006
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B21/003
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B13/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B13/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F15B13/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A connecting apparatus connects to a main component (10) having a plurality of mutually adjacent fluid passage points (P1, P2, P3, Pn . . . Px). The connecting apparatus has a main body (12) controlling a fluid flow by a valve. A plurality of further fluid passage points (P1, P2, P3, Pn . . . Px) can be connected to each other in a fluid-conducting manner via the functional component (14) with assignable fluid passage points in the main component (10). One shut-off part, which shuts off the respective fluid passage point (P2, P3, Pn . . . Px1) in the main component (10) and/or in the fluid passage point remains unaffected by the functional component (14). In each case a fluid-conducting connection line (30, 32) is inside the main body (12) between the further fluid passage points (P1, P2, P3, Pn . . . Px) and the functional component (14) and can be shut off by a separate shut-off part, as long as the associated connection to the functional component (14) remains unused.
Claims
1. A connection device for providing a fluidic connection, comprising: a main component having multiple mutually adjacent component fluid passages therein; a main body controlling a fluid flow therein by a flow controller therein; multiple body fluid passages in said main body fluidically connectable to each other via said flow controller and fluidically connectable with assignable ones of said component fluid passages; a fluidic connecting line in said main body extending between and connected to in fluid communication with said body fluid passages and said flow controller; and a first shut-off part located in at least one of said body fluid passages closing fluid flow therethrough while said one of said body fluid passages remains unaffected by said flow controller, said shut-off part being a sealing plug.
2. The connection device according to claim 1 wherein said sealing plug comprises a ball expander.
3. The connection device according to claim 1 wherein said connecting line opens outwardly from said main body via said body fluid passages, said shut off part being insertable from outside of said main body into the respective body fluid passage and retained therein.
4. The connection device according to claim 1 wherein said main body comprises a flange block and is connected in a flange manner to said main component to form a complete system.
5. The connection device according to claim 1 wherein each of said component fluid passages comprises a radial expansion on an end thereof facing said main body, each said radial expansion receiving a seal therein engaging said main body and said main component sealing a connection between said main body and main component.
6. The connection device according to claim 5 wherein each said seal comprises an outer contour opening on a flange side of said main body adjacent a respective one of said body fluid passages.
7. The connection device according to claim 1 wherein said body fluid passages extend perpendicularly from said connecting line to openings thereof on a surface of said main body facing said main component.
8. The connection device according to claim 1 wherein only one of said body fluid passages leads via said connecting line to an input side of said flow controller; and only one other one of said body fluid passages is connected to an output side of said flow controller via said connecting line.
9. The connection device according to claim 8 wherein said flow controller is connected to said connecting line on said output side thereof upstream of the other of said body fluid passages ultimately leading to an outer surface of said main body.
10. A connection device for providing a fluidic connection, comprising: a main component having multiple mutually adjacent component fluid passages therein; a main body controlling a fluid flow therein by a flow controller therein, said main body being a flange block and being connected in a flange manner to said main component to form a complete system; multiple body fluid passages in said main body fluidically connectable to each other via said flow controller and fluidically connectable with assignable ones of said component fluid passages; a fluidic connecting line in said main body extending between and connected to in fluid communication with said body fluid passages and said flow controller; and a first shut-off part located in at least one of said body fluid passages closing fluid flow therethrough while said one of said body fluid passages remains unaffected by said flow controller.
11. The connection device according to claim 10 wherein said connecting line opens outwardly from said main body via said body fluid passages, said shut off part being insertable from outside of said main body into the respective body fluid passage and retained therein.
12. The connection device according to claim 10 wherein each of said component fluid passages comprises a radial expansion on an end thereof facing said main body, each said radial expansion receiving a seal therein engaging said main body and said main component sealing a connection between said main body and main component.
13. The connection device according to claim 12 wherein each said seal comprises an outer contour opening on a flange side of said main body adjacent a respective one of said body fluid passages.
14. The connection device according to claim 10 wherein said body fluid passages extend perpendicularly from said connecting line to openings thereof on a surface of said main body facing said main component.
15. The connection device according to claim 10 wherein only one of said body fluid passages leads via said connecting line to an input side of said flow controller; and only one other one of said body fluid passages is connected to an output side of said flow controller via said connecting line.
16. The connection device according to claim 15 wherein said flow controller is connected to said connecting line on said output side thereof upstream of the other of said body fluid passages ultimately leading to an outer surface of said main body.
17. A connection device for providing a fluidic connection, comprising: a main component having multiple mutually adjacent component fluid passages therein; a main body controlling a fluid flow therein by a flow controller therein; multiple body fluid passages in said main body fluidically connectable to each other via said flow controller and fluidically connectable with assignable ones of said component fluid passages, each of said component fluid passages having a radial expansion on an end thereof facing said main body, each said radial expansion receiving a seal therein engaging said main body and said main component sealing a connection between said main body and main component; a fluidic connecting line in said main body extending between and connected to in fluid communication with said body fluid passages and said flow controller; and a first shut-off part located in at least one of said body fluid passages closing fluid flow therethrough while said one of said body fluid passages remains unaffected by said flow controller.
18. The connection device according to claim 17 wherein said connecting line opens outwardly from said main body via said body fluid passages, said shut off part being insertable from outside of said main body into the respective body fluid passage and retained therein.
19. The connection device according to claim 17 wherein each said seal comprises an outer contour opening on a flange side of said main body adjacent a respective one of said body fluid passages.
