A bale net for ease of binding

CN224760753UActive Publication Date: 2026-09-18CHAOFAN NEW MATERIALS (RUIAN) CO LTD
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Patent Information

Application Number
CN202522199641.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-17
Publication Date
2026-09-18
Estimated Expiration
2035-10-17

AI Technical Summary

Technical Problem

[0005]本申请实施例提供一种便于捆绑的包草网,为了改善相关技术中存在的在使用包草网对草垛进行捆扎的过程中,捆扎过程较为繁琐,捆扎效率低且在捆扎过程中边缘固定较为复杂的技术问题

Benefits of technology

[0007]The technical solutions described above in this application embodiment have at least the following technical effects: during the process of wrapping and fixing straw using straw netting, the stability of the straw netting is improved by the horizontal and vertical reinforcing strips, ensuring that the straw bales will not deform or fall apart when subjected to force. By setting the fasteners on the horizontal reinforcing strips, by setting the connecting components on the fasteners, and by connecting adjacent horizontal reinforcing strips together with the fasteners, it is convenient to bind while further enhancing the overall tightness and stability of the straw netting.

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Abstract

The utility model relates to a kind of bale net convenient to bind, relate to bale net technical field, including net surface, be set on net surface and be used for strengthening net structure's reinforcing part, reinforcing part includes the horizontal reinforcing strip of setting on net surface and strengthening net surface horizontal structure and the longitudinal reinforcing strip of setting on net surface and strengthening net surface longitudinal structure, horizontal reinforcing strip is provided with fixing part, fixing part is provided with detachable and is used for the connecting assembly of the two fixing parts of adjacent fixed after binding, the utility model can be through connecting assembly, in the process of using bale net to wrap and fix forage, by connecting assembly is set on fixing part, by the adjacent horizontal reinforcing strip of fixing part is connected together, it is convenient to bind while further enhancing the overall compactness and stability of bale net.
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Description

Technical Field

[0001] This application relates to the field of straw netting technology, and more particularly to a straw netting that is easy to tie. Background Technology

[0002] Hay bale netting is a tool used in agriculture and horticulture, primarily for bundling hay into bales for easier storage, transportation, or use. By bundling, hay can be stored and transported more compactly, reducing space occupation and transportation costs. Hay bale netting can effectively prevent hay from scattering or being damaged during transportation. The structure of a hay bale net typically includes main ropes, reinforcing ropes, secondary ropes, and traction ropes, which work together to form a sturdy mesh structure.

[0003] In current applications of hay bale baling technology, using binding ropes is one of the most common methods. Typically, after the hay is wrapped in the bale net, a special binding rope (such as polypropylene rope or hemp rope) is used to bind the bale. One end of the binding rope is fixed to a specific part of the bale, usually with a simple knot or clip. The operator needs to manually rotate the binding rope around the bale, usually 10 to 20 times, to ensure the bale is effectively bound. After several rotations, the other end of the binding rope is knotted to the starting end or secured in another way to prevent it from coming loose. Because the binding rope needs to be rotated many times to complete the binding, the entire process is very time-consuming, especially in large-scale hay bale baling operations. This inefficient operation significantly reduces overall work efficiency.

[0004] Therefore, it is necessary to propose a straw net that is easy to tie to solve the above problems. Utility Model Content

[0005] This application provides a straw-binding net that is easy to use, in order to improve the technical problems existing in the related technology, such as the cumbersome binding process, low binding efficiency, and complicated edge fixing during the binding process when using a straw-binding net to bind straw stacks.

[0006] This application provides a straw net that is easy to tie, including a net surface and reinforcing members disposed on the net surface to strengthen the net structure. The reinforcing members include transverse reinforcing strips disposed on the net surface to strengthen the transverse structure of the net surface and longitudinal reinforcing strips disposed on the net surface to strengthen the longitudinal structure of the net surface. The transverse reinforcing strips are provided with fixing members, and the fixing members are provided with detachable connecting components for fixing two adjacent fixing members after tying.

