Automatic heat dissipation silica gel pasting equipment
By designing automatic heat dissipation silicone equipment, the problem of low automation of heat dissipation silicone conveying and assembly is solved, efficient and accurate material conveying and clamping is achieved, and the practicality of the equipment is improved.
Patent Information
- Application Number
- CN202422158141.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-03
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2034-09-03
AI Technical Summary
The existing heat dissipation silicone conveying and assembly automation procedures are not high, inefficient, and low conveying accuracy, resulting in insufficient wear and practicality.
An automatic heat dissipation silicone equipment is designed, including a frame, a loading module, a workbench and a clamping module. It adopts conveying components, hoisting components, peeling devices, clamping modules and other structures to realize the automatic loading, conveying and clamping of materials, improving conveying accuracy and efficiency.
It improves the degree of automation of conveying and assembly of heat dissipation silicone, reduces wear, improves conveying accuracy and efficiency, enhances practicality, and has good application prospects.
Smart Images

Figure CN223310137U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of automation technology, in particular to an automatic heat dissipation silica gel sticking device. Background Art
[0002] Heat dissipation silicone is a thermally conductive material with low thermal resistance, high thermal conductivity, and high flexibility. This material's high flexibility reduces the pressure required between components while covering microscopically uneven surfaces, allowing for full contact between components and improving heat transfer efficiency. It is particularly suitable for heat conduction needs in space-constrained environments.
[0003] Currently, heat dissipation silicone is widely used in various fields such as military industry, computers, communication equipment, electronic consumer products, power supplies, automotive electronics, industrial electronic equipment, etc., which greatly enhances the general applicability of heat dissipation silicone. The current automation process of heat dissipation silicone delivery and assembly is not high and the efficiency is low. Utility Model Content
[0004] In order to solve the above problems, the utility model provides an automatic heat dissipation silicone sticking equipment, which solves the problems of low automation procedures, low efficiency, low conveying accuracy, certain wear on the heat dissipation silicone, reduced practicality of the heat dissipation silicone, and inconvenience for large-scale development of the existing heat dissipation silicone conveying and assembly.
[0005] The technical solution adopted by the present invention is: it includes: a frame; a loading module, both ends of the loading module are mounted on the frame and are provided with a conveying component and a jacking component, the conveying component is provided with a discharge jig, and the discharge jig is arranged on the jacking component; a workbench, the workbench is arranged at one end of the loading module and is provided with a stripping device, the stripping device includes a placement plate and a conveying plate, a leakage groove is provided between the placement plate and the conveying plate, and a reflux device is provided at one end connected to the leakage groove, and the reflux device is used for reflux and collection of debris after stripping; a clamping module, the clamping module is located above the workbench and adsorbs and clamps the material on the placement plate, the clamping module includes a linear transmission module, a transverse transmission module mounted on the linear transmission module, and an adsorption module mounted on the transverse transmission module, the adsorption module is provided with at least one group and can be used separately.
[0006] A further improvement to the above solution is that the frame includes a support frame and a support plate arranged on the support frame, and the bottom of the support frame is further provided with a load-bearing part and a movable part.
[0007] A further improvement to the above scheme is that the conveying assembly includes a conveying bracket, a conveying guide roller arranged on the conveying bracket, a guide wheel for guiding the conveying guide roller, and a guide belt arranged on the guide wheel, and one circle of the guide wheel is provided with a limiting belt, and the limiting belt limits the guide belt.
[0008] A further improvement to the above solution is that a conveying trough and a conveying limiter are provided in the conveying bracket, and the conveying limiter is used to limit the conveying of the conveying guide roller.
[0009] A further improvement to the above solution is that the jacking assembly includes a jacking cylinder, a lifting rod provided on the jacking cylinder, and a positioning member provided on the lifting rod, and the positioning member is used to position the discharge jig.
[0010] A further improvement to the above solution is that the discharge fixture includes a discharge position and a clamping groove arranged on the discharge position, and the clamping groove is provided in plurality and distributed along the discharge position.
