Hot pressing device

By designing an automated hot pressing device, the automatic feeding, hot pressing, and unloading of materials are realized, solving the problems of low production efficiency and high labor costs in existing technologies, improving production efficiency, and saving labor costs.

CN223948633UActive Publication Date: 2026-02-27CHANGZHOU WUJIN HUARUI ELECTRONICS
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Patent Information

Application Number
CN202520343943.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-28
Publication Date
2026-02-27
Estimated Expiration
2035-02-28

AI Technical Summary

Technical Problem

Existing hot pressing equipment has low production efficiency, high labor costs, and requires manual loading and unloading, resulting in low efficiency.

Method used

Design a hot pressing device, including a hot pressing component, a sliding component, a top-loading component, and a bottom-loading component, to realize automatic material feeding, hot pressing, and unloading. The sliding component drives the hot pressing lower mold to move, the top-loading component lifts up the material and the material automatically falls, and the bottom-loading component realizes automatic material unloading through a baffle plate and a sliding plate.

Benefits of technology

It improves production efficiency, reduces labor costs, realizes automated hot pressing processing of materials, saves manual operation, has a compact structure, and is stable in operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of hot-pressing processing, in particular to a hot-pressing device which comprises a hot-pressing assembly, a sliding assembly, a material ejecting assembly and a discharging assembly, the hot-pressing assembly comprises a hot-pressing lower die and a hot-pressing upper die, the hot-pressing lower die is used for placing materials, and the hot-pressing upper die can move towards the hot-pressing lower die to carry out hot pressing on the materials. The sliding assembly is arranged on the bottom plate and can drive the hot-pressing lower die to slide inwards to the hot-pressing position and slide outwards to the feeding position, the material ejecting assembly is used for ejecting the current material after hot-pressing is completed, the discharging assembly comprises a material blocking plate, and the ejected material can be driven to move towards the material blocking plate. And after being blocked by the material blocking plate, the materials can fall off from a material falling opening formed in the bottom plate. According to the hot-pressing device provided by the utility model, materials subjected to hot-pressing processing can automatically fall onto an assembly line from the blanking port on the bottom plate, so that the production efficiency is improved, the labor is saved, and the hot-pressing device has the advantages of compact structure, stable work and the like.
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Description

TECHNICAL FIELD

[0001] The utility model relates to hot pressing processing technical field, concretely relates to a hot pressing device. BACKGROUND

[0002] Hot pressing refers to processing and connecting two or more materials by heating and applying pressure, or deforming a hot melt column on a shell, such as forming a mushroom head, to fix an object on the shell after cooling.

[0003] In the prior art, the utility model discloses a hot pressing device, which comprises a lower mold, a plastic part product to be processed is placed in the lower mold, the lower mold can be heated by a heating table at the bottom, and an extrusion mold is arranged above the lower mold and can move downward to hot press the plastic part product. The hot pressing device needs to manually place the product in the lower mold, and the product needs to be manually taken out from the lower mold after hot pressing, so the production efficiency is low and the labor cost is high. UTILITY MODEL CONTENTS

[0004] The utility model discloses a hot pressing device, which can automatically drop the workpiece after hot pressing to improve the production efficiency and save the labor cost.

[0005] The technical scheme of the utility model comprises the following:

[0006] A hot pressing device comprises:

[0007] A hot pressing assembly, which comprises a hot pressing lower mold and a hot pressing upper mold, the hot pressing lower mold is used for placing materials, and the hot pressing upper mold can move towards the hot pressing lower mold to hot press the materials;

[0008] A sliding assembly, which is arranged on a bottom plate and can drive the hot pressing lower mold to slide inward to a hot pressing position and slide outward to a feeding position;

[0009] A material lifting assembly, which is used for lifting the current material after hot pressing;

[0010] A material discharging assembly, which comprises a material blocking plate, the lifted material can be driven to move towards the material blocking plate, and the material can drop from a discharging opening of the bottom plate after being blocked by the material blocking plate.

