Fixture mechanism capable of accelerating curing during gluing
By designing an adhesive coating and curing acceleration fixture mechanism and utilizing side and bottom heating units to locally heat the battery module, the problem of overall temperature rise caused by tunnel oven heating was solved, achieving a highly efficient and energy-saving adhesive coating and curing effect.
Patent Information
- Application Number
- CN202423303136.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2034-12-31
AI Technical Summary
In existing technologies, the tunnel oven heating method during the adhesive curing process of new energy battery modules causes the entire module to heat up, which damages the lifespan of components and results in low efficiency.
Design a glue-applying accelerated curing fixture mechanism, which includes two side heating and pressurizing units, two pole clamping units and a bottom heating and pressurizing unit. By combining the side electric heating plates and the bottom electric heating plates with the thermally conductive silicone sheet, local heating is achieved to avoid the overall temperature from being too high.
It accelerates the curing time of the adhesive, improves efficiency, reduces the risk of damage to battery module cells, and is more energy-efficient and effective than tunnel ovens.
Smart Images

Figure CN223747955U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to new energy battery module gluing solidification technical field, concretely is a kind of realization gluing accelerates solidification fixture mechanism. BACKGROUND
[0002] In the production link of new energy battery module, gluing plays a vital role, on the one hand, gluing can provide reliable sealing performance for battery module, effectively prevent impurities such as dust, moisture, etc., guarantee the stability of battery internal environment, which is of great significance to maintain the normal performance and service life of battery, on the other hand, by accurate gluing, the connecting strength between battery module structural members can be enhanced, so that it still remains stable under complex use conditions, avoids that component loosens due to factors such as vibration, impact.
[0003] In the production process of new energy battery module, in order to improve efficiency, shortening structure glue solidification time becomes key demand, and improving glue temperature is a common means of accelerating solidification, traditionally adopts tunnel furnace heating scheme, its principle is to let battery module enter heating furnace, relies on high-temperature environment in furnace to promote glue solidification, however, this way has obvious drawbacks, the environment temperature in furnace is too high, which can make the whole module heat up, which not only can damage the service life of tray components and module structural members. SUMMARY
[0004] The technical problem to be solved by the utility model is to provide a kind of realization gluing accelerates solidification fixture mechanism, it can effectively solve the problems in prior art.
[0005] The technical scheme adopted by the utility model is: a kind of realization gluing accelerates solidification fixture mechanism, including base, the both sides of the top of base are provided with main support frame, the lower part of main support frame is provided with side heating and pressurizing unit, the upper part of main support frame is provided with pole pressing unit, the middle part of base is provided with bottom heating and pressurizing unit;
[0006] The side heating and pressurizing unit and pole pressing unit are provided with same two groups, and two groups of side heating and pressurizing unit and pole pressing unit are symmetrically distributed on the two sides of bottom heating and pressurizing unit.
[0007] Preferably, the side heating and pressing unit comprises a cylinder support I, which is fixedly installed at the lower part of the main support frame, the lower part of the main support frame is fixedly installed with a cylinder I through the cylinder support I, the movable end of the cylinder I is fixedly installed with a fixed joint, the upper part of the base is fixedly installed with a position detection sensor, and the upper part of the base is also fixedly installed with a linear guide rail I, the upper part of the linear guide rail I is slidingly installed with a sliding block I, the upper side of the sliding block I is provided with a support large plate, and the support large plate is sequentially provided with a side heat insulation glass fiber plate, a side electric heating sheet, a side heating plate and a side heat conduction silica gel sheet from inside to outside near the side of the bottom heating and pressing unit.
[0008] Preferably, the side electric heating sheet is located between the side heat insulation glass fiber plate and the side heating plate, the side heating and pressing unit is located below the pole pressing unit, and the temperature range of the side electric heating sheet is 180-200℃.
[0009] Through the above technical scheme, when in use, the cylinder I drives the support large plate to move towards the bottom heating and pressing unit through the fixed joint, when the side heat conduction silica gel sheet is in complete contact with the side of the battery module and the battery module is completely clamped, the pole pressing unit starts to press down, and then the side electric heating sheet transmits heat to the side of the battery module through the side heating plate and the side heat conduction silica gel sheet.
