A kit packaging device
By simultaneously operating the molding strip and the heating chamber, heat sealing and heat shrinking of the medicine box packaging film are achieved, solving the problem of weak medicine box binding, simplifying the operation process, and improving packaging quality and production efficiency.
Patent Information
- Application Number
- CN202310995049.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-08
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2043-08-08
AI Technical Summary
In existing medicine box packaging devices, the packaging film is prone to being too tight or too loose during the strapping process, causing the medicine box to tip over or making it difficult to strap securely. Furthermore, the heat shrinking process increases the complexity of the operation.
A medicine box packaging device was designed. Through the cooperation of molding strips and heating box, the film is heat-sealed and heat-shrinked simultaneously during the bundling process, reducing the number of steps and ensuring that the film on the outside of the medicine box adheres tightly. A ratchet structure is used to realize automatic feeding.
It improves the sturdiness of medicine box packaging, simplifies the operation process, ensures that medicine boxes are not easily detached during transportation, and improves space utilization and production efficiency.
Smart Images

Figure CN116986047B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of medicine box packaging technology, and in particular to a medicine box packaging device. Background Technology
[0002] In the packaging industry, it is generally appropriate to bundle boxes for storage before their first use; that is, to bundle the individual boxes together using binding elements. This bundling is typically achieved using machines that continuously output boxed boxes to form bundles, and then bind all the boxes in each bundle together. The purpose of this is to provide a series of bundled boxes, which can then be easily packed, transported, or stored. The box bundling process involves pushing the stacked boxes through a vertically wound packaging film, at which point the back, top, and bottom of the box are wrapped in film. A film-sealing strip is positioned above the unwrapped side of the box. The upper film-sealing strip then descends, pressing the upper film onto the worktable. A heat-sealing cutter rises, causing the lower film to rise and contact the upper film. The heat-sealing cutter heat-seals both films and cuts them, achieving four-sided wrapping of the box, while a new packaging film is vertically bonded. During this bundling process, the packaging film needs to adhere to the outer surface of the medicine box to ensure that the medicine box is properly bundled and will not affect transportation. If the vertical packaging film is stretched too tightly, the medicine box is prone to tipping over when being pushed to wrap the film. If the vertical packaging film is stretched too loosely, the medicine box is not easy to be bundled securely. In the existing technology, a heat shrink packaging machine can be used to further adhere the packaging film to the outer surface of the medicine box, but this adds an extra step and is inconvenient to operate. Therefore, a device is needed that can ensure that the medicine box is properly bundled during packaging and will not fall off during transportation. Summary of the Invention
[0003] The purpose of this invention is to provide a medicine box packaging device that can heat shrink the outer film of the packaging box during the bundling process to improve the packaging strength, and automatically unload the material after bundling is completed.
[0004] The above-mentioned technical objective of the present invention is achieved through the following technical solution: A workbench is included, on which a conveyor belt is conveyed. A stacking device is provided in the conveying direction of the conveyor belt. A pushing device is fixedly connected to the workbench, located above the conveyor belt and facing the stacking device. A binding device is provided on the side of the stacking device away from the pushing device. An upper film conveying device and a lower film conveying device are provided opposite to each other on the side of the binding device. A vertical film located between the binding device and the stacking device is wound and connected between the upper film conveying device and the lower film conveying device. The binding device includes a box body channel and a molding strip slidably connected to the box body channel. A hollow groove is provided at the bottom of the box body channel, facing the molding strip. A material is provided in the hollow groove to be used with the box body channel. The device includes a melting platform matching the molding strip, a feeding cam rotatably connected to both sides of the box channel, a pressure plate slidably connected inside the box channel, a cylinder one for driving the molding strip up and down and a cylinder two for driving the pressure plate up and down fixedly connected to the box channel, a connecting rod fixed to the piston rod end of the cylinder two, a heating box connected to the connecting rod, a cover opening at the bottom of the heating box, the connecting rod extending into the heating box and fixedly connected to the pressure plate, the heating box including multiple main boxes slidably connected to each other, the main box at the bottom being fixedly connected to the molding strip, a heating plate installed at the top inside the heating box, an auxiliary box slidably connected inside the main box at the bottom, and a control component for controlling the descent of the auxiliary box connected between the box channel and the auxiliary box.