[0011] A further improvement to the above scheme is that the linear transmission module includes a linear transmission bracket, a linear guide rod arranged on the linear transmission bracket, and a linear guide rail arranged in the linear guide rod, both ends of the linear guide rail are provided with fixing parts, the fixing part is provided with a linear transmission screw, and a linear transmission slider arranged on the linear transmission screw, the linear transmission slider is provided with a linear transmission seat and is mounted on the linear guide rod, the transverse transmission module is provided on the linear transmission seat and performs linear transmission along the linear guide rod, one end of the linear transmission bracket is provided with a linear tank chain, and one end of the fixing part is provided with a linear buffer.
[0012] A further improvement to the above scheme is that the transverse transmission module includes a transverse driving member and a transverse transmission screw arranged on the transverse driving member, a transverse transmission seat is provided on the transverse transmission screw, the clamping module is provided on the transverse transmission seat and transmits along the transverse transmission screw, a transverse tank chain is provided above the transverse driving member, and transverse baffles are provided on both sides of the transverse transmission screw.
[0013] A further improvement to the above scheme is that the adsorption module includes an adsorption support frame, and an adsorption cylinder arranged on the adsorption support frame, a fixed plate is provided on one end connected to the adsorption cylinder, two groups of symmetrical guide shafts are provided on the fixed plate, and an air pipe joint is provided on the two groups of guide shafts, one end of the air pipe joint is connected to the guide shaft and adsorbs the material on the placement plate.
[0014] A further improvement to the above solution is that a buffer element is provided outside the guide shaft, and the buffer element buffers the adsorption module.
[0015] The beneficial effects of the utility model are:
[0016] Compared with the existing silicone heat dissipation equipment, the utility model uses an automatic heat dissipation silicone device, including a frame, a loading module, a workbench, and a clamping module; both ends of the loading module are mounted on the frame and are provided with a conveying component and a jacking component, the conveying component is provided with a discharge fixture, and the discharge fixture is arranged on the jacking component; the workbench is arranged at one end of the loading module and is provided with a stripping device, the stripping device includes a placing plate and a conveying plate, a leakage groove is provided between the placing plate and the conveying plate, and a reflux device is provided at one end connected to the leakage groove, and the reflux device is used to reflux and collect the debris after stripping; the clamping module is located above the workbench and adsorbs and clamps the material on the placing plate, the clamping module includes a linear transmission module, a transverse transmission module mounted on the linear transmission module, and an adsorption module mounted on the transverse transmission module, the adsorption module is provided with at least one group and more, and can be used separately. In this embodiment The material that can be loaded on the loading module is convenient to load through the loading module, and the material that can be loaded on the loading module is convenient to transport and lift, thereby improving the practicability of the loading module. The material that can be loaded on the loading module is convenient to process, and a reflux device is provided on the processing table, which is convenient for reflux and unified collection of impurities generated after material processing, thereby reducing resource waste and saving environmental protection. A clamping module is provided above the processing table, and the clamping module is an adsorption module, which is convenient for adsorption and clamping of the material on the processing table through the adsorption module, and a linear transmission module and a transverse transmission module are provided on the clamping module, which is convenient for linear transmission and transverse transmission of the adsorption module, thereby improving transmission diversity and facilitating the transportation of materials on the adsorption module. The adsorption module is provided with multiple groups, and can perform single adsorption and unified adsorption, with a compact structure, convenient for adsorption of different materials, strong practicability, and good application prospects. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 This is a three-dimensional diagram of the automatic heat dissipation silicone device of the utility model;
[0018] Figure 2 This is a structural diagram of the feeding module of the utility model;
[0019] Figure 3 This is a schematic structural diagram of the clamping module of the utility model;
[0020] Figure 4 This is a schematic structural diagram of the clamping module of the present invention from another angle;
[0021] Figure 5 It is a structural schematic diagram of the workbench of the utility model.
