A fully automatic amorphous strip slitting machine
By designing a fully automatic amorphous strip slitting machine, using a servo motor-driven deviation actuator and feeding motor table, combined with a variety of equipment such as a deviation correction regulator, buffer roller shaft frame and slitting tool frame, the deviation and strip breaking problems of the amorphous strip slitting machine when dealing with brittle strips is solved, achieving efficient and accurate slitting and production sustainability.
Patent Information
- Application Number
- CN202210606216.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-05-31
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2042-05-31
AI Technical Summary
Existing automated slitting machines are prone to strip offset and broken strips when dealing with brittle amorphous strips, resulting in low slitting efficiency and discontinuous production.
A fully automatic amorphous strip slitting machine is designed, including a feed discharge machine, a slitting machine and a feeding machine. It adopts a servo motor-driven bias correction actuator and a feeding motor, combined with a bias correction regulator, a buffer roller frame, a bias correction machine and a slitting tool holder to ensure stable conveying and precise cutting of the tape.
Efficient slitting is achieved, avoiding strip offset and breaking of strips, ensuring cutting accuracy and continuous production, and improving the slitting efficiency of amorphous strips.
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Figure CN114933196B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of fully automatic slitting of amorphous strips, and in particular to a fully automatic amorphous strip slitting machine. Background Art
[0002] Amorphous alloy, or metallic glass, is a new type of material that came out in the 1970s. It uses rapid cooling technology to form molten steel into a thin strip with a thickness of 30 microns at one time. The solid alloy (thin strip) obtained is different from the crystal structure of atoms in cold-rolled silicon steel materials. It is precisely this alloy whose atoms are in an irregularly arranged amorphous structure that makes it have a narrow BH loop, high magnetic permeability and low loss. At the same time, the irregular arrangement of atoms in amorphous alloys limits the free passage of electrons, resulting in a resistivity that is 2-3 times higher than that of crystalline alloys, which is also conducive to reducing eddy current losses. The no-load loss of transformer cores made of amorphous alloys is reduced by about 75% compared with traditional transformers using silicon steel sheets, making amorphous alloy transformers have very significant energy-saving and environmental protection effects. When amorphous alloy transformer cores are used in oil-immersed transformers, they can significantly reduce the emission of various harmful gases. Therefore, more and more manufacturers use amorphous alloys as raw materials for transformer cores.
[0003] When amorphous alloy is used to produce iron core, the strip-shaped amorphous alloy needs to be rewound. Before winding, slitting operation is required. Slitting is mainly to adjust the width of the amorphous strip. When conventional automatic slitting machines are running, the strip often deviates and breaks due to the brittle and thin characteristics of the strip itself. In order to solve the above problems, the automation device needs to be improved. Summary of the invention
[0004] The technical problem to be solved by the present invention is to provide a fully automatic amorphous strip slitting machine, which has the characteristics of high slitting efficiency, no strip deviation, accurate cutting accuracy, avoidance of strip breakage, and ensuring continuous production.
[0005] The technical solution adopted by the present invention to solve its technical problems is: to provide a fully automatic amorphous strip slitting machine, including a feed unloading machine, a slitting machine and a receiving machine, the feed unloading machine, the slitting machine and the receiving machine are arranged horizontally from left to right, and the front side of the slitting machine is equipped with a correction adjuster, a buffer roller frame, a correction device, a slitting knife frame and an output tension adjustment mechanism from left to right in sequence, the feed unloading machine includes a base plate, a correction actuator and a feeding motor, the left and right parts of the upper end surface of the base plate are respectively provided with a correction actuator and a feeding motor that move forward and backward, the main shaft of the correction actuator is equipped with a retractable material tray, and the main shaft of the feeding motor is equipped with a feeding wheel.
[0006] The motors of the deviation correction actuator and the feeding motor table are both servo motors, so that the speed can be digitally controlled. When feeding, the output end of the amorphous strip on the retractable tray or feeding wheel is introduced into the deviation correction regulator, and passes through the buffer roller shaft frame, the deviation correction device, the slitting knife frame, and enters the receiving machine table from the output tension adjustment mechanism for receiving.
