Flat-pressing flat-die-cutting waste-cleaning gilding press

By designing a flat die cutting and cleaning waste gold stamping machine including material collection device, auxiliary separation mechanism and separation and unloading mechanism, the problem of difficult waste accumulation after the equipment is used is solved, and automated waste treatment and efficient operation of the equipment are achieved.

CN119974769AInactive Publication Date: 2025-05-13RUIAN AOER PRINTING & PACKAGING MASCH CO LTD
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Patent Information

Application Number
CN202510481665.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-17
Publication Date
2025-05-13
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

After a long time of use, the flat-level die-cutting and cleaning waste hot stamping machine is difficult to clean up in time, which affects the subsequent material collection effect.

Method used

A flat die-cutting waste gold stamping machine including a material collection device, an auxiliary separation mechanism and a separation and unloading mechanism is designed. The material collection device pushes the waste from the square discharge hole of the material collection box into the separation and unloading mechanism for processing through the square push plate and the long threaded rod driven by the motor. The auxiliary separation mechanism pushes the accumulated waste to the separation box through the side push plate and the electric push rod. The separation and unloading mechanism passes through the T-shaped sliding hole and the return spring to realize automatic unloading and covering and sealing of the waste.

Benefits of technology

It effectively prevents the problem of excessive waste accumulation inside the collection box after long-term use, improves the efficiency and quality of subsequent collection, avoids equipment shutdown and cleaning caused by waste accumulation, and improves work efficiency.

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Abstract

The invention relates to the technical field of die-cutting waste-cleaning stamping machines, and particularly discloses a flat-pressing flat-die-cutting waste-cleaning stamping machine. Comprising a collecting box, a square discharging hole is formed in one side of the collecting box, a motor is fixedly connected to the side, away from the square discharging hole, of the collecting box, a driving shaft of the motor penetrates through the collecting box and is fixedly connected with a long threaded rod, the long threaded rod is sleeved with a rhombic sleeve plate in a threaded connection mode, and a square push plate is fixedly connected to the bottom of the rhombic sleeve plate; a horizontally-arranged square plate is fixedly connected to one side of the square push plate, an auxiliary separation mechanism is fixedly connected to the side, close to the horizontally-arranged square plate, of the square push plate, and a side ejector rod is fixedly connected to one side of the auxiliary separation mechanism. The square push plate moves to push accumulated waste in the material collecting box to enter the separating and discharging mechanism from the discharging square hole for discharging treatment, and the situation that after the material collecting box is used for a long time, excessive waste is accumulated in the material collecting box and is difficult to clean up in time, and the subsequent material collecting effect is affected is prevented.
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Description

Technical Field

[0001] The invention relates to the technical field of die-cutting, waste-clearing and hot stamping machines, in particular to a flat die-cutting, waste-clearing and hot stamping machine. Background Art

[0002] Flat die-cutting, waste stripping and hot stamping machine is a professional equipment integrating die-cutting, waste stripping and hot stamping. It is widely used in the printing industry. The double-unit flat die-cutting, waste stripping and hot stamping machine is an efficient, precise and multifunctional equipment, which plays an important role in improving the quality and production efficiency of printed products. Die-cutting principle: using die-cutting knife, steel knife, hardware mold, steel wire, etc., to apply a certain pressure through the stamping plate, the printed product or cardboard is rolled and cut into a certain shape. Hot stamping principle: based on the principle of heat pressure transfer, under the action of combined pressure, the electrochemical aluminum contacts with the hot stamping plate and the substrate, the electric heating plate heats up to make the hot stamping plate heat up, the hot-melt dyeing resin layer and adhesive of the electrochemical aluminum melt, the aluminum layer is peeled off from the base film and transferred to the substrate, waste stripping principle: through a specific waste stripping mechanism, mechanical force or airflow is used to separate the waste around the die-cut product from the finished product to complete the waste stripping work; A large amount of waste generated by waste cleaning work is usually collected in a collection box. After the collection box is used for a long time, too much waste accumulates inside and it is difficult to clean it up in time, affecting the subsequent material collection effect. Therefore, we proposed a flat die-cutting waste cleaning and hot stamping machine. Summary of the invention