[0022] Description of reference numerals: frame 1, support frame 11, support plate 12, load-bearing member 13, movable member 14;
[0023] Feeding module 2, conveying assembly 21, conveying bracket 211, conveying guide roller 212, guide wheel 213, guide belt 214, limiting belt 215, conveying trough 215, conveying limiting member 216, lifting assembly 22, lifting cylinder 221, lifting rod 222, positioning member 223, unloading fixture 23, unloading position 231, clamping groove 232;
[0024] Workbench 3, stripping device 31, placement plate 32, conveying plate 33, drain trough 34, reflux device 35;
[0025] Clamping module 4, linear transmission module 41, linear transmission bracket 411, linear guide rod 412, linear guide rail 413, fixing part 414, linear transmission screw 415, linear transmission slider 416, linear tank chain 417, linear buffer 418, transverse transmission module 42, transverse driving part 421, transverse transmission screw rod 422, transverse transmission seat 423, transverse tank chain 424, adsorption module 43, adsorption support frame 431, adsorption cylinder 432, fixing plate 433, guide shaft 434, air pipe joint 435, buffer element 436. DETAILED DESCRIPTION
[0026] To facilitate understanding of the present invention, a more comprehensive description of the present invention will be provided below with reference to the accompanying drawings. The drawings illustrate preferred embodiments of the present invention. However, the present invention can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to facilitate a more thorough and comprehensive understanding of the disclosure of the present invention.
[0027] It should be noted that when an element is referred to as being “fixed to” another element, it may be directly on the other element or there may be an intermediate element. When an element is referred to as being “connected to” another element, it may be directly connected to the other element or there may be an intermediate element.
[0028] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as those commonly understood by those skilled in the art in the art of the present invention. The terms used herein in the specification of the present invention are only for the purpose of describing specific embodiments and are not intended to limit the present invention.
[0029] like Figure 1-5As shown, the utility model is an automatic heat dissipation silicone device, which is characterized by comprising a frame 1, a feeding module 2, a workbench 3, and a clamping module 4; the two ends of the feeding module 2 are mounted on the frame 1 and are provided with a conveying component 21 and a lifting component 22, the conveying component 21 is provided with a discharge fixture 23, and the discharge fixture 23 is provided on the lifting component 22; the workbench 3 is provided at one end of the feeding module 2 and is provided with a stripping device 31, the stripping device 31 includes a placing plate 32 and a conveying plate 33, the placing plate 32 A leakage groove 34 is provided between the conveying plates 33, and a reflux device 35 is provided at one end connected to the leakage groove 34. The reflux device 35 is used to reflux and collect the debris after peeling; the clamping module 4 is located above the workbench 3 and adsorbs and clamps the material on the placement plate 32. The clamping module 4 includes a linear transmission module 41, a transverse transmission module 42 mounted on the linear transmission module 41, and an adsorption module 43 mounted on the transverse transmission module 42. The adsorption module 43 is provided with at least one group or more and can be used separately.
[0030] like Figure 1 As shown, the frame 1 includes a support frame 11 and a support plate 12 arranged on the support frame 11. The bottom of the support frame 11 is also provided with a load-bearing member 13 and a movable member 14. In this embodiment, the support frame 11 is used to support the frame 1, and the support plate 12 and the load-bearing member 13 are provided to improve the load-bearing capacity and stability of the frame 1. A movable member 14 is also provided, and the movable member 14 is used to facilitate the movement of the frame 1, thereby improving the practicality of the overall frame 1.
[0031] like Figure 2 As shown, the conveying component 21 includes a conveying bracket 211, a conveying guide roller 212 arranged on the conveying bracket 211, a guide wheel 213 for guiding the conveying guide roller 212, and a guide belt 214 arranged on the guide wheel 213. A circle of the guide wheel 213 is provided with a limiting belt 215, and the limiting belt 215 limits the guide belt 214. In this embodiment, the conveying component 21 is used to facilitate the transportation of materials, and the conveying component 21 is provided with a conveying guide roller 212 and a guide wheel 213 to facilitate the stability of material transportation during the transportation process, and a guide belt 214 is provided between the conveying guide roller 212 and the guide wheel 213 to achieve stable transportation of materials, which is practical.
