Ribbon coiling machine
The simplified weaving band winding machine integrates glue application and cutting functions on a rotating base, addressing space inefficiencies and maintenance challenges, resulting in a compact and efficient production process.
Patent Information
- Application Number
- CN202422271263.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-18
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-09-18
AI Technical Summary
The existing webbing machine structure is not compact and complex enough, has low space utilization, and is difficult to assemble and maintain.
The webbing winding assembly, cutting mechanism and rotatable tape winding mechanism are adopted to realize the winding and cutting functions of the tape through the rotating movement of the bottom plate, and integrate tape winding, cutting components and pressing wheel components to simplify the structure and improve space utilization.
The overall structure of the webbing machine is achieved by simple and compact, reducing assembly and maintenance difficulties, and improving space utilization.
Smart Images

Figure CN223102221U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of webbing, and particularly relates to a webbing winding machine. Background Art
[0002] In order to facilitate storage and later use, when the existing webbing is processed at the factory, a winding machine is usually used to wind the very long webbing into a disc shape. After forming, at least one layer of rubber rings needs to be wound around the outer periphery of the webbing. Otherwise, the disc-shaped webbing is extremely easy to loosen and deform. Therefore, generally, during the production process, each disc-shaped webbing needs to be wound with rubber after forming to ensure the stable shape of the disc-shaped webbing without loosening.
[0003] However, in order to achieve the purpose of winding rubber on the webbing, the existing winding machines are usually equipped with a pressing mechanism and a cutting mechanism to cooperate, that is, the pressing mechanism (pressure wheel) presses the adhesive tape against the outer periphery of the disc-shaped webbing, and then the disc-shaped webbing rotates to wind the rubber. Otherwise, the adhesive tape cannot be completely adhered to the webbing. Finally, the feeding end of the adhesive tape is cut off by the cutting mechanism. Such a large number of combined mechanisms make the whole winding machine very space-consuming, with a non-compact and complex structure, extremely low space utilization rate, and relatively difficult later maintenance and repair. Moreover, in order to ensure the linkage cooperation of multiple moving mechanisms, it is also necessary to adjust and control the position accuracy and assembly accuracy of each mechanism, which has certain requirements for assembly workers and is time-consuming and laborious.
[0004] In summary, there is an urgent need for a webbing winding machine to meet the production requirements. Content of the Utility Model
[0005] The utility model provides a webbing winding machine with a simple overall structure, easy to implement and low cost. It can effectively solve the problems of the existing winding machine with a non-compact and complex structure and low space utilization rate. The main technical solutions are as follows:
[0006] A webbing winding machine includes a webbing winding assembly, a cutting mechanism, a working plate, and an adhesive tape winding mechanism rotatably arranged on the working plate; the webbing winding assembly includes a material receiving shaft for winding the webbing into a disc shape, and the material receiving shaft is located below or above the adhesive tape winding mechanism so that the disc-shaped webbing wound can come into contact and cooperate with the adhesive tape winding mechanism for winding rubber; the cutting mechanism is used to cut off the feeding end of the webbing; the adhesive tape winding mechanism is used to wind the adhesive tape around the outer periphery of the disc-shaped webbing and cut off the feeding end of the wound adhesive tape; the adhesive tape winding mechanism rotates on the working plate to have a first position and a second position; in the first position, the material receiving shaft drives the disc-shaped webbing to cooperate with the pressure wheel assembly in the adhesive tape winding mechanism for winding rubber; in the second position, the cutting component in the adhesive tape winding mechanism cuts off the feeding end of the adhesive tape.
[0007] Preferably, the tape winding mechanism includes a base plate and a cutting component, a pressure wheel assembly and a rubber-bearing wheel for placing the rubber ring arranged on the base plate; the base plate can rotate on the working plate, driving the cutting component, the pressure wheel assembly and the rubber-bearing wheel to switch between the first position and the second position at the same time.
[0008] Preferably, the pressure wheel assembly includes a first pressure wheel rotatably arranged on the bottom plate, and the tape on the rubber ring is placed on the outer peripheral surface of the first pressure wheel; the first pressure wheel is used to contact and abut against the disc-shaped webbing, and cooperate with the rotation of the disc-shaped webbing to wrap the tape on its outer peripheral surface around the outer periphery of the disc-shaped webbing.
