Combined cooling system for motor and motor controller
11870328 ยท 2024-01-09
Assignee
Inventors
Cpc classification
H02K11/30
ELECTRICITY
F01P2003/008
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60H1/3227
PERFORMING OPERATIONS; TRANSPORTING
B60H1/22
PERFORMING OPERATIONS; TRANSPORTING
H02K9/197
ELECTRICITY
H02K9/20
ELECTRICITY
B60K1/00
PERFORMING OPERATIONS; TRANSPORTING
H02K9/19
ELECTRICITY
B60H1/00385
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60H1/00
PERFORMING OPERATIONS; TRANSPORTING
B60H1/22
PERFORMING OPERATIONS; TRANSPORTING
H02K11/30
ELECTRICITY
H02K9/19
ELECTRICITY
H02K9/197
ELECTRICITY
Abstract
The present disclosure discloses a combined cooling system for a motor and a motor controller, which comprises a water cooling assembly, an oil cooling assembly, and an oil-water heat exchanger; one end of the water cooling assembly is connected to an cooling water outlet of the motor, the other end is connected to an cooling water inlet of the motor controller and/or a water inlet of the oil-water heat exchanger; one end of the oil cooling assembly is connected to a cooling oil outlet of the motor, the other end of the oil cooling assembly is connected to an oil inlet of the oil-water heat exchanger, and an oil outlet of the oil-water heat exchanger is connected to a cooling oil inlet of the motor. The above technical solution utilizes the temperature characteristics of the motor and the motor controller, and achieves the objects of saving energy in cooling, and improving high power output performance and environmental adaptability of the motor through the cooperation and intelligent control of the water pump, oil pump and fan in the combined cooling system.
Claims
1. A combined cooling system of a motor and a motor controller, wherein the cooling system comprises a water cooling assembly, an oil cooling assembly, and an oil-water heat exchanger; the water cooling assembly comprises a radiator, a fan, a first water pump, and a water pipe, the radiator is connected in series with the first water pump, and the fan is used for cooling the radiator; the oil cooling assembly comprises an oil pump and an oil pipe, and the oil pump is connected in series between the cooling oil outlet of the motor and the oil inlet of the oil-water heat exchanger via the oil pipe; one end of the water cooling assembly is connected to a cooling water outlet of the motor, the other end of the water cooling assembly is only connected to a cooling water inlet of the motor controller, a cooling water outlet of the motor controller is connected to a water inlet of an oil-water heat exchanger, and a water outlet of the oil-water heat exchanger is connected to a cooling water inlet of the motor; and one end of the oil cooling assembly is connected to a cooling oil outlet of the motor, the other end of the oil cooling assembly is connected to an oil inlet of the oil-water heat exchanger, and an oil outlet of the oil-water heat exchanger is connected to a cooling oil inlet of the motor.
2. The cooling system according to claim 1, wherein the motor controller, the water cooling assembly and the oil cooling assembly are controlled by a controller.
3. The cooling system according to claim 2, wherein the controller is a vehicle controller or a cooling system controller.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1) By reading the detailed description of the preferred embodiments below, various other advantages and benefits will become clear to a person of ordinary skill in the art. The drawings are only used for the purpose of illustrating the preferred embodiments, and should not be considered as a limitation to the present disclosure. Moreover, throughout the drawings, the same reference numerals denote the same components. In the drawings:
(2)
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(7) In the drawings: the double solid line represents the cooling oil circuit, the single solid line represents the cooling water circuit, the dashed line represents the control circuit, and the thick solid line represents the air conditioning pipeline.
DETAILED DESCRIPTION
(8) In order to make the objectives, technical solutions, and advantages of the present disclosure clearer, the technical solutions of the present disclosure will be described clearly and completely in conjunction with specific embodiments of the present disclosure and corresponding drawings. Obviously, the embodiments described are only part of the embodiments of the present disclosure, rather than all of the embodiments. Based on the embodiments in the present disclosure, all other embodiments obtained by a person of ordinary skill in the art without paying creative work shall fall within the protection scope of the present disclosure.
(9) The motor controller is an integrated circuit that controls the motor to work in accordance with the set direction, speed, angle, and response time through active work. In an electric vehicle, the function of the motor controller is to, according to instructions such as gear position, throttle position and brake, convert the electric energy stored in the power battery into the electric energy required to drive the motor, control the driving conditions such as start-up, advance and retreat speed, and climbing ability of the electric vehicle, or help the electric vehicle to brake and store part of the braking energy in the power battery. It is one of the key components of electric vehicles. Generally, the operating temperature of the motor controller is lower than the operating temperature of the motor. For example, the motor controller works at about 90 degrees Celsius, while the motor body can withstand a high temperature of more than 100 degrees Celsius.
(10) In order to solve the motor cooling problem so that it will no longer be a limitation of increasing the power density of the motor, in the present disclosure, considering the actual situation that the operating temperature of the motor controller is lower than the operating temperature of the motor, an effective combined cooling system for cooling the motor is designed, which can effectively improve the cooling efficiency of the motor and obtain the maximum benefit of energy consumption and cooling efficiency.
