Hot-pressing assembly equipment
By designing hot press assembly equipment, rotating components and pressing components are used to achieve uniform crimping and heating of the annular member and the ring cylindrical shell, solving the problem of insufficient bonding and achieving efficient assembly effect.
Patent Information
- Application Number
- CN202422012370.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-19
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2034-08-19
AI Technical Summary
When bonding the ring-shaped member made of soft material to the inner wall of the ring-cylindrical shell, it is difficult to ensure that the bonding pressure between the ring-shaped member and the shell is sufficient, resulting in insufficient bonding.
A hot press assembly device is designed, including a heating mechanism, a driving mechanism and a plurality of pressing mechanisms, to drive the pressing assembly to move through a rotating assembly, apply a uniform pressure, and heat the workpiece through a heating block.
A uniform crimping and heating of the annular member and the ring cylindrical shell is achieved to ensure a firm bonding effect, a compact device structure and small space.
Smart Images

Figure CN222977171U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of assembly equipment, and particularly to a hot press assembly equipment. Background Art
[0002] When bonding a soft material annular member to the inner wall of a ring-shaped cylindrical housing, generally, double-sided adhesive is first coated on the inner side wall of the ring-shaped cylindrical housing, and then the annular member is moved to the inside of the ring-shaped cylindrical housing and the annular member is made to fit with the inner side of the ring-shaped housing, so as to bond the annular member and the ring-shaped cylindrical housing. In order to make the annular member closely adhere to the inner wall of the ring-shaped cylindrical housing, sufficient pressure needs to be applied to the annular member. If the pressure is insufficient, the bonding between the annular member and the ring-shaped cylindrical housing will not be firm enough. Utility Model Content
[0003] This application provides a hot press assembly equipment for bonding a first workpiece to the inside of a second workpiece. The first workpiece is made of soft material. The hot press assembly equipment includes:
[0004] A heating mechanism, including a heating block, on which a first through hole for accommodating the first workpiece and the second workpiece is formed. The first through hole penetrates the heating block along the extending direction of the thickness of the heating block;
[0005] A driving mechanism, including a connected driving component and a rotating component, where the driving component is used to drive the rotating component to rotate; and
[0006] A plurality of pressing mechanisms, each pressing mechanism including a pressing component and a first sliding component. The first sliding component is slidably connected to the rotating component. When the rotating component rotates, it drives the first sliding component to move. The pressing component is located on the side of the first sliding component away from the rotating component and is fixedly connected to the first sliding component. A part of the pressing component is located in the first through hole.
[0007] For the above hot pressing and assembling device, the driving component in the driving mechanism drives the rotating component to rotate, thereby driving the movement of the first sliding component in the pressing mechanism. When the first sliding component moves, it also drives the movement of the pressing component. The first through hole formed in the heating block in the heating mechanism is used to accommodate the first workpiece and the second workpiece, and the pressing component is located within the first through hole. When the hot pressing and assembling device bonds the first workpiece to the inner side of the second workpiece, the first workpiece is sleeved on the pressing component. The first sliding component drives the pressing component to move towards the heating block, so that the pressing component applies sufficient pressure to the first workpiece. The inner side of the annular housing is sprayed with adhesive, and after the first workpiece is stressed, it adheres to the inner side of the annular housing, thereby bonding the first workpiece to the inner side of the annular housing. The hot pressing and assembling device of the present application has a compact structure and small occupied space. The driving component can rotate the rotating component and then drive the pressing component to move towards the heating block, so as to apply force to the first workpiece evenly, and synchronously heat the second workpiece and the first workpiece through the heating block, and finally make the first workpiece uniformly stressed and heated, bond the first workpiece to the inner side of the second workpiece, and complete the assembly of the product.
[0008] Among them, the rotating component includes a rotating disk, a gear and a main shaft. A second through hole is formed in the rotating disk, a third through hole is formed in the gear, the main shaft passes through the second through hole and is fixedly connected to the rotating disk, and at the same time passes through the third through hole and is fixedly connected to the gear.
[0009] Among them, the driving component includes a cylinder, a push-pull rod and a second sliding component. One end of the push-pull rod is movably connected to the cylinder, and the other end is movably connected to the second sliding component.
