Product package transporting device

By designing the product package transportation device, the problems of misalignment and inadequate folding during the coating process are solved, stable sealing and efficient production of the coating are achieved, and the aesthetics and protective performance of the product are improved.

CN223132513UInactive Publication Date: 2025-07-22SHANDONG QIRUN MASCH EQUIP CO LTD
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Patent Information

Application Number
CN202421849717.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-01
Publication Date
2025-07-22
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

During the coating process, problems such as misalignment, inadequate folding, and cargo shaking often occur, resulting in reduced aesthetics, reduced protection performance, increased production efficiency and cost, poor sealing, and affecting user experience.

Method used

A product package transportation device is designed, including a coating feeding assembly, forming assembly and folding assembly. By precisely controlling the feeding, forming and folding process of the coating, it ensures that the coating is stable to adhere to the outer wall of the cargo, achieving high-precision folding and hot pressing, and avoiding misalignment and uneven sealing.

Benefits of technology

It realizes stable sealing of the coating, improves aesthetics and protection performance, reduces production costs, and improves production efficiency and user experience.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223132513U_ABST
Patent Text Reader

Abstract

The utility model discloses a product package conveying device which comprises a base, a feeding belt arranged at an opening in the top of the outer wall of the base, and a film covering feeding assembly arranged on one side of the outer wall of the base and used for covering the outer wall of the base. Wherein the film covering and feeding assembly comprises a feeding shell, a cutting frame, a feeding wheel, a guide wheel set, a rubber wheel, a lifting air cylinder, a lifting frame, a cutting motor, a transmission wheel set and a rotary cutter, and the feeding shell is fixedly arranged on one side of the outer wall of the base. When ports of goods are contracted and supported, dislocation is avoided in the process of moving and hot pressing of long edges of the bottom of a covering film, attractiveness and accuracy of sealing point positions are guaranteed, dislocation of the covering film is avoided before folding and in the moving process of the goods, meanwhile, stable and gradual port seam hot pressing sealing is achieved, and the sealing efficiency is improved. The problems of seam dislocation and non-uniform sealing point positions are avoided, the stability of the hot-pressed seam of the laminating film is guaranteed to the maximum extent, and the structural strength of the laminating film is guaranteed.
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Description

Technical Field

[0001] The utility model belongs to the technical field of film packaging, and specifically relates to a product wrapping and transporting device. Background Art

[0002] Film packaging is an important packaging technology, mainly used to provide functions such as protection, moisture-proof, dust-proof, and protection for products or goods. The following is a detailed explanation of film packaging:

[0003] I. Definition

[0004] Film packaging is a packaging method in which products or goods are placed in appropriate positions and then covered with one or more layers of plastic films. Its purpose is to provide certain protection and safety for the goods through the covering of plastic films.

[0005] II. Characteristics

[0006] Protective: Film packaging can protect goods to a certain extent and prevent them from being affected by moisture, pollution, damage, etc.

[0007] Moisture-proof and dust-proof: By covering with plastic films, it can effectively isolate external moisture and dust, and keep the goods dry and clean.

[0008] Aesthetic: The surface of the packaged products with film is smoother and brighter, improving the appearance quality and grade of the products.

[0009] Environmental protection: With the development of technology, the materials used in film packaging are becoming more and more environmentally friendly, reducing environmental pollution.

[0010] The main disadvantages of film packaging are summarized and presented point by point according to different aspects:

[0011] If problems such as misalignment or incomplete folding occur during the operation of film packaging, a series of disadvantages will arise. The following is a detailed analysis of these problems:

[0012] I. Misalignment of Film Packaging

[0013] Affecting aesthetics: Misalignment will cause the packaging appearance to be uneven, losing the original aesthetic effect and affecting the overall image of the product.

[0014] Reducing protection performance: Misalignment may cause the packaging not to completely cover the product, thus reducing its ability to protect the product from the external environment.

[0015] Increasing costs: Misalignment may lead to waste of packaging materials, increasing production costs. At the same time, additional labor and time may be required to correct the misalignment, further increasing costs.

[0016] Reduce production efficiency: In an automated production line, misalignment may cause the machine to stop or require manual intervention for adjustment, thus reducing production efficiency.

[0017] II. Incomplete folding

[0018] Affect packaging stability: Incomplete folding will result in an unstable packaging structure, making it prone to deformation or damage during transportation or storage.

[0019] Reduce sealing performance: Incomplete folding may cause the packaging to be not tightly sealed, making the product vulnerable to the external environment, such as moisture, dust, etc.

