Material receiving device and corresponding belt crocheting equipment

By designing a diversion frame, lifting mechanism, and collecting rollers, the problem of webbing cross-entanglement was solved, enabling efficient collection and automatic storage of multiple webbings and improving production efficiency.

CN224076607UActive Publication Date: 2026-04-03GUANGDONG WEIXING FENGLI WEATHER CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-21
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

In existing technologies, multiple webbing tends to cross and entangle during the crocheting process, making efficient collection difficult and limiting the number of webbing that can be produced at one time.

Method used

A diversion frame is used to divide multiple webbings into two batches and distribute them laterally to two collection frames. A lifting mechanism is used to lift the webbings to the height of the collection frames, and the spacing between the webbings is dispersed by collection rollers and isolation grids. Combined with a conveying mechanism, stable conveying and collection are achieved.

Benefits of technology

It enables efficient separation and collection of multiple webbings, increases the webbing spacing, improves production efficiency, and facilitates automatic webbing storage.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224076607U_ABST
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Abstract

The utility model provides a material receiving device and corresponding belt crocheting equipment. The material collecting device comprises a flow dividing frame, two collecting frames and a plurality of stand columns. The flow dividing frame is located between the two collecting frames in the transverse direction. The collecting frame is fixed to the tops of the stand columns. A lifting mechanism is arranged at the top of the collecting frame, a plurality of collecting rolling shafts are arranged on the collecting frame, the collecting rolling shafts are arranged at intervals in the transverse direction, the braids are divided into a plurality of groups, and the braids in each group are carried on the collecting rolling shafts respectively and fall into a storage box in the vertical direction. The flow dividing frame can divide the multiple braids into two batches and distribute the braids to the two collecting frames in the transverse direction. The multiple braids are lifted through the lifting mechanism and conveyed to the height of the collecting frame; by means of the multiple collecting rolling shafts, the multiple braids arranged in the longitudinal direction can be dispersed to be arranged in the transverse direction and the longitudinal direction, and therefore the distance between the multiple braids can be increased conveniently; and through the flow dividing frame and the collecting frame, the distance between the multiple braids is gradually increased, and therefore the braids can be conveniently collected into a storage box.
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Description

Technical Field

[0001] This utility model relates to the field of ribbon production equipment, and in particular to a material collection device and a corresponding ribbon weaving equipment. Background Technology

[0002] Webbing is typically made by crocheting multiple yarns using a crochet machine. Since webbing is a long and thin material, multiple parallel webbings are crocheted simultaneously using a crochet machine to improve production efficiency. However, with many webbings arranged side-by-side and close together, they easily become entangled and difficult to collect individually, resulting in a limited number of webbings that can be produced at a time and low efficiency. Utility Model Content

[0003] This utility model provides a material collection device and a corresponding weaving equipment for weaving multiple webbings.

[0004] On one hand, this utility model provides a receiving device for collecting multiple webbing output from a crochet machine. The receiving device includes a diverting frame, two collecting frames, and multiple uprights. The diverting frame is located horizontally between the two collecting frames and is used to distribute multiple finished webbings to the two collecting frames. The multiple uprights are fixed around the diverting frame. The collecting frames are fixed to the top of the uprights.

[0005] The top of the collection rack is provided with a lifting mechanism, which includes a lifting main shaft and a lifting driven shaft. The lifting main shaft is longitudinal and is rotatably mounted on the collection rack. The lifting driven shaft is arranged parallel above the lifting main shaft to press the webbing onto the lifting main shaft. The lifting main shaft is driven by a conveyor motor to rotate under the drive of the conveyor motor, thereby lifting the webbing to the collection rack.

[0006] The collection rack has multiple storage boxes arranged in an array below it, each with an opening at the top. The collection rack also has multiple collection rollers arranged at horizontal intervals, each with a longitudinal axis and rotating around the longitudinal axis. The top surface of each collection roller is lower than the top surface of the lifting shaft. Multiple webbing strips are divided into multiple groups, with multiple webbing strips in each group mounted on the collection rollers and falling vertically into the storage boxes.

