High-quality automatic winding device for amorphous strips
By designing a floating tensioning mechanism and a correction guide frame, the problems of tension control and offset during the winding process of amorphous ribbon were solved, achieving a high-quality automatic winding effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHANGJIAGANG RUNDA TECH AUTOMATION CO LTD
- Filing Date
- 2025-05-12
- Publication Date
- 2026-04-28
AI Technical Summary
Existing winding devices cannot automatically control tension, which makes amorphous ribbons prone to breakage or damage during winding, and easily leads to wrinkles and damage due to misalignment.
The system employs a floating tensioning mechanism to automatically adjust the tension, a guide frame for fine-tuning, two unwinding mechanisms to improve unwinding efficiency, and a servo screw slide to drive the winding mechanism to wind the amorphous strip at a certain angle. The system is also combined with guide rollers and an air shaft for leveling and adjustment.
Automatic tension control of amorphous ribbon during the winding process was achieved, preventing breakage and excessive compression, and improving the uniformity and quality of winding.
Smart Images

Figure CN224172147U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of amorphous ribbon processing equipment, and in particular to a high-quality automatic winding device for amorphous ribbon. Background Technology
[0002] Amorphous ribbon is a new type of energy-saving material made by rapidly cooling molten metal at extremely high speeds. It possesses characteristics such as high saturation magnetic induction, high magnetic permeability, low loss, high resistivity, and high temperature stability. Due to the relatively high brittleness of amorphous ribbon, tension control is necessary during winding. However, current winding devices on the market generally have pre-set tension, which cannot automatically control the tension according to actual conditions during winding, making breakage prone to occur. Furthermore, during winding, stacking the ribbons together can increase stress due to the increased roll diameter, leading to excessive compression and damage. Misalignment during winding can also cause poor winding, resulting in wrinkles and damage. Utility Model Content
[0003] The purpose of this invention is to provide a high-quality automatic winding device for amorphous ribbon that can automatically control tension and reduce stress by winding at a certain angle.
[0004] To achieve the above objectives, the technical solution adopted by this utility model is: a high-quality automatic winding device for amorphous ribbon, comprising: a frame, on which, from left to right, are arranged an unwinding mechanism, a floating tensioning mechanism, a correction guide frame, and a winding mechanism; a fixed frame is provided at the left end of the frame; two parallel unwinding mechanisms are arranged in the fixed frame; two first correction probes are provided on the fixed frame, and the two first correction probes respectively cooperate with the two unwinding mechanisms; the unwinding mechanism includes: a track seat connected to the fixed frame; an unwinding frame is slidably arranged on the track seat; and a servo electric push rod is provided on the fixed frame. A servo electric push rod is connected to the unwinding frame. A first rotating shaft is rotatably mounted on the unwinding frame, and a first air shaft is coaxially mounted on the first rotating shaft. A first servo motor is mounted on the unwinding frame, and the first servo motor is connected to the first rotating shaft via a belt drive. Several first guide rollers are arranged between the floating tensioning mechanism and the fixed frame. The floating tensioning mechanism includes: a floating roller, a fixed base, and a fine-tuning cylinder. Parallel guide rods and linear guide rails are arranged at the front and rear ends of the fixed base. Linear bearings are slidably mounted on the guide rods, and linear bearing sliders are slidably engaged on the linear guide rails. Between the linear bearings and the linear bearing sliders... A sliding block is provided, and a fine-tuning cylinder is fixed on the fixed block and connected to the sliding block. The fine-tuning cylinder is connected to a proportional valve. A forward-extending connecting shaft is fixed on the sliding block, and a floating roller is rotatably mounted on the connecting shaft. Several second guide rollers are provided between the floating tensioning mechanism and the correction guide frame. The correction guide frame includes: a correction body, a reciprocating motor vertically mounted in the correction body, a drive shaft connected to the reciprocating motor, a correction seat eccentrically connected to the drive shaft, correction rollers rotatably mounted at the left and right ends of the correction seat, and two guide slot plates and a rotating plate equally divided around the eccentric connection point on the correction body. The correction seat is rotatably connected to the rotating plate. Two guide wheels are connected to the correction seat and are respectively rolled and locked in two guide slot plates. A second correction probe is set on the frame below the correction roller on the right side. Several third guide rollers and adjusting rollers are set between the correction guide frame and the winding mechanism. The winding mechanism includes: a servo screw slide connected to the frame, a winding frame set on the servo screw slide, a second rotating shaft rotatably set on the winding frame, a second air shaft set on the second rotating shaft, and a second servo motor set on the winding frame. The second servo motor and the second rotating shaft are connected by belt drive.
