Plywood hot-pressing device for container

By designing a plywood hot pressing device including detection plate, elastic telescopic block and limit hole, the problem of inaccurate laminate stacking is solved, the accuracy of the hot pressing process and the strength of the plywood are ensured, and the effect of the container is improved.

CN120116296AActive Publication Date: 2025-06-10FUJIAN YONGQING CONTAINER NEW MATERIALS CO LTD
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Patent Information

Application Number
CN202510610375.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-13
Publication Date
2025-06-10
Estimated Expiration
2045-05-13

AI Technical Summary

Technical Problem

Existing plywood hot pressing devices are difficult to ensure that multiple laminate stacks are accurately overlapped, resulting in a deviation in the size of the hot pressed laminate, affecting the assembly and use of containers.

Method used

A plywood hot pressing device including a hot pressing table, a base, a hot press rod, a load-bearing plate, a hydraulic equipment, a hot pressing plate, a detection plate, an elastic telescopic block, a limiting hole and a positioning hole are designed. The alignment of the laminate is detected by the elastic telescopic rod, the limiting holes avoid excessive compression, and the positioning holes facilitate laminate stacking, ensuring the accuracy of the hot pressing process.

Benefits of technology

It effectively avoids the problem of laminate misalignment, ensures the accuracy of the hot pressing process, and improves the strength of the plywood and the use effect of the container.

✦ Generated by Eureka AI based on patent content.

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Abstract

The plywood hot-pressing device for the container relates to the technical field of plywood hot-pressing and comprises a hot-pressing table and further comprises a base, the base is fixedly mounted at the top of the hot-pressing table, a hot-pressing rod is fixedly mounted at the top of the hot-pressing table, and a bearing plate is fixedly mounted on the circumferential surface of the hot-pressing rod; hydraulic equipment is fixedly installed at the top of the bearing plate, a hot pressing plate is fixedly installed at the output end of the hydraulic equipment, a hydraulic pipe is arranged on the right side of the hydraulic equipment, a pressing plate is arranged at the top of the base, a detection plate slidably penetrates through the top of the hot pressing plate, and an elastic telescopic block slidably penetrates through the left side of the top of the hot pressing plate. The automatic jacking of the laminated boards by the elastic telescopic rods can remind an operator that the positions of the laminated boards are not aligned, so that the problem of dislocation of the laminated boards is avoided, the accuracy in the hot pressing process is ensured, and the multiple laminated boards are jacked to remind the operator to stack the multiple laminated boards again.
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Description

Technical Field

[0001] The present invention relates to the technical field of plywood hot pressing, and particularly to a plywood hot pressing device for containers. Background Art

[0002] A plywood hot pressing device for containers usually consists of a hot pressing table, a base, hydraulic equipment, hydraulic pipes, etc., and the laminate is usually pressed from plates of the same specification.

[0003] The patent with the patent publication number CN213971662U relates to a plywood hot pressing device, which belongs to the technical field of plywood hot pressing devices. The plywood hot pressing device includes: a hydraulic rod, a base, a pressing plate, a placing plate, a support frame, a base, shock-absorbing springs, a cooling device, a heating device. The heating device includes: a heating pipeline, and the cooling device includes a water inlet pipeline and a water outlet pipeline. The top of the hydraulic rod is connected to the bottom of the support frame, the bottom of the hydraulic rod is connected to the top of the pressing plate, the bottom of the placing plate is fixedly connected to the top of the base, the bottom of the base is fixedly connected to the top of the base, both ends of the base are connected with a cooling device, and the rear of the base is connected with a heating device. This patent has the advantages of simple structural design, convenient use, low manufacturing cost, etc., ensuring the quality of plywood hot pressing, and can adjust the hydraulic rod according to the number of plates, improving the scope of use of the device, saving manpower and material resources, and the set shock-absorbing springs can buffer the downward force of the pressing plate.

[0004] In the above patent, by adjusting the hydraulic rod according to the number of plates, the scope of use of the device is improved, and manpower and material resources are saved. The set shock-absorbing springs can buffer the downward force of the pressing plate. However, it is difficult to ensure the accurate superposition of multiple laminates. The misaligned laminates will cause deviations in the size of the finally hot-pressed laminate, making the edges of the laminate uneven, thereby affecting the assembly and use of the container. Summary of the Invention

[0005] Aiming at the deficiencies of the prior art, the present invention provides a plywood hot pressing device for containers, which solves the problems raised in the above background art.

