Hydraulic unit
US-2024263652-A1 · Aug 8, 2024 · US
US10465679B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10465679-B2 |
| Application number | US-201415028641-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 10, 2014 |
| Priority date | Oct 11, 2013 |
| Publication date | Nov 5, 2019 |
| Grant date | Nov 5, 2019 |
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Official abstract text for this publication.
An electric motor driven pump assembly configuration that includes an electric motor, a hydraulic pump driven by the electric motor is provided. The hydraulic pump is driven by the electric motor to convert electrical power into hydraulic power. A multi-inlet hydraulic pump enhances cooling flow through a pump case of the assembly and also enhances cooling flow for cooling the electric motor and corresponding drive/control components.
Opening claim text (preview).
What is claimed is: 1. An electric motor driven pump arrangement, comprising: an electric motor system including an electric motor that drives rotation of an output shaft; a main hydraulic pump driven by the electric motor though the output shaft to convert electrical power into hydraulic power; a cooling flow pump driven by the electric motor through the output shaft; a pump case enclosing the main hydraulic pump and the cooling flow pump; and the cooling flow pump having a first inlet in fluid communication with an interior of the pump case and a second inlet in fluid communication with a cooling flow path for cooling the electric motor system; and, a boost pump positioned within the pump case and driven by the output shaft, the boost pump having outlets in fluid communication with the cooling flow path and the main hydraulic pump. 2. The electric motor driven pump arrangement of claim 1 , wherein the cooling flow pump has a single outlet. 3. The electric motor driven pump arrangement of claim 2 , wherein the single outlet is in fluid communication with a case drain port of the pump case. 4. The electric motor driven pump arrangement of claim 1 , wherein the cooling flow pump is a radial vane pump. 5. The electric motor driven pump arrangement of claim 1 , wherein at least one of the outlets of the boost pump is in fluid communication with the interior of the pump case. 6. The electric motor driven pump arrangement of claim 1 , wherein the main hydraulic pump is a variable displacement axial piston pump. 7. The electric motor driven pump arrangement of claim 5 , wherein the boost pump is an impeller pump. 8. An electric motor driven pump arrangement, comprising: an electric motor system including an electric motor that drives rotation of an output shaft; a main hydraulic pump driven by the electric motor though the output shaft to convert electrical power into hydraulic power; a cooling flow pump driven by the electric motor through the output shaft; a pump case enclosing the main hydraulic pump and the cooling flow pump; and the cooling flow pump having a first inlet in fluid communication with an interior of the pump case and a second inlet in fluid communication with a cooling flow path for cooling the electric motor system; and, a boost pump positioned within the pump case and driven by the output shaft, the boost pump having outlets in fluid communication with the cooling flow path and the main hydraulic pump; wherein the electric motor system is enclosed in a motor case, wherein the pump case is attached to the motor case, and wherein the cooling flow path is routed through the motor case; wherein a portion of the cooling flow path is defined by a tube routed outside of the pump case and the motor case for carrying hydraulic fluid from the pump case to the motor case; wherein the electric motor system includes an electronic controller for controlling operation of the electric motor, a transformer rectification unit and an electromagnetic interference filter unit positioned within the motor housing, and wherein the cooling flow path includes separate heat exchangers within the motor case including a first heat exchanger corresponding to the electronic controller, a second heat exchanger corresponding to the transformer rectification unit and a third heat exchanger corresponding to the electromagnetic interference filter unit. 9. The electric motor driven pump arrangement of claim 8 , wherein the the first an second heat exchangers include cooling plates. 10. The electric motor driven pump arrangement of claim 9 , wherein the cooling flow path is routed in convoluted patterns through the cooling plates. 11. The electric motor driven pump arrangement of claim 8 , wherein the first heat exchanger is positioned adjacent to the electronic controller for cooling the electronic controller. 12. A method for cooling an electric motor driven pump arrangement that includes an electric motor system that drives an output shaft and a main hydraulic pump driven by the output shaft, the method comprising: scavenging energy from the output shaft to drive a multi-inlet cooling flow pump having a first inlet in fluid communication with a pump case that houses the main hydraulic pump, the multi-inlet cooling flow pump also including a second inlet in fluid communication with a cooling flow path routed through a motor case that houses the electric motor system; operating a boost pump positioned within the pump case and driven by the output shaft to boost flow in the cooling flow path, wherein the boost pump has outlets in fluid communication with the cooling flow path and the main hydraulic pump.
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