[0003] In order to solve the above technical problems, the present invention provides a flat die-cutting, waste stripping and hot stamping machine, comprising a machine body, a waste stripping device is fixedly connected to the inner side of the machine body, a hot stamping device is fixedly connected to one side of the waste stripping device, a die-cutting device is fixedly connected to the side of the waste stripping device away from the hot stamping device, and a material receiving device is fixedly connected to the inner side of the waste stripping device; The material receiving device comprises a material receiving box, a material discharge square hole is opened on one side of the material receiving box, a motor is fixedly connected to a side of the material receiving box away from the material discharge square hole, a driving shaft of the motor passes through the material receiving box and is fixedly connected to a threaded long rod, a diamond sleeve plate is sleeved on the outer side of the threaded long rod and threadedly connected, a square push plate is fixedly connected to the bottom of the diamond sleeve plate, and the square push plate moves to push the accumulated waste in the material receiving box from the material discharge square hole into the separation and unloading mechanism for material discharge processing, so as to prevent the material receiving box from accumulating too much waste in time after long-term use, which will affect the subsequent material receiving effect; The outer side of the material receiving box is fixedly connected to the inner side of the waste cleaning device, the end of the threaded long rod close to the motor is rotatably connected to the inner wall of the material receiving box through a rotating bolt, and the bottom of the square push plate is slidably connected to the inner wall of the material receiving box; One side of the square push plate is fixedly connected to a flat square plate, and the flat square plate covers the area between the side of the square push plate away from the discharge square hole and the material receiving box at all times as the square push plate moves, to prevent a portion of the pushed waste from overflowing from the top of the square push plate to the area between the side away from the discharge square hole and the material receiving box when there is a lot of accumulated waste collected in the material receiving box, making it difficult to handle. The square push plate is fixedly connected to an auxiliary separation mechanism on one side close to the flat square plate, and a side push rod is fixedly connected to one side of the auxiliary separation mechanism, and a hard oblique brush is fixedly connected to the bottom of the side of the auxiliary separation mechanism close to the side push rod, and the hard oblique brush will toggle the waste at the bottom of the inner wall of the material receiving box when the square push plate moves. The hopper is lifted up to prevent a part of the waste with a smaller area from accumulating at the bottom of the inner wall of the material receiving box without being pushed away and being mixed between the bottom of the square push plate and the bottom of the inner wall of the material receiving box. One side of the auxiliary separation mechanism passes through and is slidably connected with a diamond sleeve shell. The diamond sleeve shell is arranged on the outer side of the diamond sleeve plate to limit the diamond sleeve plate and wrap the threaded long rod for protection, so as to prevent the removed excess waste from accumulating on the threaded long rod and causing the threaded long rod to get stuck when the thread is engaged. A separation and unloading mechanism is fixedly connected to the side of the material receiving box close to the chip removal square hole, and a material dropping guide mechanism is fixedly connected to the side of the material receiving box close to the motor. A side round hole is opened on the side of the material receiving box close to the motor. The side of the flat square plate away from the square push plate penetrates the material receiving box and is slidably connected to the material receiving box, and the side of the diamond-shaped casing penetrates the square push plate and is fixedly connected to the inner wall of the material receiving box.

[0004] Furthermore, the auxiliary separation mechanism includes a side push plate, which pushes the accumulated waste at the bottom of the side sealing push plate to a position close to the inner side of the separation box to prevent the side push rod from moving back and pushing the accumulated waste at the bottom back into the receiving box when the side sealing rotating plate rotates to a vertical state. One side of the side push plate is fixedly connected to an electric push rod, one side of the side push plate is fixedly connected to one end of the side push rod, one side of the side push plate is fixedly connected to one end of the hard oblique brush, the side push plate is sleeved on a diamond sleeve shell and slidably connected to the diamond sleeve shell, the output end of the electric push rod is fixedly connected to one side of the square push plate, two electric push rods are provided, and the two electric push rods are distributed at a position where one side of the square push plate is horizontally aligned with the side circular hole; The separation and unloading mechanism includes a separation box, a T-shaped sliding hole is provided on the top of the separation box, and a T-shaped slide plate is slidably connected to the inner wall of the T-shaped sliding hole. The separation box is lifted upward so that the separation box can be disengaged from the T-shaped slide plate through the T-shaped sliding hole to perform unloading processing, thereby preventing the waste material accumulated in the collection box from being too much and requiring the machine to be stopped for material discharge and cleaning in the collection box, which affects the work efficiency. An internal fixing rod is fixedly connected to the inner wall of the separation box, and a side sealing rotating plate is sleeved and rotatably connected to the outer side of the internal fixing rod. A top opening groove is provided on the top of the side sealing rotating plate, and a return spring is fixedly connected to the inner wall of the top opening groove. The return spring is tightened by a return force The side sealing rotating plate is driven to rotate to a vertical state to cover and seal the position of the separation box near the discharge square hole to prevent the waste accumulated in the separation box from leaking out from one side when the separation box is unloaded and moved away; the inner wall of the top opening groove is fixedly connected with an annular sleeve, and the return spring is wrapped and protected by arranging an annular sleeve on the outside of the return spring to prevent a part of the waste pushed by the square push plate from being mixed between the return springs in the top opening groove and affecting the use effect of the return spring; one side of the T-shaped slide plate is fixedly connected to one side of the material receiving box, and the return spring is sleeved on the built-in fixing rod and fixedly connected to the built-in fixing rod at the inner center.