[0006] To achieve the above object, the present invention is realized through the following technical solutions: A plywood hot pressing device for containers, including a hot pressing table, further including a base, the base is fixedly installed on the top of the hot pressing table, a hot pressing rod is fixedly installed on the top of the hot pressing table, a bearing plate is fixedly installed on the circumferential surface of the hot pressing rod, a hydraulic device is fixedly installed on the top of the bearing plate, a hot pressing plate is fixedly installed at the output end of the hydraulic device, a hydraulic pipe is arranged on the right side of the hydraulic device, a laminated plate is arranged on the top of the base, a detection plate slidably penetrates through the top of the hot pressing plate, an elastic telescopic block slidably penetrates through the left side of the top of the hot pressing plate, the interior of the hot pressing table is of a cavity structure, a heat conduction pipe is arranged inside the base, and the material of the base is graphene; a limiting hole, the limiting hole is opened on the circumferential surface of the hot pressing rod, and the limiting hole is used to limit the hot pressing plate, and the heat conduction pipe is used to heat the laminated plate; a positioning hole, the positioning hole is opened at the bottom of the laminated plate, and the positioning hole is used to facilitate the stacking of multiple laminated plates; an elastic telescopic rod, the elastic telescopic rod is fixedly installed on the top of the hot pressing table, and the elastic telescopic rod is used to detect whether multiple laminated plates are aligned. When multiple laminated plates are lifted, it prompts the operator to re-stack multiple laminated plates. The heat conduction efficiency of the base can be improved through the graphene material, and the base can be heated through the heat conduction pipe.

[0007] According to the above technical solution, the right side of the elastic telescopic block is set as an inclined surface. By setting the right side of the elastic telescopic block as an inclined surface, the friction force when the detection plate presses the elastic telescopic block can be reduced. The left side of the elastic telescopic block is set as an arc surface. A first spring is arranged between the detection plate and the elastic telescopic block. When the elastic telescopic block moves to the left, it pulls the first spring. The first spring deforms and stores energy under the pull of the elastic telescopic block. After the hot pressing plate is separated from the contact with the base, the first spring can drive the elastic telescopic block to return to its initial position.

[0008] According to the above technical solution, the elastic telescopic block abuts against the hot pressing rod, the free end of the elastic telescopic rod contacts the inner wall of the positioning hole, and the top of the detection plate contacts the elastic telescopic block. The detection plate moves upward and contacts the inclined surface of the elastic telescopic block and presses the elastic telescopic block.

[0009] According to the above technical solution, a control component for improving the gluing effect of the hot pressing plate is arranged on the top of the hot pressing table, and a pushing component for facilitating the removal of the laminated plate is arranged at the rear of the hot pressing table. The control component includes a mounting hole, a shock absorption cylinder, a shock absorption plate, a shock absorption rod, a rubber cushion plate, a shock absorption hole and a shock absorption groove. The shock absorption rod slowly moves downward, causing the hot pressing plate to slowly move downward and contact the laminated plate. The mounting hole is opened on the top of the hot pressing table, the shock absorption cylinder is fixedly installed on the inner wall of the mounting hole, the shock absorption plate is slidably installed on the inner wall of the shock absorption cylinder, the shock absorption rod is fixedly installed on the top of the shock absorption plate, the rubber cushion plate is fixedly installed on the front side of the bottom of the shock absorption rod, the shock absorption hole is opened on the top of the shock absorption cylinder, and the shock absorption groove is opened on the bottom of the hot pressing plate.

[0010] According to the above technical solution, a shock-absorbing spring is provided between the shock-absorbing cylinder and the shock-absorbing plate. When the shock-absorbing plate moves downward, an extrusion force is applied to the shock-absorbing spring. The shock-absorbing spring deforms and stores energy under the extrusion force of the shock-absorbing rod. After the shock-absorbing rod disengages from the contact with the hot pressing plate, the shock-absorbing plate can be driven to reset by the shock-absorbing spring. The rubber cushion plate contacts the shock-absorbing hole, and a linkage rod is fixedly installed at the bottom of the rear side of the shock-absorbing rod.

[0011] According to the above technical solution, the front side of the shock-absorbing rod is set as an arc surface, a square groove is opened at the top of the shock-absorbing plate, and the inner wall of the shock-absorbing groove is set as an arc surface. When the hot pressing plate moves downward, the shock-absorbing groove coincides with the shock-absorbing rod.