[0007] As a supplement to the technical solution, a support plate is provided at the rear side of the retractable material tray.
[0008] In this technical solution, a support plate is provided to ensure that the amorphous strip is very stable when being delivered, and has positioning and limiting functions.
[0009] As a supplement to the present technical solution, the correction adjuster includes a bracket, a sliding bracket and a sensing bracket. The bracket is connected to the front side of the slitting machine through longitudinal guide columns at both ends. A sliding bracket that slides back and forth is installed on the longitudinal guide columns of the bracket, and a sensing bracket is installed on the upper end of the sliding bracket.
[0010] In this technical solution, a sliding bracket is set up to control the front and rear positions of the sensing bracket, so that the equipment can be adjusted according to the width of the amorphous strip. A sensing bracket is set up to sense the initial position of the amorphous strip, and the initial correction operation is achieved by moving the correction adjuster forward and backward.
[0011] As a supplement to the present technical solution, an adjusting screw is installed in the middle of the bracket, the front end of the adjusting screw passes through the bracket and is connected to the handwheel, the sliding bracket and the adjusting screw are connected by threads, and the front side of the sensing bracket is provided with a concave, and sensors are provided on the upper and lower sides of the concave.
[0012] In this technical solution, a hand wheel and an adjusting screw are provided to control the movement of the sliding bracket, a recess is provided to facilitate the passage of the strip in the recess, and a sensor is provided to sense the initial deviation correction position of the amorphous strip.
[0013] As a supplement to the present technical solution, the buffer roller shaft frame includes a buffer roller shaft and a guide roller shaft. There are three guide roller shafts, two of which are arranged on both sides of the upper part of the deviation corrector, and the other is arranged on the left side of the deviation corrector. The buffer roller shaft is arranged near the deviation corrector.
[0014] In this technical solution, three guide rollers are used to output the strip along the set direction. A buffer roller is provided to buffer the strip. When working, the buffer roller is pressed downward by the tension of the strip. When the strip is short of material or broken, the buffer roller is pushed to the top under the thrust of the cylinder, causing the equipment to stop automatically.
[0015] As a supplement to the present technical solution, the corrector includes a corrector base, a correcting roller and a correcting execution platform. Two correcting rollers are installed side by side on the upper end of the corrector base. The correcting rollers are installed longitudinally, and a correcting execution platform is arranged inside the upper end of the corrector base.
[0016] The deflection corrector is a conventional purchased deflection corrector on the market. It controls the front and rear positions of the deflection correcting pulley by floating, so that the friction surface on the deflection correcting pulley can correct the position of the amorphous strip and ensure accurate output of the strip.
[0017] As a supplement to the present technical solution, the slitting knife holder comprises a bottom frame, a knife holder moving plate and a rear knife holder seat, the bottom frame is installed in the slitting machine, a knife holder moving plate is installed on the bottom frame for forward and backward movement, a rear knife holder seat is vertically installed at the rear of the knife holder moving plate, a front knife holder seat is installed at the front of the knife holder moving plate, a supporting wheel bracket and a cutting wheel bracket are installed side by side up and down on the front side of the rear knife holder seat, a transmission shaft is arranged in the supporting wheel bracket, a cutting motor is installed on the rear side of the knife holder seat, the main shaft of the cutting motor extends forward and is inserted into the rear knife holder seat, the main shaft of the cutting motor drives the transmission shaft in the supporting wheel bracket, and support rollers are respectively installed at the front end of the transmission shaft of the supporting wheel bracket, the supporting rollers are installed with lower rolling shears, and the cutting wheel bracket is installed with upper rolling shears.
[0018] In this technical solution, a bottom frame and a bottom plate of a tool holder are provided to precisely adjust the positions of the support roller and the cutter wheel, so as to control the width of the trimmed amorphous strip. A cutting motor is provided to synchronously drive the support roller and the cutter wheel, so that the conveying is stable when the strip is cut, thereby ensuring the quality of the strip.
[0019] As a supplement to the technical solution, a protective cover is provided on the upper part of the cutter wheel, and production safety is ensured by providing the protective cover.