[0020] Increase the risk of breakage: Incomplete folding may make the packaging more likely to break when subjected to external forces, thus affecting the safety and quality of the product.

[0021] Reduce the user experience: For consumers, packaging with incomplete folding may leave a bad impression on them, reducing their trust and satisfaction with the product.

[0022] III. Misalignment and shaking of goods

[0023] Film tearing or damage: During the shaking process of the goods, friction may occur between the goods and the film. Especially when the film material is thin or of poor quality, tearing or damage is likely to occur at the corners or stress points, losing its due protective function.

[0024] Reduce sealing performance: The shaking of the goods may cause gaps or openings in the originally sealed film packaging, especially at the sealing or edge of the film. This will expose the goods inside the packaging to the external environment, increasing the risk of moisture absorption, contamination, or damage.

[0025] Goods displacement or collision: The shaking of the goods may cause the goods to move inside the packaging and collide with the inner wall of the packaging or other goods. This may not only damage the goods themselves but also exert additional pressure on the film, resulting in film deformation or damage. Summary of the utility model

[0026] The technical solution adopted by the present utility model is as follows: A product wrapping and transporting device, comprising:

[0027] A base and a feeding belt, the feeding belt is arranged at the opening at the top of the outer wall of the base;

[0028] The film laminating feeding component is arranged on one side of the outer wall of the base. Among them: the film laminating feeding component includes a feeding shell, a cutting frame, a feeding wheel, a guiding wheel group, a rubber wheel, a lifting cylinder, a lifting frame, a cutting motor, a transmission wheel group and a rotary knife. The feeding shell is fixedly arranged on one side of the outer wall of the base. The guiding wheel group is rotatably embedded on the inner wall of the feeding shell. The feeding wheel is embedded on the inner wall of the feeding shell. The rubber wheel is rotatably embedded near the top of the inner wall of the feeding shell. The cutting frame is fixedly arranged on the top of the outer wall of the base. The lifting cylinders are fixedly arranged on both sides of the bottom of the outer wall of the cutting frame. The output end of the lifting cylinder is fixedly arranged on the outer wall of the lifting frame. The lifting frame is slidably embedded on the outer wall of the cutting frame. The cutting motor is fixedly arranged on the outer wall of the lifting frame. The transmission wheel group is sleeved on the output end of the cutting motor. Both ends of the rotary knife are embedded at one end of the transmission wheel group;

[0029] A top plate and a bottom plate are fixedly arranged on the top of the outer wall of the cutting frame;

[0030] The forming component is arranged on one side of the outer wall of the base. Among them: the forming component includes a forming shell, a moving frame, a balance plate, a support block, a moving table, an adjusting motor, an adjusting frame, a fine-tuning cylinder, a dislocation frame, a dislocation motor and a roller. The forming shell is fixedly arranged on the top of the outer wall of the bottom plate. The balance plate is fixedly arranged on the outer wall of one end of the moving frame. The support block is slidably embedded in the opening of the balance plate. The moving table is slidably embedded in the opening of the balance plate. The adjusting motor is embedded inside the moving table. The adjusting frame is threadedly connected to the output end of the adjusting motor. The adjusting frame is slidably embedded in the opening at one end of the moving table. The fine-tuning cylinder is fixedly arranged on the outer wall of one end of the adjusting frame. The dislocation frame is fixedly arranged on the output end of the fine-tuning cylinder. The dislocation motor is fixedly arranged on the outer walls of the moving table and the dislocation frame. The roller is drivingly connected to the dislocation motor;

[0031] The folding assembly is provided on one side of the outer wall of the base, where: the folding assembly includes a folding frame, a leveling strip, a pressing cylinder, a first folding plate, a second folding plate, a heating strip, an angle motor, a pressing shell, a torsion plate, a driving rod, a pressing wheel, a top block, a pressing block, a return spring and a sealing strip. The first folding plate and the second folding plate are slidably embedded in the opening of the bottom plate. The heating strip is embedded at the outer wall edge of the first folding plate. The leveling strip is slidably embedded in the openings of the top plate and the bottom plate. The output end of the pressing cylinder is fixedly arranged on the outer wall of the leveling strip. The angle motor is fixedly arranged on the inner walls of two of the folding frames. The sliding is embedded at the center of the outer wall of the folding frame. The torsion plate is rotatably embedded on the inner walls of two of the folding frames. The driving rod is rotatably embedded in the opening of the folding frame. The pressing wheel is rotatably inserted on the outer wall of one end of the driving rod. The top block is fixedly arranged on the outer wall of the torsion plate. The pressing block is fixedly arranged on both sides of the outer wall of the pressing shell. The return spring is embedded in the inner wall of the pressing shell. The sealing strip is fixedly arranged on the outer wall of the pressing shell. There is a transmission connection between the angle motor and the driving rod;