[0005] Furthermore, in the aforementioned high-quality automatic winding device for amorphous ribbon, the adjusting roller is rotatably mounted on the adjusting plate, and four vertical elongated holes are provided around the adjusting plate. Connecting bolts are threaded through the four elongated holes and connected to the frame.
[0006] Furthermore, in the aforementioned high-quality automatic winding device for amorphous ribbon, the first guide roller, the second guide roller, and the third guide roller are all fixed to the frame by cover plates. Four first adjusting screw holes are evenly distributed around the circumference of each cover plate. Four first adjusting screw holes are also evenly distributed around the circumference of the adjusting plate connected to the adjusting roller. A first adjusting screw is threaded into the first adjusting screw hole and abuts against the frame.
[0007] Furthermore, in the aforementioned high-quality automatic winding device for amorphous ribbon, two first guide rollers are arranged between the floating tensioning mechanism and the fixed frame. The first guide roller on the right is located above and to the left of the floating tensioning mechanism, and the first guide roller on the left is located below and to the left of the first guide roller on the right. Two branching guide rollers are vertically arranged on the fixed frame. The top conveying surface of the upper branching guide roller is flush with the bottom conveying surface of the left first guide roller. A tensioning guide roller is arranged on the fixed frame. The branching guide roller and the tensioning guide roller are also fixed on the fixed frame by a cover plate. Four first adjusting set screw holes are evenly distributed around the circumference of the cover plate. A first set screw is threaded into the first adjusting set screw hole and abuts against the fixed frame.
[0008] Furthermore, in the aforementioned high-quality automatic winding device for amorphous ribbon, three second guide rollers are arranged between the floating tensioning mechanism and the web-correcting guide frame. The two second guide rollers on the left are located above and below the floating tensioning mechanism, respectively. The second guide roller on the right is located below the web-correcting roller on the left side of the web-correcting guide frame. The right conveying surface of the right second guide roller is aligned vertically with the left conveying surface of the web-correcting roller on the left side. The third guide roller is located below the web-correcting roller on the right side of the web-correcting guide frame. The left conveying surface of the third guide roller is aligned vertically with the conveying surface of the web-correcting roller on the right side.
[0009] Furthermore, in the aforementioned high-quality automatic winding device for amorphous ribbon, the connection structure between the connecting shaft and the slide is as follows: a straightening plate is vertically arranged on the slide, a mounting plate is connected to the straightening plate by bolts, a first optical axis seat is arranged on the mounting plate, the connecting shaft is locked in the first optical axis seat, and four second adjusting set screw holes are evenly distributed around the center of the first optical axis seat on the mounting plate. Second set screws are threaded into the second adjusting set screw holes and abut against the straightening plate.
[0010] Furthermore, in the aforementioned high-quality automatic winding device for amorphous ribbon, a rangefinder capable of measuring the distance to the slide is provided at the left end of the fixed base.
[0011] Furthermore, in the aforementioned high-quality automatic winding device for amorphous ribbon, a connecting plate is provided on the unwinding frame, a second optical axis seat is provided on the connecting plate, an installation shaft is clamped in the second optical axis seat, an auxiliary roller is rotatably mounted on the installation shaft, four third set screw holes are evenly distributed around the circumference of the second optical axis seat, and a third set screw is threaded into the third set screw hole and abuts against the connecting plate, and the auxiliary rollers in the two unwinding frames correspond to the two first correction probes respectively.
[0012] Furthermore, in the aforementioned high-quality automatic winding device for amorphous ribbon, a set screw plate is provided at both the front and rear ends of the left and right side walls of the unwinding frame. Two fourth set screw holes are provided on the set screw plate, and a fourth set screw is threaded into the fourth set screw hole. The fourth set screw abuts against the track seat.
