Cooling device for production and processing of drawing machine transmission structure

By combining a split-type water-cooling design with a temperature control transmission mechanism, the problems of resource waste and temperature control lag in existing cooling devices are solved, enabling on-demand start/stop and automatic adjustment of the cooling function, thus improving the efficiency and accuracy of the cooling device.

CN121374422APending Publication Date: 2026-01-23ZHANGJIAGANG LIANHENG MASCH MFG CO LTD
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Patent Information

Application Number
CN202511658484.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-13
Publication Date
2026-01-23

AI Technical Summary

Technical Problem

The existing cooling devices for production and processing in the transmission structure of drawing machines suffer from resource waste and temperature control lag due to their integrated design. They cannot automatically adjust the cooling effect according to load changes, resulting in increased energy consumption and affected processing accuracy.

Method used

It adopts a split water-cooling design and temperature control transmission mechanism, combined with temperature sensing and dynamic adjustment mechanism, to realize the cooling function to start and stop on demand, and automatically adapt the cooling effect according to the material temperature change, avoiding resource waste and temperature control lag.

Benefits of technology

It effectively solves the problems of unnecessary high energy consumption and water circuit efficiency decay in integrated structures, ensuring cooling stability and machining accuracy, realizing on-demand cooling, and avoiding overcooling under low load and insufficient heat dissipation under high load.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a cooling device for production and processing of a drawing machine transmission structure, and relates to the technical field of cooling devices.The cooling device comprises a polishing assembly and a supporting table top, an operator is fixed to the top of the supporting table top, a polishing piece is fixed to the top of the supporting table top, and a limiting driving piece is arranged on one side of the polishing piece; the limiting driving piece is fixed to the top of the supporting table top. Through collaborative design of the grinding assembly and the auxiliary assembly, the obvious defects of high unnecessary energy consumption, waterway efficiency attenuation, temperature control lag and the like of an integrated structure are effectively overcome, the cooling function is started and stopped according to needs, resource waste caused by unnecessary energy consumption is avoided, meanwhile, the influence of long-term operation on the waterway efficiency is reduced through split design, and the service life is prolonged. The cooling stability is guaranteed, a high-precision temperature sensing and dynamic adjusting mechanism is synchronously integrated, the water cooling effect can be automatically adapted according to material temperature changes, and the problems of low-load supercooling and insufficient high-load heat dissipation are completely eradicated.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of cooling devices, in particular to a cooling device for production and processing of drafting machine transmission structure. BACKGROUND

[0002] In the production and processing of drafting machine transmission structure, a cooling device for production and processing of drafting machine transmission structure is often used to accurately control the temperature and cooling rate of key components during transmission structure processing, so as to avoid excessive temperature caused by frictional heat or cutting heat accumulation during processing, which may cause deformation of components, surface hardness reduction or processing precision deviation, thereby affecting the service life, transmission stability and production and processing quality of the transmission structure.

[0003] The existing cooling device for production and processing of drafting machine transmission structure has obvious defects in structure design and intelligent control performance. The integrated cooling structure adopted by the device needs to be directly started during polishing, which increases unnecessary energy consumption and causes resource waste. In addition, the integrated design is prone to cause waterway efficiency decay due to long-term continuous operation. At the same time, the device lacks temperature sensing and dynamic adjustment mechanism, and cannot automatically control the water cooling effect according to the temperature rise degree of the material. Overcooling may occur at low load, and insufficient heat dissipation may occur at high load, which not only increases invalid energy consumption cost, but also may affect the processing precision of the transmission structure due to temperature control lag. SUMMARY

[0004] The purpose of this section is to summarize some aspects of the embodiments of the present application and briefly introduce some preferred embodiments. Some simplifications or omissions may be made in this section and the abstract and title of the specification to avoid obscuring the purpose of this section, abstract and title, and such simplifications or omissions cannot be used to limit the scope of the present application.

[0005] In view of the above and / or existing problems in the cooling device for production and processing of drafting machine transmission structure, the present application is proposed.

[0006] Therefore, the problem to be solved by the present application is how to solve the resource waste phenomenon of the integrated water cooling structure during operation.

