How to use the online winding and hot cutting automation equipment for chemical fiber medical tape
By designing the in-line winding and rejuvenating automation equipment for chemical fiber medical belts, the problem of inability to be linked to the winding mechanism and the webbing machine is solved, and the automated winding and rejuvenation of multiple medical belts is realized, which improves production efficiency and reduces the intensity of manual labor.
Patent Information
- Application Number
- CN202311081477.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-01-27
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2042-01-27
AI Technical Summary
The existing chemical fiber medical belt heat cutting machine has a winding mechanism that cannot be linked to the belt webbing machine, so it needs to be added into a roll process. The winding machine needs to be loaded and discharged manually, which is inefficient and cumbersome.
Design a chemical fiber medical belt online winding and hot-cut automation equipment, including a frame, winding mechanism, feeding device, discharge device and hot-cutting device, automatic control is realized through the PLC controller, the equipment is connected to the webbing machine, and multiple medical belts are wound at the same time and automatically feed, clamp, wrap and break materials to reduce manual intervention.
The automation of simultaneous winding of multiple medical belts has been achieved, which improves production efficiency, reduces unnecessary processes, reduces labor intensity, and improves overall efficiency.
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Figure CN117127301B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the field of medical dressing product production equipment, and in particular relates to an online winding and hot-cutting automatic equipment for chemical fiber medical tape and a use method thereof. Background Art
[0002] The existing chemical fiber medical tape hot cutting machine is to add a medical tape rolling machine after the weaving machine to roll the medical tape, and then transfer the sequence to the hot cutting process, and install the rolled medical tape on the hot cutting machine unloading rack for winding and hot cutting. The number of wound at a time is 8-10, and the clamping of the medical tape is unstable, and often fails to clamp or misses. After each winding, a person needs to quickly take out the receiving tray, put the material into the turnover box, and then put the receiving tray back in the receiving position to repeat the action. The efficiency is low and the operating speed is slow. Therefore, it is necessary to design a method for using chemical fiber medical tape online winding and hot cutting automation equipment to solve the above problems. Summary of the Invention
[0003] The technical problem to be solved by the present invention is to provide a method for using an online winding and hot cutting automated equipment for chemical fiber medical tapes. This solution solves the problem that the winding mechanism and the weaving machine in the existing technology cannot be linked, and a rolling process needs to be added. The winding machine needs manual loading and unloading and manual wire cutting, resulting in low overall efficiency and complicated processes. It has the characteristics of reducing unnecessary processes, improving work efficiency, and having a high degree of automation.
[0004] To realize the above design, the technical solution adopted by the present invention is: an automated equipment for online winding and hot cutting of chemical fiber medical tape, comprising a frame, a support plate connected to the upper part of the frame, and a medical tape slot on the surface of the support plate; a guide roller is connected to the inner wall of the frame above the support plate; a winding mechanism is connected to the side of the frame, and a clamp is connected to the end of the winding mechanism; a feeding device is connected to the bottom of the support plate, and the feeding device clamps the medical tape passing through the medical tape slot; a discharging device is connected to the surface of the frame below the clamp; the inner wall of the frame on one side of the winding mechanism is connected to the hot cutting device, and the inner wall of the frame on the other side of the winding mechanism is connected to a support rod, a rotating shaft is sleeved on the outer surface of the support rod, and a pressure plate is connected to the surface of the rotating shaft; the side surface of the rotating shaft is hinged to the adjusting cylinder through an ear seat, and the other end of the adjusting cylinder is hinged to the frame.
[0005] Furthermore, multiple groups of guide rollers may be provided.
[0006] Preferably, the winding mechanism includes a sliding base, the sliding base is slidably connected to a slide rail connected to one side of the frame, and one side of the sliding base cooperates with the driving mechanism to slide along the slide rail.
[0007] Furthermore, the driving mechanism is preferably a cylinder.
[0008] Preferably, a rotating member is provided on the upper surface of the sliding base, and the rotating member is rotatably connected between the support plates; one end of the rotating member is connected to the motor through a transmission mechanism, and the other end is connected to the chuck.
