IP Library Granted Patent US 11,359,351
Granted Patent B2
US 11,359,351 · App. 16/478,829 · Granted Jun 14, 2022

Excavator boom mountable high pressure hydraulic tool including a hydraulic motor driven generator

Inventors: Reuben D. Ness (Mulino, OR); Aaron Justin Brown (Lake Osweo, OR); Joseph Foss Baker (Portland, OR)
Assignee: Stanley Black & Decker, Inc.
E02F9/2267B66C1/06E02F9/2235B60Y2200/412
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Quick Facts
Patent No.
US 11,359,351
App. No.
16/478,829
Granted
Jun 14, 2022
Kind
B2
Abstract

An output shaft of a hydraulic motor is enclosed within a sealed housing and coupled to an input shaft of an electric generator using non-contact couplings. Tool electrical components are electrically coupled to the electric generator. A high pressure hydraulic tool circuit includes a hydraulic tool load and the hydraulic motor of the electric power generation assembly coupleable between a hydraulic boom inlet line and a hydraulic boom return line. Both the hydraulic tool load and the hydraulic motor of the electric power generation assembly can be designed to input hydraulic fluid up to the full rated pressure of the tool. The sealed housing of the hydraulic motor of the electric power generation assembly can be designed to retain hydraulic fluid within the interior up to the full rated pressure of the tool so that no case drain or separate low pressure return line for the hydraulic motor is necessary.

Claims (30)

1. An excavator boom mountable high-pressure hydraulic tool and having a full rated pressure, the tool comprising:

an electric power generation assembly including:

a hydraulic motor having a motor output shaft, a sealed housing enclosing an entirety of the motor output shaft within an interior thereof, and a motor non-contact coupling mounted on the motor output shaft within the sealed housing;

an electric generator having a generator input shaft and a generator non-contact coupling coupled to the generator input shaft and positioned entirely outside the sealed housing, the motor non-contact coupling being drivingly coupled to the generator non-contact coupling; and

tool electrical components electrically coupled to the electric generator of the electric power generation assembly to receive power from the electric generator;

a high pressure hydraulic tool circuit including a hydraulic tool load and the hydraulic motor of the electric power generation assembly coupleable between a hydraulic boom inlet line and a hydraulic boom return line;

wherein both the hydraulic tool load and the hydraulic motor of the electric power generation assembly are designed to input hydraulic fluid up to the full rated pressure of the tool; and

wherein the sealed housing of the hydraulic motor of the electric power generation assembly is designed to retain hydraulic fluid within the interior up to the full rated pressure of the tool so that no case drain or separate low pressure return line is necessary.

2. The excavator boom mountable high-pressure hydraulic tool of claim 1 , wherein the hydraulic motor of the electric power generation assembly is designed to input hydraulic fluid from the boom input line up to the full rated pressure of at least 3,000 psi.

3. The excavator boom mountable high-pressure hydraulic tool of claim 1 , wherein the hydraulic motor of the electric power generation assembly is designed to output hydraulic fluid to the hydraulic boom return line at a pressure of at least 500 psi.

4. The excavator boom mountable high-pressure hydraulic tool of claim 1 , wherein the sealed housing includes a cylindrical housing portion that receives and encloses the motor output shaft within an overall motor housing assembly.

5. The excavator boom mountable high-pressure hydraulic tool of claim 1 , wherein the sealed housing includes a cylindrical housing portion sealed to an additional housing portion, and wherein the cylindrical housing portion receives and encloses the motor output shaft.

6. The excavator boom mountable high-pressure hydraulic tool of claim 1 , wherein the hydraulic motor is designed to output a power that is optimized to the needs of the electric generator in providing AC or DC electric power generation for the tool electric components.

7. The excavator boom mountable high-pressure hydraulic tool of claim 1 , wherein the motor and generator non-contact couplings are magnetic non-contact couplings.

8. The excavator boom mountable high-pressure hydraulic tool of claim 1 , wherein the generator non-contact coupling is mounted on the generator input shaft.

9. The excavator boom mountable high-pressure hydraulic tool of claim 1 , wherein the hydraulic tool load and the hydraulic motor of the electric power generation assembly are coupled in series in the high pressure hydraulic circuit.

10. The excavator boom mountable high-pressure hydraulic tool of claim 1 , wherein the hydraulic tool load and the hydraulic motor of the electric power generation assembly are coupled in parallel in the high pressure hydraulic circuit.

11. The excavator boom mountable high-pressure hydraulic tool of claim 1 , wherein flow limiting valves can be provided in the high pressure hydraulic circuit adjacent the hydraulic motor of the electric power generation assembly.

12. The excavator boom mountable high-pressure hydraulic tool of claim 1 , wherein the tool electrical components include electronic pressure sensors to monitor pressure at various points in the high pressure hydraulic tool circuit.

13. The excavator boom mountable high-pressure hydraulic tool of claim 1 , wherein the tool electrical components include a rectifier to convert an AC output of the electric generator of the electric power generation assembly to DC power.

14. The excavator boom mountable high-pressure hydraulic tool of claim 1 , wherein the tool electrical components include a DC to DC regulator to convert an output voltage to provide a steady desired voltage from the electric generator of the electric power generation assembly.

15. The excavator boom mountable high-pressure hydraulic tool of claim 1 , wherein the tool electrical components include a battery charger electrically coupled to a battery.

16. The excavator boom mountable high-pressure hydraulic tool of claim 15 , wherein the tool electrical components are electrically coupled to the electric generator to receive power from the electric generator via the battery.

17. The excavator boom mountable high-pressure hydraulic tool of claim 15 , wherein the tool electrical components are electrically coupled to the electric generator to selectively receive power from the electric generator via the battery or directly from the electric generator.

18. The excavator boom mountable high-pressure hydraulic tool of claim 17 , wherein the tool electrical components include a controller comprising control circuitry coupled to a power source selector to selectively provide other tool electric components with power directly from the electric generator or indirectly from the electric generator via a battery.

19. The excavator boom mountable high-pressure hydraulic tool of claim 1 , wherein the tool electrical components include a controller comprising control circuitry.

20. The excavator boom mountable high-pressure hydraulic tool of claim 19 , wherein the control circuitry is coupled to an electronic pressure sensor.

21. The excavator boom mountable high-pressure hydraulic tool of claim 19 , wherein the control circuitry is coupled to a solenoid.

22. The excavator boom mountable high-pressure hydraulic tool of claim 19 , wherein the control circuitry is coupled to a wireless transceiver.

23. The excavator boom mountable high-pressure hydraulic tool of claim 1 , wherein the control circuitry includes battery charger control circuitry.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 18, 2025
From: STANLEY BLACK & DECKER, INC.
To: EPIROC INDUSTRIAL TOOLS AND ATTACHMENTS LLC (FORMERLY KNOWN AS STANLEY INFRASTRUCTURE, LLC)
Reel/Frame 070551/0187 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 22, 2019
From: NESS, REUBEN D.; BROWN, AARON JUSTIN
To: STANLEY BLACK & DECKER, INC.
Reel/Frame 049822/0552 →
Continuity (2)
Provisional Application 62692920 · Jul 2, 2018
Related Publication 20200347576A1 · Nov 5, 2020