[0007] To solve the above technical problems, the application provides the following technical scheme: a cooling device for production and processing of a drafting machine transmission structure, which comprises a polishing assembly, a support table top of the polishing assembly is fixed with an operator on the top, a polishing piece is fixed on the top of the support table, a limiting driving piece is arranged on one side of the polishing piece, the limiting driving piece is fixed on the top of the support table, and an auxiliary assembly is arranged on the top of the polishing assembly and comprises a transmission mechanism fixed on the top of the support table, a liquid storage piece is arranged on one side of the transmission mechanism, a functional piece is fixed on one side of the liquid storage piece, a transmission piece is fixed on the top of the support table, a second cooling piece is fixed on one side of the transmission piece, a cleaning piece is slidably connected to one side of the transmission piece, and a filter piece is fixed on the top of the support table.

[0008] As a preferred scheme of the cooling device for production and processing of the drafting machine transmission structure, the limiting driving piece comprises a support frame fixed on the top of the support table, an electric push rod is fixed on the top of the support frame, an output end of the electric push rod is fixed with a sliding horizontal plate, the sliding horizontal plate is slidably connected to the inner wall of the support frame, a servo motor is fixed on the bottom of the sliding horizontal plate, a support disc matched with the servo motor is fixed on the top of the support table, and a polished shaft body is placed in the inner wall of the support disc.

[0009] As a preferred scheme of the cooling device for production and processing of the drafting machine transmission structure, the transmission mechanism comprises a support frame fixed on the top of the support table, a driven shaft is movably connected to the top of the support table through a bearing on the bottom of the support frame, a magnetic attraction guide groove is formed in the surface of the driven shaft, a transmission cam is sleeved on the surface of the support frame, a movable belt is sleeved on the surface of the transmission cam, and a magnetic attraction guide block matched with the magnetic attraction guide groove is fixed in the inner wall of the transmission cam.

[0010] As a preferred scheme of the cooling device for production and processing of the drafting machine transmission structure, a driving gear is sleeved on the surface of the support disc, and a driven gear matched with the driving gear is sleeved on the surface of the driven shaft.

[0011] As a preferred scheme of the cooling device for production and processing of the drafting machine transmission structure, the transmission piece comprises a first water chamber fixed on the top of the support table, a second water chamber is fixed on one side of the first water chamber, first pistons are slidably connected to the inner walls of the first water chamber and the second water chamber, a first sliding rod is fixed on one side of the first piston, a contact block is fixed on one side of the first sliding rod, an elastic sheet is fixed on one side of the first piston, the elastic sheet is fixed on the inner walls of the second water chamber and the first water chamber, one-way pressure valves are fixed on one side of the first water chamber and the second water chamber, and a double-tube spray head is fixed on one side of the first water chamber.

[0012] As a preferred scheme of the cooling device for the transmission structure of the drafting machine, the second cooling member comprises a contact heat exchange shell sleeved on the surface of the polished shaft body, one side of the contact heat exchange shell is fixed with a liquid feeding pipe, the liquid feeding pipe is fixed on one side of the one-way pressure valve, the other side of the contact heat exchange shell is fixed with a return pipe, the return pipe is fixed on one side of the liquid storage tank, one side of the contact heat exchange shell is fixed with a temperature sensing adjustment metal strip, one side of the temperature sensing adjustment metal strip is fixed on the bottom of the transmission cam.

[0013] As a preferred scheme of the cooling device for the transmission structure of the drafting machine, the liquid storage member comprises a liquid storage tank fixed on the top of the support table top, the top of the liquid storage tank is fixed with a liquid inlet pipe, one side of the liquid storage tank is fixed with a liquid outlet valve, one side of the liquid storage tank is fixed with a communication pipe, one side of the communication pipe is fixed with a one-way double-head pipe, and the two ends of the one-way double-head pipe are respectively fixed on the surfaces of the first water chamber and the second water chamber.

[0014] As a preferred scheme of the cooling device for the transmission structure of the drafting machine, the liquid storage member comprises a liquid storage tank fixed on the top of the support table top, the top of the liquid storage tank is fixed with a liquid inlet pipe, one side of the liquid storage tank is fixed with a liquid outlet valve, one side of the liquid storage tank is fixed with a communication pipe, one side of the communication pipe is fixed with a one-way double-head pipe, and the two ends of the one-way double-head pipe are respectively fixed on the surfaces of the first water chamber and the second water chamber.

[0015] As a preferred scheme of the cooling device for the transmission structure of the drafting machine, the functional member comprises a connecting sleeve sleeved on the surface of the first sliding rod, one side of the connecting sleeve is fixed with a special-shaped connecting rod, one side of the special-shaped connecting rod is fixed with an arc-shaped contact plate, the inner wall of the first water chamber is slidably connected with a plug-in block, the surface of the plug-in block is sleeved with a return spring, and the top of the plug-in block is slidably connected with a limiting seat.