(11) The technical solutions according to the embodiments of the present disclosure will be described in detail below with reference to the accompanying drawings.
(12) Referring to
(13) The water cooling assembly comprises a radiator, a fan, a plurality of water pumps, and a water pipe. The radiator is connected in series with the water pumps, and the plurality of water pumps are connected in parallel. The fan is used to cool the radiator. The oil cooling assembly comprises an oil pump and an oil pipe. The oil pump is connected in series between the cooling oil outlet of the motor and the oil inlet of the oil-water heat exchanger via the oil pipe.
(14) There are multiple combinations of water cooling and oil cooling.
(15) Combination 1: as shown in
(16) At this point, one end of the oil cooling assembly is connected to a cooling oil outlet of the motor, the other end of the oil cooling assembly is connected to an oil inlet of the oil-water heat exchanger, and an oil outlet of the oil-water heat exchanger is connected to a cooling oil inlet of the motor.
(17) As a result, the cooling water in the water cooling assembly is used to cool the oil in the cooling oil circuit, and the cooling source includes only a fan and a radiator.
(18) In order to enhance the cooling effect, a fan and a radiator may also be added in the oil cooling assembly as cooling sources.
(19) Combination 2: as shown in
(20) Since the connection of the oil cooling assembly is the same as the previous combination, it is not repeated herein.
(21) Combination 3: as shown in
(22) At this point, one end of the oil cooling assembly is connected to a cooling oil outlet of the motor, the other end of the oil cooling assembly is connected to an oil inlet of the oil-water heat exchanger, and an oil outlet of the oil-water heat exchanger is connected to a cooling oil inlet of the motor.
(23) In this combination, two water pumps are provided to ensure sufficient water flow rates, which have a better cooling effect on both the motor controller and the oil-water heat exchanger.
(24) It should be noted that in the combination 2 and the combination 3, the cooling water outlet of the motor controller and the water outlet of the oil-water heat exchanger are respectively connected to the water inlet of the radiator of the water cooling assembly and the cooling water inlet of the motor, thereby separately cooling the motor controller and the motor by dividing the cooling water from the radiator (i.e., the water cooling assembly), which improves the cooling efficiency of the combined cooling system and obtains a better cooling effect.
(25) Combination 4: as shown in
(26) In the case of the combination 4, the condenser can only cool the oil circuit, and the circulation in the water cooling assembly may no longer be introduced into the oil-water heat exchanger. Of course, the water in the cooling water circuit may still be introduced into the oil-water heat exchanger.
(27) Of course, the embodiments of the combined cooling system of the present disclosure are not limited to these. If needed, the water circuit connection can be adjusted as shown in
(28) In an embodiment, when the other end of the water cooling assembly is only connected to the cooling water inlet of the motor controller, the first water pump may also be connected in series between the cooling water outlet of the motor controller and the water inlets of the oil-water heat exchanger via a water pipe; or, the first water pump may also be connected in series between the water outlet of the oil-water heat exchanger and the cooling water inlet of the motor via a water pipe. In other words, the first water pump may be arranged at any place in the cooling water circuit, so as to realize the cooling water circulation in the water circuit.
(29) In an embodiment, if needed, the oil pump may also be connected in series between the oil outlet of the oil-water heat exchanger and the cooling oil inlet of the motor. In other words, the oil pump may be arranged at any place in the cooling oil circuit to realize the cooling oil circulation in oil circuit.
(30) In an embodiment, an oil cooling radiator and an oil cooling fan are also provided in the oil cooling assembly, and the oil cooling radiator and the oil cooling fan may be provided separately, or share with the radiator and the fan in the water cooling assembly, thereby enhancing the cooling effect.
(31) In an embodiment, the motor controller, the water pump and fan in the water cooling assembly, and the oil pump in the oil cooling assembly may be controlled by the controller. According to the load and working conditions, the flow rate of the water pump and the oil pump can be adjusted, and the water pump and the oil pump can be started or stopped, the wind speed of the fan can be controlled, and the fan can be started or stopped. The controller may be a cooling system controller or a vehicle controller.
(32) For example, in a specific embodiment, as shown in
(33) When an air-conditioning cooling assembly is provided, as shown in
(34) In sum, the embodiments of the present disclosure disclose a variety of structures of combined cooling system of motor. They have an independent water cooling system, which can effectively ensure a stable and continuous power output of the motor. They have an independent oil cooling system, which can effectively increase the power density of the motor. The two systems can be used in combination. Different strategies are adopted under different working conditions. The combined control of the two systems is achieved by controlling the cooling fan, water pump, and oil pump. When the natural environment temperature is high and the vehicle is under high load, the two systems can be operated at full load. The above system can effectively improve the motor power, torque density, and effectively improve the environmental adaptability of motor.
(35) The above are only the embodiments of the present disclosure, and are not used to limit the protection scope of the present disclosure. Any modification, equivalent replacement, improvement, expansion, etc. made within the spirit and principle of the present disclosure shall all be included in the protection scope of the present disclosure.