Binding belt processing device
By designing a strapping processing device and utilizing a guiding mechanism and an insertion mechanism, the problem of discontinuous production of existing strapping strips was solved, the alignment of the material aggregate and the insertion of the clamp were simplified, and production efficiency was improved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-10
- Publication Date
- 2026-03-17
AI Technical Summary
The existing dual-material strapping strips require the strips to be manufactured before the clips are inserted, resulting in discontinuous production. How can we improve production flow?
The design includes a strapping processing device, comprising a conveying platform, a guiding mechanism, and an implantation mechanism. The guiding mechanism limits the material aggregate through a set of grippers, and the implantation mechanism is arranged at intervals in the conveying direction to cut metal strips into clips and implant them into strapping strips.
This achieves alignment between the aggregate and the slot, simplifies the conveying of the belt unit and the insertion of the clamps, and improves production smoothness.
Smart Images

Figure CN224000780U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a machine tool, and more particularly to a belt processing device. Background Technology
[0002] A current dual-material strap includes a strap body and a strap head, both made of plastic and integrally connected, and a metal clip embedded in the strap head. The strap body has a toothed pattern. The strap head has an insertion hole for the strap body. The clip is plate-shaped. When the strap body is inserted into the insertion hole, the clip engages with the toothed pattern, thereby restricting the movement of the strap body relative to the strap head.
[0003] This type of existing strapping strip uses a metal clip to fasten the strap body and the strap head together. Since metal has better mechanical strength than plastic, this type of strapping strip is more durable than traditional all-plastic strapping strips. However, because the clip and the strap are made of different materials, the strap must be manufactured beforehand, and then the clip must be inserted into the strap. How to streamline the production process of this type of existing strapping strip is a topic worthy of exploration. Utility Model Content
[0004] The purpose of this invention is to improve at least one of the shortcomings of the prior art.
[0005] This utility model relates to a strapping processing device, applicable to processing strapping units. The strapping unit includes a material skeleton and several strapping strips connecting the material skeleton. The material skeleton includes multiple backbones extending in an axial direction and node groups connecting the backbones. The strapping processing device includes a conveying platform and a guiding mechanism. The conveying platform forms a conveying trough extending in a conveying direction and a receiving area communicating with the conveying trough. The conveying trough is suitable for receiving the material skeleton and includes a slot suitable for the material skeleton to enter and communicating with the receiving area. The guiding mechanism is disposed in the receiving area of the conveying platform and includes two movable members that can be driven to move towards each other or away from each other, and a gripper group disposed on the movable members. The movable members cooperate to define a working area suitable for receiving the material skeleton. The gripper group can limit the node groups of the material skeleton when the movable members move towards each other, guiding the material skeleton to align with the slot.
[0006] The strap processing device of this utility model includes a node group comprising multiple block-shaped nodes and a gripper group comprising multiple half-claws. The half-claws are respectively arranged in pairs on the moving part, and the half-claws of the same pair can cooperate to limit the corresponding node.
[0007] In the strap processing device of this utility model, each node is in the shape of a circular block, and each half claw defines a claw area in the shape of a semicircle.
[0008] The strap processing device of this utility model includes a guiding mechanism comprising a driving unit capable of driving the moving component to move. The driving unit includes a slide rail and two moving seats disposed on the slide rail and respectively supporting the moving component.
[0009] The belt processing equipment of this utility model further includes a pushing unit for pushing the material aggregate of the belt unit along the conveying direction.
[0010] The strap processing device of this utility model is suitable for use with metal strips. The strap processing device also includes an implantation mechanism disposed on the conveying platform. The implantation mechanism is suitable for cutting the metal strip into several clips and implanting the clips into the strap strip respectively.
[0011] The strapping processing device of this utility model is suitable for use with two rolls of metal strips. The strapping strips of the several strapping units are divided into left and right rows. The strapping processing device also includes two implantation mechanisms set on the conveying platform. Each implantation mechanism is suitable for cutting a corresponding roll of metal strips into several clips, and each implantation mechanism is also suitable for implanting the clips into a corresponding row of strapping strips.
[0012] The strap processing device of this utility model has implantation mechanisms arranged at intervals in the conveying direction, and the implantation mechanisms are respectively located on two opposite sides of the conveying groove.
[0013] The beneficial effects of this utility model are as follows: the guiding mechanism can guide the material aggregate to align with the slot, which facilitates the feeding of the belt unit into the conveying slot of the conveying platform, making it easy to move for subsequent processing. Attached Figure Description
[0014] Other features and beneficial effects of this utility model will be clearly presented in the embodiments with reference to the accompanying drawings, wherein:
[0015] Figure 1 This is a top view illustrating the cable tray unit to which the embodiments of the cable tray processing device of this utility model are applicable;
[0016] Figure 2 It is a three-dimensional view illustrating one of the several straps of the strap unit;
[0017] Figure 3 This is a top view illustrating the strap unit;
[0018] Figure 4This is an incomplete 3D view, mainly illustrating the guide mechanism of the described embodiment;
[0019] Figure 5 This is a top view, mainly illustrating the guidance mechanism;
[0020] Figure 6 This is a side view illustrating two implantation mechanisms in the embodiment described;
[0021] Figure 7 It is an incomplete top view illustrating that the strap unit is placed on the guide mechanism;
[0022] Figure 8 This is an incomplete top view illustrating the multiple half-claws of the guide mechanism cooperating to limit multiple nodes. The strap unit is not fully shown; only the material of the strap unit is mainly shown. Detailed Implementation
[0023] See Figure 1 , Figure 2 , Figure 3 The embodiment of the strapping processing equipment of this utility model is applicable to processing strapping unit 11. The strapping unit 11 includes a material frame 12 and a plurality of strapping strips 13 connected to the material frame 12.