[0009] Preferably, the base plate has a rotating shaft passing through the working plate, the rotating shaft is connected to the first driving member and is driven and controlled to rotate by the first driving member; the working plate has an adjustment groove, the rotating shaft passes through the adjustment groove and can slide in the adjustment groove to adjust the horizontal height of the first pressure wheel.
[0010] Preferably, it also includes a clamping plate which is arranged on the back side of the working plate and connected to the rotating shaft, and the clamping plate is used to limit the rotating shaft to a certain horizontal height.
[0011] Preferably, when the base plate is rotated and switched from the first position to the second position, the rubber-bearing wheel drives the tape on the rubber ring to be tightened and deformed against the outer peripheral surface of the first pressure wheel, so that the feeding end of the tightened tape can be cut off by the first pressure wheel cooperating with the cutting component.
[0012] Preferably, the pressure wheel assembly also includes a rotatable second pressure wheel arranged on the base plate, and the second pressure wheel and the first pressure wheel are arranged on both sides of the base plate opposite to each other with a spacing space formed therebetween; when the base plate is in the second position, the second pressure wheel presses the tape tightly against the outer periphery of the disc-shaped webbing.
[0013] Preferably, the cutting component is configured as a cutter with a cutting end being a blade or a saw blade with a cutting end being saw teeth, and the cutting end thereof extends away from the pressure wheel assembly.
[0014] Preferably, the ribbon winding assembly also includes a second driving member for controlling the rotation of the material receiving shaft; the ribbon disc machine also includes a transmission mechanism carrying the second driving member and the material receiving shaft; the transmission mechanism is used to link the material receiving shaft to slide in the guide groove on the working plate, drive it to stop at a position below or above the tape winding mechanism, and drive the material receiving shaft to slide in the guide groove along the thickness direction of the working plate, so that the disc-shaped ribbon is clamped on the working plate and disconnected from the material receiving shaft.
[0015] Preferably, the cutting mechanism includes a third driving member and a cutting knife disposed at the feeding end of the webbing. The third driving member can control the operation of the cutting knife to cut off the feeding end of the webbing.
[0016] As can be seen from the above description of the present invention, compared with the prior art, the present invention has the following beneficial effects:
[0017] (1) The technical solution of the present invention provides a webbing winding machine, which effectively solves the problems that the structure of the existing winding machine is not compact and complex, and the space utilization rate is low. In the technical solution of the present invention, on the basis of ensuring the original webbing winding function by the webbing winding assembly, a tape winding mechanism that can cooperate with it is arranged above or below the webbing winding assembly. In this way, after the webbing is formed into a disc shape, through the rotation position switching of a tape winding mechanism, the functions of tape winding and cutting can be realized. The overall structure is simple and compact, and the disassembly and assembly are also convenient, which can effectively save the overall occupied space of the winding machine and improve the space utilization rate.
[0018] (2) In this technical solution, the tape winding mechanism includes a bottom plate and a cutting component, a pressure wheel assembly and a rubber ring bearing wheel arranged on the bottom plate. Multiple components are integrated on the same component. By rotating the bottom plate, the simultaneous movement of multiple components can be driven at the same time, and the functions of tape winding and cutting can be realized. The overall structure is compact, and only simple assembly of the bottom plate is required during installation, and the assembly efficiency is extremely high.
[0019] (3) In this technical solution, there is an adjustment groove on the working plate. When the bottom plate is installed on the working plate, the rotating shaft on the bottom plate can pass through the adjustment groove and can slide therein to adjust the horizontal height of the first pressure wheel. In this way, the distance between the material bearing shaft and the first pressure wheel can be adjusted and controlled, so that the first pressure wheel can be in close contact with the disc-shaped webbing regardless of its diameter size, and the rubber winding function is stable.
[0020] (4) In this technical solution, a clamping plate fixed to the back of the working plate is used to limit the rotating shaft at a certain height, which effectively saves the space of the working area and more effectively restrains and fixes the bottom plate to prevent processing hidden dangers.
