Speed reducer box body capable of rapidly dissipating heat
By incorporating semiconductor cooling chips and heat dissipation circulation pipes within the gearbox housing, combined with heat dissipation fins, the problem of low heat dissipation efficiency in existing gearbox housings is solved, achieving comprehensive and efficient heat dissipation within the housing and adapting to high-load operation under various working conditions.
Patent Information
- Application Number
- CN202520612465.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-02
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-04-02
AI Technical Summary
Existing gearbox housings have low heat dissipation efficiency, especially under high load operation, and traditional fan cooling methods cannot fully cover the inside of the housing, which can easily lead to local overheating and is significantly affected by ambient temperature.
The processing assembly consists of a semiconductor cooling chip and a heat dissipation circulation pipe, combined with heat dissipation fins, to achieve comprehensive heat dissipation inside the cabinet. The semiconductor cooling chip plays a stable role in heat dissipation, avoiding the influence of external temperature and enhancing heat dissipation capacity.
It achieves comprehensive and efficient heat dissipation inside the enclosure, avoids local overheating, ensures efficient heat dissipation under various operating conditions, improves heat dissipation efficiency, and meets the needs of high-load operation.
Smart Images

Figure CN223854800U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of speed reducer, specifically, a kind of speed reducer box body of quick heat dissipation. BACKGROUND
[0002] Speed reducer is a kind of independent component by being enclosed in rigid shell Gear transmission, worm transmission, gear worm transmission, commonly used as the speed reducer transmission device between prime mover and working machine, between prime mover and working machine or actuator, match speed and transmit torque, widely used in modern machinery, it is the mechanical transmission device in many fields of national economy, industry involves product category including all kinds of gear reducer, planetary gear reducer and worm reducer, also including various special transmission device, such as speed increasing device, speed regulating device and various composite transmission device including flexible transmission device, product service field involves metallurgy, non-ferrous, coal, building materials, ship, water conservancy, electric power, engineering machinery and petrochemical industry.
[0003] The existing speed reducer box body, mostly are on box body set up fan, heat dissipation is carried out to box body, to make the heat dissipation effect efficiency lower, this traditional heat dissipation mode, not only difficult to meet the heat dissipation demand under high load operation, and there are many problems in practical application, such as the wind power coverage range of fan is limited, cannot carry out comprehensive and effective heat dissipation to each corner in box body, lead to local overheating phenomenon frequently, in addition, the operation of fan is also influenced by ambient temperature, in high temperature environment, its heat dissipation efficiency will be further reduced.
[0004] For the problems in the related art, no effective solution has been proposed so far. UTILITY MODEL CONTENT
[0005] For the problems in the related art, the utility model provides a speed reducer box body of quick heat dissipation to overcome the above technical problems existing in the prior art.
[0006] Therefore, the utility model adopts the specific technical scheme as follows:
[0007] A kind of speed reducer box body of quick heat dissipation, including first processing component, the side of the first processing component is provided with lower box, the end of the lower box is provided with upper box by bolt, and the end of first processing component is connected on the upper box, the side of the lower box is provided with second processing component, the side of the lower box is provided with controller, the first processing component includes input pipe, the end of the input pipe is connected with first processing box, the inside of the first processing box is provided with filter screen, the side of the first processing box is inlaid with first semiconductor refrigeration sheet, the end inside the lower box of the first semiconductor refrigeration sheet is provided with diffusion sheet.
[0008] Further, in order to better guarantee the conveying effect, the upper end of the first treatment box is fixedly provided with a first conveying pump through fixing bolts, the input end of the first conveying pump is connected with a filter box, the output end of the first conveying pump is connected to the upper end of the first treatment box, and the first treatment box is embeddedly provided with a first temperature sensor.
[0009] Further, in order to better guarantee the treatment effect, one side of the first treatment box is connected with an output pipe, the output pipe is connected with a conveying pipe, one end of the conveying pipe extends to the inside of the upper box body, and the conveying pipe is fixedly arranged in the inside of the upper box body, and the end of the conveying pipe in the inside of the upper box body is connected with a plurality of output nozzles.
