Stripping and separating device of magnetic material pasting plate

By designing a magnetic patch deduplication separation device including a frame, a deduplication driving mechanism, a pressing plate and a mold-closing and distributing assembly, the problem of low and unstable manual separation efficiency in the prior art is solved, and efficient and reliable deduplication separation of magnetic patches is achieved, and the processing of magnetic patches of different specifications is achieved.

CN222999482UActive Publication Date: 2025-06-20DONGGUAN MAGHARD FLEXIBLE MAGNET
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Patent Information

Application Number
CN202422159863.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-03
Publication Date
2025-06-20
Estimated Expiration
2034-09-03

AI Technical Summary

Technical Problem

In the prior art, the separation operation of the magnetic patch panel relies on manual operation, which is low in efficiency, high in cost, and unstable, which easily leads to damage or scrapping of the magnetic patch panel, poor separation effect and difficult to control quality.

Method used

A de-material separation device for magnetic patch panels is designed, including a frame, a de-material drive mechanism, a pressing plate and a mold closing and distributing assembly. Through mold closing and mold opening operations, the shear force is formed by using the mould module and the die hole to achieve stable and reliable separation of the magnetic patch panel.

Benefits of technology

It realizes accurate and reliable de-material separation of magnetic patch panels, improves processing efficiency and separation effect, reduces labor costs and instability, significantly improves yield, and adapts to the processing of magnetic patch panels of different specifications.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a stripping and separating device of a magnetic material sticking plate, which comprises a rack, a stripping driving mechanism, a pushing and pressing plate and a mold closing and stripping assembly, and the pushing and pressing plate is connected with the stripping driving mechanism; the mold closing and stripping assembly comprises a male mold mounting structure, a female mold mounting structure, a male mold plate and a female mold plate, the male mold mounting structure is connected to the lower portion of the pushing and pressing plate, the female mold mounting structure is connected to the rack, the male mold plate is mounted on the male mold mounting structure, the female mold plate is mounted on the female mold mounting structure, a plurality of male mold blocks are arranged at the bottom of the male mold plate, and a plurality of female mold holes are formed in the female mold plate; the female die plate, the male die plate and the male die block are all of a non-magnet structure, the female die plate is provided with a guiding and positioning structure, the guiding and positioning structure is used for positioning a magnetic material pasting plate on the female die plate, and the thickness of the guiding and positioning structure is smaller than that of the male die block. The magnetic sticking unit can be separated from the magnetic sticking plate, the efficiency is high, the labor cost is low, the yield is high, the separation effect is good, and the alignment operation can be simplified.
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Description

Technical Field

[0001] The utility model relates to the field of magnetic product processing equipment, in particular to a blanking and separating device for a magnetic sticker board. Background Art

[0002] A magnetic sticker, also known as a magnetic sticker, usually includes a magnet and a surface material similar to a sticker. Magnetic stickers usually distribute multiple units with different shapes and patterns evenly on a plate surface, attach the surface material to a magnetic board by means of mounting, and then obtain a magnetic sticker board after die-cutting.

[0003] For the magnetic sticker board obtained by die-cutting, it is necessary to separate the magnetic sticker units. In the related art, the separation operation of the magnetic sticker board is realized manually. The operator manually takes out the magnetic sticker units one by one from the magnetic sticker board. This separation method has low efficiency, high labor cost, low output, and high instability in full manual operation. It is easy to cause damage or even scrapping of the magnetic sticker units due to misoperation, with poor separation effect and difficult control of the separated product quality. Summary of the Utility Model

[0004] The utility model aims to solve at least one of the technical problems existing in the prior art. For this purpose, the utility model provides a blanking and separating device for a magnetic sticker board, which can achieve accurate and reliable blanking and separating actions, with high processing efficiency and good separation effect.

