Efficient hot-pressing equipment for conducting film

By using a roll feeding mode and a design of multiple parallel hot pressing modules, combined with an electromagnetic pulse hot pressing head and a diaphragm conveying assembly, the problem of low efficiency in traditional hot pressing equipment has been solved, and efficient conductive film production has been achieved.

CN223918752UActive Publication Date: 2026-02-17DONGGUAN SHENGFANG ELECTRONICS CO LTD
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Patent Information

Application Number
CN202520456285.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-17
Publication Date
2026-02-17
Estimated Expiration
2035-03-17

AI Technical Summary

Technical Problem

Traditional keyboard conductive film hot pressing equipment has low efficiency in material conveying and hot pressing, making it difficult to reduce manufacturing costs.

Method used

The system adopts a roll feeding mode, achieving efficient conveying through unwinding and rewinding mechanisms. The hot pressing modules are arranged side by side, and the hot pressing efficiency is improved by using electromagnetic pulse hot pressing heads and diaphragm conveying components. The production process is optimized by combining positioning and cooling components.

Benefits of technology

This greatly improves the conveying efficiency and hot pressing efficiency of conductive films, reduces production costs, and improves hot pressing accuracy and production efficiency.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides a conductive film high-efficiency hot pressing equipment, a hot pressing module comprises an X-axis driving assembly, a movable bottom plate, a Y-axis sliding table, a Y-axis driving assembly, a mounting seat, a hot pressing platform and a hot pressing mechanism, an unwinding mechanism is fixed at the feeding end of a rack, a winding mechanism is fixed at the discharging end of the rack, the X-axis sliding table and the X-axis driving assembly are both fixed above the rack, and the Y-axis driving assembly is fixed above the rack. The movable bottom plate is fixed to the power output end of the X-axis driving assembly and is in sliding connection with the X-axis sliding table, the Y-axis sliding table and the Y-axis driving assembly are both fixed to the upper portion of the movable bottom plate, the mounting base is fixed to the power output end of the Y-axis driving assembly and is in sliding connection with the Y-axis sliding table, and a strip-shaped material passing hole is formed in the mounting base; and the hot-pressing platform is fixed to the mounting base and corresponds to the lower portion of the strip-shaped material passing hole, the hot-pressing mechanism is fixed to the mounting base and corresponds to the upper portion of the hot-pressing platform, the multiple hot-pressing modules are arranged side by side in the X-axis direction, and the conductive film hot-pressing device has the advantages that the conveying efficiency and the hot-pressing efficiency of the conductive film are greatly improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to keyboard conductive film manufacturing technical field, especially relates to a conductive film high -efficient hot pressing equipment. BACKGROUND

[0002] Keyboard conductive film is a kind of film in the keyboard, usually made of polyester film or polycarbonate film. It is one of the core components of keyboard input, and the input of key is realized by contacting with metal contact, in the manufacturing process of conductive film, the composite of each layer structure is needed, such as upper circuit film, isolation layer, lower circuit film etc., after composite is completed, conductive film needs to be hot-pressed to improve the composite effect between each layer, on the traditional hot-pressing equipment, the sheet conductive film is placed to hot-pressing station by mechanical hand with suction cup, then the conductive film is hot-pressed by hot-pressing head, after waiting for the natural cooling of conductive film, the mechanical hand stacks the conductive film in specified position, however, the efficiency of conveying material or the efficiency of hot-pressing of traditional hot-pressing equipment is relatively low, which is not conducive to the reduction of manufacturing cost, therefore, it is necessary to manufacture a kind of conductive film high -efficient hot pressing equipment to solve the above-mentioned problem. SUMMARY

[0003] The utility model aims at providing a kind of conductive film high -efficient hot pressing equipment to solve the problem mentioned in background art.

