Weaving equipment of obstacle blocking net
By designing a barrier blocking net weaving device including a support unit and an operating table, using the fixed and movable components of the winding unit, the weaving of the multi-level barrier group disconnection is realized, solving the problem of lack of suitable production equipment in the prior art and improving production efficiency.
Patent Information
- Application Number
- CN202421931334.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-09
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-08-09
AI Technical Summary
There is a lack of braiding equipment suitable for producing multi-level barrier group network disconnection in the prior art.
A braiding device for the barrier blocking net is designed, including a support unit and an operating table. The operating table is equipped with a winding unit. The winding unit is composed of fixed components and movable components. Through the mutual entanglement and connection of these components, the weaving of the barrier group broken network is realized.
This equipment facilitates the weaving of multi-layer obstacle group network disconnection, solves the problem of lack of suitable production equipment in the prior art and improves production efficiency.
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Figure CN222985595U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of blocking devices, and particularly relates to a weaving device for an obstacle blocking net. Background Art
[0002] Existing obstacle blocking nets are mostly single-layer, and the single-layer obstacle blocking nets are mostly woven by machinery.
[0003] However, there is no suitable production equipment for a multi-layer obstacle blocking net produced by our company. Therefore, it is necessary to develop a weaving device for an obstacle blocking net. Summary of the Utility Model
[0004] The purpose of the utility model is to provide a weaving device for an obstacle blocking net, aiming to solve the problem that there is no suitable production equipment for producing a multi-layer obstacle blocking net pointed out in the background art.
[0005] To achieve the above purpose, the technical solution adopted by the utility model is as follows:
[0006] A weaving device for an obstacle blocking net, including a support unit, the support unit is connected to an operating table, and the operating table is provided with a winding unit;
[0007] The winding unit includes a number of fixed components and a number of movable components, each of the fixed components and each of the movable components are arranged at intervals along the surface of the operating table, and corresponding movable components are provided on both sides of each fixed component.
[0008] As a limitation, the fixed component includes a number of fixed rods, and the fixed rods are arranged at intervals along the surface of the operating table.
[0009] As another limitation, the movable component includes a number of pairs of movable rods, and the pairs of movable rods are arranged at intervals along the surface of the operating table.
[0010] As another limitation, adjacent fixed rods are provided on both sides of each pair of movable rods.
[0011] As another limitation, two adjacent fixed rods and two pairs of movable rods form one winding loop, and two adjacent winding loops share a pair of movable rods.
[0012] As another limitation, the operating table is provided with a number of insertion holes, and the insertion holes correspond to the movable rods one by one.
[0013] As another limitation, a supporting plate is connected to each end of the movable rod close to the supporting unit. An elevating mechanism is provided at the end of the supporting plate away from the movable rod. The elevating mechanism is connected to the supporting unit through a base. The elevating mechanism expands and contracts to drive the supporting plate to drive the movable rod to slide reciprocally along the insertion hole.
[0014] Compared with the prior art, the technical progress achieved by the present utility model lies in:
[0015] The supporting unit of the present utility model is connected to an operating table, and a winding unit is provided on the operating table; the winding unit includes a plurality of fixed components and a plurality of movable components. Each fixed component and each movable component are arranged at intervals along the surface of the operating table. Corresponding movable components are provided on both sides of the fixed component; during use, an operator winds a wire reciprocally between the corresponding fixed component and the movable component, and connects adjacent wires with a buckle or winding to braid an obstacle group broken network; in summary, with the above structure, the present utility model is convenient for braiding an obstacle group broken network and is applicable to the braiding of an obstacle group broken network. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The drawings are used to provide a further understanding of the present utility model and constitute a part of the specification. Together with the embodiments of the present utility model, they are used to explain the present utility model and do not constitute a limitation to the present utility model.
[0017] In the drawings:
[0018] Figure 1 is a schematic structural diagram of the present utility model;
[0019] Figure 2 is a schematic structural diagram of the winding structure of the operating table, the winding unit and the wire mesh in the embodiment of the present utility model;
[0020] Figure 3 is a schematic structural diagram of the supporting unit, the operating table, the insertion hole and the winding unit in the embodiment of the present utility model;
[0021] Figure 4 is a schematic structural diagram of the supporting unit, the operating table, the winding unit, the supporting plate, the elevating mechanism and the base in the embodiment of the present utility model.