[0005] According to an embodiment of the utility model, a blanking and separating device for a magnetic sticker board includes a frame, a blanking driving mechanism, a push-pressing plate, and a mold-closing and blanking assembly. The blanking driving mechanism is connected to the frame, the push-pressing plate is connected to the blanking driving mechanism, and the blanking driving mechanism is used to drive the push-pressing plate to move up and down. The mold-closing and blanking assembly includes a punch mounting structure, a die mounting structure, a punch plate, and a die plate. The punch mounting structure is connected under the push-pressing plate, the die mounting structure is connected to the frame, the punch plate is mounted on the punch mounting structure, the die plate is mounted on the die mounting structure, the die plate is located directly below the punch plate, the bottom of the punch plate is provided with a plurality of punch blocks, the die plate is provided with a plurality of die holes corresponding to each punch block respectively, the die plate, the punch plate, and the punch blocks are all non-magnetic structures, and the die plate is provided with a guiding and positioning structure for positioning the magnetic sticker board on the die plate, and the thickness of the guiding and positioning structure is less than the thickness of the punch blocks.

[0006] In this embodiment, the blanking and separating device for the magnetic sticker board further includes a collecting box, and the collecting box is arranged on one side of the die plate away from the punch plate.

[0007] In this embodiment, the frame is provided with a controller and a control switch. The control switch and the blanking driving mechanism are both electrically connected to the controller, and the control switch is used to send a start signal to the controller to drive the blanking driving mechanism to work.

[0008] In this embodiment, a safety sensor is further provided on the frame. The safety sensor is electrically connected to the controller. The sensing part of the safety sensor faces the guiding inlet of the guiding and positioning structure. The safety sensor is used to detect obstacles at the guiding inlet of the guiding and positioning structure.

[0009] In this embodiment, the guiding and positioning structure includes three positioning bars arranged in a concave shape, and the three positioning bars surround the periphery of all the die cavities.

[0010] In this embodiment, the positioning bars are magnetic rubber strips.

[0011] In this embodiment, the mold closing and blanking assembly further includes guide posts. One end of the guide posts is connected to the frame. The convex template is provided with a first guide hole matching the guide posts, and the concave template is provided with a second guide hole matching the guide posts. The guide posts are slidably connected in the first guide hole and the second guide hole.

[0012] In this embodiment, the mold closing and blanking assembly further includes a spring. The two ends of the spring are respectively connected to the guide posts and the push plate.

[0013] The embodiment of the present utility model has at least the following beneficial effects:

[0014] By providing die cavities on the concave template for blanking and cooperating with blanking, and providing convex modules matching the die cavities at the bottom of the convex template, the blanking driving mechanism can drive the convex template to approach or move away from the concave template to realize the mold closing and opening actions. The convex modules cooperate with the concave template to form a shearing force for separating the magnetic sticker units from the magnetic sticker board. The blanking and separating action is stable and reliable, the blanking and separating efficiency is high, the labor cost is low, and it can significantly reduce the unstable influence brought by manual intervention. The yield rate of the blanking and separating process is high; both the convex template and the concave template adopt non-magnetic structures, which can effectively avoid the adverse influence of magnetic attraction on the separating action of the magnetic sticker board, can effectively improve the smoothness and accuracy of the blanking and separating action, and the separating effect is good; in addition, by providing a guiding and positioning structure on the concave template, it can effectively simplify the alignment operation of the operator to push the magnetic sticker board onto the concave template, and can ensure that the magnetic sticker units in the magnetic sticker board are accurately aligned with the convex modules and die cavities on both sides respectively. The alignment accuracy is high, which can not only effectively improve the reliability of the blanking and separating action, but also effectively reduce the working intensity of the operator. When it is necessary to perform blanking and separating processing on magnetic sticker boards of different specifications, only the convex template and the concave template need to be replaced, and the versatility is strong. Description of the Drawings

[0015] The above and / or additional aspects and advantages of the present utility model will become obvious and easy to understand from the description of the embodiments in conjunction with the following drawings, where:

[0016] Figure 1Schematic three-dimensional structure diagram of the stripping and separating device of the magnetic material feeding plate according to an embodiment of the present utility model;

[0017] Figure 2 Schematic front view structure diagram of the stripping and separating device of the magnetic material feeding plate according to an embodiment of the present utility model;

[0018] Figure 3 Schematic top view structure diagram of the stripping and separating device of the magnetic material feeding plate according to an embodiment of the present utility model;

[0019] Figure 4 Is along Figure 3 Schematic cross-sectional structure diagram of A-A' in

[0020] Figure 5 Schematic structure diagram of the convex template in the stripping and separating device of the magnetic material feeding plate according to an embodiment of the present utility model;

[0021] Figure 6 Schematic structure diagram of the concave template in the stripping and separating device of the magnetic material feeding plate according to an embodiment of the present utility model.

