Double-side automatic hot-pressing forming machine

By designing a double-sided automatic hot press molding machine, the collaborative work of the feeding, lateral movement, material distribution, hot pressing, and unloading components enables the alternating movement of products between the hot pressing components on both sides. This solves the problems of high manual labor intensity and low production efficiency in traditional equipment, and improves the efficiency and safety of automated hot press molding.

CN224224344UActive Publication Date: 2026-05-12GUANGDONG DINGGUAN TECHNOLOGY CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG DINGGUAN TECHNOLOGY CO LTD
Filing Date
2025-06-10
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

Traditional hot pressing equipment suffers from high manual labor intensity, low production efficiency, and high safety risks. Furthermore, existing automatic material handling equipment can only perform single hot pressing, resulting in no significant improvement in production efficiency.

Method used

Design a double-sided automatic hot press forming machine, including feeding, lateral movement, material distribution, hot pressing, clamping and unloading components. The lateral movement component enables the product to move alternately between the two hot pressing components, and the operation display screen enables automated control to improve production efficiency.

Benefits of technology

It enables automated hot pressing of products, reduces manual labor intensity, improves production efficiency, and significantly enhances the overall production efficiency and safety of the equipment through alternating hot pressing.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224224344U_ABST
    Figure CN224224344U_ABST
Patent Text Reader

Abstract

The utility model discloses a double-side automatic hot-press forming machine which comprises a machine frame, a feeding assembly, a transverse moving assembly, a distributing assembly and hot-press assemblies, the feeding assembly, the transverse moving assembly, the distributing assembly and the hot-press assemblies are arranged on the machine frame, the feeding assembly is located on the lower portion of the machine frame, the hot-press assemblies are arranged on the left side and the right side of the feeding assembly respectively, and the transverse moving assembly is located on the front side of the feeding assembly. The material distributing assembly is located between the material supplying assembly and the transverse moving assembly, the transverse moving assembly is provided with a material clamping assembly and two discharging assemblies, and the two discharging assemblies correspond to the hot pressing assemblies on the left side and the right side correspondingly. According to the double-side automatic hot-pressing forming machine, the hot-pressing assemblies are arranged on the left side and the right side of the feeding assembly respectively, the material clamping assembly and the two discharging assemblies are arranged on the transverse moving assembly, the transverse moving assembly drives the material clamping assembly and the two discharging assemblies to move so that the material clamping assembly and the two discharging assemblies can be matched with the two hot-pressing assemblies respectively, and therefore alternate hot-pressing forming can be formed; and therefore, the hot-press forming efficiency is effectively improved, and the overall structural design of the double-side automatic hot-press forming machine is reasonable.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of hot pressing equipment technology, and in particular to a double-sided automatic hot pressing machine. Background Technology

[0002] Thermoforming has a wide range of applications in the textile, plastics, and foam industries (products such as artificial flowers, artificial plants, decorations, Christmas products, etc.). The traditional processing method is to put the raw material into a mold with a certain temperature, apply a certain pressure through a cylinder, and under the combined action of temperature and pressure, the raw material is thermoformed into a product of the desired shape.

[0003] Traditional hot press molding equipment typically requires manual feeding and unloading of the products to be hot pressed and the finished products. This results in high labor intensity, low efficiency, and significant safety risks. While an automatic feeding and unloading hot press molding machine has been designed, it only has one set of hot press molds, allowing for single-stage hot pressing and thus limiting production efficiency. Therefore, improvements to hot press molding equipment are necessary. Utility Model Content

[0004] The purpose of this invention is to provide a double-sided automatic hot pressing molding machine with a simple and reasonable structure that can improve production efficiency.

[0005] To solve the above technical problems, the present invention can be implemented using the following technical solutions:

[0006] A double-sided automatic hot press forming machine includes a frame and a feeding assembly, a transverse moving assembly, a distributing assembly, and a hot press assembly mounted on the frame. The feeding assembly is located at the lower part of the frame, and hot press assemblies are respectively arranged on the left and right sides of the feeding assembly. The transverse moving assembly is located in front of the feeding assembly, and the distributing assembly is located between the feeding assembly and the transverse moving assembly. The transverse moving assembly is equipped with a clamping assembly and a discharging assembly. Two sets of discharging assemblies are arranged on both sides of the clamping assembly, and the two sets of discharging assemblies correspond to the hot press assemblies on the left and right sides, respectively.

