Hot-pressing separation device

By combining the hot-press lifting mechanism and the downward-pressing separation drive of the hot-press separation device, the problems of deformation, damage and cracking during product separation are solved, and efficient and automated product recycling is achieved.

CN224087577UActive Publication Date: 2026-04-07WINTEK CHINA TECH LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-14
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

In the electronics/mobile phone industry, products are prone to defects such as deformation, damage and cracks during the separation process, resulting in low recycling rates and difficulty in reuse.

Method used

A hot-press separation device is used, which combines a hot-press lifting mechanism and a downward-pressing separation drive to first heat and liquefy the adhesive layer before separation, thus avoiding defects caused by direct downward pressing.

Benefits of technology

It improves recycling efficiency, reduces product loss, and achieves automated separation and efficient recycling of products.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a hot-pressing separating device which comprises a machine frame, a jig assembly, a hot-pressing driving assembly and a pressing separating driving piece, the jig assembly comprises a fixing jig, the fixing jig is arranged on the machine frame and forms a heated piece supporting face, a through hole is formed in the fixing jig, and the pressing separating driving piece is arranged on the fixing jig. The hot-pressing driving assembly comprises a hot-pressing lifting mechanism arranged on the rack and a heat conduction piece in driving connection with the hot-pressing lifting mechanism, the heat conduction piece faces the bearing face of the heated piece, the downward-pressing separation driving piece is arranged on the rack, and the telescopic end of the downward-pressing separation driving piece can penetrate through the through hole. And then downward pressing separation is carried out through the downward pressing separation driving piece, defects can be avoided in the separation process, and compared with the prior art, the effects of improving the recovery efficiency and reducing product loss are obviously achieved.
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Description

Technical Field

[0001] This utility model belongs to the field of product recycling technology, specifically relating to a hot-pressing separation device. Background Technology

[0002] With the continuous updates and iterations in the electronics / mobile phone industry, the mainstream trend is gradually spreading to the high-end market. With the performance of various models becoming increasingly similar, waterproofing has become a new battleground. As waterproofing requirements increase, products with different structural combinations are employing more complex and superior adhesive sealing processes. Currently, these products are prone to defects such as deformation, damage, and cracks during separation, resulting in high product loss costs, low recycling rates, and difficulty in reuse. Utility Model Content

[0003] In view of the above-mentioned defects or deficiencies, this utility model provides a hot-pressing separation device, which aims to solve the technical problem that defects are prone to occur when products are hot-pressed for separation and recycling.

[0004] To achieve the above objectives, this utility model provides a hot-press separation device, wherein the hot-press separation device includes a frame, a fixture assembly, a hot-press drive assembly, and a downward-pressing separation drive component; the fixture assembly includes a fixed fixture, which is disposed on the frame and forms a support surface for the heated component, and the fixed fixture is provided with a through hole; the hot-press drive assembly includes a hot-press lifting mechanism disposed on the frame and a heat-conducting component driven and connected to the hot-press lifting mechanism, the heat-conducting component being disposed facing the support surface for the heated component; the downward-pressing separation drive component is disposed on the frame and the telescopic end of the downward-pressing separation drive component can pass through the through hole.

[0005] In one embodiment of this utility model, the hot press lifting mechanism includes a hot press mounting frame, a hot press plate, and a hot press lifting drive component. The hot press mounting frame is mounted on a frame, and the hot press plate is mounted on the hot press mounting frame in a way that allows it to be lifted and lowered via a hot press lifting track. The telescopic end of the hot press lifting drive component is connected to the hot press plate in a driving connection. A heat-conducting component is located on the side of the hot press plate facing the support surface of the heated component. The telescopic end of the downward pressure separation drive component can pass through the hot press plate and the heat-conducting component in sequence.

[0006] In one embodiment of this utility model, the fixing fixture is provided with heat dissipation channels.

[0007] In one embodiment of the present invention, the fixture assembly further includes a movable fixture, which is disposed on the side of the fixed fixture away from the support surface of the heated component and has a boss portion.

[0008] The hot-pressing separation device also includes a fixture driving assembly, which is mounted on the frame and connected to the movable fixture drive. The fixture driving assembly can drive the boss to be aligned with the through hole.

