IP Library › Granted Patent US 11,987,130
Granted Patent B2
US 11,987,130 · App. 16/937,571 · Granted May 21, 2024

Working machine

Inventors: Matthew James Clowes (Uttoxeter, GB); Neil Beloe (Uttoxeter, GB); Alex Kay (Uttoxeter, GB)
Assignee: J.C. BAMFORD EXCAVATORS LIMITED
B60L1/003B60H1/00007B60H1/00278B60H1/00378B60H1/00392B60H1/0075B60H1/03B60H1/2218B60H1/2221B60H1/3227B60L50/60E02F9/207E02F9/2075E02F9/2095E02F9/226E02F9/2278F15B21/0423F15B21/0427B60Y2200/41F15B21/04Y02T10/70
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Quick Facts
Patent No.
US 11,987,130
App. No.
16/937,571
Granted
May 21, 2024
Kind
B2
Abstract

A working machine comprising a hydraulic fluid circuit an operator structure and a thermal management system. The thermal management system connects an operator structure heater and a heat exchanger arranged to selectively remove heat energy from the hydraulic fluid circuit, so as to be capable transferring heat from the hydraulic fluid to the operator structure.

Claims (51)

1. A working machine comprising;

a hydraulic fluid circuit arranged to provide hydraulic fluid to one or more hydraulic actuators to perform a working operation;

a ground engaging propulsion structure;

an electrical energy storage device configured to provide, electrical energy to an electric motor to provide, at least in part, tractive power to the ground engaging propulsion structure and power to a hydraulic pump to provide pressurised hydraulic fluid to displace the or each hydraulic actuator;

an operator structure;

an operator structure heater arranged to supply heat energy to selectively warm the operator structure and an operator structure cooler arranged to remove heat energy to selectively cool the operator structure;

a heat exchanger arranged to selectively supply and remove heat energy to/from the hydraulic fluid circuit; and

a thermal management system connecting the heat exchanger to the operator structure heater to transfer heat from the hydraulic fluid to the operator structure heater; and

wherein the thermal management system is configured to preheat at least one or both of the operator structure and the hydraulic fluid to a target temperature prior to operation of the working machine.

2. The working machine of claim 1 , wherein the thermal management system is configured to selectively transfer heat from the operator structure to the hydraulic fluid.

3. The working machine of claim 1 , wherein the thermal management system is configured to be active when the working machine is charging.

4. The working machine of claim 1 , wherein the thermal management system comprises a hydraulic fluid heat exchanger immersed in the hydraulic fluid.

5. The working machine of claim 4 where the hydraulic fluid heat exchanger is a liquid/liquid heat exchanger.

6. The working machine of claim 1 wherein the operator structure heater is a liquid/gas heat exchanger.

7. The working machine of claim 1 , wherein the thermal management system is configured to selectively supply heat energy to and remove heat energy from the hydraulic fluid.

8. The working machine of claim 1 , wherein the thermal management system is configured to selectively supply heat energy to and remove heat energy from the operator structure.

9. The working machine of claim 1 , wherein the thermal management system is arranged to supply heat energy to and remove heat energy from at least one of: an electric motor to provide tractive power to the ground engaging structure, an electric motor to drive a hydraulic pump of the hydraulic fluid circuit, power electronics of the working machine; and the electrical energy storage device.

10. The working machine of claim 1 , comprising a hydraulic fluid heater arranged so as to supply heat energy to the hydraulic fluid prior to operation of the working machine.

11. The working machine of claim 1 , comprising an electric heater arranged to supply heat energy to the thermal management system to pre-heat the hydraulic fluid and/or operator structure.

12. The working machine of claim 1 , comprising a device to direct excess heat energy to atmosphere and liberate heat energy from atmosphere.