[0007] In one embodiment, the feeding assembly includes a feeding bracket, a feeding drive, and a feeding lifting plate. The feeding bracket is located below the frame, the feeding drive is installed at the bottom of the feeding bracket, the feeding lifting plate is connected to the feeding drive, the feeding drive drives the feeding lifting plate to move up and down, and a feeding position is formed on the feeding lifting plate.

[0008] In one embodiment, the lateral movement assembly includes a lateral movement drive and a lateral movement plate connected to the lateral movement drive. The lateral movement drive can drive the lateral movement plate to move laterally. A clamping assembly is disposed in the middle of the lateral movement plate, and two sets of unloading assemblies are respectively disposed on both sides of the lateral movement plate.

[0009] In one embodiment, the material dispensing assembly includes a material dispensing drive, a material dispensing frame, and a material dispensing blade. The material dispensing drive is located at the bottom of the panel of the frame, the bottom end of the material dispensing frame passes through the panel of the frame and is connected to the material dispensing drive, and the material dispensing blade is installed at the top of the material dispensing frame. The material dispensing drive can drive the material dispensing frame to move, thereby causing the material dispensing blade to move toward the feeding assembly.

[0010] In one embodiment, the hot pressing assembly includes a lower mold fixing platform, an upper mold fixing platform, and a hot pressing drive component. The upper mold fixing platform and the lower mold fixing platform are used to install the upper mold and the lower mold of the hot pressing mold, respectively, and the upper mold fixing platform and the lower mold fixing platform are arranged vertically. The hot pressing drive component is connected to the upper mold fixing platform and can drive the upper mold fixing platform to move closer to or away from the lower mold fixing platform.

[0011] In one embodiment, the clamping assembly includes a clamping longitudinal movement drive, a clamping translation drive, and a clamping mounting plate. The clamping longitudinal movement drive is disposed on the transverse movement assembly, and the clamping translation drive is connected to the clamping longitudinal movement drive. The clamping mounting plate is connected to the clamping translation drive, and a clamp is disposed on the clamping mounting plate.

[0012] In one embodiment, the unloading assembly includes an unloading longitudinal movement drive, an unloading translation drive, and an unloading mounting plate. The unloading longitudinal movement drive is disposed on the transverse movement assembly, and the unloading translation drive is connected to the unloading longitudinal movement drive. The unloading mounting plate is connected to the unloading translation drive, and an unloading suction cup is disposed on the unloading mounting plate.

[0013] In one embodiment, the frame is further provided with a shaping assembly. There are two sets of shaping assemblies, which are respectively located above the feeding assembly. The shaping assembly includes a shaping drive, a shaping mounting plate and a shaping pressure column. The shaping mounting plate is connected to the shaping drive, and the shaping pressure column is disposed on the shaping mounting plate. The shaping drive can drive the shaping mounting plate to move up and down so that the shaping pressure column moves toward the feeding assembly.

[0014] In one embodiment, an operation display screen is also provided on the top of the rack. Beneficial effects

[0015] This utility model relates to a double-sided automatic hot press forming machine. A feeding component feeds stacked products, a separating component divides the stacked products into a predetermined number, and a clamping component clamps the divided products. After clamping, a lateral movement component drives the clamping component to move towards one of the hot press components. Once in position, the clamping component places the clamped product into this set of hot press components for hot press forming. After hot press forming, a corresponding unloading component picks up and unloads the product, thus achieving automatic hot press forming. Furthermore, because hot press components are set on both sides of the feeding component, and the clamping component and two sets of unloading components are set on the lateral movement component, the lateral movement component drives the clamping component and the two sets of unloading components to move laterally, allowing them to cooperate with the two sets of hot press components. This forms an alternating hot press forming process, effectively improving the efficiency of hot press forming and making the overall structural design of the double-sided automatic hot press forming machine more reasonable. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of the double-sided automatic hot pressing molding machine of this utility model. Figure 1 ;

[0017] Figure 2 This is a schematic diagram of the structure of the double-sided automatic hot pressing molding machine of this utility model. Figure 2 ;

[0018] Figure 3 This is a schematic diagram of the feeding component structure of the double-sided automatic hot press molding machine of this utility model;

[0019] Figure 4 This is a schematic diagram of the material distribution component of the double-sided automatic hot press molding machine of this utility model;

[0020] Figure 5 This is a schematic diagram of the transverse movement assembly, clamping assembly, and unloading assembly of the double-sided automatic hot press forming machine of this utility model.