[0022] Reference numerals:

[0023] Frame 100, controller 110, control switch 120, safety inductor 130;

[0024] Stripping drive mechanism 200;

[0025] Pushing and pressing plate 300;

[0026] Die closing and stripping assembly 400, convex die mounting structure 410, concave die mounting structure 420, convex template 430, convex module 431, first guide hole 432, concave template 440, concave die hole 441, second guide hole 442, guiding and positioning structure 450, positioning strip 451, guide post 460, spring 470;

[0027] Aggregate box 500. Detailed implementation manners

[0028] The embodiments of the present utility model will be described in detail below. The examples of the embodiments are shown in the drawings, in which the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions from beginning to end. The embodiments described below by referring to the drawings are exemplary and are only used to explain the present utility model and should not be construed as a limitation to the present utility model.

[0029] In the description of the present utility model, it should be understood that with regard to the orientation description, such as the orientation or positional relationship indicated by up, down, left, right, front, back, etc., it is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the present utility model.

[0030] In the description of the present utility model, if the first and second are described only for the purpose of distinguishing technical features, it should not be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features or implicitly specifying the sequence relationship of the indicated technical features.

[0031] In the description of the present utility model, unless otherwise clearly defined, words such as setting, installing, connecting, etc. should be understood in a broad sense. Those skilled in the art can reasonably determine the specific meanings of the above words in the present utility model in combination with the specific content of the technical solution.

[0032] Magnetic stickers, also known as magnetic force stickers, refrigerator stickers, etc., usually include magnets and a surface material similar to stickers. Magnetic stickers usually distribute a number of units with different shapes and patterns evenly on a plate surface, attach the surface material to the magnetic plate by laminating, and then obtain the magnetic sticker stock plate after die-cutting. For example, magnetic material doll products are made in this way. In some production fields, the magnetic sticker stock plate obtained by die-cutting needs to separate the magnetic sticker units.

[0033] In the related art, the separation operation of the magnetic sticker stock plate is realized manually. The operator manually takes out the magnetic sticker units one by one from the magnetic sticker stock plate. This separation method has low efficiency, high labor cost, low output, and high instability of full manual operation. It is easy to cause damage or even scrapping of the magnetic sticker units due to misoperation, with poor separation effect and difficult to control the quality of the separated products.

[0034] In view of the above problems, there is an urgent need in the market for a device that can efficiently, non-destructively, and automatically perform the stripping and separation of the magnetic sticker stock plate. Therefore, this patent proposes a new type of stripping and separation device for the magnetic sticker stock plate, aiming to solve the deficiencies in the prior art and improve production efficiency and product quality.

[0035] The following refers to the attached Figure 1 to the attached Figure 6 to describe the stripping and separation device for the magnetic sticker stock plate of the embodiment of the present utility model, which can achieve accurate and reliable stripping and separation actions, high processing efficiency, and good separation effect.

