Silica gel vulcanization pretreatment machine
By designing a silicone vulcanization pre-treatment machine and using a transmission robot to achieve automatic cooling, dispensing and heating of the mold, the problems of cumbersome operation and low efficiency in the existing technology are solved, and production efficiency and product consistency are improved.
Patent Information
- Application Number
- CN202422719379.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-08
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2034-11-08
AI Technical Summary
The existing silicone vulcanization pretreatment process is complicated, labor-intensive, low-production-efficiency, and prone to glue leaks.
A silicone vulcanization pretreatment machine is designed. A transmission manipulator is used to grab the mold for cooling, dispensing and heating operations. The automated process is realized through circulating cooling water and heating plates, achieving precise dispensing control.
It improves production efficiency, ensures product consistency, avoids glue leakage, and reduces labor intensity.
Smart Images

Figure CN223337688U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of silicone vulcanization pretreatment, in particular to a silicone vulcanization pretreatment machine. Background Art
[0002] At present, silicone vulcanization pretreatment process is widely used in the field of silicone processing. In a single operation, the silicone vulcanization pretreatment process generally first cools the mold, manually removes the mold and transports it to the dispensing equipment for dispensing, then manually removes the mold and transports it to the heating equipment for baking, and finally manually removes the mold and sends it to the vulcanizer. When encountering products that require multiple dispensing, the above dispensing process needs to be repeated manually. Such a process operation process often has the problems of cumbersome personnel operation, high labor intensity, inaccurate time management, resulting in time waste, affecting production capacity, and low production efficiency. At the same time, it will also cause problems such as personnel missing dispensing.
[0003] There is no effective solution to the problems of complicated operation and low production efficiency in the silicone vulcanization pretreatment process in the related art. Utility Model Content
[0004] In view of this, it is necessary to provide a silicone vulcanization pretreatment machine to at least solve the problems of complicated operation and low production efficiency of the silicone vulcanization pretreatment process in the related art.
[0005] A technical solution adopted by the present invention is as follows: a silicone vulcanization pretreatment machine, comprising a machine, a mold, a cooling platform, a dispensing platform, a heating platform and a transmission robot, wherein the cooling platform, the dispensing platform and the heating platform are all arranged on the machine, the dispensing platform is located between the cooling platform and the heating platform, the transmission robot is arranged on the machine and above the cooling platform, the dispensing platform and the heating platform, and the mold can be placed on the cooling platform, the dispensing platform or the heating platform through the transmission robot; wherein, the mold is used to place silicone; the cooling platform is used to cool the silicone placed in the mold; the dispensing platform is used to dispense silicone placed in the mold; the heating platform is used to heat the silicone placed in the mold; and the transmission robot is used to transfer the mold.
[0006] In some embodiments, the transmission robot includes a crossbeam, a clamping transmission module and a clamping module, the crossbeam is arranged on the workbench of the machine, the clamping transmission module is arranged on the crossbeam, and the clamping module is arranged on the clamping transmission module and is located above the cooling platform, the dispensing platform and the heating platform; wherein, the clamping transmission module is used to drive the clamping module to move horizontally above the cooling platform, the dispensing platform and the heating platform, and the clamping module is used to clamp the mold and place the mold on the clamping module on the cooling platform, the dispensing platform and the heating platform.
[0007] In some embodiments, the clamping transmission module includes a transmission motor, a driving wheel, a driven wheel, a synchronous belt, a transmission slide rail, a transmission slider and a slide seat. The transmission motor and the transmission slide rail are arranged on the crossbeam. The transmission motor is connected to the driving wheel for transmission. The driving wheel and the driven wheel are rotatably arranged on the crossbeam. The synchronous belt is covered on the outer surface of the driving wheel and the driven wheel. The transmission slider is slidably arranged on the transmission slide rail. The slide seat is fixed on the transmission slider and is connected to the synchronous belt for transmission. The clamping module is arranged on the slide seat. The transmission motor drives the driving wheel, the driven wheel and the synchronous belt to rotate synchronously, thereby driving the slide seat and the transmission slider to slide on the transmission slide rail, thereby driving the clamping module to move horizontally.