[0020] As a supplement to the present technical solution, two sets of material receiving machines with servo motors are arranged in the material receiving machine, and a control cabinet is arranged on the rear side of the slitting machine. By arranging two sets of material receiving machines with servo motors, when the material is full, it is only necessary to introduce the output end into the vacant material receiving machine, and there is no need to stop the machine, thereby improving production efficiency.
[0021] As a supplement to the present technical solution, the output tension adjustment mechanism is provided with a plurality of first output guide rollers and second output guide rollers for guiding, and second buffer rollers are provided on the upper and lower sides of the second output guide rollers close to the material receiving machine, and the two second buffer rollers correspond to the two groups of material receiving machines respectively.
[0022] Beneficial effects: The present invention relates to a fully automatic amorphous strip slitting machine, which ensures that the amorphous strip is very stable when it is sent out by arranging a support plate, thereby reducing the risk of strip breakage during feeding, and arranging a sliding bracket to control the front and rear positions of the sensing bracket so that the equipment can be adjusted according to the width of the amorphous strip, and arranging a sensing bracket to sense the expansion force of the amorphous strip, and arranging a hand wheel and an adjusting screw to control the movement of the sliding bracket, and arranging an inner concave to facilitate the passage of the strip in the inner concave, and arranging a sensor so that a signal for adjusting the speed of the unloading machine can be given when the strip is straightened and when it is relaxed, and a bottom frame and a tool holder moving plate are arranged to accurately adjust the positions of the supporting rollers and the upper rolling scissors to control the width of the trimmed amorphous strip, and a cutting motor is arranged to synchronously drive the supporting rollers and the upper rolling scissors, so that when the strip is cut, the conveying is stable, the quality of the strip is ensured, and the machine has the characteristics of high slitting efficiency, no strip deviation, accurate cutting accuracy, avoidance of strip breakage, and ensuring continuity of production. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 It is a structural view of the present invention;
[0024] Figure 2 It is a structural view of the unloading machine platform of the present invention;
[0025] Figure 3 It is a structural view of the slitting machine according to the present invention;
[0026] Figure 4 It is a structural view of the slitting knife holder of the present invention;
[0027] Figure 5 It is a structural view of the lower rolling scissors of the present invention.
[0028] Illustration: 1. Unloading machine, 2. Slitting machine, 3. Deviation correction regulator, 4. Buffer roller shaft frame, 5. Deviation correction device, 6. Slitting knife frame, 7. Output tension adjustment mechanism, 8. Receiving machine, 9. Control cabinet, 10. Bottom plate, 11. Deviation correction actuator, 12. Feeding motor, 13. Retractable tray, 14. Support plate, 15. Feeding wheel, 16. Bracket, 17. Hand wheel, 18. Sliding bracket, 19. Induction bracket, 20. Guide roller, 21 , deflection corrector base, 22, buffer roller, 23, deflection correcting execution platform, 24, deflection correcting roller, 25, first output guide roller, 26, second output guide roller, 27, second buffer roller, 28, bottom frame, 29, tool holder moving plate, 30, rear tool holder seat, 31, cutting motor, 32, support wheel bracket, 33, cutting wheel bracket, 34, support roller, 35, upper roller scissors, 36, protective cover, 37, lower roller scissors, 38, front tool holder seat. DETAILED DESCRIPTION
[0029] The present invention will be further described below in conjunction with specific embodiments. It should be understood that these embodiments are only used to illustrate the present invention and are not intended to limit the scope of the present invention. In addition, it should be understood that after reading the content taught by the present invention, those skilled in the art can make various changes or modifications to the present invention, and these equivalent forms fall within the scope limited by the appended claims of the application equally.
[0030] The embodiment of the present invention relates to a fully automatic amorphous strip slitting machine, such as Figure 1 As shown in FIG. 3 , the unloading machine 1 comprises a feeding machine 1, a slitting machine 2 and a receiving machine 8. The unloading machine 1, the slitting machine 2 and the receiving machine 8 are arranged horizontally from left to right. The front side of the slitting machine 2 is provided with a correction regulator 3, a buffer roller frame 4, a correction device 5, a slitting knife frame 6 and an output tension adjustment mechanism 7 in sequence from left to right. The unloading machine 1 comprises a base plate 10, a correction actuator 11 and a feeding motor 12. The left and right parts of the upper end surface of the base plate 10 are respectively provided with a correction actuator 11 and a feeding motor 12 which can move forward and backward. A retractable material tray 13 is installed on the main shaft of the correction actuator 11, and a feeding wheel 15 is installed on the main shaft of the feeding motor 12.