[0010] Preferably, the pole pressing unit comprises a cylinder support II, which is fixedly installed at the top end of the main support frame, the outer side of the cylinder support II is fixedly installed with a cylinder II, the movable end of the cylinder II is fixedly installed with a floating joint, the side away from the cylinder II of the floating joint is fixedly installed with a main connecting plate, the lower part of the main connecting plate is provided with a sliding block II, the upper part of the main support frame is fixedly installed with a linear guide rail II, the upper side of the main connecting plate is fixedly installed with a cylinder III, the movable end of the cylinder III is fixedly installed with a connecting ear seat, the upper side of the main connecting plate is also fixedly installed with a vertical support, the outer side of the vertical support is fixedly installed with a linear guide rail III, the outer side of the linear guide rail III is slidingly installed with a sliding block III, the side away from the vertical support of the sliding block III is fixedly installed with a movable plate I, the movable plate I is fixedly connected with the connecting ear seat, the outer side of the movable plate I is provided with a sensor support, the outer side of the movable plate I is fixedly installed with a sensor body through the sensor support, the front lower part of the movable plate I is provided with a horizontal rail rod, the outer side of the horizontal rail rod is provided with a connecting frame, the outer side of the horizontal rail rod is fixedly installed with a pressing column through the connecting frame, the lower part of the pressing column is provided with an insulating pressing sleeve, the top end of the main connecting plate is fixedly installed with a limit block, the back of the movable plate I is provided with an insulating plate, and the back of the movable plate I is fixedly installed with a buffer through the insulating plate.
[0011] Preferably, the connecting frames are provided in plurality, the connecting frames are in sliding connection with the transverse rail rods, the plurality of connecting frames are distributed at equal intervals, the connecting frames, the pressing columns and the insulating pressing sleeves are in equal number, the pressing columns and the insulating pressing sleeves are in nested connection, the insulating pressing sleeves are provided with reset springs inside, and the pressing columns and the insulating pressing sleeves are further provided with polyurethane buffer blocks.
[0012] Through the technical scheme, when the side heating and pressing unit completely clamps the battery module, the cylinder support II transmits power to the main connecting plate through the cylinder II and the floating joint, the main connecting plate transmits power to the movable plate I through the cylinder III, the connecting lug support, the vertical support, the linear guide III and the sliding block III, the movable plate I drives the outer insulating pressing sleeve to move towards the bottom heating and pressing unit, when the insulating pressing sleeve moves to the top of the electrode of the battery module, the cylinder III drives the insulating pressing sleeve to move downwards through the connecting lug support, the movable plate I, the transverse rail rod, the connecting frame and the pressing column, and the insulating pressing sleeve presses the electrode of the battery module, and the reset spring and the polyurethane buffer block between the pressing column and the insulating pressing sleeve can provide buffering to avoid damage to the electrode of the battery module.
[0013] Preferably, the bottom heating and pressing unit comprises a cylinder IV, the cylinder IV and a guide sleeve are fixedly installed at the lower part of the base, a guide column is slidably installed in the guide sleeve, the guide column and the movable end of the cylinder IV are fixedly connected with a movable plate II, a bottom heat insulation glass fiber plate is fixedly installed at the upper side of the movable plate II, a bottom electric heating sheet is fixedly installed at the upper part of the bottom heat insulation glass fiber plate, a bottom heating plate is fixedly installed at the upper side of the bottom electric heating sheet, and a bottom heat conduction silica gel sheet is fixedly installed at the top end of the bottom heating plate, and the temperature range of the bottom electric heating sheet is 180 DEG C to 200 DEG C.
[0014] Preferably, the bottom electric heating sheet is located between the bottom heat insulation glass fiber plate and the bottom heating plate, the bottom heating and pressing unit is provided in two groups, and the two groups of bottom heating and pressing units are symmetrically distributed about the center line of the base.
[0015] Through the technical scheme, when the side heating and pressing unit completely clamps the battery module, the cylinder support II transmits power to the main connecting plate through the cylinder II and the floating joint, the main connecting plate transmits power to the movable plate I through the cylinder III, the connecting lug support, the vertical support, the linear guide III and the sliding block III, the movable plate I drives the outer insulating pressing sleeve to move towards the bottom heating and pressing unit, when the insulating pressing sleeve moves to the top of the electrode of the battery module, the cylinder III drives the insulating pressing sleeve to move downwards through the connecting lug support, the movable plate I, the transverse rail rod, the connecting frame and the pressing column, and the insulating pressing sleeve presses the electrode of the battery module, and the reset spring and the polyurethane buffer block between the pressing column and the insulating pressing sleeve can provide buffering to avoid damage to the electrode of the battery module.