[0010] Among them, the second sliding component includes a rack, a second adapter block, a second slider and a slide rail. The rack is carried on the second adapter block, the rack meshes with the gear, the second adapter block is connected to the push-pull rod, the second slider is located on the side of the second adapter block away from the rack and is connected to the second adapter block, and the slide rail is located on the side of the second slider away from the second adapter block and is slidably connected to the slider.
[0011] Among them, the pressing component includes a column, a cushion block, a pressing block and a supporting block. One end of the column is connected to the first sliding component, and the other end is connected to the cushion block. The pressing block is located on the side of the cushion block away from the column and is fixedly connected to the cushion block. The supporting block is located on the side of the pressing block away from the cushion block and is fixedly connected to the pressing block.
[0012] Among them, the pressing block includes a connecting portion and a pressing portion. The connecting portion is fixedly connected to the cushion block, and the pressing portion is located at one end of the connecting portion away from the cushion block and extends in a direction away from the connecting portion.
[0013] Among them, the hot pressing and assembling device further includes an extrusion member sleeved around the part of the pressing assembly located inside the first through hole, and the inner side of the extrusion member is in contact with the side surface of the pressing portion.
[0014] Among them, the heating mechanism further includes an anti-fooling block and two heat insulation blocks.
[0015] The two heat insulation blocks are respectively located on both sides of the heating block, and the first through hole also penetrates through the two heat insulation blocks simultaneously along the extending direction of the thickness of the heating block.
[0016] The heating block and the two heat insulation blocks are provided with second grooves, a part of the anti-fooling block is located inside the second groove, and another part of the anti-fooling block is located inside the first through hole.
[0017] Among them, a fourth through hole is provided on the extrusion member, and the shape of the part of the anti-fooling block located inside the first through hole is the same as the shape of the fourth through hole, so that the part of the anti-fooling block located inside the first through hole extends into the fourth through hole to fix the extrusion member.
[0018] Among them, the first sliding assembly includes a first adapter block, a first slider, a sliding groove and a guide post.
[0019] The first adapter block is located on the side of the column away from the cushion block and is connected to the column.
[0020] The first slider is located on the side of the first adapter block away from the column and is connected to the first adapter block. The side of the first slider away from the first adapter block is located inside the sliding groove, and a first groove is provided on the side of the first slider close to the first adapter block.
[0021] A plurality of guide grooves are provided on the rotating disk, one end of the guide post is located inside the first groove and is fixedly connected to the first slider, and the other end is located inside the guide groove. Description of the Drawings
[0022] Figure 1 is a three-dimensional structural schematic diagram of the hot pressing and assembling device according to the embodiment of the present application.
[0023] Figure 2 is Figure 1 the three-dimensional structural schematic diagram of the hot pressing and assembling device in after removing the frame.
[0024] Figure 3 is Figure 2 the three-dimensional structural schematic diagram of the driving mechanism in .
[0025] Figure 4 is Figure 2Schematic diagram of the three-dimensional structure when multiple pressing mechanisms are connected to the rotating disk.
[0026] Figure 5 is Figure 4 Schematic diagram of the sectional structure along the V-V line.
[0027] Figure 6 is Figure 2 Schematic diagram of the three-dimensional structure of the heating mechanism and part of the pressing mechanism.
[0028] Figure 7 is Figure 6 Schematic diagram of the sectional structure along the VII-VII line.
[0029] Figure 8 is Figure 6 Exploded structure diagram.
[0030] Figure 9 is Figure 2 Top view of the hot pressing and assembling equipment with some structures removed.
