Translation door motor
By introducing heat dissipation pads and a circulating cooling system into the sliding door motor, the problem of low heat dissipation efficiency of traditional motors has been solved, achieving efficient heat dissipation and stable power output of the motor, extending the service life of the motor and reducing maintenance costs.
Patent Information
- Application Number
- CN202423015938.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-09
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-12-09
AI Technical Summary
Traditional sliding door motors suffer from poor heat dissipation efficiency when operating under high load for extended periods. This leads to accelerated aging of the insulation in the internal windings, reduced electromagnetic efficiency, unstable power output, and a tendency to shut down due to overheating. Consequently, their lifespan is shortened and maintenance costs increase.
The system employs heat dissipation pads and a circulating cooling system. The heat dissipation pads quickly absorb heat from the motor, while the circulating cooling system, consisting of a cooling tank, circulation pipes, and a pump, achieves efficient heat dissipation, ensures the renewal and circulation of coolant, and prevents the motor from overheating.
It effectively reduces motor temperature, maintains stable power output, avoids downtime due to malfunctions, extends motor lifespan, and reduces maintenance frequency and costs.
Smart Images

Figure CN223527907U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to motor technical field especially relates to the translation door motor. BACKGROUND
[0002] In the field of modern architecture and access control, sliding door is widely used in various commercial places, residential areas and enterprise and public unit entrances due to its characteristics of beautiful, space-saving and smooth opening, and the sliding door motor as the "power heart" of the sliding door undertakes the key mission of driving the door body to open and close stably and accurately, and its performance is directly related to the daily convenience and safety.
[0003] In daily use, the motor inside the motor as the core power unit is stably rooted on the base, when receiving the operation instruction, it runs at full power to output torque, and with the help of the matching turbine device and transmission link, the power is cleverly converted and accurately transmitted to drive the sliding door to move horizontally along the predetermined guide rail smoothly, realize the elegant opening and closing of the door body, meet the frequent access requirements of personnel and vehicles, and on the control level, the operator can flexibly switch the motor working state according to the actual scene through the clutch handle cooperated with the clutch switch, at the same time, the travel switch is always on duty and strictly tracks the motor running process and the real-time position of the door body, just like a loyal "guardian", once the door body reaches the preset travel boundary, the brake signal is triggered immediately to stop the motor, so as to strictly guard the opening and closing specifications of the door body and prevent accidents such as over-travel collision and build a strong safety line for passing.
[0004] However, in the long-term practical application of the traditional sliding door motor, when the motor runs for a long time under high load, a large amount of heat energy is generated, most traditional motors only rely on simple heat dissipation fins or natural air cooling, the heat dissipation efficiency is very low, the heat accumulation causes the motor internal winding insulation to age rapidly and the electromagnetic efficiency to decrease sharply, not only the power output is greatly discounted and frequent jamming occurs, but even the motor may be triggered to stop due to overheating, which seriously shortens the service life of the motor, increases the operation and maintenance frequency and cost.
[0005] Therefore, the sliding door motor is provided to solve the problems in the above background. SUMMARY
[0006] In order to make up for the above shortcomings, the utility model provides a sliding door motor, which aims at improving the problems in the prior art that when the motor runs for a long time under high load, a large amount of heat energy is generated, most traditional motors only rely on simple heat dissipation fins or natural air cooling, the heat dissipation efficiency is very low, the heat accumulation causes the motor internal winding insulation to age rapidly and the electromagnetic efficiency to decrease sharply, not only the power output is greatly discounted and frequent jamming occurs, but even the motor may be triggered to stop due to overheating, which seriously shortens the service life of the motor, increases the operation and maintenance frequency and cost.
[0007] In order to achieve the above object, the utility model provides the following technical scheme: translation door motor, including base, the upside of base is connected with the shell through bolt, the motor is fixedly installed on the base, the outside of motor is provided with cooling assembly, cooling assembly is used for cooling motor, the front side of motor is provided with clutch switch, the rear side of motor is fixedly installed with travel switch.
[0008] Further, the cooling assembly comprises a heat dissipation patch, the heat dissipation patch is fixedly installed on the motor, a cooling box is fixedly installed on the heat dissipation patch, a circulating pipe is fixedly installed on the heat dissipation patch, a water outlet pump is fixedly installed on the left front end of the cooling box, and a water inlet pump is fixedly installed on the left front end of the cooling box.
[0009] Further, the output end of the circulating pipe is fixedly connected to one end of the circulating pipe, and the water outlet pump is fixedly connected to the other end of the circulating pipe.
[0010] Further, the rear side of the base is fixedly installed with a turbine device.
[0011] Further, the front side of the base is fixedly installed with a clutch handle.
[0012] Further, the upper side of the cooling box is fixedly connected with a water inlet.
[0013] Further, the lower side of the cooling box is fixedly connected with a water outlet.