[0032] The conveying bracket 211 is provided with a conveying groove 215 and a conveying limiter 216 provided in the conveying groove 215. The conveying limiter 216 is used to convey the guide roller 212 for conveying limitation. In this embodiment, the conveying bracket 211 is used to facilitate the support of the conveying component 21, thereby reducing the conveying wear between the conveying components 21. The conveying bracket 211 is provided with a conveying groove 215 and a conveying limiter 216 to facilitate the limited conveying of the conveying component 21, thereby improving the conveying accuracy of the conveying component 21.
[0033] The jacking assembly 22 includes a jacking cylinder 221, a lifting rod 222 arranged on the jacking cylinder 221, and a positioning member 223 arranged on the lifting rod 222. The positioning member 223 is used to position the discharge jig 23. In this embodiment, the jacking assembly 22 is used to facilitate the jacking of the discharge jig 23 on the conveying assembly 21, so that the material can be pushed to the processing table. The jacking assembly 22 is provided with a positioning member 223 and a lifting rod 222 to facilitate the positioning, lifting and conveying of the discharge jig 23. The lifting rod 222 is used to enable the jacking assembly 22 to convey the discharge jig 23 at different heights, which is highly practical.
[0034] The discharge fixture 23 includes a discharge position 231 and a clamping groove 232 arranged on the discharge position 231. There are multiple clamping grooves 232 and they are distributed along the discharge position 231. In this embodiment, the discharge position 231 is used to facilitate the fixed placement of the material, and the clamping groove 232 is provided on the placement position to facilitate the clamping module 4 to clamp. The structural design is reasonable and practical.
[0035] like Figure 3-4As shown, the linear transmission module 41 includes a linear transmission bracket 411, a linear guide rod 412 arranged on the linear transmission bracket 411, and a linear guide rail 413 arranged in the linear guide rod 412, and both ends of the linear guide rail 413 are provided with fixing parts 414, and a linear transmission screw rod 415 is provided on the fixing part 414, and a linear transmission slider 416 is provided on the linear transmission screw rod 415, and the linear transmission slider 416 is provided with a linear transmission seat and is mounted on the linear guide rod 412. The transverse transmission module 42 is arranged on the linear transmission seat and performs linear transmission along the linear guide rod 412. One end of the linear transmission bracket 411 is provided with a linear tank chain 417, and one end of the fixing part 414 is provided with a linear buffer part 418. In the embodiment, the linear transmission module 41 is used to facilitate the linear transmission of the clamping module 4, and the linear transmission module 41 is provided with a linear tank chain 417 to facilitate the linear transmission module 41 to organize the lines, improve the transmission smoothness, and reduce wear, and the linear transmission module 41 is provided with a linear guide rod 412 and a linear guide rail 413, and the linear guide rod 412 and the linear guide rail 413 are used to improve the smoothness of the transmission of the clamping module 4 by the linear transmission module 41, and the linear guide rail 413 is provided with a fixing part 414 to facilitate the fixed transportation of the linear transmission module 41, enhance the transmission accuracy of the clamping module 4 driven by the linear transmission module 41, and a buffer part is connected to the fixing part 414 to reduce the wear between the modules during reciprocating transmission, and the practicality is strong.
[0036] The transverse transmission module 42 includes a transverse driving member 421 and a transverse transmission screw 422 arranged on the transverse driving member 421, and a transverse transmission seat 423 is provided on the transverse transmission screw 422. The clamping module 4 is arranged on the transverse transmission seat 423 and transmits along the transverse transmission screw 422. A transverse tank chain 424 is provided above the transverse driving member 421, and transverse baffles are provided on both sides of the transverse transmission screw 422. In this embodiment, the transverse transmission module 42 is used to facilitate the clamping module 4 to perform transverse reciprocating transmission, and the transverse transmission module 42 is mounted on the linear transmission module 41 so that the clamping module 4 can perform linear reciprocating transmission and transverse reciprocating transmission. It has wide practicality and is convenient for the clamping module 4 to perform multi-directional clamping. The transverse transmission module 42 is provided with a transverse baffle and a transverse tank chain 424, thereby improving the transmission accuracy of the transverse transmission module 42, and has a compact structure and strong practicality.