[0008] In some embodiments, the clamping module includes a clamping lifting assembly and a clamping assembly, the clamping lifting assembly is arranged on the slide, and the clamping assembly is arranged at the lower end of the clamping lifting assembly; wherein, the clamping lifting assembly is used to drive the clamping assembly to move vertically, and the clamping assembly is used to clamp the mold.
[0009] In some embodiments, the clamping lifting assembly includes a first guide column, a lifting fixed plate, a lifting motor, a lifting screw, a lifting screw nut, a lifting connecting plate, a second guide column and a lifting plate, the first guide column is fixed on the slide, the lifting fixed plate is arranged on the first guide column, the lifting motor is fixed on the lifting fixed plate, the lifting screw can be rotatably arranged between the slide and the lifting fixed plate and is transmission-connected to the lifting motor, the lifting screw nut can be slidably sleeved on the lifting screw, the lifting connecting plate is fixed on the lifting screw nut and slides synchronously with the lifting screw nut, the second guide column is arranged at the lower end of the lifting connecting plate and passes through the slide and is connected to the lifting plate; wherein, the lifting motor drives the lifting connecting plate to slide through the lifting screw and the lifting screw nut, thereby driving the second guide column and the lifting plate to move in the vertical direction.
[0010] In some embodiments, the clamping assembly includes a clamping motor, a screw fixing seat, a clamping screw, a clamping screw nut, a clamping slide rail, a clamping slider and a clamping claw. The clamping motor, the screw fixing seat and the clamping slide rail are fixed on the lifting plate, the two ends of the clamping screw can be rotatably arranged at the screw fixing seat and are transmission connected with the clamping motor, the clamping screw nut can be slidably mounted on the clamping screw, the clamping slide rail can be slidably mounted on the clamping screw, the lower end of the clamping claw is fixed to the lower end of the clamping slide rail and is transmission connected with the clamping screw nut; wherein, the clamping motor drives the clamping screw nut to move through the clamping screw, thereby driving the clamping slider and the clamping claw to move on the clamping slide rail, and then clamping the mold.
[0011] In some embodiments, the cooling platform includes a cooling base, a cooling water channel and a cooling fixing seat. The cooling base is fixed on the workbench of the machine, the cooling fixing seat is arranged at the upper end of the cooling base, the cooling water channel is built into the cooling fixing seat, and the mold can be placed on the cooling fixing seat; wherein, the silicone in the mold is cooled by the cooling water channel.
[0012] In some embodiments, the cooling platform further includes a water tank, which is disposed inside the machine and is respectively connected to the water inlet and outlet of the cooling water channel; wherein the water tank is used to provide circulating cooling water for the cooling water channel.
[0013] In some embodiments, the dispensing platform includes a dispensing base, a dispensing cylinder and a dispensing fixing seat. The dispensing base is fixed on the machine platform and is located on one side of the cooling base. The dispensing fixing seat and the dispensing cylinder are arranged on the dispensing base. The dispensing cylinder is located above the dispensing fixing seat. The mold can be placed on the dispensing fixing seat; wherein, the silicone gel cooled in the mold is dispensed by the dispensing cylinder.
[0014] In some embodiments, the heating platform includes a heating base, a heating plate and a heating fixing seat. The heating base is fixed on the machine and is located on the other side of the dispensing base. The heating fixing seat is arranged on the heating base. The heating plate is arranged between the heating base and the heating fixing seat. The heating plate has a built-in heating rod, and the mold can be placed on the heating fixing seat; wherein, the silicone after dispensing in the mold is heated by the heating plate.