[0021] (5) In this technical solution, the tape winding mechanism further includes a second pressure wheel. When the cutting component cuts the webbing, the second pressure wheel presses the tape against the outer periphery of the webbing. In this way, after the tape is cut by the cutting component, it can be prevented that part of the tape is distorted, scattered and deformed or self-detached from the outer periphery of the webbing without being glued to the outer periphery of the webbing, avoiding affecting the product quality, and the product can complete the rubber winding at one time without the need for rework. Description of the Drawings
[0022] To more clearly illustrate the technical solutions in the embodiments of the present invention, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the drawings in the following description are some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0023] Figure 1 Schematic diagram of the overall structure of the embodiment of the present invention Figure 1 ;
[0024] Figure 2 Schematic diagram of the structure of the material receiving shaft of the embodiment of the present invention before coiling the material;
[0025] Figure 3 Schematic diagram of the structure of the tape winding mechanism of the embodiment of the present invention in the first position;
[0026] Figure 4 Schematic diagram of the structure of the tape winding mechanism of the embodiment of the present invention in the second position;
[0027] Figure 5 Explosion diagram of the tape winding mechanism of the embodiment of the present invention;
[0028] Figure 6 Schematic diagram of the overall structure of the embodiment of the present invention Figure 2 ;
[0029] Figure 7 Assembly schematic diagram of the rotating shaft, clamping plate and first driving member of the embodiment of the present invention.
[0030] Explanation of the reference numerals is as follows: 1. Webbing winding assembly; 11. Material receiving shaft; 12. Second driving member; 2. Tape winding mechanism; 21. Pressing wheel assembly; 211. First pressing wheel; 212. Second pressing wheel; 22. Cutting member; 23. Base plate; 231. Rotating shaft; 23a. First driving member; 24. Glue receiving wheel; 3. Working plate; 31. Guide groove; 32. Adjusting groove; 4. Cutting mechanism; 41. Third driving member; 42. Shearing knife; 5. Clamping plate; 6. Transmission mechanism; 61. Guide rail; 62. Carrying platform; 7. Flattening rod; A. Webbing; B. Tape. Detailed implementation manners
[0031] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are the preferred embodiments of the present invention and should not be regarded as excluding other embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.
[0032] In the claims, the description and the above-mentioned drawings of the present utility model, unless otherwise clearly defined, when using terms such as "first", "second" or "third", etc., they are used to distinguish different objects rather than to describe a specific order.
[0033] In the claims, the description and the above-mentioned drawings of the present utility model, unless otherwise clearly defined, for orientation terms, when using terms such as "center", "horizontal", "vertical", "level", "vertical", "top", "bottom", "inner", "outer", "upper", "lower", "front", "rear", "left", "right", "clockwise", "counterclockwise", etc. to indicate the orientation or position relationship, it is based on the orientation and position relationship shown in the drawings, and is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation or be constructed and operated in a specific orientation, so it should not be understood as limiting the specific protection scope of the present utility model.
[0034] In the claims, the description and the above-mentioned drawings of the present utility model, unless otherwise clearly defined, when using the terms "fixed connection" or "fixedly connected", it should be understood in a broad sense, that is, any connection method without displacement relationship and relative rotation relationship between the two, that is, including non-detachable fixed connection, detachable fixed connection, being integrally connected, and being fixedly connected through other devices or elements.
[0035] In the claims, the description and the above-mentioned drawings of the present utility model, when using terms such as "comprising", "having" and their variants, are intended to mean "including but not limited to".