[0037] The suction module 43 includes an suction support frame 431, an suction cylinder 432 arranged on the suction support frame 431, and a fixing plate 433 connected to one end of the suction cylinder 432. The fixing plate 433 is provided with two sets of symmetrical guide shafts 434, and an air pipe joint 435 is connected to the two sets of guide shafts 434. One end of the air pipe joint 435 is connected to the guide shaft 434 and adsorbs the material on the placement plate 32. In this embodiment, the suction module 43 is used to enable the clamping module 4 to perform adsorption and clamping, thereby improving the practicality of the clamping module 4. The suction module 43 is provided with an suction cylinder 432 to facilitate driving the suction module 43 for adsorption, and the suction cylinder 432 is provided with a fixing plate 433 to improve the stability of the suction module 43 during the adsorption process. The fixing plate 433 is provided with a guide shaft 434 to facilitate positioning and adsorption of the air pipe joint 435, thereby improving the adsorption accuracy and having strong practicality.
[0038] A buffer element 436 is provided outside the guide shaft 434, and the buffer element 436 buffers the adsorption module 43. In this embodiment, the guide shaft 434 is used to facilitate guided adsorption of the adsorption module 43, which is highly practical and has high adsorption accuracy, thereby reducing the wear of the material caused by adsorption. The guide shaft 434 is provided with a buffer element 436 to facilitate buffering the adsorption module 43, reduce the loss of the adsorption module 43, and enhance the service life of the adsorption module 43. It is widely practical and highly practical.
[0039] In the above embodiment, there are multiple groups of adsorption modules 43, and the multiple groups of adsorption modules 43 are provided with an adsorption cylinder 432, a fixing plate 433, a guide shaft 434 and an air pipe joint 435 arranged in the guide shaft 434. The multiple groups of adsorption modules 43 are used to facilitate the improvement of the practicality of the adsorption module 43, and the adsorption module 43 can perform single adsorption and unified adsorption, thereby improving the adsorption diversity of the adsorption module 43, facilitating the adsorption of different material conditions, improving the practicality of adsorption, reducing resource waste, and improving the service life of the adsorption module 43.
[0040] The utility model is an automatic heat dissipation silicone device, comprising a frame 1, a feeding module 2, a workbench 3, and a clamping module 4; both ends of the feeding module 2 are mounted on the frame 1 and are provided with a conveying component 21 and a lifting component 22, the conveying component 21 is provided with a discharge fixture 23, the discharge fixture 23 is provided on the lifting component 22; the workbench 3 is provided at one end of the feeding module 2 and is provided with a stripping device 31, the stripping device 31 includes a placing plate 32 and a conveying plate 33, the placing plate 32 and the conveying plate 33 are provided. A leakage groove 34 is provided between the plates 33, and a reflux device 35 is provided at one end connected to the leakage groove 34. The reflux device 35 is used to reflux and collect the debris after peeling; the clamping module 4 is located above the workbench 3 and adsorbs and clamps the material on the placement plate 32. The clamping module 4 includes a linear transmission module 41, a transverse transmission module 42 mounted on the linear transmission module 41, and an adsorption module 43 mounted on the transverse transmission module 42. The adsorption module 43 is provided with at least one group and more, and can be operated separately. In this embodiment, the material is easily loaded through the loading module 2, and the loading module 2 is provided with a conveying component 21 and a lifting component 22 to facilitate the material on the loading module 2 to be transported and lifted, thereby improving the practicality of the loading module 2. The loading module 2 is provided with a processing table to facilitate the processing of the material on the loading module 2. A reflux device 35 is provided on the processing table to facilitate the reflux and unified collection of impurities generated after material processing, thereby reducing resource waste and saving environmental protection. A clamping module is provided above the processing table. Group 4, and the clamping module 4 is an adsorption module 43, which facilitates the adsorption and clamping of materials on the processing table through the adsorption module 43, and the clamping module 4 is provided with a linear transmission module 41 and a transverse transmission module 42 to facilitate linear transmission and transverse transmission of the adsorption module 43, thereby improving transmission diversity and facilitating the transportation of materials on the adsorption module 43, and the adsorption module 43 is provided with multiple groups, and can perform single adsorption and unified adsorption, with a compact structure, convenient for adsorption of different materials, strong practicality, and good application prospects.
