Unit for the regulation or control of a fluid pressure
20180120869 ยท 2018-05-03
Inventors
- Lukas BOCK (Bietigheim-Bissingen, DE)
- Volker KUEMMERLING (Bietigheim-Bissingen, DE)
- Thomas JESSBERGER (Asperg, DE)
- Hoang-Minh Vu (Markgroeningen, DE)
Cpc classification
B23K20/10
PERFORMING OPERATIONS; TRANSPORTING
B23K20/22
PERFORMING OPERATIONS; TRANSPORTING
B29C66/1312
PERFORMING OPERATIONS; TRANSPORTING
B29C65/20
PERFORMING OPERATIONS; TRANSPORTING
B29K2027/18
PERFORMING OPERATIONS; TRANSPORTING
B29C65/02
PERFORMING OPERATIONS; TRANSPORTING
B23K2103/42
PERFORMING OPERATIONS; TRANSPORTING
B29K2027/18
PERFORMING OPERATIONS; TRANSPORTING
B29C66/5412
PERFORMING OPERATIONS; TRANSPORTING
F01M13/023
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B23K26/323
PERFORMING OPERATIONS; TRANSPORTING
B29C65/485
PERFORMING OPERATIONS; TRANSPORTING
F01M2013/0016
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B29K2077/00
PERFORMING OPERATIONS; TRANSPORTING
B29C66/322
PERFORMING OPERATIONS; TRANSPORTING
B29K2077/00
PERFORMING OPERATIONS; TRANSPORTING
B29C66/7212
PERFORMING OPERATIONS; TRANSPORTING
B29C66/71
PERFORMING OPERATIONS; TRANSPORTING
B29C66/71
PERFORMING OPERATIONS; TRANSPORTING
B29C65/48
PERFORMING OPERATIONS; TRANSPORTING
B29C66/7212
PERFORMING OPERATIONS; TRANSPORTING
B29C66/542
PERFORMING OPERATIONS; TRANSPORTING
International classification
G05D16/06
PHYSICS
F01M13/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A unit (10) for the regulation or control of a fluid pressure, having at least one housing section (13, 14) and a switching film (22) connected to the at least one housing section (13, 14) for switching at pressure differentials relative to an ambient pressure acting on the switching film (22), and for the regulation, release or blocking of a flow of the fluid between an inlet (28) and a discharge (30) for the fluid. The switching film (22) is made out of a polymer material having fluorine and carbon, in particular a thermoplastic having fluorine and carbon. In this arrangement, a hole cross-section (40) of the at least one housing section (13, 14) is closed off by the switching film (22).
Claims
1. A regulation unit for the regulation or control of a fluid pressure, comprising: a regulation housing having: at least one housing section; a fluid inlet port; a fluid discharge port; a switching film connected to the at least one housing section and adapted to switch at pressure differentials of 1 to 250 mbar relative to an ambient pressure acting on the switching film; wherein the switching film is adapted for regulation, release or blocking of a flow of the fluid between the inlet port and the fluid discharge port; wherein the switching film is made out of a thermoplastic or a polymer material having fluorine and carbon, wherein a first housing section of the at least one housing section has a first chamber, the first housing section having a hole though which the first chamber opens to an exterior of the first housing section, the hole having a hole cross-section; wherein the hole cross-section of the at least one housing section is closed off by the switching film.
2. The regulation unit according to claim 1, wherein at least one circumferential mating surface situated radially to the outside and radially surrounding the hole cross-section; wherein the switching film is fixedly and fluid-tightly connected to the at least one housing section and closing off the hole cross-section.
3. The regulation unit according to claim 2, wherein a radially outwardly situated joining region of the switching film has at least one connecting element on at least one side facing the at least one circumferential mating surface that is integrally and/or interlockingly connected to the at least one housing section.
4. The regulation unit according to claim 3, wherein the connecting element is formed from plastic/or formed through injection-molding at the circumferential mating surface.