[0016] As a preferred scheme of the cooling device for the transmission structure of the drafting machine, the cleaning member comprises a second piston slidably connected with the inner wall of the first water chamber, the limiting seat is fixed on one side of the second piston, the second piston is fixed on one side of the second sliding rod, the second sliding rod is fixed on one side of the special-shaped connecting plate, the inner wall of the special-shaped connecting plate is slidably connected with a driving sliding rod, one side of the driving sliding rod is fixed with a cleaning plate, the other side of the driving sliding rod is fixed with a limiting block, and the surface of the driving sliding rod is sleeved with a connecting spring.

[0017] The application has the beneficial effects that: through the collaborative design of the split water cooling design and the temperature control transmission mechanism, the obvious defects such as high unnecessary energy consumption, waterway efficiency attenuation and temperature control lag of the integrated structure are effectively solved, not only the cooling function is started and stopped on demand to avoid resource waste caused by unnecessary energy consumption, but also the split design reduces the influence of long-term operation on the waterway efficiency, guarantees the cooling stability, synchronously integrates the high-precision temperature sensor and the dynamic adjustment mechanism, can automatically adapt the water cooling effect according to the material temperature change, and prevents the problems of overcooling under low load and insufficient heat dissipation under high load. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to more clearly illustrate the technical solutions of the embodiments of the application, the drawings needed to be used in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the application, and other drawings can be obtained by those skilled in the art without creative labor.

[0019] Figure 1 The structure diagram of the cooling device for production and processing of the drafting machine transmission structure.

[0020] Figure 2 The structure diagram of the polishing assembly of the cooling device for production and processing of the drafting machine transmission structure.

[0021] Figure 3 The structure diagram of the auxiliary assembly of the cooling device for production and processing of the drafting machine transmission structure.

[0022] Figure 4 The top view structure diagram of the cooling device for production and processing of the drafting machine transmission structure.

[0023] Figure 5 The shaft side structure diagram of the auxiliary assembly of the cooling device for production and processing of the drafting machine transmission structure.

[0024] Figure 6 The structure diagram of the driving piece of the cooling device for production and processing of the drafting machine transmission structure.

[0025] Figure 7 The structure diagram of the filtering piece of the cooling device for production and processing of the drafting machine transmission structure.

[0026] Figure 8 The sectional view of the transmission piece of the cooling device for production and processing of the drafting machine transmission structure.

[0027] Figure 9 The cooling device for production and processing of the drafting machine transmission structure Figure 8 The enlarged view of A in the cooling device for production and processing of the drafting machine transmission structure.

[0028] In the figure: 1, polishing assembly; 11, support table; 12, operator; 13, limiting driving piece; 131, support frame; 132, electric push rod; 133, sliding horizontal plate; 134, servo motor; 135, support disc; 136, polished shaft body; 14, polishing piece; 2, auxiliary assembly; 21, transmission mechanism; 211, support frame; 212, driven shaft; 213, magnetic attraction guide groove; 214, magnetic attraction guide block; 215, driven gear; 216, driving gear; 217, transmission cam; 218, movable belt; 219, temperature sensing adjustment metal belt; 22, transmission piece; 221, first water chamber; 222, second water chamber; 223, one-way pressure valve; 224, double-tube spray head; 225, contact block; 226, elastic sheet; 227, first sliding rod; 228, first piston; 23, second cooling piece; 231, contact heat exchange shell; 232, return pipe; 233, liquid delivery pipe; 24, liquid storage piece; 241, liquid storage tank; 242, liquid discharge valve; 243, liquid inlet pipe; 244, communication pipe; 245, one-way double-end pipe; 25, filtering piece; 251, collection disc; 252, liquid falling pipe; 253, filter shell; 254, filter screen plate; 255, vibration spring; 26, functional piece; 261, connecting sleeve; 262, special-shaped connecting rod; 263, arc-shaped contact plate; 264, return spring; 265, plug-in block; 266, limiting seat; 27, cleaning piece; 271, special-shaped connecting plate; 272, second sliding rod; 273, second piston; 274, limiting block; 275, connecting spring; 276, driving sliding rod; 277, cleaning plate. DETAILED DESCRIPTION

[0029] In order to make the above objectives, features and advantages of the present application more obvious and easy to understand, the specific embodiments of the present application are described in detail below with reference to the accompanying drawings.