[0011] Further, a conveying line is arranged below the bottom plate, and the material drops from the discharging opening of the bottom plate to the conveying line.

[0012] Optionally, the blanking assembly further comprises a sliding module and an inserting plate, the sliding module is capable of moving with the inserting plate to receive the material below the material being jacked up, when the jacking assembly is reset and the hot pressing lower die is away from the hot pressing position, the sliding module is capable of moving back with the inserting plate and the material, and the material falls under the blocking of the blocking plate.

[0013] Further, a sliding connecting plate is connected to the sliding part of the sliding module, and a vertical waist round hole is arranged on the inserting plate for cooperating with the sliding connecting plate.

[0014] Further, the inserting plate comprises a left inserting plate and a right inserting plate, and the jacking assembly jacks up the middle part of the material; the left and right inserting plates are installed on the left and right sides of the sliding connecting plate; the moving direction of the sliding module is parallel to the sliding direction of the hot pressing lower die; the sliding module is arranged above one side of the blanking opening, and a protection plate is further arranged on the sliding module.

[0015] Optionally, the blanking assembly further comprises a sliding plate arranged obliquely downward, the sliding plate is installed on the sliding assembly, and the sliding plate and the blocking plate are respectively located on the inner and outer sides of the material being jacked up; the sliding assembly drives the material being jacked up to move towards the blocking plate, and the material falls along the sliding plate under the blocking of the blocking plate.

[0016] Further, the sliding plate is located on the inner side of the material being jacked up, and the blocking plate is located on the outer side of the material being jacked up; the blocking plate is installed at a preset height in a vertical adjustable manner.

[0017] Further, the hot pressing assembly further comprises a heating module and a driving module, the hot pressing upper die comprises a plurality of hot pressing heads, the heating module is used for heating the hot pressing heads, and the driving module is used for driving the heating module and the hot pressing heads to move towards or away from the hot pressing lower die.

[0018] Further, the sliding assembly comprises two fixed guide rails arranged on the bottom plate, the two fixed guide rails are arranged in parallel, and the two fixed guide rails are respectively connected to a sliding table through sliding blocks, and the hot pressing lower die is arranged on the sliding table.

[0019] The sliding assembly further comprises a sliding module, the sliding module is arranged at the bottom of the bottom plate, a moving plate is further connected to the sliding part of the sliding module, the moving plate passes through the blanking opening, and is connected to the sliding table or inserted into an insertion opening arranged on the sliding table.

[0020] Further, the material lifting assembly comprises a material lifting connecting plate and a material lifting module, the material lifting connecting plate is fixedly arranged at the bottom of the sliding table, the material lifting module is installed on the material lifting connecting plate, a lifting part of the material lifting module is provided with a connecting piece, one or more material lifting teeth are installed on the connecting piece, when the material lifting module works, the material lifting teeth move along the corresponding through opening arranged on the sliding table and the hot pressing lower die to directly or indirectly lift the material.

[0021] After the technical scheme is applied, compared with the prior art, the hot pressing device has the following beneficial effects: the hot pressing device provided by the utility model can only feed the material, automatically heat press the material after feeding, and directly drop the material from the material falling opening on the bottom plate to realize automatic discharging after heat pressing, so that the production efficiency is improved and the labor cost is reduced. BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 FIG. 1 is a schematic diagram of the overall structure of the hot pressing device in the first perspective view according to the first embodiment;

[0023] Figure 2 FIG. 2 is a schematic diagram of the overall structure of the hot pressing device in the second perspective view according to the first embodiment;

[0024] Figure 3 FIG. 3 is a schematic diagram of the overall structure of the hot pressing device in the third perspective view according to the first embodiment;

[0025] Figure 4 FIG. 4 is a schematic diagram of the structure of the sliding assembly according to the first embodiment;

[0026] Figure 5 FIG. 5 is a schematic diagram of the structure of the material lifting assembly according to the first embodiment;

