Hydraulic suspension damper with hydro-mechanical stroke stop

US9909638B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9909638-B2
Application numberUS-201615367301-A
CountryUS
Kind codeB2
Filing dateDec 2, 2016
Priority dateDec 2, 2015
Publication dateMar 6, 2018
Grant dateMar 6, 2018

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  1. Title

    What the patent document calls the invention.

  2. Abstract

    A short plain-language summary of the technical disclosure.

  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 hydraulic suspension damper includes a tube having an opened end and a closed end defining a compartment. A main piston is disposed in the compartment dividing the compartment into a compression chamber and a rebound chamber. A piston rod is attached to the main piston. A rod guide is disposed at said opened end. A stroke stop arrangement includes an insert and an additional piston attached to the piston rod. The insert has a narrowed section including an inner surface defining at least one recess between the distal end and the rod guide and extends axially along the insert in fluid communication with the compression chamber for allowing working liquid flow from the rebound chamber to the compression chamber during the rebound stroke. The at least one recess includes three recesses disposed equidistantly and spaced from one another.

First claim

Opening claim text (preview).

What is claimed is: 1. A hydraulic damper ( 1 ), comprising a tube ( 2 ) filled with a working liquid, a main piston assembly ( 3 ) disposed slidably inside the tube ( 2 ), attached to a piston rod ( 4 ) led outside the damper ( 1 ) through a sealed piston rod guide ( 5 ) and dividing the tube ( 2 ) into a rebound chamber ( 7 ) and a compression chamber ( 9 ), rebound ( 31 ) and compression ( 32 ) valve assemblies to control the flow of the working liquid within the tube ( 2 ) during rebound and compression stroke of the damper ( 1 ), wherein at least one end of the tube ( 2 ) is provided with an additional stroke stop arrangement ( 11 ) comprising: a narrowed section ( 124 ) of a diameter smaller than the diameter of the tube ( 2 ), having an inlet ( 125 ) opening to the tube ( 2 ) and provided at least partially with at least one axial groove ( 122 ) having the cross-sectional area decreasing from said inlet ( 125 ) along said narrowed section ( 124 ), a spring ( 14 ) disposed at least partially in said narrowed section ( 124 ) of the tube ( 2 ) and secured to said at least one end of the tube ( 2 ), and an additional piston assembly ( 13 ) having a diameter smaller than the diameter of the tube ( 2 ), displaceable along with the main piston assembly ( 3 ) apt to be slidably disposed in said narrowed section ( 124 ) of the tube ( 2 ) and apt to engage said spring ( 14 ) to generate additional damping force, said additional piston assembly ( 13 ) is further provided with a shaped sleeve ( 134 ) distal with respect to the main piston assembly ( 3 ), a sealing ring ( 133 ) apt to make a sliding fit with the internal wall of said narrowed section ( 124 ) of the tube ( 2 ), and a supporting sleeve ( 132 ) proximal with respect to the main piston assembly ( 3 ), wherein the sealing ring ( 133 ) surrounds an inner axial rim ( 1343 ) of the shaped sleeve ( 134 ) and is axially displaceable between the supporting sleeve ( 132 ) and an outer axial rim ( 1344 ) of the shaped sleeve ( 134 ) and wherein the inner axial rim ( 1343 ) defines at least one axial channel ( 1341 ) in fluid connection with at least one radial channel ( 1342 ) defined in the outer axial rim ( 1344 ). 2. The hydraulic damper according to claim 1 , wherein said inlet ( 125 ) of said narrowed section ( 124 ) of the tube ( 2 ) has a form of a conical section. 3. The hydraulic damper according to claim 2 , wherein said inlet ( 125 ) of said narrowed section ( 124 ) of the tube ( 2 ) is provided with at least one radial groove ( 121 ) that extends into said narrowed section ( 124 ) and joins with said at least one axial groove ( 122 ). 4. The hydraulic damper according to claim 3 , wherein said additional piston assembly ( 13 ) is further provided with a bumper ( 135 ) apt to engage said spring ( 14 ) and secured to the piston rod ( 4 ). 5. The hydraulic damper according to claim 4 , wherein said stroke stop arrangement ( 11 ) is a rebound stroke stop arrangement. 6. The hydraulic damper according to claim 2 , wherein said stroke stop arrangement ( 11 ) is a rebound stroke stop arrangement. 7. The hydraulic damper according to claim 3 , wherein said stroke stop arrangement ( 11 ) is a rebound stroke stop arrangement. 8. The hydraulic damper according to claim 2 , wherein said additional piston assembly ( 13 ) is further provided with a bumper ( 135 ) apt to engage said spring ( 14 ) and secured to the piston rod ( 4 ). 9. The hydraulic damper according to claim 8 , wherein said stroke stop arrangement ( 11 ) is a rebound stroke stop arrangement. 10. The hydraulic damper according to claim 1 , wherein said inlet ( 125 ) of said narrowed section ( 124 ) of the tube ( 2 ) is provided with at least one radial groove ( 121 ) that extends into said narrowed section ( 124 ) and joins with said at least one axial groove ( 122 ). 11. The hydraulic damper according to claim 10 , wherein said additional piston assembly ( 13 ) is further provided with a bumper ( 135 ) apt to engage said spring ( 14 ) and secured to the piston rod ( 4 ). 12. The hydraulic damper according to claim 11 , wherein said stroke stop arrangement ( 11 ) is a rebound stroke stop arrangement. 13. The hydraulic damper according to claim 10 , wherein said stroke stop arrangement ( 11 ) is a rebound stroke stop arrangement. 14. The hydraulic damper according to claim 1 , wherein said additional piston assembly ( 13 ) is further provided with a bumper ( 135 ) apt to engage said spring ( 14 ) and secured to the piston rod ( 4 ). 15. The hydraulic damper according to claim 14 , wherein said stroke stop arrangement ( 11 ) is a rebound stroke stop arrangement. 16. The hydraulic damper according to claim 1 , wherein said narrowed section ( 124 ) of the tube ( 2 ) has a form of an insert ( 12 ) made of plastic. 17. The hydraulic damper according to claim 1 , wherein said stroke stop arrangement ( 11 ) is a rebound stroke stop arrangement.

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What does patent US9909638B2 cover?
A hydraulic suspension damper includes a tube having an opened end and a closed end defining a compartment. A main piston is disposed in the compartment dividing the compartment into a compression chamber and a rebound chamber. A piston rod is attached to the main piston. A rod guide is disposed at said opened end. A stroke stop arrangement includes an insert and an additional piston attached t…
Who is the assignee on this patent?
Beijingwest Ind Co Ltd, Beijingwest Ind Co Ltd
What technology area does this patent fall under?
Primary CPC classification B60G13/08. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Mar 06 2018 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 2 related publications on this page (citations in our corpus or others sharing the same primary CPC).