[0031] Description of main component symbols
[0032] Hot pressing and assembling equipment 100
[0033] Heating mechanism 10
[0034] Heating block 11
[0035] Heat insulation block 12
[0036] Anti-fooling block 13
[0037] First through hole 14
[0038] Second groove 15
[0039] Guide pin rod 16
[0040] Heating tube 17
[0041] Driving mechanism 20
[0042] Driving assembly 21
[0043] Cylinder 211
[0044] Push-pull rod 212
[0045] Fulcrums 1, 2, 3
[0046] Second sliding assembly 213
[0047] Rack 2131
[0048] Second adapter block 2132
[0049] Second slider 2133
[0050] Slide rail 2134
[0051] Rotating assembly 22
[0052] Rotating disk 221
[0053] Guide groove 221a
[0054] Gear 222
[0055] Spindle 223
[0056] Support 23
[0057] Base plate 24
[0058] Pressing mechanism 30
[0059] Pressing assembly 31
[0060] Column 311
[0061] Spacer block 312
[0062] Pressing block 313
[0063] Connection part 313a
[0064] Pressing part 313b
[0065] Third groove 313c
[0066] Support block 314
[0067] First sliding assembly 32
[0068] First adapter block 321
[0069] First connection part 321a
[0070] Second connection part 321b
[0071] First slider 322
[0072] First groove 322a
[0073] Slide groove 323
[0074] Guide post 324
[0075] Extrusion part 40
[0076] Fourth through hole 41
[0077] Boss 42
[0078] Protective cover 50
[0079] Frame 60
[0080] The first workpiece 200
[0081] The second opening 200a
[0082] The second workpiece 300
[0083] The first opening 300a
[0084] The following specific embodiments will further illustrate the present application in conjunction with the above-mentioned drawings. Specific embodiments
[0085] The present application provides a hot pressing and assembling device for synchronously pressing and heating workpieces in a small space inner cavity, capable of enabling the workpieces to be uniformly stressed. For example, it can be applied to bonding a soft material annular part (the first workpiece) to the inner wall of a small-diameter (such as a diameter of 78 mm) cylindrical ring-shaped shell (the second workpiece).
[0086] Please refer to Figure 1 and Figure 2 , the hot pressing and assembling device 100 of the embodiment of the present application includes a heating mechanism 10, a driving mechanism 20, a plurality of pressing mechanisms 30, and a frame 60. The frame 60 is used to load the heating mechanism 10, the driving mechanism 20, and the plurality of pressing mechanisms 30. The hot pressing and assembling device 100 further includes a protective cover 50 sleeved on the heating mechanism 10 for protecting the heating mechanism 10. The plurality of pressing mechanisms 30 are located between the heating mechanism 10 and the driving mechanism 20. The driving mechanism 20 is movably connected to the plurality of pressing mechanisms 30, and a part of the pressing mechanism 30 is located inside the heating mechanism 10. The driving mechanism 20 is used to drive the plurality of pressing mechanisms 30 to move towards the heating mechanism 20 to apply pressure to the product to be processed, or drive the plurality of pressing mechanisms 30 to move away from the heating mechanism 20 to place the product to be processed between the heating mechanism 20 and the plurality of pressing mechanisms 30. The heating mechanism 20 is used to heat the product to be processed.
[0087] Please refer to Figure 3 , in this embodiment, the driving mechanism 20 includes a connected driving component 21 and a rotating component 22, and the driving component 21 is used to drive the rotating component 22 to rotate.
[0088] The driving assembly 21 includes a cylinder 211, a push-pull rod 212, and a second sliding assembly 213. One end of the push-pull rod 212 is movably connected to the cylinder 211, and the other end is movably connected to the second sliding assembly 213. The second sliding assembly 213 includes a rack 2131, a second adapter block 2132, a second slider 2133, and a slide rail 2134. The rack 2131 is carried on the second adapter block 2132. The second adapter block 2132 is connected to the push-pull rod 212. The second slider 2133 is located on the side of the second adapter block 2132 away from the rack 2131 and is connected to the second adapter block 2132. The slide rail 2134 is located on the side of the second slider 2133 away from the second adapter block 2132 and is slidably connected to the slider 2133.
[0089] The driving mechanism 20 further includes a support 23 and a base plate 24. The base plate 24 is located on the side of the slide rail 2134 away from the second adapter block 2132, is fixedly connected to the slide rail 2134 and the cylinder 211, and the base plate 24 is used to carry the driving mechanism 20. The support 23 is located between the push-pull rod 212 and the base plate 24, is movably connected to the push-pull rod 212, and is fixedly connected to the base plate 24. Define the connection point between the push-pull rod 212 and the cylinder 211 as fulcrum 1, the connection point between the push-pull rod 212 and the second adapter block 2132 as fulcrum 2, and the connection point between the push-pull rod 212 and the support 23 as fulcrum 3. Fulcrums 1, 2, and 3 are on a straight line and fulcrum 3 is between fulcrum 1 and fulcrum 2, and the push-pull rod 212 can rotate around fulcrum 2.