[0032] Four moving cylinders are fixedly arranged at the top of the outer wall of the top plate, and the output end of each moving cylinder is fixedly arranged on the outer wall of the folding frame;

[0033] A conveyor belt is arranged on one side of the outer wall of the base, and a lifting stacking shell is arranged on one side of the outer wall of the conveyor belt through an external cylinder.

[0034] Further, a slideway is fixedly arranged on the inner wall of the base, and the slideway matches the feeding plate, and the slideway is communicated with a constraint shell. A lifting plate is slidably embedded in the inner wall of the constraint shell. A clamping plate is slidably embedded in the opening of the outer wall of the lifting plate. A first double-headed motor is fixedly arranged at the bottom of the outer wall of the lifting plate, and the output end of the first double-headed motor is threadedly connected to the inner wall of the clamping plate through a lead screw. An installation table is fixedly arranged at the bottom of the outer wall of the lifting plate. The clamping plate is slidably embedded in the inner wall of the constraint shell. The lifting stacking shell matches the slideway.

[0035] Further, a discharging cylinder and a second folding cylinder are fixedly arranged on one side of the outer wall of the forming shell. The output end of the discharging cylinder matches the opening on one side of the outer wall of the forming shell. The second folding cylinder is fixedly arranged on the outer wall of the second folding plate. A first folding cylinder is fixedly arranged at the bottom of the outer wall of the bottom plate, and the first folding cylinder is fixedly arranged on the outer wall of the first folding plate.

[0036] Further, a second double-headed motor is fixedly arranged at the top of the outer wall of the forming shell.

[0037] Further, both ends of the second double-headed motor are threadedly connected to the inner wall of the moving frame through lead screws.

[0038] Further, a forming plate is slidably embedded in the inner wall of the forming shell.

[0039] Further, the extrusion wheel and the top block are mutually matched.

[0040] Further, one end of the return spring is attached to the inner wall of the extrusion shell, and the other end of the return spring is attached to the outer wall of the folding frame.

[0041] Further, the outer walls of the extrusion wheel and the extrusion shell are sprayed with a rubber coating.

[0042] A transportation method of a product packaging transportation device, which is applied to any one of the above-mentioned product packaging transportation devices, includes the following steps:

[0043] S1. First, wind the film on the feeding wheel. The film is wound around the guide wheel group and the rubber wheel in sequence and enters directly below the cutting frame. Then, start the lifting cylinder to drive the lifting frame to move. Drive the transmission wheel group to rotate by using the cutting motor, so as to realize the cutting of the film by the rotary knife. Use the feeding belt for transmission, transport the film to directly below the forming shell, collect the goods by using the conveyor belt, then use the lifting stacking shell to prevent dropping, and finally use the external cylinder to push the feeding plate, and the feeding plate pushes the goods into the slideway;

[0044] S2. Finally, the goods move into the restraint shell. The stacking of multiple goods shakes. Use the first double-headed motor to drive the clamping plates to approach each other to clamp the goods. Use the external cylinder to drive the mounting table and the lifting plate to rise. The film covers the top of the goods. Here, the film rises along with the goods. The film and the goods are embedded into the forming shell. Use the forming plate to adjust the height of the goods inside the forming shell. At this time, start the second double-headed motor to drive the moving frame on the forming shell to approach each other. Then, the balance plate approaches the goods to complete the extrusion. Then, the lifting plate descends to disengage from the support of the goods. At this time, use the first folding plate and the second folding plate to stack the film at the bottom; so that the bottom of the film is folded;

[0045] S3. The support block squeezes the edge top of the film, so that the two ends and corners of the film are at a right angle. Then, start the adjustment motor to drive the adjustment frame to move, so that the roller approaches the film. Start the fine-tuning cylinder to make the dislocation frame rise. The two rollers clamp the joint of the film. Start the dislocation motor to drive the two rollers to rotate in the reverse direction, so that the film moves in the reverse direction to complete the clamping of the film, ensuring the stable forming of the film port. Start the heating strip to complete the hot pressing and sealing of the bottom joint of the film. Use the discharging cylinder to push the goods that have completed the bottom hot pressing out of the inside of the forming shell. The goods and the film enter the space between the top plate and the bottom;