[0036] Refer to Figures 1 to 6, A material stripping and separating device for a magnetic material feeding plate according to an embodiment of the present utility model includes a frame 100, a material stripping driving mechanism 200, a pushing and pressing plate 300, and a mold closing and material stripping assembly 400. The material stripping driving mechanism 200 is connected to the frame 100, the pushing and pressing plate 300 is connected to the material stripping driving mechanism 200, and the material stripping driving mechanism 200 is used to drive the pushing and pressing plate 300 to lift relative to the frame 100;

[0037] The mold closing and material stripping assembly 400 includes a punch mounting structure 410, a die mounting structure 420, a punch plate 430, and a die plate 440. The punch mounting structure 410 is fixedly connected under the pushing and pressing plate 300, the die mounting structure 420 is fixedly connected to the working platform of the frame 100. The punch plate 430 is detachably mounted on the punch mounting structure 410. Installing the punch plate 430 through the punch mounting structure 410 can effectively facilitate the replacement and maintenance operations of the punch plate 430, and can meet the processing requirements of different magnetic material feeding plates. The punch plate 430 is located directly below the pushing and pressing plate 300. The die plate 440 is detachably mounted on the die mounting structure 420. Installing the die plate 440 through the die mounting structure 420 can effectively facilitate the replacement and maintenance operations of the die plate 440, and can meet the processing requirements of different magnetic material feeding plates. The die plate 440 is located above the working platform of the frame 100, the die plate 440 is located directly below the punch plate 430. The bottom of the punch plate 430 is provided with a plurality of punch blocks 431. The shape and position of each punch block 431 respectively correspond to and match the shape and position of each target magnetic attachment unit in the magnetic material feeding plate. The punch blocks 431 protrude from the bottom surface of the punch plate 430. The die plate 440 is provided with a plurality of die holes 441 respectively corresponding to the punch blocks 431, that is, the number of die holes 441 is equal to the number of punch blocks 431, and the position and shape of each die hole 441 match the position and shape of each punch block 431. The shape and position of each die hole 441 respectively correspond to and match the shape and position of each target magnetic attachment unit in the magnetic material feeding plate. Through the mold closing action of the die plate 440 and the punch plate 430, the material stripping and separating processing of the magnetic material feeding plate can be realized. The die plate 440, the punch plate 430, and the punch blocks 431 are all non-magnetic structures. For example, the die plate 440, the punch plate 430, and the punch blocks 431 are all plastic structures, which can effectively avoid the formation of magnetic adsorption force between the magnetic material feeding plate and the structures on both sides, and can effectively improve the reliability of the material stripping and separating action. The die plate 440 is provided with a guiding and positioning structure 450, and the guiding and positioning structure 450 is used to position the magnetic material feeding plate on the die plate 440. The thickness of the guiding and positioning structure 450 is less than the thickness of the punch blocks 431 to ensure the smooth progress of the material stripping and separating action of the punch blocks 431. Preferably, the thickness of the punch blocks 431 is greater than the sum of the thickness of the guiding and positioning structure 450 and the die plate 440, which can effectively ensure the reliability of the material stripping and separating action.

[0038] The working process is as follows: Push the magnetic material sticking plate along the guiding and positioning structure 450 onto the concave template 440. The magnetic material sticking plate is located between the convex template 430 and the concave template 440. The guiding and positioning structure 450 can achieve a reliable positioning effect on the magnetic material sticking plate, so that the magnetic sticking units in the magnetic material sticking plate can be aligned with the upper and lower convex modules 431 and the concave die holes 441. The stripping driving mechanism 200 drives the push and pressure plate 300 to descend, and the convex template 430 follows the push and pressure plate 300 to descend close to the concave template 440. The convex module 431 presses the magnetic sticking units in the magnetic material sticking plate down to fall through the concave die holes 441. The concave template 440 can achieve support and positioning for the magnetic material sticking plate. The convex module 431 and the concave die hole 441 can form a reliable shearing force on the magnetic material sticking plate, so that the magnetic sticking units are effectively separated from the magnetic material sticking plate, and a stable and reliable stripping and separating action can be effectively completed. The stripping and separating effect is good. When the mold is closed, the convex template 430 can press the magnetic material sticking plate tightly on the concave template 440, which can effectively improve the reliability of the stripping and separating action.

