Displacement adjusting device of swash plate pump
US-10914294-B2 · Feb 9, 2021 · US
US11215172B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11215172-B2 |
| Application number | US-201916530321-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 2, 2019 |
| Priority date | Aug 28, 2018 |
| Publication date | Jan 4, 2022 |
| Grant date | Jan 4, 2022 |
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A hydrostatic positive displacement machine has an adjustable swept volume, and has a lifting element, a rotor with positive displacement elements supported on the lifting element, and a hydraulic adjusting device that adjusts the swept volume and includes an adjusting piston that is mounted in or on a cylinder, is movable axially rectilinearly in relation to the cylinder, and is adjacent to a pressurizable adjusting chamber. A bearing gap is formed between a circular-cylindrical bearing surface of the adjusting piston and a circular-cylindrical bearing surface of the cylinder. The adjusting piston is mounted hydrostatically, wherein at least three pressure pockets are distributed uniformly in a row over the circumference of a bearing surface. Pressure fluid flows into each pressure pocket via a fixed throttle, which is assigned only to the respective pressure pocket, and flows out of each pressure pocket via the bearing gap.
Opening claim text (preview).
The invention claimed is: 1. A hydrostatic positive displacement machine that has an adjustable swept volume, comprising: a lifting element; a rotor having a plurality of positive displacement elements supported on the lifting element; and a hydraulic adjusting device configured to adjust the swept volume, the hydraulic adjusting device comprising an adjusting piston that is mounted in or on a cylinder, is movable axially rectilinearly in relation to the cylinder, and is adjacent to a pressurizable adjusting chamber, wherein a bearing gap is defined between a circular-cylindrical first bearing surface of the adjusting piston and a circular-cylindrical second bearing surface of the cylinder, wherein the adjusting piston is mounted hydrostatically, wherein at least three individual pressure pockets are distributed uniformly in a row over a circumference of one of the first and second bearing surfaces, and wherein pressure fluid flows into each respective pressure pocket of the at least three pressure pockets via a respective fixed throttle, which is assigned only to the respective pressure pocket, and the pressure fluid flows out of each respective pressure pocket via the bearing gap. 2. The hydrostatic positive displacement machine according to claim 1 , wherein the respective fixed throttles are arranged between the adjusting chamber and the respective pressure pockets, and the pressure fluid flows into the respective pressure pockets from the adjusting chamber. 3. The hydrostatic positive displacement machine according to claim 1 , wherein each respective fixed throttle is a bore having a diameter of between 0.05 mm and 0.5 mm. 4. The hydrostatic positive displacement machine according to claim 1 , wherein all of the pressure pockets have the same shape and size and all of the fixed throttles have the same diameter. 5. The hydrostatic positive displacement machine according to claim 1 , wherein the at least three pressure pockets includes a plurality of rings of pressure pockets defined one behind another in an axial direction in the one of the first and second bearing surfaces. 6. The hydrostatic positive displacement machine according to claim 1 , wherein the at least three pressure pockets are located at least in a region of the one of the first and second bearing surfaces overlapped by the other of the first and second bearing surfaces in each position of the adjusting piston. 7. The hydrostatic positive displacement machine according to claim 1 , wherein each of the at least three pressure pockets is rectangular. 8. The hydrostatic positive displacement machine according to claim 1 , wherein an extent of each of the at least three pressure pockets is greater in the circumferential direction than in an axial direction. 9. The hydrostatic positive displacement machine according to claim 7 , wherein an extent of each of the at least three pressure pockets is approximately 10 times as large in the circumferential direction as in an axial direction. 10. The hydrostatic positive displacement machine according to claim 1 , wherein the at least three pressure pockets are defined in the first bearing surface of the adjusting piston. 11. The hydrostatic positive displacement machine according to claim 1 , wherein: the adjusting piston is configured in a cup-shaped manner with an interior space and is mounted and guided in the cylinder by an outer surface of the adjusting piston, the at least three pressure pockets are defined in the outer surface of the adjusting piston, and each respective fixed throttle is formed by a bore which leads from the interior space through a wall of the adjusting piston into the respective pressure pocket. 12. The hydrostatic positive displacement machine according to claim 1 , wherein the one of the first and second bearing surfaces in which the at least three pressure pockets are defined is directed inward. 13. The hydrostatic positive displacement machine according to claim 1 , wherein at least three pressure pockets are present in the one of the first and second bearing surfaces over virtually the entire axial length of the one of the first and second bearing surfaces. 14. The hydrostatic positive displacement machine according to claim 1 , wherein the hydrostatic positive displacement machine is a hydrostatic axial piston machine in which the adjusting piston is movable essentially in an axial direction. 15. The hydrostatic positive displacement machine according to claim 14 , wherein the hydrostatic axial displacement machine is of swashplate design.
Hydraulic systems to change the pump delivery · CPC title
Component parts · CPC title
by changing the inclination of the swash plate · CPC title
Swash plates · CPC title
Pistons, piston-rods or piston-rod connections · CPC title
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