Novel plastic suction machine for decorative diamonds

By setting up positioning blocks and positioning slots in the new decorative drill blister machine, the matching accuracy between the screen drill plate and the blister plate is improved, and the opening and closing sealing cover assembly is used in the baking mechanism to reduce heat loss, which solves the problems of low matching accuracy, high energy consumption and low working efficiency in existing blister equipment, and achieves a more efficient and higher quality blister process.

CN120171024APending Publication Date: 2025-06-20WENZHOU YIBO INTELLIGENT EQUIP CO LTD
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Patent Information

Application Number
CN202311756744.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-12-19
Publication Date
2025-06-20

AI Technical Summary

Technical Problem

In existing blister equipment, the matching accuracy between the sieve drilling disc and the blister disc is not high, resulting in a poor mold closing process; the baking mechanism consumes high energy and severe heat loss, which affects the working quality; the blister mechanism's working efficiency is low and cannot meet the needs of multiple stations.

Method used

A new type of decorative drill blister is designed, which improves matching accuracy by setting positioning blocks and positioning slots on the screen drill plate; uses open and closed sealing cover assembly in the baking mechanism to reduce heat loss and maintain a stable temperature; increases the blistering table of the transverse slide rail, reduces the displacement of the baking mechanism, and improves heating efficiency.

Benefits of technology

The matching accuracy between the sieve drilling plate and the blister plate is improved, the energy consumption and heat loss of the baking mechanism are reduced, and the working efficiency and quality of the overall equipment are improved.

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Abstract

The invention discloses a novel decorative diamond plastic suction machine which comprises a rack, a diamond screening mechanism, a plastic suction mechanism and a baking mechanism, a diamond screening disc device comprises a vibration assembly, a mold closing jacking assembly and a diamond screening disc, the vibration assembly comprises a vibration source and an assembling platform for assembling the diamond screening disc, and four positioning blocks are arranged on the assembling platform; a positioning groove matched with the positioning block is formed in the bottom of the diamond screening disc, and at least four clamping grooves distributed at equal intervals are further formed in the peripheral edge of the diamond screening disc; the blister device comprises a transverse sliding rail and two blister tables located on the sliding rail and in left-right sliding fit with the sliding rail. And the baking mechanism is located above the plastic uptake device and comprises a baking assembly and a longitudinal driving part for driving the baking assembly to move up and down in the direction of the plastic uptake table, and a sealing cover assembly capable of being opened and closed is arranged at a heat dissipation opening of the heat preservation cover. The device has the advantages of high working stability, high working efficiency, low energy consumption, high automation degree and production cost saving.
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Description

Technical Field

[0001] The present invention relates to the technical field of blister machines, and more specifically, it relates to a new type of diamond-embellished blister machine. Background Art

[0002] When packaging hot-fix rhinestones or rhinestones, a blister device is required. Usually, it needs to go through multiple processes such as feeding, clamping, flipping, blistering, baking, and moving. It mainly includes a diamond screening mechanism, a blister mechanism, a baking mechanism, and a transfer mechanism. In existing blister devices, there are the following drawbacks during operation: when the diamond screening plate on the diamond screening mechanism performs the mold closing process with the blister plate, the accuracy of the matching positions between the blister plate and the diamond screening plate is not high, resulting in an unsmooth mold closing process and affecting the working quality of diamond screening and mold closing; when the embellished diamonds and the plastic film perform the blistering process, it is usually moved from the baking mechanism to the blister mechanism, and the plastic film at this position is heated to make it deformed. The baking mechanism is the most power-consuming position on this device. During its continuous movement, serious heat loss occurs, resulting in higher energy consumption of the baking mechanism. There will also be problems such as slow heating speed and unstable heating temperature, directly affecting the working quality of the overall device; at the same time, the blister mechanism at one position can only meet the work of the diamond screening mechanism at two positions. When adding a diamond screening mechanism, it is necessary to add the positions of the blister mechanism at the same time, otherwise normal and orderly work cannot be carried out, resulting in low working efficiency of the device. Based on the above problems, this application proposes a new type of diamond-embellished blister machine to solve the above problems. Summary of the Invention

[0003] Aiming at the deficiencies of the existing technology, the purpose of the present invention is to provide a new type of diamond-embellished blister machine with high accuracy in the matching positions between the blister plate and the diamond screening plate, low energy consumption of the baking mechanism, and the ability to reduce heat loss, and at the same time, with higher working efficiency.