[0004] In order to achieve the above-mentioned purpose, the utility model provides the following technical scheme:

[0005] A kind of conductive film high -efficient hot pressing equipment, including rack, unwinding mechanism, winding mechanism, X-axis sliding table and hot-pressing module, hot-pressing module includes X-axis drive assembly, movable bottom plate, Y-axis sliding table, Y-axis drive assembly, mounting seat, hot-pressing platform and hot-pressing mechanism, unwinding mechanism is fixed in the material feeding end of rack, winding mechanism is fixed in the material discharging end of rack, X-axis sliding table and X-axis drive assembly are all fixed on the top of rack, movable bottom plate is fixed on the power output end of X-axis drive assembly and is slidably connected with X-axis sliding table, Y-axis sliding table and Y-axis drive assembly are all fixed on the top of movable bottom plate, mounting seat is fixed on the power output end of Y-axis drive assembly and is slidably connected with Y-axis sliding table, mounting seat is equipped with the strip hole of passing material, hot-pressing platform is fixed on mounting seat and corresponds to the below of strip hole of passing material, hot-pressing mechanism is fixed on mounting seat and corresponds to the above of hot-pressing platform, hot-pressing module is arranged multiple groups along X-axis direction and side by side.

[0006] Further description of the utility model: winding mechanism includes first installation support, first rotary motor, blanking roll, buffer frame and winding roll, first installation support is fixed in the blanking end of frame, first rotary motor is fixed on first installation support, blanking roll is rotatably installed on first installation support and one end is connected with the power output end of first rotary motor, buffer frame and winding roll are sequentially fixed in winding roll one side along the blanking direction.

[0007] Further description of the utility model: winding mechanism still includes compression assembly, compression assembly includes first Z axle cylinder, connecting support, installation cross bar, sliding sleeve, locking screw and compression roller, first Z axle cylinder is fixed on first installation support, connecting support is fixed on the power output end of first Z axle cylinder, first Z axle cylinder and connecting support each set two groups and respectively correspond to the both ends of blanking roll, the both ends of installation cross bar are fixed on two groups of connecting support respectively, sliding sleeve is sleeved on installation cross bar and is slidably connected with installation cross bar, one end of locking screw is threadedly connected with sliding sleeve and the end portion is in abutment with installation cross bar, compression roller is rotatably installed on sliding sleeve and corresponds to the above of blanking roll, sliding sleeve, locking screw and compression roller are set at least two groups on installation cross bar.

[0008] Further description of the utility model: mounting seat includes installation base plate, support block, support stand and connecting column, installation base plate is fixed on the power output end of Y axle drive assembly and is slidably connected with Y axle sliding table, hot-pressing platform is fixed in the upper middle part of installation base plate, support block is fixed on the upper side of installation base plate, support block sets two groups and respectively corresponds to the both sides of hot-pressing platform, the lower end of support stand is fixed on support block, support stand sets two groups and respectively corresponds to the left and right sides of support block, and the support stand is provided with a through material slot, the both ends of connecting column are fixed on two groups of support stand respectively, connecting column sets multiple groups, and hot-pressing mechanism is fixed on the upper end of support stand.

[0009] Further description of the utility model: the upper end of hot-pressing platform is fixed with a pressure sensor.

[0010] Further description of the utility model: hot-pressing mechanism includes second installation support, Z axle sliding table, Z axle drive assembly, lifting vertical plate and hot-pressing head, second installation support is fixed on the upper end of mounting seat, Z axle sliding table and Z axle drive assembly are all fixed on second installation support, lifting vertical plate is fixed on the power output end of Z axle drive assembly and is slidably connected with Z axle sliding table, hot-pressing head is fixed on the lower end of lifting vertical plate and corresponds to the above of hot-pressing platform, and the hot-pressing head adopts electromagnetic pulse type hot-pressing head.

[0011] Further description of the utility model: hot pressing mechanism still includes first buffer assembly, first buffer assembly includes first convex post, second convex post and first buffer spring, first convex post is fixed on second mounting support and corresponds to the top of lifting vertical plate, second convex post is fixed on lifting vertical plate, the upper and lower ends of first buffer spring are fixed on first convex post and second convex post respectively, first convex post, second convex post and first buffer spring set two groups and correspond to the both sides of Z axle drive assembly respectively.

