CN217883121U - High-efficient radiating biax electric motor - Google Patents

High-efficient radiating biax electric motor Download PDF

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Publication number
CN217883121U
CN217883121U CN202220754910.9U CN202220754910U CN217883121U CN 217883121 U CN217883121 U CN 217883121U CN 202220754910 U CN202220754910 U CN 202220754910U CN 217883121 U CN217883121 U CN 217883121U
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cooling mechanism
electric motor
water
shell
forced air
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CN202220754910.9U
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新谷幸浩
胡志勇
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Dongguan Rijing Electronic Co ltd
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Dongguan Rijing Electronic Co ltd
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Abstract

The utility model discloses a high-efficient radiating biax electric motor relates to biax electric motor technical field, and the radiating effect is not good when using for solving current biax electric motor, can only utilize environment and self to dispel the heat to long-time the back of using, the condition that the radiating efficiency is too slow can appear, influences biax electric motor normal use's problem. Install the shell in the electric motor main part, the both sides of shell all are provided with forced air cooling mechanism, and forced air cooling mechanism is provided with threely, the upper surface of shell is provided with the terminal box, the lower surface of shell is provided with the supporting seat, the bottom of supporting seat is provided with the base, the last air exit of installing of forced air cooling mechanism, a side end face of forced air cooling mechanism is provided with first axle sleeve, install the pivot in the first axle sleeve, the bottom of terminal box is provided with the fixing base, and the fixing base passes through screw and shell threaded connection, the both sides of base all are provided with the fixed slot.