[0090] The rotating assembly 22 includes a rotating disk 221, a gear 222, and a main shaft 223. A second through hole (not shown in the figure) is provided on the rotating disk 221, a third through hole (not shown in the figure) is provided on the gear 222, the main shaft 223 passes through the second through hole and is fixedly connected to the rotating disk 221, and at the same time passes through the third through hole and is fixedly connected to the gear 222. The rotating disk 221 and the gear 222 are both fixedly connected to the main shaft 223, and the centers of the rotating disk 221, the gear 222, and the main shaft 223 are on a straight line.
[0091] Please refer to Figure 4 and Figure 5 , in this embodiment, the pressing mechanism 30 includes a pressing assembly 31 and a first sliding assembly 32. The first sliding assembly 32 is slidably connected to the rotating assembly 22. When the rotating assembly 22 rotates, it drives the first sliding assembly 32 to move. The pressing assembly 31 is located on the side of the first sliding assembly 32 away from the rotating assembly 22 and is fixedly connected to the first sliding assembly 32.
[0092] The pressing assembly 31 includes a column 311, a cushion block 312, a pressing block 313 and a support block 314. One end of the column 311 is connected to the first sliding assembly 32, and the other end is connected to the cushion block 312. The pressing block 313 is located on the side of the cushion block 312 away from the column 311 and is fixedly connected to the cushion block 312. The support block 314 is located on the side of the pressing block 313 away from the cushion block 312 and is fixedly connected to the pressing block 313. The pressing block 313 includes a connecting portion 313a and a pressing portion 313b. The connecting portion 313a is fixedly connected to the cushion block 312, and the pressing portion 313b is located at one end of the connecting portion 313a away from the cushion block 312 and extends in a direction away from the connecting portion 313a.
[0093] The first sliding assembly 32 includes a first adapter block 321, a first slider 322, a sliding groove 323 and a guide post 324. The first adapter block 321 is located on the side of the column 311 away from the cushion block 312 and is fixedly connected to the column 311. The first slider 322 is located on the side of the first adapter block 321 away from the column 311 and is connected to the first adapter block 321. The side of the first slider 322 away from the first adapter block 321 is located in the sliding groove 323, and a first groove 322a is provided on the side of the first slider 322 close to the first adapter block 321.
[0094] The first adapter block 321 includes a first connecting portion 321a and a second connecting portion 321b. The second connecting portion 321b is a block structure, and the second connecting portion 321b is fixedly connected to the first slider 322. The first connecting portion 321a is located on the side of the second connecting portion 321b away from the first slider 322. The first connecting portion 321a is a strip structure, and the extending direction of the length of the first connecting portion 321a is parallel to the direction of the first slider 322 sliding in the sliding groove 323. One end of the first connecting portion 321a is fixedly connected to the second connecting portion 321b, and the other end is fixedly connected to the column 311, and the column 311 is located on the side of the first connecting portion 321a away from the second connecting portion 321b.
[0095] The rotating disk 221 is located between the first connecting portion 321a and the first slider 322. A plurality of guide grooves 221a are provided on the rotating disk 221, and a first groove 322a is provided on the first slider 322. One end of the guide post 324 is located in the first groove 322a and is fixedly connected to the first slider 322, and the other end is located in the guide groove 221a. When the driving assembly 21 drives the rotating disk 221 to rotate, the guide post 324 moves along the guide groove 221a. The guide post 324 is partially located in the first groove 322a of the first slider 322, so that when the guide post 324 moves, it drives the first slider 322 to move along the sliding groove 323. The first slider 323 is fixedly connected to the pressing assembly 31 through the first adapter block 321, so that when the first slider 323 moves, it drives the pressing block 313 in the pressing assembly 31 to move in the extending direction of the sliding groove 323.
[0096] Please refer to Figure 6 and Figure 7 In this embodiment, the heating mechanism 10 includes a heating block 11. A first through hole 14 for accommodating a first workpiece 200 and a second workpiece 300 is formed in the heating block 11. The first through hole 14 penetrates through the heating block 11 along the extending direction of the thickness of the heating block 11. A part of the pressing assembly 31 is located in the first through hole 14.