[0007] The technical solutions described above in this application embodiment have at least the following technical effects: during the process of wrapping and fixing straw using straw netting, the stability of the straw netting is improved by the horizontal and vertical reinforcing strips, ensuring that the straw bales will not deform or fall apart when subjected to force. By setting the fasteners on the horizontal reinforcing strips, by setting the connecting components on the fasteners, and by connecting adjacent horizontal reinforcing strips together with the fasteners, it is convenient to bind while further enhancing the overall tightness and stability of the straw netting.

[0008] In this embodiment, a ring buckle is movably detached from the fixing parts, and a connecting strip is provided on the ring buckle. The connecting strip includes an upper fixing part, a lower fixing part, and a bent part. A first connecting part is provided on the upper fixing part, and a second connecting part is provided on the lower fixing part, which cooperates with the first connecting piece through the folded and bent part.

[0009] This technical solution uses a ring buckle to set the connecting strip on the fixing member. By passing the lower fixing part of the connecting strip through the fixing member adjacent to the fixing member after binding, the adjacent fixing member abuts against the bending part. The bending part connects the first connecting member on the upper fixing part with the second connecting member on the lower fixing part, thus stabilizing the binding state of the straw net.

[0010] In this embodiment, the first connector is a hook and loop fastener with a rough surface, and the second connector is a hook and loop fastener with a sharp surface.

[0011] This technical solution allows the hook and loop fasteners on the upper fixing point to connect with the hook and loop fasteners on the lower fixing point by bending the bend, thus securing the straw netting. The connection can be completed with a simple bending action, without the need for complicated tools or steps.

[0012] In this embodiment, the first connector is a male buckle arrayed at the upper fixed position, and the second connector is a female buckle located at the lower fixed position corresponding to the position of the male buckle.

[0013] This technical solution uses a bending and folding mechanism to allow the male buckle on the upper fixing point and the female buckle on the lower fixing point to engage with each other. The design of the male and female buckles makes the connection process very simple; simply insert the male buckle into the female buckle to complete the connection. This design requires no complicated tools or steps, allowing users to quickly and easily complete the connection and separation operations.

[0014] In this embodiment, both the transverse reinforcing strip and the longitudinal reinforcing strip are flexible plastic ribs.

[0015] Through this technical solution, the plastic flexible rib has high tensile strength and impact resistance, which can effectively enhance the overall structural strength of the straw wrapping net. The plastic flexible rib has excellent flexibility, which can deform to a certain extent when subjected to force and return to its original shape after the external force is removed. This characteristic allows the straw wrapping net to better adapt to straw of different shapes and sizes, providing a tighter wrapping effect.

[0016] In this embodiment, the mesh material is made of high-density polyethylene.

[0017] Through this technical solution, high-density polyethylene material has excellent tensile strength and can withstand large tensile forces without easily breaking. This allows the straw wrapping net to provide sufficient strength and stability when wrapping and fixing straw. High-density polyethylene material also has a certain degree of flexibility, which can deform under stress and return to its original shape after the external force is removed. This characteristic allows the straw wrapping net to adapt to straw of different shapes and sizes, providing a better wrapping effect. Attached Figure Description

[0018] Figure 1 A three-dimensional structural diagram of a straw-binding net provided in an embodiment of this application; Figure 2 A schematic diagram of the winding structure of a straw-binding net provided in an embodiment of this application; Figure 3 A three-dimensional structural diagram of the connection component provided in the embodiments of this application. Figure 1 ; Figure 4 A three-dimensional structural diagram of the connection component provided in the embodiments of this application. Figure 2 ; The following are the labeling elements in the figure: 1. Mesh surface; 2. Reinforcing member; 21. Horizontal reinforcing strip; 22. Longitudinal reinforcing strip; 3. Fixing member; 4. Connecting assembly; 41. Circular buckle; 42. Connecting strip; 421. Upper fixing point; 422. Lower fixing point; 423. Bending part; 43. First connecting member; 44. Second connecting member. Detailed Implementation

[0019] In current applications of hay bale baling technology, using binding ropes is one of the most common methods. Typically, after the hay is wrapped in the bale net, a special binding rope (such as polypropylene rope or hemp rope) is used to bind the bale. One end of the binding rope is fixed to a specific part of the bale, usually with a simple knot or clip. The operator needs to manually rotate the binding rope around the bale, usually 10 to 20 times, to ensure the bale is effectively bound. After several rotations, the other end of the binding rope is knotted to the starting end or secured in another way to prevent it from coming loose. Because the binding rope needs to be rotated many times to complete the binding, the entire process is very time-consuming, especially in large-scale hay bale baling operations. This inefficient operation significantly reduces overall work efficiency.