[0027] Figure 6 FIG. 6 is a schematic diagram of the structure of the material lifting module according to the first embodiment;

[0028] Figure 7 FIG. 7 is a schematic diagram of the structure of the material falling assembly according to the first embodiment in one perspective view;

[0029] Figure 8 FIG. 8 is a schematic diagram of the structure of the material falling assembly according to the first embodiment in another perspective view;

[0030] Figure 9 FIG. 9 is a schematic diagram of the overall structure of the hot pressing device according to the second embodiment;

[0031] Figure 10 FIG. 10 is a schematic diagram of the structure of the material falling assembly according to the second embodiment;

[0032] Figure 11 FIG. 11 is a schematic diagram of the structure of the material lifting assembly according to the second embodiment.

[0033] wherein,

[0034] hot pressing assembly 1; hot pressing lower die 11, groove 111, pass 112, detection sensor 113, slot 114; hot pressing upper die 12, hot pressing head 121; heating module 13; driving module 14, guide rod 141;

[0035] sliding assembly 2; fixed guide rail 21; sliding block 22; sliding table 23, insertion opening 231; sliding module 24; moving plate 25; buffer 26;

[0036] topping assembly 3; topping connecting plate 31; topping module 32; adapter piece 33; topping tooth 34; topping plate 35;

[0037] material feeding assembly 4; material blocking plate 41, clamp 411; material insertion plate 42, left material insertion plate 421, right material insertion plate 422, vertical waist round hole 423; sliding module 43, sliding connecting plate 431, sliding guide rail 432, fixed sliding block 433, protection plate 434; material sliding plate 44, material sliding edge 441;

[0038] material 5;

[0039] bottom plate 6; material falling opening 61; rack 62; left side door 63; right side door 64; rear door 65; grating sensor 66. DETAILED DESCRIPTION

[0040] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. The description of the at least one exemplary embodiment is actually only illustrative, but not as any limitation on the present application and its application or use. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0041] It should be noted that the terms used herein are only for the purpose of describing specific embodiments, and are not intended to limit the exemplary embodiments according to the present application. As used herein, the singular form is intended to include the plural form unless the context clearly indicates otherwise, and it should also be understood that when the terms "comprise" and / or "include" are used in the specification, there is a feature, step, operation, device, component and / or combination thereof.

[0042] In the description of the utility model, it is understood that the orientation words such as '' front, back, top, bottom, left, right '' '' horizontal, vertical, perpendicular, horizontal '' and '' top, bottom '' and the like indicated orientation or positional relationship usually based on the orientation or positional relationship shown in the drawing, just for the convenience of describing the utility model and simplifying the description, in the absence of the opposite statement, these orientation words do not indicate and imply the device or element must have a particular orientation or be constructed and operated in a particular orientation, therefore it can not be understood as the limitation of the protection scope of the utility model;The orientation words '' inside, outside '' refer to the inside and outside relative to the contour of each component.

[0043] For the convenience of description, spatial relative terms such as '' above'', '' above'', '' upper surface'', '' upper '' and the like can be used here to describe the spatial position relationship of one device or feature with other devices or features as shown in the drawing. It should be understood that the spatial relative terms are intended to include different orientations in use or operation in addition to the orientation of the device described in the drawing. For example, if the device in the drawing is inverted, the device described as '' above '' or '' above '' other devices or structures will be positioned '' below '' or '' below '' other devices or structures. Thus, the exemplary term '' above '' can include both '' above '' and '' below '' orientations. The device can also be positioned in other different ways (rotated 90 degrees or in other orientations), and the spatial relative description used here is interpreted accordingly.