[0046] S4. Port folding step: First, the goods are moved to the designated folding position. Then, the angle motor is started to drive the driving rod to rotate, and the pressing wheel presses the film covering on the short side of the port. Along with the moving cylinder, the folding frame is driven to move. Then, the pressing shell is used to complete the extrusion of the center of the film covering port. Along with the continuous movement of the folding frame, the pressing shell continues to press the return spring. At this time, the top block and the pressing block press against each other, causing the torsion plate to press the long side of the film covering port, so that the long side will not deform. At this time, a heating wire is additionally arranged on one side of the outer wall of the torsion plate to complete the hot pressing of both sides of the short side, completing the hot pressing of the short side of the film covering port. Then, the goods and the film covering move, and the pressing cylinder is used to drive the balance bars to approach each other, so that the long side of the film covering port is pressed. At this time, the corresponding moving cylinder is started again, so that the pressing shell and the sealing strip press the long side. The sealing strip is electrified and heated to complete the hot pressing of the plastic powder on the long side, completing the final film covering packaging.

[0047] In summary, due to the adoption of the above technical solutions, the beneficial effects of the present utility model are as follows:

[0048] (1) In the present utility model, the forming assembly supports the contraction of the port of the goods, avoiding the dislocation of the goods caused by shaking during the movement and the hot pressing of the long side at the bottom of the film covering, ensuring the aesthetics and accuracy of the sealing points.

[0049] (2) In the present utility model, the film covering feeding assembly can stably attach the film covering to the outer wall of the goods initially, avoiding the dislocation of the film covering during the folding preparation and the movement of the goods, and at the same time realizing the stable step-by-step hot pressing and sealing of the port joints, avoiding the problems of joint dislocation and uneven sealing points.

[0050] (3) In the present utility model, the folding assembly can achieve high-precision folding and hot pressing of the film covering, ensuring the sealing and aesthetics of the film covering, maximizing the stability at the gap of the film covering hot pressing, and ensuring the structural strength of the film covering. Description of the Drawings

[0051] Figure 1 is a three-dimensional view of the present utility model;

[0052] Figure 2 is a three-dimensional view of the slideway of the present utility model;

[0053] Figure 3 is a three-dimensional view of the bottom plate of the present utility model;

[0054] Figure 4 is a three-dimensional view of the second double-headed motor of the present utility model;

[0055] Figure 5 is an enlarged schematic view of A of the present utility model;

[0056] Figure 6Is a perspective view of the forming plate of the present utility model;

[0057] Figure 7 Is an enlarged schematic view of B of the present utility model;

[0058] Figure 8 Is a perspective view of the torsion plate of the present utility model;

[0059] Figure 9 Is an enlarged schematic view of C of the present utility model;

[0060] Figure 10 Is a perspective view of the forming shell of the present utility model;

[0061] Figure 11 Is an enlarged schematic view of D of the present utility model.

[0062] Markings in the figure: 1, base; 2, feeding shell; 3, cutting frame; 4, forming shell; 5, top plate; 6, bottom plate; 7, conveyor belt; 8, moving frame; 9, slideway; 10, restraint shell; 11, lifting plate; 12, clamping plate; 13, installation table; 14, folding frame; 15, flattening strip; 16, extrusion cylinder; 17, first folding plate; 18, second folding plate; 19, heating strip; 20, first folding cylinder; 21, moving cylinder; 101, feeding belt; 201, feeding wheel; 202, guide wheel set; 203, rubber wheel; 301, lifting cylinder; 302, lifting frame; 303, cutting motor; 304, transmission wheel set; 305, rotary knife; 401, discharging cylinder; 402, second folding cylinder; 403, forming plate; 404, second double-headed motor; 701, feeding plate; 702, lifting stacking shell; 801, balance plate; 802, support block; 803, moving table; 804, adjusting motor; 805, adjusting frame; 806, fine-tuning cylinder; 807, misalignment frame; 808, misalignment motor; 809, roller; 1101, first double-headed motor; 1401, angle motor; 1402, extrusion shell; 1403, torsion plate; 1404, driving rod; 1405, extrusion wheel; 1406, top block; 1407, extrusion block; 1408, return spring; 1409, sealing strip. Detailed implementation manners

[0063] In order to make the objectives, technical solutions and advantages of the present utility model clearer and more understandable, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model.