[0012] Further description of the utility model: hot pressing mechanism still includes diaphragm conveying assembly, diaphragm conveying assembly includes membrane release roller, membrane collection roller, damping roller, second rotary motor, elastic telescopic support and limit block, membrane release roller and membrane collection roller are rotatably installed on lifting vertical plate through rotary shaft respectively, membrane release roller and membrane collection roller correspond to the both sides of hot pressing head respectively, damping roller is rotatably installed on lifting vertical plate, damping roller is wrapped with elastic ring, elastic ring is in contact with the rotary shaft of membrane release roller, two groups of damping roller are symmetrically arranged about the rotary shaft of membrane release roller, second rotary motor is fixed on lifting vertical plate and the rotary shaft of membrane collection roller is connected with the power output end, elastic telescopic support includes fixed frame, buffer sliding table, buffer support, third convex post, fourth convex post and second buffer spring, fixed frame is fixed on the lower end of lifting vertical plate, buffer sliding table is vertically fixed on fixed frame, buffer support is slidably connected with buffer sliding table, third convex post is fixed on the upper end of buffer support, fourth convex post is fixed on fixed frame and corresponds to the lower side of third convex post, the upper and lower ends of second buffer spring are fixed on third convex post and fourth convex post respectively, limit block is fixed on the lower end of buffer support, limit block is vertically provided with limit through hole on it, elastic telescopic support and limit block are each provided with two groups and correspond to the both sides of hot pressing head respectively.

[0013] Further description of the utility model: hot pressing mechanism still includes positioning assembly, positioning assembly includes camera and light source part, camera is fixed on second mounting support and downward shooting end, light source part is fixed on mounting seat and corresponds to the lower side of camera.

[0014] Further description of the utility model: hot pressing mechanism still includes cooling assembly, cooling assembly includes air inlet connector, regulating valve and universal pipe, air inlet connector is fixed on lifting vertical plate, regulating valve is fixed on air inlet connector and is communicated with air inlet connector, one end of universal pipe is fixed on regulating valve, the other end faces hot pressing platform.

[0015] The utility model discloses a beneficial effect is: the keyboard conductive film of having been compound completes adopts the mode of roll stock to feed, and roll stock is fed through unwinding mechanism, and passes through a plurality of groups of material bar holes in proper order after, and is rolled up by winding mechanism, when roll stock passes through the material bar hole corresponding to the hot pressing mechanism below, X -axis drive assembly and Y -axis drive assembly drive hot pressing mechanism to run to the position of the need hot pressing just above, and carry out hot pressing process to the position through hot pressing mechanism. The advantage of this design is: abandon traditional sheet conductive film feeding mode, and improve roll stock feeding mode, can greatly improve the conveying efficiency of conductive film, on the other hand, set up a plurality of groups of hot pressing module side by side, can simultaneously carry out hot pressing to a plurality of positions on roll stock, improve the efficiency of hot pressing. BRIEF DESCRIPTION OF DRAWINGS

[0016] Fig. 1 It is the overall structure diagram of the utility model;

[0017] Fig. 2 It is the structure diagram of winding mechanism in the utility model;

[0018] Fig. 3 It is the structure diagram of hot pressing module in the utility model (one group of support stand hides);

[0019] Fig. 4 It is the structure diagram of mounting seat and hot pressing platform in the utility model;

[0020] Fig. 5 It is the structure diagram of hot pressing mechanism in the utility model;

[0021] Fig. 6 It is the structure diagram of diaphragm conveying assembly in the utility model;

[0022] BRIEF DESCRIPTION OF DRAWINGS:

[0023] 01, rack; 02, unwinding mechanism; 03, winding mechanism; 031, first mounting bracket; 032, first rotary motor; 033, blanking roller; 034, buffer rack; 035, winding roller; 036, pressing assembly; 0361, first Z-axis cylinder; 0362, connecting bracket; 0363, mounting cross bar; 0364, sliding sleeve; 0365, locking screw; 0366, pressing roller; 04, X-axis sliding table; 05, X-axis driving assembly; 06, movable bottom plate; 07, Y-axis sliding table; 08, Y-axis driving assembly; 09, mounting seat; 091, mounting bottom plate; 092, supporting block; 093, supporting stand; 0931, material passing bar hole; 094, connecting column; 10, hot pressing platform; 101, pressure sensor; 11, hot pressing mechanism; 111, second mounting bracket; 112, Z-axis sliding table; 113, Z-axis driving assembly; 114, lifting vertical plate; 115, hot pressing head; 116, first buffer assembly; 1161, first protruding column; 1162, second protruding column; 1163, first buffer spring; 117, diaphragm conveying assembly; 1171, film unwinding roller; 1172, film winding roller; 1173, damping roller; 1174, second rotary motor; 1175, elastic telescopic frame; 11751, fixing frame; 11752, buffer sliding table; 11753, buffer frame; 11754, third protruding column; 11755, fourth protruding column; 11756, second buffer spring; 1176, limiting block; 11761, limiting through hole; 118, positioning assembly; 1181, camera; 1182, light source component; 119, cooling assembly; 1191, air inlet connector; 1192, regulating valve; 1193, universal pipe. DETAILED DESCRIPTION