[0044] Embodiment one:

[0045] As Figures 1-3 shown, the utility model provides a kind of hot-pressing device, which includes hot-pressing component 1, sliding assembly 2, material feeding assembly 3 and blanking assembly 4, wherein the hot-pressing component 1 includes hot-pressing lower die 11 and hot-pressing upper die 12, the hot-pressing lower die 11 is used to place material 5, for example, recess 111 is set to place material 5, corresponding different material 5 can be set to different shape structure's recess 111 and hot-pressing lower die 11, hot-pressing upper die 12 can be driven towards hot-pressing lower die 11 and move to material 5 and carry out hot-pressing.

[0046] Further, the sliding assembly 2 is arranged on the bottom plate 6, the bottom plate 6 is installed on the rack 62, the rack 62 is a frame structure, the hot-pressing lower die 11 is installed on the sliding assembly 2, the sliding assembly 2 can drive the hot-pressing lower die 11 to slide inwards to the hot-pressing position (i.e. the opposite lower side of hot-pressing upper die 12) and carry out hot-pressing, and can drive the hot-pressing lower die 11 to slide outwards to the material feeding position (i.e. the edge of front side) to facilitate placing new material 5 needing hot-pressing processing.

[0047] Furthermore, the ejector assembly 3 is used to lift the material 5 after the hot pressing position is completed. The ejector assembly 3 can be fixedly set below the hot pressing position, or set below the hot pressing lower mold 11 and slide together with it.

[0048] Furthermore, the feeding assembly 4 includes a baffle plate 41, which can drive the lifted material 5 towards the baffle plate 41. After being blocked by the baffle plate 41, the material 5 can fall from the discharge port 61 opened on the bottom plate 6. For example, a receiving module can be set to receive the lifted material 5, and then release the material 5 after the hot pressing mold 11 leaves the hot pressing position, so that the material 5 can fall from the discharge port 61 opened on the bottom plate 6. The discharge port 61 is located below the hot pressing position. Preferably, a conveyor line / production line (not shown in the figure) can also be set below the discharge port 61. After the material 5 falls on the conveyor line, it can continue to be conveyed downstream to form a line-fed hot pressing device; or in other embodiments, a storage box can also be set below the discharge port 61, and the material 5 falls directly into the storage box.

[0049] Thus, the hot pressing device provided in this embodiment, compared with the prior art, only requires feeding the material 5 when processing it. After feeding, the material 5 is automatically hot-pressed, and the hot-pressed material 5 will fall directly from the discharge port 61 on the bottom plate 6 for automatic unloading. Then, the next material 5 is fed, which improves production efficiency. Moreover, the operators of the previous process can directly feed the material for hot pressing. The hot-pressed material 5 automatically falls onto the production line, eliminating the need to set up separate workstations and personnel for hot pressing and unloading, thus saving certain labor costs.

[0050] like Figure 2 As shown, the hot pressing assembly 1 in this embodiment further includes a heating module 13 and a driving module 14. The upper hot pressing mold 12 includes several hot pressing heads 121. The heating module 13 includes heaters and thermometers, etc. The heating module 13 is connected to the upper hot pressing mold 12 and is used to heat the hot pressing heads 121 to a set temperature. The driving module 14 may be, but is not limited to, a cylinder, used to drive the heating module 13 and the hot pressing heads 121 to move toward or away from the lower hot pressing mold 11. The material 5 may be, but is not limited to, an assembly formed by a circuit board and a housing. The circuit board is placed on the housing, and the circuit board has several fixing holes. Several hot melt pillars are correspondingly provided on the housing. When the circuit board is placed on the housing, the hot melt pillars pass through the fixing holes. The hot pressing heads 121 are arranged one-to-one with the hot melt pillars. The hot pressing heads 121 deform each hot melt pillar by hot pressing, so that the circuit board is fixed on the housing.