[0007] The diversion frame is provided with transfer rollers on both sides of the transverse direction. The transfer rollers are arranged longitudinally and rotate around the transverse direction on the diversion frame. The webbing passes under the transfer rollers and is transformed from transverse conveying to vertical lifting conveying by the transfer rollers.

[0008] The collection rack is also equipped with multiple isolation grids, which are arranged longitudinally at intervals and located below the lifting mechanism to space out multiple webbing strips.

[0009] The collecting roller is connected to the lifting main shaft via a drive connection.

[0010] The two collection racks are fixedly connected.

[0011] The receiving device further includes a conveying mechanism, which is located on the side of the dividing frame near the crochet machine. The conveying mechanism includes a main conveying shaft and a driven conveying shaft. The main conveying shaft is transverse in axis and is rotatably mounted on the dividing frame. The driven conveying shaft is parallel to the main conveying shaft above it to press the webbing onto the main conveying shaft. The main conveying shaft is driven by the conveying motor to rotate under the drive of the conveying motor, thereby moving the webbing toward the dividing frame.

[0012] The diverter is provided with transmission rollers on both sides of the transverse direction. The transmission rollers are arranged longitudinally and rotate around the longitudinal direction on the diverter. One end of the transmission roller is connected to the conveying main shaft and the other end is connected to the lifting main shaft. The lifting main shaft is connected to the conveying motor through the transmission rollers and the conveying main shaft.

[0013] The conveyor motor is located at the bottom of the receiving device.

[0014] The diversion frame is equipped with multiple diversion columns, each of which is vertically arranged. The multiple diversion columns are divided into two groups and arranged diagonally. The diversion columns located away from the crochet machine are located in the middle of the transverse direction of the diversion frame, while the diversion columns located near the crochet machine are located on the transverse side of the diversion frame. This is used to redirect multiple transversely arranged webbings to a longitudinally arranged position and then transport them transversely to the transverse side of the diversion frame.

[0015] On the other hand, this utility model also provides a belt-type crocheting equipment, including a crocheting machine and the aforementioned take-up device, wherein the crocheting machine and the take-up device are arranged longitudinally.

[0016] The material collection device and corresponding weaving equipment provided by this utility model can divide multiple webbings into two batches and distribute them laterally to two collection racks using a diversion frame. A lifting mechanism can lift multiple webbings to the height of the collection racks so that the webbings can automatically hang down and be collected at the collection racks. Multiple collection rollers can disperse multiple webbings arranged longitudinally into those arranged laterally and longitudinally to increase the distance between multiple webbings. Through the diversion frame and collection racks, the distance between multiple webbings gradually increases, making it easier to collect them into the storage box. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the collection device provided in a preferred embodiment of the present invention;

[0018] Figure 2 yes Figure 1 A schematic diagram of the flow distribution frame of the collection device;

[0019] Figure 3 yes Figure 1 A schematic diagram of the collection rack of the collection device;

[0020] Figure 4 yes Figure 1 A schematic diagram of the webbing conveyor as viewed from above from the perspective of the collection device. Detailed Implementation

[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.

[0022] In the diagram, units with similar structures are represented by the same labels.

[0023] This utility model discloses a high-efficiency weaving equipment for ribbons, including a weaving machine and a take-up device. The weaving machine can weave multiple yarns to form multiple ribbons, and the take-up device collects the multiple ribbons. The weaving machine and the take-up device are arranged longitudinally.

[0024] Please refer to Figure 1 The receiving device includes a diverting frame 11, two collecting frames 12 and multiple uprights 14. The diverting frame 11 is located horizontally between the two collecting frames 12; it is used to distribute multiple finished webbings to the two collecting frames 12.

[0025] Multiple columns 14 are fixed around the diversion frame, and the collection racks 12 are fixed to the top of the columns 14. The columns 14 can support the diversion frame 11 and the two collection racks 12, and can support the collection racks 12 to a certain height. In this embodiment, the diversion frame 11 is square, and there are four columns 14 located at the four corners of the diversion frame 11.