[0022] Labeled components: 1 - supporting unit, 2 - operating table, 201 - insertion hole, 3 - winding unit, 301 - fixed rod, 302 - movable rod, 4 - supporting plate, 5 - elevating mechanism, 6 - base. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0023] The following is a description of the preferred embodiments of the present utility model with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are only for explaining and illustrating the present utility model and are not used to limit the present utility model.
[0024] Embodiment: A knitting device for an obstacle blocking net
[0025] This embodiment discloses a knitting device for an obstacle blocking net, such as Figure 1 , Figure 2 , Figure 3As shown in the figure, it includes a support unit 1. The support unit 1 is a support leg, and the support leg can be 1 or multiple. The support unit 1 can be fixedly connected to the operation table 2 by welding, or the support unit 1 can also be connected to the operation table 2 by bolts. When there is 1 support leg, the support leg is located at the center of the operation table 2. When there are multiple support legs, the multiple support legs are arranged in a square. The support unit 1 plays a role in fixing the operation table 2. The operation table 2 is provided with a winding unit 3. The winding unit 3 includes multiple fixed components and multiple movable components. The multiple fixed components and the multiple movable components are both arranged at intervals along the surface of the operation table 2. The fixed component includes multiple fixed rods 301, and each fixed rod 301 is arranged at intervals along the surface of the operation table 2. Corresponding movable components are provided on both sides of the fixed component. The movable component includes multiple pairs of movable rods 302, and each pair of movable rods 302 is arranged at intervals along the surface of the operation table 2. The movable rod 302 is movably connected to the operation table 2 by plugging. On both sides of each pair of movable rods 302, there are adjacent fixed rods 301. Two adjacent fixed rods 301 and two pairs of movable rods 302 form 1 winding ring. Two adjacent winding rings share a pair of movable rods 302. The multiple fixed rods 301 and the multiple pairs of movable rods 302 together form multiple winding rings. The multiple winding rings are arranged along the surface of the operation table 2. The fixed component is fixedly connected to the operation table 2 by welding, and the movable component is connected to the operation table 2 by plugging. The setting of the movable component facilitates the disassembly of the obstacle group to cut off the network. When in use, first, the operator winds one end of the first wire around the first gear rod (movable rod 302). Then, the operator winds the wire along the outer walls of the second gear rod (movable rod 302), the third gear rod (fixed rod 301), and the fourth gear rod (movable rod 302). When the wire is wound around the outer wall of the fourth gear rod, the wire passes through the gap between the fourth gear rod and the fifth gear rod (movable rod 302) and winds around the inner wall of the fifth gear rod, and then along the sixth gear rod (fixed rod) and the fifth gear rod of the second wire mesh hole component. After the wire is wound around the outer wall of the fifth gear rod of the second wire mesh hole component, the wire passes through the gap between the fifth gear rod and the fourth gear rod and winds around the inner wall of the fourth gear rod, and then repeats the first winding, the second winding, the first winding,.....The Nth winding: When the net wire winds around the last wire mesh hole component M, after winding around the outer wall of the fourth gear rod, the net wire directly winds around the outer walls of the fifth gear rod, the sixth gear rod and the first gear rod. Then, the net wire passes through the gap between the first gear rod and the second gear rod and winds around the inner wall of the second gear rod, and then winds around the third gear rod and the second gear rod of the M-1 wire mesh hole component. When the net wire winds around the outer wall of the second gear rod, the net wire passes through the gap between the second gear rod and the first gear rod and winds around the inner wall of the first gear rod, and repeats winding until the first gear rod at the starting end; After that, the operator winds the adjacent second net wire, and the winding method is the same as that of the first net wire. After winding, the first net wire and the second net wire are respectively located on both sides of the sixth gear rod. Then, the operator uses a connecting piece to connect the first net wire 1 to the second net wire to form the connecting end of the wire mesh hole. Then, the third and Nth net wires are wound and connected. Then, the operator winds the first net wire in an "8" shape between the first gear rod and the second gear rod, so that there are 4 strands of net wire between the first gear rod and the second gear rod. Then, repeat the first winding. When the net wire winds around the last wire mesh hole component M, the net wire winds in an "8" shape between the fourth gear rod and the fifth gear rod of the wire mesh hole component M, so that there are 4 strands of net wire between the fourth gear rod and the fifth gear rod. Then, repeat the second winding to the starting end. Then, similarly, wind the second, third and Nth net wires. Then, the operator inserts the winding rod between the 4 strands of net wire between the first gear rod and the second gear rod of the first wire mesh hole component, and there are 2 strands of net wire on both sides of the winding rod. Then, the operator rotates the winding rod to wind and tighten the 4 strands of net wire to form the screwed end of the wire mesh hole. Winding and tightening are also called twisting flowers, and the twisting flowers are carried out by alternating twists. Then, the operator winds and tightens the 4 strands of net wire between the first gear rod and the second gear rod of the third wire mesh hole component, and so on. Then, wind and tighten the 4 strands of net wire between the first gear rod and the second gear rod of the second wire mesh hole component, and so on, to form a wire mesh layer. Then, use a connecting piece to connect the 2 strands of net wire on both sides of the wire mesh layer. Similarly, wind the second wire mesh layer and the Nth wire mesh layer in turn, and finally make the obstacle group breaking net. Then, the operator makes the movable rod 302 disengage from the obstacle group breaking net. Finally, multiple operators make the obstacle group breaking net disengage from the fixed rod 301; This solves the problem pointed out in the background technology that there is no suitable production equipment for producing a multi-level obstacle group breaking net; Therefore, the advantage of this embodiment is that with the above settings, it is convenient to weave a multi-level obstacle group breaking net.