[0051] like Figure 1 , 4As shown, the sliding assembly 2 of the embodiment includes two fixed guide rails 21 arranged on the bottom plate 6, the two fixed guide rails 21 are arranged in parallel, and the two fixed guide rails 21 are connected to the sliding table 23 through the sliding blocks 22 respectively. The hot pressing lower die 11 is arranged on the sliding table 23, and the hot pressing lower die 11 is moved along the fixed guide rails 21 by the sliding table 23, so as to be moved inwardly to the hot pressing position at the rear side and to be moved outwardly to the feeding position at the front side. Preferably, the feeding opening 61 on the bottom plate 6 is arranged in the middle of the two fixed guide rails 21, so that the structure arrangement is compact and space-saving.

[0052] Further, the sliding assembly 2 further includes a sliding module 24, which is optional but not limited to a pneumatic cylinder. The sliding module 24 is arranged at the bottom of the bottom plate 6, and a moving plate 25 is further connected to the sliding part of the sliding module 24. The moving plate 25 penetrates the feeding opening 61 upwardly, and is fixedly connected to the sliding table 23 or is inserted into the insertion opening 231 arranged on the sliding table 23. The sliding module 24 can drive the moving plate 25 to move along the direction parallel to the fixed guide rails 21, and the moving plate 25 drives the sliding table 23 to move at the same time. For example, Figure 4 A buffer 26 is further arranged on the bottom plate 6 corresponding to the sliding table 23. In the embodiment, the sliding module 24 is arranged at the bottom of the bottom plate 6, so as to make full use of the bottom space and make the overall structure more compact. Of course, the corresponding space needs to be reserved at the bottom of the rack 62.

[0053] For example, Figure 2 、 5 As shown in FIG. 6, the top feeding assembly 3 of the embodiment includes a top feeding connecting plate 31 and a top feeding module 32. The top of the top feeding connecting plate 31 is fixedly arranged at the bottom of the sliding table 23. The top feeding module 32 is optional but not limited to a pneumatic cylinder. The top feeding module 32 is installed on the side surface of the top feeding connecting plate 31. The jacking part, i.e., the upper end of the top feeding module 32, is provided with an adapter piece 33. One or more top feeding teeth 34 are installed on the adapter piece 33. When the top feeding module 32 acts, the top feeding teeth 34 penetrate the through opening 112 arranged on the sliding table 23 and the hot pressing lower die 11 to jack up the material 5 to a certain height. In the embodiment, the adapter piece 33 is arranged to facilitate the installation of the top feeding teeth 34. The shape and number of the top feeding teeth 34 can be arranged as required to stably jack up the material 5.

[0054] For example, Figure 1 、 7As shown in FIG. 8, the blanking assembly 4 of the embodiment further comprises a material inserting plate 42 and a sliding module 43, which is formed as the aforementioned receiving module. The sliding module 43 can be, but is not limited to, a pneumatic cylinder. The sliding module 43 can move with the material inserting plate 42 to receive the material 5 under the material 5 that is jacked up, i.e., the material 5 is first placed on the material inserting plate 42. After the jacking module 32 is reset downward and the hot pressing lower die 11 leaves the hot pressing position, the sliding module 43 can retract with the material inserting plate 42 and the material 5. When retracted, the material 5 falls under the blocking of the blocking plate 41.

[0055] Further, the sliding part of the sliding module 43 is directly or indirectly connected with a sliding connecting plate 431. A vertical waist round hole 423 is arranged on the material inserting plate 42 for cooperation with the sliding connecting plate 431. The blocking plate 41 is vertically adjustable and is arranged at a set height, for example, by being clamped on the two guide rods 141 of the driving module 14 in the aforementioned hot pressing assembly 1 through a clamp 411. In this embodiment, the vertical waist round hole 423 is arranged on the material inserting plate 42, so that the position of the material inserting plate 42 can be flexibly adjusted upward and downward to a suitable height when the material inserting plate 42 is installed. The position of the blocking plate 41 can also be flexibly adjusted upward and downward to a suitable height, so that the blanking / descaling can be better implemented.

