IP Library Granted Patent US 12,227,047
Granted Patent B2
US 12,227,047 · App. 17/726,735 · Granted Feb 18, 2025

Bellows accumulator fixation apparatus for suspension dampers

Inventors: Jan Vochten (Sint-Truiden, BE); Stefan Peerenbooms (Sint Truiden, BE); Tom Daniels (Testelt, BE); Gunter Vandenborne (Sint-Truiden, BE); Kenny Berwaerts (Gingelom, BE)
Assignee: DRiV Automotive Inc.
B60G13/14B60G13/10B60G17/08B60G2202/242B60G2206/41B60G2500/114
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Quick Facts
Patent No.
US 12,227,047
App. No.
17/726,735
Granted
Feb 18, 2025
Kind
B2
Abstract

An accumulator for a vehicle suspension damper, which includes an outer shell with an open end that connects to an accumulator port on the damper and a distal end, opposite the open end, which includes an end wall that extends radially inward to a gas charging port. A bellows assembly, which includes an annular bellows wall extending between proximal and distal plates, is positioned inside the outer shell to define a pressurized gas chamber inside the accumulator that is arranged in fluid communication with the gas charging port. The gas charging port includes a stem that extends inwardly from the end wall of the outer shell and the distal plate of the bellows assembly has an inner diameter that is received on the stem. The inner diameter of the distal plate is coupled to the stem of the gas charging port by a fixation component.

Claims (60)

1. A damper, comprising:

a damper housing;

a pressure tube arranged within the damper housing;

a piston slidably disposed within the pressure tube defining a rebound chamber and a compression chamber;

a piston rod that is fixedly coupled to the piston; and

an accumulator connected to an accumulator port on the damper housing,

wherein the accumulator includes an outer shell with an open end that is coupled to the accumulator port on the damper housing and a distal end having an end wall that extends radially inward to a gas charging port, a bellows assembly having an annular bellows wall extending between a proximal plate and a distal plate to define a pressurized gas chamber therein that is arranged in fluid communication with the gas charging port, and an accumulation chamber that is arranged in fluid communication with the compression chamber and positioned between the distal plate of the bellows assembly and the open end of the outer shell,

wherein the gas charging port includes a stem that extends inwardly from the end wall of the outer shell and wherein an inner diameter of the distal plate of the bellows assembly is received on and is coupled to the stem of the gas charging port by a fixation component,

wherein the fixation component is a circlip that engages both the stem and the distal plate of the bellows assembly,

wherein the stem of the gas charging port has a tubular wall with an outwardly facing groove, the inner diameter of the distal plate of the bellows assembly includes an inwardly facing groove, and the circlip is received within the outwardly facing groove on the stem of the gas charging port and the inwardly facing groove on the distal plate of the bellows assembly to couple the distal plate of the bellows assembly to the stem of the gas charging port at a fixed axial position.

2. The damper of claim 1 , wherein the distal plate of the bellows assembly includes an annular collar that is positioned co-axially with the inner diameter of the distal plate and that extends axially from the distal plate towards the end wall of the outer shell and wherein the accumulator includes a biasing ring that extends annularly about the annular collar of the distal plate and axially between the distal plate and the end wall of the outer shell.

3. The damper of claim 2 , wherein the biasing ring is configured to apply a biasing force to the distal plate that urges the distal plate away from the end wall of the outer shell, wherein gas pressure within the pressurized gas chamber of the bellows assembly applies a counter force on the distal plate that urges the distal plate towards the end wall of the outer shell, and wherein increasing the gas pressure within the pressurized gas chamber of the bellows assembly by adding gas to the pressurized gas chamber through the gas charging port operates to slide the distal plate towards the end wall when the counter force applied by the gas pressure to the distal plate exceeds the biasing force of the biasing ring and operates to self-seat the circlip in the outwardly facing groove on the stem of the gas charging port and the inwardly facing groove on the distal plate of the bellows assembly.

4. The damper of claim 1 , wherein each of the distal and proximal plates of the bellows assembly has a disc shape and an outer diameter that is fixed to the annular bellows wall.