[0031] The motors of the deviation correction actuator 11 and the feeding motor table 12 are both servo motors, so that the rotation speed can be digitally controlled. When feeding, the output end of the amorphous strip on the retractable material tray 13 or the feeding wheel 15 is introduced into the deviation correction regulator 3, and passes through the buffer roller shaft frame 4, the deviation corrector 5, and the slitting knife frame 6, and is output from the output tension adjustment mechanism 7 to the receiving machine table 8 for storage.
[0032] As a supplement to the present technical solution, a support plate 14 is provided at the rear side of the retractable material tray 13 .
[0033] In the present technical solution, the support plate 14 is provided to ensure that the amorphous strip is very stable when being delivered, and has positioning and limiting functions.
[0034] As a supplement to the present technical solution, the correction adjuster 3 includes a bracket 16, a sliding bracket 18 and a sensing bracket 19. The bracket 16 is connected to the front side of the slitting machine 2 through longitudinal guide columns at both ends. A sliding bracket 18 that slides back and forth is installed on the longitudinal guide columns of the bracket 16, and a sensing bracket 19 is installed on the upper end of the sliding bracket 18.
[0035] In the present technical solution, a sliding bracket 18 is provided to control the front and rear positions of the sensing bracket 19, so that the equipment can be adjusted according to the width of the amorphous strip. The sensing bracket 19 is provided to sense the initial position of the amorphous strip, and the position information of the amorphous strip is obtained and input into the control cabinet 9. The control cabinet 9 adjusts the front and rear positions of the correction actuator 11 and the feeding motor table 12 according to the position information, thereby realizing the initial correction function.
[0036] As a supplement to the present technical solution, an adjusting screw is installed in the middle of the bracket 16, the front end of the adjusting screw passes through the bracket 16 and is connected to the handwheel 17, the sliding bracket 18 and the adjusting screw are connected by threads, and the front side of the sensing bracket 19 is provided with a concave, and sensors are provided on the upper and lower sides of the concave.
[0037] As a supplement to the present technical solution, the buffer roller shaft frame 4 includes a buffer roller shaft 22 and a guide roller shaft 20. There are three guide roller shafts 20, two of which are arranged on both sides of the upper part of the deviation corrector 3, and the other is arranged on the left side of the deviation corrector 5. The buffer roller shaft 22 is arranged near the deviation corrector 5.
[0038] In the present technical solution, three guide rollers 20 are used to output the strip along the set direction. A buffer roller 22 is provided to buffer the strip. When working, the buffer roller 22 is pressed downward by the tension of the strip. When the strip is short of material or broken, the buffer roller 22 is pushed to the top under the thrust of the cylinder, causing the equipment to stop automatically.
[0039] As a supplement to the present technical solution, the corrector 5 includes a corrector base 21, a correcting roller 24 and a correcting execution platform 23. Two correcting rollers 24 are installed side by side on the upper end of the corrector base 21. The correcting rollers 24 are installed longitudinally, and a correcting execution platform 23 is arranged inside the upper end of the corrector base 21.
[0040] The deflection corrector 5 is a conventional purchased deflection corrector on the market. It controls the front and rear positions of the deflection correcting roller 24 by floating, so that the friction surface on the deflection correcting roller 24 can correct the position of the amorphous strip, ensuring accurate output of the strip.