[0012] According to the above technical solution, the pushing component includes a mating groove, a mating rod, a pushing plate, a pushing spring, a through hole and a fixing ring. When the linkage rod slowly moves upward, the laminate cannot be immediately taken out after the hot pressing is completed. The mating groove is opened at the rear side of the hot pressing table, the mating rod is fixedly installed on the inner wall of the mating groove, the pushing plate is slidably installed on the circumferential surface of the mating rod, the pushing spring is arranged between the mating groove and the pushing plate. When the pushing plate moves backward, a pulling force is applied to the pushing spring. The pushing spring deforms and stores energy under the pulling force of the pushing plate. After the free end of the elastic telescopic rod disengages from the contact with the positioning hole, the pushing plate can be driven to reset by the pushing spring. The through hole is opened at the top of the pushing plate, and the fixing ring is fixedly installed at the rear side of the pushing plate.

[0013] According to the above technical solution, the front side of the pushing plate abuts against the laminate, the linkage rod contacts the top of the pushing plate, and a moving hole is opened at the top of the pushing plate. The laminate is pushed out of the base by the extrusion of the pushing plate, which is convenient for taking out the laminate.

[0014] The present invention provides a plywood hot pressing device for containers, having the following beneficial effects:

[0015] (1) For the plywood hot pressing device for containers, when multiple laminates are not completely aligned, the free end of the elastic telescopic rod moves upward to lift the front sides of the multiple laminates. The automatic lifting of the laminates by the elastic telescopic rod can remind the operator that the positions of the laminates are not aligned, thereby avoiding the problem of laminate misalignment and ensuring the accuracy during the hot pressing process. The elastic telescopic block moves to the left to contact the limiting hole and limit the hot pressing plate. If the laminate is over-compressed, air holes or bubbles will be formed between the laminates. By limiting the hot pressing plate, over-compression of the laminate is avoided, thereby improving the strength of the plywood and the use effect of the container.

[0016] (2) The plywood hot pressing device for containers causes the shock-absorbing rod to slowly move downward through the deformation of the rubber cushion plate. The slow downward movement of the shock-absorbing rod causes the hot pressing plate to slowly move downward and contact the laminate. The slow downward movement process of the hot pressing plate helps the glue between the laminates to spread evenly, avoiding the overflow of the glue from the contact surface due to excessive impact force, and ensuring the integrity of the bonding surface of the laminate.

[0017] (3) The plywood hot pressing device for containers avoids applying uneven extrusion pressure on the top of the laminate by the coincidence of the shock-absorbing groove and the shock-absorbing rod. The coincidence of the shock-absorbing groove and the shock-absorbing rod makes the pressure applied on the laminate more uniform, avoiding local damage or depression of the laminate caused by uneven pressure.

[0018] (4) The plywood hot pressing device for containers makes the laminate unable to be taken out immediately after the hot pressing is completed through the slow upward movement of the linkage rod. The temperature of the laminate is still relatively high after the hot pressing is completed. If it is taken out immediately, the board will crack due to the change of stress during thermal expansion and cooling. By restricting the laminate from being taken out immediately after the hot pressing is completed, it can help the laminate gradually adapt to the ambient temperature and reduce the cracking risk caused by thermal expansion and contraction.

[0019] (5) The plywood hot pressing device for containers ejects the laminate from inside the base by the extrusion of the push plate, facilitating the removal of the laminate. Through the control of the push plate, the laminate can be ejected from the base evenly and steadily, avoiding the risk of the board falling due to sliding during the removal process, and at the same time avoiding the operator reaching deep into the hot pressing area, reducing the possibility of the operator being scalded. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 is a schematic diagram of the overall structure of the present invention; Figure 2 is a schematic diagram of the position structure of the hydraulic equipment and the hot pressing plate of the present invention; Figure 3 is the present invention Figure 2 enlarged schematic diagram of the structure of part A in; Figure 4 is a schematic diagram of the semi-sectional structure of the hot pressing plate of the present invention; Figure 5 is the present invention Figure 4 enlarged schematic diagram of the structure of part B in; Figure 6 is a schematic diagram of the position structure of the push plate and the shock-absorbing rod of the present invention; Figure 7 is a schematic diagram of the semi-sectional structure of the shock-absorbing cylinder of the present invention; Figure 8 is a schematic diagram of the semi-sectional structure of the laminate of the present invention.