[0015] Compared with the prior art, the beneficial effects of the present invention are: the embodiment of the present application provides a silicone vulcanization pretreatment machine, which adopts a transmission robot to grab the mold and place it on a cooling platform, cools the mold by circulating cooling water, and then grabs the mold by the transmission robot and transfers it to the dispensing platform, and performs the dispensing process in the mold through the dispensing cylinder. After the dispensing is completed, the mold is grabbed by the transmission robot and transferred to the heating platform, and the mold is heated by the heating plate, thereby realizing a single silicone vulcanization pretreatment process. At the same time, by enabling the transmission robot to perform repeated actions, multiple dispensing of the product can be achieved. Through the processing machine of the embodiment of the present application, precise dispensing control is achieved, the consistency of the product is improved, leaking dispensing is avoided, and the beneficial effects of improving production efficiency are achieved. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 is a top view of an embodiment of the present application;
[0017] Figure 2 This is a front view of an embodiment of the present application;
[0018] Figure 3 It is a schematic diagram of the overall structure of an embodiment of the present application;
[0019] Figure 4 It is a structural schematic diagram of the clamping module of an embodiment of the present application.
[0020] Reference numerals:
[0021] 100, machine;
[0022] 200, mold;
[0023] 300, cooling platform; 31, cooling base; 32, cooling water channel; 33, cooling fixed seat;
[0024] 400, dispensing platform; 41, dispensing base; 42, dispensing cylinder; 43, dispensing fixing seat;
[0025] 500, heating platform; 51, heating base; 52, heating plate; 53, heating fixing seat;
[0026] 600, transmission manipulator; 61, crossbeam; 62, clamping transmission module; 621, transmission motor; 622, driving wheel; 623, driven wheel; 624, transmission slide rail; 625, transmission slider; 626, slide seat; 63, clamping module; 631, clamping lifting assembly; 6311, first guide column; 6312, lifting fixed plate; 6313, lifting motor; 6314, lifting screw; 6315, lifting screw nut; 6316, lifting connecting plate; 6317, second guide column; 6318, lifting plate; 632, clamping assembly; 6321, clamping motor; 6322, clamping slide rail; 6323, clamping slider; 6324, clamping claw. DETAILED DESCRIPTION
[0027] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0028] It should be noted that when a component is referred to as being "mounted on" another component, it may be mounted directly on the other component or there may be a central component. When a component is considered to be "set on" another component, it may be directly set on the other component or there may be a central component. When a component is considered to be "fixed to" another component, it may be directly fixed to the other component or there may be a central component.
[0029] Unless otherwise defined, all technical and scientific terms used herein have the same meanings as those commonly understood by those skilled in the art to which this invention pertains. The terms used herein in the specification of this invention are for the purpose of describing specific embodiments only and are not intended to limit this invention. The term "or / and" as used herein includes any and all combinations of one or more of the associated listed items.
[0030] See Figure 1-4The embodiment of the present application provides a silicone vulcanization pretreatment machine, including a machine 100, a mold 200, a cooling platform 300, a dispensing platform 400, a heating platform 500 and a transmission manipulator 600. The cooling platform 300, the dispensing platform 400 and the heating platform 500 are all arranged on the machine 100, the dispensing platform 400 is located between the cooling platform 300 and the heating platform 500, and the transmission manipulator 600 is arranged on the machine 100 and is located between the cooling platform 300, the dispensing platform 400 and the heating platform Above the platform 500, the mold 200 can be placed on the cooling platform 300, the dispensing platform 400 or the heating platform 500 through the transmission robot 600; wherein, the mold 200 is used to place silicone; the cooling platform 300 is used to cool the silicone placed in the mold 200; the dispensing platform 400 is used to dispense silicone placed in the mold 200; the heating platform 500 is used to heat the silicone placed in the mold 200; the transmission robot 600 is used to transfer the mold 200.
[0031] In the above-mentioned silicone vulcanization pretreatment machine, a transmission robot 600 is used to grab the mold 200 and place it on the cooling platform 300. The mold 200 is cooled by circulating cooling water, and then the mold 200 is grabbed by the transmission robot 300 and transferred to the dispensing platform 400. The dispensing process is performed in the mold 200 through the dispensing cylinder 42. After the dispensing is completed, the mold 200 is grabbed by the transmission robot 600 and transferred to the heating platform 500. The mold 200 is heated by the heating plate 52, thereby realizing a single silicone vulcanization pretreatment process. At the same time, by enabling the transmission robot 600 to perform repeated actions, multiple dispensing of the product can be achieved. Through the processing machine of the embodiment of the present application, precise dispensing control can be achieved, the consistency of the product can be improved, and leaking dispensing can be avoided, thereby improving production efficiency.