[0026] like Figure 2 As shown, the diverter 11 can divide multiple webbings into two batches and distribute them laterally to two collection racks 12. The two collection racks 12 facilitate the collection of multiple webbings and leave space on the upper and lower sides of the diverter 11 for the passage of multiple yarns.

[0027] The diversion frame 11 is provided with multiple diversion columns 111, each of which is vertically arranged. The multiple diversion columns 111 are divided into two groups and arranged diagonally. The diversion column 111 located away from the crochet machine is located in the middle of the transverse direction of the diversion frame 11, and the diversion column 111 located near the diversion machine is located on the transverse side of the diversion frame 11. It is used to turn multiple transversely arranged webbing 9 into longitudinally arranged webbing and transport them transversely to the transverse side of the diversion frame 11.

[0028] By arranging multiple diverting columns 111 in an oblique pattern, multiple webbings can be divided from a single column arranged in the transverse direction into two columns arranged in the longitudinal direction, thereby conveying multiple webbings to the transverse sides of the diverting frame 11 for collection, so as to facilitate the collection of webbings.

[0029] like Figure 1 As shown, the collection rack 12 is fixed to the top of the column 14 to support it. This allows multiple webbings to be transported to a certain height before collection, facilitating the sorting and neat storage of the webbings. In this embodiment, the two collection racks 12 are directly and fixedly connected to improve the overall structural strength of the collecting device.

[0030] Combination Figure 1 and Figure 3 As shown, a lifting mechanism 13 is provided on the top of the collection rack 12. The lifting mechanism 13 includes a lifting main shaft 131 and a lifting driven shaft 132. The lifting main shaft 131 is axially longitudinal (Y) and is rotatably mounted on the collection rack 12 about the longitudinal direction. The lifting driven shaft 132 is arranged parallel above the lifting main shaft 131 to press the webbing tightly onto the lifting main shaft 131. The lifting main shaft 131 is driven by a conveyor motor (not shown in the figure) to rotate under the drive of the conveyor motor, thereby lifting the webbing to the collection rack 12.

[0031] The lifting mechanism 13 can be used to lift multiple webbings and transport them to the height of the collection rack 12, so that the webbings can automatically hang down and be stored at the collection rack 12.

[0032] like Figure 1 As shown, multiple storage boxes 19 are arranged in an array below the collection rack 12, each with an open top. Multiple collection rollers 121 are mounted on the collection rack 12, spaced apart along the horizontal direction (X). Each collection roller 121 is axially aligned with the vertical direction (Y) and is rotatably mounted on the collection rack 12. The top surface of each collection roller 121 is lower than the top surface of the lifting main shaft 131, allowing the webbing to be gradually conveyed from the lifting main shaft 131 to the collection rollers 121 under gravity.

[0033] like Figure 4As shown, multiple webbing 9 are divided into multiple groups, and multiple webbing 9 in each group are respectively mounted on multiple collecting rollers 121 and conveyed vertically to the storage box 19. By using multiple collecting rollers 121, the multiple webbing 9 arranged in the longitudinal direction can be dispersed into horizontal (X) and vertical (Y) directions, so as to increase the distance between the multiple webbing and facilitate collection into the storage box 19. In this embodiment, a total of 60 webbing can be crocheted simultaneously, and each collecting rack can collect 30 webbing. The 30 webbing are divided into 6 groups, and the storage boxes 19 under each collecting rack are arranged in a 5*6 array.

[0034] like Figure 3 As shown, the collection rack 12 is also provided with multiple isolation grids 122, which are arranged at intervals along the longitudinal Y direction and located below the lifting mechanism 13, in order to space out multiple webbings to avoid tangling between multiple webbings.