[0004] To achieve the above purpose, the present invention provides the following technical solution: A new type of diamond-embellished blister machine, including a frame, diamond screening mechanisms located on both sides of the frame, a blister mechanism is arranged between the two diamond screening mechanisms, a baking mechanism is arranged above the blister mechanism. The diamond screening mechanism includes a diamond feeding device and at least two diamond screening plate devices. Above the diamond screening plate device, there is a mechanical claw feeding device for transferring the blister board, and a flipping and transferring device is arranged on one side of the diamond screening device. The diamond screening plate device includes a vibration component, a mold closing and lifting component, and a diamond screening plate. The vibration component includes a vibration source and an assembly platform for assembling the diamond screening plate. There are four positioning blocks on the assembly platform. The bottom of the diamond screening plate is provided with positioning grooves adapted to the positioning blocks. Along the outer periphery of the diamond screening plate, there are at least four equally spaced positioning slots;

[0005] The blister mechanism includes a plastic film feeding device, a blister device, and a blanking device. The blister device includes a horizontal slide rail and two blister tables that slide left and right on the slide rail;

[0006] The baking mechanism is located above the thermoforming device and includes a baking component and a longitudinal driving part for driving the baking component to move up and down towards the thermoforming table. The baking component includes a baking tray and a heat preservation cover, and a seal cover assembly that can be opened and closed is provided at the heat dissipation port of the heat preservation cover.

[0007] The present invention is further configured as follows: The mechanical claw feeding device includes a thermoforming plate placement platform and a mechanical claw hand I located above the thermoforming plate placement platform. The mechanical claw hand I is slidably engaged with a slide rail I and slides back and forth along the slide rail I to transport the thermoforming plate on the thermoforming plate placement platform to the screening and drilling plate.

[0008] The present invention is further configured as follows: The turning and transferring device includes a feeding turning frame that can turn back and forth towards the screening and drilling plate and the thermoforming table. One end of the feeding turning frame is equipped with a rotating shaft I, and the other end has an arc-shaped clamping area I. Clamping members I are provided on both sides of the clamping area I.

[0009] The present invention is further configured as follows: A liftable plastic film pressing ring is provided below the baking component corresponding to the transverse slide rail. Sliders are provided on both sides of the thermoforming table and are fastened to the transverse slide rail and slide back and forth towards the plastic film pressing ring. A blower is also provided inside the thermoforming table, and the air extraction port end of the blower is arranged towards the upper surface of the thermoforming table.

[0010] The present invention is further configured as follows: The seal cover assembly includes two cover plates and slide seats located on both sides of the cover plates. The slide seats are fastened to the slide rails and are slidably engaged. When the two cover plates are in contact with each other, the heat dissipation port of the heat preservation cover is in a sealed state. When the two cover plates slide in opposite directions, the heat dissipation port of the heat preservation cover is in an open state.

[0011] The present invention is further configured as follows: The longitudinal driving part includes a lifting component connected to the baking component and a longitudinal cylinder for driving the lifting component to move up and down. The lifting component includes a fixed frame and a lifting seat. A longitudinal guide rail is provided on the fixed frame, and the lifting seat is fastened to the longitudinal guide rail and is slidably engaged.

[0012] The present invention is further configured as follows: The plastic film feeding device includes a plastic film placement platform and a mechanical claw hand II located above the plastic film placement platform. The mechanical claw hand II is slidably engaged with a slide rail II and slides back and forth along the slide rail II to transport the plastic film to the thermoforming table.

[0013] The present invention is further configured such that: the blanking device includes a turnable blanking and cooling platform, a plastic sheet gripper located above the blanking and cooling platform, and a discharging turning frame that turns back and forth between the plastic sheet table and the blanking and cooling platform. The discharging turning frame transports the plastic sheet and the finished decorative diamond film on the plastic sheet table to the cooling platform. The plastic sheet gripper slides back and forth along the third slide frame to convey the plastic sheet to the plastic sheet placement platform.

[0014] The present invention is further configured such that: the bottom of the blanking and cooling platform is connected to the output shaft of the motor, and the rotation of the motor drives the blanking and cooling platform to turn.

[0015] The present invention is further configured such that: a second rotating shaft is provided through one end of the discharging turning frame, and the second rotating shaft is driven by the motor to rotate. The other end is provided with an arc-shaped clamping area two, and clamping members two are provided on both sides of the clamping area two.