[0009] In one embodiment of the present invention, the fixture assembly further includes a flexible support member, which is configured as a boss portion or disposed at the upper end of the boss portion.

[0010] In one embodiment of the present invention, the jig driving assembly includes a jig lifting mechanism and a jig translation drive. The jig lifting mechanism includes a lifting support, a lifting plate, and a jig lifting drive. The lifting support is mounted on the frame, and the lifting plate is mounted on the lifting support via a jig lifting track. The telescopic end of the jig lifting drive is driven to the lifting plate, and the jig translation drive is mounted on the lifting plate and its telescopic end is driven to the movable jig.

[0011] In one embodiment of this utility model, the hot press plate is provided with a buffer support extending toward the fixing fixture.

[0012] In one embodiment of this utility model, a position detection sensor is provided on the hot bearing plate.

[0013] In one embodiment of this utility model, the hot press mounting frame includes a side mounting frame, a side mounting plate, and a top mounting plate. The side mounting frame includes a vertical section and a horizontal section. The vertical section is erected on the frame, and the horizontal section extends laterally from the upper end of the vertical section. The side mounting plate is connected to the end of the horizontal section away from the vertical section. The side of the side mounting plate away from the horizontal section is provided for the hot press lifting track. The top mounting plate is located on the side of the side mounting plate away from the horizontal section and is located above the hot press lifting track. The hot press lifting drive and the downward pressure separation drive are both connected to the top mounting plate.

[0014] In one embodiment of the present invention, the hot-pressing separation device further includes a material collection and recycling component, which includes a material collection and lifting mechanism and a gripping drive component. The material collection and lifting mechanism is mounted on the frame, and the gripping drive component is driven to connect with the material collection and lifting mechanism. The gripping drive component has gripping fingers that can extend into the through hole.

[0015] In one embodiment of the present invention, the material handling and recycling assembly further includes a blower, a recycling guide channel, and a recycling box. The blower and the recycling guide channel are respectively disposed on opposite sides of the gripping drive. The blower can blow the loosened detachment on the gripping fingers toward the upper end of the recycling guide channel, and the lower end of the recycling guide channel guides the recycling box.

[0016] Through the above technical solution, the hot-pressing separation device provided by this utility model embodiment has the following beneficial effects:

[0017] When using the above-mentioned hot-press separation device, which includes a frame, fixture assembly, hot-press drive assembly, and downward-pressing separation drive component, when it is necessary to separate and recycle the heated parts (e.g., glass sheets) and the separated parts (decorative parts, such as plastic or hardware) in a product, the product can first be placed on a fixed fixture. The heated part support surface on the fixed fixture can support the heated parts, and the through holes on the fixed fixture can accommodate the corresponding separated parts in the product. Then, the hot-press lifting mechanism is controlled to drive the heat-conducting component to descend until it is in contact with the heated parts, and the heat-conducting component is controlled to... The hot part is heated, and after heating, the adhesive layer between the heated part and the separating part is liquefied and its viscosity is reduced. Then, the telescopic end of the pressure separation drive is controlled to extend toward the through hole to press the separating part away from the heated part, thereby realizing the automation of the separation. Since the heat-conducting part is preheated by the hot-press lifting mechanism and then pressure separation is performed by the pressure separation drive, defects can be avoided during the separation process. Compared with the existing technology, it significantly improves the recycling efficiency and reduces product loss.

[0018] Other features and advantages of this invention will be described in detail in the following detailed description section. Attached Figure Description

[0019] The accompanying drawings are provided to further illustrate the embodiments of the present invention and form part of the specification. They are used together with the following detailed description to explain the embodiments of the present invention, but do not constitute a limitation thereof. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without any inventive effort. In the drawings:

[0020] Figure 1 This is a schematic diagram of the structure of a hot-pressing separation device according to an embodiment of the present invention;

[0021] Figure 2 This is a partial structural schematic diagram of a hot-pressing separation device according to an embodiment of the present invention;

[0022] Figure 3 This is a partial structural schematic diagram of another thermo-pressing separation device according to one embodiment of the present invention;

[0023] Figure 4 This is a partial structural schematic diagram of another thermo-pressing separation device according to one embodiment of the present invention;

[0024] Figure 5 This is a schematic diagram of the controller assembly according to an embodiment of the present invention.

