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06/29/06 - USPTO Class 417 |  80 views | #20060140787 | Prev - Next | About this Page  417 rss/xml feed  monitor keywords

Hydraulic assembly

USPTO Application #: 20060140787
Title: Hydraulic assembly
Abstract: A hydraulic assembly including a reservoir, a pump arrangement, hydraulic control elements, and an electric motor for the pump arrangement whose components are coaxially arranged along a straight axis, possibly overlapping one another partially, is constructed having smaller dimensions and with simpler construction. The pump arrangement is therefore an axial piston pump (2, 2a, 5, 6) whose cylinder block (2) is oriented coaxially to the other components and the cylinder block (2) is provided with several pump elements (6). (end of abstract)



Agent: Dykema Gossett PLLC - Washington, DC, US
Inventors: Wolfgang Amrhein, Georg Strobel, Gerhard Huber, Jochen Schaible, Jurgen Osterried, Manfred Kurz, Ulrich Baudermann, Wilhelm Rauscher, Klaus Stolle
USPTO Applicaton #: 20060140787 - Class: 417410100 (USPTO)

Related Patent Categories: Pumps, Motor Driven, Electric Or Magnetic Motor

Hydraulic assembly description/claims


The Patent Description & Claims data below is from USPTO Patent Application 20060140787, Hydraulic assembly.

Brief Patent Description - Full Patent Description - Patent Application Claims
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BACKGROUND OF THE INVENTION

[0001] 1. Field of the Invention

[0002] The invention relates to a hydraulic assembly comprising a reservoir, a pump arrangement, hydraulic control elements, and an electric motor for the pump arrangement whose components are arranged coaxial along a straight axis, possibly partially overlapping one another.

[0003] 2. The Prior Art

[0004] EP 1 302 660 A2 discloses a fuel pump designed as an axial piston pump inserted into the fuel tank of a vehicle. The motor for the pump is arranged coaxial in this pump arrangement; however, the pump itself is installed as one unit in the much larger fuel tank as it is necessary for hydraulic assemblies of this type without especially explaining, for example, the specific geometric constellation thereof. The aforementioned independent assemblies without an electric power supply for the electric motor are generally known in the art and they are employed increasingly for transportable purposes and/or for generating small forces, as for example in connection with the hydraulic actuation of motor vehicle tops or the movement of medical treatment chairs or the like.

[0005] DE-C3 32 27 926 proposes in this respect to arrange a pressure-free gear pump on one side of a base section and to arrange the sealed, encapsuled pump motor on the other side of said base section. The inner space remaining in the motor housing can also be used as a reservoir through a connecting opening in the base section.

[0006] An assembly is additionally disclosed in EP-A1 0 628 720 wherein a first elongated reservoir for the hydraulic medium is arranged on the base section in axial direction in connection with a radial piston pump whereby the motor shaft sealingly reaches into the reservoir and extends through said reservoir to the pump. The reservoir must be constructed thereby of relatively rigid and heavy material. EP-A1 0 690 230 discloses an assembly in which the motor projects into the reservoir that is arranged coaxially. EP-A1 0 857 871 discloses an assembly housing having also a radial piston pump with an annular reservoir surrounding the tubular encapsuled electric pump motor.

[0007] The object of the present invention was to provide an assembly with smaller dimensions and simpler construction. Better economic viability and lower costs are to be achieved through a higher degree of integration.

SUMMARY OF THE INVENTION

[0008] For the achievement of this object it is proposed according to the invention that the pump arrangement is an axial piston pump whose cylinder block is oriented coaxial to the other components whereby said cylinder block is provided with several pump elements. The axial length of the assembly made necessary by the dimension of the reservoir can be optimally used and the diameter can be kept considerably smaller compared to other pump designs, particularly in comparison to gear pumps or radial piston pumps used mostly in assemblies of this type.

[0009] An additional decrease in size or the optimal use of the existing structural space is possible according to a preferred embodiment variant whereby the cylinder block is provided with magnets about its circumference and whereby it is designed as a rotor of the electric motor. A motor separate from the pump can thereby be eliminated and its structural space is saved thereby.

[0010] The magnetized coils of the electric motor are thereby advantageously arranged around the cylinder block within the housing of the assembly.

[0011] The arrangement of connecting lines and the design of the hydraulic elements can be simplified in that the reservoir and the cylinder block are arranged on the same side, preferably essentially coaxially relative to the space of the hydraulic control elements.

[0012] Additional simplification of the hydraulic line arrangement is made possible through a characteristic of the invention whereby the cylinder block is rotatably mounted on a tube and whereby the tube extends from space containing the hydraulic control elements and reaches into the reservoir of the assembly with a suction opening.

[0013] The reservoir and the space of the assembly housing containing the cylinder block is advantageously separated by a partition. The suction opening for the hydraulic fluid can be moved thereby to a space where the hydraulic fluid cannot undergo swirling and foaming through the rapidly moving axial piston pump.

[0014] A more stable mounting for the cylinder block of the pump can be achieved if the tube is advantageously mounted in the partition whereby the pump is at the same time the rotor of the electric motor.

[0015] The known advantages of a normally complicated suboil motor can be achieved in a simpler manner with the assembly of the invention in that at least one opening is provided in the partition below the fluid level and at least one opening above the fluid level at the normal operational position of the assembly whereby operational communication is maintained through the openings with the reservoir and the space of the housing containing the cylinder block. A motor can be used thereby having a high capacity at small structural dimensions since heat is carried off by the hydraulic medium flowing around the motor or the cylinder block.

[0016] The same advantages can be achieved in an alternative embodiment of the invention wherein the space of the housing containing the cylinder block is at the same time the reservoir.

[0017] An additional improvement of the aforementioned construction proposes that at least a few magnetizing coils are covered by fluid or fluid circulates about said coils. The loss of capacity of the coils can be simply minimized through heat dissipation through the hydraulic medium so that high amperage is made possible along with high motor capacity at small structural dimensions.

[0018] The aforementioned advantages become especially of importance when in the normal operational position of the assembly the fluid in the reservoir has reached a specific height so that the cylinder block and/or the coils are covered by the fluid at least for the most part.

[0019] In view of the simple construction of the assembly of the invention it can be proposed according to an additional characteristic that a wobble plate is mounted on the tube.

[0020] An embodiment example of the invention is explained in more detail in the following description with the aid of accompanying drawings.

BRIEF DESCRIPTION OF THE DRAWINGS

[0021] FIG. 1 shows thereby an axial longitudinal section through an assembly according to the present invention, and

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Previous Patent Application:
Control arrangement for an induction motor compressor having at least three windings, a torque-augmentation circuit, a starting capacitor and a resistive element
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