[0013] The advantages of this invention are as follows: The floating tensioning mechanism automatically adjusts the tension of the amorphous strip during conveying, preventing it from being too loose and affecting winding, or too tight and causing breakage; the guide frame allows for fine-tuning of the amorphous strip during operation, thus correcting its deviation; the two unwinding mechanisms allow for feeding material to the other unwinding mechanism during the unwinding process of one mechanism, improving unwinding efficiency; during winding, the winding frame can reciprocate short distances under the drive of a servo screw slide, allowing the amorphous strip to be wound at a certain angle, improving the uniformity of winding and preventing damage due to excessive compression; when assembling the first guide roller, second guide roller, third guide roller, adjusting roller, first air shaft, and second air shaft, if the guide rollers, air shafts, or adjusting rollers are uneven due to assembly errors, they can be leveled by turning the corresponding set screws. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the structure of the high-quality automatic winding device for amorphous ribbon described in this utility model.
[0015] Figure 2 yes Figure 1 A schematic diagram showing the connection between the unwinding mechanism and the fixed frame.
[0016] Figure 3 yes Figure 2 A top-view structural diagram of the unwinding mechanism.
[0017] Figure 4 yes Figure 1 A schematic diagram of the unwinding mechanism from another direction.
[0018] Figure 5 yes Figure 1 A schematic diagram of the floating tensioning mechanism.
[0019] Figure 6 yes Figure 5A schematic diagram of the structure from a top-down view.
[0020] Figure 7 yes Figure 1 A schematic diagram of the structure of the center correction guide frame.
[0021] Figure 8 yes Figure 7 A schematic diagram of the structure from a top-down view.
[0022] Figure 9 yes Figure 1 A schematic diagram of the winding mechanism. Detailed Implementation
[0023] The technical solution of this utility model will be further described below with reference to the accompanying drawings and preferred embodiments.
[0024] like Figures 1-9 As shown, the high-quality automatic rewinding device for amorphous ribbon of this utility model includes: a frame 1, on which an unwinding mechanism 2, a floating tensioning mechanism 3, a correction guide frame 4, and a rewinding mechanism 5 are arranged sequentially from left to right. Amorphous ribbon rolls are placed on both unwinding mechanisms 2. The amorphous ribbon on one of the unwinding mechanisms 2 is then rotated to the floating tensioning mechanism 3 for tension adjustment, then wound onto the correction guide frame 4 for fine-tuning correction, and finally wound onto the rewinding mechanism 5 for rewinding. When the amorphous ribbon in the unwinding mechanism 2 is completely released, the amorphous ribbon on the other unwinding mechanism 2 is continued to be unwound, and the new amorphous ribbon roll is reinstalled on the unloaded rewinding mechanism 5.
[0025] A fixed frame 11 is provided at the left end of the frame 1. Two parallel unwinding mechanisms 2 are installed within the fixed frame 11. Each unwinding mechanism 2 includes: a track seat 21 connected to the fixed frame 11; an unwinding frame 22 mounted on a slide table of the track seat 21; a servo electric push rod 23 mounted on the fixed frame 11 and connected to the unwinding frame 22; a first rotating shaft 24 rotatably mounted on the unwinding frame 22; a first air shaft 25 coaxially mounted on the first rotating shaft 24; and a first servo motor 26 mounted on the unwinding frame 22. The first servo motor 26 is connected to the first rotating shaft 24 via a belt drive. The servo electric push rod 23 can push the unwinding frame 22 to move back and forth within the fixed frame 11, thereby switching the unwinding mechanism 2. Set screw plates 221 are provided at both the front and rear ends of the left and right side walls of the unwinding frame 22. Two fourth... The fourth set screw hole is threaded with a fourth set screw 222, which abuts against the slide seat of the track seat 21. When the first rotating shaft 24 and the first air shaft 25 cannot maintain a horizontal state due to assembly errors, the angle of the unwinding frame 22 is adjusted by turning the corresponding fourth set screw 222 until the first air shaft 25 is horizontal. After the first air shaft 25 is horizontal, the unwinding frame 22 is fixed on the slide seat of the track seat 21. A connecting plate 26 is provided on the unwinding frame 22, and a second optical shaft seat 27 is provided on the connecting plate 26. An installation shaft 28 is clamped in the second optical shaft seat 27, and an auxiliary roller 29 is rotatably mounted on the installation shaft 28. Four third set screw holes are evenly distributed around the circumference of the second optical shaft seat 27, and a third set screw is threaded in the third set screw hole. The third set screw abuts against the connecting plate 26. The auxiliary roller 29 can be leveled by turning the third set screw.