[0025] Explanation of reference numerals in the attached figures

[0026] 100 racks 200 fixtures

[0027] 210 Fixture base 211 Mounting slot

[0028] 212 Activity space 220 Supporting treatment components

[0029] 221 Heated component support surface; 222 Through hole

[0030] 223 Heat dissipation channels 300 Movable fixture

[0031] 310 Boss portion 320 Flexible support component

[0032] 400 Fixture drive assembly; 410 Fixture lifting mechanism

[0033] 411 Lifting support seat 412 Lifting platform

[0034] 413 Fixture lifting drive component; 414 Fixture lifting track

[0035] 420 Fixture translation drive component; 500 Hot press lifting mechanism

[0036] 510 Hot-press mounting bracket; 511 Side-mounted upright bracket

[0037] 512 Side mounting plate 513 Top mounting plate

[0038] 514 Hot-pressed lifting rail; 520 Hot-pressed pressure plate.

[0039] 521 Buffer support component; 522 Position detection sensor

[0040] 530 Hot-press lifting drive component; 540 Heat-conducting component.

[0041] 600 Downward pressure separation drive component; 700 Material handling lifting mechanism

[0042] 800 Grip drive component 810 Blow-off component

[0043] 820 Recycling Guide Channel 830 Recycling Box

[0044] 910 Emergency Stop Button 920 Start Button

[0045] 930 Hot pressing temperature presetter; 940 Hot pressing time presetter Detailed Implementation

[0046] The specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are for illustration and explanation only and are not intended to limit the scope of this utility model.

[0047] The hot-pressing separation device of this utility model is described below with reference to the accompanying drawings.

[0048] like Figures 1 to 4 As shown, this utility model provides a hot-pressing separation device, wherein the hot-pressing separation device includes:

[0049] 100 racks;

[0050] The fixture assembly includes a fixing fixture 200, which is disposed on the frame 100 and forms a heat-receiving component support surface 221. The fixing fixture 200 is provided with a through hole 222.

[0051] The hot press drive assembly includes a hot press lifting mechanism 500 disposed on the frame 100 and a heat-conducting component 540 drivenly connected to the hot press lifting mechanism 500. The heat-conducting component 540 is disposed facing the support surface 221 of the heated component.

[0052] The pressure separation drive unit 600 is mounted on the frame 100 and its telescopic end can pass through the through hole 222.

[0053] When using the aforementioned hot-press separation device, which includes a frame 100, a fixture assembly, a hot-press drive assembly, and a downward-pressing separation drive 600, when it is necessary to separate and recycle the heated parts (e.g., glass sheets) and the separated parts (decorative parts, such as plastic or hardware) of a product, the product can first be placed on the fixed fixture 200. The heated part support surface 221 on the fixed fixture 200 can support the heated parts, and the through holes 222 on the fixed fixture 200 can be used to place the separated parts of the product accordingly. Then, the hot-press lifting mechanism 500 is controlled to drive the heat-conducting component 540 to descend until it is in contact with the heated parts, and the heat-conducting component 540 is controlled to heat the heated parts. After heating, the adhesive layer between the heated component and the separating component can be liquefied and its viscosity reduced. Then, the telescopic end of the pressure separation drive 600 is controlled to extend toward the position of the through hole 222 to press the separating component away from the heated component, thereby realizing the automation of the separation between the two. Furthermore, since the heat-conducting component 540 is preheated by the hot-press lifting mechanism 500 and then pressure separation is performed by the pressure separation drive 600, instead of directly using the heat-conducting component 540 for pressure separation, defects such as deformation, damage, and cracks can be avoided during the hot-press separation process. Compared with the existing technology, this significantly improves the recycling efficiency and reduces product loss.

[0054] Specifically, the heat-conducting component 540 is equipped with heating tubes, and the number of heating tubes can be set to at least two to achieve rapid heating. Of course, the number of heating tubes can be adjusted according to the machine model structure. In addition, the downward pressure separation drive component 600 includes, but is not limited to, a telescopic cylinder.