[0030] In the following description, a large number of specific details are set forth in order to facilitate a thorough understanding of the present application, but the present application can also be implemented in other ways different from those described herein, and those skilled in the art can make similar generalizations without departing from the connotation of the present application, therefore the present application is not limited by the specific embodiments disclosed below.

[0031] Secondly, the "one embodiment" or "embodiment" referred to herein means that the specific features, structures or characteristics can be included in at least one implementation of the present application. "In one embodiment" appearing in different places in the specification does not mean the same embodiment, nor is it an embodiment that is independent of or selected from other embodiments.

[0032] Embodiment 1, refer to Figure 1 and Figure 2For the first embodiment of the application, the embodiment provides a cooling device for production and processing of drafting machine transmission structure, the cooling device for production and processing of drafting machine transmission structure comprises a polishing assembly 1 and an auxiliary assembly 2.

[0033] Through the cooperative design of the polishing assembly 1 and the auxiliary assembly 2, the obvious defects such as high unnecessary energy consumption, waterway efficiency attenuation and temperature control lag of the integrated structure are effectively solved, not only the cooling function is started and stopped on demand to avoid resource waste caused by unnecessary energy consumption, but also the split design reduces the influence of long-term operation on the waterway efficiency, guarantees the cooling stability, synchronously integrates high-precision temperature sensing and dynamic adjustment mechanism, and automatically adapts the water cooling effect according to the material temperature change to prevent the problems of overcooling under low load and insufficient heat dissipation under high load.

[0034] Specifically, the polishing assembly 1 comprises a support table 11, an operator 12 is fixed on the top of the support table 11, a polishing piece 14 is fixed on the top of the support table 11, a limiting driving piece 13 is arranged on one side of the polishing piece 14, and the limiting driving piece 13 is fixed on the top of the support table 11.

[0035] The auxiliary assembly 2 is arranged on the top of the polishing assembly 1 and comprises a transmission mechanism 21 fixed on the top of the support table 11, a liquid storage piece 24 arranged on one side of the transmission mechanism 21, a functional piece 26 fixed on one side of the liquid storage piece 24, a transmission piece 22 fixed on the top of the support table 11, a second cooling piece 23 fixed on one side of the transmission piece 22, a cleaning piece 27 slidably connected to one side of the transmission piece 22, and a filter piece 25 fixed on the top of the support table 11.

[0036] Embodiment 2, refer to Figures 2-7 For the second embodiment of the application, the embodiment is based on the previous embodiment.

[0037] Specifically, the limiting driving piece 13 comprises a support frame 131 fixed on the top of the support table 11, an electric push rod 132 fixed on the top of the support frame 131, an output end of the electric push rod 132 fixed with a sliding horizontal plate 133, the sliding horizontal plate 133 slidably connected to the inner wall of the support frame 131, a servo motor 134 fixed on the bottom of the sliding horizontal plate 133, a support disc 135 fixed on the top of the support table 11 and matched with the servo motor 134, and a polished shaft body 136 placed in the inner wall of the support disc 135.

[0038] The support frame 131 provides a stable mounting basis for the electric push rod 132, the electric push rod 132 drives the sliding horizontal plate 133 to slide up and down along the inner wall of the support frame 131, and drives the servo motor 134 to approach or move away from the support disc 135; the support disc 135 forms a limiting support for the polished shaft body 136, and the overall structure ensures that the polishing position and pressure of the polished shaft body 136 are controllable.

[0039] Specifically, the transmission mechanism 21 comprises a support frame 211 fixed on the top of the support table 11, the bottom of the support frame 211 is movably connected with a driven shaft 212 through a bearing, the driven shaft 212 is movably connected to the top of the support table 11, the surface of the driven shaft 212 is provided with a magnetic attraction guide groove 213, the surface of the support frame 211 is sleeved with a transmission cam 217, the surface of the transmission cam 217 is sleeved with a movable belt 218, and the inner wall of the transmission cam 217 is fixed with a magnetic attraction guide block 214 matched with the magnetic attraction guide groove 213.

[0040] The support frame 211 supports the driven shaft 212 and the transmission cam 217, and the driven shaft 212 is flexibly rotated through a bearing; the magnetic attraction guide block 214 is embedded in the magnetic attraction guide groove 213, so that the transmission cam 217 can rotate synchronously with the driven shaft 212 and move axially along the magnetic attraction guide groove 213.