[0005] By adopting the above technical solution, the pushing device includes a pushing plate and a cylinder that drives the pushing plate to move left and right. The stacking device includes a packaging box arrangement box, a lifting platform located at the bottom of the packaging box arrangement box, and a cylinder that drives the lifting platform to move up and down. The conveyor belt transports the packaging boxes to the stacking device. The lifting platform moves up and down to stack the packaging boxes in the packaging box arrangement box. After a certain number of boxes are stacked, the pushing plate pushes forward to push the stacked packaging boxes into the box channel. During this process, the stacked packaging boxes pass through the vertical film, so that the back, top, and bottom of the packaging boxes entering the box channel are wrapped with film. Then, cylinder two drives the pressure plate to descend and press the top of the packaging box stack and the top film. Then, cylinder one drives the molding strip to descend and drive the film near the top of the packaging box stack to descend. The upper film conveying device winds up and unwinds the film. The molding strip drives the upper film to descend and contact the lower film. After contacting the lower film, the upper film contacts the melting table in the hollow groove. The upper surface of the melting table is in a high temperature state, so that the upper film wrapped on the molding strip... As the lower film melts, the upper and lower films on one side of the molding strip fuse together and stand vertically under the tightening of the film device, awaiting the arrival of the next batch of packaging boxes. The upper and lower films on the other side fuse together, close to the packaging box stack, forming a U-shape with the film previously wrapped around the stack. When the molding strip descends, it drives the heating box down, so that after the film is melted, the heating box will be covered by the packaging box stack wrapped with film, creating a sealed environment inside the heating box. The heating plate heats the inside of the heating box, causing the film to shrink and adhere tightly to the outer surface of the packaging box stack, making the packaging more secure. The bundling and heat shrinking are carried out relatively simultaneously, improving packaging quality while reducing one processing step. When the molding strip descends, it drives multiple main boxes to descend layer by layer, and when it rises, it drives multiple main boxes to retract and stack, improving space utilization. The top of the heating box is fixed to the connecting rod, ensuring a constant height between the heating plate and the pressure plate. The pressure plate presses down, causing the top of the heating box to descend. For packaging box stacks of different heights, the space inside the heating box is reduced to a suitable height, thereby accelerating heat shrinking.
[0006] A further configuration of the present invention is as follows: a sliding cavity is provided in the main box body at the bottom, and the end of the auxiliary box body extends into the sliding cavity; the control component includes a limiting plate slidably connected to the main box body at the bottom, a control plate fixed to the box body channel, and a connecting plate slidably connected to the control plate; the control plate is provided with an oblique hole for the connecting plate to slide; the connecting plate is provided with a connecting groove; the limiting plate is provided with a connecting block embedded in the connecting groove; and the end of the auxiliary box body is provided with a limiting groove for the limiting plate to be engaged.
[0007] By adopting the above technical solution, when the auxiliary box is retracted into the main box, the bottom of the heating box is higher than the molding strip, so that the heating box does not affect the film descent when the molding strip drives it. At the same time, it can cover the medicine box stack after the film is melted. The pressure plate presses down until it contacts the top of the packaging box stack, and the top of the heating box is fixed. Then the molding strip descends, driving the bottom main box to descend. Multiple main boxes unfold in the vertical direction. When the molding strip drives the film to descend to almost contact the melting table, the connecting block is embedded in the connecting groove. Then the molding strip descends a short distance and contacts the melting table. The film is melted and the films on the left and right sides separate. At the same time, the molding strip drives the limiting plate and the connecting plate to descend synchronously. When the connecting plate descends, it drives the limiting plate to move away from the heating box through the oblique hole. The limiting plate moves horizontally and disengages from the limiting groove, eliminating the restriction on the end of the auxiliary box. The descent of the auxiliary box blocks the gap between the bottom of the heating box and the box channel, sealing it inside the heating box. The heating plate heats and shrinks rapidly.
[0008] A further feature of the present invention is that a compression spring is connected between the limiting plate and the bottom main body box, and a compression spring is connected between the connecting plate and the control plate.
[0009] By adopting the above technical solution, the molding strip drives the main box to return, the limiting plate drives the connecting block to rise, the connecting block disengages from the connecting groove, the connecting plate moves upward and returns to the top of the inclined hole under the action of the second compression spring, and the limiting plate moves into the sliding cavity under the action of the first compression spring.
[0010] A further configuration of the present invention is as follows: ratchet racks are fixed on both sides of the molding strip, the ratchet racks mesh with a ratchet gear rotatably connected to the worktable, a bevel gear one is fixedly connected to the middle of the ratchet gear, the bevel gear one meshes with a bevel gear two, and the bevel gear two is fixedly connected to the middle of the unloading cam.
