Degradable plastic mesh cloth

By introducing tough strips and snap-fit ​​structures into the biodegradable plastic mesh, the problem of plastic deformation during winding is solved, thus ensuring winding stability and unfolding state.

CN224160782UActive Publication Date: 2026-04-24SHAOXING HENGWEN NET CLOTH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHAOXING HENGWEN NET CLOTH CO LTD
Filing Date
2025-02-22
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

During the winding process, excessive winding force can cause plastic deformation in some areas of the plastic mesh, affecting its subsequent unfolding.

Method used

Design a biodegradable plastic mesh fabric with a flexible strip and snap-fit ​​structure. The flexible strip passes through a set of staggered holes and snaps with the snap-fit ​​points. The snap-fit ​​points consist of snap posts and snap balls. The diameter of the snap balls is larger than that of the snap-fit ​​holes to ensure that the flexible strip is fixed and not easily deformed.

Benefits of technology

By fixing the winding loop structure, excessive bending of the mesh fabric during winding is avoided, ensuring the stability of the unfolded state. The toughness of the tough strip is stronger than that of the mesh body, reducing the risk of plastic deformation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses degradable plastic mesh cloth, which relates to the field of plastic products and is characterized by comprising a mesh body, a plurality of exposed strips are formed at one end of the mesh body, flexible strips are fixedly connected onto the exposed strips, a plurality of clamping points are fixedly connected onto one side of the mesh body, and the flexible strips and the clamping points are arranged in one-to-one correspondence. Clamping holes are formed in the tough strips, and one ends of the tough strips penetrate through the net body and are clamped on the clamping points. The flexible strips are fixed to the clamping points, one end of the net body can be fixed to the net body to form a rolling ring, at the moment, people roll the remaining part of the net body on the rolling ring circle by circle, the diameter of the rolling ring is relatively fixed when the net body is rolled every time, and therefore the net body is not prone to falling off. The winding ring is arranged on the net body, so that the part, located at the winding ring, of the net body is not prone to being excessively bent, plastic deformation is not prone to occurring, the follow-up net body unfolding state is guaranteed, PLA is biodegradable plastic, and the overall environment-friendly performance of the net body is guaranteed.
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Description

Technical Field

[0001] This utility model relates to the field of plastic products, and more specifically, it relates to a biodegradable plastic mesh. Background Technology

[0002] Plastic mesh fabric is a mesh-like fabric made of plastic fibers, commonly used in various industries and applications. With the development of science and technology, people's requirements for environmental protection are also increasing. In order to ensure the environmental performance of plastic mesh fabric, some plastic mesh fabrics are made of biodegradable materials.

[0003] During transportation, plastic mesh needs to be rolled up. In the process of rolling up the mesh, people need to apply force to the roll. If the force applied by the roll-up personnel is too great, it may cause plastic deformation in some parts of the plastic mesh, resulting in deformation at one end of the mesh after it is unrolled.

[0004] Therefore, a new solution is needed to address this problem. Utility Model Content

[0005] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a biodegradable plastic mesh.

[0006] The above-mentioned technical objective of this utility model is achieved through the following technical solution: a biodegradable plastic mesh fabric, comprising a mesh body, one end of which has a plurality of exposed strips, and a flexible strip is fixedly connected to the exposed strips. A plurality of snap-fit ​​points are fixedly connected to one side of the mesh body, and the flexible strips and snap-fit ​​points are arranged in a one-to-one correspondence. A snap-fit ​​hole is opened on the flexible strip, and one end of the flexible strip passes through the mesh body and snaps onto the snap-fit ​​point.

[0007] The present invention is further configured such that: the mesh body is provided with a plurality of mesh holes, the mesh holes located in the same vertical direction form a group of holes, the group of holes includes only a group of staggered holes, the mesh holes in the staggered hole group are staggered with the mesh holes in other groups of holes, and the flexible strip passes through the mesh holes in the staggered hole group and is then snapped into the snap-fit ​​point.

[0008] The present invention is further configured such that: the snap-fit ​​point includes a snap post and a snap ball that are fixedly connected to each other; one end of the snap post is fixedly connected to the net body; the other end of the snap post is fixedly connected to the snap ball; the diameter of the snap ball is larger than the diameter of the snap-fit ​​hole; and the inner edge of the snap-fit ​​hole is deformable.

[0009] The present invention is further configured such that at least one exposed strip separates two adjacent tough strips.

[0010] The present invention is further configured such that the tough strip is welded onto the exposed strip.

[0011] The present invention is further configured such that the mesh body is made of PLA.

[0012] In summary, this utility model has the following beneficial effects:

[0013] By fixing the toughness strip to the snap-fit ​​point, one end of the net is fixed to the net to form a winding loop. Then, the remaining part of the net is wound up one loop at a time until the entire net is wound up. This design ensures that the diameter of the winding loop is relatively fixed each time the net is wound up, making it less prone to excessive bending and plastic deformation in the part of the net located at the winding loop position. This ensures the subsequent unfolding of the net. The toughness strip is more resilient than the net, so it is also less prone to plastic deformation when it passes through the net and is fixed to the snap-fit ​​point. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the structure of this utility model.

[0015] In the diagram: 1. Mesh; 2. Tough strip; 3. Connecting point; 4. Connecting hole. Detailed Implementation

[0016] The present invention will now be described in detail with reference to the accompanying drawings and embodiments.