[0026] Such as Figure 1 、 Figure 2 、 Figure 4As shown in the figure, the operating table 2 is provided with a plurality of insertion holes 201 by a drilling machine. The insertion holes 201 correspond to the movable rods 302 one by one. The insertion holes 201 can be blind holes or through holes. When the insertion hole 201 is a through hole, the end of the movable rod 302 close to the operating table 2 can be fixedly connected to the blocking plate by welding. The diameter of the blocking plate is larger than that of the insertion hole 201. This setting facilitates the insertion and stability of the movable rod 302 into the insertion hole 201. When the insertion hole 201 is a through hole, the ends of the plurality of movable rods 302 close to the support unit 1 can be fixedly connected to the support plate 4 by welding. The end of the support plate 4 away from the movable rod 302 is connected to the lifting mechanism 5 by bolts. The lifting mechanism 5 can be an electric hydraulic push rod, or a hydraulic lifting rod, or an electric lifting table leg. The end of the lifting mechanism 5 away from the support plate 4 is connected to the base 6 by bolts. The base 6 is fixedly connected to the support unit 1 by welding. The telescoping of the lifting mechanism 5 is used to drive the support plate 4 to drive the movable rod 302 to slide reciprocally along the insertion hole 201. This setting facilitates the insertion or extraction of the movable rod 302. The lifting mechanism 5 can be one. When the lifting mechanism 5 is one, it is located at the center of the support plate 4. The lifting mechanism 5 can also be multiple, such as four. When the lifting mechanism 5 is four, the four lifting mechanisms 5 are arranged in a square and are of the same model. When performing obstacle group disconnection net weaving, the lifting mechanism 5 extends so that the movable rod 302 extends out of the operating table 2 through the insertion hole 201, and the operator performs weaving. After weaving, when one end of the net wire is firmly connected to the movable rod 302, the operator first separates one end of the net wire from the movable rod 302, winds and fixes one end of the separated net wire to the adjacent net wire, and the operator contracts the lifting mechanism 5, and the movable rod 302 disengages from the obstacle group disconnection net. Multiple operators disengage the obstacle group disconnection net from the fixed rod 301.