[0005] Furthermore, the material-dropping guiding mechanism comprises a circular air plate, through which air is sucked into the material-collecting box so that the waste material moves toward the inside of the material-collecting box in the direction of the airflow, thereby preventing some waste material with a smaller volume from scattering around when falling and being unable to successfully fall into the material-collecting box. An air inlet circular hole is provided on one side of the circular air plate, and an annular electric slide rail is sleeved and fixedly connected to the outer side of the circular air plate. The inner wall of the annular electric slide rail is rotatably connected to a built-in slide rod, and an arc-shaped baffle is fixedly connected to the outer side of the built-in slide rod. An arc-shaped blocking rod is arranged on the outside to cover and protect the annular guide groove of the annular electric slide rail, so as to prevent a part of the waste with a smaller volume from falling on the inner wall of the annular electric slide rail and affecting the rotation effect of the built-in slide rod. A strip scraper is fixedly connected to one end of the built-in slide rod. The strip scraper scrapes and cleans the air intake hole at all times as the built-in slide rod rotates, so as to prevent a large amount of waste from being adsorbed on the surface of the circular air plate by the suction force of the gas and affecting the air suction effect of the air intake hole. A high-pressure air pump is connected to the side of the circular air plate away from the strip scraper. The high-pressure air pump An annular fixing plate is sleeved on the outside and fixedly connected to it, and one side of the annular fixing plate is fixedly connected to a side fixing rod, the air outlet of the high-pressure air pump is connected to a concave connecting pipe, and the end of the concave connecting pipe away from the high-pressure air pump is connected to an inclined square air plate, and the inclined square air plate is used to spray air to the position near the outside of the top of the material receiving box to push the waste to move into the material receiving box, so as to prevent a part of the falling waste near the outside of the material receiving box from being easily collected in the material receiving box, and an air outlet circular hole is opened on the side of the inclined square air plate away from the concave connecting pipe, and the The circular air plate is configured as a circular shell with a circular cavity inside, the inclined square air plate is configured as a square shell with a square cavity inside, one side of the circular air plate is fixedly connected to the inner wall of the material receiving box, one side of the annular electric slide rail is fixedly connected to the inner wall of the material receiving box, two built-in sliding rods are provided, and the two built-in sliding rods are distributed on the inner wall of the annular electric slide rail, one end of the high-pressure air pump close to the circular air plate is fixedly connected to one side of the material receiving box, and one end of the side push rod away from the annular fixed plate is fixedly connected to one side of the material receiving box.

[0006] The present invention provides a flat die-cutting, waste removal and hot stamping machine. It has the following beneficial effects: 1. The flat die-cutting, waste cleaning and hot stamping machine pushes the accumulated waste in the receiving box through the square discharge hole into the separation and unloading mechanism for discharge processing through the square push plate, to prevent the collection box from accumulating too much waste inside after long-term use, which is difficult to clean up in time and affects the subsequent collection effect. The separation box is lifted upward so that the separation box can be disengaged from the T-shaped slide hole and the T-shaped slide plate for discharge processing, to prevent the collection box from accumulating too much waste and needing to stop the machine for discharge and cleaning, which affects the work efficiency. The circular air plate is used to evacuate the inside of the collection box so that the waste moves to the inside of the collection box through the airflow direction, to prevent some smaller waste from floating around when falling and being difficult to successfully fall into the collection box.

[0007] 2. The flat die-cutting and waste stamping machine is provided with a material receiving device. A diamond-shaped cover is provided on the outer side of the diamond-shaped cover plate to limit the diamond-shaped cover plate and wrap the long threaded rod for protection, so as to prevent the excess waste removed from accumulating on the long threaded rod and causing the long threaded rod to get stuck when the thread is engaged. The flat square plate covers the area between the side of the square push plate away from the material discharge square hole and the material receiving box at all times as the square push plate moves, so as to prevent a part of the pushed waste from overflowing from the top of the square push plate to the receiving box when there is a lot of accumulated waste collected in the receiving box. The area between the side away from the discharge square hole and the receiving box is difficult to handle. The hard inclined brush will lift up the waste at the bottom of the inner wall of the receiving box as the square push plate moves, preventing a part of the smaller waste from accumulating at the bottom of the inner wall of the receiving box and not being pushed away and mixed between the bottom of the square push plate and the bottom of the inner wall of the receiving box. The square push plate moves to push the accumulated waste in the receiving box from the discharge square hole into the separation and unloading mechanism for discharge processing, preventing the receiving box from accumulating too much waste inside after long-term use and being difficult to clean up in time, affecting the subsequent collecting effect.

[0008] 3. The flat pressing die-cutting waste clearing and hot stamping machine is provided with an auxiliary separation mechanism and a separation and unloading mechanism, which pushes the accumulated waste at the bottom of the side sealing push plate to a position close to the inside of the separation box through the side push plate, to prevent the side push rod from moving back and the side sealing rotary plate from rotating to a vertical state to push the accumulated waste at the bottom back into the receiving box, and drive the side sealing rotary plate to rotate to a vertical state through the return force to cover and block the position of the separation box close to the discharge square hole on one side to prevent the accumulated waste in the separation box from leaking out from one side when the separation box is unloaded and moved away, and lift the separation box upward so that the separation box can be disengaged from the T-shaped sliding hole and the T-shaped sliding plate for unloading, to prevent the waste accumulated in the collection box from being too much and needing to be stopped for discharging and cleaning in the collection box, affecting the work efficiency, and wrapping the return spring with an annular sleeve on the outside of the return spring to protect it, to prevent a part of the waste pushed by the square push plate from being mixed between the return springs in the top opening groove, affecting the use effect of the return spring.

