Environment-friendly plastic bag with anti-skid lifting handle structure and integral forming method of environment-friendly plastic bag

By using an integrated molding method, the complexity and environmental issues of producing anti-slip handle structures for plastic bags have been solved, enabling efficient and low-cost manufacturing of anti-slip handle plastic bags.

CN121290841AActive Publication Date: 2026-01-09福建省阳强塑胶制品有限公司
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Patent Information

Application Number
CN202511855682.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-10
Publication Date
2026-01-09
Estimated Expiration
2045-12-10

AI Technical Summary

Technical Problem

The existing anti-slip handle structure of plastic bags has a complex and cumbersome production process, resulting in low production efficiency and high costs. At the same time, non-integrated solutions are difficult to meet environmental protection requirements.

Method used

Using an integrated molding method, the process involves steps such as blown film, folding, die cutting, anti-slip texture embossing, hot sealing, and corner folding to form an environmentally friendly plastic bag with an anti-slip handle structure. Mechanical devices such as cylinders and pneumatic grippers are used to open and fold the handle, ensuring a continuous and efficient manufacturing process.

Benefits of technology

It enables continuous and efficient manufacturing of plastic bags, improves product performance, simplifies the production process, reduces costs, and meets environmental protection requirements.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of plastic bags, in particular to an environment-friendly plastic bag with an anti-skid handle structure and an integrated forming method of the environment-friendly plastic bag. The technical problem to be solved by the invention is to provide the environment-friendly plastic bag with the anti-slip handle structure and the integral forming method thereof, which can be integrally formed, ensure the continuous and efficient manufacturing process, improve the product performance and meet the modern production requirements at the same time. An environment-friendly plastic bag with an anti-skid handle structure comprises a bag body and handles which are located on the two sides of the opening end of the bag body and integrally connected with the bag body. M-fold structures are arranged on the two sides of the bag body, and inner fold lines are arranged at the bottoms of the M folds; a first sealing edge is arranged on the lower side of the bag body far away from the handle; a second sealing edge is arranged on the upper side of the handle far away from the bag body; a lifting handle hole is formed in the lifting handle, and a lug integrally connected with the lifting handle is folded in the lifting handle hole. The effects that integrated forming is achieved, it is ensured that the manufacturing process is continuous and efficient, the product performance is improved, and meanwhile the modernized production requirement is met are achieved.
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Description

Technical Field

[0001] This invention relates to the field of plastic bags, and more particularly to an environmentally friendly plastic bag with an anti-slip handle structure and its one-piece molding method. Background Technology

[0002] Plastic bags are widely used in social production and daily life as a low-cost and convenient packaging container; among them, plastic bags with handles are favored because they are easy to carry; however, traditional plastic bags with handles have significant defects in terms of grip comfort and anti-slip performance.

[0003] To improve the user experience, existing technologies typically employ two improvement paths: first, to prevent slippage, anti-slip textures are embossed onto the outer surface of the handle through subsequent processes; second, to address the issue of handles digging into the hand, an additional layer of material is glued or laminated inside the handle hole. While these methods can improve the anti-slip effect or wearing comfort to some extent, this non-integrated solution leads to additional processing steps, disrupting the continuous production line from blown film to finished bag, resulting in a complex and cumbersome production process, severely restricting production efficiency and increasing manufacturing costs. Furthermore, the practice of gluing or laminating heterogeneous materials increases the variety of materials, making it difficult to recycle the plastic bag as a whole, thus violating the original intention of environmental protection. Therefore, there is an urgent need to develop an environmentally friendly plastic bag with an anti-slip handle structure that can be integrally molded, ensuring a continuous and efficient manufacturing process, improving product performance, and meeting the needs of modern production, along with its integral molding method. Summary of the Invention

[0004] In order to overcome the shortcomings of existing plastic bags with anti-slip structures, which have complex and cumbersome production processes, severely restricting production efficiency and increasing manufacturing costs, the present invention aims to provide an environmentally friendly plastic bag with an anti-slip handle structure and its one-piece molding method that can be integrally molded, ensuring continuous and efficient manufacturing process, improving product performance, and meeting the needs of modern production.