[0016] By adopting the above technical solutions, the equipment has the following advantages:

[0017] 1. Two or more sieve diamond plates can be provided, increasing the workstations. While improving the production efficiency, it can still work properly without affecting the normal operation of the equipment.

[0018] 2. The sieve diamond plate and the assembly platform are matched through the positioning block and the positioning groove, improving the stability of the sieve diamond plate assembly, and thus improving the stability of the sieve diamond process.

[0019] 3. A structure with a clamping groove is provided on the periphery of the sieve diamond plate. When performing the mold closing process with the plastic sheet, the precise matching of the two can be achieved through the cooperation of the mechanical claw and the clamping groove, reducing work mistakes and affecting the overall work efficiency.

[0020] 4. The plastic sheet table on the plastic sheet mechanism is improved to move back and forth along the horizontal slide rail. When heating it, there is no need for the baking mechanism to move left and right, reducing heat loss and improving the heating efficiency of the plastic film at the same time.

[0021] 5. A switchable sealing cover assembly is provided at the heat dissipation port of the baking tray of the baking mechanism, which can not only reduce heat loss, but also maintain a stable temperature, improve the stability of the work, and is more energy-saving and reduces production costs at the same time.

[0022] 6. The processes of automatic feeding and automatic blanking are realized, greatly reducing the labor force, and having the advantages of reducing production costs and improving work efficiency.

[0023] 7. A blower is added to the plastic sheet table on the plastic sheet mechanism. The suction port of the blower sucks air, and the decorative diamonds on the sieve diamond plate naturally fall onto the plastic sheet, avoiding the knocking process and improving the blanking efficiency.

[0024] 8. Two sieve-drilling mechanisms with the same structure are distributed on both sides of the plastic suction mechanism and the baking mechanism, increasing the feeding stations, improving work efficiency, and having a simple and compact overall structure layout, less occupied space, and higher practicality in production and processing. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 is a schematic structural diagram of the present invention;

[0026] Figure 2 is a partial structural schematic diagram of the sieve-drilling mechanism and the plastic suction mechanism;

[0027] Figure 3 is a partial structural schematic diagram of the sieve-drilling mechanism;

[0028] Figure 4 is an exploded view of the sieve-drilling device structure;

[0029] Figure 5 is a schematic diagram of the sieve-drilling plate structure Figure 1 ;

[0030] Figure 6 is a schematic diagram of the sieve-drilling plate structure Figure 2 ;

[0031] Figure 7 is a schematic diagram of the baking mechanism structure Figure 1 ;

[0032] Figure 8 is a partial structural schematic diagram of the plastic suction mechanism;

[0033] Figure 9 is a schematic diagram of the baking mechanism structure Figure 2 ;

[0034] Figure 10 is a partial structural schematic diagram of the plastic suction table and the blanking device;

[0035] Figure 11 is a partial structural schematic diagram of the blanking and cooling platform.

[0036] 1. Sieve-drilling mechanism; 10. Decorative diamond feeding device; 11. Sieve-drilling plate device; 12. Mechanical claw feeding device; 120. Plastic suction plate placement platform; 121. Mechanical claw hand one; 122. Slide frame one; 13. Turning and transferring device; 130. Feeding turning frame; 131. Rotating shaft one; 132. Clamping area one; 133. Clamping part one; 14. Vibration assembly; 15. Sieve-drilling plate; 150. Positioning groove; 151. Clamping groove; 16. Assembly platform; 160. Positioning block; 17. Plastic suction plate;

[0037] 2. Blister mechanism; 20. Plastic film loading device; 200. Plastic film storage platform; 201. Second mechanical gripper; 202. Second carriage; 21. Unloading device; 22. Horizontal slide rail; 23. Blister table; 24. Unloading and cooling platform; 25. Blister board gripper; 26. Unloading turnover rack; 260. Second rotating shaft; 261. Second clamping area; 262. Second clamping part; 27. Motor; 28. Plastic film pressing ring; 29. Slide block; 30. Blower; 31. Third carriage

[0038] 4. Baking mechanism; 40. Baking assembly; 400. Baking tray; 401. Heat preservation cover; 41. Longitudinal driving part; 410. Fixed frame; 411. Lifting seat; 412. Longitudinal guide rail; 42. Sealing cover assembly; 420. Cover plate; 421. Slide seat Detailed implementation mode