[0026] Two first correction probes 111 are installed on the fixed frame 11, and the two first correction probes 111 are respectively matched with the auxiliary rollers 29 in the two unwinding mechanisms 2. Two first guide rollers 12 are installed between the floating tensioning mechanism 3 and the fixed frame 11. The first guide roller 12 on the right is located above and to the left of the floating tensioning mechanism 3, and the first guide roller 12 on the left is located below and to the left of the first guide roller 12 on the right. Two dividing guide rollers 112 are vertically installed on the fixed frame 11. The dividing guide roller located on the upper part is... The top conveying surface of 112 is flush with the bottom conveying surface of the first guide roller 12 on the left. A tensioning guide roller 113 is provided on the fixed frame 11. The dividing guide roller 112 and the tensioning guide roller 113 are also fixed on the fixed frame 11 by a cover plate. Four first adjusting screw holes are evenly distributed around the circumference of the cover plate. A first adjusting screw is threaded into the first adjusting screw hole. The first adjusting screw abuts against the fixed frame 11. By turning the corresponding first adjusting screw, the tensioning guide roller 113 or the dividing guide roller 112 can be leveled.
[0027] When the amorphous strip roll is placed in the unwinding mechanism 2, the amorphous strip is first wound around the corresponding auxiliary roller 29, then passes through the dividing guide roller 112 and is wound around the two first guide rollers 12, and finally wound around the floating tensioning mechanism 3 for tension adjustment. The first correction probe 111 monitors whether the amorphous strip on the corresponding auxiliary roller 29 is deviated. If a deviation occurs, the servo electric push rod 23 will drive the unwinding frame 22 to move back and forth to correct the deviation. When the unwinding mechanism 2 on the left is unwinding, since it is far from the dividing guide roller 112, the amorphous strip needs to be wound around the tensioning guide roller 113 for tension to prevent loosening, then wound around the upper dividing guide roller 112 and then sequentially wound around the two first guide rollers 12. When the unwinding mechanism 2 on the right is unwinding, since it is close to the dividing guide roller 112, the amorphous strip is directly wound around the lower dividing guide roller 112 and then sequentially wound around the two first guide rollers 12.
[0028] The floating tensioning mechanism 3 includes: a floating roller 31, a fixed base 32, and a fine-tuning cylinder 33. The fixed base 32 is fixedly mounted on the frame 1. Parallel guide rods 34 and linear guide rails 35 are provided at the front and rear ends of the fixed base 32. Linear bearings are slidably mounted on the guide rods 34, and linear bearing sliders are slidably mounted on the linear guide rails 35. A slide block 36 is provided between the linear bearings and the linear bearing sliders. The fine-tuning cylinder 33 is fixed on the fixed base 32 and connected to the slide block 36. The fine-tuning cylinder 33 is connected to a proportional valve 331. A distance measuring device capable of measuring the distance of the slide block 36 is provided at the left end of the fixed base 32. Instrument 38 has a straightening plate 361 vertically mounted on a slide 36. A mounting plate 362 is bolted to the straightening plate 361. A first optical axis seat 363 is mounted on the mounting plate 362. A connecting shaft 364 is clamped in the first optical axis seat 363. The floating roller 31 is rotatably mounted on the connecting shaft 364. Four second adjusting screw holes are evenly distributed around the center of the first optical axis seat 363 on the mounting plate 362. A second adjusting screw 37 is threaded into the second adjusting screw holes. The second adjusting screw 37 abuts against the straightening plate 361. The floating roller 31 can be leveled by turning the second adjusting screw 37.
