Polyester bird netting storage and transfer device

CN224740608UActive Publication Date: 2026-09-11山东滨州波涛化纤制品有限公司
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Patent Information

Application Number
CN202522102283.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-29
Publication Date
2026-09-11
Estimated Expiration
2035-09-29

AI Technical Summary

Technical Problem

[0003]目前主流的聚酯捕鸟护航网在存储环节,多采用直接收卷的方式处理,即网体完成生产后直接卷绕成筒状存放,但收卷后的网筒缺乏稳定约束,易因堆叠挤压发生变形、松散,在后续转运过程中,该类聚酯捕鸟护航网仍延续直接收卷的形态,无防护的转运方式也可能使网体沾染杂质,影响后续铺设与使用效果

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Abstract

The present application belongs to the technical field of transportation equipment, and specifically discloses a polyester bird-catching escort net yarn storage and transfer device, which comprises two side plates, two rotating plates and a connecting plate arranged between the two side plates, the adjacent side edges of the two rotating plates are movably provided with rotating columns one, the adjacent side edges of the two rotating plates are movably provided with rotating columns two, the outer surface of the rotating column two is provided with a clamping groove, and the side edges of the two side plates are provided with a winding mechanism for winding the bird-catching net. The clamping groove of the rotating column two can stably clamp the wound net cylinder, avoiding the deformation and loosening of the net cylinder caused by the lack of constraint in traditional direct winding. Meanwhile, the winding mechanism can standardize the winding process of the net body, reduce the problem of net body contamination caused by the lack of protection during transfer, and ensure the subsequent laying and use effect of the net body.
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Description

Technical Field

[0001] This invention belongs to the field of transportation equipment technology, and specifically relates to a storage and transfer device for polyester bird-catching net yarn. Background Technology

[0002] Polyester bird-catching nets are widely used in airports, power transmission lines, orchards, and other settings due to the strong weather resistance, high tensile strength, and corrosion resistance of polyester material. They physically isolate birds from entering dangerous areas or damaging crops, making them an important piece of equipment for ecological protection and safe production. As the core raw material of the nets, the storage and transportation of yarn directly affect the quality and efficiency of net production.

[0003] Currently, most mainstream polyester bird-catching nets are stored by direct winding, meaning that the net is directly wound into a tube after production. However, the wound net tubes lack stable constraints and are prone to deformation and loosening due to stacking and compression. During subsequent transportation, these polyester bird-catching nets continue to be directly wound, and the unprotected transportation method may also cause the net to become contaminated with impurities, affecting the subsequent laying and use. Summary of the Invention

[0004] The purpose of this invention is to address the shortcomings of existing technologies by proposing a storage and transfer device for polyester bird-catching net yarn.

[0005] To achieve the above objectives, the present invention provides a polyester bird-catching net yarn storage and transfer device, comprising two side plates, two rotating plates, and a connecting plate disposed between the two side plates. A rotating column one is movably disposed on the adjacent side of the two rotating plates, and a rotating column two is movably disposed on the adjacent side of the two rotating plates. A clamping groove is formed on the outer surface of the rotating column two. A winding mechanism is provided on the side of the two side plates for winding up the bird-catching net. In the above technical solution, a straight groove is further provided at the bottom of the side plate, and an upper slider corresponding to the straight groove is provided at the top of the side plate.

[0006] In the above technical solution, one of the side plates is provided with multiple limiting grooves on the side away from the rotating column, and the other side plate is provided with a limiting rod corresponding to the multiple limiting grooves on the side away from it. In the above technical solution, the winding mechanism further includes a disc disposed on the side of another side plate, a connecting plate disposed at the end of the disc, a circular groove being formed at the end of the connecting plate, an iron ball being movably disposed inside the circular groove, a spring being disposed between the iron ball and the circular groove, and a groove being formed on the side of the rotating plate, with multiple slots movably connected to the iron ball being formed inside the groove. In the above technical solution, a rotating rod is further provided between the side of the side plate and the corresponding rotating plate, and an installation groove is provided on the side of the side plate. The end of the rotating rod is provided with a hexagonal column that penetrates the side plate and connects to the installation groove. In the above technical solution, a connecting rod is movably provided on the inner side of the mounting groove, and a hexagonal groove is provided at the end of the connecting rod to be movably connected to the hexagonal column. A straight plate is provided at the end of the connecting rod, and a sleeve is rotatably provided on the side of the straight plate.