[0036] Please refer to Figures 1 to 7 。
[0037] This embodiment provides a webbing winding machine, the overall structure of which is simple, easy to implement and low in cost. It can effectively solve the problems that the existing winding machine has an insufficiently compact and complex structure and low space utilization rate. It mainly adopts the following structure: it includes a webbing winding assembly 1, a working plate 3, a cutting mechanism 4, a transmission mechanism 6, and a tape winding mechanism 2 that is rotatably movable on the working plate 3; among them,
[0038] The working plate 3 is vertically arranged relative to the horizontal plane; there is a tape winding mechanism 2 on the surface of the working plate 3, and there is a strip-shaped opening-shaped guiding groove 31 on the working plate 3, and the tape B winding assembly is located above the guiding groove 31;
[0039] The webbing winding assembly 1 includes a second driving member 12 and a material receiving shaft 11. The second driving member 12 is a motor, the output end of the motor is connected to the material receiving shaft 11, and the material receiving shaft 11 is arranged at a distance; the material receiving shaft 11 is used for placing the webbing A;
[0040] The transmission mechanism 6 mainly includes a guide rail 61, a cylinder, and a carrier table 62. The cylinder can control the sliding movement of the carrier table 62 on the guide rail 61 through movement. Among them, the second driving member 12 and the material supporting shaft 11 in the webbing winding assembly 1 are carried and arranged at the upper end of the carrier table 62. When the cylinder moves, it drives the carrier table 62 to drive the material supporting shaft 11 to slide in the guide groove 31 until the material supporting shaft 11 slides and stops at a position below the tape winding mechanism 2 (in other embodiments, it can also be arranged at the upper position). After that, the second driving member 12 can be powered on to drive the material supporting shaft 11 to rotate and wind the webbing A into a disc shape until the outer circumference of the disc-shaped webbing A abuts against the tape winding mechanism 2, and then the second driving member 12 stops.
[0041] In this embodiment, the material supporting shaft 11 is arranged in the guide groove 31. The guide groove 31 can impose certain constraints on the radial position of the material supporting shaft 11 to prevent eccentric rotation of the material supporting shaft 11 during rotation and ensure the forming quality. Moreover, the setting of the guide groove 31 can also effectively provide a reference for the displacement stroke distance of the material supporting shaft 11, that is, when the material supporting shaft 11 displaces to the end position of the guide groove 31, the material supporting shaft 11 will be precisely located at the lower end of the tape winding mechanism 2, so that the coiled and formed disc-shaped webbing A can just abut against the tape winding mechanism 2, which is extremely convenient for use and installation.
[0042] The cutting mechanism 4 includes a third driving member 41 and a cutting knife 42 arranged at the feeding end position of the webbing A. After the material supporting shaft 11 winds the webbing A into a disc shape, the third driving member 41 can control the cutting knife 42 to operate, and the cutting knife 42 cuts off the feeding end of the webbing A through shear force, thus completing the coiling of the webbing A and keeping the diameter size of the disc shape within a certain specification.
[0043] The tape winding mechanism 2 is rotatably arranged on the working plate 3 and is mainly used for winding the tape B around the outer circumference of the disc-shaped webbing A and cutting off the feeding end of the wound tape B. The tape winding mechanism 2 rotates on the working plate 3 to have a first position and a second position. When the tape winding mechanism 2 is in the first position, the outer circumference of the disc-shaped webbing A abuts against the tape winding mechanism 2, and a part of the tape B on the tape winding mechanism 2 will be adhesively attached to the outer circumference of the webbing A. At this time, the disc-shaped webbing A only needs to rotate, and the outer circumference of the webbing A can be completed with glue winding. When the tape winding mechanism 2 rotates and switches from the first position to the second position, the cutting component 22 in the tape winding mechanism 2 can cut off the feeding end of the tape B.
[0044] In this embodiment, after the tape B is completed with glue winding, in order to complete automatic unloading, the transmission mechanism 6 can also be used to drive the material supporting shaft 11 to slide in the guide groove 31 along the thickness direction of the working plate 3, so that the disc-shaped webbing A is clamped on the working plate 3 and disconnected from the material supporting shaft 11, and the disc-shaped webbing A leaves the working plate 3, reducing manual operation and ensuring safety.
[0045] In this embodiment, during the coiling process of the webbing A, a flattening rod 7 is further arranged at the axial position of the material receiving shaft 11 to further ensure that the webbing A will not scatter during the process of being wound into a disc shape, and further ensure the shaping effect of the disc shape.
[0046] In this embodiment, the tape winding mechanism 2 includes a bottom plate 23, a cutting component 22, a pressing wheel assembly 21 and a rubber ring receiving wheel 24 arranged on the bottom plate 23; the bottom plate 23 can rotate on the working plate 3, driving the cutting component 22, the pressing wheel assembly 21 and the rubber ring receiving wheel 24 to switch between a first position and a second position at the same time, with an integrated structure and space saving.