[0097] The heating mechanism 10 further includes an anti-fooling block 13 and two heat insulation blocks 12. The two heat insulation blocks 12 are respectively located on both sides of the heating block 11. The first through hole 14 also penetrates through the two heat insulation blocks 12 along the extending direction of the thickness of the heating block 11. Second grooves 15 are formed in the heating block 11 and the two heat insulation blocks 12. A part of the anti-fooling block 13 is located in the second groove 15, and the other part is located in the first through hole 14.
[0098] Along the extending direction of the thickness of the heating block 11, a guide pin rod 16 that penetrates through the heating block 11 and the two heat insulation blocks 12 at the same time is further provided on the heating mechanism 10. The guide pin rod 16 is used to prevent the heating block 11 and the two heat insulation blocks 12 from moving, which may affect the assembled product. A heating tube 17 is connected to the side of the heating block 11 away from the first through hole 14, so that the heating block 11 can heat the first workpiece 200 and the second workpiece 300.
[0099] The hot pressing and assembling device 100 further includes an extrusion member 40. The extrusion member 40 is of an annular structure and is sleeved on the periphery of the part of the pressing assembly 31 located in the first through hole 14. The inner side of the extrusion member 40 is in contact with the side surface of the pressing portion 313b of the pressing block 313. A fourth through hole 41 is formed in the extrusion member 40. The shape of the part of the anti-fooling block 13 located in the first through hole 14 is the same as the shape of the fourth through hole 41, so that the part of the anti-fooling block 13 located in the first through hole 14 extends into the fourth through hole 41 to fix the extrusion member 40. A plurality of convex blocks 42 are arranged at intervals on the side of the extrusion member 40 close to the pressing block 313. A third groove 313c corresponding to the convex blocks 42 is formed on the surface of the pressing portion 313b close to the extrusion member 40. When the inner side of the extrusion member 40 is in contact with the side surface of the pressing portion 313b of the pressing block 313, the convex blocks 42 are located in the third groove 313c to fix the pressing block 313 and prevent the pressing block 313 from moving along the inner side wall of the extrusion member 40.
[0100] Please refer to Figure 8, For example, the hot pressing and assembling device 100 of the embodiment of the present application is used to bond the annular first workpiece 200 to the inner wall of the second workpiece 300, and the shape of the second workpiece 300 is a cylindrical shell. The second workpiece 300 has a first opening 300a, and the first workpiece 200 has a second opening 200a corresponding to the first opening 300a. The cross-sectional shapes of the first through hole 14 and the first opening 300a are both circular, and the diameter of the first through hole 14 is slightly larger than the diameter of the first opening 300a, so that the second workpiece 300 can be placed in the first through hole 14.
[0101] In other embodiments, the extrusion member 40 can be of other shapes, such as a rectangular frame structure or a hexagonal frame structure, etc. The present application does not limit the shape of the extrusion member 40, and the shape of the extrusion member 40 is determined according to the shapes of the openings of the first workpiece 200 and the second workpiece 300.
[0102] Please refer to Figure 3 , Figure 4 and Figure 9 , Taking the first workpiece 200 as an annular part and the second workpiece 300 as a cylindrical shell as an example, the working process of the hot pressing and assembling device 100 of the embodiment of the present application for bonding the first workpiece 200 to the inner wall of the second workpiece 300 will be described below.
[0103] The first step is to contract the pressing assembly 31. The air cylinder 211 pulls the push rod 212, so that the fulcrum 1 moves towards the direction close to the air cylinder 211, the push rod 212 rotates around the fulcrum 2, and the fulcrum 3 moves away from the second adapter block 2132. The second slider 2133 is connected to the push rod 212 and the rack 2131 respectively through the second adapter block 2132. The movement of the fulcrum 3 drives the second slider 2133 to slide along the slide rail 2134, so that the rack 2131 moves. The rack 2131 meshes with the gear 222, and the movement of the rack 2131 causes the gear 222 to rotate around the main shaft 223. The gear 222 and the rotating disk 221 are both fixedly connected to the main shaft 223, and the rotation of the gear 222 drives the rotating disk 221 to rotate. When the rotating disk 221 rotates, the guide post 324 in the pressing mechanism 30 moves along the guide groove 221a on the rotating disk 221, so as to drive the pressing assembly 31 to move away from the extrusion member 40. At this time, the annular part 200 and the second workpiece 300 with double-sided tape coated on the side close to the first workpiece 200 are placed in the first through hole 14.