20. The connection device according to claim 19 wherein said flow controller is connected to said connecting line on said output side thereof upstream of the other of said body fluid passages ultimately leading to an outer surface of said main body.
21. A connection device for providing a fluidic connection, comprising: a main component having multiple mutually adjacent component fluid passages therein; a main body controlling a fluid flow therein by a flow controller therein; multiple body fluid passages in said main body fluidically connectable to each other via said flow controller valve and fluidically connectable with assignable ones of said component fluid passages; a fluidic connecting line in said main body extending between and connected to in fluid communication with said body fluid passages and said flow controller, only one of said body fluid passages leading via said connecting line to an input side of said flow controller, only one other one of said body fluid passages being connected to an output side of said flow controller via said connecting line; and a first shut-off part located in at least one of said body fluid passages closing fluid flow therethrough while said one of said body fluid passages remains unaffected by said flow controller.
22. The connection device according to claim 21 wherein said connecting line opens outwardly from said main body via said body fluid passages, said shut off part being insertable from outside of said main body into the respective body fluid passage and retained therein.
23. The connection device according to claim 21 wherein said valve is connected to said connecting line on said output side thereof upstream of the outer of said body fluid passages ultimately lading to an outer surface of said main body.
24. A connection device for providing a fluidic connection, comprising: a main component having multiple mutually adjacent component fluid passages therein; a main body controlling a fluid flow therein by a flow controller therein; multiple body fluid passages points in said main body fluidically connectable to each other via said flow controller and fluidically connectable with assignable ones of said component fluid passages; a central connecting line in said main body extending between and connected to in fluid communication with said body fluid passages and said flow controller, said body fluid passages extending individually directly from said central connecting line; and a first shut-off part located in at least one of said body fluid passages closing fluid flow therethrough while said one of said body fluid passages remains unaffected by said flow controller.
25. The connection device according to claim 24 wherein said central connecting line opens outwardly from said main body via said body fluid passages, said shut off part being insertable from outside of said main body into the respective body fluid passage and retained therein.
26. The connection device according to claim 24 wherein said main body comprises a flange block and is connected in a flange manner to said main component to form a complete system.
27. The connection device according to claim 24 wherein each of said component fluid passages comprises a radial expansion on an end thereof facing said main body, each said radial expansion receiving a seal therein engaging said main body and said main component sealing a connection between said main body and main component.
28. The connection device according to claim 27 wherein each said seal comprises an outer contour opening on a flange side of said main body adjacent a respective one of said body fluid passages.
29. The connection device according to claim 24 wherein said body fluid passages extend perpendicularly from said central connecting line to openings thereof on a surface of said main body facing said main component.
30. The connection device according to claim 24 wherein only one of said body fluid passages leads via said central connecting line to an input side of said flow controller; and only one other one of said body fluid passages is connected to an output side of said flow controller via said central connecting line.
31. The connection device according to claim 30 wherein said flow controller is connected to said central connecting line on said output side thereof upstream of the other of said body fluid passages ultimately leading to an outer surface of said main body.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Referring to the drawings that form a part of this disclosure:
(2)
(3)
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DETAILED DESCRIPTION OF THE INVENTION
(7)
(8) The main component 10 as well as the main body 12 are designed in the form of valve blocks or flange blocks, which can be connected to one another in a flange manner to form a complete system. In each connected state according to the depictions of
(9) In the known solution, as illustrated in particular in
(10) The functionalities depicted in
(11) In the device solution according to the invention according to the depictions of
(12) Thus, as indicated, in particular in
(13) If, according to the depiction of
(14) The excerpted detail of
(15) The shut-off element solution depicted in
(16) Thus, with the solution according to the invention, only one form of the main body 12 is needed to reliably manage a variety of possible fluid connections as part of the connection to a main component 10. In principle, if one wishes to accommodate sealing elements such as O-ring seals in a flange surface, here, that of the main component 10, the space available for this is usually severely limited. A significant disadvantage is that corresponding radial expansions 20 must be provided for accommodating the O-ring seals in order not to impede the fluid flow. If, as in
(17) Furthermore, the machining and assembly of the sealing element should be kept as simple as possible, in order not to jeopardize the fundamentally targeted economic advantage. The aforementioned ball expander solution for implementing the respective shut-off part 16 meets all of the requirements outlined above. The installation space required by the ball expander, as demonstrated, requires primarily only a small diameter offset 42. The aforementioned sealing solution may be physically acted upon even with high pressures without resulting in a malfunction. Furthermore, the shut-off part 16 in the form of the ball expander may be mounted and installed in the assignable pipelines 32 in a rapid and process-stable manner. This operation is not possible with the present sealing solutions, as they are shown, by way of example, in
(18) By using a universally drilled block, here in the form of the main body 12, and several sealing elements in the form of ball expanders functioning as shut-off parts 16, the block definition can implement a variety of hydraulic functionalities/logics, while including if applicable only two material numbers. Since the aforementioned block 12 is designed as a common part, the production costs are reduced to a significant extent. Furthermore, few components are required to be logistically controlled due to the common part characteristic. The assembly of the sealing plugs 16 may be optimally coordinated from a manufacturing perspective.
(19) While one embodiment has been chosen to illustrate the invention, it will be understood by those skilled in the art that various changes and modifications can be made therein without departing from the scope of the invention as defined in the claims.