5. A damper, comprising:

a damper housing;

a pressure tube arranged within the damper housing;

a piston slidably disposed within the pressure tube defining a rebound chamber and a compression chamber;

a piston rod that is fixedly coupled to the piston; and

an accumulator connected to an accumulator port on the damper housing,

wherein the accumulator includes an outer shell with an open end that is coupled to the accumulator port on the damper housing and a distal end having an end wall that extends radially inward to a gas charging port, a bellows assembly having an annular bellows wall extending between a proximal plate and a distal plate to define a pressurized gas chamber therein that is arranged in fluid communication with the gas charging port, and an accumulation chamber that is arranged in fluid communication with the compression chamber and positioned between the distal plate of the bellows assembly and the open end of the outer shell,

wherein the gas charging port includes a stem that extends inwardly from the end wall of the outer shell and wherein an inner diameter of the distal plate of the bellows assembly is received on and is coupled to the stem of the gas charging port by a fixation component,

wherein the fixation component is a blind rivet nut that is attached to a terminal end of the stem and includes a rivet nut bore.

6. The damper of claim 5 , wherein the distal plate of the bellows assembly includes an annular collar that extends annularly about the stem of the gas charging port and terminates at a collar flange that has a smaller diameter than the inner diameter of the distal plate.

7. The damper of claim 6 , wherein the gas charging port includes a mechanical deformation where the blind rivet nut and the stem meet, the mechanical deformation has a larger diameter than the smaller diameter of the collar flange, and the collar flange is positioned axially between the stem and the mechanical deformation to couple the distal plate of the bellows assembly to the stem of the gas charging port at a fixed axial position.

8. The damper of claim 5 , wherein the gas charging port has a tubular wall with a pre-assembled diameter and a pre-assembled length and wherein the tubular wall is configured to deform to an assembled diameter that is greater than the pre-assembled diameter and an assembled length that is less than the pre-assembled length when the tubular wall is compressed by a rivet tool to couple the distal plate of the bellows assembly to the stem of the gas charging port at a fixed axial position.

9. A damper, comprising:

a damper housing;

a pressure tube arranged within the damper housing;

a piston slidably disposed within the pressure tube defining a rebound chamber and a compression chamber;

a piston rod that is fixedly coupled to the piston; and

an accumulator connected to an accumulator port on the damper housing,

wherein the accumulator includes an outer shell with an open end that is coupled to the accumulator port on the damper housing and a distal end having an end wall that extends radially inward to a gas charging port, a bellows assembly having an annular bellows wall extending between a proximal plate and a distal plate to define a pressurized gas chamber therein that is arranged in fluid communication with the gas charging port, and an accumulation chamber that is arranged in fluid communication with the compression chamber and positioned between the distal plate of the bellows assembly and the open end of the outer shell,

wherein the gas charging port includes a stem that extends inwardly from the end wall of the outer shell and wherein an inner diameter of the distal plate of the bellows assembly is received on and is coupled to the stem of the gas charging port by a fixation component,

wherein a cylindrical bore surface extends about the inner diameter of the distal plate and wherein the cylindrical bore surface includes an annular groove that receives a sealing element.

10. A damper, comprising:

a damper housing;

a pressure tube arranged within the damper housing;

a piston slidably disposed within the pressure tube defining a rebound chamber and a compression chamber;

a piston rod that is fixedly coupled to the piston; and

an accumulator connected to an accumulator port on the damper housing,

wherein the accumulator includes an outer shell with an open end that is coupled to the accumulator port on the damper housing and a distal end having an end wall that extends radially inward to a gas charging port, a bellows assembly having an annular bellows wall extending between a proximal plate and a distal plate to define a pressurized gas chamber therein that is arranged in fluid communication with the gas charging port, and an accumulation chamber that is arranged in fluid communication with the compression chamber and positioned between the distal plate of the bellows assembly and the open end of the outer shell,

wherein the gas charging port includes a stem that extends inwardly from the end wall of the outer shell and wherein an inner diameter of the distal plate of the bellows assembly is received on and is coupled to the stem of the gas charging port by a fixation component,

wherein the open end of the outer shell of the accumulator includes threads that engage the accumulator port of the damper housing.