[0009] 4. The flat die-cutting, waste cleaning and hot stamping machine is provided with a material dropping guiding mechanism, which uses a circular air plate to evacuate the interior of the material receiving box so that the waste moves toward the interior of the material receiving box through the direction of the airflow, thereby preventing some of the smaller waste from scattering around when falling and being unable to successfully fall into the material receiving box; the inclined square air plate is used to spray air at the position near the outside of the top of the material receiving box to push the waste to move toward the inside of the material receiving box, thereby preventing some of the falling waste near the outside of the material receiving box from being easily collected in the material receiving box; the strip scraper bar is used to scrape and clean the air inlet hole at all times as the built-in slide bar rotates, thereby preventing the surface of the circular air plate from being affected by gas suction and a large amount of waste from being adsorbed on the surface, thereby affecting the air suction effect of the air inlet hole; an arc-shaped baffle bar is provided on the outside of the built-in slide bar to cover and protect the annular guide groove of the annular electric slide rail, thereby preventing some of the smaller waste from falling on the inner wall of the annular electric slide rail when falling and affecting the rotation effect of the built-in slide rail. BRIEF DESCRIPTION OF THE DRAWINGS

[0010] Figure 1 It is a structural schematic diagram of the flat pressing die cutting waste cleaning and hot stamping machine of the present invention; Figure 2 It is a schematic diagram of the side structure of the flat pressing die cutting waste cleaning and hot stamping machine of the present invention; Figure 3 It is a structural schematic diagram of the material receiving device of the present invention; Figure 4 It is a schematic diagram of the bottom side cross-section structure of the material receiving device of the present invention; Figure 5 It is a schematic diagram of the structure of the auxiliary separation mechanism and the separation and unloading mechanism of the present invention; Figure 6 This is an enlarged structural diagram of the separation and unloading mechanism A of the present invention; Figure 7 It is a schematic diagram of the structure of the blanking guide mechanism of the present invention; Figure 8 It is a schematic diagram of the side structure of the blanking guide mechanism of the present invention.

[0011] In the figure: 1, machine body; 2, waste cleaning device; 3, hot stamping device; 4, die cutting device; 5, material receiving device; 501, material receiving box; 502, material discharge square hole; 503, motor; 504, threaded long rod; 505, diamond sleeve plate; 506, square push plate; 507, flat square plate; 508, auxiliary separation mechanism; 509, side push rod; 510, hard oblique brush; 511, diamond sleeve shell; 512, separation and unloading mechanism; 513, material drop guide mechanism; 514, side round hole; 5081, side push plate; 5082, electric push rod; 5121, separation box; 512 2. T-shaped sliding hole; 5123. T-shaped sliding plate; 5124. Built-in fixing rod; 5125. Side sealing rotating plate; 5126. Top opening groove; 5127. Retracting spring; 5128. Annular sleeve; 5131. Circular air plate; 5132. Air inlet circular hole; 5133. Annular electric slide rail; 5134. Built-in sliding rod; 5135. Arc baffle; 5136. Strip scraper rod; 5137. High-pressure air pump; 5138. Annular fixing plate; 5139. Side fixing rod; 51310. Concave connecting pipe; 51311. Oblique square air plate; 51312. Air outlet circular hole. DETAILED DESCRIPTION

[0012] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0013] See also Figure 1-Figure 4 The present invention provides a flat die-cutting, waste stripping and hot stamping machine, comprising: a machine body 1, a waste stripping device 2 is fixedly connected to the inner side of the machine body 1, a hot stamping device 3 is fixedly connected to one side of the waste stripping device 2, a die-cutting device 4 is fixedly connected to the side of the waste stripping device 2 away from the hot stamping device 3, and a material receiving device 5 is fixedly connected to the inner side of the waste stripping device 2; The material receiving device 5 comprises a material receiving box 501, a material discharging square hole 502 is opened on one side of the material receiving box 501, a motor 503 is fixedly connected to the side of the material receiving box 501 away from the material discharging square hole 502, a driving shaft of the motor 503 passes through the material receiving box 501 and is fixedly connected to a threaded long rod 504, a diamond-shaped sleeve plate 505 is sleeved on the outer side of the threaded long rod 504 and is threadedly connected, and a square push plate 506 is fixedly connected to the bottom of the diamond-shaped sleeve plate 505; The outer side of the material receiving box 501 is fixedly connected to the inner side of the waste cleaning device 2, the end of the threaded long rod 504 close to the motor 503 is rotatably connected to the inner wall of the material receiving box 501 through a rotating bolt, and the bottom of the square push plate 506 is slidably connected to the inner wall of the material receiving box 501; A flat square plate 507 is fixedly connected to one side of the square push plate 506, an auxiliary separation mechanism 508 is fixedly connected to one side of the square push plate 506 close to the flat square plate 507, a side push rod 509 is fixedly connected to one side of the auxiliary separation mechanism 508, a hard inclined brush 510 is fixedly connected to the bottom of the side of the auxiliary separation mechanism 508 close to the side push rod 509, a diamond-shaped sleeve 511 is penetrated and slidably connected to one side of the auxiliary separation mechanism 508, a separation and unloading mechanism 512 is fixedly connected to one side of the material collecting box 501 close to the chip removal square hole, a material dropping guide mechanism 513 is fixedly connected to one side of the material collecting box 501 close to the motor 503, and a side circular hole 514 is provided on one side of the material collecting box 501 close to the motor 503; One side of the flat square plate 507 away from the square push plate 506 penetrates the material receiving box 501 and is slidably connected to the material receiving box 501. One side of the diamond-shaped shell 511 penetrates the square push plate 506 and is fixedly connected to the inner wall of the material receiving box 501. When in use, the cardboard is placed on the die-cutting device 4 on the body 1 for die-cutting. Die-cutting is to cut materials through a knife die of a specific shape to achieve the required shape and size. Through the transfer of the device, during the die-cutting process, excess waste is removed by the waste removal device 2 to ensure the neatness of the finished product. The removed material falls into the inside of the material receiving device 5. After the excess waste falls into the material receiving box 501 and accumulates to a certain height, the motor 503 is started. The long threaded rod 504 is driven to rotate, and the rotation of the long threaded rod 504 drives the diamond sleeve plate 505 which is limited in the diamond sleeve shell 511 to move. The diamond sleeve plate 505 is limited by setting a diamond sleeve shell 511 on the outside of the diamond sleeve plate 505, and the long threaded rod 504 is wrapped and protected at the same time. The movement of the diamond sleeve plate 505 drives the auxiliary separation mechanism 508 at the bottom to move together. The movement of the auxiliary separation mechanism 508 drives the square push plates 506, the side push rods 509 and the hard oblique brushes 510 on both sides to move together. When the square push plate 506 moves, it pushes the waste accumulated in the material receiving box 501 to move toward the direction of the discharge square hole 502. When the square push plate 506 moves, The flat square plate 507 on one side moves together, and the flat square plate 507 covers the area between the side of the square push plate 506 away from the discharge square hole 502 and the material receiving box 501 at all times as the square push plate 506 moves. The hard inclined brush 510 will lift up the waste at the bottom of the inner wall of the material receiving box 501 as the square push plate 506 moves, and the side push rod 509 gradually approaches the separation and discharge mechanism 512 as the square push plate 506 moves, and opens the separation and discharge mechanism 512 by pushing. After the separation and discharge mechanism 512 is opened, the accumulated waste pushed by the square push plate 506 will enter the separation and discharge mechanism 512, and the square push plate 506 moves to push the waste into the separation and discharge mechanism 512. The accumulated waste in the movable material receiving box 501 enters the separation and unloading mechanism 512 from the discharge square hole 502 for discharge processing. When the square push plate 506 moves to the end position of the threaded long rod 504 away from the motor 503, the accumulated waste near the discharge square hole 502 is pushed into the separation and unloading mechanism 512 through the auxiliary separation mechanism 508, and then the separation and unloading mechanism 512 is removed from one side of the material receiving box 501 to process the waste in a unified manner. At the same time, the falling material guiding device on one side of the material receiving box 501 guides the waste to fall into the material receiving box 501 by sucking air into the inside of the material receiving box 501 and ejecting air from the top of the material receiving box 501 near the outside.