[0014] The utility model has the following beneficial effects:
[0015] 1. In the utility model, the motor is firmly rooted on the base, as the strong "power engine" of the sliding door opening and closing, continuously outputs power, and drives the door body to run smoothly. The clutch switch on the front side is carefully laid out, and the corresponding clutch handle is tacitly matched, like a flexible "control key", which is handed to the operator, so that the motor working state can be easily switched according to the actual scene, and the power transmission path can be easily adjusted, the running rhythm of the sliding door can be accurately grasped. At the same time, the travel switch installed on the rear side of the motor, like a loyal "sentinel", is fully concentrated on the motor running process and the position of the sliding door. Once the door body approaches or reaches the preset travel end point, it reacts quickly and sends a braking signal to stop the motor, which effectively ensures that the door body opens and closes accurately, builds a safe operation line, and eliminates the collision failure caused by overstroke and other unexpected conditions.
[0016] 2、The utility model discloses a heat dissipation paste is closely attached to the motor shell, incarnates the efficient " heat conduction pioneer", and the heat produced in the moment of motor operation is quickly absorbed by it, realizes the first round heat dissipation " attack", effectively reduces the shell temperature, and the complementary is the circulating cooling " pipe network system " built by cooling tank, circulating pipe, cooling tank imports the cooling liquid " new force " on demand by the upper side water inlet, and the lower side water outlet is responsible for discharging " old liquid " to guarantee that the cooling liquid is always new, and when working, the water inlet pump full -power opens, and the cooling liquid is injected into the circulating pipe from the cooling tank, and the cooling liquid is along the pipe " channel " galloping and flowing, and the heat conducted by the heat dissipation paste is fully absorbed, and after " full load and return ", the water outlet pump is sent back to the cooling tank, and the cooling liquid always maintains the low temperature high -efficient state, and the motor is dispelled " heat magic ", and the power output is stable and durable, and the overall device is guaranteed to run stably. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is the perspective view of the translation door motor that the utility model provides;
[0018] Figure 2 It is the internal structure schematic diagram of the translation door motor that the utility model provides;
[0019] Figure 3 It is the cooling assembly structure schematic diagram of the translation door motor that the utility model provides;
[0020] Figure 4 It is the rear view of the translation door motor that the utility model provides.
[0021] Legend:
[0022] 1, shell;2, motor;3, clutch switch;4, clutch handle;5, base;6, travel switch;7, turbine device;8, heat dissipation paste;9, circulating pipe;10, cooling tank;11, water inlet pump;12, water outlet pump;13, water inlet;14, water outlet. DETAILED DESCRIPTION
[0023] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model, and obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor belong to the protection scope of the utility model.
[0024] Reference Figure 1 and Figure 2The utility model provides an embodiment: translation door motor, the upper side of base 5 is connected with the shell 1 through bolt, is fixedly installed with motor 2 on base 5, the outside of motor 2 is provided with cooling assembly, and cooling assembly is used for cooling motor 2, the front side of motor 2 is provided with clutch switch 3, and the rear side of motor 2 is fixedly installed with travel switch 6,
[0025] Motor 2 as core power source, is firmly installed on base 5, and power is transported for the opening and closing action of translation door, clutch switch 3 is arranged at the front side of motor 2, and plays key control efficiency, and with the cooperation of front side clutch handle 4, operating personnel can conveniently switch motor 2 working state, and start or adjust power transmission mode as needed, accurately control translation door operation rhythm, and at the same time, travel switch 6 is installed at the rear side of motor 2, like acute " sentry ", closely monitors motor 2 running process and translation door position, and once door body reaches preset travel end point, immediately triggers signal, promotes motor 2 to stop running, to this end guarantees that door body opens and closes in place, and runs safely and orderly, avoids overstroke and causes fault collision.
[0026] Referring to Figure 1 And Figure 3 Cooling assembly includes heat dissipation paste 8, heat dissipation paste 8 is fixedly installed on motor 2, heat dissipation paste 8 is fixedly installed with cooling tank 10, heat dissipation paste 8 is fixedly installed with circulating pipe 9, and the left side of the front end of cooling tank 10 is fixedly installed with water pump 12, and the left side of the front end of cooling tank 10 is fixedly installed with water pump 11;
[0027] Heat dissipation paste 8 closely adheres to the shell 1 of motor 2, just like efficient " heat conduction intermediary ", quickly absorbs heat generated by the operation of motor 2, realizes preliminary heat dissipation and cooling, and the cooling tank 10 and the circulating pipe 9 cooperated with each other build up a circulating cooling " pipe network ", the cooling tank 10 introduces cooling liquid through the upper inlet 13, and the lower outlet 14 can discharge water as needed, to ensure the update and circulation of the cooling liquid, when working, the water pump 11 pumps the cooling liquid from the cooling tank 10 into the circulating pipe 9, the cooling liquid flows in the circulating pipe 9, fully absorbs the heat conducted by the heat dissipation paste 8, and then is pumped back into the cooling tank 10 by the water pump 12, and the cooling liquid is circulated, so that the cooling liquid is maintained in a low-temperature and high-efficiency heat dissipation state, preventing the motor 2 from overheating and ensuring the stable and durable power output.