[0011] By adopting the above technical solution, after heat shrink packaging, the medicine boxes are bundled together. Cylinder 2 drives the pressure plate to rise. The ratchet racks on both sides of the molding strip are located at the bottom. When cylinder 1 moves the molding strip to the top and is about to completely detach from the bundled medicine box stack at the bottom of the heating box, the ratchet rack meshes with the ratchet gear, causing the ratchet gear to rotate. The ratchet gear drives bevel gear 2 to rotate through bevel gear 1. Bevel gear 2 drives the cam to rotate away from the bundling device until the protruding part contacts the medicine box stack, pushing the medicine box stack out for unloading. When the molding strip drives the ratchet gear to descend, it does not drive the cam to rotate. This structure enables the bundled packaging box stack to be unloaded when the molding strip returns, reducing the impact on the next packaging box stack entering the box body channel.
[0012] A further feature of the present invention is that a top plate is fixedly connected to the unloading cam, the end of the top plate is an arc shape from low to high, and the bottom of the auxiliary box is provided with an arc-shaped groove for the end of the top plate to be embedded.
[0013] By adopting the above technical solution, the molding strip drives the main box to return. After the limiting plate moves into the sliding cavity under the action of the compression spring, the end of the auxiliary box is still located below the limiting plate. At the same time, the unloading cam rotates and drives the top plate to rotate from the side of the box channel. The top plate rotates to the lowest point of the arc end and is embedded in the arc groove. Then the top plate continues to rotate to the high point and extends into the arc groove to lift the auxiliary box upward, so that the end of the auxiliary box moves upward and passes through the end of the limiting plate. The end of the limiting plate is located in the limiting groove again and locks the auxiliary box into the main box.
[0014] A further feature of the present invention is that the connecting rod has a plurality of mounting holes along the vertical direction, and a mounting bolt that abuts against the inner wall of the heating box is threaded into the mounting hole, and a clamping nut is threaded into one end of the mounting bolt that extends out of the mounting hole.
[0015] By adopting the above technical solution, multiple mounting holes are used to adjust the distance between the top of the heating box and the top of the packaging box stack, so that there is a suitable distance between the heating plate and the packaging box stack, the degree of heating is controlled, and damage to the appearance of the objects is avoided.
[0016] A further feature of the present invention is that a pressure sensor is provided inside the pressure plate, and a temperature controller is provided inside the heating box.
[0017] By adopting the above technical solution, when the pressure plate presses down to the top of the packaging box, the pressure sensor senses the pressure and sends a signal to cause the membrane strip to carry the upper film down to contact the melting table. The film is melted and the films on the left and right sides are separated. The heating box covers the packaging box stack, the heating plate heats up, and the temperature controller senses that the temperature inside the heating box has reached a certain value and controls the heating plate to stop heating. Cylinder 2 drives the pressure plate to rise, and cylinder 1 drives the membrane strip to rise while pushing the packaging box stack to unload.
[0018] The beneficial effects of this invention are:
[0019] 1. When the molding strip descends, it drives the heating box to descend as well. After the film is melted, the heating box is covered by the stack of packaging boxes wrapped with film. The inside of the heating box is sealed. The heating plate heats the inside of the heating box, causing the film to shrink and stick tightly to the outer surface of the stack of packaging boxes, making the packaging more secure. The bundling and heat shrinking are carried out relatively simultaneously, which improves the packaging quality while reducing one processing step.
[0020] 2. When the molding strip descends, it causes multiple main boxes to descend layer by layer; when it rises, it causes multiple main boxes to retract and stack, improving space utilization.
[0021] 3. The top of the heating box is fixed to the connecting rod to keep the height between the heating plate and the pressure plate constant. The pressure plate presses down and causes the top of the heating box to drop. For packaging boxes of different heights, the space inside the heating box is reduced to a suitable height, thereby accelerating heat shrinkage.
[0022] 4. When the membrane pressing strip returns, it drives the feeding cam to rotate and push the bundled packaging box stack to be fed out quickly, reducing the impact on the next packaging box stack entering the box body channel. Attached Figure Description
[0023] To more clearly illustrate the technical solutions in the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0024] Figure 1 This is a schematic diagram of the structure of Embodiment 1.
[0025] Figure 2 This is a top view of the structure of Embodiment 1.