[0024] The aggregate 12 includes a plurality of skeletons 121 extending along the axial direction D11 and arranged at intervals, and a node group 122 connecting the skeletons 121. The node group 122 includes a plurality of nodes 123 spaced apart from each other and in the shape of circular blocks.
[0025] The straps 13 are arranged in two rows, left and right. Each row of straps 13 is spaced apart along the axial direction D11. Each strap 13 includes a strap body 131 and a strap head 132, both made of plastic and integrally connected, and a metal clip 133 embedded in the strap head 132. The strap body 131 has teeth 134. The strap head 132 has an insertion hole 135 for inserting the strap body 131. The clip 133 is located in the insertion hole 135.
[0026] See Figure 3 , Figure 4 , Figure 5 The strap processing device of this embodiment includes a transport platform 2, a guide mechanism 3 disposed on one side of the transport platform 2, and two implantation mechanisms 4 disposed on the transport platform 2.
[0027] The conveying platform 2 includes two spaced-apart seats 21 extending longitudinally. Each seat 21 may include block-shaped or plate-shaped portions for cooperating to form a support plane. The seats 21 cooperate to define a generally rectangular receiving area 211 that accommodates the guide mechanism 3, and a conveying groove 22 that connects to the receiving area 211 and extends longitudinally along the conveying direction D12.
[0028] See Figure 3 , Figure 4 , Figure 7 The conveying trough 22 is elongated and narrow. The left and right widths of the conveying trough 22 are greater than those of the aggregate 12 (see...). Figure 1 The conveying trough 22 has a width of approximately 211, thus it can accommodate the feed 12 and allow the feed 12 to move within it. During the movement of the feed 12 within the conveying trough 22, the seat 21 guides the strapping unit 11 to move along the conveying direction D12, ensuring that the movement direction of the strapping unit 11 does not deviate from the conveying direction D12. The conveying trough 22 includes an opening 221 that communicates with the accommodating area 211 and is suitable for the feed 12 of the strapping unit 11 to enter.
[0029] The guiding mechanism 3 includes a drive unit 31 located below the seat 21 of the conveying platform 2, two movable parts 32 spaced apart from each other on the drive unit 31, a gripper assembly 33 disposed on the movable parts 32, and a push unit 34 located between the movable parts 32 in the left-right direction.
[0030] The drive unit 31 can drive the moving member 32 and includes a left-right extending slide rail 311 and two movable seats 312 spaced apart from each other on the slide rail 311. Each movable seat 312 supports a corresponding moving member 32. Each movable seat 312 can be driven to move left and right on the slide rail 311, thereby causing the corresponding moving member 32 to move left and right.
[0031] Each of the moving parts 32 is a long plate-shaped structure with its length and front-back direction aligned and its width and left-right direction aligned. The moving parts 32 are spaced apart from each other and cooperate to define a working area 321 suitable for accommodating the material aggregate 12 of the strap unit 11. The moving parts 32 can be driven by the moving seat 312 of the drive unit 31, and can move closer to each other or further away from each other in the left-right direction, thereby changing the left-right width of the working area 321.
[0032] The gripper assembly 33 includes a plurality of half-claws 331. The half-claws 331 are arranged symmetrically in pairs. Specifically, each half-claw 331 is positioned on the side of a corresponding movable member 32 facing the other movable member 32. Each half-claw 331 defines a semi-circular claw area 332. In other embodiments of this invention, when each node 123 has a shape other than a circular block, the claw area 332 can also have different shapes. For example, when each node 123 is rhomboid, each claw area 332 can also be rhomboid.
[0033] The pushing unit 34 is adapted to push the belt unit 11 located in the work area 321 forward along the conveying direction D12.
[0034] See Figure 2 , Figure 3 , Figure 6 Each of the implantation mechanisms 4 is adapted to be used with a roll of metal strip 14. Each of the implantation mechanisms 4 is adapted to successively cut multiple clips 133 from the corresponding metal strip 14, and then implant the clips 133 into the strap strip 13. The implantation mechanisms 4 are arranged at intervals in the conveying direction D12 and are located on opposite sides of the conveying groove 22.
[0035] See Figure 5 , Figure 7 , Figure 8 Before processing the strap unit 11, it is first placed on the guide mechanism 3. Specifically, the material 12 of the strap unit 11 is placed in the working area 321 between the moving parts 32, and the strap strip 13 is positioned on the seat 21 and the moving parts 32. At this time, the axial direction D11 of the strap unit 11 is in the same direction as the conveying direction D12.