11. A damper, comprising:

a damper housing;

a pressure tube arranged within the damper housing;

a piston slidably disposed within the pressure tube defining a rebound chamber and a compression chamber;

a piston rod that is fixedly coupled to the piston; and

an accumulator connected to an accumulator port on the damper housing,

wherein the accumulator includes an outer shell with an open end that is coupled to the accumulator port on the damper housing and a distal end having an end wall that extends radially inward to a gas charging port, a bellows assembly having an annular bellows wall extending between a proximal plate and a distal plate to define a pressurized gas chamber therein that is arranged in fluid communication with the gas charging port, and an accumulation chamber that is arranged in fluid communication with the compression chamber and positioned between the distal plate of the bellows assembly and the open end of the outer shell,

wherein the gas charging port includes a stem that extends inwardly from the end wall of the outer shell and wherein an inner diameter of the distal plate of the bellows assembly is received on and is coupled to the stem of the gas charging port by a fixation component,

wherein the accumulator includes a retainer ring that is received within the open end of the outer shell to prevent the proximal plate and annular bellows wall from sliding out of the open end of the outer shell.

12. An accumulator for a suspension damper, the accumulator comprising:

an outer shell with an open end configured to attach to the suspension damper and a distal end having an end wall that extends radially inward to a gas charging port;

a bellows assembly having an annular bellows wall extending between a proximal plate and a distal plate to define a pressurized gas chamber therein that is arranged in fluid communication with the gas charging port;

an accumulation chamber positioned between the distal plate of the bellows assembly and the open end of the outer shell;

a stem that extends from the end wall of the outer shell into the pressurized gas chamber; and

a fixation component that couples the distal plate of the bellows assembly plate to the stem,

wherein the fixation component is a circlip that engages both the stem and the distal plate of the bellows assembly,

wherein the stem of the gas charging port has an outwardly facing groove, the distal plate of the bellows assembly includes an inwardly facing groove, and the circlip is received within the outwardly facing groove on the stem of the gas charging port and the inwardly facing groove on the distal plate of the bellows assembly to couple the distal plate of the bellows assembly to the stem of the gas charging port at a fixed axial position.

Assignments (4)
CHANGE OF NAME Recorded Aug 20, 2025
From: DRIV AUTOMOTIVE INC.
To: ADVANCED SUSPENSION TECHNOLOGY LLC
Reel/Frame 072553/0175 →
PATENT SECURITY AGREEMENT (ABL) Recorded Apr 7, 2023
From: TENNECO INC.; DRIV AUTOMOTIVE INC.; FEDERAL-MOGUL CHASSIS LLC; FEDERAL-MOGUL IGNITION LLC; FEDERAL-MOGUL MOTORPARTS LLC; FEDERAL-MOGUL POWERTRAIN LLC; FEDERAL-MOGUL WORLD WIDE LLC; TENNECO AUTOMOTIVE OPERATING COMPANY INC.; THE PULLMAN COMPANY
To: CITIBANK, N.A., AS COLLATERAL AGENT
Reel/Frame 063268/0506 →
NOTICE OF GRANT OF SECURITY INTEREST IN PATENTS (FIRST LIEN) Recorded Nov 22, 2022
From: DRIV AUTOMOTIVE INC.; FEDERAL-MOGUL CHASSIS LLC; FEDERAL-MOGUL IGNITION LLC; FEDERAL-MOGUL MOTORPARTS LLC; FEDERAL-MOGUL POWERTRAIN LLC; FEDERAL-MOGUL WORLD WIDE LLC; TENNECO AUTOMOTIVE OPERATING COMPANY INC.; TENNECO INC.; THE PULLMAN COMPANY
To: CITIBANK, N.A., AS COLLATERAL AGENT
Reel/Frame 061989/0689 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 22, 2022
From: VOCHTEN, JAN; PEERENBOOMS, STEFAN; DANIELS, TOM; VANDENBORNE, GUNTER; BERWAERTS, KENNY
To: DRIV AUTOMOTIVE INC.
Reel/Frame 059779/0620 →
Continuity (1)
Related Publication 20230339278A1 · Oct 26, 2023
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