[0104] Step 2: Extend the pressing component 31. The air cylinder 211 pushes the push rod 212, causing the fulcrum 1 to move away from the air cylinder 211 and the fulcrum 3 to move closer to the second adapter block 2132. The movement of the fulcrum 3 synchronously drives the second slider 2133 to slide along the slide rail 2134, thereby causing the rack 2131 to move. The movement of the rack 2131 causes the gear 222 to rotate around the main shaft 223, thereby driving the rotating disk 221 to rotate. At this time, the rotation of the rotating disk 221 drives the pressing component 31 to move closer to the extruding part 40, making the pressing block 313 fit against the inner side of the extruding part 40 and extruding the extruding part 40, applying a uniform force to the extruding part 40, so that the extruding part 40 uniformly expands in the direction closer to the first workpiece 200. The first workpiece 200 is located between the second workpiece 300 and the extruding part 40. The expansion of the extruding part 40 in the direction closer to the first workpiece 200 (i.e., enabling the extruding part 40 to support the first workpiece 200 to fit the inner wall shape of the second workpiece 300) causes the first workpiece 200 and the second workpiece 300 to fit tightly.
[0105] Step 3: The heating block 11 in the heating mechanism 10 heats for a period of time to cure the double-sided adhesive, thereby bonding the first workpiece 200 and the second workpiece 300.
[0106] Step 4: After the bonding of the first workpiece 200 and the second workpiece 300 is completed, repeat the operation of Step 1 to move the pressing component 31 away from the extruding part 40, and take out the assembled first workpiece 200 and second workpiece 300.
[0107] Please refer to Figure 9 again, and define the acting force of the air cylinder 211 as F1, the acting force of the push rod 212 driving the second adapter block 2132 to move as F2, the acting force generated by the rotation of the gear 222 as F3, and the acting force generated by the rotation of the rotating disk 221 as F4. Figure 9 In, assume that the ratio of the distance between the fulcrum 1 and the fulcrum 3 to the distance between the fulcrum 2 and the fulcrum 3 is 5:1, and the ratio of the radius of the gear 222 to the radius of the rotating disk 221 is 10:9. According to the lever principle: power * power arm = resistance * resistance arm, it can be known that F1:F2 = 1:5, F3:F4 = 9:10. In this embodiment, F1 = 62.8 Kgf, F2 = F3. Combining the above formula, F4≈348 Kgf can be calculated.
[0108] The rotation of the rotating disk 221 drives the pressing assembly 31 to move. At this time, the pressure exerted by the pressing assembly 31 on the extrusion member 40 is equal to the acting force F4 of the rotating disk 221. Converting the unit of F4 from Kgf to N, then F4 = 3410.4 N. And the pressure required to press the first workpiece 200 and bond the inner side of the first workpiece 200 to the second workpiece 300 is 775 N. It can be seen from this that the acting force of the pressing assembly 31 is greater than the pressure required when bonding the first workpiece 200 to the inner side of the second workpiece 300. Therefore, the hot pressing and assembling device 100 of the present application can meet the pressure requirements during product assembly.
[0109] In summary, the hot pressing and assembling device 100 of the present application has a compact structure and occupies a small space. The driving assembly 21 can be used to rotate the rotating assembly 22 and then drive the pressing assembly 31 to move towards the direction close to the heating block 11, so as to apply force to the first workpiece 200 evenly. At the same time, the heating block 11 heats the second workpiece 300 and the first workpiece 200 synchronously, heats the first workpiece 200 with uniform force, and finally bonds the first workpiece 200 to the inner side of the second workpiece 300 to complete the assembly of the product.
[0110] Those of ordinary skill in the art of this technology should recognize that the above embodiments are only used to illustrate the present application, rather than to limit the present application. As long as within the scope of the substantial spirit of the present application, appropriate changes and variations made to the above embodiments fall within the scope of protection required by the present application.