[0024] The utility model is further illustrated below in combination with the drawings:

[0025] As Figs. 1 to 6As shown, a kind of efficient hot-pressing equipment of conductive film includes rack 01, unwinding mechanism 02, winding mechanism 03, X-axis sliding table 04 and hot-pressing module, and the hot-pressing module includes X-axis driving assembly 05, movable base plate 06, Y-axis sliding table 07, Y-axis driving assembly 08, mounting seat 09, hot-pressing carrier 10 and hot-pressing mechanism 11, unwinding mechanism 02 is fixed at the feeding end of rack 01, winding mechanism 03 is fixed at the discharging end of rack 01, X-axis sliding table 04 and X-axis driving assembly 05 are both fixed above rack 01, movable base plate 06 is fixed at the power output end of X-axis driving assembly 05 and is slidably connected with X-axis sliding table 04, Y-axis sliding table 07 and Y-axis driving assembly 08 are both fixed above movable base plate 06, mounting seat 09 is fixed at the power output end of Y-axis driving assembly 08 and is slidably connected with Y-axis sliding table 07, overfeed slot-shaped hole 0931 is provided on mounting seat 09, hot-pressing carrier 10 is fixed on mounting seat 09 and corresponds to the below of overfeed slot-shaped hole 0931, hot-pressing mechanism 11 is fixed on mounting seat 09 and corresponds to the above of hot-pressing carrier 10, and multiple groups of hot-pressing modules are arranged side by side along X-axis direction.

[0026] The keyboard conductive film that has been compounded is fed in the form of roll material, the roll material is fed by unwinding mechanism 02, and sequentially passes through multiple overfeed slot-shaped holes 0931, and then is wound by winding mechanism 03, when the roll material passes through overfeed slot-shaped hole 0931 corresponding to the below of hot-pressing mechanism 11, X-axis driving assembly 05 and Y-axis driving assembly 08 drive hot-pressing mechanism 11 to run to the position above the position needed to be hot-pressed, and the position is hot-pressed by hot-pressing mechanism 11. The advantage of the design is that the traditional sheet-shaped conductive film feeding mode is abandoned, and the roll material feeding mode is improved, which can greatly improve the conveying efficiency of the conductive film, and on the other hand, multiple groups of hot-pressing modules are arranged side by side, which can simultaneously hot-press multiple positions on the roll material, thereby improving the hot-pressing efficiency.

[0027] The winding mechanism 03 includes first mounting bracket 031, first rotary motor 032, discharging roller 033, buffer rack 034 and winding roller 035, first mounting bracket 031 is fixed at the discharging end of rack 01, first rotary motor 032 is fixed on first mounting bracket 031, discharging roller 033 is rotatably installed on first mounting bracket 031 and is connected with the power output end of first rotary motor 032 at one end, buffer rack 034 and winding roller 035 are sequentially fixed on one side of winding roller 035 along the discharging direction.

[0028] First rotary motor 032 drives discharging roller 033 to rotate, thereby driving the roll material to be conveyed to the side of buffer rack 034, the buffer rack 034 buffers the roll material, and the roll material is wound by winding roller 035.

[0029] The winding mechanism 03 further comprises a pressing assembly 036, which comprises a first Z-axis cylinder 0361, a connecting bracket 0362, a mounting crossbar 0363, a sliding sleeve 0364, a locking screw 0365 and a pressing roller 0366. The first Z-axis cylinder 0361 is fixed on the first mounting bracket 031, and the connecting bracket 0362 is fixed on the power output end of the first Z-axis cylinder 0361. The first Z-axis cylinder 0361 and the connecting bracket 0362 are each provided with two groups and correspond to the two ends of the blanking roller 033 respectively. The two ends of the mounting crossbar 0363 are fixed on the two groups of connecting brackets 0362 respectively. The sliding sleeve 0364 is sleeved on the mounting crossbar 0363 and is in sliding connection with the mounting crossbar 0363. One end of the locking screw 0365 is in threaded connection with the sliding sleeve 0364, and the end portion is in abutment with the mounting crossbar 0363. The pressing roller 0366 is rotatably mounted on the sliding sleeve 0364 and corresponds to the upper side of the blanking roller 033. The sliding sleeve 0364, the locking screw 0365 and the pressing roller 0366 are provided with at least two groups on the mounting crossbar 0363.

