IP Library › Granted Patent US 10,655,701
Granted Patent B2
US 10,655,701 · App. 15/992,750 · Granted May 19, 2020

Adjustable oscillation damper

Inventors: Thomas Manger (Wasserlosen, DE); Bernd Zeissner (Volkach, DE); Stefan Schmitt (Gochsheim, DE); Lukas Ruhmann (Memmelsdorf, DE)
Assignee: ZF Friedrichshafen AG
F16F9/325F16F9/062F16F9/369F16F9/46
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Quick Facts
Patent No.
US 10,655,701
App. No.
15/992,750
Granted
May 19, 2020
Kind
B2
Abstract

An adjustable vibration damper comprises at least one adjustable damping valve for each working direction. A fluid connection between a compensation space and a working space is controlled by a check valve which has a check valve body and which is hydraulically connected in parallel with the adjustable damping valve. The check valve is held by an intermediate tube which forms the fluid connection and which has a connection orifice to the connected adjustable damping valve. The check valve body of the check valve is supported at least indirectly in the region of the connection orifice.

Claims (19)

1. An adjustable vibration damper comprising:

a piston movable in two opposed working directions;

at least one adjustable damping valve for each working direction;

a fluid connection between a compensation space and a working space;

a check valve for controlling said fluid connection;

said check valve having a check valve body and being hydraulically connected in parallel with said adjustable damping valve;

an intermediate tube constructed to form said fluid connection and to hold said check valve; said intermediate tube having a connection orifice to said adjustable damping valve and wherein said check valve body of said check valve is supported at least indirectly in the region of said connection orifice;

additionally comprising a connection piece forming said connection orifice and wherein said check valve body is supported at said connection piece;

wherein said check valve body outwardly encloses said connection piece; and

wherein said check valve body comprises a guide sleeve in axial overlap with said connection piece.

2. The adjustable vibration damper 1 , wherein said check valve body engages in said connection orifice.

3. The adjustable vibration damper according to claim 1 , wherein said check valve body comprises a permanently open through-opening to said adjustable damping valve and at least one return flow orifice radially offset with respect to said through-opening.

4. The adjustable vibration damper according to claim 3 , wherein said at least one return flow orifice is arranged radially outside of said permanently open through-opening.

5. The adjustable vibration damper according to claim 1 , wherein said check valve body comprises a supporting surface for supporting said check valve body at said intermediate tube.

6. The adjustable vibration damper according to claim 1 , additionally comprising a transition piece; and wherein said check valve body is held by said transition piece to said adjustable damping valve.

7. The adjustable vibration damper according to claim 6 , wherein said transition piece and said check valve body are fixedly connected to one another.

8. The adjustable vibration damper according to claim 6 , wherein said check valve additionally comprises a closing spring supported at said transition piece.

9. The adjustable vibration damper according to claim 8 , wherein said closing spring is radially supported at said transition piece.

10. The adjustable vibration damper according to claim 1 , additionally comprising a terminal closed base and wherein said check valve is connected in parallel with said adjustable damping valve for damping a compression movement of a said working space remote of said piston rod, and said working space remote of said piston rod is separated from said compensation space via said terminal closed base.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 30, 2018
From: MANGER, THOMAS; ZEISSNER, BERND; SCHMITT, STEFAN; RUHMANN, LUKAS
To: ZF FRIEDRICHSHAFEN AG
Reel/Frame 045935/0928 →
Priority Claims (1)
DE 10 2017 209 609 · Jun 7, 2017 · national
Continuity (1)
Related Publication 20180355940A1 · Dec 13, 2018
Cited By (3)
US 12,449,015 US 12,460,736 US 12,529,408