[0039] Refer to Figures 1 to 11 A further description is made of the embodiments of the present invention

[0040] (Combined with the attached drawings of the specification Figure 1 —6), a new type of diamond-embellished blister machine, comprising a frame, a diamond screening mechanism 1 located on both sides of the frame, a blister mechanism 2 provided between the two diamond screening mechanisms 1, and a baking mechanism 4 provided above the blister mechanism 2. The diamond screening mechanism 1 includes a diamond loading device 10 and at least two diamond screening disc devices 11. Above the diamond screening disc device 11, there is a mechanical gripper feeding device 12 for transferring the blister board 17. On one side of the diamond screening device, there is a turnover and transfer device 13. The diamond screening disc device 11 includes a vibration assembly 14, a mold closing and lifting assembly, and a diamond screening disc 15. The vibration assembly 14 includes a vibration source and an assembly platform 16 for assembling the diamond screening disc 15. Four positioning blocks 160 are provided on the assembly platform 16. The bottom of the diamond screening disc 15 is provided with a positioning groove 150 adapted to the positioning blocks 160. Along the outer circumference of the diamond screening disc 15, at least four equally spaced clamping grooves 151 are further provided; the blister mechanism 2 includes a plastic film loading device 20, a blister device, and an unloading device 21. The blister device includes a horizontal slide rail 22 and two blister tables 23 that slide left and right on the slide rail; the baking mechanism 4 is located above the blister device and includes a baking assembly 40 and a longitudinal driving part 41 that drives the baking assembly 40 to move up and down towards the blister table 23. The baking assembly 40 includes a baking tray 400 and a heat preservation cover 401. At the heat dissipation port of the baking assembly 40, there is a sealable and openable sealing cover assembly 42

[0041] The mechanical gripper feeding device 12 includes a blister board storage platform 120 and a first mechanical gripper 121 located above the blister board storage platform 120. The first mechanical gripper slides on the first carriage 122 and slides back and forth along the first carriage 122 to transport the blister board 17 on the blister board storage platform 120 to the diamond screening disc 15

[0042] The transfer and loading device 13 includes a loading turnover frame 130 that can turn back and forth towards the sieve drilling plate 15 and the blister table 23. One end of the loading turnover frame 130 is equipped with a first rotating shaft 131, and the other end has an arc-shaped first clamping area 132. Clamping members 133 are provided on both sides of the first clamping area 132.

[0043] (Combined with the attached Figure 7 —11), a liftable plastic film pressing ring 28 is provided below the baking assembly 40 corresponding to the transverse slide rail 22. Sliders 29 are provided on both sides of the blister table 23 and are buckled on the transverse slide rail 22 and slide back and forth towards the plastic film pressing ring 28. A blower 30 is further provided inside the blister table 23, and the air extraction port end of the blower 30 is arranged towards the upper table surface of the blister table 23.

[0044] The sealing cover assembly 42 includes two cover plates 420 and slide seats 421 located on both sides of the cover plates 420. The slide seats 421 are buckled on the slide rail and are in sliding fit. When the two cover plates 420 are in contact with each other, the heat dissipation port of the heat preservation cover 401 is in a sealed state. When the two cover plates 420 slide in opposite directions, the heat dissipation port of the heat preservation cover 401 is in an open state.

[0045] The longitudinal driving part 41 includes a lifting assembly connected to the baking assembly 40 and a longitudinal air cylinder for driving the lifting assembly to move up and down. The lifting assembly includes a fixed frame 410 and a lifting seat 411. A longitudinal guide rail 412 is provided on the fixed frame 410, and the lifting seat 411 is buckled on the longitudinal guide rail 412 and is in sliding fit.

[0046] The plastic film loading device 20 includes a plastic film placement platform 200 and a second robotic arm 201 located above the plastic film placement platform 200. The second robotic arm 201 is in sliding fit on a second sliding frame 202 and slides back and forth along the second sliding frame 202 to convey the plastic film to the blister table 23.

[0047] The unloading device 21 includes a turnable unloading and cooling platform 24, a blister board gripper 25 located above the unloading and cooling platform 24, and a discharging turnover frame 26 that turns back and forth between the blister table 23 and the unloading and cooling platform 24. The discharging turnover frame 26 transports the blister board 17 and the finished decorative diamond film on the blister table 23 to the cooling platform. The blister board gripper 25 slides back and forth along a third sliding frame 31 to convey the blister board 17 to the blister board placement platform 120.