[0030] After the locking screw 0365 is loosened, the sliding sleeve 0364 can adjust the position on the mounting crossbar 0363, so that the pressing roller 0366 is adjusted to the appropriate position. When the coiled material is conveyed, the mounting crossbar 0363 is driven to descend by the first Z-axis cylinder 0361, so that the pressing roller 0366 is pressed on the upper surface of the coiled material, and the friction between the coiled material and the blanking roller 033 is increased, so as to improve the stability when the coiled material is conveyed by the blanking roller 033.

[0031] The mounting seat 09 comprises a mounting bottom plate 091, a supporting block 092, a supporting stand 093 and a connecting column 094. The mounting bottom plate 091 is fixed on the power output end of the Y-axis driving assembly 08 and is in sliding connection with the Y-axis sliding table 07. The hot-pressing table 10 is fixed on the upper middle part of the mounting bottom plate 091. The supporting block 092 is fixed on the upper side of the mounting bottom plate 091. The supporting block 092 is provided with two groups and corresponds to the two sides of the hot-pressing table 10 respectively. The lower end of the supporting stand 093 is fixed on the supporting block 092. The supporting stand 093 is provided with two groups and corresponds to the left and right sides of the supporting block 092 respectively. The supporting stand 093 is provided with a material passing strip hole 0931. The two ends of the connecting column 094 are fixed on the two groups of supporting stands 093 respectively. The connecting column 094 is provided with multiple groups. The hot-pressing mechanism 11 is fixed on the upper end of the supporting stand 093.

[0032] The frame body connected by the supporting stand 093 and the connecting column 094 is fixed on the mounting bottom plate 091 through the supporting block 092, so that there is a larger mounting space in the mounting seat 09 and the weight of the mounting seat 09 is reduced as much as possible.

[0033] The upper end of the hot-pressing platform 10 is fixedly provided with a pressure sensor 101, when the hot-pressing mechanism 11 performs hot pressing on the roll material, the pressure applied to the roll material is gradually increased, the pressure applied to the roll material can be measured in real time through the pressure sensor 101, when the preset pressure is reached, the hot-pressing mechanism 11 stops pressing down, so as to accurately control the pressure of hot pressing, and the hot pressing effect is improved.

[0034] The hot-pressing mechanism 11 comprises a second mounting bracket 111, a Z-axis sliding table 112, a Z-axis driving assembly 113, a lifting vertical plate 114 and a hot-pressing head 115, the second mounting bracket 111 is fixed at the upper end of the mounting seat 09, the Z-axis sliding table 112 and the Z-axis driving assembly 113 are both fixed on the second mounting bracket 111, the lifting vertical plate 114 is fixed on the power output end of the Z-axis driving assembly 113 and is in sliding connection with the Z-axis sliding table 112, the hot-pressing head 115 is fixed at the lower end of the lifting vertical plate 114 and corresponds to the upper side of the hot-pressing platform 10, and the hot-pressing head 115 adopts an electromagnetic pulse type hot-pressing head 115.

[0035] The Z-axis driving assembly 113 drives the lifting vertical plate 114 to rise and fall on the Z-axis sliding table 112, so that the hot-pressing head 115 is pressed on the roll material, the hot-pressing head 115 adopts an electromagnetic pulse type hot-pressing head 115, and the traditional heating rod mode is abandoned to heat, so that the heating efficiency is faster and the heating temperature is more stable.