[0032] In order to realize the function of clamping and transmitting, in some optional embodiments, the transmission manipulator 600 includes a crossbeam 61, a clamping transmission module 62 and a clamping module 63. The crossbeam 61 is arranged on the workbench of the machine 100, the clamping transmission module 62 is arranged on the crossbeam 61, and the clamping module 63 is arranged on the clamping transmission module 62 and is located above the cooling platform 300, the dispensing platform 400 and the heating platform 500.
[0033] The clamping transmission module 62 is used to drive the clamping module 63 to move horizontally above the cooling platform 300 , the dispensing platform 400 and the heating platform 500 .
[0034] The clamping module 63 is used to clamp the mold 200 and place the mold 200 on the cooling platform 300 , the dispensing platform 400 and the heating platform 500 .
[0035] It can be understood that with such a setting, beams 61 of different sizes are selected according to needs, and the clamping module 63 is moved to the cooling platform 300, the dispensing platform 400 or the heating platform 500 through the clamping transmission module 62 with high precision.
[0036] In order to realize the precise transmission function of the clamping module 63, in some optional embodiments, the clamping transmission module 62 includes a transmission motor 621, a driving wheel 622, a driven wheel 623, a synchronous belt, a transmission slide 624, a transmission slider 625 and a slide 626. The transmission motor 621 and the transmission slide 624 are arranged on the beam 61, the transmission motor 621 is connected to the driving wheel 622, the driving wheel 622 and the driven wheel 623 are rotatably arranged on the beam 61, and the synchronous belt is wrapped around the driving wheel. The outer surface of the driving wheel 622 and the driven wheel 623, the transmission slider 625 can be slidably arranged on the transmission slide rail 624, the slide 626 is fixed on the transmission slider 625 and is connected to the synchronous belt transmission, and the clamping module 63 is arranged on the slide 626, wherein the transmission motor 621 drives the driving wheel 622, the driven wheel 623 and the synchronous belt to rotate synchronously, thereby driving the slide 626 and the transmission slider 625 to slide on the transmission slide rail 624, and then drives the clamping module 63 to move horizontally.
[0037] It can be understood that with such a setting, the transmission motor 621 adopts a driving motor with higher precision, and adopts an active wheel 622, a driven wheel 623 and a synchronous belt for drive transmission, so that with the auxiliary sliding of the transmission slider 625, the clamping module 63 fixed on the slide 626 can achieve precise horizontal movement on the transmission slide rail 624, so that the clamping module 63 stops at the clamping preset designated position of the cooling platform 300, the dispensing platform 400 or the heating platform 500.
[0038] In order to realize the clamping function of the mold 200, in some optional embodiments, the clamping module 63 includes a clamping lifting component 631 and a clamping component 632, the clamping lifting component 631 is arranged on the slide 626, and the clamping component 632 is arranged at the lower end of the clamping lifting component 631, wherein the clamping lifting component 631 is used to drive the clamping component 632 to move in the vertical direction, and the clamping component 632 is used to clamp the mold 200.
[0039] In order to further realize the clamping function of the mold 200, in some optional embodiments, the clamping lifting assembly 631 includes a first guide column 6311, a lifting fixed plate 6312, a lifting motor 6313, a lifting screw 6314, a lifting screw nut 6315, a lifting connecting plate 6316, a second guide column 6317 and a lifting plate 6318, the first guide column 6311 is fixed on the slide 626, the lifting fixed plate 6312 is provided on the first guide column 6311, the lifting motor 6313 is fixed on the lifting fixed plate 6312, and the lifting screw 6314 is rotatably provided between the slide 626 and the lifting fixed plate 6312 and is connected to the lifting motor 6313 in transmission, the lifting screw nut 6315 can be slidably mounted on the lifting screw 6314, the lifting connecting plate 6316 is fixed on the lifting screw nut 6315 and slides synchronously with the lifting screw nut 6315, the second guide column 6317 is arranged at the lower end of the lifting connecting plate 6316 and passes through the slide 626 to be connected to the lifting plate 6318; wherein, the lifting motor 6313 drives the lifting connecting plate 6316 to slide through the lifting screw 6314 and the lifting screw nut 6315, thereby driving the second guide column 6317 and the lifting plate 6318 to move in the vertical direction.