[0048] The bottom of the blanking and cooling platform 24 is connected to the output shaft of the motor 27, and the blanking and cooling platform 24 is driven to flip by the rotation of the motor 27. One end of the unloading and flipping frame 26 is provided with a second rotating shaft 260, the second rotating shaft 260 is driven to rotate by the motor 27, and the other end is provided with an arc-shaped clamping area two 261, and clamping members two 262 are arranged on both sides of the clamping area two 261.

[0049] Working principle: The rhinestones are poured into the rhinestone screening device by the rhinestone feeding device 10. Through the flipping and vibration of the vibration assembly 14, the rhinestones are arranged in an orderly manner on the screening disc 15. The screening disc 15 and the assembly platform 16 are matched through four positioning blocks 160 and positioning grooves 150, which improves the stability of the screening disc 15 station. After the rhinestone screening is completed, the first mechanical gripper 121 grabs the plastic suction board 17 on the plastic suction board placement platform 120 and transports it to the screening disc 15. When the screening disc 15 and the plastic suction board are closed, the first mechanical gripper 121 clamps the plastic suction board 17 and transports it to the screening board 15. At the same time, its claw rod extends and is clamped into the clamping groove 151, which is beneficial to improving the accuracy of the matching between the plastic suction board 17 and the screening disc 15 and improving the efficiency of closing the mold. Then, the feeding and flipping frame 130 clamps the plastic suction board 17 and the screening disc 15 and flips and transports them to the suction platform 23. At this time, the plastic suction board 17 is in the lower position and the screening disc 15 is in the upper position. The blower 30 on the suction platform 23 starts to work, and the rhinestones on the screening disc 15 fall onto the plastic suction board 17. After the blanking is completed, the screening disc 15 is flipped back to its original position by the feeding and flipping frame 130 and is reassembled onto the assembly platform 16. Then, the plastic film feeding device 20 grabs the plastic film on the plastic film placement platform 200 through the second mechanical gripper 201 and transports the plastic film to the suction platform 23. The suction platform 23 slides left and right along the horizontal slide rail 22 and moves to the lower part of the plastic film pressing ring 28 and under the baking assembly 40. The existing plastic film pressing ring 28 descends to press the plastic film, and then the baking assembly 40 descends to heat and soften the plastic film to complete the plastic suction packaging process. The structure of adding a heat preservation cover 401 outside the baking disc 400 and adding a sealing cover assembly 42 at the heat dissipation port of the heat preservation cover 401 makes the baking assembly 40 in a closed state when not working, which has the advantages of preventing heat loss and maintaining a constant temperature and can perform efficient heating work. When heating the plastic film, the baking mechanism 4 no longer performs horizontal sliding movement, but is improved to be in the form of the suction platform 23 moving back and forth for operation, which has the effect of reducing the heat loss of the baking assembly 40. The completed rhinestone plastic suction sheet is transported to the blanking and cooling table by the unloading and flipping frame 26. At this time, the plastic suction board 17 is in the upper position and the rhinestone plastic suction sheet is in the lower position. The plastic suction board 17 is transported to the plastic suction board placement platform 120 through the plastic suction board gripper 25 for a cyclic process. And the cooled rhinestone plastic suction sheet is automatically unloaded through the flipping of the cooling platform.

[0050] The above are only the preferred embodiments of the present invention, and the protection scope of the present invention is not limited to the above embodiments. All technical solutions falling within the concept of the present invention belong to the protection scope of the present invention. It should be noted that for those of ordinary skill in the art, several improvements and refinements made without departing from the principle of the present invention should also be regarded as within the protection scope of the present invention.

