Patent · US11421668B2 · B2 · US
Fluid power pack
- (11) Publication number
- US11421668B2
- (21) Application number
- 17/180,528
- (22) Filing date
- 2021-02-19
- (30) Priority date
- 2020-02-21
- (43) Publication date
- 2022-08-23
- (45) Date of grant
- 2022-08-23
- (51) IPC
- F04B 17/03; F04B 53/08
- (52) CPC
- F04B Positive-displacement machines for liquids; pumps: 17/03, 53/08
- F01C Rotary-piston or oscillating-piston machines or engines: 21/10
- F04C Rotary-piston, or oscillating-piston, positive-displacement machines for liquids; rotary-piston, or oscillating-piston, positive-displacement pumps: 11/008, 15/0096, 15/06, 2/14
- F05B Indexing scheme relating to wind, spring, weight, inertia or like motors, to machines or engines for liquids covered by subclasses F03B, F03D and F03G: 2260/406
- (73) Assignee
- Dana Motion Systems Italia SRL
- (72) Inventors
- Luca BUSCICCHIO; Piergiorgio Trinchieri
- (54) Title
- Fluid power pack
- (57) Abstract
The present disclosure relates to a fluid power pack, comprising: a manifold block comprising at least one fluid port; a first housing mounted on the manifold block and enclosing a first tank configured to hold a liquid; an electric motor mounted on the manifold block and disposed within the first tank so that the electric motor is configured to be submerged in a liquid held within the first tank for cooling the electric motor; a second housing mounted on the manifold block and enclosing a second tank configured to hold a liquid; and a hydraulic pump mounted on the manifold block and drivingly engaged with the electric motor, the hydraulic pump comprising a low pressure port and a high pressure port. The high pressure port of the hydraulic pump is in fluid communication with the fluid port of the manifold block and the low pressure port of the hydraulic pump is in fluid communication with the second tank. The present disclosure further relates to a hydraulic system including the fluid power pack and a hydraulic load fluidly connected with the fluid power pack.
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Claims (17)
- A fluid power pack, comprising: a manifold block comprising one or more fluid ports; a first housing mounted on the manifold block and enclosing a first tank configured to hold a liquid; an electric motor mounted on the manifold block and disposed within the first tank so that the electric motor is configured to be submerged in a liquid held within the first tank for cooling the electric motor; a second housing mounted on the manifold block and enclosing a second tank configured to hold a liquid; and a hydraulic pump mounted on the manifold block and drivingly engaged with the electric motor, the hydraulic pump comprising a low pressure port and a high pressure port, wherein the high pressure port of the hydraulic pump is in fluid communication with a fluid port of the manifold block and the low pressure port of the hydraulic pump is in fluid communication with the second tank.
- The fluid power pack of claim 1, further comprising a support structure supporting the electric motor and mounted on the manifold block so that the electric motor is mounted on the manifold block via the support structure.
- The fluid power pack of claim 2, wherein the first housing is detachably mounted on the manifold block and wherein the electric motor is mounted on the manifold block via the support structure in such a way that the support structure supports the electric motor both when the first housing is mounted on the manifold block and when the first housing is detached from the manifold block.
- The fluid power pack of claim 3, further comprising at least one first bearing mounted on the support structure and rotationally supporting a motor shaft drivingly connected with a rotor of the electric motor.
- The fluid power pack of claim 4, further comprising a second bearing mounted on the manifold block and rotationally supporting the motor shaft.
- The fluid power pack of claim 1, further comprising one of a relief valve mounted on the manifold block and a relief valve integrated in the manifold block, the relief valve being configured to fluidly connect the high pressure port of the hydraulic pump with the second tank when a pressure at the high pressure port of the hydraulic pump exceeds a threshold pressure.
- The fluid power pack of claim 1, further comprising one of a check valve mounted on the manifold block and a check valve integrated in the manifold block, the check valve being configured to allow a liquid flow from the high pressure port of the hydraulic pump toward a fluid outlet of the manifold block via the check valve, and the check valve configured to block a liquid flow toward the high pressure port of the hydraulic pump via the check valve.
- The fluid power pack of claim 7, wherein the check valve is further configured to block a liquid flow from a fluid inlet of the manifold block toward the high pressure port of the hydraulic pump through the check valve.
- The fluid power pack of claim 1, wherein a liquid storage capacity V 1 of the first tank and a liquid storage capacity V 2 of the second tank fulfill one or more of the following relations: V 2 V 2 ≥V 1, V 2 ≥2·V 1, V 2 ≥5·V 1, and V 2 ≥10·V 1.
- The fluid power pack of claim 1, wherein the hydraulic pump is disposed within the second tank.
- The fluid power pack of claim 1, wherein the first tank is in fluid communication with the second tank.
- The fluid power pack of claim 11, wherein the first tank is in fluid communication with the second tank via the manifold block.
