Energy-saving and endurable auto electric water pump
10731659 ยท 2020-08-04
Assignee
Inventors
Cpc classification
F04D29/4293
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D13/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D13/0686
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/5866
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/5813
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2250/70
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2260/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2240/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04D29/42
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/58
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A kind of an energy-saving and endurable auto electric water pump, including fixed support, electrical connector, rear cover of motor, controller assembly, motor assembly, isolation sleeve, impeller assembly and pump head housing, and the said fixed support and said electrical connector are set on the outer end surface of the rear cover of the motor, the controller assembly is mounted on the inner end face of the rear cover of the motor, and rear cover of the motor is mounted together with the motor assembly, the said impeller assembly is installed together with the isolation sleeve through rotating axis, while the water-cooling mechanism is set on the controller assembly. In the present invention, the water cooling mechanism is set on the controller of the electric water pump, which can effectively reduce the temperature of the controller and improve the service life of the pump.
Claims
1. An energy-saving and endurable auto electric water pump, the electric water pump comprising: a fixed support, an electrical connector, a rear cover of a motor, a controller assembly, a motor assembly, an isolation sleeve, an impeller assembly, and a pump head housing, wherein: the isolation sleeve includes a barrel portion, a center of a bottom surface of the barrel portion is provided with a cylindrical lug boss which has a hole in a center of the cylindrical lug boss, a rotating axis is inserted into the hole in the center of the cylindrical lug boss, and the fixed support and the electrical connector are set on an outer end surface of the rear cover of the motor, the controller assembly is installed between the motor assembly and the rear cover of the motor and includes components, the components being electrically connected through printed wiring, and the rear cover of the motor is connected with the motor assembly, the impeller assembly is installed together with the isolation sleeve with the rotating axis penetrating the impeller assembly, and the barrel portion of the isolation sleeve extends into an interior of the motor assembly and separates the motor assembly and the impeller assembly, an upper edge of the barrel portion of the isolation sleeve extends outwardly and sequentially forms a support portion, an annular lug boss, and a step portion, and a water outlet passage is set on the annular lug boss, the water outlet passage having an inlet end and an outlet end and including a U-shaped groove with a gradually enlarged spiral, an overflow gap disposed at an intersecting position of the inlet end and the outlet end, and a shielding sheet disposed at the outlet end, and a water-cooling device is set on a lower side of the controller assembly, the water-cooling device including a heat exchanger, an inflow pipe, and an outflow pipe, the heat exchanger being provided at a back of the controller assembly, the inflow pipe and the outflow pipe being provided inside a motor housing and the pump head housing, one end of the inflow pipe being connected with a water outlet of the pump and the other end of the inflow pipe being connected with a water inlet end of the heat exchanger, and one end of the outflow pipe being connected with a water inlet of the pump and the other end of the outflow pipe being connected with a water outlet end of the heat exchanger.
2. The energy-saving and endurable auto electric water pump according to claim 1, wherein the impeller assembly includes a rotor and an impeller, and the rotor and the impeller are integrally injection molded.
3. The energy-saving and endurable auto electric water pump according to claim 1, wherein a rubber support is set at an exterior of the motor housing, the rubber support being shrink fitted with the motor housing through a bore arranged on the rubber support.
4. The energy-saving and endurable auto electric water pump according to claim 1, wherein an adjusting shim of the motor assembly is set between the rotor and the annular lug boss.
5. The energy-saving and endurable auto electric water pump according to claim 1, wherein an impeller assembly stopper is set at a top of the rotating axis.
6. The energy-saving and endurable auto electric water pump according to claim 2, wherein an impeller assembly stopper is set at a top of the rotating axis.
7. The energy-saving and endurable auto electric water pump according to claim 3, wherein an impeller assembly stopper is set at a top of the rotating axis.
8. The energy-saving and endurable auto electric water pump according to claim 4, wherein an impeller assembly stopper is set at a top of the rotating axis.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) In order to clearly explain the embodiments or the technical solutions of the current technology, hereafter we will briefly introduce the attached drawings required for the embodiments or the technical solutions, obviously, the attached drawings described below are only some embodiments of the present invention, those of ordinary skill in the art can also obtain other drawings based on these attached drawings without creative efforts.
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(12) In the figures, reference number 1 is fixed support, 2 is electrical connector, 3 is rear cover of motor, 4 is silicone gasket, 5 is heat exchanger, 5-1 is housing heat exchanger, 5-2 is coil heat exchanger, 6 is sealing gasket, 7 is controller assembly, 8 is motor assembly, 8-1 is motor housing, 8-2 is stator core, 8-3 is stator frame, 8-4 is varnished wire, 8-5 is PCB, 8-6 is three-phase lead, 9 is rubber holder, 10 is bushing, 11 is O-ring, 12 is isolation sleeve, 12-1 is step portion, 12-2 is annular lug boss, 12-3 is support portion, 12-4 is cylindrical lug boss, 12-5 is rotating axis, 12-6 is barrel portion, 12-7 is water outlet passage, 12-8 is shielding sheet, 12-9 is overflow gap, 12-10 is stopper mechanism of impeller assembly, 13 is adjusting shim, 14 is impeller assembly, 14-1 is impeller, 14-2 is rotor, 15 is an end surface bearing, 16 is seal ring, 17 is pump head housing, 18 is blanking cover, 19 is inflow pipe, 20 is water inlet, 21 is water outlet, and 22 is outflow pipe.