[0016] Compared with the prior art, the present application provides a glue coating and accelerated curing clamp mechanism, which has the following advantages:
[0017] 1. The realization of the glue accelerating curing fixture mechanism is provided with two side heating and pressing units, two pole pressing units and a bottom heating and pressing unit, the two side heating and pressing units can heat while clamping the side of the battery module, the bottom heating and pressing unit can heat while lifting the bottom of the battery module, and the pressing of the two pole pressing units can further accelerate the curing time of the battery module after gluing;
[0018] 2. The glue accelerating curing fixture mechanism is provided with a bottom electric heating sheet, a bottom heating plate and a bottom heat-conducting silica gel sheet, and a side electric heating sheet, a side heating plate and a side heat-conducting silica gel sheet, the electric heating sheet can heat the heating plate, the heating plate can conduct heat to the heat-conducting silica gel sheet, and the heat-conducting silica gel sheet heats the battery module, and the electric heating sheet adopts segmented heating control, which can effectively avoid the problem of damage of the battery module caused by the overall high temperature of the battery module, and compared with the tunnel furnace curing mode in the prior art, the glue accelerating curing fixture mechanism is more energy-saving and efficient, and the practicability is improved. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is a three-dimensional structure diagram of the utility model Figure 1 ;
[0020] Figure 2 It is a side heating and pressing unit installation structure diagram of the utility model
[0021] Figure 3 It is a pole pressing unit and side heating and pressing unit installation structure diagram of the utility model Figure 1 ;
[0022] Figure 4 It is a three-dimensional structure diagram of the utility model Figure 2 ;
[0023] Figure 5 It is a pole pressing unit and side heating and pressing unit installation structure diagram of the utility model Figure 2 ;
[0024] Figure 6 It is a pole pressing unit and side heating and pressing unit installation structure diagram of the utility model Figure 3 ;
[0025] Figure 7 It is a side heating and pressing unit internal structure diagram of the utility model
[0026] Figure 8 It is a bottom heating and pressing unit installation structure diagram of the utility model Figure 1 ;
[0027] Figure 9 It is a bottom heating and pressing unit installation structure diagram of the utility model Figure 2 .
[0028] Wherein: 1, base; 2, main support frame; 3, side heating and pressing unit; 301, cylinder support one; 302, cylinder one; 303, fixed joint; 304, in place detection sensor; 305, linear guide rail one; 306, slider one; 307, support large plate; 308, side thermal insulation glass fiber plate; 309, side electric heating sheet; 310, side heating plate; 311, side heat-conducting silica gel sheet; 4, pole pressing unit; 401, cylinder support two; 402, cylinder two; 403, floating joint; 404, main connecting plate; 405, linear guide rail two; 406, slider two; 407, cylinder three; 408, connecting lug seat; 409, vertical support; 410, linear guide rail three; 411, slider three; 412, movable plate one; 413, sensor support; 414, sensor body; 415, transverse rail; 416, connecting frame; 417, pressing column; 418, insulating pressing sleeve; 419, insulating plate; 420, buffer; 421, limit block; 422, reset spring; 423, polyurethane buffer block; 5, bottom heating and pressing unit; 501, cylinder four; 502, guide column; 503, guide sleeve; 504, movable plate two; 505, bottom thermal insulation glass fiber plate; 506, bottom electric heating sheet; 507, bottom heating plate; 508, bottom heat-conducting silica gel sheet. DETAILED DESCRIPTION
[0029] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of the present application.
[0030] Embodiment one: as shown in the figure, the present application provides a kind of realization gluing accelerated curing clamp mechanism, including base 1, the two sides of the top of base 1 are provided with main support frame 2, main support frame 2 lower part is provided with side heating and pressing unit 3, main support frame 2 upper part is provided with pole pressing unit 4, the middle part of base 1 is provided with bottom heating and pressing unit 5; Figures 1-9
[0031] Side heating and pressing unit 3 and pole pressing unit 4 are provided with same two groups, and two groups of side heating and pressing unit 3 and pole pressing unit 4 are symmetrically distributed on the two sides of bottom heating and pressing unit 5.