[0047] In this embodiment, the pressing wheel assembly 21 includes a rotatable first pressing wheel 211 arranged on the bottom plate 23, and the tape B on the rubber ring of the rubber ring receiving wheel 24 is placed on the outer peripheral surface of the first pressing wheel 211; the first pressing wheel 211 is mainly used to contact and resist against the webbing A wound into a disc shape, and part of the tape B on the outer periphery of the first pressing wheel 211 is adhered to the outer periphery of the webbing A. In this way, with the rotation of the disc-shaped webbing A, the tape B on the outer peripheral surface of the first pressing wheel 211 is wound around the outer periphery of the disc-shaped webbing A as it rotates.
[0048] In order to realize the switching movement of the bottom plate 23 between the first position and the second position on the working plate 3; in this embodiment, a rotating shaft 231 passing through the working plate 3 is provided on the bottom plate 23, and the rotating shaft 231 is clamped and connected to a first driving member 23a (the first driving member 23a is one of a cylinder or a motor, etc.) and is driven and controlled to rotate by the first driving member 23a. The rotating shaft 231 is located at the middle end between the bottom plate 23 and the first driving member 23a, and the bottom plate 23 and the first driving member 23a are respectively located at the front and back plate surfaces of the working plate 3; when the first driving member 23a on the back side of the working plate 3 moves, the rotating shaft 231 will drive the bottom plate 23 on the other side plate surface to rotate.
[0049] In this embodiment, an adjustment groove 32 is provided on the working plate 3, and the rotating shaft 231 passes through the adjustment groove 32 and can slide therein to adjust the horizontal height of the first pressing wheel 211; in such a structural design, no matter how large the diameter of the disc-shaped webbing A coiled by the material receiving shaft 11 is, it can be ensured that it is in close contact with the tape B on the first pressing wheel 211;
[0050] In this embodiment, a clamping plate 5 connected to the rotating shaft 231 is further provided on the back of the working plate 3. The clamping plate 5 is used to limit the rotating shaft 231 to a certain horizontal height, that is, to prevent the rotating shaft 231 from automatically retracting in the adjustment groove 32 after maintaining a certain height, affecting the processing operation.
[0051] In this embodiment, refer to Figure 3 and Figure 4The rubber ring is sleeved on the rubber bearing wheel 24, and since the free end of the rubber ring tape B is located on the first pressure wheel 211 and is close to the outer periphery of the disc-shaped webbing A, when the bottom plate 23 rotates from the first position to the second position, the rubber bearing wheel 24 will drive the tape B on the rubber ring to be tightened and deformed against the outer peripheral surface of the first pressure wheel 211, so that the feeding end of the tightened tape B can be cut off by the first pressure wheel 211 cooperating with the cutting component 22.
[0052] In this embodiment, see Figure 4 The pressure wheel assembly 21 also includes a second pressure wheel 212 rotatably arranged on the bottom plate 23. The second pressure wheel 212 and the first pressure wheel 211 are arranged on both sides of the bottom plate 23 opposite to each other and a spacing space is formed between the two pressure wheels, so that the two pressure wheels will not interfere with each other during rotation; when the bottom plate 23 is in the second position, the second pressure wheel 212 presses the tape B against the outer periphery of the disc-shaped webbing A, thereby ensuring that the tape B will not scatter everywhere and stay away from the outer periphery of the webbing A after being cut.
[0053] In this embodiment, see Figure 5 The cutting component 22 is configured as a cutter with a cutting end as a blade or a saw blade with a cutting end as saw teeth, and the cutting end thereof extends away from the pressure wheel assembly 21 .