[0029] Three second guide rollers 13 are provided between the floating tensioning mechanism 3 and the correction guide frame 4. The two second guide rollers 13 on the left are located above and below the right of the floating tensioning mechanism 3, respectively. The second guide roller 13 on the right is located below the correction guide frame 4. The amorphous strip is wound from the first guide roller 12 located above the left of the floating tensioning mechanism 3 onto the second guide roller 13 located above the right of the floating tensioning mechanism 3, then wound to the lower left onto the floating roller 31, then wound to the lower right onto the second guide roller 13 located below the right of the floating tensioning mechanism 3, and then wound to the right onto the second guide roller 13 below the correction guide frame 4. During the conveying of amorphous ribbon, the movement stroke of the piston rod in the fine-tuning cylinder 33 can be controlled by controlling the opening of the proportional valve 331, thereby controlling the left and right positions of the slide 36. When the tension of the amorphous ribbon is insufficient, the proportional valve 331 drives the fine-tuning cylinder 33 to control the slide 36 and the floating roller 31 to move to the left to increase the tension of the amorphous ribbon. When the tension of the amorphous ribbon is too high, the proportional valve 331 drives the fine-tuning cylinder 33 to control the slide 36 and the floating roller 31 to move to the right to reduce the tension of the amorphous ribbon. During the adjustment of the tension of the amorphous ribbon, the distance of the slide 36 is monitored by the rangefinder 38 to control the movement stroke of the slide 36, preventing excessive movement that would cause the amorphous ribbon to be too tight or too loose.
[0030] The correction guide frame 4 includes: a correction body 41, which is fixed on the frame 1. A reciprocating motor 42 is vertically arranged in the correction body 41. A drive shaft 43 is connected to the reciprocating motor 42. A correction seat 44 is eccentrically connected to the drive shaft 43. Correction rollers 45 are rotatably arranged at the left and right ends of the correction seat 44. The left conveying surface of the left correction roller 45 is aligned vertically with the right conveying surface of the second guide roller 13 located on the right side. This ensures that the amorphous ribbon can be vertically upward from the second guide roller 13 on the right side. Entering the correction guide frame 4, two guide slot plates 46 and a rotating plate 47 are equally divided around the eccentric connection point between the drive shaft 43 and the correction seat 44 on the correction body 41. The correction seat 44 is rotatably connected to the rotating plate 47. Two guide wheels 48 are connected to the correction seat 44. The two guide wheels 48 are respectively rolled and locked in the two guide slot plates 46. A second correction probe 49 is set on the frame 1 below the correction roller 45 on the left side. The reciprocating motor 42 drives the drive shaft 43 to drive the correction seat 44 to swing.
[0031] A third guide roller 14 and an adjusting roller 15 are provided between the web guiding frame 4 and the winding mechanism 5. The third guide roller 14 is located below the right-side web guiding roller 45 in the web guiding frame 4. The left conveying surface of the third guide roller 14 is aligned vertically with the right-side conveying surface of the web guiding roller 45, so that the amorphous strip can be vertically wound downward from the web guiding frame 4 onto the third guide roller 14. The amorphous ribbon is vertically wound upwards from the second guide roller 13 on the right side in the correction guide frame 4, then vertically downwards on the third guide roller 14, then to the right on the adjusting roller 15, and finally to the upper right and into the winding mechanism 5. In this embodiment, the adjusting roller 15 is rotatably mounted on the adjusting plate 151. Four vertical elongated holes 152 are provided around the adjusting plate 151, and connecting bolts 153 are threaded through the four elongated holes 152. The connecting bolts 153 are threaded onto the frame 1. Loosening the connecting bolts 153 allows the adjusting roller 15 to be adjusted up and down. By adjusting the adjusting roller 15 up and down, the amorphous ribbon between the correction guide frame 4 and the winding mechanism 5 can maintain a good tension. Four first adjusting screw holes are evenly distributed around the circumference of the adjusting plate 151. A first adjusting screw 154 is threaded into the first adjusting screw hole. The first adjusting screw 154 abuts against the frame 1. The adjusting roller 15 can be leveled by turning the corresponding first adjusting screw 154.