[0021] In the figure: 1. Hot press table; 2. Base; 3. Hot press rod; 4. Load-bearing plate; 5. Hydraulic equipment; 6. Hot press plate; 7. Hydraulic pipe; 8. Laminate; 9. Detection plate; 10. Elastic telescopic block; 11. Limit hole; 12. Positioning hole; 13. Elastic telescopic rod; 141. Mounting hole; 142. Damping cylinder; 143. Damping plate; 144. Damping spring; 145. Damping rod; 146. Rubber cushion plate; 147. Damping hole; 148. Linking rod; 149. Damping groove; 151. Fitting groove; 152. Fitting rod; 153. Pushing plate; 154. Pushing spring; 155. Through hole; 156. Fixed ring. Detailed implementation manner

[0022] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0023] Please refer to Figures 1 - 8 , an embodiment of the present invention is: A plywood hot pressing device for containers, including a hot press table 1, and also including a base 2. The base 2 is fixedly installed on the top of the hot press table 1. A hot press rod 3 is fixedly installed on the top of the hot press table 1. A load-bearing plate 4 is fixedly installed on the circumferential surface of the hot press rod 3. A hydraulic equipment 5 is fixedly installed on the top of the load-bearing plate 4. The output end of the hydraulic equipment 5 is fixedly installed with a hot press plate 6. A hydraulic pipe 7 is arranged on the right side of the hydraulic equipment 5. A laminate 8 is arranged on the top of the base 2. A detection plate 9 slides through the top of the hot press plate 6. An elastic telescopic block 10 slides through the left side of the top of the hot press plate 6. The inside of the hot press table 1 is of a cavity structure. A heat conduction pipe is arranged inside the base 2. The material of the base 2 is graphene; a limit hole 11 is opened on the circumferential surface of the hot press rod 3. The limit hole 11 is used to limit the hot press plate 6. The heat conduction pipe is used to heat the laminate 8; a positioning hole 12 is opened at the bottom of the laminate 8. The positioning hole 12 is used to facilitate the stacking of multiple laminates 8; an elastic telescopic rod 13 is fixedly installed on the top of the hot press table 1. The elastic telescopic rod 13 is used to detect whether multiple laminates 8 are aligned. The automatic lifting of the laminate 8 by the elastic telescopic rod 13 can remind the operator that the position of the laminate 8 is misaligned, thereby avoiding the problem of misalignment of the laminate 8 and ensuring the accuracy during the hot pressing process. By limiting the hot press plate 6, excessive compression of the laminate 8 is avoided, thereby improving the strength of the laminate 8 and the use effect of the container. The heat conduction efficiency of the base 2 can be improved by using graphene material, and the base 2 can be heated through the heat conduction pipe.

[0024] The right side of the elastic telescopic block 10 is set as an inclined plane. By setting the right side of the elastic telescopic block 10 as an inclined plane, the frictional force when the detection plate 9 presses the elastic telescopic block 10 can be reduced. The left side of the elastic telescopic block 10 is set as an arc surface. A first spring is arranged between the detection plate 9 and the elastic telescopic block 10. When the elastic telescopic block 10 moves to the left, it pulls the first spring. The first spring deforms and stores energy under the pull of the elastic telescopic block 10. After the hot pressing plate 6 disengages from the contact with the base 2, the elastic telescopic block 10 can be driven by the first spring to return to the initial position.

[0025] The elastic telescopic block 10 abuts against the hot pressing rod 3, the free end of the elastic telescopic rod 13 contacts the inner wall of the positioning hole 12, the top of the detection plate 9 contacts the elastic telescopic block 10, and the detection plate 9 moves upward to contact the inclined plane of the elastic telescopic block 10 and presses the elastic telescopic block 10.