[0020] Based on this, in order to improve the technical problems existing in the related technology, such as the cumbersome binding process, low binding efficiency, and complicated edge fixing during the binding process when using straw netting to bind straw stacks, the embodiments of this application provide the following solutions.

[0021] Please refer to the following: Figures 1 to 4 This application provides a straw-binding net that is easy to tie. The straw-binding net includes a net surface 1 and a reinforcing member 2 disposed on the net surface 1 to strengthen the net structure. The reinforcing member 2 includes a transverse reinforcing strip 21 disposed on the net surface 1 to strengthen the transverse structure of the net surface 1 and a longitudinal reinforcing strip 22 disposed on the net surface 1 to strengthen the longitudinal structure of the net surface 1. A fixing member 3 is disposed on the transverse reinforcing strip 21, and a detachable connecting component 4 is disposed on the fixing member 3 to fix two adjacent fixing members 3 after binding.

[0022] This application provides a straw-bundling net that is easy to tie. During the process of wrapping and securing straw using the net, the stability of the net is improved by the transverse reinforcing strips 21 and longitudinal reinforcing strips 22, ensuring that the straw bales will not deform or unravel under stress. The fasteners 3 on the transverse reinforcing strips 21, and the connecting components 4 on the fasteners 3, connect adjacent transverse reinforcing strips 21 together, facilitating tying while further enhancing the overall tightness and stability of the net. Thus, through the setting of the transverse reinforcing strips 21 and longitudinal reinforcing strips 22, the net is reinforced both horizontally and vertically. This multi-dimensional reinforcement design effectively prevents the straw from deforming and unraveling in all directions, improving the overall stability of the net and ensuring that the straw bales maintain a good shape and structure during transportation and storage. The design of the connecting components 4 allows adjacent fasteners 3 to be quickly and conveniently connected, simplifying the tying process and reducing operation time and labor costs. Figure 1 The X direction is the horizontal direction of the straw netting, and the Y direction is the vertical direction of the straw netting.

[0023] In this embodiment, a ring buckle 41 is movably detached from the fixing member 3. A connecting strip 42 is provided on the ring buckle 41. The connecting strip 42 includes an upper fixing part 421, a lower fixing part 422, and a bending part 423. A first connecting member 43 is provided on the upper fixing part 421, and a second connecting member 44 is provided on the lower fixing part 422, which cooperates with the first connecting piece through the folding bending part 423.

[0024] In this configuration, the connecting strip 42 is attached to the fixing member 3 via the ring buckle 41. The lower fixing point 422 of the connecting strip 42 passes through the adjacent fixing member 3 after binding, causing the adjacent fixing member 3 to abut against the bending part 423. Bending the bending part 423 connects the first connecting member 43 on the upper fixing point 421 with the second connecting member 44 on the lower fixing point 422, thus securing the bundled straw net. In this way, the connecting strip 42, fixed by the ring buckle 41, can be flexibly adjusted in position and angle to adapt to different shapes and sizes of straw bales. Bending the bending part 423 connects the first connecting member 43 with the second connecting member 44. The operation is simple and quick. The ring buckle 41, connecting strip 42, and connecting members are all made of high-strength materials, possessing excellent durability and anti-aging properties.

[0025] In this embodiment, the first connector 43 is a hook and loop fastener with a rough surface, and the second connector 44 is a hook and loop fastener with a sharp surface.