[0036] The hot-pressing mechanism 11 further comprises a first buffer assembly 116, the first buffer assembly 116 comprises a first convex column 1161, a second convex column 1162 and a first buffer spring 1163, the first convex column 1161 is fixed on the second mounting bracket 111 and corresponds to the upper side of the lifting vertical plate 114, the second convex column 1162 is fixed on the lifting vertical plate 114, the upper and lower ends of the first buffer spring 1163 are fixed on the first convex column 1161 and the second convex column 1162 respectively, and the first convex column 1161, the second convex column 1162 and the first buffer spring 1163 are provided in two groups and correspond to the two sides of the Z-axis driving assembly 113 respectively.

[0037] When the Z-axis driving assembly 113 drives the lifting vertical plate 114 to fall, the first buffer spring 1163 is stretched, so as to buffer the falling of the lifting vertical plate 114.

[0038] The hot-pressing mechanism 11 further comprises a diaphragm conveying assembly 117, which comprises a film-feeding roller 1171, a film-collecting roller 1172, a damping roller 1173, a second rotary motor 1174, an elastic telescopic frame 1175 and a limiting block 1176. The film-feeding roller 1171 and the film-collecting roller 1172 are respectively rotatably installed on the lifting vertical plate 114 through rotary shafts, and correspond to two sides of the hot-pressing head 115 respectively. The damping roller 1173 is rotatably installed on the lifting vertical plate 114, and an elastic ring is wrapped outside the damping roller 1173, which is in contact with the rotary shaft of the film-feeding roller 1171. Two groups of the damping roller 1173 are symmetrically arranged about the rotary shaft of the film-feeding roller 1171. The second rotary motor 1174 is fixed on the lifting vertical plate 114, and the power output end is connected with the rotary shaft of the film-collecting roller 1172. The elastic telescopic frame 1175 comprises a fixed frame 11751, a buffer sliding table 11752, a buffer frame 11753, a third protruding column 11754, a fourth protruding column 11755 and a second buffer spring 11756. The fixed frame 11751 is fixed on the lower end of the lifting vertical plate 114, the buffer sliding table 11752 is vertically fixed on the fixed frame 11751, the buffer frame 11753 is slidingly connected with the buffer sliding table 11752, the third protruding column 11754 is fixed on the upper end of the buffer frame 11753, the fourth protruding column 11755 is fixed on the fixed frame 11751 and corresponds to the lower side of the third protruding column 11754, the upper and lower ends of the second buffer spring 11756 are respectively fixed on the third protruding column 11754 and the fourth protruding column 11755, and the limiting block 1176 is fixed on the lower end of the buffer frame 11753. A limiting through hole 11761 is vertically arranged on the limiting block 1176. The elastic telescopic frame 1175 and the limiting block 1176 are each arranged in two groups and correspond to two sides of the hot-pressing head 115 respectively.

[0039] In order to avoid the effect of protecting the roll material by directly contacting the hot pressing head 115 with the roll material, a diaphragm can be arranged between the hot pressing head 115 and the roll material. The diaphragm of the traditional mode is directly pasted on the hot pressing head 115. After being used for several times, the diaphragm will be dirty and need to be frequently replaced, otherwise the appearance of the conductive film will be affected. The diaphragm roll material of the present design is discharged through the film discharge roller 1171, and sequentially passes through the limiting through holes 11761 on the two groups of limiting blocks 1176, so that the diaphragm is correspondingly arranged below the hot pressing head 115. During hot pressing, the diaphragm can play a role in protecting the conductive film roll material. According to the needs, after a certain number of hot pressing, the second rotary motor 1174 drives the film winding roller 1172 to rotate, so as to wind the diaphragm, replace the diaphragm below the hot pressing head 115, thereby avoiding frequent replacement of the diaphragm by manual operation, and improving the production efficiency. At the rotating shaft end of the film discharge roller 1171, two groups of damping rollers 1173 are arranged. The elastic ring outside the damping roller 1173 hinders the rotation of the rotating shaft of the film discharge roller 1171 through friction force, so that the film discharge roller 1171 can only rotate with the film winding roller 1172, thereby realizing stable discharging.

[0040] The hot pressing mechanism 11 further comprises a positioning assembly 118, the positioning assembly 118 comprising a camera 1181 and a light source component 1182, the camera 1181 being fixed on the second mounting bracket 111 with the shooting end downward, and the light source component 1182 being fixed on the mounting seat 09 and corresponding to the lower side of the camera 1181.