[0035] The collecting roller 121 is connected to the lifting main shaft 131 so that the collecting roller 121 can also apply movement power to the webbing, which facilitates the conveying of the webbing and prevents the webbing from sagging between the collecting roller and the lifting main shaft, thus affecting the conveying. The synchronous rotation of the collecting roller and the lifting main shaft can ensure the stability of the webbing conveying.

[0036] like Figure 2 As shown, transfer rollers 17 are provided on both sides of the transverse X of the diversion frame 11. The transfer rollers 17 are arranged in the longitudinal direction and are rotatably arranged on the diversion frame 11 around the longitudinal direction. The webbing passes through the bottom of the transfer rollers 17 and is transformed from transverse conveying to vertical lifting conveying by the transfer rollers.

[0037] After multiple webbing 9 are conveyed longitudinally Y to the diversion frame 11, they are changed to be conveyed transversely X by the diversion column 111 and conveyed to the transfer roller 17. The transfer roller 17 can convert the transverse conveying of multiple webbing into vertical conveying so that the multiple webbing can be lifted vertically by the lifting mechanism.

[0038] The receiving device also includes a conveying mechanism 15, which conveys multiple webbings to the distribution frame 11. The conveying mechanism 15 is located on the side of the distribution frame 11 near the crochet machine, and includes a main conveying shaft 151 and a driven conveying shaft 152. The main conveying shaft 151 is axially aligned with the transverse direction X and is rotatably mounted on the distribution frame 11 about the transverse direction X. The driven conveying shaft 152 is parallel to and positioned above the main conveying shaft 151 to press the webbing onto the main conveying shaft 151. The main conveying shaft 151 is driven by a conveying motor, and rotates under the drive of the conveying motor, thereby moving the webbing 9 toward the distribution frame 11.

[0039] The conveying mechanism 15 can provide a force to transport multiple webbings to the distribution frame 11, so as to ensure that the webbing 9 can be smoothly conveyed to the distribution frame 11 along the longitudinal direction Y.

[0040] In this embodiment, transmission rollers 16 are provided on both sides of the diverter 11. The transmission rollers 16 are arranged longitudinally and rotatably mounted on the diverter. One end of the transmission roller 16 is connected to the conveying main shaft 151, and the other end is connected to the lifting main shaft 131. The lifting main shaft 131 is connected to the conveying motor via the transmission rollers 16 and the conveying main shaft 151. By using the transmission rollers 16, the lifting main shaft 131 and the conveying main shaft 151 can be driven by the same conveying motor, ensuring that the lifting main shaft and the conveying main shaft rotate synchronously.

[0041] Furthermore, the conveying main shaft 151 and the transmission roller 16 can be connected by a bevel gear to achieve a change in the direction of rotation. The conveying main shaft and the conveying motor, as well as the transmission roller 16 and the lifting main shaft, are all connected by chain drive. Of course, in other embodiments, other transmission methods such as belt drive and gear drive can also be used.

[0042] The conveyor motor is located at the bottom of the receiving device to ensure the stability of the entire receiving device and prevent shaking.

[0043] The material collection device and weaving equipment provided by this utility model can divide multiple webbings into two batches and distribute them laterally to two collection racks using a diversion frame. A lifting mechanism can lift multiple webbings to the height of the collection racks so that the webbings can automatically hang down and be collected at the collection racks. Multiple collection rollers can disperse multiple webbings arranged longitudinally into those arranged laterally and longitudinally to increase the distance between multiple webbings. Through the diversion frame and collection racks, the spacing between multiple webbings gradually increases, making it easier to collect them into the storage box.

[0044] In summary, although the present invention has been disclosed above with reference to preferred embodiments, the above preferred embodiments are not intended to limit the present invention. Those skilled in the art can make various modifications and refinements without departing from the spirit and scope of the present invention. Therefore, the scope of protection of the present invention shall be determined by the scope defined in the claims.