[0055] In one embodiment of this utility model, the hot press lifting mechanism 500 includes a hot press mounting frame 510, a hot press plate 520, and a hot press lifting drive 530. The hot press mounting frame 510 is mounted on the frame 100. The hot press plate 520 is mounted on the hot press mounting frame 510 via a hot press lifting rail 514. The telescopic end of the hot press lifting drive 530 is drivenly connected to the hot press plate 520 and includes, but is not limited to, a telescopic cylinder. The heat-conducting element 540 is located on the side of the hot press plate 520 facing the support surface 221 of the heated component. The telescopic end of the downward pressure separation drive 600 passes through the hot press plate 520 and the heat-conducting element 540 from top to bottom. Both the hot press plate 520 and the heat-conducting component 540 have through holes for the telescopic end of the downward pressure separation drive component 600 to pass through. This allows the heat-conducting component 540 to heat the portion of the heat-receiving component surrounding the separator, ensuring that the adhesive layer between the separator and the heat-receiving component is liquefied and its viscosity is reduced in all directions. On the other hand, after the heat-conducting component 540 has heated the heat-receiving component, the entire hot press drive assembly does not need to be moved, and the downward pressure separation drive component 600 can perform downward pressure separation without interfering with the movement process of the hot press drive assembly. This achieves the purpose of reducing operation steps, reducing work cycle time, and reducing production costs.

[0056] Of course, this utility model is not limited to this. Both the hot-press drive assembly and the downward-pressing separation drive 600 can be mounted on the frame 100 via a rotary mechanism, so that after the heat-conducting component 540 heats the heated component, the hot-press drive assembly can first be rotated to the position of the offset through hole 222 via the corresponding rotary mechanism, and then the downward-pressing separation drive 600 can be rotated to the position opposite to the through hole 222 via the corresponding rotary mechanism, so that the telescopic end of the downward-pressing separation drive 600 can extend and press down to separate the component.

[0057] In one embodiment of this utility model, the fixing fixture 200 is provided with heat dissipation channels 223. The addition of heat dissipation channels 223 allows a cold source to pass through them, thereby reducing the surface temperature of the product and preventing deformation, damage, and cracking. Specifically, the heat dissipation channels 223 are located at the position where the heat-receiving support surface 221 is formed on the fixing fixture 200, and the cold source passing through the heat dissipation channels 223 can be either liquid or gas.

[0058] Please see again Figures 1 to 4In one embodiment of this utility model, the fixture assembly further includes a movable fixture 300, which is disposed on the side of the fixed fixture 200 away from the support surface 221 of the heated component and has a boss 310. The hot-pressing separation device further includes a fixture driving assembly 400, which is disposed on the frame 100 and drivenly connected to the movable fixture 300. The fixture driving assembly 400 can drive the boss 310 to be aligned with the through hole 222. That is, by adding the fixture driving assembly 400 and the movable fixture 300, the fixture driving assembly 400 can drive the movable fixture 300 to move before the pressing separation driving component 600 acts on the separating component, so that the boss 310 is aligned with the through hole 222, thereby providing support for the separating component aligned with the through hole 222, thereby improving the heating speed and preventing the product from deforming during the heating process. After the heat-conducting component 540 has finished heating the product, the fixture drive assembly 400 can also drive the movable fixture 300 to move so that the boss 310 moves away from the through hole 222, making it easier for the subsequent pressing and separating drive assembly 600 to press down the separating component.