[0036] Next, the position of the belt-bearing unit 11 in the conveying direction D12 can be adjusted by the pushing unit 34, so that the position of the node 123 corresponds left and right to the position of the half-claw 331. Then, the moving seat 312 of the driving unit 31 can drive the moving parts 32 to move closer to each other until the left and right width of the working area 321 is the same as the left and right width of the conveying groove 22, and the working area 321 is aligned with the groove opening 221 (specifically, aligned). During the process of the moving parts 32 moving closer to each other, the half-claws 331 of the same pair can move as follows: Figure 8The node 123 corresponding to the node group 122 is positioned in a coordinated manner. The limiting action of the half-claw 331 guides the feed rib 12 of the strap unit 11 to align with the opening 221 of the conveying trough 22. Finally, the pushing unit 34 pushes the strap unit 11 from the opening 221 into the conveying trough 22 for subsequent operations.
[0037] See Figure 1 , Figure 2 , Figure 6 When the strap unit 11 moves along the conveying groove 22 to the implantation mechanism 4, the implantation mechanism 4 can implant the clip 133 into the strap strip 13. Specifically, the operation process of each implantation mechanism 4 is as follows: a portion of the metal strip 14 is cut to obtain the clip 133, the clip 133 is implanted into one of the strap strips 13, the metal strip 14 is cut again to obtain the next clip 133, and the next clip 133 is implanted into the next strap strip 13.
[0038] Since the strap 13 includes two rows of straps 13, the implantation mechanisms 4 are spaced apart from each other and located on opposite sides of the delivery groove 22, respectively, so that each implantation mechanism 4 can implant the card 133 into the corresponding row of straps 13 of the strap unit 11.
[0039] In summary, the beneficial effects of the present invention's strapping processing equipment are as follows: the guiding mechanism 3 can guide the material aggregate 12 to align with the slot 221, which facilitates the strapping unit 11 being fed into the conveying slot 22 of the conveying platform 2, making it easy to move for subsequent implantation of the clip 133; the implantation mechanism 4 is arranged with front and rear intervals and left and right staggered, which can adapt to the strapping unit 11 divided into two rows of strapping strips 13 for operation.
[0040] The above description is merely a specific embodiment of this utility model and should not be construed as limiting the scope of the claims of this utility model. Equivalent variations made based on the contents of the claims and description of this utility model should also be covered by the scope of the claims of this utility model.
Claims
1. A band processing apparatus adapted to process a band unit, the band unit comprising a stock bone, and a plurality of band strips connected to the stock bone, the stock bone comprising a plurality of stems extending in an axial direction, and a plurality of node groups connected between the stems, characterized in that: The bundle processing device comprises a conveying platform and a guiding mechanism, the conveying platform is formed with a conveying groove extending along a conveying direction, and a containing area communicating with the conveying groove, the conveying groove is suitable for containing the material bones and comprises a slot opening suitable for the material bones to enter and communicate with the containing area, the guiding mechanism is arranged in the containing area of the conveying platform and comprises two moving members capable of being driven to move towards each other or move away from each other, and a clamping jaw group arranged on the moving members, the moving members cooperatively define a working area suitable for containing the material bones, and the clamping jaw group can limit a node group of the material bones when the moving members move towards each other, and guide the material bones to be aligned with the slot opening.
2. The belt handling apparatus of claim 1, wherein: The node group comprises a plurality of block-shaped nodes, and the clamping jaw group comprises a plurality of half jaws, each of which is arranged on the moving member in pairs, and the half jaws in the same pair cooperatively limit a corresponding node.
3. The belt handling apparatus of claim 2, wherein: Each of the nodes is in the shape of a round block, and each of the half jaws defines a half-circular jaw area.
4. The belt handling apparatus of claim 1, wherein: The guiding mechanism comprises a driving unit capable of driving the moving members to move, the driving unit comprises a slide rail and two moving seats arranged on the slide rail and respectively supporting the moving members.
5. The belt handling apparatus of claim 1, wherein: The guiding mechanism further comprises a pushing unit suitable for pushing the material bones of the bundle unit along the conveying direction.
6. The belt handling apparatus according to any one of claims 1 to 5, characterized in that: The bundle processing device is suitable for being used in combination with metal strips, and further comprises an implanting mechanism arranged on the conveying platform, the implanting mechanism is suitable for cutting the metal strips into a plurality of clamping members, and implanting the clamping members into the bundle strips respectively.
7. The belt handling apparatus according to any one of claims 1 to 5, characterized in that: The bundle processing device is suitable for being used in combination with two rolls of metal strips, and a plurality of bundle strips of the bundle unit are divided into left and right rows, and further comprises two implanting mechanisms arranged on the conveying platform, each of the implanting mechanisms is suitable for cutting a corresponding roll of the metal strips into a plurality of clamping members, and each of the implanting mechanisms is further suitable for implanting the clamping members into a corresponding row of the bundle strips respectively.
8. The belt handling apparatus of claim 7, wherein: The implanting mechanisms are arranged at intervals in the conveying direction, and the implanting mechanisms are respectively located at two opposite sides of the conveying groove.