[0028] Referring to Figure 1 、 Figure 3 And Figure 4 The output end of the circulating pipe 9 is fixedly connected to one end of the circulating pipe 9, the water pump 12 is fixedly connected to the other end of the circulating pipe 9, the rear side of the base 5 is fixedly installed with the turbine device 7, the front side of the base 5 is fixedly installed with the clutch handle 4, the upper side of the cooling tank 10 is fixedly communicated with the water inlet 13, and the lower side of the cooling tank 10 is fixedly communicated with the water outlet 14;
[0029] The output end of the circulating pipe 9 is fixedly communicated with one end of the circulating pipe 9, and the water outlet pump 12 is fixedly communicated with the other end of the circulating pipe 9, so that the cooling liquid can be circulated and cooled down, and the turbine device 7 installed at the rear side of the base 5 is connected to the motor 2 through a special mechanical structure and a transmission design, and can convert the power of the motor 2 into a precise transmission, adapt to the operation characteristics of the sliding door, drive the door body to move horizontally along the guide rail smoothly and stably, complete the opening and closing action, achieve the daily access control function, and the operator can conveniently switch the working state of the motor 2 through the clutch handle 4, flexibly start or stop or adjust the power transmission mode as needed, accurately control the operation rhythm of the sliding door, and the cooling box 10 introduces the cooling liquid through the upper water inlet 13, and the lower water outlet 14 can discharge water as needed, so as to ensure the renewal and circulation of the cooling liquid.
[0030] Working principle: when the device is used, the motor 2 supplies power for the opening and closing action of the sliding door, the clutch switch 3 plays a key control effect, and the operator can conveniently switch the working state of the motor 2 through the cooperation of the front side clutch handle 4, flexibly start or stop or adjust the power transmission mode as needed, accurately control the operation rhythm of the sliding door, at the same time, the travel switch 6 strictly monitors the running process of the motor 2 and the position of the sliding door, and once the door body reaches the preset travel end point, a signal is triggered to stop the motor 2 from running, so as to ensure that the door body is in place and runs safely and orderly, the heat dissipation sticker 8 is closely attached to the motor shell 1, quickly absorbs the heat generated by the motor 2 during operation, and realizes preliminary heat dissipation and cooling, the cooling box 10 introduces the cooling liquid through the upper water inlet 13, and the lower water outlet 14 can discharge water as needed, so as to ensure the renewal and circulation of the cooling liquid, during operation, the water inlet pump 11 pumps the cooling liquid from the cooling box 10 into the circulating pipe 9, the cooling liquid flows in the circulating pipe 9, fully absorbs the heat conducted by the heat dissipation sticker 8, and then is pumped back to the cooling box 10 by the water outlet pump 12, so as to maintain the low-temperature and high-efficiency heat dissipation state of the cooling liquid, prevent the motor 2 from overheating, and ensure the stable and durable power output.
[0031] Finally, it should be pointed out that: the above-mentioned is only the preferred embodiment of the present application, and is not used to limit the present application, although the present application has been described in detail with reference to the foregoing embodiments, for those skilled in the art, the technical solutions recorded in the foregoing embodiments can be modified, or some technical features can be replaced, any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. Sliding door motor comprising a base (5), characterized in that: The upper side of the base (5) is bolted with a shell (1), the base (5) is fixedly installed with a motor (2), the outer side of the motor (2) is provided with a cooling assembly, the cooling assembly is used for cooling the motor (2), the front side of the motor (2) is provided with a clutch switch (3), the rear side of the motor (2) is fixedly installed with a travel switch (6).
2. The translating door motor of claim 1, wherein: The cooling assembly comprises a heat dissipation sticker (8), the heat dissipation sticker (8) is fixedly installed on the motor (2), the heat dissipation sticker (8) is fixedly installed with a cooling box (10), the heat dissipation sticker (8) is fixedly installed with a circulating pipe (9), the front end left side of the cooling box (10) is fixedly installed with a water outlet pump (12), the front end left side of the cooling box (10) is fixedly installed with a water inlet pump (11).
3. The translating door motor of claim 2, wherein: The output end of the circulating pipe (9) is fixedly connected at one end of the circulating pipe (9), and the water outlet pump (12) is fixedly connected at the other end of the circulating pipe (9).
4. The translating door motor of claim 1, wherein: The rear side of the base (5) is fixedly installed with a turbine device (7).
5. The translating door motor of claim 1, wherein: The front side of the base (5) is fixedly installed with a clutch handle (4).
6. The translating door motor of claim 2, wherein: The upper side of the cooling box (10) is fixedly communicated with a water inlet (13).
7. The translating door motor of claim 2, wherein: The lower side of the cooling box (10) is fixedly communicated with a water outlet (14).