Pump

6332393
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Inventors

Trimble, Robert

Application #

354850

Filed

Jul-16-1999

Published

Dec-25-2001

Current US Class

092/12.2
092/128
417/239

International Classes

F01B 013/04; F01B 029/00

Field of Search

92/12.2 92/86 92/82 92/128 417/238 417/239 417/269

Assignee

Hydro-Gear Limited Partnership (Sullivan, IL)

Examiners

Look; Edward K.

Attorney, Agent or Firm

McDonough; Thomas C., Jarosik; Gary R.

US Patent References

4167855   Hydrostatic transmi...
4690036   Axial piston pump...
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...
4934253   Axial piston pump
4986073   Axle driving appar...
5042252   Neutral shifting me...
5074195   Fixed swash plate f...
5094077   Hydrostatic transmi...
5136845   Hydrostatic transmi...
5146748   Axle driving appar...
5156576   Compact integrated...
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
5546752   Combination valve...
5555727   Auxiliary pumps fo...
5588294   Hydrostatic transmi...
5628189   Charge pump for a...
5771758   Axle driving appar...
5794443   Axle driving appar...
5819537   Axle driving appar...
5836159   Mechanism of retur...
5862664   Charging pump for...
5873287   Transmission for se...
5887484   Transmission for se...
5913950   Transmission for a...
 

Referenced by:

View Backward References

Other References

Daikin Oil Hydraulic Equipment, BDX Series Hydrostatic Transmission.

Citation

Cite This Patent

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Abstract
A symmetric pump having a symmetric end cap attached to a symmetric housing is disclosed. The end cap is attachable in a first position or a second position wherein the second position is rotated relative to the housing. A trunnion arm extends in a first direction and a system port opens in a first orientation when the housing is connected to the end cap in a first position. The end cap includes structure such that the housing may be connected in a second position so that the trunnion arm extends in a second direction while maintaining the system port opening in the first orientation. The end cap may be provided with a symmetric porting system. A control device for affecting movement of the swashplate is disclosed. Methods of locking the swashplate into a predetermined position are also taught.
 
Claims
The invention claimed is:

1. A hydraulic pump comprising:

a symmetric housing rotatably supporting a pump shaft; and

a symmetric end cap attached to the symmetric housing, wherein the symmetric end cap comprises a porting system including two case drains, and the end cap is attachable to the housing in two different orientations and at least one of the two case drains is operational in each of the orientations.

2. A hydraulic pump comprising:

a symmetric housing rotatably supporting a pump shaft; and

a symmetric end cap attached to the symmetric housing, wherein the symmetric end cap comprises:

a porting system including two case drains; and



Description
BACKGROUND OF THE INVENTION

The present invention relates to hydraulic pumps, although other uses will be apparent from the teachings disclosed herein. In particular, the present invention relates to Bantam Duty Pumps (BDP) which can be combined with motors and other remotely-located units. When used in this manner, these BDP units provide an infinitely variable flow rate between zero and maximum in both forward and reverse modes of operation.

Pumps discussed herein are of the axial piston design which utilize spherical-nosed pistons, although variations within the spirit of this invention will be apparent to those with skill in the art and the invention should not be read as being limited to such pumps. One such prior art pump is shown in FIG. 1. The pump is a variable displacement pump 10 designed for vehicle applications. A compression spring 12 located inside each piston 14 holds the nose 16 of the piston 14 against a thrust-bearing 18. A plurality of such pistons positioned about the center of the cylinder 20 forms a cylinder block kit 22. The variable displacement pump 10 features a cradle mounted swashplate 24 with direct-proportional displacement control. Tilt of swashplate 24 causes oil to flow from pump 10; reversing the direction of tilt of the swashplate 24 reverses the flow of oil from the pump 10. The pump is fluidly connected with a motor to form a pump-motor circuit having a high pressure side and a low pressure side through which the oil flows. See generally FIG. 4c. Controlling the oil flow direction, i.e. changing the high and low pressure sides, controls the motor output rotation. Tilt of the swashplate 24 is controlled through operation of a swashplate control shaft 26 (also referred to herein as trunnion arm). The trunnion arm is connected to a slide which connects with the swashplate. Generally, movement of the trunnion arm 26 produces a proportional swashplate movement and change in pump flow and/or direction. This direct-proportional displacement control (DPC) provides a simple method of control.
 
  The cylinder includes a cylindrical body and two heads made rigid therewith by means of connection rings interposed between the cylindrical body and a...  A symmetric pump having a symmetric end cap attached to a symmetric housing is disclosed. The end cap is attachable in a first position or a second position...