[0005] This invention is achieved through the following specific technical means: A method for integrally molding an environmentally friendly plastic bag with an anti-slip handle structure includes the following steps: Step 1, film blowing: Molten plastic is extruded through an annular die to form a tubular film bubble, and compressed air is blown into the film bubble to make it expand and form a thin-walled cylindrical film; Step 2, Folding and Rolling: The cooled tubular membrane bubble is rolled up into a flat film strip with M-folds on both sides; Step 3, punching: Using a punching device, convex-shaped through grooves are punched out at equal intervals on the film strip to initially form the handle structure; the side of the convex-shaped through groove is located outside the inner fold line of the M-fold on both sides of the film strip, thus forming the handle hole structure; Step 4, Anti-slip texture imprinting: Imprint anti-slip textures on the outer surfaces of both sides of the through groove punched in the film strip and on the inner fold surface of the M-fold; Step 5, hot sealing: Using a hot sealing machine, two first and second sealing edges are respectively hot-pressed on both sides of the short side of the convex groove punched in the film strip; Step 6, Cutting: Cut along the short side of the punched convex groove on the film strip with a cutting knife to form a single plastic bag with a bag body and a handle; Step 7, Fold the corner: Fold the convex piece formed by the punched convex groove at the handle of the plastic bag into the handle hole; Step seven is accomplished by a folding device, which includes a spreading component for spreading the handle hole; and a folding component for folding the protrusion into the handle hole after the handle hole is spread open. The spreading assembly has two sets, which are respectively set on the outside of the two handles; including a mounting plate, a first cylinder is set on the side of the mounting plate away from the handle, and the extension rod of the first cylinder is connected to the mounting plate; two second cylinders are fixedly connected to the side of the mounting plate near the handle and are parallel to the mounting plate and arranged opposite to each other, and pneumatic grippers for clamping the two sides of the handle hole are fixedly connected to the ends of the extension rods of the two second cylinders. The angle-folding assembly includes a pressure block and a swing gripper respectively disposed on both sides of a handle; the pressure block is disposed on the outside of the handle, and the swing gripper is disposed on the inside of the handle, with the pressing end of the pressure block and the clamping end of the swing gripper inclined toward the handle and the protrusion on the handle, and the pressure block and the swing gripper are disposed in a straight line; a third cylinder is disposed on the end of the pressure block away from the handle, and the pressure block is fixedly connected to the end of the telescopic rod of the third cylinder; a fourth cylinder is disposed on the side of the swing gripper away from the handle, and the swing gripper is fixedly connected to the end of the telescopic rod of the fourth cylinder through a connecting seat.

[0006] Furthermore, step two is completed by a folding assembly, which includes a herringbone plate for gradually shrinking the tubular membrane bubble into a planar film. A forming block is symmetrically arranged at the openings on both sides of the herringbone plate to make M-folds on both sides when the tubular membrane bubble shrinks. One side of the forming block is a triangle with a wider base and a narrower top, and the apex of the triangle is inclined towards the inside of the herringbone plate.

[0007] Furthermore, step four is completed by an imprinting device, which includes an upper imprinting assembly disposed above both sides of the film belt, a lower imprinting assembly disposed below both sides of the film belt, and a central imprinting assembly disposed within the M-folds of the film belt for opening up both sides of the film belt. The upper imprinting assembly is driven by a cylinder telescopic rod and includes an upper moving plate, an upper heating plate fixed to its lower side, and an upper imprinting plate disposed below the upper heating plate. The bottom surface of the upper imprinting plate is provided with imprinting patterns. The lower imprinting assembly is driven by a cylinder telescopic rod and includes a lower moving plate, a lower heating plate fixed to its upper side, and a lower imprinting plate disposed above the lower heating plate. The top surface of the lower imprinting plate is provided with imprinting patterns. The central imprinting assembly includes a central heating plate and a central imprinting plate fixed to its upper and lower surfaces. The outer surfaces of both central imprinting plates are provided with imprinting patterns.

[0008] Furthermore, the pressing block is an electrically heated block, which can heat and soften the inner surfaces of the tabs and the handle when the handle and the tabs are squeezed, so that the tabs are bonded to the inner surface of the handle after folding.