13. The working machine of claim 1 , wherein the thermal management system comprises a heat pump circuit.

14. The working machine of claim 13 , wherein the heat pump circuit comprises a compressor, an expansion device, an evaporator and a condenser, and wherein the thermal management system comprises a selectable cooling circuit connected to the evaporator and wherein the thermal management system comprises a selectable heating circuit connected to the condenser.

15. The working machine of claim 14 , comprising a valve arranged in the cooling and heating circuits to selectively switch between operator structure heating and operator structure cooling.

16. The working machine of claim 14 , comprising a valve arranged in the cooling and heating circuits to selectively switch between hydraulic fluid heating and hydraulic fluid cooling.

17. The working machine of claim 14 , comprising an outside air heat exchanger and further comprising a valve arranged in the cooling and heating circuits to selectively switch the outside heat exchanger between heat energy absorption and heat energy rejection.

18. The working machine of claim 1 , wherein the thermal management system is configured to overheat the hydraulic fluid when it is determined that an ambient temperature is below a predetermined ambient temperature threshold and to transfer heat energy from the hydraulic fluid to the operator structure climate control assembly to heat the operator structure.

19. The working machine of claim 1 , wherein the thermal management system is configured to selectively transfer thermal energy between the operator structure and the hydraulic fluid to heat the hydraulic fluid to obtain a predetermined hydraulic fluid viscosity.

20. A working machine comprising;

a hydraulic fluid circuit arranged to provide hydraulic fluid to one or more hydraulic actuators to perform a working operation;

a ground engaging propulsion structure;

an electrical energy storage device configured to provide, electrical energy to an electric motor to provide, at least in part, tractive power to the ground engaging propulsion structure and power to a hydraulic pump to provide pressurised hydraulic fluid to displace the or each hydraulic actuator;

an operator structure;

an operator structure heater arranged to supply heat energy to selectively warm the operator structure and an operator structure cooler arranged to remove heat energy to selectively cool the operator structure;

a heat exchanger arranged to selectively supply and remove heat energy to/from the hydraulic fluid circuit;

a thermal management system connecting the heat exchanger to the operator structure heater to transfer heat from the hydraulic fluid to the operator structure heater, wherein the thermal management system comprises:

a heat pump circuit including a condenser, an expansion device, a compressor and an evaporator;

a selectable cooling circuit connected to the evaporator;

a selectable heating circuit connected to the condenser; and

a valve arranged in the cooling and heating circuits to selectively switch between operator structure heating and operator structure cooling.

21. A working machine comprising;

a hydraulic fluid circuit arranged to provide hydraulic fluid to one or more hydraulic actuators to perform a working operation;

a ground engaging propulsion structure;

an electrical energy storage device configured to provide, electrical energy to an electric motor to provide, at least in part, tractive power to the ground engaging propulsion structure and power to a hydraulic pump to provide pressurised hydraulic fluid to displace the or each hydraulic actuator;

an operator structure;

an operator structure heater arranged to supply heat energy to selectively warm the operator structure and an operator structure cooler arranged to remove heat energy to selectively cool the operator structure;

a heat exchanger arranged to selectively supply and remove heat energy to/from the hydraulic fluid circuit;

a thermal management system connecting the heat exchanger to the operator structure heater to transfer heat from the hydraulic fluid to the operator structure heater, wherein the thermal management system comprises:

a heat pump circuit including a condenser, an evaporator, and a compressor;

a selectable cooling circuit connected to the evaporator; and

a selectable heating circuit connected to the condenser; and

a valve arranged in the cooling and heating circuits to selectively switch between hydraulic fluid heating and hydraulic fluid cooling.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 23, 2020
From: CLOWES, MATTHEW JAMES; BELOE, NEIL; KAY, ALEX
To: J.C. BAMFORD EXCAVATORS LIMITED
Reel/Frame 053865/0219 →
Priority Claims (1)
GB 1910496 · Jul 23, 2019 · national
Continuity (1)
Related Publication 20210023950A1 · Jan 28, 2021
Cited By (2)
US 12,454,811 US 12,583,281