[0032] Specifically, the side heating and pressing unit 3 comprises a cylinder support 301 fixedly installed at the lower part of the main support frame 2, the lower part of the main support frame 2 is fixedly installed with a cylinder 302 through the cylinder support 301, the movable end of the cylinder 302 is fixedly installed with a fixed joint 303, the upper part of the base 1 is fixedly installed with a position detection sensor 304, the upper part of the base 1 is also fixedly installed with a linear guide rail 305, the upper part of the linear guide rail 305 is slidingly installed with a sliding block 306, the upper side of the sliding block 306 is provided with a support large plate 307, the side of the support large plate 307 close to the bottom heating and pressing unit 5 is sequentially provided from inside to outside with a side thermal insulation glass fiber plate 308, a side electric heating sheet 309, a side heating plate 310 and a side heat-conducting silica gel sheet 311, the side electric heating sheet 309 is located between the side thermal insulation glass fiber plate 308 and the side heating plate 310, the side heating and pressing unit 3 is located below the pole pressing unit 4, and the temperature range of the side electric heating sheet 309 is 180℃-200℃. When in use, the cylinder 302 pushes the support large plate 307 to move towards the bottom heating and pressing unit 5 through the fixed joint 303, when the side heat-conducting silica gel sheet 311 is in full contact with the side of the battery module and the battery module is completely clamped, the pole pressing unit 4 starts to press down, then the side electric heating sheet 309 transmits heat to the side of the battery module through the side heating plate 310 and the side heat-conducting silica gel sheet 311.
[0033] Example two: as shown in Figures 2-9 the improvement of the previous example.
[0034] Specifically, the pole pressing unit 4 comprises a cylinder support two 401 fixedly installed at the top end of the main support frame 2, a cylinder two 402 fixedly installed at the outer side of the cylinder support two 401, a floating joint 403 fixedly installed at the movable end of the cylinder two 402, a main connecting plate 404 fixedly installed at the side of the floating joint 403 away from the cylinder two 402, a sliding block two 406 arranged below the main connecting plate 404, a linear guide rail two 405 fixedly installed at the upper portion of the main support frame 2, a cylinder three 407 fixedly installed at the upper side of the main connecting plate 404, a connecting lug seat 408 fixedly installed at the movable end of the cylinder three 407, a vertical support 409 also fixedly installed at the upper side of the main connecting plate 404, a linear guide rail three 410 fixedly installed at the outer side of the vertical support 409, a sliding block three 411 slidingly installed at the outer side of the linear guide rail three 410, an active plate one 412 fixedly installed at the side of the sliding block three 411 away from the vertical support 409, the active plate one 412 being in fixed connection with the connecting lug seat 408, a sensor support 413 arranged at the outer side of the active plate one 412, a sensor body 414 fixedly installed at the outer side of the active plate one 412 through the sensor support 413, a horizontal rail 415 arranged directly below the active plate one 412, a connecting frame 416 arranged at the outer side of the horizontal rail 415, a pressing column 417 fixedly installed at the outer side of the horizontal rail 415 through the connecting frame 416, an insulating pressing sleeve 418 arranged at the lower portion of the pressing column 417, a limiting block 421 fixedly installed at the top end of the main connecting plate 404, an insulating plate 419 arranged at the back of the active plate one 412, a buffer 420 fixedly installed at the back of the active plate one 412 through the insulating plate 419, a plurality of connecting frames 416 are arranged, the connecting frame 416 is in sliding connection with the horizontal rail 415, the plurality of connecting frames 416 are distributed at equal intervals, the number of the connecting frame 416, the pressing column 417 and the insulating pressing sleeve 418 is the same, the pressing column 417 and the insulating pressing sleeve 418 are in nested connection, a reset spring 422 is arranged between the interiors of the insulating pressing sleeves 418, a polyurethane buffer block 423 is also arranged between the pressing column 417 and the insulating pressing sleeve 418, the advantage is that when the side heating and pressing unit 3 completely clamps the battery module, the cylinder support two 401 transmits power to the main connecting plate 404 through the cylinder two 402 and the floating joint 403, the main connecting plate 404 transmits power to the active plate one 412 through the cylinder three 407, the connecting lug seat 408, the vertical support 409, the linear guide rail three 410 and the sliding block three 411, the active plate one 412 drives the insulating pressing sleeve 418 at the outer side to move towards the bottom heating and pressing unit 5, when the insulating pressing sleeve 418 moves directly above the electrode of the battery module, the cylinder three 407 drives the insulating pressing sleeve 418 to move downwards through the connecting lug seat 408, the active plate one 412, the horizontal rail 415, the connecting frame 416 and the pressing column 417, the insulating pressing sleeve 418 presses the electrode of the battery module, in the process of pressing,The reset spring 422 and the polyurethane buffer block 423 between the pressing column 417 and the insulation pressing sleeve 418 can provide buffering to avoid damage to the electrodes of the battery module.