[0026] Figure 3 yes Figure 2 Sectional view at point AA.
[0027] Figure 4 yes Figure 3 Enlarged view of point B.
[0028] Figure 5 yes Figure 3 Enlarged view of point C.
[0029] Figure 6 This is a schematic diagram of the connection relationship between the molding strip and the feeding cam in Embodiment 1.
[0030] Figure 7 This is a schematic diagram of the heating box in Embodiment 1.
[0031] In the diagram: 1. Workbench; 2. Conveyor belt; 3. Stacking device; 4. Pushing device; 5. Box channel; 6. Control components; 61. Limiting plate; 62. Control board; 63. Connecting plate; 64. Inclined hole; 65. Connecting groove; 66. Connecting block; 7. Molding strip; 8. Welding platform; 9. Unloading cam; 10. Pressure plate; 11. Cylinder 1; 12. Cylinder 2; 13. Connecting rod; 14. Heating box; 141. Main box; 142. Auxiliary box; 143. Sliding cavity; 144. Limiting groove; 145. Arc groove; 15. Heating plate; 16. Upper film conveying device; 17. Compression spring 1; 18. Compression spring 2; 19. Ratchet; 20. Ratchet; 21. Bevel gear 1; 22. Bevel gear 2; 23. Top plate; 24. Mounting bolt. Detailed Implementation
[0032] The technical solution of the present invention will now be clearly and completely described with reference to specific embodiments. Obviously, the described embodiments are merely some, not all, of the embodiments of the present invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.
[0033] Example 1: A medicine box packaging device, such as Figures 1-4 As shown, the device includes a workbench 1, on which a conveyor belt 2 is conveyed. A stacking device 3 is provided in the conveying direction of the conveyor belt 2. A pushing device 4, located above the conveyor belt 2 and directly opposite the stacking device 3, is fixedly connected to the workbench 1. A binding device is provided on the side of the stacking device 3 away from the pushing device 4. An upper film conveying device 16 and a lower film conveying device are provided opposite to the binding device on the side of the binding device. A vertical film located between the binding device and the stacking device 3 is wound and connected between the upper film conveying device 16 and the lower film conveying device. The binding device includes a box channel 5 and a mold slidably connected to the box channel 5. The box channel 5 has a hollowed-out groove at the bottom facing the molding strip 7. A melting platform 8 matching the molding strip 7 is installed in the hollowed-out groove. Feeding cams 9 are rotatably connected to both sides of the box channel 5. A pressure plate 10 is slidably connected inside the box channel 5. A cylinder 11 for driving the molding strip 7 up and down and a cylinder 12 for driving the pressure plate 10 up and down are fixedly connected to the box channel 5. A connecting rod 13 is fixed to the end of the piston rod of cylinder 12. A heating box 14 is connected to the connecting rod 13. The bottom of the heating box 14 has a covering opening. The connecting rod 13 extends into the heating box 14 and is fixedly connected to the pressure plate 10. Figure 7 As shown, the heating box 14 includes multiple main boxes 141 that are slidably connected to each other. The main box 141 at the bottom is fixedly connected to the molding strip 7. A heating plate 15 is installed at the top inside the heating box 14. An auxiliary box 142 is slidably connected inside the main box 141 at the bottom. A control component 6 for controlling the descent of the auxiliary box 142 is connected between the box channel 5 and the auxiliary box 142. A pressure sensor is installed inside the pressure plate 10. A temperature controller is installed inside the heating box 14.
[0034] Furthermore, such as Figure 4 , Figure 5 As shown, the bottom main box 141 has a sliding cavity 143, and the end of the auxiliary box 142 extends into the sliding cavity 143. The control component 6 includes a limit plate 61 that is slidably connected to the bottom main box, a control plate 62 that is fixed to the box channel 5, and a connecting plate 63 that is slidably connected to the control plate 62. The control plate 62 has an oblique hole 64 for the connecting plate 63 to slide, the connecting plate 63 has a connecting groove 65, the limit plate 61 has a connecting block 66 that is embedded in the connecting groove 65, and the end of the auxiliary box 142 has a limit groove 144 for the limit plate 61 to be inserted into.
[0035] Furthermore, such as Figure 4, Figure 5 As shown, a compression spring 17 is connected between the limiting plate 61 and the bottom main body box, and a compression spring 18 is connected between the connecting plate 63 and the control plate 62.
