Hydrostatic transmission

6318080
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Inventors

Hauser, Raymond
Schreier, John
Houser, Michael
Ooink, Juan Pedro Roberto A.

Application #

773994

Filed

Feb-1-2001

Published

Nov-20-2001

Current US Class

060/468
060/487

International Classes

F16D 031/02

Field of Search

60/468 60/487 60/494

Assignee

Hydro-Gear Limited Partnership (Sullivan, IL)

Examiners

Look; Edward K.

Attorney, Agent or Firm

Altheimer & Gray

US Patent References

4167855   Hydrostatic transmi...
4856368   HST (hydrostatic tr...
4870820   HST (hydro-static-tr...
4899541   Axle driving appar...
4905472   Axle driving appar...
4914907   Axle driving appar...
4932209   Axle driving appar...
4986073   Axle driving appar...
5010733   Hydrostatic transmi...
5042252   Neutral shifting me...
5074195   Fixed swash plate f...
5094077   Hydrostatic transmi...
5136845   Hydrostatic transmi...
5146748   Axle driving appar...
5163293   Axle driving appar...
5182966   Control mechanism...
5201692   Rider transaxle ha...
5289738   Hydrostatic transax...
5311740   Hydraulic power tr...
5314387   Hydrostatic transmi...
5333451   Oil pressure control...
5339631   Axle driving system
5373697   Hydraulic fluid syst...
5440951   Axle driving system
5546852   Food preparation a...
5555727   Auxiliary pumps fo...
5588294   Hydrostatic transmi...
5771758   Axle driving appar...
5794443   Axle driving appar...
5836159   Mechanism of retur...
5950500   Axle driving appar...
6122996   Hydrostatic transmi...
6185936   Bypass for a hydros...
 

Referenced by:

View Backward References

Other References

Photograph dated '96 34 of Model 310-3000 integrated hydrostatic transaxle.

Citation

Cite This Patent

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Abstract
A hydrostatic transmission design incorporating a filter housing mounted adjacent to check valves in a center section. The filter housing can be secured to the center section by the check valves, which also may include high pressure bleeds to allow hydraulic fluid to flow from the hydraulic circuit. A shield may be located between the high pressure bleeds and the filter to prevent damage by the fluid to the filter as it exits the bleeds. The filter housing can also include integral projections on which a bypass actuation member can be mounted.
 
Claims
We claim:

1. A hydrostatic transmission, comprising

a casing forming a sump for hydraulic fluid;

a center section mounted in said casing and having hydraulic porting;

a hydraulic pump mounted to said center section;

a hydraulic motor mounted to said center section and operatively connected to said pump through said hydraulic porting;

a plurality of check valves operatively connected to said center section to enable hydraulic fluid flow between said sump and said hydraulic porting; and

a filter housing containing a filter and mounted in said casing, said filter housing secured to said center section by said check valves.

2. A hydrostatic transmission as set forth in claim 1, wherein said hydraulic pump is an axial piston pump.



Description
BACKGROUND

This invention relates to an improved design of a hydrostatic transmission ("HST") and includes several novel features. Hydrostatic transmissions are well known in the art, and are more fully described in, e.g., U.S. Pat. No. 5,314,387, which is incorporated herein in its entirety. Many of the inventions described herein can also be adapted for use in an integrated hydrostatic transmission ("IHT") incorporating output gearing and axles within a single housing.

In general, an HST has a hydraulic pump and a hydraulic motor mounted in a housing. The pump and motor are hydraulically linked through a generally closed circuit, and both consist of a rotatable body with pistons mounted therein. Hydraulic fluid such as oil is maintained in the closed circuit, and the HST generally has a sump or reservoir with which the closed circuit can exchange oil. This sump may be formed by the housing itself.

The pump is usually driven by an external motive source such as pulleys or belts connected to an internal combustion engine. The pump pistons engage a moveable swash plate and, as the pump is rotated by an input source driven by the external engine, the pistons engage the swash plate. Other HST designs may use a radial piston or ball piston pump and motor design, but the general operation is similar, and this invention is not limited to use with a specific design. Movement of the pump pistons creates movement of the hydraulic fluid from the pump to the motor, causing rotation thereof. The motor pistons are engaged against a fixed plate, and rotation of the motor drives an output shaft engaged thereto. This output shaft may be linked to mechanical gearing and output axles, which may be internal to the HST housing, as in an IHT, or external thereto.
 
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