[0041] Specifically, the surface of the support disc 135 is sleeved with a driving gear 216, and the surface of the driven shaft 212 is sleeved with a driven gear 215 matched with the driving gear 216.

[0042] When the support disc 135 rotates, the driving gear 216 rotates synchronously, the driven gear 215 and the driven shaft 212 are driven to rotate through gear meshing, linkage between the support disc 135 and the transmission mechanism 21 is realized, the polishing action of the polished shaft body 136 is coordinated with the subsequent cooling and transmission actions, and the overall working efficiency of the equipment is improved.

[0043] Specifically, the transmission member 22 comprises a first water chamber 221 fixed on the top of the support table 11, a second water chamber 222 fixed on one side of the first water chamber 221, first pistons 228 slidably connected to the inner walls of the first water chamber 221 and the second water chamber 222, first sliding rods 227 fixed on one side of the first pistons 228, contact blocks 225 fixed on one side of the first sliding rods 227, elastic sheets 226 fixed on one side of the first pistons 228 and fixed to the inner walls of the second water chamber 222 and the first water chamber 221, one-way pressure valves 223 fixed on one side of the first water chamber 221 and the second water chamber 222, and double-tube nozzles 224 fixed on one side of the first water chamber 221.

[0044] The first water chamber 221 and the second water chamber 222 store cooling liquid, when the contact blocks 225 are extruded by external components, the first sliding rods 227 and the first pistons 228 are pushed to slide in the water chambers, the liquid is compressed and directionally delivered through the one-way pressure valves 223; the elastic sheets 226 push the first pistons 228 to reset after the pressure disappears, so that the liquid is continuously supplied; the double-tube nozzles 224 spray the liquid in the first water chamber 221 out, so that the polishing area is preliminarily cooled and impurities are cleaned.

[0045] Specifically, the second cooling member 23 comprises a contact heat exchange shell 231 sleeved on the surface of the polished shaft body 136, one side of the contact heat exchange shell 231 is fixed with a liquid delivery pipe 233, the liquid delivery pipe 233 is fixed on one side of the one-way pressure valve 223, the other side of the contact heat exchange shell 231 is fixed with a return pipe 232, the return pipe 232 is fixed on one side of the liquid storage tank 241, one side of the contact heat exchange shell 231 is fixed with a temperature sensing adjustment metal strip 219, one side of the temperature sensing adjustment metal strip 219 is fixed on the bottom of the transmission cam 217.

[0046] The contact heat exchange shell 231 closely adheres to the polished shaft body 136, absorbs the polishing heat of the polished shaft body 136 by receiving the cooling liquid delivered by the one-way pressure valve 223 through the liquid delivery pipe 233, and the liquid after temperature rise returns to the liquid storage tank 241 through the return pipe 232 to form a cooling cycle; the temperature sensing adjustment metal strip 219 deforms with the change of polishing temperature, drives the transmission cam 217 to move along the magnetic attraction guide groove 213, adjusts the position, changes the driving member, and adapts to the temperature change to ensure the stability of the cooling effect.

[0047] Specifically, the liquid storage member 24 comprises a liquid storage tank 241 fixed on the top of the support table 11, the top of the liquid storage tank 241 is fixed with a liquid inlet pipe 243, one side of the liquid storage tank 241 is fixed with a liquid outlet valve 242, one side of the liquid storage tank 241 is fixed with a communication pipe 244, one side of the communication pipe 244 is fixed with a one-way double-head pipe 245, and the two ends of the one-way double-head pipe 245 are respectively fixed on the surfaces of the first water chamber 221 and the second water chamber 222.

[0048] The liquid storage tank 241 is used for storing the cooling liquid, the liquid inlet pipe 243 is convenient for supplementing the liquid, and the liquid outlet valve 242 is convenient for replacing the liquid after temperature rise; the communication pipe 244 cooperates with the one-way double-head pipe 245 to unidirectionally deliver the liquid in the liquid storage tank 241 to the first water chamber 221 and the second water chamber 222, ensures the liquid supply of the transmission member 22 and the second cooling member 23, and maintains the continuity of the cooling cycle.

[0049] Embodiment 3, refer to Figures 3-9 This is the third embodiment of the present application, which is based on the previous two embodiments.