[0054] The working principle and use process of this utility model:
[0055] Before starting the operation, the material receiving shaft 11 is located outside the working plate 3, the tape winding mechanism 2 is located at the initial first position, the rubber ring is located on the rubber bearing wheel 24 in the tape winding mechanism 2, and the free end of the rubber ring tape B is cut off by a small part by the cutting component 22 (saw teeth), so that the tape B is adhered to the cutting component 22 by the adhesiveness, so as to be located on the outer periphery of the first pressing wheel 211;
[0056] When working,
[0057] First, see Figure 1 , manually or by using an automated motor or manipulator to insert the ribbon A into the groove of the material receiving shaft 11 and place it;
[0058] Second, the second driving member 12 (motor) is powered on and quickly rotated 2-3 times to completely wind the webbing A around the material bearing shaft 11 to prevent the webbing A from falling off;
[0059] Third, see Figure 2 and Figure 3, the transmission mechanism 6 operates, i.e., the cylinder moves, and the linkage carrier 62 drives the material bearing shaft 11 to slide within the guide groove 31 until the material bearing shaft 11 slides and stops at a position below the tape winding mechanism 2. Then, the flattening rod 7 is arranged at the axial position of the material bearing shaft 11. Next, the second driving member 12 can continue to be energized to drive the material bearing shaft 11 to rotate, winding the webbing A into a disc shape with a certain thickness until the outer periphery of the disc-shaped webbing A abuts against the tape B on the first pressing wheel 211. The second driving member 12 stops, and at this time, the webbing A is formed into a disc shape;
[0060] Fourth, the cutting mechanism 4 operates. The third driving member 41 in the cutting mechanism 4 controls the movement of the cutting knife 42, and the cutting knife 42 cuts off the feeding end of the webbing A by shear force, thus completing the coiling of the webbing A.
[0061] Fifth, since the outer periphery of the webbing A abuts against the first pressing wheel 211, at this time, the second driving member 12 (motor) continues to operate, and the second driving member 12 drives the material bearing shaft 11 to rotate. The entire disc-shaped webbing A rotates accordingly, and the tape B will gradually wind and adhere to the outer periphery of the disc-shaped webbing A (the number of winding turns of the tape B can be set by itself);
[0062] Sixth, refer to Figure 4 , the first driving member 23a operates, and the first driving member 23a drives the rotating shaft 231 to rotate, driving the bottom plate 23 to rotate on the working plate 3. The glue bearing wheel 24, the first pressing wheel 211, the second pressing wheel 212, and the cutting member 22 all rotate accordingly. As they rotate, the glue bearing wheel 24 will drive the tape B on the rubber ring to closely adhere to the outer peripheral surface of the first pressing wheel 211 and deform under tension. When rotating to the end, the second pressing wheel 212 acts to press the tape B against the outer periphery of the disc-shaped webbing A. The first pressing wheel 211 continues to cooperate with the cutting member 22 to cut off the feeding end of the tensioned tape B. Finally, the second driving member 12 (motor) rotates one more week, and the tape B is all wound and adhered to the outer periphery of the webbing A;
[0063] Seventh, the transmission mechanism 6 operates, i.e., the cylinder moves, driving the material bearing shaft 11 to slide along the thickness direction of the working plate 3 within the guide groove 31, so that the disc-shaped webbing A is clamped on the working plate 3 and disconnected from the material bearing shaft 11. The disc-shaped webbing A automatically leaves the working plate 3 without manual material taking, completing a cycle of operation. Therefore, in the present utility model, on the basis of ensuring the original winding function of the webbing A through the webbing winding assembly 1, a tape winding mechanism 2 that can cooperate with it is arranged above or below the webbing winding assembly 1. In this way, after the webbing A is formed into a disc shape, through the rotation and position switching of a tape winding mechanism 2, the winding and cutting functions of the tape B can be realized. The overall structure is simple and compact, and the disassembly and assembly are also convenient, which can effectively save the overall occupied space of the disking machine and improve the space utilization rate.
[0064] The descriptions of the above-mentioned specification and embodiments are used to explain the protection scope of the present utility model, but do not constitute a limitation to the protection scope of the present utility model. Modifications, equivalent replacements or other improvements to the embodiments of the present utility model or some of its technical features obtained by those of ordinary skill in the art through logical analysis, reasoning or limited experiments in combination with common general knowledge, ordinary technical knowledge in this field and / or the prior art under the inspiration of the present utility model or the above-mentioned embodiments shall all be included within the protection scope of the present utility model.