[0009] Furthermore, the transmission mechanism is preferably a pulley transmission mechanism.
[0010] Preferably, the chuck includes a fixed clamping plate, a sliding clamping plate and a width-adjusting clamping plate arranged in parallel, and the sliding clamping plate is arranged between the fixed clamping plate and the width-adjusting clamping plate; the sliding clamping plate and the width-adjusting clamping plate are slidably connected to the sliding rail on the end face of the rotating part through a sliding seat; one end of the sliding clamping plate is connected to the telescopic mechanism inside the rotating part.
[0011] Furthermore, the telescopic mechanism can use a telescopic motor connected to the inside of the rotating part, and the telescopic end of the telescopic motor is connected to one end of the sliding clamp, driving the sliding clamp to slide along the slide rail, thereby completing the clamping or releasing action.
[0012] Furthermore, the width-adjusting splint is locked in position by a fixing member such as a locking bolt, and the feed amount on the slide rail can be adjusted when necessary to achieve width adjustment when the medical tape is wound.
[0013] Preferably, the winding mechanism includes a butt joint connected to the other side of the frame; one end of the butt joint is rotatably connected to the telescopic mechanism, and the other end is plug-fitted with the clamp.
[0014] Furthermore, the telescopic mechanism is preferably a cylinder.
[0015] Preferably, the feeding device includes a feeding plate, a groove is provided on one side surface of the feeding plate, a clamping block is connected to the inner wall of the groove, and the clamping block is connected to the first cylinder connected to the other side surface of the feeding plate; a bottom plate is connected under the feeding plate, and the bottom plate is connected to the driving mechanism to drive the feeding device to move linearly in the vertical direction; a through material trough is provided on the surface of the feeding plate and the surface of the bottom plate for passing the medical belt.
[0016] Furthermore, the driving mechanism is preferably a cylinder, which can be connected to the upper support plate, and the feeding device is driven to move up and down by the cylinder.
[0017] Preferably, the discharging device includes a discharging track connected to the inner wall of the frame, and a plurality of discharging plates are arranged in the discharging track. The discharging plates cooperate with the driving mechanism to slide along the discharging track.
[0018] Furthermore, a cylinder-driven push plate is connected to the bottom of the frame and slides with the discharge track, which can be used to push the discharge plate on the discharge track to achieve feeding of the discharge plate.
[0019] Preferably, the discharging device includes a support plate connected to the inner wall of the frame, the upper surface of the support plate is connected to a carrier plate through a telescopic mechanism, and the carrier plate is located directly below the clamping head.
[0020] Furthermore, the telescopic mechanism is preferably a cylinder.
[0021] Preferably, the hot cutting device comprises a hot cutting head, which is connected to a telescopic mechanism on the frame.
[0022] Furthermore, the telescopic mechanism is preferably a cylinder.
[0023] Preferably, the entire device is connected to the weaving machine in an online manner, and a groove-shaped multi-channel storage and buffer device is provided between the weaving machine and the device. The multiple medical tapes led out of the weaving machine are separated by the multi-channel storage device, and after bypassing the tension roller, they are directly led to the medical tape slot through the guide roller, and then led to the feeding device, so that multiple medical tapes can be wound at the same time.