[0064] Embodiment 1

[0065] Refer to Figure 1 - Figure 11: A product packaging and transportation device, comprising: a base 1 and a feeding belt 101, the feeding belt 101 is arranged at the top opening of the outer wall of the base 1, and a film feeding component is arranged at one side of the outer wall of the base 1, wherein: the film feeding component comprises a feeding shell 2, a cutting frame 3, a feeding wheel 201, a guide wheel group 202, a rubber wheel 203, a lifting cylinder 301, a lifting frame 302, a cutting motor 303, a transmission wheel group 304 and a rotating knife 305, the feeding shell 2 is fixedly arranged at one side of the outer wall of the base 1, the guide wheel group 202 is rotatably embedded in the inner wall of the feeding shell 2, the feeding wheel 201 is embedded in the inner wall of the feeding shell 2, the rubber wheel 203 is rotatably embedded in the inner wall of the feeding shell 2 near the top, the cutting frame 3 is fixedly arranged at the top of the outer wall of the base 1, and the lifting cylinder 301 is lifted. The cylinder 301 is fixedly arranged at both sides of the bottom of the outer wall of the cutting frame 3, the output end of the lifting cylinder 301 is fixedly arranged at the outer wall of the lifting frame 302, the lifting frame 302 is slidably embedded in the outer wall of the cutting frame 3, the cutting motor 303 is fixedly arranged at the outer wall of the lifting frame 302, the transmission wheel group 304 is sleeved at the output end of the cutting motor 303, the two ends of the rotating knife 305 are embedded at one end of the transmission wheel group 304, the top of the outer wall of the cutting frame 3 is fixedly provided with a top plate 5 and a bottom plate 6, and a molding component is arranged at one side of the outer wall of the base 1, wherein: the molding component includes a molding shell 4, a moving frame 8, a balance plate 801, a support block 802, a moving platform 803, an adjustment motor 804, an adjustment frame 805, a fine-tuning cylinder 806, a misalignment frame 807, a misalignment frame 808, a The forming shell 4 is fixedly arranged at the top of the outer wall of the bottom plate 6, the balancing plate 801 is fixedly arranged at the outer wall of one end of the moving frame 8, the support block 802 is slidably embedded in the opening of the balancing plate 801, the moving platform 803 is slidably embedded in the opening of the balancing plate 801, the adjustment motor 804 is embedded in the inside of the moving platform 803, the adjustment frame 805 is threadedly connected to the output end of the adjustment motor 804, the adjustment frame 805 is slidably embedded in the opening of one end of the moving platform 803, the fine-tuning cylinder 806 is fixedly arranged at the outer wall of one end of the adjustment frame 805, the misalignment frame 807 is fixedly arranged at the output end of the fine-tuning cylinder 806, the misalignment motor 808 is fixedly arranged at the outer wall of the moving platform 803 and the misalignment frame 807, and the roller 80 9 is connected to the dislocation motor 808 in transmission, and the folding assembly is arranged at one side of the outer wall of the base 1, wherein: the folding assembly includes a folding frame 14, a flattening strip 15, an extrusion cylinder 16, a first folding plate 17, a second folding plate 18, a heating strip 19, an angle motor 1401, an extrusion shell 1402, a torsion plate 1403, a driving rod 1404, an extrusion wheel 1405, a top block 1406, an extrusion block 1407, a reset spring 1408 and a sealing strip 1409, the first folding plate 17 and the second folding plate 18 are slidably embedded in the opening of the bottom plate 6, the heating strip 19 is embedded in the outer wall edge of the first folding plate 17, the flattening strip 15 is slidably embedded in the opening of the top plate 5 and the bottom plate 6, and the output end of the extrusion cylinder 16 is fixedly arranged at the outer wall of the flattening strip 15,The angle motor 1401 is fixedly arranged at the inner walls of two of the folding frames 14, slidably embedded at the center of the outer wall of the folding frame 14, the torsion plate 1403 is rotatably embedded at the inner walls of two of the folding frames 14, the driving rod 1404 is rotatably embedded at the opening of the folding frame 14, the extrusion wheel 1405 is rotatably inserted at the outer wall of one end of the driving rod 1404, the top block 1406 is fixedly arranged at the outer wall of the torsion plate 1403, the extrusion block 1407 is fixedly arranged at both sides of the outer wall of the extrusion shell 1402, the return spring 1408 is embedded at the inner wall of the extrusion shell 1402, the sealing strip 1409 is fixedly arranged at the outer wall of the extrusion shell 1402, and there is a transmission connection between the angle motor 1401 and the driving rod 1404. At the top of the outer wall of the top plate 5, four moving cylinders 21 are fixedly arranged, and the output end of each moving cylinder 21 is fixedly arranged at the outer wall of the folding frame 14. On one side of the outer wall of the base 1, there is a conveyor belt 7, and on one side of the outer wall of the conveyor belt 7, there is a lifting stacking shell 702 through an external cylinder. The lifting stacking shell 702 can stack the goods conveyed by the conveyor belt to ensure the stability of storage and prevent misalignment and shaking of the goods on the surface.,