[0040] In some optional embodiments, the clamping assembly 632 includes a clamping motor 6321, a screw fixing seat, a clamping screw, a clamping screw nut, a clamping slide rail 6322, a clamping slider 6323 and a clamping claw 6324. The clamping motor 6321, the screw fixing seat and the clamping slide rail 6322 are fixed on the lifting plate 6318, and the two ends of the clamping screw can be rotatably arranged at the screw fixing seat and are connected to the clamping motor 6321. The nut can be slidably mounted on the clamping screw, the clamping slider 6323 can be slidably mounted on the clamping slide rail 6322, and the lower end of the clamping jaw 6324 is fixed to the lower end of the clamping slider 6323 and is transmission-connected to the clamping screw nut; wherein, the clamping motor 6321 drives the clamping screw nut to move through the clamping screw, thereby driving the clamping slider 6323 and the clamping jaw 6324 to move on the clamping slide rail 6322, thereby clamping the mold 200.
[0041] It should be noted that the precise vertical movement of the clamping assembly 632 is achieved by adopting the clamping lifting assembly 631. The lifting motor 6313 and the clamping motor 6321 have high precision and are driven by a screw module, thereby achieving the function of stable descent of the clamping assembly 632 and stable clamping of the mold 200 by the clamping slider 6323.
[0042] In order to realize the cooling function of the mold 200, in some optional embodiments, the cooling platform 300 includes a cooling base 31, a cooling water channel 32 and a cooling fixed seat 33. The cooling base 31 is fixed on the workbench of the machine 100, and the cooling fixed seat 33 is arranged at the upper end of the cooling base 31. The cooling water channel 32 is built into the cooling fixed seat 33. The mold 200 can be placed on the cooling fixed seat 33, wherein the silicone in the mold 200 is cooled by the cooling water channel 32.
[0043] In some optional embodiments, the cooling platform 300 further includes a water tank, which is located inside the machine 100 and is respectively connected to the water inlet and outlet of the cooling water channel 32; wherein the water tank is used to provide circulating cooling water for the cooling water channel 32.
[0044] It should be noted that a water tank is used to provide circulating cooling water for the cooling water channel 32, and the cooling fixing seat 33 is in contact with the mold 200, so that the circulating cooling water circulates and takes away the temperature of the mold 200, thereby achieving the function of cooling the mold 200.
[0045] In order to realize the function of dispensing, in some optional embodiments, the dispensing platform 400 includes a dispensing base 41, a dispensing cylinder 42 and a dispensing fixing seat 43. The dispensing base 41 is fixed on the machine 100 and is located on one side of the cooling base 31. The dispensing fixing seat 43 and the dispensing cylinder 42 are arranged on the dispensing base 41. The dispensing cylinder 42 is located above the dispensing fixing seat 43. The mold 200 can be placed on the dispensing fixing seat 43; wherein, the silicone gel cooled in the mold 200 is dispensed by the dispensing cylinder 42.
[0046] In order to realize the function of heating the mold 200, in some optional embodiments, the heating platform 500 includes a heating base 51, a heating plate 52 and a heating fixed seat 53. The heating base 51 is fixed on the machine 100 and is located on the other side of the dispensing base 41. The heating fixed seat 53 is arranged on the heating base 51. The heating plate 52 is arranged between the heating base 51 and the heating fixed seat 53. The heating plate 52 is equipped with a heating rod, and the mold 200 can be placed on the heating fixed seat 53. The silicone gel after dispensing in the mold 200 is heated by the heating plate 52, and the heating plate 53 is heated by the heating rod. The heating fixed seat 53 is in contact with the mold 200 to perform heat transfer.