[0026] During the operation of this embodiment: Manually place the rear side of the laminate 8 on the top of the base 2. When the rear side of the laminate 8 is placed on the top of the base 2, it will contact the elastic telescopic rod 13 and press the free end of the elastic telescopic rod 13. The free end of the elastic telescopic rod 13 moves downward and stores energy under the extrusion of the laminate 8. At the same time, manually push the laminate 8 to move backward. When the laminate 8 moves backward, the positioning hole 12 will be aligned with the free end of the elastic telescopic rod 13. After the positioning hole 12 is aligned with the free end of the elastic telescopic rod 13, the free end of the elastic telescopic rod 13 moves upward under the action of its own elastic force. If multiple laminates 8 are not completely aligned, the free end of the elastic telescopic rod 13 moving upward will lift the front sides of the multiple laminates 8. The multiple laminates 8 are lifted, thereby prompting the operator to re-stack the multiple laminates 8. After the multiple laminates 8 are stacked neatly, the hydraulic device 5 operates to drive the hot pressing plate 6 to move downward. The hot pressing plate 6 moving downward drives the detection plate 9 to move downward. The detection plate 9 moving downward contacts the top of the laminate 8 and presses the laminate 8. The detection plate 9 moves upward under the reaction force of the pressed laminate 8. The detection plate 9 moving upward contacts the inclined plane of the elastic telescopic block 10 and presses the elastic telescopic block 10. The elastic telescopic block 10 moves to the left under the extrusion of the detection plate 9. The elastic telescopic block 10 moving to the left contacts the limit hole 11 and limits the hot pressing plate 6. At the same time, the hot pressing plate 6 contacts the laminate 8 and performs hot pressing operation on the laminate 8.

[0027] Please refer to Figures 1 - 8, on the basis of the above embodiments, in another embodiment of the present invention, a control component for improving the gluing effect of the hot pressing plate 6 is provided on the top of the hot pressing table 1, and a pushing component for facilitating the removal of the laminate 8 is provided at the rear side of the hot pressing table 1. The control component includes a mounting hole 141, a shock absorption cylinder 142, a shock absorption plate 143, a shock absorption rod 145, a rubber cushion plate 146, a shock absorption hole 147, and a shock absorption groove 149. The mounting hole 141 is opened on the top of the hot pressing table 1, the shock absorption cylinder 142 is fixedly installed on the inner wall of the mounting hole 141, the shock absorption plate 143 is slidably installed on the inner wall of the shock absorption cylinder 142, the shock absorption rod 145 is fixedly installed on the top of the shock absorption plate 143, the rubber cushion plate 146 is fixedly installed on the front side of the bottom of the shock absorption rod 145, the shock absorption hole 147 is opened on the top of the shock absorption cylinder 142, and the shock absorption groove 149 is opened on the bottom of the hot pressing plate 6. The slow downward movement of the hot pressing plate 6 helps the glue between the laminates 8 to spread evenly, avoiding the glue overflowing from the contact surface due to excessive impact force, and ensuring the integrity of the bonding surface of the laminate 8.

[0028] A shock absorption spring 144 is arranged between the shock absorption cylinder 142 and the shock absorption plate 143. When the shock absorption plate 143 moves downward, it applies an extrusion force to the shock absorption spring 144. The shock absorption spring 144 deforms and stores energy under the extrusion force of the shock absorption rod 145. After the shock absorption rod 145 disengages from the contact with the hot pressing plate 6, the shock absorption spring 144 can drive the shock absorption plate 143 to reset, and the rubber cushion plate 146 contacts the shock absorption hole 147. A linkage rod 148 is fixedly installed at the bottom of the rear side of the shock absorption rod 145.

[0029] The front side of the shock absorption rod 145 is set as an arc surface, a square groove is opened on the top of the shock absorption plate 143, and the inner wall of the shock absorption groove 149 is set as an arc surface. When the hot pressing plate 6 moves downward, the shock absorption groove 149 coincides with the shock absorption rod 145. The coincidence of the shock absorption groove 149 and the shock absorption rod 145 makes the pressure applied to the laminate 8 more uniform, avoiding local damage or depression of the laminate 8 caused by uneven pressure.

[0030] The material pushing component includes a mating groove 151, a mating rod 152, a material pushing plate 153, a material pushing spring 154, a through hole 155 and a fixing ring 156. The mating groove 151 is formed at the rear side of the hot pressing table 1. The mating rod 152 is fixedly installed on the inner wall of the mating groove 151. The material pushing plate 153 is slidably installed on the circumferential surface of the mating rod 152. The material pushing spring 154 is arranged between the mating groove 151 and the material pushing plate 153. When the material pushing plate 153 moves backward, a pulling force is applied to the material pushing spring 154. The material pushing spring 154 deforms and stores energy under the pulling of the material pushing plate 153. After the free end of the elastic telescopic rod 13 disengages from the contact with the positioning hole 12, the material pushing spring 154 can drive the material pushing plate 153 to reset. The through hole 155 is formed at the top of the material pushing plate 153. The fixing ring 156 is fixedly installed at the rear side of the material pushing plate 153. By restricting the laminate 8 from being taken out immediately after hot pressing, it can help the laminate 8 gradually adapt to the ambient temperature and reduce the cracking risk caused by thermal expansion and contraction.