[0035] Embodiment three: as shown, as an improvement on the previous embodiment. Figures 2-9
[0036] Specifically, the bottom heating and pressing unit 5 comprises a cylinder four 501, the cylinder four 501 and a guide sleeve 503 are fixedly installed at the lower part of the base 1, a guide column 502 is slidably installed in the guide sleeve 503, the guide column 502 and the movable end of the cylinder four 501 are both fixedly connected with a movable plate two 504, the upper side of the movable plate two 504 is fixedly installed with a bottom heat insulation glass fiber plate 505, the upper part of the bottom heat insulation glass fiber plate 505 is fixedly installed with a bottom electric heating sheet 506, the upper side of the bottom electric heating sheet 506 is fixedly installed with a bottom heating plate 507, the top end of the bottom heating plate 507 is fixedly installed with a bottom heat-conducting silica gel sheet 508, the temperature range of the bottom electric heating sheet 506 is 180℃-200℃, the bottom electric heating sheet 506 is located between the bottom heat insulation glass fiber plate 505 and the bottom heating plate 507, the bottom heating and pressing unit 5 is provided with two groups of the same, the two groups of bottom heating and pressing units 5 are symmetrically distributed about the center line of the base 1, and the advantage is that when the side heating and pressing unit 3 completes the clamping of the electrodes of the battery module, the movable end of the cylinder four 501 pushes the movable plate two 504 and moves upward under the action of the guide sleeve 503 and the guide column 502, and when reaching the specified position, the bottom electric heating sheet 506 heats the lower part of the battery module through the bottom heating plate 507 and the bottom heat-conducting silica gel sheet 508.
[0037] Working principle: in use, the robot places the battery module on the upper side of the bottom heating and pressing unit 5, the cylinder one 302 pushes the support plate 307 to the direction of the bottom heating and pressing unit 5 through the fixed joint 303, when the side heat-conducting silica gel sheet 311 is in full contact with the side of the battery module, and the battery module is clamped correctly, the cylinder support two 401 transmits power to the main connecting plate 404 through the cylinder two 402 and the floating joint 403, the main connecting plate 404 transmits power to the movable plate one 412 through the cylinder three 407, the connecting lug seat 408, the vertical support 409, the linear guide rail three 410 and the slider three 411, the movable plate one 412 pushes the outer side of the insulation compression sleeve 418 to the direction of the bottom heating and pressing unit 5, when the insulation compression sleeve 418 moves to the top of the electrode of the battery module, the cylinder three 407 drives the insulation compression sleeve 418 to move downward through the connecting lug seat 408, the movable plate one 412, the horizontal rail 415, the connecting frame 416 and the compression column 417, the insulation compression sleeve 418 compresses the electrode of the battery module, the movable end of the cylinder four 501 pushes the movable plate two 504 and moves upward under the action of the guide sleeve 503 and the guide column 502, when the battery module is clamped, the side electric heating sheet 309 transmits heat to the side of the battery module through the side heating plate 310 and the side heat-conducting silica gel sheet 311, the bottom electric heating sheet 506 transmits heat to the bottom of the battery module through the bottom heating plate 507 and the bottom heat-conducting silica gel sheet 508, after waiting for a certain time, the side heating and pressing unit 3, the pole compression unit 4 and the bottom heating and pressing unit 5 reset, and the robot battery module is removed.
[0038] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A glue applying and accelerating curing fixture mechanism comprising a base (1), characterized in that: The base (1) top end of both sides is provided with main support frame (2), the lower part of main support frame (2) is provided with side heating and pressurizing unit (3), the upper part of main support frame (2) is provided with pole compression unit (4), the middle part of base (1) is provided with bottom heating and pressurizing unit (5); The side heating and pressurizing unit (3) and pole compression unit (4) are provided with the same two groups, two groups of side heating and pressurizing unit (3) and pole compression unit (4) are symmetrically distributed on both sides of bottom heating and pressurizing unit (5).
2. The mechanism for achieving the gluing and accelerating the curing clamp according to claim 1, characterized in that: The side heating and pressurizing unit (3) includes cylinder support one (301), the lower part of main support frame (2) is fixedly installed in cylinder support one (301), the lower part of main support frame (2) is fixedly installed with cylinder one (302) through cylinder support one (301), the movable end of cylinder one (302) is fixedly installed with fixed joint (303), the upper part of base (1) is fixedly installed with in-place detection sensor (304), the upper part of base (1) is also fixedly installed with linear guide rail one (305), the upper part of linear guide rail one (305) is slidably installed with slider one (306), the upper side of slider one (306) is provided with support large plate (307), the side of support large plate (307) close to bottom heating and pressurizing unit (5) is sequentially provided with side heat insulation glass fiber plate (308), side electric heating sheet (309), side heating plate (310) and side heat conduction silica gel sheet (311) from inside to outside.