Claims
1. A webbing winding machine, characterized in that: It includes a webbing winding assembly, a cutting mechanism, a working plate, and a tape winding mechanism rotatably disposed on the working plate; A webbing winding assembly, comprising a material receiving shaft for winding the webbing into a disc shape, the material receiving shaft being located below or above the tape winding mechanism, so that the webbing wound into a disc shape can be in contact with the tape winding mechanism for winding; A cutting mechanism, which is used to cut off the feed end of the webbing; A tape winding mechanism is used to wind the tape around the outer circumference of a disc-shaped webbing and to cut off the feeding end of the wound tape; the tape winding mechanism rotates on a working plate to have a first position and a second position; in the first position, the material receiving shaft drives the disc-shaped webbing to cooperate with the pressure wheel assembly in the tape winding mechanism to carry out tape winding; in the second position, the cutting component in the tape winding mechanism cuts off the feeding end of the tape.
2. The webbing coiling machine according to claim 1, wherein: The tape winding mechanism includes a base plate and a cutting component, a pressure wheel assembly and a rubber wheel for placing a rubber ring arranged on the base plate; the base plate can rotate on the working plate, driving the cutting component, the pressure wheel assembly and the rubber wheel to switch between the first position and the second position at the same time.
3. The webbing coiling machine according to claim 2, characterized in that: The pressure wheel assembly includes a first pressure wheel rotatably arranged on a bottom plate, and the tape on the rubber ring is placed on the outer peripheral surface of the first pressure wheel; the first pressure wheel is used to contact and abut against the disc-shaped webbing, and cooperate with the rotation of the disc-shaped webbing to wrap the tape on its outer peripheral surface around the outer periphery of the disc-shaped webbing.
4. The tape winding machine according to claim 3, wherein: The bottom plate is provided with a rotating shaft passing through the working plate, the rotating shaft is connected to the first driving member and is driven and controlled to rotate by the first driving member; the working plate is provided with an adjustment slot, the rotating shaft passes through the adjustment slot and can slide in the adjustment slot to adjust the horizontal height of the first pressure wheel.
5. The tape coiling machine according to claim 4, wherein: It also includes a clamping plate that is arranged on the back side of the working plate and connected to the rotating shaft, and the clamping plate is used to limit the rotating shaft to a certain horizontal height.
6. The tape coiling machine according to claim 3, wherein: When the bottom plate is rotated and switched from the first position to the second position, the rubber bearing wheel drives the tape on the rubber ring to be tightened and deformed against the outer peripheral surface of the first pressure wheel, so that the feeding end of the tightened tape can be cut off by the first pressure wheel cooperating with the cutting component.
7. The webbing coiling machine according to claim 3, characterized in that: The pressure wheel assembly also includes a second pressure wheel rotatably arranged on the base plate. The second pressure wheel and the first pressure wheel are arranged on both sides of the base plate opposite to each other and a spacing space is formed between the two. When the base plate is in the second position, the second pressure wheel presses the tape tightly against the outer periphery of the disc-shaped webbing.
8. A webbing winding machine according to any one of claims 1 to 7, characterized in that: The cutting component is configured as a cutter with a cutting end being a blade or a saw blade with a cutting end being saw teeth, and the cutting end thereof extends away from the direction of the pressure wheel assembly.
9. A webbing winding machine according to any one of claims 1 to 7, characterized in that: The described webbing winding assembly further includes a second driving member for controlling the rotation of the material receiving shaft; the described webbing winding machine further includes a transmission mechanism carrying the second driving member and the material receiving shaft; the transmission mechanism is used to link the material receiving shaft to slide within the guiding groove on the working plate, drive it to stop at a position below or above the tape winding mechanism, and is used to drive the material receiving shaft to slide along the thickness direction of the working plate within the guiding groove, so that the disc-shaped webbing is clamped on the working plate and disconnected from the material receiving shaft.
10. A webbing winding machine according to claim 1, characterized in that: The described cutting mechanism includes a third driving member and a cutting knife provided at the webbing feeding end position, and the third driving member can control the operation of the cutting knife to cut off the webbing feeding end.