[0021] Figure 6 This is a schematic diagram of the hot pressing component structure of the double-sided automatic hot pressing molding machine of this utility model;

[0022] Figure 7 This is a schematic diagram of the shaping component structure of the double-sided automatic hot pressing forming machine of this utility model.

[0023] As shown in the attached diagram:

[0024] 100. Frame; 200. Feeding assembly; 210. Feeding bracket; 220. Feeding drive; 230. Feeding lifting plate; 240. Unloading position; 300. Transverse movement assembly; 310. Transverse movement drive; 320. Mold moving plate; 400. Material distribution assembly; 410. Material distribution drive; 420. Material distribution rack; 430. Material distribution blade; 500. Hot pressing assembly; 510. Lower mold fixing platform; 520. Upper mold fixing platform; 530. Hot pressing drive. Moving parts; 600, clamping assembly; 610, clamping longitudinal movement drive; 620, clamping translation drive; 630, clamping mounting plate; 640, material clamp; 700, unloading assembly; 710, unloading longitudinal movement drive; 720, unloading translation drive; 730, unloading mounting plate; 740, unloading suction cup; 800, shaping assembly; 810, shaping drive; 820, shaping mounting plate; 830, shaping pressure column; 900, operation display screen. Detailed Implementation

[0025] To make the above-mentioned objects, features, and advantages of this utility model more apparent and understandable, the specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings. Many specific details are set forth in the following description to provide a full understanding of this utility model. However, this utility model can be implemented in many other ways different from those described herein, and those skilled in the art can make similar modifications without departing from the spirit of this utility model. Therefore, this utility model is not limited to the specific embodiments disclosed below.

[0026] It should be noted that when an element is said to be "fixed to" another element, it can be directly on the other element or there may be an intervening element. When an element is said to be "connected to" another element, it can be directly connected to the other element or there may be an intervening element. Conversely, when an element is said to be "directly on" another element, there is no intervening element. The terms "vertical," "horizontal," "left," "right," and similar expressions used in this document are for illustrative purposes only.

[0027] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0028] Please see Figure 1 and Figure 2A double-sided automatic hot press molding machine includes a frame 100 and a feeding assembly 200, a transverse movement assembly 300, a material distribution assembly 400, and a hot press assembly 500 disposed on the frame 100. The feeding assembly 200 is located at the lower part of the frame 100, and hot press assemblies 500 are respectively disposed on the left and right sides of the feeding assembly 200. The transverse movement assembly 300 is located in front of the feeding assembly 200, and the material distribution assembly 400 is located between the feeding assembly 200 and the transverse movement assembly 300. The transverse movement assembly 300 is provided with a clamping assembly 600 and a discharging assembly 700. There are two sets of discharging assemblies 700, which are respectively located on both sides of the clamping assembly 600, and the two sets of discharging assemblies 700 correspond to the hot press assemblies 500 on the left and right sides, respectively.

[0029] Specifically, during the thermoforming of the product, the product is stacked on the feeding component 200, which lifts the stacked product. Once the stacked product is in place, the separating component 400 will separate the stacked product into a set number (about 8-10 pieces, the specific number is set according to actual needs). After the product is separated, the clamping component 600 will clamp the separated product, and the lateral movement component 300 will drive the clamping component 600 to move laterally, so that the clamping component 600 moves to the thermoforming component 500 on the left. At this time, the clamping component 600 will place the clamped product into the thermoforming component 500 on the left for thermoforming.

[0030] Since the product requires a certain amount of time during the hot pressing process, the transverse component 300 will drive the clamping component 600 to reset, and the clamping component 600 will then clamp the forked product again. After clamping, the transverse component 300 will drive the clamping component 600 to move to the hot pressing component 500 on the right. The clamping component 600 will then place the clamped product in the hot pressing component 500 on the right for hot pressing.