[0041] As a supplement to the present technical solution, the slitting knife frame 6 includes a bottom frame 28, a knife frame moving plate 29 and a rear knife frame seat 30. The bottom frame 28 is installed in the slitting machine table 2. The knife frame moving plate 29 is installed on the bottom frame 28 for forward and backward movement. The rear part of the knife frame moving plate 29 is vertically installed with the rear knife frame seat 30, and the front part of the knife frame moving plate 29 is installed with a front knife frame seat 38. The front side of the rear knife frame seat 30 is installed with a supporting wheel bracket 32 and a cutting wheel bracket 33 side by side up and down. A transmission shaft is arranged in the supporting wheel bracket 32. A cutting motor 31 is installed on the rear side of the knife frame seat 30. The main shaft of the cutting motor 31 extends forward and is inserted into the rear knife frame seat 30. The main shaft of the cutting motor 31 drives the transmission shaft in the supporting wheel bracket 32. The front end of the transmission shaft of the supporting wheel bracket 32 is respectively installed with supporting rollers 34. The supporting rollers 34 are installed with lower rolling shears 37, and the cutting wheel bracket 33 is installed with upper rolling shears 35.
[0042] In this technical solution, a bottom frame 28 and a tool holder moving plate 29 are provided to precisely adjust the positions of the support roller 34 and the upper roller scissors 35 to control the width of the trimmed amorphous strip. A cutting motor 31 is provided to synchronously drive the support roller 34 and the upper roller scissors 35, so that the conveying is stable when the strip is cut, thereby ensuring the quality of the strip.
[0043] As a supplement to the present technical solution, a protective cover 36 is provided on the upper portion of the upper roller scissors 35, and the protective cover 36 is provided to ensure production safety.
[0044] As a supplement to the present technical solution, a circle of lower rolling scissors 37 is arranged on the outer circle of the support roller 34 .
[0045] As a supplement to the present technical solution, the material receiving machine 8 is provided with two sets of material receiving machines with servo motors, and a control cabinet 9 is provided on the rear side of the slitting machine 2. By setting up two sets of material receiving machines with servo motors, when the material is full, it is only necessary to introduce the output end into the vacant material receiving machine, and there is no need to stop the machine, thereby improving production efficiency.
[0046] As a supplement to the present technical solution, the output tension adjustment mechanism 7 is provided with a plurality of first output guide rollers 25 and second output guide rollers 26 for guiding, and second buffer rollers 27 are provided on the upper and lower sides of the second output guide rollers 26 close to the receiving machine platform 8, and the two second buffer rollers 27 correspond to the two groups of receiving machine platforms 8 respectively.
[0047] The structure of the second buffer roller 27 arranged in the output tension regulating mechanism 7 is the same as that of the buffer roller 22, and both are driven by the thrust of the cylinder to ensure that the second buffer roller 27 can press down the amorphous strip under the tension during operation, so that the amorphous strip is in a taut state. When the strip is short of material or broken, the second buffer roller 27 will push to the top under the thrust of the cylinder, causing the equipment to stop automatically.
[0048] Example
[0049] When the present technical scheme is used to transport amorphous strip, the strip coil is installed in the retractable material tray 13 on the deflection correction actuator 11, and the free end of the strip passes through the deflection correction regulator 3, the buffer roller shaft frame 4, the deflection correction device 5, the slitting knife frame 6 and the output tension adjustment mechanism 7 in sequence, and is docked with a receiving machine on the receiving machine table 8. After that, the equipment is started for automated production. The deflection correction regulator 3 can adjust the expansion force of the amorphous strip between the unloading machine table 1 and the slitting machine table 2 to avoid breakage of the amorphous strip during transportation, thereby affecting production efficiency and the quality of the amorphous core.
[0050] At the same time, a buffer roller shaft frame 4 and an output tension adjustment mechanism 7 are provided in the present technical solution. The buffer roller shaft frame 4 and the output tension adjustment mechanism 7 can buffer the tension of the strip entering the corrector 5 and the strip entering the receiving machine 8, thereby preventing the corrector 5 and the receiving machine 8 from breaking the amorphous strip. At the same time, it ensures that the amorphous strip is always in a straight state during transportation, thereby preventing the strip from running off when it is relaxed.
[0051] The corrector 5 is a conventional strip correcting device on the market. Through the corrector 5, the strip accurately enters the slitting knife frame 6 for cutting and trimming, so that the strip size can meet the production standard of the amorphous core.
