Shock absorber having orifice check disc

US2016146286A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2016146286-A1
Application numberUS-201414553118-A
CountryUS
Kind codeA1
Filing dateNov 25, 2014
Priority dateNov 25, 2014
Publication dateMay 26, 2016
Grant date

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A shock absorber for a vehicle includes a pressure tube that defines a fluid chamber and a piston disposed within the fluid chamber. The piston divides the fluid chamber into an upper working chamber and a lower working chamber, and defines a compression passage and a rebound passage. A valve disc assembly of the shock absorber engages the piston and controls the flow of fluid between the upper and lower working chambers. The valve disc assembly includes an orifice check disc and an orifice disc. The orifice disc defines a bleed passage between the upper and lower working chambers. The orifice check disc is disposed between the piston and the orifice disc. The orifice check disc closes the bleed passage as the fluid flows in a first direction and opens the bleed passage as the fluid flows in a second direction opposite of the first direction.

First claim

Opening claim text (preview).

What is claimed is: 1 . A shock absorber for a vehicle comprising: a pressure tube defining a fluid chamber; a piston disposed within the fluid chamber, the piston dividing the fluid chamber into an upper working chamber and a lower working chamber, the piston defining a compression passage and a rebound passage, wherein the compression passage and the rebound passage extend through the piston between the upper working chamber and the lower working chamber; and a valve disc assembly engaging the piston and controlling a flow of fluid between the upper working chamber and the lower working chamber, the valve disc assembly including an orifice check disc and an orifice disc, wherein the orifice disc defines an orifice, and the orifice check disc is flexible and disposed between the piston and the orifice disc, the orifice check disc controls the flow of fluid through the orifice such that fluid does not flow through the orifice during a rebound stroke and flows through the orifice during a compression stroke. 2 . The shock absorber of claim 1 wherein the orifice check disc flexes toward the orifice disc during the rebound stroke and flexes towards the piston during the compression stroke. 3 . The shock absorber of claim 1 wherein the orifice check disc includes one or more moveable sections defined by one or more grooves, and the moveable sections flex toward the piston and flex toward the orifice disc based on the flow of the fluid. 4 . The shock absorber of claim 1 wherein the piston includes a support land that circumferentially extends along a surface of the piston, and the orifice check disc of the valve disc assembly is disposed on the land. 5 . The shock absorber of claim 1 wherein the piston includes a support land that circumferentially extends along a surface of the piston, and the orifice check disc of the valve disc assembly is disposed within the land and the orifice disc is disposed on the land. 6 . The shock absorber of claim 1 wherein the orifice check disc includes a plurality of tabs defined by one or more grooves, the plurality of tabs have an arc-like shape and are disposed between an inner diameter and an outer diameter of the orifice check disc, the plurality of tabs flex toward the piston and flex toward the orifice disc based on the flow of fluid. 7 . The shock absorber of claim 1 wherein the orifice check disc defines a swirl-like groove, portions of the orifice check disc that define the swirl-like groove flex toward the piston and flex toward the orifice disc based on the flow of fluid. 8 . A shock absorber for a vehicle comprising: a pressure tube defining a fluid chamber; a piston disposed within the fluid chamber, the piston dividing the fluid chamber into an upper working chamber and a lower working chamber, the piston defining a compression passage and a rebound passage, wherein the compression passage and the rebound passage extend through the piston between the upper working chamber and the lower working chamber; and a valve disc assembly engaging the piston and controlling a flow of fluid between the upper working chamber and the lower working chamber, the valve disc assembly including an orifice check disc and an orifice disc, wherein the orifice disc defines an orifice, the orifice forms a bleed passage between the upper working chamber and the lower working chamber, the orifice check disc is disposed between the piston and the orifice disc, and, at low fluid speeds, the orifice check disc closes the bleed passage as the fluid flows in a first direction and opens the bleed passage as the fluid flows in a second direction opposite of the first direction. 