[0031] The front side of the material pushing plate 153 abuts against the laminate 8. The linkage rod 148 contacts the top of the material pushing plate 153. A moving hole is formed at the top of the material pushing plate 153. The laminate 8 is pushed out of the base 2 under the extrusion of the material pushing plate 153, which facilitates the taking out of the laminate 8. Under the control of the material pushing plate 153, the laminate 8 can be evenly and steadily pushed out of the base 2, avoiding the risk of the plate falling due to sliding during the taking out process, and at the same time avoiding the operator from stretching the limb deep into the hot pressing area to reduce the possibility of the operator being scalded.

[0032] When the present embodiment is working, the hot pressing plate 6 moves downward so that the shock absorbing groove 149 coincides with the shock absorbing rod 145, and at the same time, the hot pressing plate 6 moves downward to contact the shock absorbing rod 145 and squeeze the shock absorbing rod 145. The shock absorbing rod 145 moves downward under the squeezing of the hot pressing plate 6, and the shock absorbing rod 145 moves downward to drive the shock absorbing plate 143 to move downward, and the shock absorbing rod 145 moves downward to drive the rubber pad 146 to move downward, and the rubber pad 146 moves downward to contact the shock absorbing hole 147 and squeeze the shock absorbing hole 147. The rubber pad 146 is deformed by the reaction force of squeezing the shock absorbing hole 147, and the rubber pad 146 is deformed to cause the shock absorbing rod 145 to move downward slowly, and the shock absorbing rod 145 moves downward slowly to cause the hot pressing plate 6 to move downward slowly to contact the laminating plate The hot pressing plate 6 moves upward and resets to disengage from the shock absorbing rod 145. After the shock absorbing rod 145 is disengaged from the hot pressing plate 6, the shock absorbing plate 143 moves upward and resets under the elastic force of the shock absorbing spring 144. The shock absorbing plate 143 moves upward and resets, driving the shock absorbing rod 145 to move upward and reset. The shock absorbing rod 145 moves upward and resets, driving the rubber pad 146 to move upward and reset. The rubber pad 146 moves upward and contacts with the shock absorbing hole 147 and squeezes the shock absorbing hole 147. The rubber pad 146 is deformed by the reaction force of squeezing the shock absorbing hole 147. The rubber pad 146 is deformed, causing the shock absorbing rod 145 to slowly move upward and reset.

[0033] The damping plate 143 moves downward, driving the linkage rod 148 to move downward. The linkage rod 148 moves downward and contacts with the through hole 155 and limits the push plate 153. When the laminate 8 is manually pushed to move backward, the laminate 8 moves backward and contacts with the push plate 153 and squeezes the push plate 153. The push plate 153 moves backward due to the squeezing of the laminate 8. The push plate 153 moves backward so that the through hole 155 is aligned with the linkage rod 148. When the damping rod 145 moves upward to reset, the damping rod 145 moves upward slowly, driving the linkage rod 148 to move upward slowly. The linkage rod 148 slowly moves upward. The slow upward movement makes it impossible to take out the laminate 8 immediately after the hot pressing is completed. After the linkage rod 148 slowly moves upward and breaks away from the contact with the through hole 155, the free end of the elastic telescopic rod 13 is manually pressed downward, and the free end of the elastic telescopic rod 13 moves downward and breaks away from the contact with the positioning hole 12 and releases the limit on the laminate 8. At the same time, the push plate 153 moves forward under the elastic force of the push spring 154. The push plate 153 moves forward and contacts with the laminate 8 and squeezes the laminate 8. The laminate 8 is squeezed by the push plate 153 and pushed out of the base 2, thereby facilitating the removal of the laminate 8.