[0041] Before hot pressing the roll material, the camera 1181 is first positioned by shooting through the X-axis driving assembly 05 and the Y-axis driving assembly 08, so as to improve the precision of hot pressing. The light source component 1182 performs light compensation when the camera 1181 shoots, thereby improving the effect of shooting positioning.

[0042] The hot pressing mechanism 11 further comprises a cooling assembly 119, the cooling assembly 119 comprising an air inlet connector 1191, an adjusting valve 1192 and a universal pipe 1193, the air inlet connector 1191 being fixed on the lifting vertical plate 114, the adjusting valve 1192 being fixed on the air inlet connector 1191 and communicating with the air inlet connector 1191, one end of the universal pipe 1193 being fixed on the adjusting valve 1192, and the other end being directed to the hot pressing platform 10.

[0043] The air inlet connector 1191 is connected with a gas supply device. After the hot pressing head 115 completes hot pressing of the roll material, the Z-axis driving assembly 113 drives the hot pressing head 115 to reset. At this time, the air outlet end of the universal pipe 1193 is aligned with the hot pressing position and outputs cooling gas, so as to rapidly cool the roll material and improve the production efficiency. The adjusting valve 1192 can adjust the air output.

[0044] The above is not any limit to the technical range of the utility model, any modification, equivalent change and modification made to the above embodiments according to the technical essence of the utility model still belong to the range of the technical scheme of the utility model.

Claims

1. A high-efficiency hot pressing device for conductive films, characterized in that: The system includes a frame, an unwinding mechanism, a winding mechanism, an X-axis slide, and a hot pressing module. The hot pressing module includes an X-axis drive assembly, a movable base plate, a Y-axis slide, a Y-axis drive assembly, a mounting base, a hot pressing platform, and a hot pressing mechanism. The unwinding mechanism is fixed to the loading end of the frame, and the winding mechanism is fixed to the unloading end of the frame. The X-axis slide and the X-axis drive assembly are both fixed above the frame. The movable base plate is fixed to the power output end of the X-axis drive assembly and is slidably connected to the X-axis slide. The Y-axis slide and the Y-axis drive assembly are both fixed above the movable base plate. The mounting base is fixed to the power output end of the Y-axis drive assembly and is slidably connected to the Y-axis slide. The mounting base has a material feeding slot. The hot pressing platform is fixed on the mounting base and corresponds to the area below the material feeding slot. The hot pressing mechanism is fixed on the mounting base and corresponds to the area above the hot pressing platform. Multiple sets of hot pressing modules are arranged side by side along the X-axis direction.

2. The high-efficiency hot pressing equipment for conductive films according to claim 1, characterized in that: The winding mechanism includes a first mounting bracket, a first rotary motor, a feeding roller, a buffer frame, and a winding roller. The first mounting bracket is fixed to the feeding end of the frame, the first rotary motor is fixed on the first mounting bracket, the feeding roller is rotatably mounted on the first mounting bracket and one end is connected to the power output end of the first rotary motor, and the buffer frame and the winding roller are sequentially fixed on one side of the winding roller along the feeding direction.

3. The high-efficiency hot pressing equipment for conductive films according to claim 2, characterized in that: The winding mechanism further includes a clamping assembly, which includes a first Z-axis cylinder, a connecting bracket, a mounting crossbar, a sliding sleeve, a locking screw, and a clamping roller. The first Z-axis cylinder is fixed on the first mounting bracket, and the connecting bracket is fixed on the power output end of the first Z-axis cylinder. Two sets of the first Z-axis cylinder and the connecting bracket are provided, respectively corresponding to the two ends of the feed roller. The two ends of the mounting crossbar are respectively fixed on the two sets of the connecting bracket. The sliding sleeve is sleeved on the mounting crossbar and slidably connected to the mounting crossbar. One end of the locking screw is threadedly connected to the sliding sleeve, and the other end abuts against the mounting crossbar. The clamping roller is rotatably mounted on the sliding sleeve and corresponds to the area above the feed roller. At least two sets of the sliding sleeve, the locking screw, and the clamping roller are provided on the mounting crossbar.