[0014] See also Figure 1-Figure 8The present invention provides a flat die-cutting and waste stamping machine: the auxiliary separation mechanism 508 includes a side push plate 5081, one side of the side push plate 5081 is fixedly connected with an electric push rod 5082, one side of the side push plate 5081 is fixedly connected to one end of a side push rod 509, one side of the side push plate 5081 is fixedly connected to one end of a hard oblique brush 510, the side push plate 5081 is sleeved on a diamond sleeve 511 and is slidably connected to the diamond sleeve 511, the output end of the electric push rod 5082 is fixedly connected to one side of a square push plate 506, two electric push rods 5082 are provided, and the two electric push rods 5082 are distributed at a position where one side of the square push plate 506 is horizontally aligned with the side circular hole 514; The separation and unloading mechanism 512 comprises a separation box 5121, a T-shaped sliding hole 5122 is provided on the top of the separation box 5121, a T-shaped sliding plate 5123 is slidably connected to the inner wall of the T-shaped sliding hole 5122, an inner wall of the separation box 5121 is fixedly connected to an internal fixing rod 5124, a side sealing rotating plate 5125 is sleeved and rotatably connected to the outer side of the internal fixing rod 5124, a top opening groove 5126 is provided on the top of the side sealing rotating plate 5125, a return spring 5127 is fixedly connected to the inner wall of the top opening groove 5126, an annular sleeve 5128 is fixedly connected to the inner wall of the top opening groove 5126, one side of the T-shaped sliding plate 5123 is fixedly connected to one side of the material receiving box 501, the return spring 5127 is sleeved on the internal fixing rod 5124 and is fixedly connected to the internal fixing rod 5124 at the inner center; The blanking guide mechanism 513 includes a circular air plate 5131, one side of the circular air plate 5131 is provided with an air inlet circular hole 5132, the outer side of the circular air plate 5131 is sleeved and fixedly connected with an annular electric slide rail 5133, the inner wall of the annular electric slide rail 5133 is rotatably connected with a built-in slide rod 5134, the outer side of the built-in slide rod 5134 is fixedly connected with an arc baffle 5135, one end of the built-in slide rod 5134 is fixedly connected with a strip scraper rod 5136, the side of the circular air plate 5131 away from the strip scraper rod 5136 is connected with a high-pressure air pump 5137, the outer side of the high-pressure air pump 5137 is sleeved and fixedly connected with an annular fixing plate 5138, one side of the annular fixing plate 5138 is fixedly connected with a side fixing rod 5139, and the air outlet of the high-pressure air pump 5137 is connected to the outer side of the circular air plate 5131. A concave connecting pipe 51310 is provided, and one end of the concave connecting pipe 51310 away from the high-pressure air pump 5137 is connected to an inclined square air plate 51311, and a gas outlet circular hole 51312 is provided on the side of the inclined square air plate 51311 away from the concave connecting pipe 51310. The circular air plate 5131 is configured as a circular shell with a circular cavity inside, and the inclined square air plate 51311 is configured as a square shell with a square cavity inside. One side of the circular air plate 5131 is fixedly connected to the inner wall of the material receiving box 501, and one side of the annular electric slide rail 5133 is fixedly connected to the inner wall of the material receiving box 501. Two built-in slide rods 5134 are provided, and the two built-in slide rods 5134 are distributed on the inner wall of the annular electric slide rail 5133. The high-pressure air pump 5137 is close to the circular air plate 513 1 is fixedly connected to one side of the material receiving box 501, and the end of the side push rod 509 away from the annular fixed plate 5138 is fixedly connected to one side of the material receiving box 501. When in use, the side push rod 509 gradually approaches the side sealing rotating plate 5125 when moving toward the discharge square hole 502 and pushes the side sealing rotating plate 5125 to rotate toward the inside of the separation box 5121 around the built-in fixed rod 5124. When the side sealing rotating plate 5125 rotates, it drives the return spring 5127 in the top opening groove 5126 to rotate and tighten. At this time, the side sealing rotating plate 5125 gradually opens to allow the waste pushed by the square push plate 506 to enter the separation box 5121. After the square push plate 506 moves to the end position of the threaded long rod 504 away from the motor 503, the electric push rod 5082 is started to push the side push plate 5081 pushes the waste accumulated under the side seal to the position close to the inside of the separation box 5121, and the side push plate 5081 pushes the accumulated waste at the bottom of the side seal push plate to the position close to the inside of the separation box 5121. After the accumulated waste at the bottom of the side seal rotating plate 5125 is pushed to the area close to the inside of the separation box 5121, the motor 503 drives the threaded long rod 504 to reverse so that the square push plate 506 moves back. When the side push rod 509 does not push the side seal rotating plate 5125 as the square push plate 506 moves back, the return spring 5127 drives the side seal rotating plate 5125 to rotate to a vertical state through the return force to cover and block the position of the separation box 5121 near the side of the discharge square hole 502. After the side seal rotating plate 5125 covers and blocks one side of the separation box 5121,The separation box 5121 is lifted upward so that the separation box 5121 can be disengaged from the T-shaped slide plate 5123 through the T-shaped slide hole 5122 for unloading processing, and the return spring 5127 is wrapped and protected by an annular sleeve 5128 on the outside of the return spring 5127. When collecting waste materials, the circular air plate 5131 is evacuated by the high-pressure air pump 5137 so that the circular air plate 5131 sucks air into the internal area of ​​the receiving box 501 through the air inlet circular hole 5132. The high-pressure air pump 5137 fills the sucked gas into the inclined square air plate 51311 through the concave connecting pipe 51310 and sprays it out from the air outlet circular hole 51312, and passes through the circular air plate 5131 evacuates the inside of the material receiving box 501 so that the waste moves into the material receiving box 501 in the direction of the air flow. The inclined square air plate 51311 sprays air at the top of the material receiving box 501 near the outside to push the waste into the material receiving box 501. At the same time, the circular electric slide rail 5133 drives the internal slide bar 5134 to rotate, driving the strip scraper bar 5136 and the arc baffle plate 5135 to rotate together. The strip scraper bar 5136 scrapes and cleans the air inlet hole 5132 at all times as the internal slide bar 5134 rotates. The arc baffle bar is arranged on the outside of the internal slide bar 5134 to cover and protect the annular guide groove of the circular electric slide rail 5133.