[0059] Furthermore, the fixed fixture 200 includes a fixture base 210 and a supporting fixture body 220. The fixture base 210 is mounted on the frame 100. The supporting fixture body 220 is detachably mounted on the fixture base 210 and forms a heat-receiving component support surface 221. The supporting fixture body 220 has a through hole 222 at a position offset from the heat-receiving component support surface 221 and a heat dissipation channel 223 at a position on the heat-receiving component support surface 221. The fixture base 210 and the supporting fixture body 220 form an active space 212. The movable fixture 300 is disposed in the active space 212, and the bottom wall of the fixture base 210 has a drop hole at the corresponding through hole 222. The fixed fixture 200 is divided into a fixture base 210 and a support fixture 220, which not only facilitates the processing of the support surface 221 and the through hole 222 of the heated part, but also facilitates the installation and removal of the movable fixture 300 in the movable space 212. It also facilitates the replacement of the support fixture 220 to match different products. Specifically, the heated component of the product can be placed flat on the heated component support surface 221 of the support fixture 220, and the detachable component of the product can be positioned corresponding to the through hole 222. The fixture drive assembly 400 drives the movable fixture 300 to move within the movable space 212, so that the boss 310 on the movable fixture 300 is positioned directly opposite the through hole 222 and supports the detachable component upward. After the heat-conducting component 540 has finished heating the product, the fixture drive assembly 400 is first controlled to drive the movable fixture 300 to move within the movable space 212, so that the boss 310 on the movable fixture 300 moves away from the detachable component and the movable fixture 300 moves to a position offset from the through hole 222. Then, the pressing detachment drive assembly 600 is controlled to press down the detachable component. After the detachable component is separated from the heated component, it can pass through the movable space 212 and the drop hole sequentially from the through hole 222, so that the detachable component can be collected on the underside of the fixture base 210. It should be noted that the position of the frame 100 corresponding to the drop hole on the fixture base 210 can be set as a hollow setting or have a gap space to ensure that the material is unloaded.

[0060] Furthermore, the fixture base 210 is provided with a mounting groove 211 for the support fixture 220 to be fitted and placed. The addition of the mounting groove 211 facilitates the positioning of the support fixture 220. The movable space 212 is located on the lower side of the mounting groove 211 and is open on the side near the fixture drive assembly 400. That is, one end of the movable fixture 300 can extend out of the fixture base 210 to facilitate drive connection with the fixture drive assembly 400. The other end of the movable fixture 300 can form a boss 310.

[0061] In one embodiment of this utility model, the fixture assembly further includes a flexible support member 320, which is configured as a boss portion 310 or located at the upper end of the boss portion 310. By adding the flexible support member 320, the flexible support member 320 can support the separated part of the product before the heat-conducting member 540 contacts the heated part of the product. When the thermostatic lifting mechanism 500 drives the heat-conducting member 540 to contact the heated part of the product, the flexible support member 320 can provide buffer protection to prevent the product from being crushed or deformed. Furthermore, the flexible support member can be contoured to the surface of the separated part to ensure a close fit.

[0062] In one embodiment of this utility model, the fixture driving assembly 400 includes a fixture lifting mechanism 410 and a fixture translation drive 420. The fixture lifting mechanism 410 includes a lifting support 411, a lifting plate 412, and a fixture lifting drive 413. The lifting support 411 is mounted on the frame 100. The lifting plate 412 is movably mounted on the lifting support 411 via a fixture lifting track 414. The telescopic end of the fixture lifting drive 413 is drivenly connected to the lifting plate 412. The fixture translation drive 420 is mounted on the lifting plate 412, and its telescopic end is drivenly connected to the movable fixture 300. That is, the fixture driving assembly 400 can drive the movable fixture 300 to move up and down via the fixture lifting mechanism 410, and drive the movable fixture 300 to move in translation via the fixture translation drive 420, thereby achieving accurate control of the position of the boss portion 310 of the movable fixture 300. Specifically, the jig lifting mechanism 410 and the material handling and recycling component mentioned later can both be installed on the lower side of the fixed jig 200, while the hot-press drive component and the downward-pressing separation drive component 600 can be installed on the upper side of the fixed jig 200. Therefore, the telescopic end of the jig lifting drive component 413 should face upwards. This arrangement allows for reasonable installation space on both the upper and lower sides of the fixed jig 200. Both the jig lifting drive component 413 and the jig translation drive component 420 are, but are not limited to, telescopic cylinders.

[0063] In one embodiment of this utility model, a buffer support 521 extending towards the fixing fixture 200 is provided on the hot press plate 520. The addition of the buffer support 521 can prevent the product from being damaged due to overpressure of the heat-conducting component 540. Specifically, at least two buffer supports 521 can be provided on the hot press plate 520, and these two buffer supports 521 can be respectively disposed at two corner positions of the hot press plate 520, so that they can respectively abut against the fixing fixture 200 when the hot press lifting drive 530 drives the hot press plate 520 to lower the heat-conducting component 540. More specifically, the buffer support 521 is offset from the fixture body and is positioned directly opposite the fixture base 210, and the buffer support 521 is provided with a spring or flexible material for support.