[0066] Refer to Figure 1 - Figure 11 : Inside the inner wall of the base 1, a slideway 9 is fixedly arranged, and the slideway 9 is mutually matched with the feeding plate 701, and the slideway 9 is communicatively connected with a restraint shell 10. Inside the inner wall of the restraint shell 10, a lifting plate 11 is slidably embedded. At the opening of the outer wall of the lifting plate 11, a clamping plate 12 is slidably embedded. At the bottom of the outer wall of the lifting plate 11, a first double-headed motor 1101 is fixedly arranged, and the output end of the first double-headed motor 1101 is threadedly connected to the inner wall of the clamping plate 12 through a lead screw. At the bottom of the outer wall of the lifting plate 11, a mounting table 13 is fixedly arranged, and the clamping plate 12 is slidably embedded inside the inner wall of the restraint shell 10. The lifting stacking shell 702 is mutually matched with the slideway 9. On one side of the outer wall of the forming shell 4, a discharging cylinder 401 and a second folding cylinder 402 are fixedly arranged. The output end of the discharging cylinder 401 is mutually matched with the opening on one side of the outer wall of the forming shell 4. The second folding cylinder 402 is fixedly arranged at the outer wall of the second folding plate 18. At the bottom of the outer wall of the bottom plate 6, a first folding cylinder 20 is fixedly arranged, and the first folding cylinder 20 is fixedly arranged at the outer wall of the first folding plate 17. At the top of the outer wall of the forming shell 4, a second double-headed motor 404 is fixedly arranged, and both ends of the second double-headed motor 404 are threadedly connected to the inner wall of the moving frame 8 through lead screws. Inside the inner wall of the forming shell 4, a forming plate 403 is slidably embedded. The extrusion wheel 1405 is mutually matched with the top block 1406. One end of the return spring 1408 is attached to the inner wall of the extrusion shell 1402, and the other end of the return spring 1408 is attached to the outer wall of the folding frame 14. The outer walls of the extrusion wheel 1405 and the extrusion shell 1402 are sprayed with a rubber coating, which can ensure a certain degree of extrusion buffer space and increase the friction coefficient.,

[0067] Refer toFigure 1 - Figure 11: A transportation method for a product package transportation device, which is applied to a product package transportation device in any one of the above, and includes the following steps: S1. First, wind the film on the feeding wheel 201. The film is sequentially wound around the guide wheel group 202 and the rubber wheel 203, and enters under the cutting frame 3. Then, start the lifting cylinder 301 to drive the lifting frame 302 to move. Use the cutting motor 303 to drive the transmission wheel group 304 to rotate, and then the rotary knife 305 cuts the film. Use the feeding belt 101 for transmission to transport the film under the forming shell 4. Use the conveyor belt 7 to collect the goods, and then use the lifting stacking shell 702 to prevent them from falling. Finally, use the external cylinder to push the feeding plate 701, and the feeding plate 701 pushes the goods into the slideway 9. S2. Finally, the goods move into the restraint shell 10. The stacking of multiple goods shakes. Use the first double-headed motor 1101 to drive the clamping plates 12 to approach each other to clamp the goods. Use the external cylinder to drive the mounting table 13 and the lifting plate 11 to rise. The film covers the top of the goods. Here, the film continues to rise with the goods, and the film and the goods are embedded into the forming shell 4. Use the forming plate 403 to adjust the height of the goods inside the forming shell 4. At this time, start the second double-headed motor 404 to drive the moving frame 8 on the forming shell 4 to approach each other. Then, the balance plate 801 approaches the goods to complete the extrusion. Then, the lifting plate 11 descends to disengage from the support of the goods. At this time, use the first folding plate 17 and the second folding plate 18 to stack the film at the bottom, so that the bottom of the film is folded. S3. The support block 802 extrudes the edge top of the film, so that the two ends and corners of the film are at a right angle. Then, start the adjustment motor 804 to drive the adjustment frame 805 to move, so that the rollers 809 approach the film. Start the fine-tuning cylinder 806 to make the misalignment frame 807 rise. The two rollers 809 clamp the joint of the film. Start the misalignment motor 808 to drive the two rollers 809 to rotate in the reverse direction, so that the film moves in the reverse direction to complete the clamping of the film and ensure the stable forming of the film port. Start the heating strip 19 to complete the hot press sealing of the bottom joint of the film. Use the discharging cylinder 401 to push the goods that have completed the bottom hot press out of the forming shell 4. The goods and the film enter the space between the top plate 5 and the bottom plate 6. S4. Port folding step: First, the goods move to the designated folding position. Then, start the angle motor 1401 to drive the driving rod 1404 to rotate. The extrusion wheel 1405 extrudes the film on the short side of the port. Along with the moving cylinder 21, drive the folding frame 14 to move. Then, use the extrusion shell 1402 to complete the extrusion of the center of the film port. Along with the continuous movement of the folding frame 14, the extrusion shell 1402 continues to extrude the return spring 1408. At this time, the top block 1406 and the extrusion block 1407 squeeze each other, so that the torsion plate 1403 extrudes the long side of the film port, so that the long side will not deform. At this time, a heating wire is additionally arranged on one side of the outer wall of the torsion plate 1403 to complete the hot press of the two sides of the short side and complete the hot press of the short side of the film port.Subsequently, the goods and the film move. By using the extrusion cylinder 16, the balance bars are driven to approach each other, causing the long side of the film port to be extruded. At this time, the corresponding moving cylinder 21 is started again, so that the extrusion shell 1402 and the sealing strip 1409 extrude the long side. The sealing strip 1409 is electrified and heated to complete the hot pressing of the plastic powder on the long side, and finally complete the film packaging.