[0015] When the present invention is in operation, the cardboard is placed on the die-cutting device 4 on the machine body 1 for die-cutting. Die-cutting is to cut the material by a knife die of a specific shape to achieve the required shape and size. Through the transmission of the device, during the die-cutting process, the excess waste is removed by the waste removal device 2 to ensure the neatness of the finished product. The removed material falls into the material receiving device 5. After the excess waste falls into the material receiving box 501 and accumulates to a certain height, the motor 503 is started to drive the threaded long rod 504 to rotate. The threaded long rod 504 rotates to drive the diamond sleeve plate 505 limited in the diamond sleeve shell 511 to move. By setting a diamond sleeve shell 511 on the outside of the diamond sleeve plate 505 to limit the diamond sleeve plate 505, the threaded long rod 504 is wrapped and protected. The movement of the diamond sleeve 505 drives the auxiliary separation mechanism 508 at the bottom to move together. The movement of the auxiliary separation mechanism 508 drives the square push plates 506, the side push rods 509 and the hard oblique brushes 510 on both sides to move together. When the square push plate 506 moves, it pushes the waste accumulated in the material receiving box 501 to move toward the direction of the material discharging square hole 502. When the square push plate 506 moves, it drives the flat square plate 507 on one side to move together. As the square push plate 506 moves, the flat square plate 507 always covers the area between the side of the square push plate 506 away from the material discharging square hole 502 and the material receiving box 501. When the square push plate 506 moves, the hard oblique brush 510 will lift the waste at the bottom of the inner wall of the material receiving box 501 in a toggle manner. When the square push plate 506 moves, it gradually approaches the separation and discharge mechanism 512 and opens the separation and discharge mechanism 512 in a top-punching manner. After the separation and discharge mechanism 512 is opened, the accumulated waste pushed by the square push plate 506 will enter the separation and discharge mechanism 512, and the accumulated waste in the material receiving box 501 is pushed by the square push plate 506 to enter the separation and discharge mechanism 512 from the discharge square hole 502 for discharge processing. When the square push plate 506 moves to the end position of the threaded long rod 504 away from the motor 503, the accumulated waste near the discharge square hole 502 is pushed into the separation and discharge mechanism 512 through the auxiliary separation mechanism 508, and then the separation and discharge mechanism 512 is removed from one side of the material receiving box 501 to process the waste uniformly. The material falling guiding device on one side of the material box 501 guides the waste material to fall into the material receiving box 501 by sucking air into the inside of the material receiving box 501 and ejecting air from the top of the material receiving box 501 near the outside. When the side push rod 509 moves toward the discharge square hole 502, it gradually approaches the side sealing rotating plate 5125 and pushes the side sealing rotating plate 5125 to rotate toward the inside of the separation box 5121 around the built-in fixing rod 5124. When the side sealing rotating plate 5125 rotates, it drives the return spring 5127 in the top opening groove 5126 to rotate and tighten. At this time, the side sealing rotating plate 5125 gradually opens, allowing the waste material pushed by the square push plate 506 to enter the separation box 5121. After the square push plate 506 moves to the end position of the threaded long rod 504 away from the motor 503,The electric push rod 5082 is started to push the side push plate 5081 to push the waste accumulated under the side seal to the position close to the inner side of the separation box 5121. The side push plate 5081 pushes the waste accumulated at the bottom of the side seal push plate to the position close to the inner side of the separation box 5121. After the waste accumulated at the bottom of the side seal rotating plate 5125 is pushed to the area close to the inner side of the separation box 5121, the motor 503 drives the threaded long rod 504 to reverse so that the square push plate 506 moves back. The side push rod 509 moves back with the square push plate 506 and does not move toward the side seal rotating plate 5125. When pushing, the return spring 5127 drives the side sealing rotating plate 5125 to rotate to a vertical state through the return force to cover and block the position of the separation box 5121 near the discharge square hole 502. After the side sealing rotating plate 5125 covers and blocks one side of the separation box 5121, the separation box 5121 is lifted upward so that the separation box 5121 is disengaged from the T-shaped sliding hole 5122 and the T-shaped sliding plate 5123 for unloading. The return spring 5127 is wrapped by a ring sleeve 5128 on the outside of the return spring 5127. When collecting waste materials, the circular air plate 5131 is evacuated by the high-pressure air pump 5137 so that the circular air plate 5131 can suck air into the inner area of ​​the receiving box 501 through the air inlet circular hole 5132. The high-pressure air pump 5137 fills the sucked gas into the inclined square air plate 51311 through the concave connecting pipe 51310 and ejects it from the air outlet circular hole 51312. The circular air plate 5131 is used to evacuate the inside of the receiving box 501 so that the waste materials move into the receiving box 501 through the air flow direction. The square air plate 51311 is arranged to spray air near the outer side of the top of the material receiving box 501 to push the waste material to move into the material receiving box 501. At the same time, the inner slide bar 5134 is driven to rotate by the annular electric slide rail 5133, driving the strip scraper bar 5136 and the arc baffle plate 5135 to rotate together. The strip scraper bar 5136 scrapes and cleans the air inlet hole 5132 at all times as the inner slide bar 5134 rotates. The arc baffle bar is arranged on the outer side of the inner slide bar 5134 to cover and protect the annular guide groove of the annular electric slide rail 5133.