[0064] In one embodiment of this utility model, a position detection sensor 522 is provided on the hot press plate 520. By adding the position detection sensor 522, it is convenient to detect the position of the hot press plate 520 and the heat-conducting component 540. Specifically, when it is detected that the heat-conducting component 540 has descended to fit against the heated component of the product, the hot press lifting drive component 530 is stopped from continuing to drive, so as to avoid overpressure.

[0065] In one embodiment of this utility model, the hot press mounting frame 510 includes a side mounting bracket 511, a side mounting plate 512, and a top mounting plate 513. The side mounting bracket 511 includes a vertical section erected on the frame 100 and a horizontal section that extends laterally from the upper end of the vertical section, so as to form a gantry frame shape. The side mounting plate 512 is connected to the end of the horizontal section away from the vertical section. The side of the side mounting plate 512 away from the horizontal section is provided for the hot press lifting rail 514. The top mounting plate 513 is provided on the side of the side mounting plate 512 away from the horizontal section and located above the hot press lifting rail 514, so as to provide space for the hot press lifting drive component 530 and the downward pressure separation drive component 600. That is, by setting up the hot press mounting frame 510, it is possible to integrate and install the hot press lifting rail 514, the hot press lifting drive component 530, and the downward pressure separation drive component 600, thereby reducing production costs.

[0066] Please see again Figures 1 to 4 In one embodiment of this utility model, the hot-pressing separation device further includes a material handling and recycling component. The material handling and recycling component includes a material handling lifting mechanism 700 and a gripping drive component 800. The material handling lifting mechanism 700 is mounted on the frame 100 and may include, but is not limited to, a telescopic cylinder. The gripping drive component 800 is drivenly connected to the material handling lifting mechanism 700 and has gripping fingers that can extend into the through hole 222. After the heat-conducting component 540 completes heating of the heated component, the material handling lifting mechanism 700 can drive the gripping drive component 800 to move, so that the gripping fingers of the gripping drive component 800 extend into the through hole 222 to grasp the separated component of the product. Then, the pressing separation drive component 600 is controlled to press down on the separated component. After the pressing separation is completed, the gripping drive component 800 controls the gripping fingers to release the grip on the separated component, thereby facilitating the recycling of the separated component. It should be noted that the product's detachable component can protrude from the heated component to facilitate the gripping drive 800 driving the gripping fingers to grip the detachable component.

[0067] In one embodiment of this utility model, the material handling and recycling assembly further includes a blower 810, a recycling guide channel 820, and a recycling box 830. The blower 810 and the recycling guide channel 820 are respectively disposed on opposite sides of the gripping drive member 800. The blower 810 can blow the separated parts released from the gripping fingers towards the upper end of the recycling guide channel 820, and the lower end of the recycling guide channel 820 guides the recycling box 830. That is, through the blower 810, the recycling guide channel 820, and the recycling box 830, the separated parts can be automatically recycled to the recycling box 830, improving the efficiency of the recycling work. Specifically, the blower 810 includes, but is not limited to, an air gun.

[0068] In one embodiment of this utility model, the fixture assembly can be used to position and place two products. Specifically, a fixture base 210 is provided with two supporting fixtures 220. The number of hot-press drive assembly, downward pressure separation drive component 600, movable fixture 300, fixture drive assembly 400 and material picking and recycling assembly can all be two. The hot-press mounting brackets 510 of the two hot-press drive assemblies are respectively disposed on opposite sides of the fixture base 210 and are respectively corresponding to the two supporting fixtures 220. The two movable fixtures 300 are respectively disposed in two movable spaces 212 respectively disposed in the fixture base 210 corresponding to the two supporting fixtures 220. The two fixture drive assemblies 400 are respectively driven and connected to the two movable fixtures 300 respectively. The two material picking and recycling assemblies are respectively corresponding to the two supporting fixtures 220.