[0041] The above embodiments merely illustrate several implementations of the present invention. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the present invention. It should be noted that a person skilled in the art would be able to make numerous variations and improvements without departing from the concept of the present invention, all of which fall within the scope of protection of the present invention. Therefore, the scope of protection of the present invention shall be determined by the appended claims.
Claims
1. An automatic heat dissipation silicone device, characterized by: Including rack; A feeding module, both ends of which are mounted on a frame and are provided with a conveying assembly and a lifting assembly, the conveying assembly is provided with a discharge jig, and the discharge jig is provided on the lifting assembly; A workbench is provided at one end of the loading module and is provided with a stripping device, the stripping device comprising a placement plate and a conveying plate, a drain groove is provided between the placement plate and the conveying plate, and a reflux device is provided at one end connected to the drain groove, the reflux device is used to return and collect the debris after stripping; The clamping module is located above the workbench and adsorbs and clamps the material on the placement plate. The clamping module includes a linear transmission module, a transverse transmission module mounted on the linear transmission module, and an adsorption module mounted on the transverse transmission module. The adsorption module is provided with at least one group or more and can be used separately.
2. The automatic heat dissipation silicone device according to claim 1, characterized in that: The frame includes a support frame and a support plate arranged on the support frame. The bottom of the support frame is also provided with a load-bearing part and a movable part.
3. The automatic heat dissipation silicone device according to claim 1, characterized in that: The conveying assembly includes a conveying bracket, a conveying guide roller arranged on the conveying bracket, a guide wheel for guiding the conveying guide roller, and a guide belt arranged on the guide wheel. A circle of the guide wheel is provided with a limiting belt, and the limiting belt limits the guide belt.
4. The automatic heat dissipation silicone device according to claim 3, characterized in that: The conveying bracket is provided with a conveying trough and a conveying limiter provided in the conveying trough, and the conveying limiter is used for conveying guide rollers to limit conveying.
5. The automatic heat dissipation silicone device according to claim 4, characterized in that: The jacking assembly includes a jacking cylinder, a lifting rod arranged on the jacking cylinder, and a positioning piece arranged on the lifting rod, and the positioning piece is used to position the discharge jig.
6. The automatic heat dissipation silicone device according to claim 5, characterized in that: The material discharge fixture includes a material discharge position and a clamping groove arranged on the material discharge position. There are multiple clamping grooves and they are distributed along the material discharge position.
7. The automatic heat dissipation silicone device according to claim 1, characterized in that: The linear transmission module includes a linear transmission bracket, a linear guide rod arranged on the linear transmission bracket, and a linear guide rail arranged in the linear guide rod. Fixed parts are provided at both ends of the linear guide rail. A linear transmission screw rod and a linear transmission slider arranged on the linear transmission screw rod are provided on the fixed part. A linear transmission seat is provided on the linear transmission slider and is mounted on the linear guide rod. The transverse transmission module is provided on the linear transmission seat and performs linear transmission along the linear guide rod. A linear tank chain is provided at one end of the linear transmission bracket, and a linear buffer is provided at one end of the fixed part.
8. The automatic heat dissipation silicone device according to claim 1, characterized in that: The transverse transmission module includes a transverse driving member and a transverse transmission screw arranged on the transverse driving member. A transverse transmission seat is provided on the transverse transmission screw. The clamping module is provided on the transverse transmission seat and transmits along the transverse transmission screw. A transverse tank chain is provided above the transverse driving member, and transverse baffles are provided on both sides of the transverse transmission screw.
9. The automatic heat dissipation silicone device according to claim 1, characterized in that: The adsorption module includes an adsorption support frame, an adsorption cylinder arranged on the adsorption support frame, a fixed plate connected to one end of the adsorption cylinder, two groups of symmetrical guide shafts are provided on the fixed plate, and an air pipe joint is connected to the two groups of guide shafts. One end of the air pipe joint is connected to the guide shaft and adsorbs the material on the placement plate.
10. The automatic heat dissipation silicone device according to claim 9, characterized in that: A buffer element is provided outside the guide shaft, and the buffer element buffers the adsorption module.