- The fluid power pack of claim 1, wherein a motor shaft drivingly connecting a rotor of the electric motor with the hydraulic pump reaches through the manifold block.
- The fluid power pack of claim 1, wherein the manifold block is a die-cast manifold block made of metal.
- The fluid power pack of claim 14, wherein the manifold block is made of aluminum.
- A hydraulic system, comprising: a fluid power pack, comprising: a manifold block comprising one or more fluid ports; a first housing mounted on the manifold block and enclosing a first tank configured to hold a liquid; an electric motor mounted on the manifold block and disposed within the first tank so that the electric motor is configured to be submerged in a liquid held within the first tank for cooling the electric motor; a second housing mounted on the manifold block and enclosing a second tank configured to hold a liquid; and a hydraulic pump mounted on the manifold block and drivingly engaged with the electric motor, the hydraulic pump comprising a low pressure port and a high pressure port, wherein the high pressure port of the hydraulic pump is in fluid communication with a fluid port of the manifold block and the low pressure port of the hydraulic pump is in fluid communication with the second tank; and a hydraulic load fluidly connected with the fluid power pack via the fluid port of the manifold block.
- The hydraulic system of claim 16, wherein the hydraulic load includes one of: a hydraulic motor, and a hydraulic cylinder.
Description
The present disclosure relates to a fluid power pack including a hydraulic pump and an electric motor for driving the hydraulic pump. The present disclosure further relates to a hydraulic system including said fluid power pack and a hydraulic load, in particular a hydraulic motor or a hydraulic cylinder, fluidly connected with the fluid power pack.
Fluid power packs including a tank for holding a liquid such as oil, a hydraulic pump in fluid communication with the tank, and an electric motor for driving the hydraulic pump are generally known. They are typically designed as ready-to-use portable devices that may be fluidly connected to a hydraulic implement such as a hydraulic motor or a hydraulic cylinder for driving the hydraulic implement.
However, in many cases known fluid power packs often do not provide sufficiently high safety standards and may at times have an unsatisfactory durability.
Thus, there is demand for a fluid power pack that provides a high level of safety and that has a long service life.
This problem is solved by a fluid power pack as described in the present disclosure and by a hydraulic system including said fluid power pack.
Citations (11)
- US2312886A
- US3992133A
- US5145335A
- US5261796A
- US5577899A
- US5988989A
- US7182583B2
- US8668467B2
- US9261096B2
- WO2014181437A1
- EP3521627A1
Record as JSON
{
"publication_number": "US11421668B2",
"country": "US",
"kind": "B2",
"title": "Fluid power pack",
"abstract": "The present disclosure relates to a fluid power pack, comprising: a manifold block comprising at least one fluid port; a first housing mounted on the manifold block and enclosing a first tank configured to hold a liquid; an electric motor mounted on the manifold block and disposed within the first tank so that the electric motor is configured to be submerged in a liquid held within the first tank for cooling the electric motor; a second housing mounted on the manifold block and enclosing a second tank configured to hold a liquid; and a hydraulic pump mounted on the manifold block and drivingly engaged with the electric motor, the hydraulic pump comprising a low pressure port and a high pressure port. The high pressure port of the hydraulic pump is in fluid communication with the fluid port of the manifold block and the low pressure port of the hydraulic pump is in fluid communication with the second tank. The present disclosure further relates to a hydraulic system including the fluid power pack and a hydraulic load fluidly connected with the fluid power pack.",
"claims": [
"1. A fluid power pack, comprising: a manifold block comprising one or more fluid ports; a first housing mounted on the manifold block and enclosing a first tank configured to hold a liquid; an electric motor mounted on the manifold block and disposed within the first tank so that the electric motor is configured to be submerged in a liquid held within the first tank for cooling the electric motor; a second housing mounted on the manifold block and enclosing a second tank configured to hold a liquid; and a hydraulic pump mounted on the manifold block and drivingly engaged with the electric motor, the hydraulic pump comprising a low pressure port and a high pressure port, wherein the high pressure port of the hydraulic pump is in fluid communication with a fluid port of the manifold block and the low pressure port of the hydraulic pump is in fluid communication with the second tank.",
"2. The fluid power pack of claim 1, further comprising a support structure supporting the electric motor and mounted on the manifold block so that the electric motor is mounted on the manifold block via the support structure.",
"3. The fluid power pack of claim 2, wherein the first housing is detachably mounted on the manifold block and wherein the electric motor is mounted on the manifold block via the support structure in such a way that the support structure supports the electric motor both when the first housing is mounted on the manifold block and when the first housing is detached from the manifold block.",