[0016] Obviously, the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field and related fields without creative work should fall within the scope of protection of the present invention. The structures, devices and operating methods not specifically described and explained in the present invention are implemented according to the conventional means in the field unless otherwise specified and limited.

Claims

1. A flat die-cutting and waste stamping machine, comprising a machine body (1), characterized in that: A waste removal device (2) is fixedly connected to the inner side of the machine body (1); a hot stamping device (3) is fixedly connected to one side of the waste removal device (2); a die-cutting device (4) is fixedly connected to the side of the waste removal device (2) away from the hot stamping device (3); and a material receiving device (5) is fixedly connected to the inner side of the waste removal device (2); The material receiving device (5) comprises a material receiving box (501), a material discharge square hole (502) is opened on one side of the material receiving box (501), a motor (503) is fixedly connected to the side of the material receiving box (501) away from the material discharge square hole (502), a driving shaft of the motor (503) passes through the material receiving box (501) and is fixedly connected to a threaded long rod (504), a diamond-shaped sleeve plate (505) is sleeved on the outer side of the threaded long rod (504) and is threadedly connected, and a square push plate (506) is fixedly connected to the bottom of the diamond-shaped sleeve plate (505).

2. The flat die-cutting and waste stamping machine according to claim 1, characterized in that: The outer side of the material receiving box (501) is fixedly connected to the inner side of the waste clearing device (2), one end of the threaded long rod (504) close to the motor (503) is rotatably connected to the inner wall of the material receiving box (501) via a rotating bolt, and the bottom of the square push plate (506) is slidably connected to the inner wall of the material receiving box (501).