[0039] By providing the concave die holes 441 on the concave template 440 for material discharging and cooperating with the stripping, and providing the convex modules 431 matching the concave die holes 441 at the bottom of the convex template 430, the stripping driving mechanism 200 can drive the convex template 430 to approach or move away from the concave template 440 to achieve the mold closing and opening actions. The convex module 431 and the concave template 440 can form a shearing force to separate the magnetic sticking units from the magnetic material sticking plate. The stripping and separating action is stable and reliable. The stripping and separating action of the magnetic material sticking plate is realized through a mechanical structure, with high automation degree, high stripping and separating efficiency, low labor cost, and can significantly reduce the unstable influence brought by manual intervention. The yield rate of the stripping and separating processing is high. In view of the magnetic characteristics of the magnetic material sticking plate, both the convex template 430 and the concave template 440 adopt non-magnetic structures, which can effectively avoid the adverse influence of magnetic attraction on the stripping and separating action of the magnetic material sticking plate, can effectively improve the smoothness and accuracy of the stripping and separating action, can effectively reduce the risk of material loss and damage, and the separating effect is good. In addition, by providing the guiding and positioning structure 450 on the concave template 440, it can effectively simplify the alignment operation of the operator to push the magnetic material sticking plate onto the concave template 440, and can ensure that the magnetic sticking units in the magnetic material sticking plate are accurately aligned with the convex modules 431 and the concave die holes 441 on both sides. The alignment accuracy is high. It can not only effectively improve the reliability of the stripping and separating action, but also effectively reduce the working intensity of the operator. When it is necessary to carry out stripping and separating processing on magnetic material sticking plates of different specifications, only the convex template 430 and the concave template 440 need to be replaced, which can effectively meet the stripping processing requirements of magnetic material sticking plates of different specifications and has strong versatility.

[0040] It can be understood that the stripping and separating device of the magnetic sticker board further includes an aggregate box 500. The aggregate box 500 is arranged on the side of the concave template 440 away from the convex template 430, that is, the aggregate box 500 is located below the concave template 440. Through the aggregate box 500, the magnetic sticker units stripped and separated from the magnetic sticker board can be effectively collected. Specifically, the convex module 431 pushes the magnetic sticker unit away from the magnetic sticker board, and the magnetic sticker unit falls from the concave die hole 441 to the aggregate box 500. By mechanical or manual means, taking out the aggregate box 500 can facilitate the collection of the magnetic sticker units after stripping and separating.

[0041] Collecting the magnetic sticker units through the aggregate box 500 can significantly reduce the problem of loss caused by manual stripping and separating.

[0042] It can be understood that the frame 100 is provided with a controller 110 and a control switch 120. The control switch 120 and the stripping drive mechanism 200 are both electrically connected to the controller 110. The control switch 120 is used to send a start signal to the controller 110 to drive the stripping drive mechanism 200 to work. Specifically, by manually opening the control switch 120, the control switch 120 sends a start signal. The stripping drive mechanism 200 first drives the push pressure plate 300 to descend and then ascend, completing a reciprocating movement of descending and ascending, thereby realizing an action of stripping, separating and resetting once.

[0043] Specifically, the control switch 120 is a foot switch. By controlling the foot switch by stepping on it, the working burden of the operator's hands can be effectively reduced, and the operation and processing efficiency can be effectively improved.

[0044] It can be understood that the frame 100 is also provided with a safety inductor 130. The safety inductor 130 is electrically connected to the controller 110. The sensing part of the safety inductor 130 is facing the guiding entrance of the guiding and positioning structure 450. The safety inductor 130 is used to detect obstacles at the guiding entrance of the guiding and positioning structure 450 and send a stop signal to the controller 110, that is, the safety inductor 130 is used to detect the clearing situation of the guiding and positioning structure 450 at the guiding entrance. Once an obstacle is found, that is, the clearing is not completed, a stop signal is sent to the controller 110 to control the stripping drive mechanism 200 to stop driving and descending. When the operator transports the magnetic sticker board along the guiding and positioning structure 450 to the concave template 440, the stripping drive mechanism 200 can drive the push pressure plate 300 to descend only when the hand is completely separated from the guiding entrance of the guiding and positioning structure 450, which can effectively improve the safety of the stripping and separating operation.