[0009] An environmentally friendly plastic bag with an anti-slip handle structure is characterized by comprising a bag body, handles integrally connected to the bag body on both sides of the bag body opening; M-fold structures are provided on both sides of the bag body, with the bottom of the M-folds having an inward fold line; a first sealing edge is provided on the lower side of the bag body away from the handles, and a second sealing edge is provided on the upper side of the handles away from the bag body; a handle hole is provided on the handle, and a protrusion integrally connected to the handle is folded inside the handle hole; anti-slip textures are provided on the outer surface of the handle, the inner surface of the handle hole, and the surface of the protrusion.

[0010] Furthermore, the anti-slip texture is formed by hot pressing, and the raised piece is fixed to the inner surface of the handle by hot pressing.

[0011] Furthermore, the anti-slip texture pattern is concave-convex or grid-like.

[0012] Furthermore, the inner side of the connection point between the lower end of the two handles and the bag body is provided with an arc-shaped angle to prevent stress concentration and improve connection strength.

[0013] Compared with the prior art, the present invention has the following beneficial effects: This invention achieves integrated molding, ensuring a continuous and efficient manufacturing process, improving product performance while meeting the needs of modern production. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the molding process of the present invention.

[0015] Figure 2 This is a schematic diagram of the main structure of the plastic bag of the present invention.

[0016] Figure 3 This is a schematic diagram of the three-dimensional structure of the plastic bag of the present invention.

[0017] Figure 4 This is a schematic diagram of the folding component structure of the present invention.

[0018] Figure 5 This is a schematic diagram of the imprinting device of the present invention.

[0019] Figure 6 This is a schematic diagram of the angle bending process of the present invention.

[0020] Figure 7 This is a schematic diagram of the structure of the expansion component of the present invention.

[0021] Figure 8 This is a schematic diagram of the first folding component structure of the present invention.

[0022] Figure 9 This is a schematic diagram of the second type of folding component structure of the present invention.

[0023] The labels in the attached diagram are as follows: 11-bag body, 12-handle, 13-M-fold, 14-inner fold line, 15-through groove, 16-first edge seal, 17-second edge seal, 18-handle hole, 19-protrusion, 2-folding assembly, 21-herringbone plate, 22-forming block, 3-imprinting device, 31-upper moving plate, 32-upper heating plate, 33-upper imprinting plate, 34-lower moving plate, 35-lower heating plate, 36-lower imprinting plate, 37-center heating plate, 38-center imprinting plate, 4-corner folding device, 41-mounting plate, 42-first cylinder, 43-second cylinder, 44-pneumatic gripper, 45-pressing block, 46-swinging gripper, 47-third cylinder, 48-fixed base, 49-fourth cylinder. Detailed Implementation

[0024] The present invention will be further described below with reference to the accompanying drawings: Example