Description

High-efficient radiating biax electric motor
Technical Field
The utility model relates to a biax electric motor technical field specifically is a high-efficient radiating biax electric motor.
Background
An electric motor, also known as a motor or an electric motor, is an electrical apparatus that converts electrical energy into mechanical energy, and reuses the mechanical energy to generate kinetic energy for driving other devices. Electric-powered uses range from large to heavy industries, to small toys. Different types of motors can be selected under different environments, and wind generating equipment such as electric fans, electric toy vehicles, ships and the like can be selected; elevators, transportation belts for electrically propelled vehicles such as underground railways, trams, factories and large stores; electrically operated automatic doors on buses, electrically operated roller shutters, and the like. The motors are very diverse, but they can be roughly classified into ac motors and dc motors for use in different applications.
However, the existing double-shaft electric motor has poor heat dissipation effect when in use, and only can utilize the environment and the motor to dissipate heat, so that after long-time use, the situation of too low heat dissipation efficiency can occur, and the problem of influencing the normal use of the double-shaft electric motor can occur; therefore, the existing requirements are not met, and a double-shaft electric motor with efficient heat dissipation is provided.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a high-efficient radiating biax electric motor to solve the current biax electric motor that proposes in the above-mentioned background art radiating effect when using not good, can only utilize environment and self to dispel the heat, thereby long-time the back of using, can appear the condition that the radiating efficiency is too slow, influence biax electric motor normal use's problem.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a high-efficient radiating biax electric motor, includes electric motor main part, forced air cooling mechanism and water-cooling mechanism, install the shell in the electric motor main part, the both sides of shell all are provided with forced air cooling mechanism, and forced air cooling mechanism is provided with threely, the upper surface of shell is provided with the terminal box, the lower surface of shell is provided with the supporting seat, the bottom of supporting seat is provided with the base, install the air exit in the forced air cooling mechanism, a side end face of forced air cooling mechanism is provided with first axle sleeve, install the pivot in the first axle sleeve.
Preferably, the bottom of terminal box is provided with the fixing base, and the fixing base passes through screw and shell threaded connection, the both sides of base all are provided with the fixed slot, install the screw in the fixed slot.
Preferably, the internally mounted of forced air cooling mechanism has the grid plate, the preceding terminal surface of grid plate is provided with the second shaft cover, all be provided with the heat dissipation fan around the second shaft cover, and the heat dissipation fan is provided with six.
Preferably, the water tank is installed to the preceding terminal surface of water-cooling mechanism, a side terminal surface of water tank is provided with the water pump, the upper surface of water tank is provided with the water filling port.
Preferably, a second through hole is formed in the water cooling mechanism, and a first through hole is formed in the upper surface of the water cooling mechanism.
Preferably, all install the circulating water cooling pipe around the water-cooling mechanism, and the circulating water cooling pipe is provided with a plurality of.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the utility model discloses a set up air cooling mechanism and water-cooling mechanism, air cooling mechanism is provided with two, be located the both sides of electric motor shell respectively, water cooling mechanism's surface has all installed the circulating water cooling pipe, the circulating water cooling pipe is provided with a plurality of, when using, inject water in the water tank, install water cooling mechanism on the shell again, the water pump makes the cooling water flow between circulating water cooling pipe and water tank, dispel the heat to it, the air cooling mechanism of shell both sides utilizes its inside heat dissipation fan to dispel the heat to motor inside simultaneously, combination between air cooling mechanism and water-cooling mechanism dispels the heat to electric motor's inside and outside simultaneously, thereby improve the radiating effect of electric motor during operation, it is not good to have solved current biax electric motor radiating effect when using, can only utilize environment and self to dispel the heat, thereby long-time use the back, the condition slow enough of radiating efficiency can appear, influence the problem of electric motor normal use.
2. Through setting up the second through-hole in the inside of water-cooling mechanism, the upper surface sets up first through-hole, can directly peg graft water-cooling mechanism on the surface of shell from one side when the installation, then with the terminal box through first through-hole install the top at the shell can, make things convenient for water-cooling mechanism's loading and unloading.
Drawings
Fig. 1 is a schematic view of the overall structure of a dual-shaft electric motor according to the present invention;
FIG. 2 is an enlarged schematic view of the internal structure of the air cooling mechanism of the present invention;
FIG. 3 is an enlarged schematic view of the overall structure of the water cooling mechanism of the present invention;
in the figure: 1. an electric motor main body; 2. a housing; 3. an air cooling mechanism; 4. a rotating shaft; 5. a junction box; 6. a fixed seat; 7. a base; 8. a supporting base; 9. a fixing groove; 10. an air outlet; 11. a first shaft sleeve; 12. a grid plate; 13. a heat dissipation fan; 14. a second shaft sleeve; 15. a water cooling mechanism; 16. a first through hole; 17. a second through hole; 18. a circulating water-cooled tube; 19. a water tank; 20. a water pump; 21. a water injection port.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
Referring to fig. 1-3, the present invention provides an embodiment: the utility model provides a high-efficient radiating biax electric motor, including electric motor main part 1, air-cooled mechanism 3 and water-cooling mechanism 15, install shell 2 on the electric motor main part 1, the both sides of shell 2 all are provided with air-cooled mechanism 3, and air-cooled mechanism 3 is provided with threely, the upper surface of shell 2 is provided with terminal box 5, the lower surface of shell 2 is provided with supporting seat 8, the bottom of supporting seat 8 is provided with base 7, install air exit 10 on the air-cooled mechanism 3, a side end face of air-cooled mechanism 3 is provided with first axle sleeve 11, install pivot 4 in the first axle sleeve 11, during the use, inject the cooling water in water tank 19, install water-cooling mechanism 15 on shell 2 again, can directly peg graft water-cooling mechanism 15 on the surface of shell 2 from one side when the installation, then install terminal box 5 at the top of shell 2 through first through-hole 16, make things convenient for the loading and unloading of water-cooling mechanism 15, later water pump 20 makes the cooling water flow between circulating water-cooling pipe 18 and water tank 19, dispel the heat to it, simultaneously, the inside heat dissipation of motor of air-cooling mechanism 3 utilizes the inside heat dissipation of its inside heat dissipation of heat dissipation motor to carry out, thereby the influence of biax electric motor can only when the normal heat dissipation effect of the use has appeared in the normal heat dissipation of the use, thereby, the circumstances of the biax electric motor self-cooling mechanism, thereby the heat dissipation has been solved when the heat dissipation effect of the heat-cooling mechanism itself, the heat dissipation of the heat-cooling mechanism itself can be used, the heat-cooling mechanism, the normal circumstances, the heat-driven motor is good.
Further, the bottom of terminal box 5 is provided with fixing base 6, and fixing base 6 passes through screw and 2 threaded connection of shell, and the both sides of base 7 all are provided with fixed slot 9, install the screw in the fixed slot 9, conveniently install fixedly.
Further, the inside of the air cooling mechanism 3 is provided with a grid plate 12, the front end face of the grid plate 12 is provided with a second shaft sleeve 14, the periphery of the second shaft sleeve 14 is provided with six heat dissipation fans 13, and the air cooling mechanisms 3 on the two sides of the shell 2 utilize the heat dissipation fans 13 inside to dissipate heat inside the motor.
Further, a water tank 19 is mounted on a front end surface of the water cooling mechanism 15, a water pump 20 is disposed on a side end surface of the water tank 19, a water filling port 21 is disposed on an upper surface of the water tank 19, cooling water is filled in the water tank 19, and the water cooling mechanism 15 is mounted on the housing 2.
Further, the inside of water cooling mechanism 15 is provided with second through-hole 17, and the upper surface of water cooling mechanism 15 is provided with first through-hole 16, can directly peg graft water cooling mechanism 15 on the surface of shell 2 from one side when the installation, then install terminal box 5 in the top of shell 2 through first through-hole 16 can.
Further, all install circulating water-cooling pipe 18 around water-cooling mechanism 15, and circulating water-cooling pipe 18 is provided with a plurality of, water pump 20 makes the cooling water flow between circulating water-cooling pipe 18 and water tank 19, dispel the heat to it, the inside heat dissipation fan 13 that utilizes its inside heat dissipation fan 13 of air-cooling mechanism 3 of shell 2 both sides dispels the heat to the motor simultaneously, the combination between water-cooling mechanism 15 and air-cooling mechanism 3 dispels the heat to electric motor's inside and outside simultaneously, thereby improve the radiating effect of electric motor during operation.
The working principle is as follows: when the double-shaft electric motor is used, cooling water is injected into the water tank 19, the water cooling mechanism 15 is installed on the shell 2, the water cooling mechanism 15 can be directly inserted into the surface of the shell 2 from one side when the double-shaft electric motor is installed, then the junction box 5 is installed at the top of the shell 2 through the first through hole 16, the water cooling mechanism 15 is convenient to assemble and disassemble, then the water pump 20 enables the cooling water to flow between the circulating water cooling pipe 18 and the water tank 19 and dissipate heat of the cooling water, meanwhile, the air cooling mechanisms 3 on the two sides of the shell 2 dissipate heat inside the motor through the heat dissipation fans 13 inside the air cooling mechanisms, the combination of the water cooling mechanisms 15 and the air cooling mechanisms 3 simultaneously dissipate heat of the inner part and the outer part of the electric motor, so that the heat dissipation effect of the electric motor during working is improved, the problems that the heat dissipation effect of the existing double-shaft electric motor is poor when the electric motor is used and only can be used by the environment and the heat dissipation mechanism can be too slow in heat dissipation efficiency after the double-shaft electric motor is used for a long time are solved, and the normal use of the double-shaft electric motor is influenced.
It is obvious to a person skilled in the art that the invention is not restricted to details of the above-described exemplary embodiments, but that it can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (6)