[0069] See Figure 5In one embodiment of this utility model, the hot-pressing separation device further includes a controller assembly mounted on the frame 100. The controller assembly includes at least one of an emergency stop button 910, a start button 920, a hot-pressing temperature presetter 930, and a hot-pressing time presetter 940. The emergency stop button 910 is used to stop the device in case of an emergency. The start button 920 is used to start the device. Specifically, there may be two start buttons 920, which correspond to controlling the hot-pressing lifting mechanism 500 and the fixture drive assembly 400, respectively. The hot-pressing temperature presetter 930 can set the preheating temperature that the heat-conducting component 540 can reach to ensure the heating effect. The hot-pressing time presetter 940 is used to set the heating time of the heat-conducting component 540 on the heated component to ensure the heating effect. In addition, the frame 100 can be configured as a box with upper and lower installation spaces. The upper installation space can be used to install the fixture assembly, the hot pressing drive assembly, and the lower pressure separation drive 600. The lower installation space can be used to install the fixture drive assembly 400 and the material handling and recycling assembly. Handles can be provided on opposite sides of the frame 100 for auxiliary handling. The outer side of the frame 100 is also equipped with a time relay, a pressure gauge, and an alarm. The main function of the time relay is to control the pressure holding time of the cylinder drive. The pressure gauge is used to control and adjust the pressure generated by the piston movement of the cylinder drive. The upper installation space of the sensing grating is located on opposite sides and is mainly used to detect the presence of dangerous areas during machine operation and to improve the safety of the production line.

[0070] Specifically, the working process of the hot-pressing separation device will be described below:

[0071] Pressing the start button 920 causes the telescopic end of the fixture translation drive 420 in the fixture drive assembly 400 to extend, pushing the movable fixture 300 to translate within the movable space 212 until the boss 310 is aligned with the through hole 222. Simultaneously, the telescopic end of the fixture lifting drive 413 in the fixture drive assembly 400 extends, lifting the movable fixture 300 until the boss 310 contacts the product's separating component and can support the product. A probe is provided on the boss 310; upon sensing the product, it transmits a signal to the thermopressing lifting mechanism 500. The telescopic end of the thermopressing lifting drive 530 extends, driving the heat-conducting component 540 connected to the thermopressing carrier plate 520 to move downwards, pressing it onto the product in the fixed fixture 200 and conducting heat to the product's heated components. Air is blown through the heat dissipation channels 223 on the fixed fixture 200 to reduce the surface heat of the product. The heat conduction time and downward pressure can be adjusted as needed using a time relay and air pressure settings.

[0072] After the heating effect of the heat-conducting component 540 on the heated component reaches the set heating time, the telescopic end of the jig lifting drive 413 retracts to drive the movable jig 300 to descend. The telescopic end of the jig translation drive 420 retracts to the origin. After the movable jig 300 and the boss 310 leave the product, the material picking lifting mechanism 700 drives the gripping drive 800 to rise to the predetermined position. The gripping drive 800 controls the gripping fingers to open and grasp the product's separating part, and then controls the telescopic end of the pressing separation drive 600 to extend to press the product's separating part down and separate it from the heated component. The gripping fingers descend simultaneously with the separating part under the drive of the material picking lifting mechanism 700. The material lifting mechanism 700 drives the gripping fingers and the separation parts on the gripping fingers to descend to the origin. The gripping drive component 800 controls the gripping fingers to open automatically. At this time, the sensing blow-off component 810 automatically blows air to blow the separation parts away from the gripping fingers and into the recycling guide channel 820, and finally into the recycling box 830. If an emergency stop is required during operation, the emergency stop button 910 can be pressed to immediately stop the equipment.

[0073] In the description of this utility model, it should be understood that the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this utility model, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0074] In this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," "joining," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection, an electrical connection, or a connection that allows communication between them; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components, unless otherwise explicitly limited. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0075] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.

[0076] Although embodiments of the present invention have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting the present invention. Those skilled in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of the present invention.

Claims

1. A hot-pressing separation device, characterized in that, The hot-pressing separation device includes: Rack (100); The fixture assembly includes a fixing fixture (200), which is disposed on the frame (100) and forms a heat-receiving component support surface (221). The fixing fixture (200) is provided with a through hole (222). The hot press drive assembly includes a hot press lifting mechanism (500) disposed on the frame (100) and a heat-conducting component (540) drivenly connected to the hot press lifting mechanism (500), wherein the heat-conducting component (540) is disposed facing the support surface (221) of the heated component; A pressure separation drive (600) is provided on the frame (100), and the telescopic end of the pressure separation drive (600) can pass through the through hole (222).