[0032] In this embodiment, the first guide roller 12, the second guide roller 13, and the third guide roller 14 are all fixed to the frame 1 by a cover plate. Four first adjusting screw holes are also evenly distributed around the circumference of the cover plate. A first adjusting screw 154 is threaded into the first adjusting screw hole and abuts against the frame 1. When the first guide roller 12, the second guide roller 13, or the third guide roller 14 is uneven, it can be leveled by turning the first adjusting screw 154 on the corresponding cover plate.
[0033] The winding mechanism 5 includes: a servo screw slide 51 connected to the frame 1, a winding frame 52 on the servo screw slide 51, a second rotating shaft rotatably mounted on the winding frame 52, a second air shaft 53 mounted on the second rotating shaft, a second servo motor 54 mounted on the winding frame 52, and the second servo motor 54 connected to the second rotating shaft by a belt drive. After the I-shaped disc is installed on the second air shaft 53, the amorphous strip can be wound onto the I-shaped disc. During winding, the linear speed of the amorphous ribbon roll on the unwinding mechanism 2 is consistent with the linear speed of the amorphous ribbon roll on the winding mechanism 5. Therefore, it is necessary to control the speed of the second servo motor 54 and the first servo motor 26 according to the linear speed. During winding, in order to keep the amorphous ribbon tightly and uniformly wound on the I-shaped disc, it is necessary to wind the amorphous ribbon at a certain angle. Therefore, the servo screw slide 51 can drive the winding frame 52 to reciprocate back and forth for a short distance, so that the amorphous ribbon can be wound on the I-shaped disc at a certain angle.
[0034] Finally, it should be noted that the above embodiments are only used to illustrate the technical solution of this utility model and not to limit it. Although the utility model has been described in detail with reference to the above embodiments, those skilled in the art should understand that modifications or equivalent substitutions can still be made to the specific implementation of this utility model. Any modifications or equivalent substitutions that do not depart from the spirit and scope of this utility model should be covered within the protection scope of the claims of this utility model.
Claims
1. A high-quality automatic winding device for amorphous ribbon, comprising: The frame is characterized by the following: from left to right, an unwinding mechanism, a floating tensioning mechanism, a web guiding frame, and a winding mechanism are sequentially arranged on the frame; a fixed frame is provided at the left end of the frame; two parallel unwinding mechanisms are arranged in the fixed frame; two first web guiding probes are provided on the fixed frame, each corresponding to one of the two unwinding mechanisms; the unwinding mechanism includes: a track seat connected to the fixed frame; an unwinding frame slidably arranged on the track seat; a servo electric push rod is arranged on the fixed frame and connected to the unwinding frame; and a first rotating mechanism is rotatably arranged on the unwinding frame. A first air shaft is coaxially mounted on the first rotating shaft. A first servo motor is mounted on the unwinding frame, and the first servo motor is connected to the first rotating shaft via a belt drive. Several first guide rollers are arranged between the floating tensioning mechanism and the fixed frame. The floating tensioning mechanism includes: floating rollers, a fixed base, and a fine-tuning cylinder. Parallel guide rods and linear guide rails are arranged at the front and rear ends of the fixed base. Linear bearings are slidably mounted on the guide rods, and linear bearing sliders are slidably mounted on the linear guide rails. A sliding seat is arranged between the linear bearings and the linear bearing sliders. The fine-tuning cylinder is fixed on the fixed base. It is connected to the slide block, and the fine-tuning cylinder is connected to the proportional valve. A connecting shaft extending forward is fixedly installed on the slide block, and the floating roller is rotatably mounted on the connecting shaft. Several second guide rollers are arranged between the floating tensioning mechanism and the correction guide frame. The correction guide frame includes: a correction body, a reciprocating motor vertically arranged in the correction body, a drive shaft connected to the reciprocating motor, a correction seat eccentrically connected to the drive shaft, correction rollers rotatably mounted at the left and right ends of the correction seat, and two guide slot plates and a rotating plate equally divided around the eccentric connection point on the correction body. The correction seat and the rotating plate rotate... The system is dynamically connected, with two guide wheels connected to the correction seat. The two guide wheels are respectively rolled and locked in two guide slot plates. A second correction probe is set on the frame below the correction roller on the right side. Several third guide rollers and adjusting rollers are set between the correction guide frame and the winding mechanism. The winding mechanism includes: a servo screw slide connected to the frame, a winding frame set on the servo screw slide, a second rotating shaft rotatably set on the winding frame, a second air shaft set on the second rotating shaft, and a second servo motor set on the winding frame. The second servo motor and the second rotating shaft are connected by belt drive.