[0024] Preferably, the method for using the above-mentioned online winding and hot cutting automated equipment for chemical fiber medical tape comprises the following steps:
[0025] S1, the entire device is connected to the weaving machine, and the woven medical tapes are led out from the weaving machine, pass around the guide roller, and then pass through the medical tape slot, and then pass through the feed plate in the feeding device and the material slot opened on the bottom plate surface;
[0026] S2, the winding mechanism slides under the drive mechanism, so that the fixed clamping plate and the sliding clamping plate of the clamping head are in the clamping position, and then the telescopic mechanism inside the rotating part is activated to move the sliding clamping plate toward the side of the fixed clamping plate, thereby clamping the end of the medical tape exposed below the feeding device;
[0027] S3, after the chuck completes clamping, the docking head on the other side of the winding mechanism moves under the drive of the telescopic mechanism and docks with the chuck; then the clamping block of the feeding device extends under the drive of the first cylinder, loosening the clamping of the medical tape, and then the feeding device moves upward as a whole for a distance under the drive mechanism, leaving a hot cutting operation position;
[0028] In step S4, the motor drives the rotating part to rotate a certain number of times, and the medical tape of equal length is wound on the surface of the chuck. After the winding is completed, the sliding clamp is reset, and the carrier plate of the discharge device moves upward under the drive of the telescopic mechanism, lifting a discharge plate passing through the carrier plate surface, so that the upper surface of the discharge plate contacts and cooperates with the medical tape wound on the chuck surface. At the same time, the clamping block of the feeding device retracts under the drive of the first cylinder, clamping the medical tape in the groove to prevent the remaining medical tape from being fed excessively.
[0029] S5, the hot cutting head of the hot cutting device is extended forward under the drive of the telescopic mechanism and contacts the medical tape above the chuck to perform hot cutting. After the hot cutting is completed, the feeding device is driven by the driving mechanism to move upward as a whole for the second stage, leaving the pressure plate working position;
[0030] S6, the pressing plate rotates along the support rod under the drive of the regulating cylinder and presses the upper surface of the medical tape wrapped around the surface of the chuck, and then the winding mechanism resets, so that the chuck is disengaged from the center of the wound medical tape; then reset;
[0031] S7, the carrier plate of the discharge device is reset downward to the discharge track position under the drive of the telescopic mechanism, and the subsequent discharge plate feed pushes the discharge plate loaded with the wound medical tape to the feeding end; at this time, all the moving components of the equipment are reset, and the above process is repeated for the next winding.
[0032] Furthermore, the above electrical equipment is electrically connected to a PLC controller, and a plurality of proximity switches are provided along the travel of the moving parts, so that the equipment is automatically controlled through the PLC program and electrical components such as proximity switches.
[0033] The beneficial effects of the above-mentioned method of using the online winding and hot cutting automated equipment for chemical fiber medical tape are as follows:
[0034] 1. The feeding channel of this device is equipped with a multi-channel structure, which can be directly connected to the chemical fiber weaving machine. The medical tape is directly led into the feeding channel of this device, without the need for an additional winding and unwinding process in the middle, which greatly improves the working efficiency. In addition, it can meet the needs of winding multiple medical tapes at the same time, doubling the efficiency.
[0035] 2. This device is equipped with an automatic clamping winding mechanism and an automatic feeding device, and is linked to a hot cutting device. Through the process coordination between the equipment, it can effectively realize the integrated process of automatic feeding, clamping, winding, cutting and completing feeding, which greatly improves the working efficiency and reduces the labor intensity. BRIEF DESCRIPTION OF THE DRAWINGS
[0036] Figure 1 It is a left perspective schematic diagram of the present invention.
[0037] Figure 2 It is a right perspective schematic diagram of the present invention.
[0038] Figure 3 It is a side view of the present invention.
[0039] Figure 4 It is the front view of the present invention.
[0040] Figure 5 It is a top view of the present invention.
[0041] Figure 6 It is a structural schematic diagram of the feeding device in the present invention.
[0042] Figure 7 It is a structural schematic diagram of the pressure plate of the present invention.
[0043] Figure 8 It is a structural schematic diagram of the winding mechanism in the present invention.
[0044] Figure 9It is a schematic diagram of the present invention and the weaving machine in conjunction.
[0045] Figure 10 It is a rear perspective schematic diagram of the present invention.