[0056] Further, the sliding connecting plate 431 is also indirectly connected with two sliding guide rails 432, which are arranged in parallel and respectively move along a fixed sliding block 433. Preferably, the material inserting plate 42 comprises a left material inserting plate 421 and a right material inserting plate 422. The two material inserting plates 42 can better receive the material 5. The middle part of the material 5 is jacked up by the front and rear jacking teeth 34, which are staggered with the left material inserting plate 421 and the right material inserting plate 422. The left material inserting plate 421 and the right material inserting plate 422 are installed on the left and right sides of the sliding connecting plate 431. The vertical waist round holes 423 are arranged on the left material inserting plate 421 and the right material inserting plate 422. Preferably, the moving direction of the sliding module 43 is parallel to the sliding direction of the hot pressing lower die 11. The sliding module 43 is arranged above one side of the blanking port 61, so as to further save space. In addition, a protection plate 434 is arranged on the sliding module 43 to protect the sliding module 43.

[0057] The hot pressing device of the embodiment further comprises a left side door 63, a right side door 64, and a rear door 65. One end of the left side door 63 is hinged, and the other end is a magnetic opening and closing structure. One end of the right side door 64 is hinged, and the other end is a magnetic opening and closing structure. One end of the rear door 65 is hinged, and the other end is a handle locking structure. In this way, the doors can be easily opened for maintenance and repair.

[0058] The front side of the hot pressing device is open to facilitate feeding, and a grating sensor 66 is arranged on the front side to detect whether the material 5 is placed or not; or, a detection sensor 113 is arranged on the hot pressing lower die 11 to detect whether the material 5 is placed or not, and the detection sensor 113 can be selected but is not limited to a photoelectric switch. After the material 5 is placed, the hot pressing work starts.

[0059] Specifically, the hot pressing device is placed on the conveying line, the material 5 is placed on the hot pressing lower die 11 by manual operation, and whether the material 5 is placed or not is detected by the grating sensor 66 or the detection sensor 113, and the hot pressing device starts to work after detecting that the material 5 is placed. The sliding assembly 2 drives the hot pressing lower die 11 to move inward to the hot pressing position, and the hot pressing upper die 12 moves downward to hot press the material 5; after the hot pressing is completed, the material 5 is lifted up by the material lifting assembly 3, the insertion plate 42 in the material discharging assembly 4 extends to receive the material 5; the material lifting assembly 3 resets, the sliding assembly 2 also resets, the insertion plate 42 reversely retreats, the material 5 falls under the block of the blocking plate 41, and falls from the material falling opening 61 on the bottom plate 6 to the conveying line below to continue to be conveyed downstream. The sliding assembly 2 retreats to the initial feeding position to place new material 5 to be hot pressed, and the cycle is repeated.

[0060] As can be seen from the above, the hot pressing device provided by the embodiment can automatically drop the material after hot pressing from the material falling opening on the bottom plate, improve the production efficiency, save the labor cost, and has the advantages of compact structure, stable work and the like.

[0061] Embodiment Two

[0062] The hot pressing device provided by the embodiment is mainly different from the hot pressing device provided by the embodiment one in the material discharging assembly 4 and the material lifting assembly 3.

[0063] The material discharging assembly 4 of the embodiment includes a blocking plate 41, the material 5 lifted up can be driven to move toward the blocking plate 41, and the material 5 can fall from the material falling opening 61 on the bottom plate 6 after being blocked by the blocking plate 41. Specifically, as shown in Figures 9-10 The material discharging assembly 4 of the embodiment further includes a sliding plate 44 arranged obliquely downward, the sliding plate 44 is fixedly installed on the sliding table 23 of the sliding assembly 2 and can slide with the sliding table 23. The sliding plate 44 and the blocking plate 41 are respectively located on the inner side and the outer side of the material 5 lifted up, for example, the sliding plate 44 is arranged on the inner side of the material 5 lifted up, and the blocking plate 41 is arranged on the outer side of the material 5 lifted up and is vertically adjustably installed at a preset height by a clamp 411, and the preset height needs to ensure that the material 5 lifted up can fall on the sliding plate 44 when falling.