2. The high-quality automatic winding device for amorphous ribbon according to claim 1, characterized in that: The adjusting roller is mounted on the adjusting plate. There are four vertical elongated holes around the adjusting plate, and connecting bolts are threaded through the four elongated holes and connected to the machine frame.
3. The high-quality automatic winding device for amorphous ribbon according to claim 2, characterized in that: The first guide roller, the second guide roller, and the third guide roller are all fixed to the frame by cover plates. There are four first adjusting screw holes evenly distributed around the circumference of each cover plate. There are also four first adjusting screw holes evenly distributed around the circumference of the adjusting plate connected to the adjusting roller. A first adjusting screw is threaded into the first adjusting screw hole and abuts against the frame.
4. The high-quality automatic winding device for amorphous ribbon according to claim 3, characterized in that: Two first guide rollers are arranged between the floating tensioning mechanism and the fixed frame. The first guide roller on the right is located above the left of the floating tensioning mechanism, and the first guide roller on the left is located below the left of the first guide roller on the right. Two branching guide rollers are vertically arranged on the fixed frame. The top conveying surface of the branching guide roller located above is flush with the bottom conveying surface of the first guide roller on the left. A tensioning guide roller is arranged on the fixed frame. The branching guide roller and the tensioning guide roller are also fixed on the fixed frame by a cover plate. Four first adjusting set screw holes are evenly distributed around the circumference of the cover plate. A first set screw is threaded into the first adjusting set screw hole and abuts against the fixed frame.
5. The high-quality automatic winding device for amorphous ribbon according to claim 4, characterized in that: Three second guide rollers are installed between the floating tensioning mechanism and the correction guide frame. The two second guide rollers on the left are located above and below the floating tensioning mechanism on the right and below the right, respectively. The second guide roller on the right is located below the correction roller on the left in the correction guide frame. The right conveying surface of the second guide roller on the right is aligned vertically with the left conveying surface of the correction roller on the left. The third guide roller is located below the correction roller on the right in the correction guide frame. The left conveying surface of the third guide roller is aligned vertically with the conveying surface of the correction roller on the right.
6. The high-quality automatic winding device for amorphous ribbon according to claim 1, characterized in that: The connection structure between the connecting shaft and the slide is as follows: a straightening plate is vertically installed on the slide, a mounting plate is connected to the straightening plate by bolts, a first optical shaft seat is installed on the mounting plate, the connecting shaft is locked in the first optical shaft seat, and four second adjusting screw holes are evenly distributed around the center of the first optical shaft seat on the mounting plate. Second adjusting screws are threaded into the second adjusting screw holes and abut against the straightening plate.
7. The high-quality automatic winding device for amorphous ribbon according to claim 1, characterized in that: A rangefinder capable of measuring the distance to the slide is installed at the left end of the fixed base.
8. The high-quality automatic winding device for amorphous ribbon according to claim 1, characterized in that: A connecting plate is provided on the unwinding frame, and a second optical shaft seat is provided on the connecting plate. An installation shaft is installed in the second optical shaft seat, and an auxiliary roller is rotatably mounted on the installation shaft. Four third set screw holes are evenly distributed around the circumference of the second optical shaft seat, and a third set screw is threaded into the third set screw hole. The third set screw abuts against the connecting plate. The auxiliary rollers in the two unwinding frames correspond to the two first correction probes respectively.
9. The high-quality automatic winding device for amorphous ribbon according to claim 1, characterized in that: A set screw plate is provided at both the front and rear ends of the left and right side walls of the unwinding frame. Two fourth set screw holes are provided on the set screw plate, and a fourth set screw is threaded into the fourth set screw hole. The fourth set screw abuts against the track seat.