[0046] The accompanying drawings are marked as follows: winding mechanism 1, support plate 11, medical tape slot 12, chuck 13, sliding base 14, rotating part 15, transmission mechanism 16, motor 17, docking head 18, feeding device 2, feeding plate 21, clamping block 22, bottom plate 23, first cylinder 24, discharging device 3, discharging track 31, discharging plate 32, carrier plate 33, fixed splint 41, sliding splint 42, width adjustment splint 43, hot cutting device 5, hot cutting head 51, support rod 61, rotating shaft 62, pressing plate 63, adjusting cylinder 64, second cylinder 71, third cylinder 72, fourth cylinder 73, fifth cylinder 74, sixth cylinder 75, push plate 76, ribbon loom 8, multi-channel storage buffer device 9, tension roller 91. DETAILED DESCRIPTION
[0047] Example 1:
[0048] like Figures 1 to 8 In the invention, a chemical fiber medical tape online winding and hot cutting automation equipment includes a frame, a support plate 11 is connected to the upper part of the frame, and a medical tape slot 12 is opened on the surface of the support plate 11; the inner wall of the frame above the support plate 11 is connected to a guide roller; the side of the frame is connected to a winding mechanism 1, and the end of the winding mechanism 1 is connected to a clamp 13; the bottom of the support plate 11 is connected to a feeding device 2, which clamps the medical tape passing through the medical tape slot 12; the surface of the frame below the clamp 13 is connected to a discharging device 3; the inner wall of the frame on one side of the winding mechanism 1 is connected to a hot cutting device 5, and the inner wall of the frame on the other side of the winding mechanism 1 is connected to a support rod 61, the outer surface of the support rod 61 is provided with a rotating shaft 62, and the surface of the rotating shaft 62 is connected to a pressing plate 63; the side surface of the rotating shaft 62 is hinged to the adjusting cylinder 64 through an ear seat, and the other end of the adjusting cylinder 64 is hinged to the frame.
[0049] Furthermore, multiple groups of guide rollers may be provided.
[0050] Preferably, the winding mechanism 1 includes a sliding base 14, the sliding base 14 is slidably connected to a slide rail connected to one side of the frame, and one side of the sliding base 14 cooperates with the driving mechanism to slide along the slide rail.
[0051] Furthermore, the driving mechanism is preferably a cylinder.
[0052] Preferably, a rotating member 15 is provided on the upper surface of the sliding base 14 , and the rotating member 15 is rotatably connected between the support plates; one end of the rotating member 15 is connected to the motor 17 through the transmission mechanism 16 , and the other end is connected to the clamp 13 .
[0053] Furthermore, the transmission mechanism 16 is preferably a pulley transmission mechanism 16 .
[0054] Preferably, the chuck 13 includes a fixed clamping plate 41, a sliding clamping plate 42 and a width-adjusting clamping plate 43 arranged in parallel, and the sliding clamping plate 42 is arranged between the fixed clamping plate 41 and the width-adjusting clamping plate 43; the sliding clamping plate 42 and the width-adjusting clamping plate 43 are slidingly connected to the sliding rail on the end face of the rotating member 15 through a sliding seat; one end of the sliding clamping plate 42 is connected to the telescopic mechanism inside the rotating member 15.
[0055] Furthermore, the telescopic mechanism can optionally use a telescopic motor 17 connected to the inside of the rotating member 15, and the telescopic end of the telescopic motor 17 is connected to one end of the sliding clamp 42, driving the sliding clamp 42 to slide along the slide rail, thereby completing the clamping or releasing action.
[0056] Furthermore, the width-adjusting splint 43 is locked in position by a fixing member such as a locking bolt, and the feed amount on the slide rail can be adjusted when necessary to achieve width adjustment when the medical tape is wound.
[0057] Preferably, the winding mechanism 1 includes a docking joint 18 connected to the other side of the frame; one end of the docking joint 18 is rotatably connected to the second cylinder 71 , and the other end is plug-fitted with the clamp 13 .
[0058] Preferably, the feeding device 2 includes a feeding plate 21, a groove is provided on one side surface of the feeding plate 21, a clamping block 22 is connected to the inner wall of the groove, and the clamping block 22 is connected to the first cylinder 24 connected to the other side surface of the feeding plate 21; a bottom plate 23 is connected to the bottom of the feeding plate 21, and the bottom plate 23 is connected to the third cylinder 72, driving the feeding device 2 to move linearly in the vertical direction; a through material trough is provided on the surface of the feeding plate 21 and the surface of the bottom plate 23 for passing the medical belt.