[0010] Further, in order to better guarantee the heat dissipation effect of different positions, the second treatment assembly comprises a second treatment box, the second treatment box is fixedly arranged on one side of the lower box body, one end of the second treatment box is connected with a second conveying pump, and the output end of the second conveying pump is connected with a heat dissipation circulating pipe.
[0011] Further, in order to better guarantee the circulation treatment effect, one end of the heat dissipation circulating pipe extends to the inside of the lower box body, and the heat dissipation circulating pipe is fixedly arranged on the inner wall of the lower box body, the output end of the heat dissipation circulating pipe extends from the inside of the lower box body to the outside of the lower box body and is connected with one side of the second treatment box.
[0012] Further, in order to better guarantee the monitoring effect, the second treatment box is embeddedly provided with a second semiconductor refrigeration sheet and a second temperature sensor on one side.
[0013] Further, in order to better guarantee the heat dissipation effect, the outer walls of the upper box body and the lower box body are symmetrically provided with heat dissipation fins, and the heat dissipation fins are matched with the upper box body and the lower box body.
[0014] The beneficial effects of the utility model are that: through the cooperative work of the first treatment assembly and the second treatment assembly, the overall heat dissipation of the box body is realized, the local overheating phenomenon is effectively avoided, compared with the disadvantages of the traditional fan heat dissipation which is easily affected by the environment temperature, through the components such as semiconductor refrigeration sheet and heat dissipation circulating pipe, the heat dissipation effect can be more stably exerted, is not restricted by the external high temperature environment, and high-efficiency heat dissipation under various working conditions is ensured, through the arrangement of heat dissipation fins, the heat dissipation capacity of the box body is further enhanced, the overall heat dissipation efficiency is improved, and the heat dissipation demand of the speed reducer under high load operation is met. BRIEF DESCRIPTION OF DRAWINGS
[0015] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, the drawings needed in the embodiments will be briefly introduced as follows. Obviously, the drawings in the following description only constitute some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained from these drawings without creative labor.
[0016] Figure 1 is a structure of a reducer box body capable of rapid heat dissipation according to an embodiment of the present application Figure 1 ;
[0017] Figure 2 is a structure of a reducer box body capable of rapid heat dissipation according to an embodiment of the present application Figure 2 ;
[0018] Figure 3 is a structure of a reducer box body capable of rapid heat dissipation according to an embodiment of the present application
[0019] Figure 4 is a structure of a reducer box body capable of rapid heat dissipation according to an embodiment of the present application
[0020] Figure 5 is Figure 4 a local enlarged view of a in FIG.
[0021] Figure 6 is a structure of a reducer box body capable of rapid heat dissipation according to an embodiment of the present application
[0022] Figure 7 is a structure of a reducer box body capable of rapid heat dissipation according to an embodiment of the present application
[0023] Figure 8 is a structure of a reducer box body capable of rapid heat dissipation according to an embodiment of the present application
[0024] In the drawings:
[0025] 1, first processing assembly; 101, input pipe; 102, first processing box; 103, filter screen; 104, first semiconductor refrigeration piece; 105, diffusion sheet; 106, first conveying pump; 107, filter box; 108, output pipe; 109, conveying pipe; 110, output nozzle; 111, first temperature sensor; 2, lower box body; 3, upper box body; 4, second processing assembly; 401, second processing box; 402, second conveying pump; 403, heat dissipation circulating pipe; 404, second semiconductor refrigeration piece; 405, second temperature sensor; 5, controller; 6, heat dissipation fin. DETAILED DESCRIPTION
[0026] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model.
[0027] According to the embodiment of the utility model, a reducer box body with rapid heat dissipation is provided.
[0028] Embodiment one;
[0029] As Figures 1-8 shown, according to the embodiment of the utility model, a reducer box body with rapid heat dissipation comprises a first processing assembly 1, one side of the first processing assembly 1 is provided with a lower box body 2, one end of the lower box body 2 is provided with an upper box body 3 through bolts, and one end of the first processing assembly 1 is connected to the upper box body 3, one side of the lower box body 2 is provided with a second processing assembly 4, one side of the lower box body 2 is provided with a controller 5, the outer walls of the upper box body 3 and the lower box body 2 are symmetrically provided with heat dissipation fins 6, and the heat dissipation fins 6 are matched with the upper box body 3 and the lower box body 2, and gear transmission, worm transmission and gear and worm transmission are arranged inside the lower box body 2 and the upper box body 3 during actual use.
