IP Library Patent Application 15184534
Patent Application
App. No. 15/184,534

DAMPING FORCE VARIABLE SHOCK ABSORBER

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Quick Facts
Patent No.
US None
App. No.
15/184,534
Abstract

There is provided a compact damping force variable shock absorber capable of implementing different adjustments for a compression-side stroke and an extension-side stroke as initial settings. A damping force variable device in one embodiment includes: a main valve that opens and closes to control flow of oil caused by sliding of a piston in a cylinder, thereby generating damping force; a pilot chamber into which a portion of the flow of the oil is introduced so that internal pressure is applied to the main valve in a valve-closing direction; a pilot valve that opens and closes to adjust the internal pressure of the pilot chamber; and a communication passage that communicates the pilot chamber with a rod-side oil chamber or a piston-side fluid chamber.

Claims (52)

1 . A damping force variable shock absorber comprising:

a cylinder in which fluid is enclosed;

a piston slidably fitted into the cylinder;

a piston rod having one end connected to the piston and the other end extended outside the cylinder;

a rod-side fluid chamber partitioned by the piston and provided closer to the other end in an axial direction of the cylinder than the piston;

a piston-side fluid chamber provided closer to one end in the axial direction of the cylinder than the piston; and

a damping force variable device that controls flow of the fluid enclosed in the cylinder so that damping force can be varied, wherein

the damping force variable device includes:

a main valve that opens and closes to control the flow of the fluid caused by sliding of the piston in the cylinder, thereby generating damping force;

a pilot chamber into which a portion of the flow of the fluid is introduced so that internal pressure is applied to the main valve in a valve-closing direction;

a pilot valve that opens and closes to adjust the internal pressure of the pilot chamber; and

a communication passage that allows the pilot chamber or a passage between the pilot chamber and the pilot valve to communicate with the rod-side fluid chamber or the piston-side fluid chamber.

2 . The damping force variable shock absorber according to claim 1 , wherein

the communication passage allows the pilot chamber or the passage between the pilot chamber and the pilot valve to communicate with the rod-side fluid chamber.

3 . The damping force variable shock absorber according to claim 1 , wherein

the communication passage allows the pilot chamber or the passage between the pilot chamber and the pilot valve to communicate with the piston-side fluid chamber.

4 . The damping force variable shock absorber according to claim 1 , further comprising:

an outer tube provided on a vehicle body side, the other end of the piston rod being attached to the outer tube;

an inner tube as the cylinder slidably inserted in an inner circumference of the outer tube, the piston being slidably provided in an inner circumference of the inner tube;

a first bush provided on an inner circumference on an axle side of the outer tube;

a second bush provided on an outer circumference on the vehicle body side of the inner tube;

an annular fluid chamber surrounded by the outer tube, the inner tube, the first bush, and the second bush, a cross-sectional area of the piston rod being smaller than a cross-sectional area of the annular fluid chamber;

a bottomed cylindrical partition wall member, a portion of which is provided in the inner tube, the piston rod being slidably inserted in the partition wall member;

a fluid storage chamber partitioned by the partition wall member in the inner tube and formed closer to the vehicle body side than the partition wall member;

a fluid chamber partitioned by the partition wall member in the inner tube and formed closer to the axle side than the partition wall member, the rod-side fluid chamber being partitioned by the piston in the fluid chamber and formed closer to the vehicle body side than the piston, the piston-side fluid chamber partitioned by the piston in the fluid chamber and formed closer to the axle side than the piston;

a communication hole formed in the inner tube so as to allow the annular fluid chamber and the rod-side fluid chamber to communicate with each other;

a check valve provided in the partition wall member so as to allow only flow of fluid from the fluid storage chamber to the rod-side fluid chamber; and

a throttle provided in the partition wall member so as to restrict the flow of the fluid between the fluid storage chamber and the rod-side fluid chamber.

5 . The damping force variable shock absorber according to claim 1 , wherein

the damping force variable device is provided inside the piston.

6 . The damping force variable shock absorber according to claim 1 , wherein

the damping force variable device is provided outside the piston.

7 . The damping force variable shock absorber according to claim 1 , wherein

the damping force variable device further includes an actuator that generates thrust to the pilot valve in a valve-closing direction.

8 . The damping force variable shock absorber according to claim 2 , wherein

the damping force variable device is provided inside the piston.

9 . The damping force variable shock absorber according to claim 2 , wherein

the damping force variable device is provided outside the piston.

10 . The damping force variable shock absorber according to claim 2 , wherein

the damping force variable device further includes an actuator that generates thrust to the pilot valve in a valve-closing direction.

11 . The damping force variable shock absorber according to claim 3 , wherein

the damping force variable device is provided inside the piston.

12 . The damping force variable shock absorber according to claim 3 , wherein

the damping force variable device is provided outside the piston.

13 . The damping force variable shock absorber according to claim 3 , wherein

the damping force variable device further includes an actuator that generates thrust to the pilot valve in a valve-closing direction.

14 . The damping force variable shock absorber according to claim 4 , wherein

the damping force variable device is provided inside the piston.

15 . The damping force variable shock absorber according to claim 4 , wherein

the damping force variable device is provided outside the piston.

16 . The damping force variable shock absorber according to claim 4 , wherein

the damping force variable device further includes an actuator that generates thrust to the pilot valve in a valve-closing direction.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 16, 2016
From: MIWA, KAZUHIRO; KUROIWA, NAOYA
To: SHOWA CORPORATION
Reel/Frame 038934/0186 →