Claims
1. A hot pressing assembly device, characterized in that: For bonding the first workpiece to the inner side of the second workpiece, the hot pressing assembly equipment comprises: A heating mechanism, comprising a heating block, wherein the heating block is provided with a first through hole for accommodating the first workpiece and the second workpiece, and the first through hole penetrates the heating block along an extension direction of the thickness of the heating block; A driving mechanism, comprising a driving assembly and a rotating assembly connected to each other, wherein the driving assembly is used to drive the rotating assembly to rotate; and Multiple pressing mechanisms, each of the pressing mechanisms includes a pressing component and a first sliding component, the first sliding component is slidably connected to the rotating component, and the rotating component drives the first sliding component to move when it rotates, the pressing component is located on the side of the first sliding component away from the rotating component and is fixedly connected to the first sliding component, and the pressing component is partially located in the first through hole.
2. The hot pressing assembly equipment according to claim 1, characterized in that: The rotating assembly includes a rotating disk, a gear and a main shaft. The rotating disk is provided with a second through hole, the gear is provided with a third through hole, the main shaft passes through the second through hole and is fixedly connected to the rotating disk, and passes through the third through hole and is fixedly connected to the gear.
3. The hot pressing assembly equipment according to claim 2, characterized in that: The driving assembly includes a cylinder, a push-pull rod and a second sliding assembly. One end of the push-pull rod is movably connected to the cylinder, and the other end of the push-pull rod is movably connected to the second sliding assembly.
4. The hot pressing assembly equipment according to claim 3, characterized in that: The second sliding assembly includes a rack, a second adapter block, a second slider and a slide rail, the rack is carried on the second adapter block, the rack is meshed with the gear, the second adapter block is connected to the push-pull rod, the second slider is located on a side of the second adapter block away from the rack and is connected to the second adapter block, and the slide rail is located on a side of the second slider away from the second adapter block and is slidably connected to the slider.
5. The hot pressing assembly equipment according to claim 4, characterized in that: The pressing assembly includes a column, a cushion block, a pressing block and a supporting block. One end of the column is connected to the first sliding assembly, and the other end is connected to the cushion block. The pressing block is located on a side of the cushion block away from the column and is fixedly connected to the cushion block. The supporting block is located on a side of the pressing block away from the cushion block and is fixedly connected to the pressing block.
6. The hot pressing assembly equipment according to claim 5, characterized in that: The pressing block comprises a connecting portion and a pressing portion, wherein the connecting portion is fixedly connected to the cushion block, and the pressing portion is located at an end of the connecting portion away from the cushion block and extends in a direction away from the connecting portion.
7. The hot pressing assembly equipment according to claim 6, characterized in that: The hot pressing assembly equipment further comprises an extrusion piece which is sleeved on the periphery of the portion of the pressing component located in the first through hole, and the inner side of the extrusion piece is in contact with the side surface of the pressing portion.
8. The hot pressing assembly equipment according to claim 7, characterized in that: The heating mechanism also includes an anti-fool block and two heat insulation blocks. The two heat-insulating blocks are respectively located on both sides of the heating block, and the first through hole also passes through the two heat-insulating blocks simultaneously along the extension direction of the thickness of the heating block; The heating block and the two heat-insulating blocks are provided with a second groove, a portion of the fool-proof block is located in the second groove, and another portion of the fool-proof block is located in the first through hole.
9. The hot pressing assembly equipment according to claim 8, characterized in that: A fourth through hole is provided on the extrusion piece, and the shape of the portion of the anti-foolproof block located in the first through hole is the same as the shape of the fourth through hole, so that the portion of the anti-foolproof block located in the first through hole extends into the fourth through hole to fix the extrusion piece.
10. The hot pressing assembly equipment according to claim 6, characterized in that: The first sliding assembly includes a first adapter block, a first slider, a slide groove and a guide column. The first adapter block is located on a side of the column away from the cushion block and is connected to the column. The first slider is located at a side of the first adapter block away from the column and connected to the first adapter block, the side of the first slider away from the first adapter block is located in the slide slot, and the side of the first slider close to the first adapter block is provided with a first groove; A plurality of guide grooves are provided on the rotating disk. One end of the guide column is located in the first groove and fixedly connected to the first sliding block, and the other end is located in the guide groove.