IP Library Granted Patent US 7,048,280
Granted Patent B2
US 7,048,280 · App. 10/620,493 · Granted May 23, 2006

Hydropneumatic axle suspension for vehicles having greatly varying axle loads

Assignee: Carl Freudenberg KG
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 7,048,280
App. No.
10/620,493
Granted
May 23, 2006
Kind
B2
Abstract

A hydropneumatic axle suspension for vehicles having greatly varying axle loads, in particular for front axles on tractors having hydraulic suspension cylinders, which are connected to hydropneumatic accumulators having a suspension circuit Z of the cylinder chambers that is pressure-regulated via a level-control device, and a pressure-regulated suspension circuit of the annular spaces for varying the spring rate C A . The axle-spring rate C A automatically changing via an electromagnetic actuator to increase the ride comfort in accordance with a predefined control mode. Additional, individual variations also being controllable.

Claims (33)

1. A hydropneumatic axle suspension having an adjustable axle-spring rate for a vehicle having varying axle loads, comprising:

a first hydropneumatic accumulator;

a hydraulic suspension cylinder having a cylinder chamber and an annular space;

a first pressure-regulated suspension circuit connecting the cylinder chamber to the first hydropneumatic accumulator;

a first regulating valve for regulating the first pressure-regulated suspension circuit;

a level-control device for regulating a pressure in the first suspension circuit; a second hydropneumatic accumulator;

a second pressure-regulated suspension circuit connecting the annular space to the second hydropneumatic accumulator;

a second regulating valve for regulating the second pressure-regulated suspension circuit; and

an electromagnetic actuator configured to automatically change the axle spring rate according to a predefined control mode.

2. The hydropneumatic axle suspension as recited in claim 1 further comprising an electronic control unit linked to the electromagnetic actuator and configured to process electronic measured data.

3. The hydropneumatic axle suspension as recited in claim 1 wherein the axle-spring rate is adjustable between a first and a second predefined spring rate using external control signals.

4. The hydropneumatic axle suspension as recited in claim 1 wherein the electromagnetic actuator includes a proportional pressure-regulating valve configured to proportionally regulate the axle-spring rate between a first and a second constant pressure value.

5. The hydropneumatic axle suspension as recited in claim 4 wherein the proportional pressure-regulating valve is further configured to regulate the axle-spring rate to a selectable constant pressure.

6. The hydropneumatic axle suspension as recited in claim 1 , wherein the first regulating valve includes a first 2/2 directional control valve for regulating the first suspension circuit and the second regulating valve includes a second 2/2 directional control valve for regulating the second suspension circuit.

7. The hydropneumatic axle suspension as recited in claim 6 , wherein the first and second 2/2 directional control valves hydraulically block the first and second suspension circuits when a level position is reached.

8. The hydropneumatic axle suspension as recited in claim 1 , wherein the hydropneumatic axle suspension is for a front axle of a tractor.

9. A hydropneumatic axle suspension having an adjustable axle-spring rate for a vehicle having varying axle loads, comprising:

a first hydropneumatic accumulator;

a hydraulic suspension cylinder having a cylinder chamber and an annular space;

a first pressure-regulated suspension circuit connecting the cylinder chamber to the first hydropneumatic accumulator;

a level-control device for regulating a pressure in the first suspension circuit a second hydropneumatic accumulator;

a second pressure-regulated suspension circuit connecting the annular space to the second hydropneumatic accumulator;

an electromagnetic actuator configured to automatically change the axle spring rate according to a predefined control mode, wherein the electromagnetic actuator includes a proportional pressure-regulating valve configured to proportionally regulate the axle-spring rate between a first and a second constant pressure value; and

a shuttle valve and a first pressure line hydraulically linking the shuttle valve to the pressure-regulating valve so that when the pressure-regulating valve is not energized by a current, the shuttle valve is able to relieve the first pressure line of pressure.

10. The hydropneumatic axle suspension as recited in claim 9 further comprising an orifice valve, a 2/2 directional control valve and a supply line, a control line of the shuttle valve being connected between the 2/2 directional control valve and the orifice valve for sensing a pressure in the cylinder chambers.

11. A hydropneumatic axle suspension having an adjustable axle-spring rate for a vehicle having varying axle loads, comprising:

a first hydropneumatic accumulator;

a hydraulic suspension cylinder having a cylinder chamber and an annular space;

a first pressure-regulated suspension circuit connecting the cylinder chamber to the first hydropneumatic accumulator;

a level-control device for regulating a pressure in the first suspension circuit; a second hydropneumatic accumulator;

a second pressure-regulated suspension circuit connecting the annular space to the second hydropneumatic accumulator;

an electromagnetic actuator configured to automatically change the axle spring rate according to a predefined control mode; and

a first orifice valve installed in a supply line of the first suspension circuit and a second orifice valve installed in a supply line of the second suspension circuit, the orifice valves being used for adapting a control time of the change in the axle-spring rate.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 16, 2003
From: BRANDENBURGER, WALTER
To: CARL FREUDENBERG KG
Reel/Frame 014297/0443 →
Priority Claims (1)
DE 102 32 769 · Jul 18, 2002 · national
Continuity (1)
Related Publication 20050258607A1 · Nov 24, 2005