[0059] Furthermore, the third cylinder 72 is connected to the upper support plate 11 to drive the feeding device 2 to move up and down.
[0060] Preferably, the discharge device 3 includes a discharge track 31 connected to the inner wall of the frame. A plurality of discharge plates 32 are provided in the discharge track 31. The discharge plates 32 cooperate with the driving mechanism to slide along the discharge track 31.
[0061] Furthermore, a push plate 76 driven by a sixth cylinder 75 is connected to the bottom of the frame and slides with the discharge track 31 , and can be used to push the discharge plate 32 on the discharge track 31 to achieve feeding of the discharge plate 32 .
[0062] Preferably, the discharging device 3 includes a support plate connected to the inner wall of the frame, and the upper surface of the support plate is connected to the carrier plate 33 through the fourth cylinder 73, and the carrier plate 33 is located directly below the chuck 13.
[0063] Preferably, the hot cutting device 5 includes a hot cutting head 51, and the hot cutting head 51 is connected to the fifth cylinder 74 on the frame.
[0064] Furthermore, the above electrical equipment is electrically connected to a PLC controller, and a plurality of proximity switches are provided along the travel of the moving parts, so that the equipment is automatically controlled through the PLC program and electrical components such as proximity switches.
[0065] Example 2:
[0066] like Figure 9 As shown, the entire device is connected to the loom 8, and a groove-shaped multi-channel storage and buffer device 9 is provided between the loom 8 and the device. The surface of the multi-channel storage and buffer device 9 is separated into multiple groove-shaped channels by partitions. The 12 channels and 24 medical belts led out of the loom 8 are separated by the multi-channel storage device. After passing through the tension roller 91, the multiple medical belts are connected to the device, pass through the guide roller, and then are led to the medical belt slot 12. After passing through the medical belt slot 12 downward, they are led to the feeding device 2 for clamping, so that multiple medical belts can be wound at the same time.
[0067] Example 3:
[0068] The method for using the above-mentioned online winding and hot cutting automated equipment for chemical fiber medical tape comprises the following steps:
[0069] S1, the entire device is connected to the weaving machine 8, and the woven medical tapes are led out from the weaving machine 8, pass around the guide roller, and then pass through the medical tape slot 12, and then pass through the feed plate 21 in the feeding device 2 and the material slot opened on the surface of the bottom plate 23;
[0070] S2, the winding mechanism 1 slides under the drive mechanism, so that the fixed clamping plate 41 and the sliding clamping plate 42 of the clamping head 13 are in the clamping position, and then the telescopic mechanism inside the rotating member 15 is activated, so that the sliding clamping plate 42 moves toward the side of the fixed clamping plate 41, clamping the end of the medical tape exposed below the feeding device 2;
[0071] S3, after the chuck 13 completes the clamping, the docking head 18 on the other side of the winding mechanism 1 moves under the drive of the telescopic mechanism and docks with the chuck 13; then the clamping block 22 of the feeding device 2 extends under the drive of the first cylinder, loosening the clamping of the medical tape, and then the feeding device 2 moves upward as a whole for a distance under the drive mechanism, leaving a hot cutting operation position;
[0072] S4, the motor 17 drives the rotating member 15 to rotate a certain number of circles, and the medical tape of equal length is wound on the surface of the chuck 13; after the winding is completed, the sliding clamping plate 42 is reset, and the carrier plate 33 of the discharge device 3 moves upward under the drive of the telescopic mechanism, and a discharge plate 32 passing through the surface of the carrier plate 33 is lifted up, so that the upper surface of the discharge plate 32 contacts and cooperates with the medical tape wound on the surface of the chuck 13; at the same time, the clamping block 22 of the feeding device 2 retracts under the drive of the first cylinder, clamping the medical tape in the groove to prevent the remaining medical tape from being fed excessively;
[0073] S5, the hot cutting head 51 of the hot cutting device 5 is extended forward under the drive of the telescopic mechanism and contacts the medical tape above the chuck 13 to perform hot cutting. After the hot cutting is completed, the feeding device 2 is driven by the driving mechanism to move upward as a whole for the second stage, leaving the pressing plate 63 in the working position;
[0074] S6, the pressing plate 63, driven by the regulating cylinder 64, rotates along the support rod 61 and presses tightly against the upper surface of the medical tape wrapped around the surface of the chuck 13, and then the winding mechanism 1 is reset, so that the chuck 13 is released from the center of the wound medical tape; and then reset;
[0075] S7, the carrier plate 33 of the discharging device 3 is reset downward to the position of the discharging track 31 under the drive of the telescopic mechanism, and the subsequent discharging plate 32 is fed to push the discharging plate 32 loaded with the wound medical tape to the feeding end; at this time, all the moving components of the equipment are reset, and the above process is repeated for the next winding.