5. The regulation unit according to claim 3, wherein the connecting element radially encloses the joining region on both sides of the switching film.
6. The regulation unit according to claim 3, wherein the switching film, at least in the region of the joining region, has at least one activated surface directed toward the first chamber of the first housing section.
7. The regulation unit according to claim 3, wherein the at least one housing section is two housing sections; wherein each of the two housing section has the circumferential mating surface, the circumferential mating surfaces adapted to align for mating; wherein the at least one circumferential mating surface of the at least one housing section is formed conically, curved or undulated such that the at least one circumferential mating surface is self-adjust for mating.
8. The regulation unit according to claim 7, wherein the circumferential mating surface has at least one circumferential groove formed therein; wherein the at least one circumferential groove is radially delimited on an inside by an edge for supporting the switching film when there are axial movements transverse to the hole cross-section; wherein the edge is provided radially inside the at least one circumferential mating surface of the at least one housing section; wherein two axial opposing and/or radially offset grooves are provided with the edge.
9. The regulation unit according to claim 7, wherein a second one of the two housing sections is a second housing section; wherein the second housing section has a second chamber; wherein the first chamber is separated from the second chamber in a fluid-tight manner by the switching film.
10. The regulation unit according to claim 1, wherein the polymer material having fluorine and carbon is: a polytetrafluoroethylene, or a polytetrafluoroethylene with admixtures, or a thermoplastically processable polytetrafluoroethylene.
11. A method of forming a fluid-tight connection of a switching film onto at least one housing section of a regulator housing of a regulation unit according to claim 1, comprising the steps of: providing a switching film formed from a polymer material having fluorine and carbon, the switching film having a connecting element on at least one side of the switching film; wherein the joining region of the switching film is situated radially to the outside of the switching film; providing a first housing section having a first chamber, the first chamber surrounded by a mating surface of the first housing section; providing a second housing section having a second chamber, the second chamber surrounded by a mating surface of the second housing section; applying the connecting element to the switching film at the joining region; placing the switching film onto the mating surface of the first housing section; integrally and/or interlockingly bonding the first housing section to the switching film.
12. The method according to claim 11, wherein the connecting element is formed by encapsulating the switching film through injection-molding.
13. The method according to claim 12, wherein thermoplastically processable polytetra-fluoroethylene is molded onto the connecting element as the switching film.
14. The method according to claim 11, wherein prior to the step of placing the switching film, the method further comprises: pretreating the joining region by at least one of the methods: etching, plasma treatment, mechanical grinding, embossing or perforation.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0043] Further advantages arise from the following drawing description. Embodiments of the invention are illustrated in the drawings. The drawings, the description and the claims contain numerous features in combination. A person skilled in the art will also expediently consider the features on an individual basis and combine them into other appropriate combinations.
[0044] Shown by way of example are:
[0045]
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DETAILED DESCRIPTION
[0050] The same or similar components in the figures are referenced with same reference characters. The figures merely show examples and are not intended to be restrictive.