[0045] Specifically, the safety inductor 130 is a through-beam photoelectric sensor. The two parts of the through-beam photoelectric sensor are respectively arranged on the opposite sides of the concave template 440, and the sensing part of the through-beam photoelectric sensor is facing the guiding entrance of the guiding and positioning structure 450.

[0046] It can be understood that the guiding and positioning structure 450 includes three positioning bars 451 arranged in a concave shape, that is, two of the positioning bars 451 are respectively vertically provided at opposite ends of the other positioning bar 451. The three positioning bars 451 can be a separated concave structure or a continuous concave structure. The three positioning bars 451 surround the periphery of the area where all the die cavities 441 are located. The opening position of the concave structure formed by the three positioning bars 451 is the guiding entrance, which can supply the input and output of the magnetic material pasting plate.

[0047] It can be understood that the positioning bar 451 is a magnetic rubber strip. The magnetic rubber strip can position the magnetic material pasting plate through magnetic adsorption force, and the magnetic rubber strip can buffer the extrusion between the convex template 430 and the concave template 440, effectively reducing the vibration generated during the stripping and separating process, and effectively improving the stability of the stripping and separating action.

[0048] Specifically, the positioning bar 451 is a silica gel strip. A number of magnet blocks are provided inside the silica gel strip. By wrapping the magnet blocks with an integrated strip-shaped silica gel structure as the positioning bar 451, it can not only effectively position the magnetic material pasting plate by magnetic adsorption, but also utilize the elastic deformation ability of the silica gel to effectively improve the buffer and shock absorption effect formed between the convex template 430 and the concave template 440, and effectively improve the stability of the stripping and separating action.

[0049] It can be understood that the mold closing and stripping assembly 400 further includes a guide post 460 vertically arranged with respect to the horizontal plane. One end of the guide post 460 is fixedly connected to the frame 100. The convex template 430 is provided with a first guide hole 432 matching the guide post 460, and the concave template 440 is provided with a second guide hole 442 matching the guide post 460. The guide post 460 is slidably connected in the first guide hole 432 and the second guide hole 442. Through the guide post 460, the collinearity of the actions when the convex template 430 and the concave template 440 approach each other to close the mold can be effectively improved, effectively avoiding the deviation of the stripping and separating actions caused by the deviation of the actions, and effectively improving the accuracy of the stripping and separating actions.

[0050] Specifically, the guide post 460 is connected to the frame 100 by means of threaded connection or the like. After installing the convex template 430 and the concave template 440, the guide post 460 is passed through the first guide hole 432 and the second guide hole 442, and then the guide post 460 is fixedly connected to the frame 100.

[0051] It can be understood that the mold closing and stripping assembly 400 further includes a spring 470. The two ends of the spring 470 are respectively connected to the other end of the guide post 460 and the push plate 300. The spring 470 is used to buffer the lifting action of the push plate 300, effectively improving the stability of the stripping and separating action.

[0052] It can be understood that the stripping driving mechanism 200 is a cylinder. By setting the stripping driving mechanism 200 as a cylinder, the two actions of stamping separation and backward reset can be effectively matched, and the reliability of the stripping separation action can be effectively improved.

[0053] It can be understood that both the punch mounting structure 410 and the die mounting structure 420 are set as mounting supports. The mounting supports are provided with positioning screw holes, and both the punch plate 430 and the die plate 440 are provided with through holes matching the corresponding positioning screw holes. Screws can pass through the through holes and be threadedly connected to the corresponding positioning screw holes, so as to respectively mount the punch plate 430 and the die plate 440 to the corresponding mounting supports.