[0030] The first processing assembly 1 comprises an input pipe 101, one end of the input pipe 101 is connected with a first processing box 102, the inside of the first processing box 102 is provided with a filter screen 103, a first semiconductor refrigeration fin 104 is inlaid on one side of the first processing box 102, one end of the first semiconductor refrigeration fin 104 inside the lower box body 2 is provided with a diffusion sheet 105, a first conveying pump 106 is fixedly arranged on the upper end of the first processing box 102 through fixing bolts, the input end of the first conveying pump 106 is connected with a filter box 107, the output end of the first conveying pump 106 is connected to the upper end of the first processing box 102, a first temperature sensor 111 is inlaid in the first processing box 102, an output pipe 108 is connected to one side of the first processing box 102, the output pipe 108 is connected with a conveying pipe 109, one end of the conveying pipe 109 extends to the inside of the upper box body 3, and the conveying pipe 109 is fixedly arranged in the inside of the upper box body 3, a plurality of output nozzles 110 are connected to one end of the conveying pipe 109 inside the upper box body 3.
[0031] Embodiment two;
[0032] As Figures 1-8As shown, according to the utility model embodiment of a gearbox box body of quick heat dissipation, second processing assembly 4 includes second processing box 401, second processing box 401 fixedly arranged at one side of lower box body 2, one end of second processing box 401 is connected with second delivery pump 402, the output end of second delivery pump 402 is connected with heat dissipation circulation pipe 403, one end of heat dissipation circulation pipe 403 extends to the inside of lower box body 2, and heat dissipation circulation pipe 403 is fixedly arranged on the inner wall of lower box body 2, and the output end of heat dissipation circulation pipe 403 extends from the inside of lower box body 2 to the outside of lower box body 2 and is connected with one side of second processing box 401, and second semiconductor refrigeration fin 404 and second temperature sensor 405 are inlaid in one side of second processing box 401,
[0033] First semiconductor refrigeration fin 104, second semiconductor refrigeration fin 404 are all conventional structure, therefore do not repeat in detail.
[0034] In order to facilitate the above technical scheme of the utility model to understand, the working principle or operation mode of the utility model in actual process is explained in detail.
[0035] In summary, by means of the above technical scheme of the utility model, when the lubricating oil needs to be cooled, the first delivery pump 106 is started by the controller 5, then the first delivery pump 106 generates suction force through the input end, and the suctioned gas is filtered by the filter box 107 during the suction process, then the first delivery pump 106 delivers the filtered gas to the inside of the first processing box 102 to generate negative pressure, and then the lubricating oil in the lower box body 2 flows into the first processing box 102 through the input pipe 101, the filter screen 103 filters out impurities to prevent the pipeline from being blocked and the equipment from being damaged, the first semiconductor refrigeration fin 104 is electrified, the hot end absorbs heat and the cold end dissipates heat, one end of which is located in the inside of the lower box body 2 and is provided with a diffusion sheet 105, which can expand the heat absorption area, so that the heat in the inside of the lower box body 2 is effectively absorbed and transmitted to the lubricating oil in the first processing box 102, to realize preliminary heat dissipation, the first temperature sensor 111 monitors the temperature in the first processing box 102 in real time, and feeds back the data to the controller 5, so as to adjust the heat dissipation intensity in time, the output pipe 108 is connected with the delivery pipe 109 on the output pipe 108, one end of which extends to the inside of the upper box body 3 and is provided with a plurality of output nozzles 110, the lubricating oil is uniformly sprayed from the output nozzles 110 to the gear structure in the inside of the upper box body 3 through the output pipe 108 and the delivery pipe 109, and flows back to the first processing box 102 after absorbing the internal heat, to form a circulating heat dissipation;