[0051]
[0052] The hole cross-section 40 of the two housing sections 13, 14 is fluid-tightly sealed by the switching film 22 with its functional region. Two circumferential mating surfaces 50, 52 are fluid-tightly provided situated radially to the outside on the two housing sections 13, 14, at which the switching film 22 is connected to the two housing sections 13, 14, in particular fixed and fluid-tight. In the shown exemplary embodiment, a radially outwardly situated joining region 42 of the switching film 22 has at least one thin connecting element 44 on at least one side facing the mating surface 50, 52 that is connected, in particular integrally and/or interlockingly bonded, welded, or pressed to the at least one housing section 13, 14. The connecting element 44 may be formed from plastic and may, in particular, be formed through injection-molding at the mating surface 42. Alternatively, the switching film 22 may be injection-molded to the connection element 44 as well. The connecting element 44 may in particular be formed in a way that it encloses the joining region 42 on both sides and/or radially on the outside. In the exemplary embodiments in
[0053] The switching film 22 separates a first chamber 36 of the unit 10 from a second chamber 38 in a fluid-tight manner. There is a pressure differential between the first chamber 36 and the second chamber 38, wherein the second chamber 38 is connected (not depicted) to the surrounding space, meaning to the atmosphere. The switching film 22 can be moved with pressure differences of 1 to 250 mbar, preferably from 1 to 100 mbar, and serves to release or shut off a through-flow of the fluid between the inlet 28 and the discharge 30. The inlet 28 of the unit 10 is fluidically connected during use to, for example, the crankcase of an internal combustion engine, while the discharge 30 is fluidically connected to the breather line. The switching film 22 has a plate-like flat body 16 having a corrugated bending region 18 surrounding a central sealing region 24. The bending region 18 moves during switching of the switching film 22 by a low-strain, in particular strain-free bending motion of the sealing region 24 with respect to a valve seat 32 in an axial direction L toward the valve seat 32 or away from the valve seat 32. For this, the switching film 22 has at least in the bending region 18 a thickness of at most 0.5 mm, preferably of at most 0.3 mm, most preferably of at most 0.2 mm. The diameter of the switching film 22 can thus be between 40 mm and 100 mm, preferably between 50 mm and 80 mm.
[0054] The bending region 18 extends in a wave-like manner in radial direction around sealing region 24, wherein a recess on a flat side corresponds to an elevation on the other flat side of the switching film 22. The sealing region 24 seals the valve seat 32 if it is located on the valve seat 32. A spring element 26 is provided that is supported at the first housing section 13 which exerts a force on the sealing region 24 of the switching film 22. The spring element 26 is supported here by an annularly formed plate 34 at the sealing region 24. The sealing region 24 is formed as a bowl-shaped projection 20 of the switching film 22, wherein the plate 34 in the form of a support ring annularly encloses this projection. The spring element 26 can alternatively engage the switching film 22 without plate 34 and thus be sprayed on its end face that is turned towards the projection 20 for protection of the switching film 22, so that the encapsulation can replace the plate 34.
[0055] A groove 54, 56 running radially is provided inside the mating surface 50, 52 of each of the two housing sections 13, 14, which is delimited radially inside by an edge 58, 60 for supporting the switching film 22 during axial movements transverse to the hole cross-section 40. The two grooves 54, 56 are located axially opposite one another. Because the switching film 22 is located on the rounded edges 58, 60 and is clamped between them, the switching film 22 is protected against excessive wear and damages from sharp edges resulting from axial movements of its working region because of the regulating function of the unit 10.
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[0058] In comparison with the two exemplary embodiments in
[0059] A radially outward joining region 42 of the switching film 22 thus comprises a connecting element 44 enclosing the joining region 42, which can be integrally and/or interlockingly connected to the two housing sections 13, 14 in the area of the mating surfaces 50, 52, and in particular bonded or welded. Here, the connecting element 44 is attached in the are of the joining region 42 of the switching film 22. Then, the switching film 22 having the connecting element 44 is placed on the mating surface 50, 52 of a housing section 13, 14 and the connecting element 44 connected with the housing section 13, 14. Then, the second of the housing sections 14, 13 can be place and integrally connected with the connecting element 44. The connecting element is advantageously formed by encapsulating the joining region 42 with plastic and can enclose the joining region 42 at both sides and at the radial outside. The bonding may be, for example, common adhesives such as liquid silicones, acrylic-based adhesives or two-component adhesives. The welding method to be used may be laser welding or ultrasound welding. Advantageously, the switching film 22 in this arrangement, at least in the region of the joining region 42, may have an activated surface with altered surface tension in order to achieve a good plastic encapsulation, wherein the joining region 42 is prepared, for example, by one of the methods, etching, plasma treatment, mechanical roughening, embossing or perforation. The housing 12 is preferably sealed to a radial outer circumference after the insertion of the switching film 22 through the connecting element 44 by welding.
[0060] The simplified detail of the joining region 42 of unit 10 in
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