[0064] When the hot pressing of the material 5 on the sliding assembly 2 is completed, the material 5 is lifted up, and then the sliding assembly 2 is reset to retreat, during which the material 5 is lifted up falls to the sliding plate 44 under the block of the blocking plate 41, and then slides along the sliding plate 44 to fall below the bottom plate 6 from the dropping port 61. In this way, the structure of the discharging assembly 4 is simplified, and the material 5 can be guaranteed to fall in the required posture (for example, the circuit board is on the top and the shell is on the bottom) on the downstream conveying line, and the impact of the material 5 when falling is reduced, and the possibility of damage to the material 5 is reduced.

[0065] Preferably, the sliding plate 44 is further provided with a sliding edge 441 near the position of the material 5 lifted up, so that the material 5 can reliably fall on the sliding plate 44. Of course, in other embodiments, the blocking plate 41 can be arranged on the inner side of the material 5 lifted up, and the sliding plate 44 can be arranged on the outer side of the material 5 lifted up. However, since the sliding plate 44 is arranged on the outer side, a larger space needs to be reserved in front compared with the present embodiment, and it is not conducive to placing new material 5 during subsequent feeding.

[0066] Since the structure of the discharging assembly 4 is simplified in the present embodiment, the insertion plate 42 described in Embodiment 1 is not required in the present embodiment. As shown in Figure 11 When lifting up, the lifting teeth 34 move along the corresponding through opening 112 arranged on the sliding table 23 and the hot pressing lower die 11, pass through the material lifting plate 35, and indirectly lift up the material 5. The material lifting plate 35 has a larger bearing area, and can better lift up the material 5. Of course, a recessed slot 114 needs to be arranged in the middle of the hot pressing lower die 11 to place the material lifting plate 35.

[0067] The hot pressing device of the present embodiment can be placed on the conveying line, and the material 5 is placed on the hot pressing lower die 11 by manual operation. The hot pressing device starts to work after the grating sensor 66 detects that the material 5 is placed. The sliding assembly 2 drives the hot pressing lower die 11 to move inward to the hot pressing position, and the hot pressing upper die 12 moves downward to hot press the material 5. After hot pressing is completed, the material lifting assembly 3 lifts up the material 5, and the sliding assembly 2 drives the material 5 lifted up to move back, during which the material 5 is blocked by the blocking plate 41 and then slides along the sliding plate 44, and falls from the middle of the bottom plate 6 to the conveying line below, and continues to be conveyed downstream. The sliding assembly 2 retreats to the initial feeding position to place new material 5, and the cycle is repeated.

[0068] The hot-pressing device provided by the embodiment can also realize automatic material dropping after hot-pressing processing; and the hot-pressing device is more stable in operation, can ensure the posture of the material after dropping, and can ensure that the material is not damaged.

[0069] The above merely describes a preferred specific implementation of the present application, but the scope of protection of the present application is not limited thereto, and any person skilled in the art, within the technical range disclosed by the present application, can make equivalent replacements or changes to the technical scheme and the inventive concept of the present application, which should be covered within the scope of protection of the present application.

Claims

1. A hot pressing device, characterized in that, include: Hot pressing assembly (1), the hot pressing assembly (1) includes a lower hot pressing mold (11) and an upper hot pressing mold (12), the lower hot pressing mold (11) is used to place material (5), and the upper hot pressing mold (12) can move toward the lower hot pressing mold (11) to hot press the material (5); The sliding component (2) is disposed on the base plate (6). The sliding component (2) can drive the hot pressing mold (11) to slide inward to the hot pressing position and outward to the loading position. The material lifting assembly (3) is used to lift the current material (5) after hot pressing is completed; The feeding assembly (4) includes a baffle plate (41). The material (5) that is lifted can be driven to move toward the baffle plate (41). After being blocked by the baffle plate (41), the material (5) can fall from the discharge port (61) opened on the bottom plate (6).