[0050] Specifically, the filter member 25 comprises a filter shell 253 fixed on the top of the support table 11, the top of the filter shell 253 is fixed with a liquid falling pipe 252, the top of the liquid falling pipe 252 is fixed with a collection disc 251, the inner wall of the filter shell 253 is slidably connected with a filter screen plate 254, the bottom of the filter screen plate 254 is fixed with a vibration spring 255, and the vibration spring 255 is fixed on the inner wall of the filter shell 253.

[0051] The filter shell 253 provides installation and protection space for the filter component, the collection disc 251 is used for receiving the impurity-containing cooling liquid dropped from the polishing area, the cooling liquid is guided into the filter shell 253 through the liquid falling pipe 252; the filter screen plate 254 filters the polishing debris and impurities in the cooling liquid, ensures that the cooling liquid flowing back to the liquid storage part 24 is clean, and avoids blocking the pipeline or affecting the cooling effect; the vibration spring 255 can be elastically deformed with the vibration of the equipment or external force triggering, drive the filter screen plate 254 to vibrate slightly, prevent impurities from adhering to the filter screen to cause blockage, and maintain the filtering efficiency.

[0052] Specifically, the functional part 26 includes a connecting sleeve 261 sleeved on the surface of the first sliding rod 227, a special-shaped connecting rod 262 is fixed on one side of the connecting sleeve 261, an arc-shaped contact plate 263 is fixed on one side of the special-shaped connecting rod 262, an insertion block 265 is slidably connected to the inner wall of the first water chamber 221, a reset spring 264 is sleeved on the surface of the insertion block 265, and a limiting seat 266 is slidably connected to the top of the insertion block 265.

[0053] The connecting sleeve 261 moves synchronously with the first sliding rod 227, drives the arc-shaped contact plate 263 to act through the special-shaped connecting rod 262, and the arc-shaped contact plate 263 can contact the polished shaft body 136 or other components to assist in limiting or transmitting pressure; the insertion block 265 in the first water chamber 221 is kept in an extended state under the elastic action of the reset spring 264, the limiting seat 266 limits the sliding track of the insertion block 265, ensures that it only moves in the preset direction, and meanwhile the insertion block 265 can cooperate with the subsequent filter part 25 to realize the linkage cleaning of the functional part 26 and the filter part 25.

[0054] Specifically, the cleaning part 27 includes a second piston 273 slidably connected to the inner wall of the first water chamber 221, the limiting seat 266 is fixed on one side of the second piston 273, a second sliding rod 272 is fixed on one side of the second piston 273, a special-shaped connecting plate 271 is fixed on one side of the second sliding rod 272, a driving sliding rod 276 is slidably connected to the inner wall of the special-shaped connecting plate 271, a cleaning plate 277 is fixed on one side of the driving sliding rod 276, a limiting block 274 is fixed on the other side of the driving sliding rod 276, and a connecting spring 275 is sleeved on the surface of the driving sliding rod 276.

[0055] The second piston 273 is linked with the plug-in block 265 of the functional part 26 through the limiting seat 266, and when the first slide rod 227 drives the functional part 26 to act, the second piston 273 can be triggered to slide in the inner wall of the first water chamber 221; the second piston 273 drives the special-shaped connecting plate 271 to move synchronously through the second slide rod 272, drives the slide rod 276 to slide in the inner wall of the special-shaped connecting plate 271, and the connecting spring 275 provides elastic pressure for the drive slide rod 276, so that the cleaning plate 277 is tightly attached to the surface to be cleaned, and the impurities are scraped off through sliding; the limiting block 274 prevents the drive slide rod 276 from falling off from the special-shaped connecting plate 271, and ensures that the cleaning action is stable and continuous.

[0056] In use, first, the polished shaft body 136 is placed in the inner wall of the support disc 135, the electric push rod 132 is started to push the sliding horizontal plate 133 to slide downward, the output end of the servo motor 134 is butt-jointed with the shaft body to complete limiting, then the polishing part 14 and the servo motor 134 are started, and the polished shaft body 136 is driven to rotate and polish.