Claims

1. A collecting device for collecting a plurality of belts output by a crochet machine, characterized in that, the collecting device comprises a distribution frame, two collecting frames and a plurality of columns, the distribution frame is located between the two collecting frames in the transverse direction, and is used for distributing the plurality of belt products to the two collecting frames; a plurality of columns are fixed around the distribution frame; the collecting frames are fixed to the top of the columns; the top of the collecting frame is provided with a lifting mechanism, the lifting mechanism comprises a lifting main shaft and a lifting slave shaft, the axial direction of the lifting main shaft is longitudinal, and the lifting main shaft is arranged to rotate around the longitudinal direction on the collecting frame, the lifting slave shaft is arranged in parallel above the lifting main shaft to press the belt on the lifting main shaft; the lifting main shaft is drivingly connected to a conveying motor to rotate under the driving of the conveying motor, thereby lifting the belt to the collecting frame; a plurality of receiving boxes are arranged below the collecting frame, the plurality of receiving boxes are arranged in an array, and the top of each receiving box is open; a plurality of collecting rollers are arranged on the collecting frame, the plurality of collecting rollers are arranged in the transverse direction, the axial direction of each collecting roller is longitudinal, and each collecting roller is arranged to rotate around the longitudinal direction on the collecting frame; the top surface of each collecting roller is lower than the top surface of the lifting main shaft; the plurality of belts are divided into a plurality of groups, and the plurality of belts in each group are respectively loaded on the plurality of collecting rollers and fall vertically into the receiving boxes.

2. The material receiving device of claim 1, wherein, the lateral sides of the distribution frame are provided with transfer rollers, the transfer rollers are arranged in the longitudinal direction and rotate around the longitudinal direction on the distribution frame, the belts pass below the transfer rollers and are converted from horizontal conveying to vertical lifting conveying by the transfer rollers.

3. The material receiving device of claim 1, wherein, a plurality of isolation grids are further arranged on the collecting frame, the plurality of isolation grids are arranged in the longitudinal direction and below the lifting mechanism, and are used for spacing the plurality of belts.

4. The material receiving device of claim 1, wherein, the collecting roller and the lifting main shaft are drivingly connected.

5. The material collection device of claim 1, wherein, the two collecting frames are fixedly connected.

6. The device of any one of claims 1-5, wherein, the collecting device further comprises a conveying mechanism, the conveying mechanism is arranged on one side of the distribution frame close to the crochet machine, and comprises a conveying main shaft and a conveying slave shaft; the axial direction of the conveying main shaft is transverse, and the conveying main shaft is arranged to rotate around the transverse direction on the distribution frame; the conveying slave shaft is arranged in parallel above the conveying main shaft to press the belt on the conveying main shaft; the conveying main shaft is drivingly connected to the conveying motor to rotate under the driving of the conveying motor, thereby moving the belt towards the distribution frame.

7. The material collection device of claim 6, wherein, the lateral sides of the distribution frame are provided with transmission rollers, the transmission rollers are arranged in the longitudinal direction and rotate around the longitudinal direction on the distribution frame, one end of the transmission roller is drivingly connected to the conveying main shaft, and the other end is drivingly connected to the lifting main shaft; the lifting main shaft is drivingly connected to the conveying motor through the transmission roller, the conveying main shaft and the conveying motor.

8. The material collection device of claim 6, wherein, the conveying motor is arranged at the bottom of the collecting device.

9. The material collection device of any of claims 1-5, wherein, The shunt frame is provided with a plurality of shunt columns, each of which is vertically arranged, and the plurality of shunt columns are divided into two groups and arranged in a diagonal line shape, wherein the shunt columns far away from the hook knitting machine are located at the transverse middle position of the shunt frame, and the shunt columns close to the hook knitting machine are located at the transverse side of the shunt frame, for turning a plurality of transversely arranged ribbons into longitudinally arranged ribbons and conveying the ribbons to the transverse side of the shunt frame along the transverse direction.

10. A band-like hooking apparatus characterized by comprising: The application also provides a hook knitting machine and a material collecting device, wherein the hook knitting machine and the material collecting device are arranged in a longitudinal direction.