[0025] A method for integrally molding an environmentally friendly plastic bag with an anti-slip handle structure includes the following steps: Step 1, film blowing: Molten plastic is extruded through an annular die to form a tubular film bubble, and compressed air is blown into the film bubble to make it expand and form a thin-walled cylindrical film; Step 2, Folding and Rolling: The cooled cylindrical membrane bubble is rolled up into a flat film strip with M-folds 13 on both sides; Step 3, punching: The punching device punches out convex through grooves 15 at equal intervals on the film strip to initially form the handle 12 structure; the side of the convex through groove 15 is located outside the inner fold line 14 of the M fold 13 on both sides of the film strip, thus forming the handle hole 18 structure. Step 4, Anti-slip texture imprinting: Imprint anti-slip textures on the outer surfaces of both sides of the through groove 15 punched in the film strip and on the inner fold surface of the M fold 13; Step 5, hot sealing: Using a hot sealing machine, two first sealing edges 16 and second sealing edges 17 are hot-pressed on both sides of the short side of the convex groove 15 punched in the film strip. Step 6, Cutting: Cut along the short side of the punched convex groove 15 on the film strip with a cutting knife to form a single plastic bag with a bag body 11 and a handle 12. Step 7, Folding the corner: Fold the protrusions 19 formed by the punched convex grooves 15 at the handle 12 of the plastic bag into the handle hole 18; Step seven is completed by the angle-folding device 4, which includes an opening component for opening the handle hole 18; and an angle-folding component for folding the protrusion 19 into the handle hole 18 after the handle hole 18 is opened. The opening assembly has two sets, which are respectively set on the outside of the two handles 12; including a mounting plate 41, a first cylinder 42 is set on the side of the mounting plate 41 away from the handle 12, and the telescopic rod of the first cylinder 42 is connected to the mounting plate 41; two second cylinders 43 are fixedly connected to the side of the mounting plate 41 near the handle 12, which are parallel to the mounting plate 41 and arranged opposite to each other, and the ends of the telescopic rods of the two second cylinders 43 are fixedly connected to pneumatic grippers 44 for clamping the two sides of the handle hole 18; The angle-folding assembly includes a pressure block 45 and a swing gripper 46 respectively disposed on both sides of a handle 12; the pressure block 45 is disposed on the outside of the handle 12, and the swing gripper 46 is disposed on the inside of the handle 12. The pressing end of the pressure block 45 and the clamping end of the swing gripper 46 are inclined toward the handle 12 and the protrusion 19 on the handle 12, and the pressure block 45 and the swing gripper 46 are disposed in a straight line; a third cylinder 47 is disposed at the end of the pressure block 45 away from the handle 12, and the pressure block 45 is fixedly connected to the end of the telescopic rod of the third cylinder 47; a fourth cylinder 49 is disposed on the side of the swing gripper 46 away from the handle 12, and the swing gripper 46 is fixedly connected to the end of the telescopic rod of the fourth cylinder 49 through a connecting seat.

[0026] An environmentally friendly plastic bag with an anti-slip handle 12 structure includes a bag body 11, handles 12 integrally connected to the bag body 11 on both sides of the opening end of the bag body 11; the bag body 11 has M-fold 13 structures on both sides, with an inward fold line 14 at the bottom of the M-fold 13; a first sealing edge 16 is provided on the lower side of the bag body 11 away from the handle 12, and a second sealing edge 17 is provided on the upper side of the handle 12 away from the bag body 11; a handle hole 18 is provided on the handle 12, and a protrusion 19 integrally connected to the handle 12 is folded inside the handle hole 18; the outer surface of the handle 12, the inner surface of the handle hole 18, and the surface of the protrusion 19 are all provided with anti-slip textures.

[0027] Working principle: First, molten plastic is extruded into a tubular film bubble through a ring die using a blown film process, and compressed air is blown into the film bubble to expand it, forming a thin-walled cylindrical film. Then, the cooled cylindrical film bubble is folded together by a folding assembly 2 into a flat film strip with M-folds 13 on both sides, wherein the forming block 22 makes M-folds 13 on both sides of the film bubble as it gradually shrinks. Next, a punching device punches out convex through-slots 15 at equal intervals on the film strip, initially forming a handle 12 structure, and the side of the convex through-slot 15 is located outside the inner fold line 14 of the M-folds 13 on both sides of the film strip, thereby forming a handle hole 18 structure, and a protruding tab 19 integrally connected to the handle 12 protrudes from the handle 12 part.

[0028] Then, the film strip enters the embossing device 3. Through the coordinated action of the upper embossing component, the lower embossing component, and the central embossing component, anti-slip textures are embossed on the outer surfaces of both sides of the through groove 15 punched by the film strip, corresponding to the outer surface of the handle 12 of the bag body 11, and the inner fold surface of the M-fold 13, corresponding to the inner surface of the handle hole 18 of the bag body 11. At the same time, textures are also embossed on the surface of the convex sheet 19. After embossing, the film strip is heat-sealed by a hot-pressing edge-sealing machine to heat-press the first sealing edge 16 and the second sealing edge 17 on both sides of the short side of the convex through groove 15, forming the lower sealing edge on the previous plastic bag and the upper sealing edge on the next plastic bag. After that, the cutting blade cuts along the short side of the convex through groove 15 to form a single plastic bag.