[0047] Those skilled in the art should recognize that the above embodiments are merely intended to illustrate the present invention and are not intended to limit the present invention. As long as they are within the spirit of the present invention, appropriate changes and modifications to the above embodiments fall within the scope of protection claimed by the present invention.
Claims
1. A silicone vulcanization pre-treatment machine, characterized in that: The invention comprises a machine (100), a mold (200), a cooling platform (300), a dispensing platform (400), a heating platform (500) and a transmission manipulator (600), wherein the cooling platform (300), the dispensing platform (400) and the heating platform (500) are all arranged on the machine (100), the dispensing platform (400) is located between the cooling platform (300) and the heating platform (500), the transmission manipulator (600) is arranged on the machine (100) and is located above the cooling platform (300), the dispensing platform (400) and the heating platform (500), and the mold (200) can be placed on the cooling platform (300), the dispensing platform (400) or the heating platform (500) through the transmission manipulator (600), wherein: The mold (200) is used to place silica gel; The cooling platform (300) is used to cool the silica gel placed in the mold (200); The dispensing platform (400) is used to dispense the silicone placed in the mold (200); The heating platform (500) is used to heat the silica gel placed in the mold (200); The transmission robot (600) is used for transferring the mold (200).
2. The silicone curing pre-treatment machine according to claim 1, characterized in that: The transmission manipulator (600) includes a crossbeam (61), a clamping transmission module (62) and a clamping module (63), wherein the crossbeam (61) is arranged on the workbench of the machine (100), the clamping transmission module (62) is arranged on the crossbeam (61), and the clamping module (63) is arranged on the clamping transmission module (62) and is located above the cooling platform (300), the dispensing platform (400) and the heating platform (500); wherein The clamping transmission module (62) is used to drive the clamping module (63) to move horizontally above the cooling platform (300), the dispensing platform (400) and the heating platform (500), and the clamping module (63) is used to clamp the mold (200) and place the mold (200) on the clamping module (63) on the cooling platform (300), the dispensing platform (400) and the heating platform (500).
3. The silicone curing pre-treatment machine according to claim 2, characterized in that: The clamping transmission module (62) includes a transmission motor (621), a driving wheel (622), a driven wheel (623), a synchronous belt, a transmission slide rail (624), a transmission slider (625) and a slide seat (626). The transmission motor (621) and the transmission slide rail (624) are arranged on the beam (61). The transmission motor (621) is connected to the driving wheel (622) in a transmission manner. The driving wheel (622) and the driven wheel (623) are rotatably arranged on the beam (61). The synchronous belt is covered on the outer surfaces of the driving wheel (622) and the driven wheel (623). The transmission slider (625) is slidably arranged on the transmission slide rail (624), the slide seat (626) is fixed on the transmission slider (625) and is connected to the synchronous belt transmission, and the clamping module (63) is arranged on the slide seat (626); wherein, the transmission motor (621) drives the driving wheel (622), the driven wheel (623) and the synchronous belt to rotate synchronously, thereby driving the slide seat (626) and the transmission slider (625) to slide on the transmission slide rail (624), thereby driving the clamping module (63) to move horizontally.
4. The silicone curing pre-treatment machine according to claim 3, characterized in that: The clamping module (63) includes a clamping lifting component (631) and a clamping component (632), wherein the clamping lifting component (631) is arranged on the slide (626), and the clamping component (632) is arranged at the lower end of the clamping lifting component (631); wherein the clamping lifting component (631) is used to drive the clamping component (632) to move in the vertical direction, and the clamping component (632) is used to clamp the mold (200).