1. The utility model provides a high-efficient radiating biax electric motor, includes electric motor main part (1), forced air cooling mechanism (3) and water-cooling mechanism (15), its characterized in that: install shell (2) on electric motor main part (1), the both sides of shell (2) all are provided with forced air cooling mechanism (3), and forced air cooling mechanism (3) are provided with threely, the upper surface of shell (2) is provided with terminal box (5), the lower surface of shell (2) is provided with supporting seat (8), the bottom of supporting seat (8) is provided with base (7), install air exit (10) on forced air cooling mechanism (3), a side end face of forced air cooling mechanism (3) is provided with primary shaft cover (11), install pivot (4) in primary shaft cover (11).
2. A high efficiency heat dissipating twin shaft electric motor as defined in claim 1 wherein: the bottom of junction box (5) is provided with fixing base (6), and fixing base (6) pass through screw and shell (2) threaded connection, the both sides of base (7) all are provided with fixed slot (9), install the screw in fixed slot (9).
3. A high efficiency heat dissipating twin shaft electric motor as defined in claim 1 in which: the internally mounted of forced air cooling mechanism (3) has grid plate (12), the preceding terminal surface of grid plate (12) is provided with second shaft sleeve (14), all be provided with heat dissipation fan (13) around second shaft sleeve (14), and heat dissipation fan (13) are provided with six.
4. A high efficiency heat dissipating twin shaft electric motor as defined in claim 1 wherein: the water tank (19) is installed to the preceding terminal surface of water-cooling mechanism (15), a side end face of water tank (19) is provided with water pump (20), the upper surface of water tank (19) is provided with water filling port (21).
5. A high efficiency heat dissipating twin shaft electric motor as defined in claim 1 wherein: the water cooling mechanism (15) is internally provided with a second through hole (17), and the upper surface of the water cooling mechanism (15) is provided with a first through hole (16).
6. A high efficiency heat dissipating twin shaft electric motor as defined in claim 1 wherein: all install circulating water-cooling pipe (18) around water-cooling mechanism (15), and circulating water-cooling pipe (18) are provided with a plurality of.
CN202220754910.9U 2022-04-02 2022-04-02 High-efficient radiating biax electric motor Active CN217883121U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220754910.9U CN217883121U (en) 2022-04-02 2022-04-02 High-efficient radiating biax electric motor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220754910.9U CN217883121U (en) 2022-04-02 2022-04-02 High-efficient radiating biax electric motor

Publications (1)

Publication Number Publication Date
CN217883121U true CN217883121U (en) 2022-11-22

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220754910.9U Active CN217883121U (en) 2022-04-02 2022-04-02 High-efficient radiating biax electric motor

Country Status (1)

Country Link
CN (1) CN217883121U (en)

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