4. The high-efficiency hot pressing equipment for conductive films according to claim 1, characterized in that: The mounting base includes a mounting base plate, support blocks, support frames, and connecting columns. The mounting base plate is fixed to the power output end of the Y-axis drive assembly and slidably connected to the Y-axis slide table. The hot press platform is fixed to the upper center of the mounting base plate. The support blocks are fixed above the mounting base plate. Two sets of support blocks are provided, each corresponding to one side of the hot press platform. The lower end of the support frame is fixed to the support block. Two sets of support frames are provided, each corresponding to one side of the support block. The support frame has the material passing strip hole. The two ends of the connecting column are fixed to the two sets of support frames. Multiple sets of connecting columns are provided. The hot pressing mechanism is fixed to the upper end of the support frame.

5. The high-efficiency hot pressing equipment for conductive films according to claim 1, characterized in that: A pressure sensor is fixedly installed at the upper end of the hot ballast platform.

6. The high-efficiency hot pressing equipment for conductive films according to claim 1, characterized in that: The hot pressing mechanism includes a second mounting bracket, a Z-axis slide, a Z-axis drive assembly, a lifting plate, and a hot pressing head. The second mounting bracket is fixed to the upper end of the mounting base. The Z-axis slide and the Z-axis drive assembly are both fixed on the second mounting bracket. The lifting plate is fixed to the power output end of the Z-axis drive assembly and is slidably connected to the Z-axis slide. The hot pressing head is fixed to the lower end of the lifting plate and corresponds to the upper part of the hot pressing platform. The hot pressing head is an electromagnetic pulse type hot pressing head.

7. The high-efficiency hot pressing device for conductive film according to claim 6, characterized in that: The hot pressing mechanism further includes a first buffer assembly, which includes a first protrusion, a second protrusion, and a first buffer spring. The first protrusion is fixed on the second mounting bracket and corresponds to the top of the lifting plate. The second protrusion is fixed on the lifting plate. The upper and lower ends of the first buffer spring are respectively fixed on the first protrusion and the second protrusion. The first protrusion, the second protrusion, and the first buffer spring are arranged in two sets and respectively correspond to both sides of the Z-axis drive assembly.

8. The high-efficiency hot pressing equipment for conductive films according to claim 6, characterized in that: The hot pressing mechanism further includes a diaphragm conveying assembly, which includes a film feeding roller, a film receiving roller, damping rollers, a second rotary motor, an elastic telescopic frame, and a limiting block. The film feeding roller and the film receiving roller are rotatably mounted on the lifting plate via rotating shafts, respectively, corresponding to both sides of the hot pressing head. The damping roller is rotatably mounted on the lifting plate, and an elastic ring is wrapped around its outer circumference. The elastic ring abuts against the rotating shaft of the film feeding roller. Two sets of damping rollers are symmetrically arranged about the rotating shaft of the film feeding roller. The second rotary motor is fixed on the lifting plate, and its power output end is connected to the rotating shaft of the film receiving roller. The elastic telescopic frame includes a fixed frame, a buffer slide, a buffer frame, a third protruding post, a fourth protruding post, and a second buffer spring. The fixed frame is fixed to the lower end of the lifting plate. The buffer slide is vertically fixed to the fixed frame. The buffer frame is slidably connected to the buffer slide. The third protruding post is fixed to the upper end of the buffer frame. The fourth protruding post is fixed to the fixed frame and corresponds to the lower part of the third protruding post. The upper and lower ends of the second buffer spring are respectively fixed to the third protruding post and the fourth protruding post. The limiting block is fixed to the lower end of the buffer frame. The limiting block is vertically provided with a limiting through hole. Two sets of the elastic telescopic frame and the limiting block are provided and respectively correspond to both sides of the hot press head.

9. The high-efficiency hot pressing device for conductive film according to claim 6, characterized in that: The hot pressing mechanism further includes a positioning component, which includes a camera and a light source. The camera is fixed on the second mounting bracket with its shooting end facing downwards, and the light source is fixed on the mounting base and corresponds to the area below the camera.

10. A high-efficiency hot pressing device for conductive films according to claim 6, characterized in that: The hot pressing mechanism also includes a cooling assembly, which includes an air inlet connector, a regulating valve, and a universal joint. The air inlet connector is fixed to the lifting plate, the regulating valve is fixed to the air inlet connector and communicates with the air inlet connector, and one end of the universal joint is fixed to the regulating valve, while the other end faces the hot pressing platform.