3. The flat die-cutting and waste stamping machine according to claim 1, characterized in that: One side of the square push plate (506) is fixedly connected to a flat square plate (507), one side of the square push plate (506) close to the flat square plate (507) is fixedly connected to an auxiliary separation mechanism (508), one side of the auxiliary separation mechanism (508) is fixedly connected to a side push rod (509), a hard inclined brush (510) is fixedly connected to the bottom of the side of the auxiliary separation mechanism (508) close to the side push rod (509), one side of the auxiliary separation mechanism (508) is penetrated and slidably connected to a diamond-shaped sleeve (511), one side of the material receiving box (501) close to the chip removal square hole is fixedly connected to a separation and unloading mechanism (512), one side of the material receiving box (501) close to the motor (503) is fixedly connected to a material dropping guide mechanism (513), and a side circular hole (514) is provided on the side of the material receiving box (501) close to the motor (503).

4. The flat die-cutting and waste stamping machine according to claim 3 is characterized in that: The side of the flat square plate (507) away from the square push plate (506) penetrates the material receiving box (501) and is slidably connected to the material receiving box (501), and the side of the diamond-shaped casing (511) penetrates the square push plate (506) and is fixedly connected to the inner wall of the material receiving box (501).

5. The flat die-cutting and waste stamping machine according to claim 3 is characterized in that: The auxiliary separation mechanism (508) comprises a side push plate (5081), one side of the side push plate (5081) is fixedly connected to an electric push rod (5082), one side of the side push plate (5081) is fixedly connected to one end of a side push rod (509), one side of the side push plate (5081) is fixedly connected to one end of a hard oblique brush (510), and the side push plate (5081) is sleeved on a rhombus-shaped casing (511) and is slidably connected to the rhombus-shaped casing (511).

6. The flat die-cutting, waste cleaning and hot stamping machine according to claim 5, characterized in that: The output end of the electric push rod (5082) is fixedly connected to one side of the square push plate (506), two electric push rods (5082) are provided, and the two electric push rods (5082) are distributed at a position on one side of the square push plate (506) horizontally aligned with the side circular hole (514).

7. The flat die-cutting, waste cleaning and hot stamping machine according to claim 3, characterized in that: The separation and unloading mechanism (512) comprises a separation box (5121), a T-shaped sliding hole (5122) is provided on the top of the separation box (5121), a T-shaped sliding plate (5123) is slidably connected to the inner wall of the T-shaped sliding hole (5122), an internal fixing rod (5124) is fixedly connected to the inner wall of the separation box (5121), a side sealing rotating plate (5125) is sleeved on the outer side of the internal fixing rod (5124) and is rotatably connected, a top opening groove (5126) is provided on the top of the side sealing rotating plate (5125), a return spring (5127) is fixedly connected to the inner wall of the top opening groove (5126), and an annular sleeve (5128) is fixedly connected to the inner wall of the top opening groove (5126).

8. The flat die-cutting, waste cleaning and hot stamping machine according to claim 7, characterized in that: One side of the T-shaped slide plate (5123) is fixedly connected to one side of the material receiving box (501), and the return spring (5127) is sleeved on the built-in fixing rod (5124) and fixedly connected to the built-in fixing rod (5124) at the inner center.

9. The flat die-cutting, waste cleaning and hot stamping machine according to claim 3, characterized in that: The material dropping guide mechanism (513) comprises a circular air plate (5131), one side of the circular air plate (5131) is provided with an air inlet circular hole (5132), the outer side of the circular air plate (5131) is sleeved with and fixedly connected to an annular electric slide rail (5133), the inner wall of the annular electric slide rail (5133) is rotatably connected to an internal slide rod (5134), the outer side of the internal slide rod (5134) is fixedly connected to an arc-shaped baffle plate (5135), one end of the internal slide rod (5134) is fixedly connected to a strip scraper rod (5136), and the circular air plate (5131) is away from the strip scraper rod (5136). ) is connected to a high-pressure air pump (5137) on one side, an annular fixing plate (5138) is sleeved on the outer side of the high-pressure air pump (5137) and fixedly connected thereto, one side of the annular fixing plate (5138) is fixedly connected to a side fixing rod (5139), an air outlet of the high-pressure air pump (5137) is connected to a concave connecting pipe (51310), an end of the concave connecting pipe (51310) away from the high-pressure air pump (5137) is connected to an inclined square air plate (51311), and an air outlet circular hole (51312) is provided on the side of the inclined square air plate (51311) away from the concave connecting pipe (51310).

10. The flat die-cutting, waste removal and hot stamping machine according to claim 9, characterized in that: The circular air plate (5131) is configured as a circular shell having a circular cavity inside, the inclined square air plate (51311) is configured as a square shell having a square cavity inside, one side of the circular air plate (5131) is fixedly connected to the inner wall of the material receiving box (501), one side of the annular electric slide rail (5133) is fixedly connected to the inner wall of the material receiving box (501), two built-in slide rods (5134) are provided, and the two built-in slide rods (5134) are distributed on the inner wall of the annular electric slide rail (5133), one end of the high-pressure air pump (5137) close to the circular air plate (5131) is fixedly connected to one side of the material receiving box (501), and one end of the side push rod (509) away from the annular fixed plate (5138) is fixedly connected to one side of the material receiving box (501).

Citation Information

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