Axial Piston Machine with Recess in the Region of the Loading Pressure Channel
US-2019360482-A1 · Nov 28, 2019 · US
US10125752B1 · US · B1
| Field | Value |
|---|---|
| Publication number | US-10125752-B1 |
| Application number | US-201313946778-A |
| Country | US |
| Kind code | B1 |
| Filing date | Jul 19, 2013 |
| Priority date | Jul 19, 2012 |
| Publication date | Nov 13, 2018 |
| Grant date | Nov 13, 2018 |
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A hydraulic motor apparatus includes a motor housing engaged to an end cap having a first porting system and an adapter connected to an external surface of the end cap and having a second porting system. A filter may be attached to the adapter and connected to the second porting system and a pressure reducing valve in the adapter is connected to the second porting system. The assembly may also include a controller operatively connected to the pressure reducing valve and system sensors measuring parameters affected by the output of the hydraulic motor apparatus, whereby the pressure reducing valve is operatively controlled by the controller in response to input from the system sensors.
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What is claimed is: 1. A hydraulic motor apparatus hydraulically connected to a hydraulic pump, the hydraulic motor apparatus comprising: a motor housing engaged to an end cap to form an internal sump, the end cap comprising a running surface connected to a first porting system formed in the end cap, an inlet port and an outlet port, wherein the inlet port and the outlet port are formed on a second surface generally perpendicular to the running surface; a rotatable cylinder block disposed on the running surface and located in the internal sump, whereby the rotatable cylinder block is hydraulically connected to the first porting system, and an output shaft providing an output of the hydraulic motor apparatus; an adapter removably connected to the second surface of the end cap and having a second porting system disposed therein, the second porting system being in fluid communication with the first porting system; a filter directly connected to the adapter and connected to the second porting system; and a pressure reducing valve disposed in the adapter and connected to the second porting system. 2. The hydraulic motor apparatus of claim 1 , wherein the second porting system comprises: a first system port and a second system port, both connected to the hydraulic pump; an inlet passage connected to the inlet port of the end cap, and to the first system port through a valve inlet passage; an outlet passage connected to the outlet port of the end cap; a filter inlet passage connected to the outlet passage and a filter outlet passage connected to the second system port; and a valve port formed on an external surface of the adapter and in fluid communication with the valve inlet passage and a valve outlet passage, wherein the valve inlet passage is also in fluid communication with the first system port and the inlet passage, and the valve outlet passage is also in fluid communication with the outlet passage. 3. The hydraulic motor apparatus of claim 2 , wherein the filter is connected to the filter inlet passage and the filter outlet passage; and the pressure reducing valve is connected to the valve inlet passage and the valve outlet passage. 4. The hydraulic motor apparatus of claim 3 , wherein the adapter further comprises a motor inlet projection positioned within the inlet port of the end cap and a motor outlet projection positioned within the outlet port of the end cap. 5. The hydraulic motor apparatus of claim 1 , further comprising a rotation sensor disposed in the motor housing to measure the rotational speed of the rotatable cylinder block. 6. The hydraulic motor apparatus of claim 1 , further comprising a controller operatively connected to the pressure reducing valve and at least one system sensor measuring at least one parameter affected by the output of the hydraulic motor apparatus, whereby the pressure reducing valve is operatively controlled by the controller in response to input from the at least one system sensor. 7. The hydraulic motor apparatus of claim 5 , wherein the rotation sensor is a Hall Effect sensor. 8. The hydraulic motor apparatus of claim 5 , further comprising a controller operatively connected to the rotation sensor and to the pressure reducing valve, and at least one system sensor connected to the controller, wherein the at least one system sensor measures at least one parameter affected by the output of the hydraulic motor apparatus to provide feedback to the controller. 9. A hydraulic motor apparatus hydraulically connected to a hydraulic pump, the hydraulic motor apparatus comprising: a motor housing engaged to an end cap to form an internal sump, the end cap comprising a running surface connected to a first porting system formed in the end cap, an inlet port and an outlet port, wherein the inlet port and the outlet port are formed on a second surface generally perpendicular to the running surface; a rotatable cylinder block disposed on the running surface and located in the internal sump, whereby the rotatable cylinder block is hydraulically connected to the first porting system, and an output shaft providing an output of the hydraulic motor apparatus; an adapter connected to the second surface of the end cap and having a second porting system disposed therein, the second porting system being in fluid communication with the first porting system; a filter engaged to the adapter and connected to the second porting system; a pressure reducing valve disposed in the adapter and connected to the second porting system; and a rotation sensor disposed in the motor housing to measure the rotational speed of the rotatable cylinder block. 10. The hydraulic motor apparatus of claim 9 , wherein the rotation sensor is a Hall Effect sensor. 11. The hydraulic motor apparatus of claim 9 , further comprising a controller operatively connected to the rotation sensor and to the pressure reducing valve, and at least one system sensor connected to the controller, wherein the at least one system sensor measures at least one parameter affected by the output of the hydraulic motor apparatus to provide feedback to the controller. 12. The hydraulic motor apparatus of claim 9 , wherein the second porting system comprises: a first system port and a second system port, both connected to the hydraulic pump; an inlet passage connected to the inlet port of the end cap, and to the first system port through a valve inlet passage; an outlet passage connected to the outlet port of the end cap; a filter inlet passage connected to the outlet passage and a filter outlet passage connected to the second system port; and a valve port formed on an external surface of the adapter and in fluid communication with the valve inlet passage and a valve outlet passage, wherein the valve inlet passage is also in fluid communication with the first system port and the inlet passage, and the valve outlet passage is also in fluid communication with the outlet passage. 13. The hydraulic motor apparatus of claim 12 , wherein the filter is connected to the filter inlet passage and the filter outlet passage; and the pressure reducing valve is connected to the valve inlet passage and the valve outlet passage. 14. The hydraulic motor apparatus of claim 13 , wherein the adapter further comprises a motor inlet projection positioned within the inlet port of the end cap and a motor outlet projection positioned within the outlet port of the end cap. 15. A hydraulic motor apparatus hydraulically connected to a hydraulic pump, the hydraulic motor apparatus comprising: a motor housing engaged to an end cap to form an internal sump, the end cap comprising a running surface connected to a first porting system formed in the end cap, an inlet port and an outlet port, wherein the inlet port and the outlet port are formed on a second surface generally perpendicular to the running surface; a rotatable cylinder block disposed on the running surface and located in the internal sump, whereby the rotatable cylinder block is hydraulically connected to the first porting system, and an output shaft providing an output of the hydraulic motor apparatus; an adapter connected to the second surface of the end cap and having a second porting system disposed therein, the second porting system being in fluid communication with the first porting system; a filter engaged to the adapter and connected to the second porting system; a pressure reducing valve disposed in the adapter and connected to the second porting system; and a controller operatively connected to the pressure reducing valve and at least one system sensor measuring at least one parameter affe
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