[0068] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A product wrapping and transporting device, characterized in that, Including: A base (1) and a feeding belt (101), the feeding belt (101) is arranged at the opening at the top of the outer wall of the base (1); A film covering feeding assembly is arranged at one side of the outer wall of the base (1), wherein: the film covering feeding assembly includes a feeding shell (2), a cutting frame (3), a feeding wheel (201), a guiding wheel set (202), a rubber wheel (203), a lifting cylinder (301), a lifting frame (302), a cutting motor (303), a transmission wheel set (304) and a rotary knife (305). The feeding shell (2) is fixedly arranged at one side of the outer wall of the base (1), the guiding wheel set (202) is rotatably embedded in the inner wall of the feeding shell (2), the feeding wheel (201) is embedded in the inner wall of the feeding shell (2), the rubber wheel (203) is rotatably embedded in the inner wall of the feeding shell (2) near the top, the cutting frame (3) is fixedly arranged at the top of the outer wall of the base (1), the lifting cylinder (301) is fixedly arranged at both sides of the bottom of the outer wall of the cutting frame (3), the output end of the lifting cylinder (301) is fixedly arranged on the outer wall of the lifting frame (302), the lifting frame (302) is slidably embedded in the outer wall of the cutting frame (3), the cutting motor (303) is fixedly arranged on the outer wall of the lifting frame (302), the transmission wheel set (304) is sleeved on the output end of the cutting motor (303), and both ends of the rotary knife (305) are embedded at one end of the transmission wheel set (304); A top plate (5) and a bottom plate (6) are fixedly arranged at the top of the outer wall of the cutting frame (3); A forming assembly is arranged at one side of the outer wall of the base (1), wherein: the forming assembly includes a forming shell (4), a moving frame (8), a balance plate (801), a support block (802), a moving table (803), an adjusting motor (804), an adjusting frame (805), a fine-tuning cylinder (806), a dislocation frame (807), a dislocation motor (808) and a roller (809). The forming shell (4) is fixedly arranged at the top of the outer wall of the bottom plate (6), the balance plate (801) is fixedly arranged at one end of the outer wall of the moving frame (8), the support block (802) is slidably embedded in the opening of the balance plate (801), the moving table (803) is slidably embedded in the opening of the balance plate (801), the adjusting motor (804) is embedded in the interior of the moving table (803), the adjusting frame (805) is threadedly connected to the output end of the adjusting motor (804), the adjusting frame (805) is slidably embedded in the opening at one end of the moving table (803), the fine-tuning cylinder (806) is fixedly arranged at one end of the outer wall of the adjusting frame (805), the dislocation frame (807) is fixedly arranged at the output end of the fine-tuning cylinder (806), the dislocation motor (808) is fixedly arranged on the outer walls of the moving table (803) and the dislocation frame (807), and the roller (809) is in transmission connection with the dislocation motor (808); The folding assembly is provided on one side of the outer wall of the base (1), where: the folding assembly includes a folding frame (14), a leveling strip (15), an extrusion cylinder (16), a first folding plate (17), a second folding plate (18), a heating strip (19), an angle motor (1401), an extrusion shell (1402), a torsion plate (1403), a driving rod (1404), an extrusion wheel (1405), a top block (1406), an extrusion block (1407), a return spring (1408) and a sealing strip (1409). The first folding plate (17) and the second folding plate (18) are slidably embedded at the opening of the bottom plate (6). The heating strip (19) is embedded at the outer wall edge of the first folding plate (17). The leveling strip (15) is slidably embedded at the openings of the top plate (5) and the bottom plate (6). The output end of the extrusion cylinder (16) is fixedly arranged on the outer wall of the leveling strip (15). The angle motor (1401) is fixedly arranged on the inner walls of two of the folding frames (14). The [description is incomplete here, please check and provide the complete content]. The torsion plate (1403) is rotatably embedded on the inner walls of two of the folding frames (14). The driving rod (1404) is rotatably embedded at the opening of the folding frame (14). The extrusion wheel (1405) is rotatably inserted on the outer wall of one end of the driving rod (1404). The top block (1406) is fixedly arranged on the outer wall of the torsion plate (1403). The extrusion block (1407) is fixedly arranged on both sides of the outer wall of the extrusion shell (1402). The return spring (1408) is embedded in the inner wall of the extrusion shell (1402). The sealing strip (1409) is fixedly arranged on the outer wall of the extrusion shell (1402). The angle motor (1401) and the driving rod (1404) are in transmission connection; Four moving cylinders (21) are fixedly arranged at the top of the outer wall of the top plate (5), and the output end of each moving cylinder (21) is fixedly arranged on the outer wall of the folding frame (14); A conveyor belt (7) is provided on one side of the outer wall of the base (1), and a lifting stacking shell (702) is provided on one side of the outer wall of the conveyor belt (7) through an external cylinder.