5. The silicone curing pre-treatment machine according to claim 4, characterized in that: The clamping and lifting assembly (631) includes a first guide column (6311), a lifting fixed plate (6312), a lifting motor (6313), a lifting screw (6314), a lifting screw nut (6315), a lifting connecting plate (6316), a second guide column (6317) and a lifting plate (6318), wherein the first guide column (6311) is fixed on the slide (626), the lifting fixed plate (6312) is provided on the first guide column (6311), the lifting motor (6313) is fixed on the lifting fixed plate (6312), the lifting screw (6314) is rotatably provided between the slide (626) and the lifting fixed plate (6312) and is connected to the lifting motor (631 3) Transmission connection, the lifting screw nut (6315) can be slidably mounted on the lifting screw (6314), the lifting connecting plate (6316) is fixed on the lifting screw nut (6315) and slides synchronously with the lifting screw nut (6315), the second guide column (6317) is provided at the lower end of the lifting connecting plate (6316) and passes through the slide (626) to be connected to the lifting plate (6318); wherein, the lifting motor (6313) drives the lifting connecting plate (6316) to slide through the lifting screw (6314) and the lifting screw nut (6315), thereby driving the second guide column (6317) and the lifting plate (6318) to move in the vertical direction.
6. The silicone curing pre-treatment machine according to claim 5, characterized in that: The clamping assembly (632) includes a clamping motor (6321), a screw fixing seat, a clamping screw, a clamping screw nut, a clamping slide rail (6322), a clamping slider (6323) and a clamping claw (6324). The clamping motor (6321), the screw fixing seat and the clamping slide rail (6322) are fixed on the lifting plate (6318). The two ends of the clamping screw can be rotatably arranged at the screw fixing seat and are transmission-connected to the clamping motor (6321). The clamping screw nut can be slidably sleeved on the On the clamping screw, the clamping slider (6323) can be slidably mounted on the clamping slide rail (6322), and the lower end of the clamping jaw (6324) is fixed to the lower end of the clamping slider (6323) and is in transmission connection with the clamping screw nut; wherein, the clamping motor (6321) drives the clamping screw nut to move through the clamping screw, thereby driving the clamping slider (6323) and the clamping jaw (6324) to move on the clamping slide rail (6322), thereby clamping the mold (200).
7. The silicone curing pre-treatment machine according to claim 1, characterized in that: The cooling platform (300) includes a cooling base (31), a cooling water channel (32) and a cooling fixing seat (33), wherein the cooling base (31) is fixed on the workbench of the machine (100), the cooling fixing seat (33) is arranged at the upper end of the cooling base (31), the cooling water channel (32) is built into the cooling fixing seat (33), and the mold (200) can be placed on the cooling fixing seat (33); wherein, the silicone in the mold (200) is cooled by the cooling water channel (32).
8. The silicone curing pre-treatment machine according to claim 7, characterized in that: The cooling platform (300) further comprises a water storage tank, which is arranged inside the machine (100) and is respectively connected to the water inlet and the water outlet of the cooling water channel (32); wherein the water storage tank is used to provide circulating cooling water for the cooling water channel (32).
9. The silicone pre-curing treatment machine according to claim 7, characterized in that: The dispensing platform (400) includes a dispensing base (41), a dispensing cylinder (42) and a dispensing fixing seat (43), wherein the dispensing base (41) is fixed on the machine (100) and is located on one side of the cooling base (31), the dispensing fixing seat (43) and the dispensing cylinder (42) are arranged on the dispensing base (41), the dispensing cylinder (42) is located above the dispensing fixing seat (43), and the mold (200) can be placed on the dispensing fixing seat (43); wherein, the silicone gel cooled in the mold (200) is dispensed by the dispensing cylinder (42).
10. The silicone curing pre-treatment machine according to claim 9, characterized in that: The heating platform (500) includes a heating base (51), a heating plate (52) and a heating fixed seat (53), wherein the heating base (51) is fixed on the machine (100) and is located on the other side of the dispensing base (41), the heating fixed seat (53) is arranged on the heating base (51), the heating plate (52) is arranged on the heating base (51) and the heating fixed seat (53), the heating plate (52) is equipped with a heating rod, and the mold (200) can be placed on the heating fixed seat (53); wherein, the silicone gel after dispensing in the mold (200) is heated by the heating plate (52).