[0027] The working principle of the embodiment of the present utility model is as follows:
[0028] In use, first, the operator connects one end of the first wire mesh to the first retaining rod (movable rod 302) by winding. Then, the operator winds the wire mesh along the outer walls of the second retaining rod (movable rod 302), the third retaining rod (fixed rod 301), and the fourth retaining rod (movable rod 302). When the wire mesh is wound around the outer wall of the fourth retaining rod, the wire mesh passes through the gap between the fourth retaining rod and the fifth retaining rod (movable rod 302), winds around the inner wall of the fifth retaining rod, and then along the sixth retaining rod (fixed rod) and the fifth retaining rod of the second wire mesh hole assembly. After the wire mesh is wound around the outer wall of the fifth retaining rod of the second wire mesh hole assembly, the wire mesh passes through the gap between the fifth retaining rod and the fourth retaining rod, winds around the inner wall of the fourth retaining rod, and then repeats the first winding, the second winding, the first winding,.....For the Nth winding, when the mesh is wound around the last wire mesh assembly M, the mesh is wound around the outer wall of the fourth gear rod and then directly wound around the outer walls of the fifth gear rod, the sixth gear rod and the first gear rod. The mesh passes through the gap between the first gear rod and the second gear rod and is wound around the inner wall of the second gear rod. The mesh is then wound along the third gear rod and the second gear rod of the M-1 wire mesh assembly. When the mesh is wound around the outer wall of the second gear rod, the mesh passes through the gap between the second gear rod and the first gear rod and is wound around the inner wall of the first gear rod and is repeatedly wound around the first gear rod at the starting end. Afterwards, the operator winds the adjacent second mesh wire in the same manner as the first. The mesh wire is wound. After the winding, the first mesh wire and the second mesh wire are respectively located on both sides of the sixth gear rod. Then, the operator uses a connecting piece to connect the first mesh wire 1 to the second mesh wire to form a connecting end of the wire mesh hole. Then, the third and Nth mesh wires are wound and connected. Then, the operator winds the first mesh wire between the first gear rod and the second gear rod in an "8" shape, so that the mesh wire between the first gear rod and the second gear rod is 4 strands, and then repeats the first winding. When the mesh wire is wound to the last wire mesh hole component M, the mesh wire forms an "8" between the fourth gear rod and the fifth gear rod of the wire mesh hole component M. The wire mesh is wound in a zigzag pattern, so that there are 4 strands of wire mesh between the fourth gear rod and the fifth gear rod, and then the second winding is repeated to the starting end. Then, the second, third, and Nth wire meshes are wound in the same way. Then, the operator inserts the winding rod between the 4 strands of wire mesh between the first gear rod and the second gear rod of the first wire mesh assembly, and makes the two sides of the winding rod have 2 strands of wire mesh respectively. Then, the operator rotates the winding rod to wind and tighten the 4 strands of wire mesh to form the screwed end of the wire mesh. Winding and tightening are also called twisting. Twisting is done by twisting every other strand. Then, the operator winds the first gear rod of the third wire mesh assembly. The four strands of mesh between the first and second gear rods are wound and tightened, and so on. After that, the four strands of mesh between the first gear rod and the second gear rod of the second mesh hole assembly are wound and tightened, and so on, to form a mesh layer. After that, the two strands of mesh on both sides of the mesh layer are connected by a connector. Similarly, the second mesh layer and the Nth mesh layer are wound in sequence to finally form the barrier group disconnection network. After that, the operator pulls the movable rod 302 out of the plug hole 201 and separates the movable rod 302 from the barrier group disconnection network. Finally, multiple operators separate the barrier group disconnection network from the fixed rod 301. .
[0029] The parts not described in detail above belong to common knowledge of those skilled in the art.
[0030] Finally, it should be noted that the above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments or perform equivalent replacements on some of the technical features. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model shall be included within the scope of protection of the claims of the present utility model.
Claims
1. A device for weaving an obstacle blocking net, comprising a support unit (1), characterized in that: The support unit (1) is connected to an operating table (2), and the operating table (2) is provided with a winding unit (3); The winding unit (3) comprises a plurality of fixed components and a plurality of movable components, each of the fixed components and each of the movable components are arranged at intervals along the surface of the operating table (2), and corresponding movable components are arranged on both sides of the fixed components.
2. The barrier net weaving device according to claim 1, characterized in that: The fixing assembly comprises a plurality of fixing rods (301), each of the fixing rods (301) being arranged at intervals along the surface of the operating table (2).
3. The barrier net weaving device according to claim 2, characterized in that: The movable assembly comprises a plurality of pairs of movable rods (302), each pair of the movable rods (302) being arranged at intervals along the surface of the operating table (2).
4. The barrier net weaving device according to claim 3, characterized in that: Adjacent fixed rods (301) are provided on both sides of each pair of movable rods (302).
5. The barrier net weaving device according to claim 4, characterized in that: Two adjacent fixed rods (301) and two pairs of movable rods (302) form a winding ring, and the two adjacent winding rings share a pair of movable rods (302).
6. The barrier net weaving device according to claim 5, characterized in that: The operating table (2) is provided with a plurality of plug holes (201), and the plug holes (201) correspond one to one with the movable rods (302).
7. The barrier net weaving device according to claim 6, characterized in that: The ends of the movable rods (302) close to the support unit (1) are connected to a supporting plate (4); the ends of the supporting plate (4) away from the movable rods (302) are provided with a lifting mechanism (5); the lifting mechanism (5) is connected to the support unit (1) via a base (6); the lifting mechanism (5) is telescopic and is used to drive the supporting plate (4) to drive the movable rods (302) to slide back and forth along the plug hole (201).