[0034] Although embodiments of the present invention have been shown and described, those of ordinary skill in the art will appreciate that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A plywood hot pressing device for a container, comprising a hot pressing table (1), characterized in that: It also comprises a base (2), the base (2) being fixedly mounted on the top of the hot pressing platform (1), a hot pressing rod (3) being fixedly mounted on the top of the hot pressing platform (1), a bearing plate (4) being fixedly mounted on the circumferential surface of the hot pressing rod (3), a hydraulic device (5) being fixedly mounted on the top of the bearing plate (4), a hot pressing plate (6) being fixedly mounted on the output end of the hydraulic device (5), a hydraulic pipe (7) being arranged on the right side of the hydraulic device (5), a laminate (8) being arranged on the top of the base (2), a detection plate (9) slidingly penetrating the top of the hot pressing plate (6), an elastic telescopic block (10) slidingly penetrating the left side of the top of the hot pressing plate (6), the interior of the hot pressing platform (1) being arranged as a cavity structure, a heat conducting pipe being arranged on the interior of the base (2), and the material of the base (2) being graphene; A limiting hole (11), wherein the limiting hole (11) is formed on the circumferential surface of the hot pressing rod (3), the limiting hole (11) is used to limit the hot pressing plate (6), and the heat conducting pipe is used to heat the laminate (8); A positioning hole (12), the positioning hole (12) being opened at the bottom of the laminate (8), the positioning hole (12) being used to facilitate the stacking of multiple layers of laminate (8); An elastic telescopic rod (13), wherein the elastic telescopic rod (13) is fixedly mounted on the top of the hot pressing platform (1), and the elastic telescopic rod (13) is used to detect whether a plurality of laminated boards (8) are aligned.

2. A plywood hot pressing device for a container according to claim 1, characterized in that: The right side of the elastic telescopic block (10) is arranged as an inclined surface, the left side of the elastic telescopic block (10) is arranged as an arc surface, a spring 1 is arranged between the detection plate (9) and the elastic telescopic block (10), a control component for improving the gluing effect of the hot pressing plate (6) is arranged on the top of the hot pressing platform (1), and a pushing component for facilitating the removal of the laminate (8) is arranged on the rear side of the hot pressing platform (1).

3. A plywood hot pressing device for a container according to claim 2, characterized in that: The elastic telescopic block (10) contacts the hot pressing rod (3), the free end of the elastic telescopic rod (13) contacts the inner wall of the positioning hole (12), and the top of the detection plate (9) contacts the elastic telescopic block (10).

4. The plywood hot pressing device for containers according to claim 3, characterized in that: The control component comprises a mounting hole (141), a shock absorbing cylinder (142), a shock absorbing plate (143), a shock absorbing rod (145), a rubber pad (146), a shock absorbing hole (147) and a shock absorbing groove (149), wherein the mounting hole (141) is provided at the top of the hot pressing platform (1), the shock absorbing cylinder (142) is fixedly installed on the inner wall of the mounting hole (141), the shock absorbing plate (143) is slidably installed on the inner wall of the shock absorbing cylinder (142), the shock absorbing rod (145) is fixedly installed on the top of the shock absorbing plate (143), the rubber pad (146) is fixedly installed on the front side of the bottom of the shock absorbing rod (145), the shock absorbing hole (147) is provided at the top of the shock absorbing cylinder (142), and the shock absorbing groove (149) is provided at the bottom of the hot pressing plate (6).

5. The plywood hot pressing device for containers according to claim 4, characterized in that: A shock absorbing spring (144) is provided between the shock absorbing cylinder (142) and the shock absorbing plate (143); the rubber pad (146) is in contact with the shock absorbing hole (147); and a linkage rod (148) is fixedly mounted on the rear bottom of the shock absorbing rod (145).

6. The plywood hot pressing device for containers according to claim 5, characterized in that: The front side of the shock absorbing rod (145) is configured as a curved surface, the top of the shock absorbing plate (143) is provided with a square groove, and the inner wall of the shock absorbing groove (149) is configured as a curved surface.

7. A plywood hot pressing device for a container according to claim 6, characterized in that: The pusher assembly comprises a matching groove (151), a matching rod (152), a pusher plate (153), a pusher spring (154), a through hole (155) and a fixing ring (156); the matching groove (151) is arranged at the rear side of the hot pressing table (1); the matching rod (152) is fixedly mounted on the inner wall of the matching groove (151); the pusher plate (153) is slidably mounted on the circumferential surface of the matching rod (152); the pusher spring (154) is arranged between the matching groove (151) and the pusher plate (153); the through hole (155) is arranged at the top of the pusher plate (153); and the fixing ring (156) is fixedly mounted on the rear side of the pusher plate (153).

8. The plywood hot pressing device for containers according to claim 7, characterized in that: The front side of the push plate (153) contacts the laminate (8), the linkage rod (148) contacts the top of the push plate (153), and a moving hole is provided on the top of the push plate (153).

Citation Information

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