PULSATION DAMPER HAVING A CLAMPING SLEEVE AND METHOD FOR PRODUCING A PULSATION DAMPER HAVING A CLAMPING SLEEVE
20260117908 ยท 2026-04-30
Assignee
Inventors
Cpc classification
B60T8/4068
PERFORMING OPERATIONS; TRANSPORTING
International classification
F16L55/054
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60T8/40
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A pulsation damper for damping pressure medium fluctuations in a hydraulic system, in particular in a motor vehicle brake system, including a plug with a sleeve-shaped extension and a hat-shaped elastomeric membrane which is at least partially inserted into the extension of the plug. The membrane includes a collar with an edge-side bead, wherein the collar of the membrane is pushed around an edge of the extension. The bead bears on the outer side against the extension, and the membrane is connected in a pressure-tight manner to the plug via a clamping sleeve acting on the outer side on the bead and on the extension; and a method for producing a pulsation damper.
Claims
1. A pulsation damper for damping pressure medium fluctuations in a hydraulic system, in particular in a motor vehicle brake system, comprising a plug with a sleeve-shaped extension and a hat-shaped elastomeric membrane which is at least partially inserted into the extension of the plug, wherein the membrane comprises a collar with an edge-side bead wherein the collar of the membrane is pushed around an edge of the extension, whereby the bead bears on the outer side against the extension, wherein the membrane is connected in a pressure-tight manner to the plug via a clamping sleeve acting on the outer side on the bead and on the extension.
2. The pulsation damper as claimed in claim 1, in the extension of the plug comprises a bead groove which runs around on the outer side and in which the bead of the membrane bears.
3. The pulsation damper as claimed in claim 1, wherein the extension of the plug comprises a clamping groove which runs around on the outer side and into which a clamping region of the clamping sleeve is pressed.
4. The pulsation damper as claimed in claim 1, wherein the clamping sleeve comprises a tapered edge which brings about an axial clamping force on the bead.
5. The pulsation damper as claimed in claim 1, wherein the clamping sleeve comprises a widened edge, by which the clamping sleeve is plugged over the extension.
6. A method for producing a pulsation damper, comprising: providing a plug with an extension, providing a membrane made from an elastomeric material with a folded-over bead, inserting the membrane into the extension of the plug, wherein the bead bears on the outer side against the extension, providing a clamping sleeve and pushing the clamping sleeve axially over the extension, and axially pressing the clamping sleeve with a pressing tool, with the result that a part of the clamping sleeve is pressed axially against the bead, and radially pressing the clamping sleeve with a clamping tool, with the result that a clamping region of the clamping sleeve is pressed against the extension.
7. The method as claimed in claim 6, wherein the bead is pressed by a tapered edge of the clamping sleeve into a bead groove of the
8. The method as claimed in claim claim 6, wherein the clamping region of the clamping sleeve is pressed into a clamping groove of the extension.
9. The method as claimed in claim 6, wherein the membrane is first vulcanized into a hat-shaped shape with a collar turned inside out with an edge-side bead.
10. The method as claimed in claim 6, wherein the clamping sleeve is produced by deep drawing in advance of said method steps.
11. The pulsation damper as claimed in claim 2, wherein the extension of the plug comprises a clamping groove which runs around on the outer side and into which a clamping region of the clamping sleeve is pressed.
12. The method as claimed in claim 7, wherein the clamping region of the clamping sleeve is pressed into a clamping groove of the extension.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0007] Preferred embodiments of the invention result from the dependent claims and the following description of one exemplary embodiment with reference to the figures, in which:
[0008]
[0009]
DETAILED DESCRIPTION OF EXEMPLARY EMBODIMENTS
[0010]
[0011] The membrane 4 which is inserted into the extension 3 delimits, with the plug 2, a damping gas space 6. Thus, the membrane 4 is exposed to a gas on the side facing the plug 2 and to the hydraulic fluid on the side facing away from the plug 2. In order to ensure a pressure-tight connection between the plug 2 and the membrane 4, a clamping sleeve 7 is provided, according to the example. The clamping sleeve 7 presses the bead 5 against the extension 3 from the outside and is also pressed into it itself. For this purpose, the clamping sleeve 7 is manufactured from a metallic material, preferably from steel. The clamping sleeve 7 thus clamps the elastomeric bead 5 at the extension 3 in such a way that a permanently pressure-tight connection is formed between the membrane 4 and the plug 2. As a result, no gas can escape from the gas space 6 into the bore 18 or into the hydraulic fluid. The contour of the clamping sleeve 7 is selected here in such a way that a radial and an axial clamping force act on the bead 5.
[0012] A method according to the example for producing such a pulsation damper 1 is to be explained with reference to
[0013] Then, in a next method step according to
[0014] In the next method step according to
[0015] Then, in the next method step according to
[0016] Finally, in a further method step according to
LIST OF DESIGNATIONS
[0017] 1 Pulsation damper [0018] 2 Plug [0019] 3 Extension [0020] 4 Membrane [0021] 5 Bead [0022] 6 Gas space [0023] 7 Clamping sleeve [0024] 8 Clamping tool [0025] 9 Housing [0026] 10 Edge [0027] 11 Bead groove [0028] 12 Clamping groove [0029] 13 Clinch groove [0030] 14 Tapered edge [0031] 15 Widened edge [0032] 16 Clinching tool [0033] 17 Collar [0034] 18 Bore [0035] 19 Pressing tool