[0036] The second delivery pump 402 delivers the cooling liquid in the second processing box 401 to the heat dissipation circulation pipe 403, one end of the heat dissipation circulation pipe 403 extends into the inside of the lower box body 2 and is fixed to the inner wall, the other end extends from the inside of the lower box body 2 to the outside and is connected with the second processing box 401, forming a closed loop, the second semiconductor refrigeration sheet 404 and the second temperature sensor 405 are embedded on one side of the second processing box 401, the second semiconductor refrigeration sheet 404 works to refrigerate the cooling liquid in the heat dissipation circulation pipe 403 and reduce the temperature of the cooling liquid, the cooling liquid circulates in the heat dissipation circulation pipe 403, absorbs the heat in the inside of the lower box body 2, and then returns to the second processing box 401, is refrigerated again, and circulates heat dissipation, so that the temperature in the inside of the lower box body 2 is stable, the heat dissipation fins 6 are symmetrically arranged on the outer wall of the upper box body 3 and the lower box body 2, which increases the contact area of the upper box body 3, the lower box body 2 and the outside environment, when the heat in the inside of the upper box body 3 and the lower box body 2 is transmitted to the outer wall of the upper box body 3 and the lower box body 2 through the first processing assembly 1 and the second processing assembly 4, the heat dissipation fins 6 can quickly conduct and release the heat to the surrounding air, accelerate the heat dissipation process of the upper box body 3 and the lower box body 2, further improve the overall heat dissipation efficiency, effectively reduce the surface temperature of the upper box body 3 and the lower box body 2, and avoid heat accumulation.
[0037] The above only describes preferred embodiments of the present application and is not intended to limit the present application, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A speed reducer housing capable of rapid heat dissipation, characterized by, The utility model provides a kind of first processing assembly (1), the lower box (2) is provided on the side of the first processing assembly (1), the upper box (3) is provided at one end of the lower box (2) by bolt, and one end of the first processing assembly (1) is connected on the upper box (3), the second processing assembly (4) is provided on the side of the lower box (2), the controller (5) is provided on the side of the lower box (2). The first processing assembly (1) includes an input pipe (101), a first processing box (102) is connected to one end of the input pipe (101), a filter screen (103) is provided inside the first processing box (102), a first semiconductor refrigerating fin (104) is inlaid on the side of the first processing box (102), and a diffusion sheet (105) is provided at one end of the first semiconductor refrigerating fin (104) inside the lower box (2).
2. The quick heat dissipation gearbox housing according to claim 1, characterized in that, A first delivery pump (106) is fixedly provided at the upper end of the first processing box (102) by a fixing bolt, a filter box (107) is connected to the input end of the first delivery pump (106), the output end of the first delivery pump (106) is connected to the upper end of the first processing box (102), and a first temperature sensor (111) is inlaid in the first processing box (102).
3. The quick heat dissipation gearbox housing according to claim 2, characterized in that, An output pipe (108) is connected to the side of the first processing box (102), a delivery pipe (109) is connected to the output pipe (108), the delivery pipe (109) extends to the inside of the upper box (3) at one end, and the delivery pipe (109) is fixedly provided in the inside of the upper box (3), a plurality of output nozzles (110) are connected to one end of the delivery pipe (109) in the inside of the upper box (3).
4. The quick heat dissipation gearbox housing according to claim 3, characterized in that, The second processing assembly (4) includes a second processing box (401), the second processing box (401) is fixedly provided on the side of the lower box (2), a second delivery pump (402) is connected to one end of the second processing box (401), and a heat dissipation circulating pipe (403) is connected to the output end of the second delivery pump (402).
5. The quick heat dissipation gearbox housing according to claim 4, characterized in that, One end of the heat dissipation circulating pipe (403) extends to the inside of the lower box (2), and the heat dissipation circulating pipe (403) is fixedly provided on the inner wall of the lower box (2), the output end of the heat dissipation circulating pipe (403) extends from the inside of the lower box (2) to the outside of the lower box (2), and is connected to the side of the second processing box (401).
6. The quick heat dissipation gearbox housing according to claim 5, characterized in that, A second semiconductor refrigerating fin (404) and a second temperature sensor (405) are inlaid on the side of the second processing box (401).
7. The quick heat dissipating gearbox housing of claim 1, wherein, Heat dissipation fins (6) are symmetrically provided on the outer wall of the upper box (3) and the lower box (2), and the heat dissipation fins (6) are matched with the upper box (3) and the lower box (2).