3. The mechanism for achieving the gluing and accelerating the curing clamp according to claim 2, characterized in that: The side electric heating sheet (309) is located between side heat insulation glass fiber plate (308) and side heating plate (310), the side heating and pressurizing unit (3) is located below pole compression unit (4), the temperature range of side electric heating sheet (309) is 180 DEG C-200 DEG C.
4. The mechanism for accelerating the curing of the glue according to claim 1, wherein: The pole pressing unit (4) comprises a cylinder support two (401), which is fixedly installed at the top end of the main support frame (2), a cylinder two (402) is fixedly installed outside the cylinder support two (401), a floating joint (403) is fixedly installed at the movable end of the cylinder two (402), a main connecting plate (404) is fixedly installed on the side away from the cylinder two (402) of the floating joint (403), a sliding block two (406) is arranged below the main connecting plate (404), a linear guide rail two (405) is fixedly installed at the upper portion of the main support frame (2), a cylinder three (407) is fixedly installed on the upper side of the main connecting plate (404), a connecting lug seat (408) is fixedly installed at the movable end of the cylinder three (407), a vertical support (409) is also fixedly installed on the upper side of the main connecting plate (404), a linear guide rail three (410) is fixedly installed outside the vertical support (409), a sliding block three (411) is slidingly installed outside the linear guide rail three (410), a movable plate one (412) is fixedly installed on the side away from the vertical support (409) of the sliding block three (411), the movable plate one (412) is fixedly connected with the connecting lug seat (408), a sensor support (413) is arranged outside the movable plate one (412), a sensor body (414) is fixedly installed outside the movable plate one (412) through the sensor support (413), a transverse rail rod (415) is arranged directly below the movable plate one (412), a connecting frame (416) is arranged outside the transverse rail rod (415), a pressing column (417) is fixedly installed outside the transverse rail rod (415) through the connecting frame (416), an insulating pressing sleeve (418) is arranged at the lower portion of the pressing column (417), a limiting block (421) is fixedly installed at the top end of the main connecting plate (404), an insulating plate (419) is arranged on the back surface of the movable plate one (412), a buffer (420) is fixedly installed on the back surface of the movable plate one (412) through the insulating plate (419).
5. The mechanism for accelerating the curing of the glue according to claim 4, wherein: The connecting frame (416) is provided with a plurality of same connecting frames (416), the connecting frame (416) is in sliding connection with the transverse rail rod (415), a plurality of the connecting frames (416) are distributed at equal intervals, the number of the connecting frame (416), the pressing column (417) and the insulating pressing sleeve (418) is same, the pressing column (417) and the insulating pressing sleeve (418) are in nested connection, reset springs (422) are arranged between the interiors of the insulating pressing sleeves (418), polyurethane buffer blocks (423) are further arranged between the pressing column (417) and the insulating pressing sleeve (418).
6. The mechanism for accelerating the curing of the glue according to claim 1, wherein: The bottom heating and pressurizing unit (5) comprises a cylinder four (501), the cylinder four (501) and a guide sleeve (503) are fixedly installed on the lower part of the base (1), the inside of the guide sleeve (503) is slidably installed with a guide column (502), the guide column (502) and the movable end of the cylinder four (501) are both fixedly connected with a movable plate two (504), the upper side of the movable plate two (504) is fixedly installed with a bottom heat insulation glass fiber plate (505), the upper part of the bottom heat insulation glass fiber plate (505) is fixedly installed with a bottom electric heating sheet (506), the upper side of the bottom electric heating sheet (506) is fixedly installed with a bottom heating plate (507), the top end of the bottom heating plate (507) is fixedly installed with a bottom heat-conducting silica gel sheet (508), the temperature range of the bottom electric heating sheet (506) is 180-200 DEG C.
7. The mechanism for accelerating the curing of the glue according to claim 6, wherein: The bottom electric heating sheet (506) is located between the bottom heat insulation glass fiber plate (505) and the bottom heating plate (507), the bottom heating and pressurizing unit (5) is provided with two groups of the same, and the two groups of the bottom heating and pressurizing unit (5) are symmetrically distributed about the center line of the base (1).