[0054] Specifically, in addition to being set as mounting supports, the punch mounting structure 410 and the die mounting structure 420 can also be set to include four positioning columns. The four positioning columns are distributed at the four endpoints of a virtual rectangle, and each positioning column is provided with a positioning screw hole at the top. Both the punch plate 430 and the die plate 440 are provided with through holes matching the corresponding positioning screw holes. The four positioning columns in the punch mounting structure 410 respectively abut against the four corners of the top surface of the punch plate 430, and four screws respectively pass through the four through holes of the punch plate 430 and are threadedly connected to the corresponding positioning screw holes, so as to realize the positioning and installation of the punch plate 430 on the punch mounting structure 410; similarly, the four positioning columns in the die mounting structure 420 respectively abut against the four corners of the bottom surface of the die plate 440, and four screws respectively pass through the four through holes of the die plate 440 and are threadedly connected to the corresponding positioning screw holes, so as to realize the positioning and installation of the die plate 440 on the die mounting structure 420. To improve the positioning effect, the screws can also be equipped with structures such as nuts and gaskets to achieve the installation connection, so as to effectively improve the stability of the installation structure.

[0055] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand 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 claims and their equivalents.

Claims

1. A device for removing and separating magnetic bonding plates, characterized in that: The invention comprises a frame (100), a stripping drive mechanism (200), a push plate (300) and a mold stripping assembly (400), wherein the stripping drive mechanism (200) is connected to the frame (100), the push plate (300) is connected to the stripping drive mechanism (200), and the stripping drive mechanism (200) is used to drive the push plate (300) to rise and fall; The mold-closing and stripping assembly (400) comprises a male mold mounting structure (410), a female mold mounting structure (420), a male mold plate (430) and a female mold plate (440), wherein the male mold mounting structure (410) is connected under the push plate (300), the female mold mounting structure (420) is connected to the frame (100), the male mold plate (430) is mounted on the male mold mounting structure (410), the female mold plate (440) is mounted on the female mold mounting structure (420), the female mold plate (440) is located directly below the male mold plate (430), and the male mold mounting structure (410) is connected to the push plate (300). The bottom of the template (430) is provided with a plurality of convex modules (431), and the concave template (440) is provided with a plurality of concave mold holes (441) respectively corresponding to the convex modules (431). The concave template (440), the convex template (430) and the convex modules (431) are all non-magnetic structures. The concave template (440) is provided with a guide positioning structure (450), and the guide positioning structure (450) is used to position the magnetic pasting plate on the concave template (440). The thickness of the guide positioning structure (450) is less than the thickness of the convex module (431).

2. The device for removing and separating magnetic bonding plates according to claim 1, characterized in that: It also includes a material collection box (500), which is arranged on a side of the concave mold plate (440) away from the convex mold plate (430).

3. The device for removing and separating magnetic bonding plates according to claim 1, characterized in that: The frame (100) is provided with a controller (110) and a control switch (120); the control switch (120) and the stripping drive mechanism (200) are both electrically connected to the controller (110); and the control switch (120) is used to send a start signal to the controller (110) to drive the stripping drive mechanism (200) to operate.

4. The device for removing and separating magnetic bonding plates according to claim 3, characterized in that: The frame (100) is also provided with a safety sensor (130), the safety sensor (130) being electrically connected to the controller (110), the sensing portion of the safety sensor (130) facing the guide entrance of the guide positioning structure (450), and the safety sensor (130) being used to detect obstacles at the guide entrance of the guide positioning structure (450).

5. The device for removing and separating magnetic bonding plates according to claim 1, characterized in that: The guiding and positioning structure (450) comprises three positioning strips (451) arranged and distributed in a concave shape, and the three positioning strips (451) surround all the concave die holes (441).

6. The device for removing and separating magnetic bonding plates according to claim 5, characterized in that: The positioning strip (451) is a magnetic rubber strip.

7. The device for removing and separating magnetic bonding plates according to claim 1, characterized in that: The mold closing and stripping assembly (400) further comprises a guide post (460), one end of which is connected to the frame (100), the male template (430) is provided with a first guide hole (432) matching the guide post (460), the female template (440) is provided with a second guide hole (442) matching the guide post (460), and the guide post (460) is slidably connected in the first guide hole (432) and the second guide hole (442).

8. The device for removing and separating magnetic bonding plates according to claim 7, characterized in that: The mold closing and stripping assembly (400) further comprises a spring (470), and two ends of the spring (470) are respectively connected to the guide column (460) and the pushing plate (300).

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