2. The hot-pressing separation device according to claim 1, characterized in that, The hot press lifting mechanism (500) includes a hot press mounting frame (510), a hot press plate (520), and a hot press lifting drive (530). The hot press mounting frame (510) is mounted on the frame (100). The hot press plate (520) is mounted on the hot press mounting frame (510) via a hot press lifting rail (514). The telescopic end of the hot press lifting drive (530) is driven to connect with the hot press plate (520). The heat-conducting component (540) is located on the side of the hot press plate (520) facing the support surface (221) of the heated component. The telescopic end of the downward pressure separation drive (600) can pass through the hot press plate (520) and the heat-conducting component (540) in sequence.

3. The hot-pressing separation device according to claim 1 or 2, characterized in that, The fixing fixture (200) is provided with heat dissipation channels (223).

4. The hot-pressing separation device according to claim 1, characterized in that, The fixture assembly also includes a movable fixture (300), which is disposed on the side of the fixed fixture (200) away from the support surface (221) of the heated component, and is provided with a boss (310). The hot-pressing separation device also includes a fixture driving assembly (400), which is disposed on the frame (100) and drivenly connected to the movable fixture (300). The fixture driving assembly can drive the boss (310) to be correspondingly arranged with the through hole (222).

5. The hot-pressing separation device according to claim 4, characterized in that, The fixture assembly further includes a flexible support member (320), which is provided as the boss portion (310) or at the upper end of the boss portion (310).

6. The hot-pressing separation device according to claim 4 or 5, characterized in that, The fixture drive assembly (400) includes a fixture lifting mechanism (410) and a fixture translation drive (420). The fixture lifting mechanism (410) includes a lifting support (411), a lifting plate (412), and a fixture lifting drive (413). The lifting support (411) is mounted on the frame (100). The lifting plate (412) is mounted on the lifting support (411) via a fixture lifting track (414). The telescopic end of the fixture lifting drive (413) is driven to connect with the lifting plate (412). The fixture translation drive (420) is mounted on the lifting plate (412), and the telescopic end of the fixture translation drive (420) is driven to connect with the movable fixture (300).

7. The hot-pressing separation device according to claim 2, characterized in that, The hot pressure plate (520) is provided with a buffer support (521) extending toward the fixing fixture (200); And / or, the hot ballast plate (520) is provided with a position detection sensor (522).

8. The hot-pressing separation device according to claim 2, characterized in that, The hot press mounting frame (510) includes a side mounting frame (511), a side mounting plate (512), and a top mounting plate (513). The side mounting frame (511) includes a vertical section and a horizontal section. The vertical section is erected on the frame (100). The horizontal section extends laterally from the upper end of the vertical section. The side mounting plate (512) is connected to the end of the horizontal section away from the vertical section. The side of the side mounting plate (512) away from the horizontal section is provided for the hot press lifting track (514). The top mounting plate (513) is located on the side of the side mounting plate (512) away from the horizontal section and is located on the upper side of the hot press lifting track (514). The hot press lifting drive (530) and the downward pressure separation drive (600) are both connected to the top mounting plate (513).

9. The hot-pressing separation device according to claim 1, characterized in that, The hot-pressing separation device further includes a material collection and recycling component, which includes a material collection lifting mechanism (700) and a gripping drive component (800). The material collection lifting mechanism (700) is mounted on the frame (100), and the gripping drive component (800) is drivenly connected to the material collection lifting mechanism (700). The gripping drive component (800) has gripping fingers that can extend into the through hole (222).

10. The hot-pressing separation device according to claim 9, characterized in that, The material handling and recycling assembly further includes a blower (810), a recycling guide channel (820), and a recycling box (830). The blower (810) and the recycling guide channel (820) are respectively disposed on opposite sides of the gripping drive (800). The blower (810) blows the released detachment from the gripping fingers toward the upper end of the recycling guide channel (820), and the lower end of the recycling guide channel (820) guides the recycling box (830).