[0031] During the hot pressing process, the lateral movement component 300 drives the clamping component 600 to reset and clamp the forked products. While the clamping component 600 is clamping the products, the corresponding unloading component 700 picks up the hot-pressed products in the left hot pressing component 500. After the forked products are clamped by the clamping component 600 and the hot-pressed products are picked up by the corresponding unloading component 700, the lateral movement component 300 drives the clamping component 600 and the unloading component 700 to move laterally. This causes the clamping component 600 to move back to the left hot pressing component 500, placing new products to be hot-pressed in the left hot pressing component 500. The unloading component 700 then unloads and collects the picked-up hot-pressed products. This cycle is repeated to form an alternating hot pressing process, which effectively improves the efficiency of hot pressing and makes the overall structure of the double-sided automatic hot pressing machine more reasonable.

[0032] Of course, in order to intelligently control the feeding assembly 200, the transverse moving assembly 300, the distributing assembly 400, the hot pressing assembly 500, the clamping assembly 600, and the unloading assembly 700, an operation display screen 900 is also provided on the top of the frame 100. By controlling the above-mentioned components through the operation display screen 900, automated loading / unloading and automatic hot pressing can be realized, thereby improving efficiency, reducing manual labor intensity, and improving production safety.

[0033] Please see Figure 3 In order to achieve automatic feeding of hot-pressed products, the feeding assembly 200 in this embodiment includes a feeding bracket 210, a feeding drive 220 and a feeding lifting plate 230. The feeding bracket 210 is located below the frame 100, the feeding drive 220 is installed at the bottom of the feeding bracket 210, the feeding lifting plate 230 is connected to the feeding drive 220, the feeding drive 220 drives the feeding lifting plate 230 to move up and down, and a feeding position 240 is formed on the feeding lifting plate 230. It should be noted that four columns are provided on the top of the feeding bracket 210. When the feeding drive unit 220 drives the feeding lifting plate 230 to rise and fall, the feeding lifting plate 230 can move up and down along the four columns, so that the four columns surround to form the feeding position 240. The stacked products are placed in the feeding position 240, and the feeding drive unit 220 drives the feeding lifting plate 230 to rise and fall, so as to realize the lifting and feeding of the products. The feeding drive unit 220 can be a motor and lead screw structure, or it can be a cylinder drive, which is not limited here.

[0034] Please see Figure 5 In this embodiment, to achieve alternating loading and unloading, the transverse assembly 300 includes a transverse drive 310 and a transverse plate 320 connected to the transverse drive 310. The transverse drive 310 can drive the transverse plate 320 to move laterally, while the clamping assembly 600 is located in the middle of the transverse plate 320, and two sets of unloading assemblies 700 are respectively located on both sides of the transverse plate 320. The transverse drive 310 can be a motor and lead screw structure, driving the transverse plate 320 to move laterally so that the clamping assembly 600 cooperates with the hot pressing assemblies 500 on both sides, placing the product to be hot-pressed into the hot pressing assembly 500, and ensuring that the two sets of unloading assemblies 700 correspond one-to-one with the hot pressing assemblies 500 on both sides, automatically unloading the hot-pressed product. This enables the double-sided automatic hot pressing machine to achieve alternating hot pressing, thereby improving production efficiency and making its structural design more reasonable.

[0035] Please see Figure 4In order to facilitate the material clamping assembly 600 to pick up the products to be thermoformed, the stacked products need to be separated during material picking. Therefore, the material separating assembly 400 in this embodiment includes a material separating drive 410, a material separating frame 420 and a material separating blade 430. The material separating drive 410 is located at the bottom of the panel of the frame 100. The bottom end of the material separating frame 420 passes through the panel of the frame 100 and is connected to the material separating drive 410. The material separating blade 430 is installed at the top of the material separating frame 420. The material separating drive 410 can drive the material separating frame 420 to move, thereby causing the material separating blade 430 to move towards the feeding assembly 200. After the feeding component 200 lifts the stacked products into position, the material distribution drive 410 drives the material distribution rack 420 to move towards the feeding component 200. When the material distribution rack 420 moves, it will also move the material distribution knife 430, so that the material distribution knife 430 can split the stacked products in the feeding position 240 into a set number, which will facilitate the subsequent clamping component 600 to clamp and feed the split products, making the feeding process of the products to be hot-pressed smooth and the structural design of the hot press molding machine reasonable. The material distribution drive 410 can also adopt a motor and lead screw structure.