[0052] The slitting tool holder 6 can be adjusted, and the tool holder moving plate 29 is controlled to move forward and backward through the adjustment motor and the screw rod structure on the bottom frame 28. The adjustment motor is a servo motor, and the forward and backward displacement of the tool holder moving plate 29 can be digitally controlled. The relative positions of the supporting roller 34 and the upper rolling scissors 35 and the amorphous strip are controlled through the tool holder moving plate 29, so that the width of the amorphous strip can be controlled, so that the equipment can produce amorphous strip rolls of different sizes. The cutting motor 31 can synchronously drive the supporting roller 34 and the upper rolling scissors 35 to roll through the transmission structure, so that the amorphous strip can be quickly slit.
[0053] It should be noted that the terms used herein are only for describing specific embodiments and are not intended to limit the exemplary embodiments according to the present application. As used herein, unless the context clearly indicates otherwise, the singular form is also intended to include the plural form. In addition, it should be understood that when the terms "comprise" and / or "include" are used in this specification, it indicates the presence of features, steps, operations, devices, components and / or combinations thereof.
[0054] Unless otherwise specifically stated, the relative arrangement of the parts and steps described in these embodiments, numerical expressions and numerical values do not limit the scope of the present invention. At the same time, it should be understood that, for ease of description, the sizes of the various parts shown in the accompanying drawings are not drawn according to the actual proportional relationship. The technology, method and equipment known to ordinary technicians in the relevant field may not be discussed in detail, but in appropriate cases, the technology, method and equipment should be regarded as a part of the authorization specification. In all examples shown and discussed here, any specific value should be interpreted as being merely exemplary, rather than as a limitation. Therefore, other examples of exemplary embodiments may have different values. It should be noted that similar reference numerals and letters represent similar items in the following drawings, so once a certain item is defined in an accompanying drawing, it does not need to be further discussed in subsequent drawings.
[0055] In the description of the present invention, it is necessary to understand that the directions or positional relationships indicated by directional words such as "front, back, up, down, left, right", "lateral, vertical, perpendicular, horizontal" and "top, bottom" are usually based on the directions or positional relationships shown in the drawings. They are only for the convenience of describing the present invention and simplifying the description. Unless otherwise specified, these directional words do not indicate or imply that the devices or elements referred to must have a specific direction or be constructed and operated in a specific direction. Therefore, they cannot be understood as limiting the scope of protection of the present invention. The directional words "inside and outside" refer to the inside and outside relative to the contours of each component itself.
[0056] For ease of description, spatially relative terms such as "above", "above", "on the upper surface of", "above", etc. may be used here to describe the spatial positional relationship between a device or feature and other devices or features as shown in the figure. It should be understood that spatially relative terms are intended to include different orientations of the device in use or operation in addition to the orientation described in the figure. For example, if the device in the accompanying drawings is inverted, the device described as "above other devices or structures" or "above other devices or structures" will be positioned as "below other devices or structures" or "below other devices or structures". Thus, the exemplary term "above" may include both "above" and "below". The device may also be positioned in other different ways (rotated 90 degrees or in other orientations), and the spatially relative descriptions used here are interpreted accordingly.
[0057] In addition, it should be noted that the use of terms such as "first" and "second" to limit components is only for the convenience of distinguishing the corresponding components. If not otherwise stated, the above terms have no special meaning and therefore cannot be understood as limiting the scope of protection of the present invention.
[0058] The above is a detailed introduction to a fully automatic amorphous strip slitting machine provided by the present application. Specific examples are used in this article to illustrate the principles and implementation methods of the present application. The description of the above embodiments is only used to help understand the method of the present application and its core idea; at the same time, for general technical personnel in this field, according to the idea of the present application, there will be changes in the specific implementation method and application scope. In summary, the content of this specification should not be understood as a limitation on the present application.