2. The hot pressing device according to claim 1, characterized in that, A conveyor line is provided below the base plate (6), and the material (5) falls from the discharge port (61) on the base plate (6) onto the conveyor line.

3. The hot pressing device according to claim 2, characterized in that, The feeding assembly (4) also includes a sliding module (43) and an insert plate (42). The sliding module (43) can move the insert plate (42) to the bottom of the lifted material (5) to receive the material (5). When the feeding assembly (3) is reset and the hot pressing die (11) leaves the hot pressing position, the sliding module (43) can move the insert plate (42) and the material (5) back. The material (5) falls off under the obstruction of the baffle plate (41).

4. The hot pressing device according to claim 3, characterized in that, The sliding part of the sliding module (43) is connected to a sliding connecting plate (431), and the insert plate (42) is provided with a vertical oval hole (423) for cooperating with the sliding connecting plate (431) for installation; the baffle plate (41) can be vertically adjusted and installed at a set height.

5. The hot pressing device according to claim 4, characterized in that, The insert plate (42) includes a left insert plate (421) and a right insert plate (422). The top material assembly (3) lifts the middle part of the material (5). The left insert plate (421) and the right insert plate (422) are installed on the left and right sides of the sliding connecting plate (431). The moving direction of the sliding module (43) is parallel to the sliding direction of the hot pressing mold (11). The sliding module (43) is located above one side of the discharge port (61). The sliding module (43) is also provided with a protective plate (434).

6. The hot pressing device according to claim 2, characterized in that, The feeding assembly (4) also includes a downwardly oriented sliding plate (44), which is installed on the sliding assembly (2). The sliding plate (44) and the baffle plate (41) are located on the inner and outer sides of the material (5) being lifted. The sliding assembly (2) drives the material (5) being lifted to move toward the baffle plate (41), and the material (5) falls along the sliding plate (44) under the obstruction of the baffle plate (41).

7. The hot pressing device according to claim 6, characterized in that, The sliding plate (44) is located inside the material (5) being lifted, and the baffle plate (41) is located outside the material (5) being lifted; the baffle plate (41) is vertically adjustable and installed at a preset height.

8. The hot pressing apparatus according to claim 2, 3, or 6, characterized in that, The hot pressing assembly (1) further includes a heating module (13) and a driving module (14). The upper hot pressing mold (12) includes a plurality of hot pressing heads (121). The heating module (13) is used to heat the hot pressing heads (121). The driving module (14) is used to drive the heating module (13) and the hot pressing heads (121) to move toward or away from the lower hot pressing mold (11).

9. The hot pressing apparatus according to claim 2, 3, or 6, characterized in that, The sliding assembly (2) includes two fixed guide rails (21) disposed on the base plate (6). The two fixed guide rails (21) are arranged in parallel. The two fixed guide rails (21) are respectively connected to the slide table (23) through sliding blocks (22). The hot pressing lower mold (11) is disposed on the slide table (23). The sliding assembly (2) also includes a sliding module (24), which is located at the bottom of the base plate (6). The sliding part of the sliding module (24) is also connected to a moving plate (25). The moving plate (25) passes through the discharge port (61) and is connected to the slide table (23) or inserted into the insertion port (231) opened on the slide table (23).

10. The hot pressing device according to claim 9, characterized in that, The top material assembly (3) includes a top material connecting plate (31) and a top material module (32). The top material connecting plate (31) is fixedly installed at the bottom of the slide table (23). The top material module (32) is installed on the top material connecting plate (31). The lifting part of the top material module (32) is provided with a transition piece (33). One or more top material teeth (34) are installed on the transition piece (33). When the top material module (32) is activated, the top material teeth (34) move along the corresponding passage (112) on the slide table (23) and the hot press lower mold (11) to directly or indirectly lift the material (5).

Citation Information

Patent Citations

  • Plastic part hot pressing device

    CN220864553U