[0036] Please see Figure 6 In order to achieve hot pressing of the product, the hot pressing assembly 500 in this embodiment includes a lower mold fixing platform 510, an upper mold fixing platform 520 and a hot pressing drive 530. The upper mold fixing platform 520 and the lower mold fixing platform 510 are used to install the upper mold and lower mold of the hot pressing mold, respectively, and the upper mold fixing platform 520 and the lower mold fixing platform 510 are arranged vertically. The hot pressing drive 530 is connected to the upper mold fixing platform 520 and can drive the upper mold fixing platform 520 to move closer to or away from the lower mold fixing platform 510. It should be noted that the upper mold fixing platform 520 is used to install and fix the upper mold in the hot press mold, and the lower mold fixing platform 510 is used to install and fix the lower mold in the hot press mold. The hot press mold is existing technology and can be replaced according to the pattern to be pressed. When the clamping component 600 places the clamped product on the lower mold of the lower mold fixing platform 510, the hot press drive component 530 will drive the upper mold fixing platform 520 to move downward so that the upper mold and the lower mold of the upper mold fixing platform can be closed, thereby realizing the hot press forming of the product. The hot press drive component 530 can be a cylinder structure.

[0037] Please see Figure 5In this embodiment, to achieve product clamping and loading, and product unloading after hot pressing, the clamping assembly 600 includes a clamping longitudinal movement drive 610, a clamping translation drive 620, and a clamping mounting plate 630. The clamping longitudinal movement drive 610 is mounted on the transverse movement assembly 300, the clamping translation drive 620 is connected to the clamping longitudinal movement drive 610, and the clamping mounting plate 630 is connected to the clamping translation drive 620 and is mounted on the clamping assembly 300. A material clamp 640 is provided on the material mounting plate 630; while the unloading assembly 700 includes an unloading longitudinal movement drive 710, an unloading transverse movement drive 720 and an unloading mounting plate 730. The unloading longitudinal movement drive 710 is provided on the transverse movement assembly 300. The unloading transverse movement drive 720 is connected to the unloading longitudinal movement drive 710. The unloading mounting plate 730 is connected to the unloading transverse movement drive 720 and an unloading suction cup 740 is provided on the unloading mounting plate 730.

[0038] After the material distribution component 400 divides the stacked products at the feeding component 200 into a set number, the clamping longitudinal movement drive 610 and the clamping transverse movement drive 620 drive the clamping mounting plate 630 to move along two axes, so that the clamp 640 moves to a set position. The clamp 640 then clamps the divided products. After clamping, the transverse movement component 300 drives the clamping component 600 to move, placing the clamped products into the hot pressing component 500 for hot pressing. After the products are hot pressed, they are unloaded. The longitudinal drive 710 and the unloading translation drive 720 drive the unloading mounting plate 730 to move along two axes to move the unloading suction cup 740 to a set position. The unloading suction cup 740 then picks up the thermo-pressed product. The transverse drive 300 then drives the unloading assembly 700 to move to a set position. The unloading assembly 700 then places and collects the picked-up product. Finally, the clamping assembly 600 and the unloading assembly 700 achieve automatic loading / unloading of the product to improve production efficiency.

[0039] In this embodiment, the clamping longitudinal movement drive 610, the clamping translation drive 620, and the unloading longitudinal movement drive 710 can all adopt a motor and lead screw structure, while the unloading translation drive 720 can adopt a cylinder structure.

[0040] Finally, please see Figure 1 and Figure 7Since the material distribution component 400 may cause the stacked products to become fluffy after splitting them, it is necessary to sort the stacked products after splitting. Therefore, in this embodiment, a shaping component 800 is also provided on the frame 100. There are two sets of shaping components 800, which are located above the feeding component 200. The shaping component 800 includes a shaping drive component 810, a shaping mounting plate 820 and a shaping pressure column 830. The shaping mounting plate 820 is connected to the shaping drive component 810. The shaping pressure column 830 is disposed on the shaping mounting plate 820. The shaping drive component 810 can drive the shaping mounting plate 820 to rise and fall, so that the shaping pressure column 830 moves toward the feeding component 200. After the products are split by the material distribution component 400, the shaping drive component 810 will drive the shaping mounting plate 820 to move downward, so that the shaping pressure column 830 presses and shapes the products at the material placement position 240. The two sets of shaping components 800 arranged side by side can press and shape the front and back positions of the stacked products to ensure the stacking effect of the products. This facilitates the subsequent splitting of the products by the material distribution component 400 to a set number, avoiding splitting too few or too many products.