[0007] Compared with the prior art, the present invention has the following beneficial effects: 1. The clamping groove of the rotating column can stably clamp the wound net cylinder, avoiding the deformation and loosening of the net cylinder caused by the lack of restraint in traditional direct winding. At the same time, the winding mechanism can standardize the winding process of the net body, reduce the problem of impurities on the net body caused by the lack of protection during transportation, and ensure the subsequent laying and use effect of the net body. 2. By setting the straight groove at the bottom of the side plate and cooperating with the upper slider at the top, the device can be easily adapted and adjusted to the external structure; the corresponding setting of the limiting groove and the limiting rod can fix the relative position of the side plate and ensure the stability of the mesh cylinder clamping; the rotating rod, hexagonal column and other structures facilitate the adjustment of the rotating plate angle, which helps the mesh to be rolled up and loaded and unloaded. Attached Figure Description

[0008] Figure 1 A schematic diagram of the overall structure of this invention is provided; Figure 2 A cross-sectional structural diagram of the side plate proposed in this invention; Figure 3 This invention presents a structural schematic diagram of rotating column one, rotating column two, and winding mechanism; Figure 4 This invention provides a structural schematic diagram of the rotating plate, the disk, and the connecting disk; Figure 5 This invention presents an exploded structural diagram of the iron ball, spring, and connecting disc.

[0009] In the diagram: 1. Side plate; 2. Rotating column one; 3. Rotating column two; 4. Clamping groove; 5. Upper slider; 6. Connecting plate; 7. Rotating plate; 8. Winding mechanism; 81. Rotating rod; 82. Hexagonal column; 83. Straight plate; 84. Connecting rod; 85. Mounting groove; 86. Sleeve; 87. Hexagonal groove; 88. Groove; 89. Disc; 810. Connecting disc; 811. Slot; 812. Iron ball; 813. Spring; 814. Circular groove; 9. Limiting groove; 10. Limiting rod; 11. Straight groove. Detailed Implementation

[0010] To better understand the above-mentioned objectives, features, and advantages of the present invention, the present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments.

[0011] like Figures 1-5 The device shown is a storage and transfer device for polyester bird-catching net yarn, including two side plates 1, two rotating plates 7 and a connecting plate 6 disposed between the two side plates 1. A rotating column 1 2 is movably disposed on the adjacent side of the two rotating plates 7, and a rotating column 2 3 is movably disposed on the adjacent side of the two rotating plates 7. A clamping groove 4 is opened on the outer surface of the rotating column 2 3. A winding mechanism 8 is provided on the side of the two side plates 1 for winding up the bird-catching net. Two rotating plates 7 are each mounted with rotating column 1 2 and rotating column 2 3 on adjacent sides via bearings. The two are arranged in parallel to meet the requirements of net winding. The outer surface of rotating column 2 3 is provided with clamping groove 4, the width of which matches the thickness of the net cylinder, which can limit the position of the wound net. A straight groove 11 is provided at the bottom of the side plate 1, and an upper slider 5 corresponding to the straight groove 11 is provided at the top of the side plate 1. The cross-sectional shape of the upper slider 5 matches the straight groove 11. When multiple sets of devices need to be used together or the installation position needs to be adjusted, the upper slider 5 and the straight groove 11 can be slidably engaged to achieve quick splicing or fine-tuning of position, so as to meet the storage and transportation needs in different scenarios.

[0012] Multiple limiting grooves 9 are provided on the side of one side plate 1 away from the rotating column 2, and a limiting rod 10 corresponding to the multiple limiting grooves 9 is provided on the side of the other side plate 1 away from it. After the spacing of the side plates 1 is adjusted, the limiting rod 10 is inserted into the corresponding limiting groove 9 to lock the position of the side plate 1, so as to avoid the unstable winding or transportation of the net body due to the offset of the side plate 1 during the use of the device. The winding mechanism 8 includes a disc 89 disposed on the side of another side plate 1. A connecting disc 810 is disposed at the end of the disc 89. A circular groove 814 is opened at the end of the connecting disc 810. An iron ball 812 is movably disposed inside the circular groove 814. A spring 813 is disposed between the iron ball 812 and the circular groove 814. A groove 88 is opened on the side of one of the rotating plates 7. A plurality of slots 811 that are movably connected to the iron ball 812 are opened inside the groove 88. The disc 89 is coaxially arranged with the side plate 1 and connected by bearings to ensure smooth rotation. A connecting disc 810 is welded to the end of the disc 89. The end of the connecting disc 810 is evenly provided with circular grooves 814 along the circumferential direction. Iron balls 812 are movably embedded in the inner side of the circular grooves 814. A spring 813 is provided between the iron balls 812 and the bottom of the circular grooves 814. The spring 813 always applies an outward elastic force to the iron balls 812. At the same time, a groove 88 adapted to the connecting disc 810 is provided on the side of one of the rotating plates 7. Multiple slots 811 that are movably engaged with the iron balls 812 are provided on the inner side of the groove 88 along the circumferential direction. The rotation positioning is achieved by the cooperation of the iron balls 812 and the slots 811, ensuring the winding accuracy.