[0029] Finally, the plastic bag enters the corner-folding device 4. The opening component of the corner-folding device 4 operates. First, the first cylinder 42 drives the mounting plate 41 to move inward, causing the gripping ends of the two pneumatic grippers 44 on the mounting plate 41 to extend into the handle hole 18. Then, the pneumatic grippers 44 clamp the pieces on both sides of the handle hole 18 of the bag body 11. Next, the second cylinder 43 operates, and the telescopic rod pulls the pneumatic grippers 44 to move to both sides. The pneumatic grippers 44 drive the pieces on both sides of the handle hole 18 of the bag body 11 to move to both sides, thereby opening the handle hole 18. Then, the corner-folding component is activated, and the third cylinder 47... Synchronously driven by the fourth cylinder 49, the inclined hot pressing block 45 and the swinging gripper 46 move towards each other, jointly squeezing the handle 12 and the protrusion 19, causing the protrusion 19 to bend at a certain angle along the connection with the handle 12 into the handle hole 18. During this process, the pressing block 45 heats and softens the contact surface. Then, the third cylinder 47 retracts, driving the pressing block 45 to retract, and the swinging gripper 46 starts to clamp the protrusion 19 and the handle 12, so that the protrusion 19 is pressed tightly against the inner surface of the handle 12. The heat-melting property of the plastic is used to bond and fix it, finally forming a flat and structurally sound handle hole 18.

[0030] The control method of this invention is automatic control through a controller. The control circuit of the controller can be implemented by simple programming by those skilled in the art. The power supply is also common knowledge in the art. Furthermore, since this invention is mainly used to protect mechanical devices, the control method and circuit connection will not be explained in detail here.

[0031] Although this disclosure has been described in detail with reference to exemplary embodiments, it is not limited thereto, and it will be apparent to those skilled in the art that various modifications and changes may be made thereto without departing from the scope of this disclosure.

Claims

1. A method for integrally molding an environmentally friendly plastic bag with an anti-slip handle structure, characterized in that, Includes the following steps: Step 1: Film blowing; Molten plastic is extruded through an annular die into a tubular bubble, and compressed air is blown into the bubble to make it expand, forming a thin-walled cylindrical film. Step 2, Folding and Rolling: The cooled tubular membrane bubble is rolled up into a flat film strip with M folds (13) on both sides; Step 3, punching: The punching device punches out convex through grooves (15) at equal intervals on the film strip to initially form a handle (12) structure; the side of the convex through groove (15) is located outside the inner fold line (14) of the M fold (13) on both sides of the film strip, thus forming a handle hole (18) structure. Step 4, Anti-slip texture imprinting: Imprint anti-slip texture on the outer surface of both sides of the through groove (15) punched in the film strip and on the inner fold surface of the M fold (13); Step 5, hot sealing: The first sealing edge (16) and the second sealing edge (17) are hot-pressed on both sides of the short side of the convex groove (15) punched by the hot sealing edge machine. Step 6, Cutting: Cut along the short side of the punched convex through-slot (15) on the film strip with a cutting knife to form a single plastic bag with a bag body (11) and a handle (12); Step 7, Folding the corner: Fold the convex piece (19) formed by the punched convex groove (15) at the handle (12) of the plastic bag into the handle hole (18); Step seven is completed by a folding device (4), which includes a spreading component for spreading the handle hole (18); after the handle hole (18) is spread open, the protrusion (19) is folded into the handle hole (18) by the folding component. The opening assembly has two sets, which are respectively set on the outside of the two handles (12); including a mounting plate (41), a first cylinder (42) is set on the side of the mounting plate (41) away from the handle (12), and the telescopic rod of the first cylinder (42) is connected to the mounting plate (41); two second cylinders (43) are fixedly connected on the side of the mounting plate (41) close to the handle (12), which are parallel to the mounting plate (41) and arranged opposite to each other, and the ends of the telescopic rods of the two second cylinders (43) are fixedly connected to pneumatic grippers (44) for clamping the two sides of the handle hole (18). The angle-folding assembly includes a pressure block (45) and a swing gripper (46) respectively disposed on both sides of a handle (12); the pressure block (45) is disposed on the outside of the handle (12), and the swing gripper (46) is disposed on the inside of the handle (12). The pressing end of the pressure block (45) and the clamping end of the swing gripper (46) are inclined toward the handle (12) and the protrusion (19) on the handle (12), and the pressure block (45) and the swing gripper (46) are disposed on a straight line; a third cylinder (47) is disposed at the end of the pressure block (45) away from the handle (12), and the pressure block (45) is fixedly connected to the end of the telescopic rod of the third cylinder (47); a fourth cylinder (49) is disposed on the side of the swing gripper (46) away from the handle (12), and the swing gripper (46) is fixedly connected to the end of the telescopic rod of the fourth cylinder (49) through a connecting seat.