[0017] Biodegradable plastic mesh, such as Figure 1 As shown, the net includes a net body 1. One end of the net body 1 has several exposed strips, and flexible strips 2 are fixedly connected to these exposed strips. One side of the net body 1 has several locking points 3 fixedly connected, all in the same vertical direction. The flexible strips 2 and locking points 3 are arranged one-to-one, and the corresponding flexible strips 2 and locking points 3 are in the same horizontal direction. The flexible strips 2 have locking holes 4. One end of the flexible strip 2 passes through the net body 1 and is locked onto a locking point 3. Before winding up the net body 1, the flexible strip 2 at one end of the net body 1 is passed through the net body 1 and locked onto a locking point 3, thus fixing all the flexible strips 2 to their corresponding locking points 3. After the snap-fit ​​point 3 is engaged, one end of the net body 1 will be fixed to the net body 1 to form a winding loop. At this time, people will wind the remaining part of the net body 1 around the winding loop until the entire net body 1 is wound up. Then, people will use ropes to fix the wound net body 1 before transportation. In this way, the part of the net body 1 located at the winding loop is not prone to excessive bending, thus preventing plastic deformation and ensuring the unfolded state of the net body 1. The toughness strip 2 is more tough than the net body 1, so it is also less prone to plastic deformation when it passes through the net body 1 and is fixed to the snap-fit ​​point 3.

[0018] like Figure 1As shown, the toughness strip 2 is welded to the exposed strip. The toughness strip 2 is made of a material with better toughness, so that the toughness strip 2 is stronger than the overall toughness of the mesh body 1. This makes it less prone to plastic deformation when the toughness strip 2 is snapped onto the snap-fit ​​point 3. The mesh body 1 has several mesh holes. Mesh holes located in the same vertical direction form a group of holes. The group of holes includes only one set of staggered hole groups. The mesh holes in the staggered hole group are staggered from the mesh holes in other groups of holes. The toughness strip 2 passes through the mesh holes in the staggered hole group and then snaps onto the snap-fit ​​point 3. The mesh body 1 is formed by hot pressing with a mold. Because the toughness strip 2 is fixed to the exposed strip, after the mesh body 1 is bent into a coil, the toughness strip 2 can just pass through the mesh holes, making it convenient for the toughness strip 2 to pass through the mesh body 1. The first convenience of fixing the toughness strip 2 to the exposed strip is... The welding of the tough strip 2 reduces the required length of the tough strip 2. The locking point 3 includes a locking post and a locking ball that are fixedly connected to each other. One end of the locking post is fixedly connected to the net body 1, and the other end of the locking post is fixedly connected to the locking ball. The diameter of the locking ball is larger than the diameter of the locking hole 4. The inner edge of the locking hole 4 is deformable. When people lock the tough strip 2, they pass the locking ball through the locking hole 4. Because the diameter of the locking ball is larger than the diameter of the locking hole 4, the locking hole 4 will deform during the process of the locking ball being inserted into the locking hole 4, so that the locking hole 4 can pass through the locking hole 4 and fit the locking hole 4 onto the locking post, realizing the locking of the tough strip 2 and the locking point 3. This method facilitates the locking of the tough strip 2 and the locking point 3, and also facilitates the subsequent disassembly of the tough strip 2.

[0019] like Figure 1 As shown, there is at least one exposed strip between two adjacent flexible strips 2. The number of flexible strips 2 does not need to be too large to ensure the snap-fit ​​strength between one end of the net body 1 and the snap-fit ​​point 3. The net body 1 is made of PLA, which is a biodegradable plastic, ensuring the overall environmental performance of the net body 1.

[0020] The above description is merely a preferred embodiment of this utility model. The protection scope of this utility model is not limited to the above embodiments. All technical solutions falling within the scope of this utility model's concept are protected. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principle of this utility model should also be considered within the protection scope of this utility model.

Claims

1. A biodegradable plastic mesh fabric, characterized in that: The net includes a net body (1), one end of which has a plurality of exposed strips, and a flexible strip (2) is fixedly connected to the exposed strips. A plurality of snap-fit ​​points (3) are fixedly connected to one side of the net body (1). The flexible strip (2) and the snap-fit ​​points (3) are arranged in a one-to-one correspondence. The flexible strip (2) has snap-fit ​​holes (4). One end of the flexible strip (2) passes through the net body (1) and snaps onto the snap-fit ​​point (3).

2. The biodegradable plastic mesh fabric according to claim 1, characterized in that: The mesh body (1) is provided with a number of mesh holes. The mesh holes located in the same vertical direction form a group of holes. The group of holes includes only one group of misaligned holes. The mesh holes in the misaligned hole group are misaligned with the mesh holes in other groups of holes. The tough strip (2) passes through the mesh holes in the misaligned hole group and then engages with the snap-fit ​​point (3).

3. The biodegradable plastic mesh fabric according to claim 2, characterized in that: The locking point (3) includes a locking post and a locking ball that are fixedly connected to each other. One end of the locking post is fixedly connected to the net body (1), and the other end of the locking post is fixedly connected to the locking ball. The diameter of the locking ball is larger than the diameter of the locking hole (4), and the inner edge of the locking hole (4) is deformable.

4. The biodegradable plastic mesh fabric according to claim 3, characterized in that: There is at least one exposed strip between two adjacent toughness strips (2).

5. The biodegradable plastic mesh fabric according to claim 4, characterized in that: The toughness strip (2) is welded onto the exposed strip.

6. The biodegradable plastic mesh fabric according to claim 1, characterized in that: The mesh (1) is made of PLA.