[0026] This design allows the looped hook and loop fasteners on the upper fixing point 421 to connect with the barbed hook and loop fasteners on the lower fixing point 422 by bending the bending part 423, thus securing the bundled straw net. The connection is achieved with a simple bending motion, requiring no complicated tools or steps. The interlocking of the looped and barbed hook and loop fasteners provides a high-strength connection that can withstand a certain amount of tension and pressure, ensuring the straw bales do not loosen during transportation and storage. Furthermore, the hook and loop fasteners are inexpensive and easy to replace.

[0027] In this embodiment, the first connector 43 is a male buckle arrayed at the upper fixing point 421, and the second connector 44 is a female buckle located at the lower fixing point 422 corresponding to the position of the male buckle.

[0028] This design, through the bending portion 423, allows the male buckle on the upper fixing point 421 and the female buckle on the lower fixing point 422 to engage with each other. The interlocking design of the male and female buckles makes the connection process very simple; simply inserting the male buckle into the female buckle completes the connection. This design requires no complicated tools or steps, allowing users to quickly and easily complete connection and separation operations. Furthermore, the interlocking design of the male and female buckles provides a reliable locking mechanism, ensuring that the connection will not accidentally loosen or detach. The male-female buckle connection has good vibration and impact resistance, maintaining a stable connection state even under external forces.

[0029] In this embodiment, both the transverse reinforcing strip 21 and the longitudinal reinforcing strip 22 are flexible plastic ribs.

[0030] With this design, the plastic flexible ribs have high tensile strength and impact resistance, which can effectively enhance the overall structural strength of the straw wrapping net. The plastic flexible ribs have excellent flexibility, which can deform to a certain extent when subjected to force and return to their original shape after the external force is removed. This characteristic allows the straw wrapping net to better adapt to straw of different shapes and sizes, providing a tighter wrapping effect.

[0031] In this embodiment, the mesh surface 1 is made of high-density polyethylene.

[0032] With this design, the high-density polyethylene material has excellent tensile strength, which can withstand large tensile forces without easily breaking. This allows the straw net to provide sufficient strength and stability when wrapping and fixing straw. The high-density polyethylene material also has a certain degree of flexibility, which can deform under stress and return to its original shape after the external force is removed. This characteristic allows the straw net to adapt to straw of different shapes and sizes, providing a better wrapping effect.

[0033] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this application should be included within the protection scope of this application.

Claims

1. A straw-binding net that is easy to tie, comprising a net surface (1), characterized in that: A reinforcing member (2) is provided on the mesh surface (1) to enhance the flexibility of the mesh structure. The reinforcing member (2) includes a transverse reinforcing strip (21) provided on the mesh surface (1) to enhance the transverse structure of the mesh surface (1) and a longitudinal reinforcing strip (22) provided on the mesh surface (1) to enhance the longitudinal structure of the mesh surface (1). A fixing member (3) is provided on the transverse reinforcing strip (21). A detachable connecting component (4) is provided on the fixing member (3) to fix two adjacent fixing members (3) after the straw net is tied.

2. The straw-binding net according to claim 1, characterized in that, The connecting assembly (4) includes: a ring buckle (41) that is easily detachable from the fixing member (3), and a connecting strip (42) provided on the ring buckle (41). The connecting strip (42) includes an upper fixing part (421), a lower fixing part (422), and a bending part (423). A first connecting member (43) is provided on the upper fixing part (421), and a second connecting member (44) is provided on the lower fixing part (422) that cooperates with the first connecting piece by folding the bending part (423).

3. A straw-binding net according to claim 2, characterized in that: The first connector (43) is a hook and loop fastener with a rough surface, and the second connector (44) is a hook and loop fastener with a sharp surface.

4. A straw-binding net according to claim 2, characterized in that: The first connector (43) is a male buckle arrayed at the upper fixing point (421), and the second connector (44) is a female buckle located at the lower fixing point (422) corresponding to the position of the male buckle.

5. A straw-binding net according to claim 1, characterized in that: Both the transverse reinforcing strip (21) and the longitudinal reinforcing strip (22) are plastic flexible ribs.

6. A straw-binding net according to claim 1, 2, 3, or 5, characterized in that: The mesh (1) is made of high-density polyethylene.