[0076] The above embodiments are merely preferred technical solutions of the present invention and should not be construed as limiting the present invention. The embodiments and features in the embodiments of this application may be arbitrarily combined with each other unless they conflict. The scope of protection of the present invention shall be the technical solutions described in the claims, including equivalent alternatives to the technical features of the technical solutions described in the claims. Equivalent alternatives and improvements within this scope are also within the scope of protection of the present invention.
Claims
1. The method for using the online winding and hot cutting automated equipment for chemical fiber medical tapes is characterized by: The following steps are involved: S1, the entire device is connected to the weaving machine, and the woven multiple medical tapes are drawn out from the weaving machine, passed around the guide roller, and then passed through the medical tape slot (12), and then passed through the feed plate (21) in the feeding device (2) and the material slot opened on the surface of the bottom plate (23); S2, the winding mechanism (1) slides under the drive mechanism, so that the fixed clamping plate (41) and the sliding clamping plate (42) of the clamping head (13) are located in the clamping position, and then the telescopic mechanism inside the rotating member (15) is started to move the sliding clamping plate (42) toward the side of the fixed clamping plate (41), thereby clamping the end of the medical tape exposed below the feeding device (2); S3, after the clamping head (13) completes the clamping, the docking head (18) on the other side of the winding mechanism (1) moves under the drive of the telescopic mechanism and docks with the clamping head (13); then the clamping block (22) of the feeding device (2) extends under the drive of the first cylinder (24) to release the clamping of the medical tape, and then the feeding device (2) moves upward as a whole for a distance under the drive of the driving mechanism, leaving a hot working position; S4, the motor (17) drives the rotating member (15) to rotate a certain number of times, and the medical tape of equal length is wound on the surface of the chuck (13); after the winding is completed, the sliding clamp (42) is reset, and the carrier plate (33) of the discharge device (3) moves upward under the drive of the telescopic mechanism, and a discharge plate (32) passing through the surface of the carrier plate (33) is lifted up, so that the upper surface of the discharge plate (32) contacts and cooperates with the medical tape wound on the surface of the chuck (13); at the same time, the clamping block (22) of the feeding device (2) retracts under the drive of the first cylinder (24), clamps the medical tape in the groove, and avoids the remaining medical tape from being fed excessively; S5, the hot cutting head (51) of the hot cutting device (5) is extended forward under the drive of the telescopic mechanism and contacts the medical tape above the clamp (13) to perform hot cutting. After the hot cutting is completed, the feeding device (2) is driven by the driving mechanism to move upward as a whole for the second stage, leaving the pressure plate operating position; S6, the pressing plate (63) is driven by the regulating cylinder to rotate along the support rod (61) and press the upper surface of the medical tape wrapped around the surface of the clamp (13), and then the winding mechanism (1) is reset to make the clamp (13) escape from the center of the wound medical tape; and then reset; S7, the carrier plate (33) of the discharge device (3) is reset downward to the position of the discharge track (31) under the drive of the telescopic mechanism, and the subsequent discharge plate (32) is fed and the discharge plate (32) loaded with the wound medical tape is pushed out to the feeding end; at this time, all the moving components of the equipment are reset, and the above process is repeated for the next winding.