[0036] Furthermore, such as Figure 3 , Figure 6 As shown, ratchet racks 19 are fixed on both sides of the molding strip 7. The ratchet racks 19 mesh with ratchet gears 20 that are rotatably connected to the worktable 1. A bevel gear 21 is fixedly connected to the middle of the ratchet gear 20. A bevel gear 22 meshes with a bevel gear 21. The bevel gear 22 is fixedly connected to the middle of the unloading cam 9.
[0037] Furthermore, such as Figure 6 As shown, a top plate 23 is fixedly connected to the unloading cam 9. The end of the top plate 23 is set as an arc shape from low to high. The bottom of the auxiliary box 142 is provided with an arc groove 145 for the end of the top plate 23 to be embedded.
[0038] Furthermore, such as Figure 4 As shown, the connecting rod 13 has multiple mounting holes along the vertical direction. The mounting holes are threaded with mounting bolts 24 that abut against the inner wall of the heating box 14. The end of the mounting bolt 24 that extends out of the mounting hole is threaded with a clamping nut.
[0039] Working principle of the invention: The pushing device 4 includes a pushing plate and a cylinder that drives the pushing plate to move left and right. The stacking device 3 includes a packaging box arrangement box, a lifting platform located at the bottom of the packaging box arrangement box, and a cylinder that drives the lifting platform to move up and down. The conveyor belt 2 transports the packaging boxes to the stacking device 3. The lifting platform moves up and down to stack the packaging boxes in the packaging box arrangement box. After a certain number of boxes are stacked, the pushing plate pushes forward to push the stacked packaging boxes into the box channel 5. During this process, the stacked packaging boxes pass through the vertical film, so that the back, top, and bottom of the packaging boxes entering the box channel 5 are covered with film. Then, the cylinder 12 drives the pressure plate 10 to descend and press the top of the packaging box stack and the top film. Then, the cylinder 11 drives the molding strip 7 to descend, which in turn drives the film near the top of the packaging box stack to descend. At the same time, when the molding strip 7 descends, it drives the heating box 14 to descend. Multiple main boxes 141 unfold in the vertical direction. The upper film conveying device 16 winds up and unwinds the film. The molding strip 7 drives the film to descend to almost reach the top of the packaging box stack. When the melting table 8 comes into contact, the connecting block 66 is embedded in the connecting groove 65. Then the molding strip 7 descends a short distance and contacts the melting table 8. The film is melted and the films on the left and right sides are separated. At the same time, the molding strip 7 drives the limiting plate 61 and the connecting plate 63 to descend synchronously. When the connecting plate 63 descends, it drives the limiting plate 61 to move away from the heating box 14 through the oblique hole 64. The limiting plate 61 moves from the horizontal and disengages from the limiting groove 144, thus removing the restriction on the end of the auxiliary box 142. The auxiliary box 142 descends and blocks the gap between the bottom of the heating box 14 and the box channel 5 to seal the heating box 14. At this time, the upper and lower films on one side of the molding strip 7 are fused together and become vertical under the tightening of the film device, waiting for the next batch of packaging boxes to enter. The upper and lower films on the other side of the heating box 14 are fused together and approach the packaging box stack, forming a square shape with the film previously wrapped on the packaging box stack. The heating box 14 is sealed. The heating plate 15 heats the heating box 14, causing the film to shrink and stick tightly to the outer surface of the packaging box stack.After the temperature controller senses that the temperature inside the heating box has reached a certain value, it controls the heating plate 15 to stop heating. After the heat shrink packaging is completed, the medicine boxes are bundled together. Cylinder 2 12 drives the pressure plate 10 to rise. When cylinder 1 11 drives the film pressing strip to move above the bundled medicine box stack, the ratchet 19 meshes with the ratchet gear 20, causing the ratchet gear 20 to rotate. The ratchet gear 20 drives the bevel gear 22 to rotate through bevel gear 21. The bevel gear 22 drives the feeding cam 9 to rotate away from the bundling device until the protruding part contacts the medicine box stack, pushing the medicine box stack out of the lower part. As the material is being processed, the feeding cam 9 rotates, causing the top plate 23 to rotate from the side of the box channel 5. The top plate 23 rotates to its lowest point at the arc end and embeds itself into the arc groove 145. Then, the top plate 23 continues to rotate to its highest point and extends into the arc groove 145, lifting the auxiliary box 142 upwards. This causes the end of the auxiliary box 142 to move upwards and pass through the end of the limiting plate 61. The end of the limiting plate 61 then repositions itself in the limiting groove 144, locking the auxiliary box 142 and retracting it into the main box 141. Finally, the feeding cam 9 rotates back to the starting point to await the next batch of packaging boxes to enter. The entire bundling process is repeated in this manner.