9 . The shock absorber of claim 8 wherein, in the first direction, fluid flows from the upper working chamber toward the lower working chamber and, in the second direction, fluid flows from the lower working chamber toward the upper working chamber. 10 . The shock absorber of claim 8 wherein the valve disc assembly controls the flow of fluid through the rebound passage. 11 . The shock absorber of claim 8 wherein orifice check disc is moveable based on the flow of fluid. 12 . The shock absorber of claim 8 wherein the orifice check disc presses against the orifice disc when fluid flows in the first direction and moves away from the orifice disc when fluid flows in the second direction. 13 . The shock absorber of claim 8 wherein: the orifice check disc includes a plurality of tabs defined by one or more grooves, the plurality of tabs have an arc-like shape and are disposed between an inner diameter and an outer diameter of the orifice check disc, and the plurality of tabs move toward and press against the orifice disc when fluid flows in the first direction and move away from the orifice disc when fluid flows in the second direction. 14 . The shock absorber of claim 8 wherein the orifice check disc defines a swirl-like groove, portions of the orifice check disc that define the swirl-like groove move toward and press against the orifice disc when fluid flows in the first direction and move away from the orifice disc when fluid flows in the second direction. 15 . A shock absorber for a vehicle comprising: a pressure tube defining a fluid chamber; a piston disposed within the fluid chamber, the piston dividing the fluid chamber into an upper working chamber and a lower working chamber, the piston defining a compression passage and a rebound passage, wherein the compression passage and the rebound passage extend through the piston between the upper working chamber and the lower working chamber; a compression valve assembly engaging the piston, wherein the compression valve assembly controls a flow of fluid through the compression passage; and a rebound valve assembly engaging the piston and controlling the flow of fluid through the rebound passage, the rebound valve assembly including a valve disc assembly, the valve disc assembly including an orifice check disc and an orifice disc, wherein the orifice disc defines an orifice, the orifice forms a bleed passage between the upper working chamber and the lower working chamber, and the orifice check disc is disposed between the piston and the orifice disc, and the orifice check disc closes the bleed passage when fluid flows from the upper working chamber toward the lower working chamber and opens the bleed passage when fluid flows from the lower working chamber toward the upper working chamber. 16 . The shock absorber of claim 15 wherein: the orifice check disc flexes toward the orifice disc when fluid flows from the upper working chamber toward the lower working chamber, and the orifice check disc flexes away from the orifice disc when fluid flows from the lower working chamber toward the upper working chamber. 17 . The shock absorber of claim 15 wherein the valve disc assembly deflects and opens the rebound passage during the rebound stroke at mid to high fluid speeds which is greater than low fluid speed. 18 . The shock absorber of claim 15 wherein: the bleed passage defined by the orifice disc of the rebound valve assembly is a rebound bleed passage, and the compression valve assembly defines a compression bleed passage, fluid flows between the upper working chamber and the lower working chamber via the compression bleed passage at low fluid speeds when fluid flows from the upper working chamber toward the lower working chamber and when fluid flows from the lower working chamber toward the upper working chamber. 19 . The shock absorber o

Assignees

Inventors

Classifications

  • with a closed cylinder and a piston separating two or more working spaces therein · CPC title

  • F16F9/3484Primary

    characterised by features of the annular discs per se, singularly or in combination · CPC title

  • characterised by features of supporting elements intended to guide or limit the movement of the annular discs (F16F9/3488 takes precedence) · CPC title

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What does patent US2016146286A1 cover?
A shock absorber for a vehicle includes a pressure tube that defines a fluid chamber and a piston disposed within the fluid chamber. The piston divides the fluid chamber into an upper working chamber and a lower working chamber, and defines a compression passage and a rebound passage. A valve disc assembly of the shock absorber engages the piston and controls the flow of fluid between the upper…
Who is the assignee on this patent?
Tenneco Automotive Operating
What technology area does this patent fall under?
Primary CPC classification F16F9/3484. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Thu May 26 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).