2. The product parcel transportation device according to claim 1, wherein: A slideway (9) is fixedly arranged inside the base (1), and the slideway (9) matches the feeding plate (701). And the slideway (9) is communicated with a constraint shell (10). A lifting plate (11) is slidably embedded in the inner wall of the constraint shell (10). A clamping plate (12) is slidably embedded at the opening of the outer wall of the lifting plate (11). A first double-headed motor (1101) is fixedly arranged at the bottom of the outer wall of the lifting plate (11), and the output end of the first double-headed motor (1101) is threadedly connected to the inner wall of the clamping plate (12) through a lead screw. An installation table (13) is fixedly arranged at the bottom of the outer wall of the lifting plate (11). The clamping plate (12) is slidably embedded in the inner wall of the constraint shell (10). The lifting stacking shell (702) matches the slideway (9).

3. The product parcel transportation device according to claim 1, characterized in that: On one side of the outer wall of the forming shell (4), a discharging cylinder (401) and a second folding cylinder (402) are fixedly arranged. The output end of the discharging cylinder (401) matches the opening on one side of the outer wall of the forming shell (4). The second folding cylinder (402) is fixedly arranged on the outer wall of the second folding plate (18). At the bottom of the outer wall of the bottom plate (6), a first folding cylinder (20) is fixedly arranged, and the first folding cylinder (20) is fixedly arranged on the outer wall of the first folding plate (17).

4. A product packaging and transportation device according to claim 1, characterized in that: At the top of the outer wall of the forming shell (4), a second double-headed motor (404) is fixedly arranged.

5. A product parcel transportation device as described in claim 1, characterized in that: Both ends of the second double-headed motor (404) are threadedly connected to the inner wall of the moving frame (8) through lead screws.

6. The product parcel transportation device according to claim 1, characterized in that: A forming plate (403) is slidably embedded in the inner wall of the forming shell (4).

7. The product parcel transportation device according to claim 1, characterized in that: The extrusion wheel (1405) matches the top block (1406).

8. The product package transportation device according to claim 1, characterized in that: One end of the return spring (1408) abuts against the inner wall of the extrusion shell (1402), and the other end of the return spring (1408) abuts against the outer wall of the folding frame (14).

9. The product parcel transportation device according to claim 1, wherein: The outer walls of the extrusion wheel (1405) and the extrusion shell (1402) are sprayed with a rubber coating.

Citation Information

Cited By

  • Product package transportation device and transportation method

    CN118953793A

  • A product package transport device and a transport method

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