Claims
1. A medicine box packaging device, comprising a workbench (1), a conveyor belt (2) provided on the workbench (1), a stacking device (3) provided in the conveying direction of the conveyor belt (2), a pushing device (4) fixedly connected to the workbench (1) above the conveyor belt (2) and facing the stacking device (3), and a binding device provided on the side of the stacking device (3) away from the pushing device (4), characterized in that: One side of the bundling device is provided with an upper film conveying device (16) and a lower film conveying device, the upper film conveying device (16) and the lower film conveying device are woundly connected with a vertical film located between the bundling device and the box stacking device (3), the bundling device comprises a box channel (5) and a mold pressing strip (7) slidably connected with the box channel (5), the bottom of the box channel (5) is provided with a hollow groove opposite to the mold pressing strip (7), a fuse platform (8) matched with the mold pressing strip (7) is arranged in the hollow groove, the both sides of the box channel (5) are rotatably connected with a blanking cam (9), the box channel (5) is slidably connected with a pressing plate (10), the box channel (5) is fixedly connected with a first air cylinder (11) for driving the mold pressing strip (7) to move up and down and a second air cylinder (12) for driving the pressing plate (10) to move up and down, the piston rod end of the second air cylinder (12) is fixedly connected with a connecting rod (13), the connecting rod (13) is connected with a heating box (14), the bottom of the heating box (14) is provided with a covering opening, the connecting rod (13) is fixedly connected with the pressing plate (10) and extends into the heating box (14), the heating box (14) comprises a plurality of main box bodies (141) slidably connected with each other, the main box body (141) located at the bottom is fixedly connected with the mold pressing strip (7), a heating plate (15) is arranged at the top of the heating box (14), the main box body (141) located at the bottom is slidably connected with an auxiliary box body (142), and a control assembly (6) for controlling the auxiliary box body (142) to descend is connected between the box channel (5) and the auxiliary box body (142).
2. A kit packaging device according to claim 1, wherein: The main box body (141) located at the bottom is provided with a sliding cavity (143), the end of the auxiliary box body (142) extends into the sliding cavity (143), the control assembly (6) comprises a limiting plate (61) slidably connected with the main box body (141) located at the bottom, a control plate (62) fixedly connected with the box channel (5) and a connecting plate (63) slidably connected with the control plate (62), the control plate (62) is provided with an inclined hole (64) for the sliding of the connecting plate (63), the connecting plate (63) is provided with a connecting groove (65), the limiting plate (61) is provided with a connecting block (66) embedded in the connecting groove (65), and the end of the auxiliary box body (142) is provided with a limiting groove (144) for clamping the limiting plate (61).
3. A kit packaging device according to claim 2, wherein: The limiting plate (61) and the main box body (141) located at the bottom are connected with a first compression spring (17), and the connecting plate (63) and the control plate (62) are connected with a second compression spring (18).
4. The kit packaging device of claim 1, wherein: The mold pressing strip (7) is fixedly connected with a ratchet bar (19) on both sides, the ratchet bar (19) is engaged with a ratchet gear (20) rotatably connected with the workbench (1), the ratchet gear (20) is fixedly connected with a bevel gear one (21) at the middle, the bevel gear one (21) is engaged with a bevel gear two (22), and the bevel gear two (22) is fixedly connected with the middle of the blanking cam (9).
5. A kit packaging device according to claim 4, wherein: The top plate (23) is fixedly connected to the blanking cam (9), the end of the top plate (23) is provided with an arc shape from low to high, and the bottom of the auxiliary box body (142) is provided with an arc-shaped slot (145) for embedding the end of the top plate (23).
6. The kit packaging device of claim 1, wherein: A plurality of mounting holes are arranged on the connecting rod (13) in the vertical direction, mounting bolts (24) abutting against the inner wall of the heating box (14) are threadedly connected in the mounting holes, and the mounting bolts (24) are threadedly connected with compression nuts at one end of the mounting hole.
7. The kit packaging device of claim 1, wherein: The pressure sensor is arranged in the pressing plate (10), and the temperature controller is arranged in the heating box (14).
Citation Information
Patent Citations
Pillbox packing machine
CN105711879A
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