[0057] In polishing, the driven gear 215 is engaged by the driving gear 216 of the support disc 135 driven by the polished shaft body 136, so that the driven shaft 212 is rotated, at this time, the magnetic attraction guide block 214 of the transmission cam 217 is at the bottom end of the magnetic attraction guide groove 213, and only the lower contact block 225 is extruded during rotation, the first slide rod 227 and the first piston 228 are pushed by the contact block 225, the second piston 273 is driven by extruding the liquid in the first water chamber 221, the second slide rod 272, the special-shaped connecting plate 271 and the cleaning plate 277 are attached to the polishing belt, and the debris is scraped off, after the cleaning plate 277 is attached, the limiting seat 266 is positioned in cooperation with the plug-in block 265, and displacement is prevented.

[0058] The cam continues to rotate and continuously extrudes the contact block 225, the liquid pressure of the first water chamber 221 exceeds the threshold value of the one-way pressure valve 223, the polishing belt is washed and the shaft polishing part is cooled through the double-tube spray head 224, when the temperature of the shaft body rises, the heat is transmitted to the temperature-sensing adjusting metal belt 219 through the contact heat exchange shell 231, so that the temperature-sensing adjusting metal belt 219 is deformed to drive the cam to move upward, the magnetic attraction guide block 214 is fixed on the upper part of the magnetic attraction guide groove 213, at this time, the cam is rotated while extruding the upper and lower contact blocks 225, the upper contact block pushes the liquid in the second water chamber 222, the liquid enters the contact heat exchange shell 231 through the liquid delivery pipe 233 to exchange heat with the shaft body, after heat exchange, the liquid returns to the liquid storage tank 241 from the return pipe 232, and the lower side continues to drive the spray to realize bidirectional cooling.

[0059] The liquid with waste drops is fallen into the collecting tray 251, and is filtered by the filter shell 253 through the liquid falling pipe 252 and the filter screen 254. Meanwhile, the first sliding rod 227 drives the connecting sleeve 261, the special connecting rod 262 and the arc contact plate 263 to periodically press the filter shell 253, and the filter screen is vibrated to prevent blockage by cooperating with the vibrating spring 255. After filtration, the liquid is circulated back to the first water chamber 221 and the second water chamber 222 through the communication pipe 244 and the one-way double-end pipe 245, and is added from the liquid inlet pipe 243 when liquid supplement is needed, and is discharged by opening the liquid discharge valve 242 when liquid replacement is needed.

[0060] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present application rather than limit the present application. Although the present application has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present application can be modified or replaced equivalently without departing from the spirit and scope of the technical solutions of the present application, and all of them should be covered in the scope of the claims of the present application.

Claims

1. A cooling device for processing of a draft mechanism transmission structure, characterized in that: Including, The polishing assembly (1) comprises a support table (11), the top of the support table (11) is fixed with an operator (12), the top of the support table (11) is fixed with a polishing piece (14), one side of the polishing piece (14) is provided with a limiting driving piece (13), the limiting driving piece (13) is fixed to the top of the support table (11), and; The auxiliary assembly (2) is arranged on the top of the polishing assembly (1) and comprises a transmission mechanism (21) fixed to the top of the support table (11), one side of the transmission mechanism (21) is provided with a liquid storage piece (24), one side of the liquid storage piece (24) is fixed with a functional piece (26), the top of the support table (11) is fixed with a transmission piece (22), one side of the transmission piece (22) is fixed with a second cooling piece (23), one side of the transmission piece (22) is slidably connected with a cleaning piece (27), and the top of the support table (11) is fixed with a filter piece (25).

2. The drawing frame transmission structure production and processing cooling device according to claim 1, characterized in that: The limiting driving piece (13) comprises a support frame (131) fixed to the top of the support table (11), the top of the support frame (131) is fixed with an electric push rod (132), the output end of the electric push rod (132) is fixed with a sliding horizontal plate (133), the sliding horizontal plate (133) is slidably connected to the inner wall of the support frame (131), the bottom of the sliding horizontal plate (133) is fixed with a servo motor (134), the top of the support table (11) is fixed with a support disc (135) matched with the servo motor (134), and the inner wall of the support disc (135) is placed with a polished shaft body (136).

3. The drawing frame transmission structure production processing cooling device according to claim 1 or 2, characterized in that: The transmission mechanism (21) comprises a support frame (211) fixed to the top of the support table (11), the bottom of the support frame (211) is movably connected with a driven shaft (212) through a bearing, the driven shaft (212) is movably connected to the top of the support table (11), the surface of the driven shaft (212) is provided with a magnetic attraction guide groove (213), the surface of the support frame (211) is provided with a transmission cam (217), the surface of the transmission cam (217) is provided with a movable belt (218), and the inner wall of the transmission cam (217) is fixed with a magnetic attraction guide block (214) matched with the magnetic attraction guide groove (213).