Claims
1. A fully automatic amorphous strip slitting machine, characterized in that: The invention comprises a feeding machine (1), a slitting machine (2) and a receiving machine (8), wherein the feeding machine (1), the slitting machine (2) and the receiving machine (8) are arranged horizontally from left to right, and a deviation correction regulator (3), a buffer roller frame (4), a deviation correction device (5), a slitting knife frame (6) and an output tension adjustment mechanism (7) are sequentially installed on the front side of the slitting machine (2) from left to right, and the feeding machine (1) comprises a bottom plate (10), a deviation correction actuator (11) and a feeding motor table (12), and the left and right parts of the upper end surface of the bottom plate (10) are respectively provided with a deviation correction actuator (11) and a feeding motor table (12) which can move forward and backward. ), a retractable material tray (13) is installed on the main shaft of the correction actuator (11), a feeding wheel (15) is installed on the main shaft of the feeding motor table (12), the correction regulator (3) includes a bracket (16), a sliding bracket (18) and an induction bracket (19), the bracket (16) is connected to the front side of the slitting machine table (2) through the longitudinal guide columns at both ends, a sliding bracket (18) that slides forward and backward is installed on the longitudinal guide column of the bracket (16), and an induction bracket (19) is installed on the upper end of the sliding bracket (18), and an adjusting screw rod is installed in the middle of the bracket (16), and the front end of the adjusting screw rod passes through the bracket (16) and docked with the hand wheel (17), the sliding bracket (18) and the adjusting screw rod are connected by thread, the front side of the induction bracket (19) is provided with a concave, and the upper and lower sides of the concave are provided with sensors, the slitting knife holder (6) includes a bottom frame (28), a knife holder moving plate (29) and a rear knife holder seat (30), the bottom frame (28) is installed in the slitting machine (2), the bottom frame (28) is provided with a knife holder moving plate (29) that can move forward and backward, the rear part of the knife holder moving plate (29) is vertically provided with a rear knife holder seat (30), and the front part of the knife holder moving plate (29) is provided with a front knife holder seat (38), A support wheel bracket (32) and a cutting wheel bracket (33) are installed side by side on the front side of the rear tool holder seat (30), and a transmission shaft is arranged in the support wheel bracket (32). A cutting motor (31) is installed on the rear side of the tool holder seat (30). The main shaft of the cutting motor (31) extends forward and is inserted into the rear tool holder seat (30). The main shaft of the cutting motor (31) drives the transmission shaft in the support wheel bracket (32). Support rollers (34) are installed at the front ends of the transmission shafts of the support wheel brackets (32). The support rollers (34) are installed with lower rolling shears (37), and the cutting wheel brackets (33) are installed with upper rolling shears (35).
2. The fully automatic amorphous strip slitting machine according to claim 1, characterized in that: A support plate (14) is arranged at the rear side of the retractable material tray (13).
3. The fully automatic amorphous strip slitting machine according to claim 1, characterized in that: The buffer roller shaft frame (4) comprises a buffer roller shaft (22) and a guide roller shaft (20). There are three guide roller shafts (20), two of which are arranged on both sides of the upper part of the deviation correcting adjuster (3), and the other is arranged on the left side of the deviation corrector (5). The buffer roller shaft (22) is arranged near the deviation corrector (5).
4. The fully automatic amorphous strip slitting machine according to claim 1, characterized in that: The deflection corrector (5) comprises a deflection corrector base (21), a deflection correcting roller (24) and a deflection correcting execution platform (23). Two deflection correcting rollers (24) are installed side by side on the upper end of the deflection corrector base (21). The deflection correcting rollers (24) are installed longitudinally. The deflection correcting execution platform (23) is arranged inside the upper end of the deflection corrector base (21). A conveying space is reserved between the deflection correcting rollers (24) and the deflection correcting execution platform (23).
5. The fully automatic amorphous strip slitting machine according to claim 1, characterized in that: A protective cover (36) is arranged on the upper portion of the upper rolling scissors (35).
6. The fully automatic amorphous strip slitting machine according to claim 1, characterized in that: A lower rolling scissors (37) is installed on the outer ring of the supporting roller (34).
7. The fully automatic amorphous strip slitting machine according to claim 1, characterized in that: The receiving machine (8) is provided with two sets of receiving machines with servo motors, and a control cabinet (9) is provided at the rear side of the slitting machine (2).
Citation Information
Patent Citations
Full-automatic amorphous strip splitting machine
CN217555420U