2. The method for using the online winding and hot cutting automated equipment for chemical fiber medical tape according to claim 1, characterized in that: The method is based on an online winding and hot cutting automation device for chemical fiber medical tape. The online winding and hot cutting automation device for chemical fiber medical tape comprises a frame, wherein the upper portion of the frame is connected to a medical tape slot (12); a winding mechanism (1) is connected to the side of the frame, and the end of the winding mechanism (1) is connected to a clamp (13); a feeding device (2) is connected below the medical tape slot (12), and the feeding device (2) clamps the medical tape passing through the medical tape slot (12); a discharging device (3) is connected to the inner wall of the frame below the clamp (13); a hot cutting device (5) is connected to the inner wall of the frame on one side of the winding mechanism (1), and a support rod (61) is connected to the inner wall of the frame on the other side of the winding mechanism (1); a rotating shaft (62) is sleeved on the outer surface of the support rod (61), and a pressing plate (63) is connected to the surface of the rotating shaft (62); 2) The side surface is hinged to the regulating cylinder (64) through an ear seat, and the other end of the regulating cylinder (64) is hinged to the frame; the winding mechanism (1) includes a sliding base (14), the sliding base (14) is slidably connected to a slide rail connected to one side of the frame, and one side of the sliding base (14) cooperates with the driving mechanism to slide along the slide rail; a rotating member (15) is provided on the upper surface of the sliding base (14), and the rotating member (15) is rotatably connected between the support plates; one end of the rotating member (15) is connected to the motor (17) through the transmission mechanism (16), and the other end is connected to the clamp (13); the discharging device (3) includes a discharging track (31) connected to the inner wall of the frame, and a plurality of discharging plates (32) are provided in the discharging track (31), and the discharging plates (32) slide along the discharging track (31).
3. The method for using the online winding and hot cutting automated equipment for chemical fiber medical tape according to claim 2, characterized in that: The clamping head (13) comprises a fixed clamping plate (41), a sliding clamping plate (42) and a width-adjusting clamping plate (43) arranged in parallel. The sliding clamping plate (42) and the width-adjusting clamping plate (43) are slidably connected to a slide rail on the end surface of the rotating member (15) through a sliding seat; one end of the sliding clamping plate (42) is connected to a telescopic mechanism inside the rotating member (15).
4. The method for using the online winding and hot cutting automated equipment for chemical fiber medical tape according to claim 2, characterized in that: The winding mechanism (1) comprises a butt joint (18) connected to the other side of the frame; one end of the butt joint (18) is rotatably connected to the telescopic mechanism, and the other end is plug-fitted to the clamp (13).
5. The method for using the online winding and hot cutting automated equipment for chemical fiber medical tape according to claim 2, characterized in that: The feeding device (2) comprises a feeding plate (21), a groove is provided on one side surface of the feeding plate (21), a clamping block (22) is connected to the inner wall of the groove, and the clamping block (22) is connected to the first cylinder (24) connected to the other side surface of the feeding plate (21); a bottom plate (23) is connected below the feeding plate (21), and the bottom plate (23) is connected to the driving mechanism to drive the feeding device (2) to perform linear motion in the vertical direction; a through trough is provided on the surface of the feeding plate (21) and the surface of the bottom plate (23) for passing the medical belt.
6. The method for using the online winding and hot cutting automated equipment for chemical fiber medical tape according to claim 2, characterized in that: The discharging device (3) comprises a support plate connected to the inner wall of the frame, the upper surface of the support plate is connected to a carrier plate (33) via a telescopic mechanism, and the carrier plate (33) is located directly below the clamping head (13).
7. The method for using the online winding and hot cutting automated equipment for chemical fiber medical tape according to claim 2, characterized in that: The hot cutting device (5) comprises a hot cutting blade (51), and the hot cutting blade (51) is connected to a telescopic mechanism on the frame.
Citation Information
Patent Citations
Automatic tape winding machine and winding method thereof
CN103287930A
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