[0041] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art can readily implement this utility model based on the accompanying drawings and the above description; however, any modifications, alterations, or variations made by those skilled in the art without departing from the scope of the utility model's technical solution, utilizing the disclosed technical content, are equivalent embodiments of this utility model; furthermore, any equivalent changes, alterations, or variations made to the above embodiments based on the essential technology of this utility model are still within the protection scope of this utility model's technical solution.

Claims

1. A double-sided automatic hot pressing molding machine, characterized in that: It includes a frame, and a feeding assembly, a traversing assembly, a distributing assembly and a hot pressing assembly mounted on the frame. The feeding assembly is located at the lower part of the frame, and hot pressing assemblies are respectively arranged on the left and right sides of the feeding assembly. The traversing assembly is located in front of the feeding assembly, and the distributing assembly is located between the feeding assembly and the traversing assembly. The transverse component is equipped with a clamping component and a feeding component. There are two sets of feeding components, which are located on both sides of the clamping component. The two sets of feeding components correspond to the hot pressing components on the left and right sides, respectively.

2. The double-sided automatic hot pressing molding machine according to claim 1, characterized in that: The feeding assembly includes a feeding bracket, a feeding drive, and a feeding lifting plate. The feeding bracket is located below the frame, and the feeding drive is installed at the bottom of the feeding bracket. The feeding lifting plate is connected to the feeding drive, and the feeding drive drives the feeding lifting plate to move up and down. A material feeding position is formed on the feeding lifting plate.

3. The double-sided automatic hot pressing molding machine according to claim 1, characterized in that: The lateral movement assembly includes a lateral movement drive and a lateral movement plate connected to the lateral movement drive. The lateral movement drive can drive the lateral movement plate to move laterally. The clamping assembly is located in the middle of the lateral movement plate, and two sets of unloading assemblies are respectively located on both sides of the lateral movement plate.

4. The double-sided automatic hot pressing molding machine according to claim 1, characterized in that: The material dispensing assembly includes a material dispensing drive, a material dispensing frame, and a material dispensing blade. The material dispensing drive is located at the bottom of the panel of the frame. The bottom end of the material dispensing frame passes through the panel of the frame and is connected to the material dispensing drive. The material dispensing blade is installed at the top of the material dispensing frame. The material dispensing drive can drive the material dispensing frame to move, thereby causing the material dispensing blade to move towards the feeding assembly.

5. The double-sided automatic hot pressing molding machine according to claim 1, characterized in that: The hot pressing assembly includes a lower mold fixing platform, an upper mold fixing platform, and a hot pressing drive component. The upper mold fixing platform and the lower mold fixing platform are used to install the upper mold and the lower mold of the hot pressing mold, respectively. The upper mold fixing platform and the lower mold fixing platform are arranged vertically. The hot pressing drive component is connected to the upper mold fixing platform and can drive the upper mold fixing platform to move closer to or away from the lower mold fixing platform.

6. The double-sided automatic hot pressing molding machine according to claim 1, characterized in that: The clamping assembly includes a clamping longitudinal movement drive, a clamping translation drive, and a clamping mounting plate. The clamping longitudinal movement drive is mounted on the transverse movement assembly, and the clamping translation drive is connected to the clamping longitudinal movement drive. The clamping mounting plate is connected to the clamping translation drive, and a clamp is provided on the clamping mounting plate.

7. The double-sided automatic hot pressing molding machine according to claim 1, characterized in that: The unloading assembly includes an unloading longitudinal movement drive, an unloading translation drive, and an unloading mounting plate. The unloading longitudinal movement drive is mounted on the transverse movement assembly, and the unloading translation drive is connected to the unloading longitudinal movement drive. The unloading mounting plate is connected to the unloading translation drive, and an unloading suction cup is provided on the unloading mounting plate.

8. The double-sided automatic hot pressing molding machine according to claim 1, characterized in that: The frame is also equipped with two sets of shaping components, which are arranged side by side and located above the feeding components. Each shaping component includes a shaping drive, a shaping mounting plate, and a shaping pressure column. The shaping mounting plate is connected to the shaping drive, and the shaping pressure column is mounted on the shaping mounting plate. The shaping drive can drive the shaping mounting plate to move up and down so that the shaping pressure column moves toward the feeding components.

9. The double-sided automatic hot pressing molding machine according to any one of claims 1 to 8, characterized in that: An operation display screen is also installed on the top of the rack.