2. The method for integrally molding an environmentally friendly plastic bag with an anti-slip handle structure according to claim 1, characterized in that, Step two is completed by a folding assembly (2). The folding assembly (2) includes a herringbone plate (21) for gradually shrinking the tubular membrane bubble into a flat film. A forming block (22) is symmetrically arranged at the openings on both sides of the herringbone plate (21) to make M-folds (13) on both sides when the tubular membrane bubble shrinks. One side of the forming block (22) is a triangle with a wide base and a narrow top, and the top of the triangle is inclined towards the inside of the herringbone plate (21).

3. The method for integrally molding an environmentally friendly plastic bag with an anti-slip handle structure according to claim 1, characterized in that, Step four is completed by an imprinting device (3), which includes an upper imprinting assembly disposed above both sides of the film belt, a lower imprinting assembly disposed below both sides of the film belt, and a central imprinting assembly disposed within the M-folds (13) of the film belt for opening up both sides of the film belt; the upper imprinting assembly is driven by a cylinder telescopic rod and includes an upper moving plate (31), an upper heating plate (32) fixed below it, and an upper imprinting plate (32) disposed below the upper heating plate (32). 33); The bottom surface of the upper imprint plate (33) is provided with imprinting patterns; the lower imprinting assembly is driven by a cylinder telescopic rod; it includes a lower moving plate (34), a lower heating plate (35) fixed on its upper side, and a lower imprinting plate (36) set above the lower heating plate (35); the top surface of the lower imprinting plate (36) is provided with imprinting patterns; the central imprinting assembly includes a central heating plate (37), and a central imprinting plate (38) fixed on its upper and lower surfaces; the outer surfaces of the two central imprinting plates (38) are provided with imprinting patterns.

4. The method for integrally molding an environmentally friendly plastic bag with an anti-slip handle structure according to claim 1, characterized in that, The pressing block (45) is an electric heating block.

5. An environmentally friendly plastic bag with an anti-slip handle structure, made by the method described in claim 1, characterized in that, The bag includes a bag body (11), handles (12) integrally connected to the bag body (11) on both sides of the opening end of the bag body (11); the bag body (11) has an M-fold (13) structure on both sides, and the bottom of the M-fold (13) is an inner fold line (14); the bag body (11) has a first sealing edge (16) on the lower side away from the handle (12), and the handle (12) has a second sealing edge (17) on the upper side away from the bag body (11); the handle (12) has a handle hole (18), and a protrusion (19) integrally connected to the handle (12) is folded inside the handle hole (18); the outer surface of the handle (12), the inner surface of the handle hole (18) and the surface of the protrusion (19) are all provided with anti-slip texture.

6. An environmentally friendly plastic bag with an anti-slip handle structure according to claim 5, characterized in that, The anti-slip texture is formed by hot pressing, and the convex piece (19) is fixed to the inner surface of the handle (12) by hot pressing.

7. An environmentally friendly plastic bag with an anti-slip handle structure according to claim 5, characterized in that, The anti-slip texture pattern is either convex or grid-like.

8. An environmentally friendly plastic bag with an anti-slip handle structure according to claim 5, characterized in that, The inner side of the connection between the lower end of the two handles (12) and the bag body (11) is provided with an arc-shaped corner.

Citation Information

Patent Citations

  • Full-automatic plastic bag folding and strapping machine

    CN102167172A

  • Food packaging plastic bag with service cycle monitoring structure

    CN115339753A

  • Degradable plastic bag production and processing equipment and production and processing technology

    CN115447092A

  • Antiskid rolling plastic bag and preparation process thereof

    CN117104696A

  • M rolls over plastic bag forming device

    CN204687342U