DETAILED DESCRIPTION OF THE INVENTION
(13) A clear and complete description of the technical solutions of the embodiments in the present invention will be given in combination with the attached figures of the embodiments in the present invention. Obviously, the described embodiments are only part of the embodiments in the present invention rather than all embodiments. All other embodiments obtained by those of ordinary skill in the art before they make creative labor based on the embodiments of the present invention are all belong to the scope of protection of the present invention.
Embodiment 1
(14) As shown in
(15) As shown in
(16) As shown in
(17) In the present invention, the controller assembly 7: printed wiring, providing electrical connection and fix electrical components between the components, functions: actively control the motor operates according to the designed direction, speed, angle and response time through integrated circuit to make the application scope of the motor wider and it has the characteristics of higher output efficiency and lower noise.
(18) As shown in
(19) As shown in
(20) The installation ways of rotor 14-2 and impeller 14-1 can also be other ways. For example, they can be bolted together, but attention should be paid to the sealing.
(21) Rotating axis 12-5 penetrates the impeller assembly 14 and is installed with pump head housing 17 through end surface bearing 15. The end surface bearing 15 is also called section bearing or plane bearing which is used to bear the axial force of the rotating axis.
(22) The electric water pump in the present invention is provided with water-cooling mechanism on the controller assembly 7.
(23) As shown in
(24) As shown in
(25) In this embodiment, heat exchanger 5 is set at the rear of controller assembly 7, and heat exchanger 5 and water pump share one power source through pipes. On one end, it can effectively reduce the operational problems of controller assembly 7, and on the other hand, the structure is simple without adding new sources of power to the water pump.
(26) In the present invention, heat exchanger 5 may have other forms, such as plate-fin radiator and coil heat exchanger, as shown in
(27) A preferred embodiment of this embodiment is: rubber holder 9 is set at the outer of the motor housing 8-1, and the rubber holder 9 shrink fitting with the motor housing 8-1 through the inner bore. The inner holes of rubber holder 9 are installed with bushing 10. Two bushings 10 are installed in the corresponding inner holes of rubber holder 9. The rubber holder 9 is fitted over the excircle of motor housing 8-1 and plays the role of vibration damper, and by adding bushings 10 may increase the torque screws to prevent loosening. Isolation sleeve 12 and motor housing 8-1 can be installed together by bolt. O-ring 11 is set between motor housing 8-1 and isolation sleeve 12.
(28) In the present invention, adjusting shim 13 is set between rotor 14-2 and annular lug boss 12-2 so that the mounting position of the rotor 14-2 and cylindrical lug boss 12-4 can be easily and quickly adjusted to make the rotor 14-2 mounted in a suitable location.
(29) In the present invention, blanking cover 18 is set for the outflow pipe 22 and inflow pipe 19 to prevent dust and foreign matter from entering the water pump, thus to protect the pump.
Embodiment 2
(30) The structure of embodiment 2 is basically the same with embodiment 1, except that: as shown in
(31) The step portion 12-1 of isolation sleeve 12 corresponds to water pump housing 17, isolation sleeve 12 plays the role of a gasket to make the sealing effect better. Seal ring 16 can be respectively set for the upper and lower surface of step portion 12-1, the upper seal ring 16 can prevent water leakage in the inner chamber of water pump head housing 17, the lower seal ring 16 can prevent outside water from entering the inner chamber where the motor assembly 8 and controller assembly 7 is placed.
(32) In this embodiment, the main function of water outlet passage 12-7 is to increase the flow distance and reduce the water flow velocity after they are thrown out centrifugally from the impeller 14-1 to make the water smoothly flow back into the tank without affecting the status of the water in the tank. The shape can be set different, such as circular, square, etc. according to actual condition. As shown in
(33) Groove corresponding to outlet passage 12-7 is set on water pump head housing 17 and forms a water passage. In the present invention, all components of the isolation sleeve 12 are injection molded together.
Embodiment 3
(34) This embodiment is basically the same as embodiment 2, except that: as shown in
(35) Pressing in the stopper mechanism 12-10 of the impeller assembly from the top of the rotating axis 12-5 can effectively reduce the gap between the stopper mechanism of impeller assembly 12-10 and impeller assembly 14 and reduce the axial movement of the impeller assembly 14 during operation and improve the life of electric water pump.
(36) Operation process of the present invention:
(37) Switch on the power, the controller assembly 7 drives the stator to produce a magnetic field and make the rotor 14-2 to rotate, impeller 14-1 rotates with rotor 14-2, the water in the center of impeller 14-1 is throw out to the surrounding, and pumped out from the outlet in a certain pressure. At the same time, due to the pressure drop at the center of the impeller 14-1, the water is pumped from the inlet, thus to achieve the water circulating in the vehicle.
(38) The foregoing is only preferred embodiments of the present invention which is not meant to limit the invention, and any modifications or equivalent replacement, or improvement within the spirit and principles of the present invention shall be included in the scope of protection of the present invention.