[0013] A rotating rod 81 is provided between the side of one side plate 1 and the corresponding rotating plate 7. A mounting groove 85 is provided on the side of one side plate 1. A hexagonal prism 82 is provided at the end of the rotating rod 81, which passes through the side plate 1 and connects to the mounting groove 85. The end of the rotating rod 81 near the side plate 1 is integrally formed with a hexagonal prism 82. The hexagonal prism 82 passes through the side plate 1 and extends into the mounting groove 85. The cross-sectional dimensions of the hexagonal prism 82 are adapted to the mounting groove 85. The radial rotation of the rotating rod 81 is restricted by the hexagonal structure to ensure the stability of the structure after the angle is adjusted. A connecting rod 84 is movably installed on the inner side of the mounting slot 85. The end of the connecting rod 84 has a hexagonal slot 87 that is movably connected to the hexagonal column 82. A straight plate 83 is installed at the end of the connecting rod 84. A sleeve 86 is rotatably installed on the side of the straight plate 83. The other end of the connecting rod 84 is welded with a straight plate 83. The straight plate 83 is set perpendicular to the connecting rod 84. The sleeve 86 is rotatably installed on the side of the straight plate 83 away from the connecting rod 84 through a bearing. The outer surface of the sleeve 86 is machined with anti-slip texture. The operator can rotate the sleeve 86 to drive the connecting rod 84, the hexagonal column 82 and the rotating rod 81 to rotate synchronously, thereby adjusting the angle of the rotating plate 7. The entire structural design takes into account both the convenience of operation and the stability of adjustment.

[0014] Working principle: When using this device, the bird-catching net first needs to be wound into the inner side of the clamping groove 4. By inserting the connecting rod 84 into the mounting groove 85, the hexagonal column 82 enters the interior of the hexagonal groove 87. Then, the sleeve 86 is rotated, so that the sleeve 86 can drive the straight plate 83 to rotate around the connecting rod 84. Therefore, the hexagonal column 82 drives the rotating rod 81 to rotate, and the rotating rod 81 will drive the rotating plate 7 to rotate, thus reeling in the bird-catching net more quickly. When rotation is required, the bottom straight groove 11 can be aligned with the bottom upper slider 5 and inserted, and the side limit rod 10 can be inserted into the adjacent limit groove 9. This will prevent collapse during subsequent transportation.

[0015] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed invention.

Claims

1. A polyester bird-catching net yarn storage and transfer device, comprising two side plates (1), two rotating plates (7), and a connecting plate (6) disposed between the two side plates (1), characterized in that, Rotating column one (2) is movably arranged on the adjacent sides of the two rotating plates (7), and rotating column two (3) is movably arranged on the adjacent sides of the two rotating plates (7). The outer surface of the rotating column two (3) is provided with clamping groove (4). The sides of the two side plates (1) are provided with winding mechanism (8) for winding the bird net.

2. The polyester bird-catching net yarn storage and transfer device according to claim 1, characterized in that, The bottom of the side plate (1) is provided with a straight groove (11), and the top of the side plate (1) is provided with an upper slider (5) corresponding to the straight groove (11).

3. The polyester bird-catching net yarn storage and transfer device according to claim 1, characterized in that, One of the side plates (1) has multiple limiting grooves (9) on the side away from the rotating column (2), and the other side plate (1) has a limiting rod (10) corresponding to the multiple limiting grooves (9) on the side away from it.

4. The polyester bird netting storage and transfer device of claim 1, wherein, The winding mechanism (8) includes a disc (89) disposed on the side of another side plate (1). A connecting disc (810) is provided at the end of the disc (89). A circular groove (814) is provided at the end of the connecting disc (810). An iron ball (812) is movably disposed inside the circular groove (814). A spring (813) is provided between the iron ball (812) and the circular groove (814). A groove (88) is provided on the side of the rotating plate (7). A plurality of slots (811) movably connected to the iron ball (812) are provided inside the groove (88).

5. A polyester bird netting storage and transfer device as claimed in claim 4, wherein, A rotating rod (81) is provided between the side of one of the side plates (1) and the corresponding rotating plate (7). A mounting groove (85) is provided on the side of one of the side plates (1). A hexagonal column (82) is provided at the end of the rotating rod (81) to connect the side plate (1) and the mounting groove (85).

6. A polyester bird netting storage and transfer device as claimed in claim 5, wherein, A connecting rod (84) is movably provided on the inner side of the mounting groove (85). The end of the connecting rod (84) is provided with a hexagonal groove (87) that is movably connected to the hexagonal column (82). A straight plate (83) is provided on the end of the connecting rod (84). A sleeve (86) is rotatably provided on the side of the straight plate (83).