4. The drawing frame transmission structure production processing cooling device according to claim 3, characterized in that: The surface of the support disc (135) is provided with a driving gear (216), and the surface of the driven shaft (212) is provided with a driven gear (215) matched with the driving gear (216).

5. The drawing frame transmission structure production processing cooling device according to any one of claims 1, 2 or 4, characterized in that: The transmission member (22) comprises a first water chamber (221) fixed on the top of the support table (11), one side of the first water chamber (221) is fixed with a second water chamber (222), the inner walls of the first water chamber (221) and the second water chamber (222) are slidably connected with a first piston (228), one side of the first piston (228) is fixed with a first sliding rod (227), one side of the first sliding rod (227) is fixed with a contact block (225), one side of the first piston (228) is fixed with an elastic sheet (226), the elastic sheet (226) is fixed to the inner walls of the second water chamber (222) and the first water chamber (221), one side of the first water chamber (221) and the second water chamber (222) is fixed with a one-way pressure valve (223), one side of the first water chamber (221) is fixed with a double-tube nozzle (224).

6. The drawing frame transmission structure production processing cooling device according to claim 5, characterized in that: The second cooling member (23) comprises a contact heat exchange shell (231) sleeved on the surface of the polished shaft body (136), one side of the contact heat exchange shell (231) is fixed with a liquid feeding pipe (233), the liquid feeding pipe (233) is fixed on one side of the one-way pressure valve (223), the other side of the contact heat exchange shell (231) is fixed with a return pipe (232), the return pipe (232) is fixed on one side of the liquid storage tank (241), one side of the contact heat exchange shell (231) is fixed with a temperature sensing adjusting metal strip (219), one side of the temperature sensing adjusting metal strip (219) is fixed on the bottom of the transmission cam (217).

7. The drawing frame transmission structure production processing cooling device according to claim 6, characterized in that: The liquid storage member (24) comprises a liquid storage tank (241) fixed on the top of the support table (11), the top of the liquid storage tank (241) is fixed with a liquid inlet pipe (243), one side of the liquid storage tank (241) is fixed with a liquid outlet valve (242), one side of the liquid storage tank (241) is fixed with a communication pipe (244), one side of the communication pipe (244) is fixed with a one-way double-head pipe (245), both ends of the one-way double-head pipe (245) are fixed on the surfaces of the first water chamber (221) and the second water chamber (222) respectively.

8. The drawing frame transmission structure production processing cooling device according to claim 6 or 7, characterized in that: The filter member (25) comprises a filter shell (253) fixed on the top of the support table (11), the top of the filter shell (253) is fixed with a liquid falling pipe (252), the top of the liquid falling pipe (252) is fixed with a collection disc (251), the inner wall of the filter shell (253) is slidably connected with a filter screen plate (254), the bottom of the filter screen plate (254) is fixed with a vibration spring (255), the vibration spring (255) is fixed to the inner wall of the filter shell (253).

9. The drawing frame transmission structure production processing cooling device according to claim 8, characterized in that: The functional part (26) comprises a connecting sleeve (261) sleeved on the surface of the first sliding rod (227), one side of the connecting sleeve (261) is fixedly connected with a special-shaped connecting rod (262), one side of the special-shaped connecting rod (262) is fixedly connected with an arc-shaped contact plate (263), the inner wall of the first water chamber (221) is slidably connected with an insertion block (265), the surface of the insertion block (265) is sleeved with a reset spring (264), and the top of the insertion block (265) is slidably connected with a limiting seat (266).

10. The drawing frame transmission structure production processing cooling device according to any one of claims 9, characterized in that: The cleaning part (27) comprises a second piston (273) slidably connected with the inner wall of the first water chamber (221), the limiting seat (266) is fixed on one side of the second piston (273), one side of the second piston (273) is fixedly connected with a second sliding rod (272), one side of the second sliding rod (272) is fixedly connected with a special-shaped connecting plate (271), the inner wall of the special-shaped connecting plate (271) is slidably connected with a driving sliding rod (276), one side of the driving sliding rod (276) is fixedly connected with a cleaning plate (277), the other side of the driving sliding rod (276) is fixedly connected with a limiting block (274), and the surface of the driving sliding rod (276) is sleeved with a connecting spring (275).