"4. The fluid power pack of claim 3, further comprising at least one first bearing mounted on the support structure and rotationally supporting a motor shaft drivingly connected with a rotor of the electric motor.",
"5. The fluid power pack of claim 4, further comprising a second bearing mounted on the manifold block and rotationally supporting the motor shaft.",
"6. The fluid power pack of claim 1, further comprising one of a relief valve mounted on the manifold block and a relief valve integrated in the manifold block, the relief valve being configured to fluidly connect the high pressure port of the hydraulic pump with the second tank when a pressure at the high pressure port of the hydraulic pump exceeds a threshold pressure.",
"7. The fluid power pack of claim 1, further comprising one of a check valve mounted on the manifold block and a check valve integrated in the manifold block, the check valve being configured to allow a liquid flow from the high pressure port of the hydraulic pump toward a fluid outlet of the manifold block via the check valve, and the check valve configured to block a liquid flow toward the high pressure port of the hydraulic pump via the check valve.",
"8. The fluid power pack of claim 7, wherein the check valve is further configured to block a liquid flow from a fluid inlet of the manifold block toward the high pressure port of the hydraulic pump through the check valve.",
"9. The fluid power pack of claim 1, wherein a liquid storage capacity V 1 of the first tank and a liquid storage capacity V 2 of the second tank fulfill one or more of the following relations: V 2 V 2 ≥V 1, V 2 ≥2·V 1, V 2 ≥5·V 1, and V 2 ≥10·V 1.",
"10. The fluid power pack of claim 1, wherein the hydraulic pump is disposed within the second tank.",
"11. The fluid power pack of claim 1, wherein the first tank is in fluid communication with the second tank.",
"12. The fluid power pack of claim 11, wherein the first tank is in fluid communication with the second tank via the manifold block.",
"13. The fluid power pack of claim 1, wherein a motor shaft drivingly connecting a rotor of the electric motor with the hydraulic pump reaches through the manifold block.",
"14. The fluid power pack of claim 1, wherein the manifold block is a die-cast manifold block made of metal.",
"15. The fluid power pack of claim 14, wherein the manifold block is made of aluminum.",
"16. A hydraulic system, comprising: a fluid power pack, comprising: a manifold block comprising one or more fluid ports; a first housing mounted on the manifold block and enclosing a first tank configured to hold a liquid; an electric motor mounted on the manifold block and disposed within the first tank so that the electric motor is configured to be submerged in a liquid held within the first tank for cooling the electric motor; a second housing mounted on the manifold block and enclosing a second tank configured to hold a liquid; and a hydraulic pump mounted on the manifold block and drivingly engaged with the electric motor, the hydraulic pump comprising a low pressure port and a high pressure port, wherein the high pressure port of the hydraulic pump is in fluid communication with a fluid port of the manifold block and the low pressure port of the hydraulic pump is in fluid communication with the second tank; and a hydraulic load fluidly connected with the fluid power pack via the fluid port of the manifold block.",
"17. The hydraulic system of claim 16, wherein the hydraulic load includes one of: a hydraulic motor, and a hydraulic cylinder."
],
"description_excerpt": "The present disclosure relates to a fluid power pack including a hydraulic pump and an electric motor for driving the hydraulic pump. The present disclosure further relates to a hydraulic system including said fluid power pack and a hydraulic load, in particular a hydraulic motor or a hydraulic cylinder, fluidly connected with the fluid power pack.\n\nFluid power packs including a tank for holding a liquid such as oil, a hydraulic pump in fluid communication with the tank, and an electric motor for driving the hydraulic pump are generally known. They are typically designed as ready-to-use portable devices that may be fluidly connected to a hydraulic implement such as a hydraulic motor or a hydraulic cylinder for driving the hydraulic implement.\n\nHowever, in many cases known fluid power packs often do not provide sufficiently high safety standards and may at times have an unsatisfactory durability.\n\nThus, there is demand for a fluid power pack that provides a high level of safety and that has a long service life.\n\nThis problem is solved by a fluid power pack as described in the present disclosure and by a hydraulic system including said fluid power pack.",
"cpc": [
"F04B 17/03",
"F01C 21/10",
"F04B 53/08",
"F04C 11/008",
"F04C 15/0096",
"F04C 15/06",
"F04C 2/14",
"F05B 2260/406"
],
"ipc": [
"F04B 17/03",
"F04B 53/08"
],
"assignees": [
"Dana Motion Systems Italia SRL"
],
"inventors": [
"Luca BUSCICCHIO",
"Piergiorgio Trinchieri"
],
"filing_date": "2021-02-19",
"publication_date": "2022-08-23",
"grant_date": "2022-08-23",
"priority_date": "2020-02-21",
"application_number": "US-202117180528-A",
"family_id": "69810552",
"cited_by_count": 2,
"citations": [
"US2312886A",
"US3992133A",
"US5145335A",
"US5261796A",
"US5577899A",
"US5988989A",
"US7182583B2",
"US8668467B2",
"US9261096B2",
"WO2014181437A1",
"EP3521627A1"
]
}
Record 1,054 of 8,000 in Patents full text (MLC-0201). Request the full dataset.