Claims

1. A novel diamond - decorated plastic - suction machine, characterized in that: It includes a frame, and screen drilling mechanisms located on both sides of the frame. There is a plastic thermoforming mechanism between the two screen drilling mechanisms, and a baking mechanism is arranged above the plastic thermoforming mechanism. The screen drilling mechanism includes a decorative drill feeding device and at least two screen drilling disc devices. Above the screen drilling disc device, there is a mechanical claw feeding device for transferring the plastic thermoformed sheet. On one side of the screen drilling device, there is a turning and transferring device. The screen drilling disc device includes a vibration assembly, a mold closing and lifting assembly, and a screen drilling disc. The vibration assembly includes a vibration source and an assembly platform for assembling the screen drilling disc. There are four positioning blocks on the assembly platform. The bottom of the screen drilling disc is provided with positioning slots adapted to the positioning blocks. Along the outer periphery of the screen drilling disc, there are at least four equally spaced clamping slots; The plastic thermoforming mechanism includes a plastic film feeding device, a plastic thermoforming device, and a discharging device. The plastic thermoforming device includes a horizontal slide rail and two plastic thermoforming platforms that are slidably matched left and right on the slide rail; The baking mechanism, located above the plastic thermoforming device, includes a baking assembly and a longitudinal driving part that drives the baking assembly to move up and down towards the plastic thermoforming platform. The baking assembly includes a baking tray and a heat preservation cover. At the heat dissipation opening of the heat preservation cover, there is an openable and closable sealing cover assembly.

2. The novel diamond - decorated plastic - suction machine according to claim 1, characterized in that: The mechanical claw feeding device includes a plastic thermoformed sheet placement platform and a mechanical claw hand one located above the plastic thermoformed sheet placement platform. The mechanical claw hand one is slidably matched on a slide frame one and slides back and forth along the slide frame one to transport the plastic thermoformed sheet on the plastic thermoformed sheet placement platform to the screen drilling disc.

3. The novel diamond - decorated plastic - suction machine according to claim 2, characterized in that: The turning and transferring device includes a feeding turning frame that can turn back and forth towards the screen drilling disc and the plastic thermoforming platform. One end of the feeding turning frame is equipped with a rotating shaft one, and the other end has an arc-shaped clamping area one. Clamping parts one are arranged on both sides of the clamping area one.

4. The novel diamond - decorated plastic - suction machine according to claim 1, characterized in that: Below the baking assembly corresponding to the horizontal slide rail, there is a liftable plastic film pressing ring. Sliders are arranged on both sides of the plastic thermoforming platform and are buckled on the horizontal slide rail and slide back and forth towards the plastic film pressing ring. A blower is also arranged inside the plastic thermoforming platform, and the air extraction port end of the blower is arranged towards the upper surface of the plastic thermoforming platform.

5. The novel diamond - decorated plastic - suction machine according to claim 4, characterized in that: The sealing cover assembly includes two cover plates and slide seats located on both sides of the cover plates. The slide seats are buckled on the slide rail and are slidably matched. When the two cover plates are in contact with each other, the heat dissipation opening of the heat preservation cover is in a sealed state. When the two cover plates slide in opposite directions, the heat dissipation opening of the heat preservation cover is in an open state.

6. The novel diamond - decorated plastic - suction machine according to claim 5, characterized in that: The longitudinal driving part includes a lifting assembly connected to the baking assembly and a longitudinal cylinder that drives the lifting assembly to move up and down. The lifting assembly includes a fixed frame and a lifting seat. A longitudinal guide rail is arranged on the fixed frame, and the lifting seat is buckled on the longitudinal guide rail and is slidably matched.

7. The novel diamond - decorated plastic - suction machine according to claim 1, characterized in that: The plastic film feeding device includes a plastic film placement platform and a mechanical claw hand two located above the plastic film placement platform. The mechanical claw hand two is slidably matched on a slide frame two and slides back and forth along the slide frame two to transport the plastic film to the plastic thermoforming platform.

8. The novel diamond - decorated plastic - suction machine according to claim 1, characterized in that: The blanking device includes a flipable blanking and cooling platform, a plastic suction plate gripper located above the blanking and cooling platform, and a discharging flip frame that flips back and forth between the plastic suction table and the blanking and cooling platform. The discharging flip frame transports the plastic suction plate and the finished decorative diamond film on the plastic suction table to the cooling platform. The plastic suction plate gripper slides back and forth along Slide Rail III to transport the plastic suction plate to the plastic suction plate storage platform.

9. The novel diamond - decorated plastic - suction machine according to claim 8, characterized in that: The bottom of the blanking and cooling platform is connected to the output shaft of the motor, and the rotation of the motor drives the blanking and cooling platform to flip.

10. The novel diamond - decorated plastic - suction machine according to claim 9, characterized in that: One end of the discharging flip frame is provided with a rotating shaft II, and the rotating shaft II is driven by a motor to rotate. The other end is provided with an arc-shaped clamping area II, and clamping members II are arranged on both sides of the clamping area II.