A slitter peeler
Patent Information
- Application Number
- CN202522046912.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-22
- Publication Date
- 2026-08-18
- Estimated Expiration
- 2035-09-22
AI Technical Summary
[0004]本实用新型的目的是为了提供一种能够稳定的控制转移镀铝纸的剥离点位置,从而提高剥离效果,有效解决因剥离点的位置不可控,导致铝层不能完全转移到纸上,影响剥离效果的问题的一种分切机剥离装置
[0017]本实用新型的有益效果是:在转移镀铝纸剥离过程中,由于动剥离辊抵在定剥离辊一侧,将转移镀铝纸压在定剥离辊与动剥离辊之间,转移镀铝纸的剥离点将被限制在定剥离辊与动剥离辊贴合位置,从而稳定的控制转移镀铝纸的剥离点位置,从而提高剥离效果,有效解决因剥离点的位置不可控,导致铝层不能完全转移到纸上,影响剥离效果的问题。
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Figure CN224646342U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of peeling technology for transfer-metallized paper, and specifically to a peeling device for a slitting machine. Background Technology
[0002] Transfer-metallized paper consists of two layers: a film coated with an aluminum layer and a paper layer. The peeling process involves transferring the aluminum layer from the film to the paper, and then peeling off the film. Currently, the paper-film peeling device in slitting machines is used for peeling transfer-metallized paper. This device typically uses a single roller peeling mechanism, which is mounted on the slitting machine frame. The transfer-metallized paper passes around the roller peeling point, where the paper and film are separated. The peeled paper is wound onto one core, and the peeled film is wound onto another core.
[0003] Currently, the paper-film peeling device in slitting machines suffers from uncontrollable peeling point positions during the peeling process of the coated paper. These peeling points frequently change, preventing the aluminum layer from being completely transferred to the paper and affecting the peeling effect (the peeling point refers to the point where the paper and film begin to separate). For example, Chinese Patent Publication No. CN107986073A, an invention entitled "A Peeling and Slitting Machine," includes a feeding device, a film receiving device, a paper receiving device, and a peeling roller. It uses a single peeling roller to peel the aluminum-coated paper, and also suffers from the aforementioned problems. Utility Model Content
[0004] The purpose of this invention is to provide a slitting machine peeling device that can stably control the peeling point position of the transferred aluminized paper, thereby improving the peeling effect and effectively solving the problem that the aluminum layer cannot be completely transferred to the paper due to the uncontrollable position of the peeling point, thus affecting the peeling effect.
[0005] The technical solution of this utility model is: A slitting machine peeling device, comprising: frame; Two winding devices, each winding device includes a rotatably mounted core and a winding motor that drives the core to rotate. The core of one winding device winds up paper, and the core of the other winding device winds up film. A fixed peeling roller is rotatably mounted on the frame; The peeling assembly includes a pair of swing arms rotatably mounted on a frame, a movable peeling roller rotatably mounted between the pair of swing arms, and a swing arm drive mechanism. The movable peeling roller is parallel to the fixed peeling roller, and the swing arm drive mechanism drives the swing arms to rotate so that the movable peeling roller abuts against one side of the fixed peeling roller.
[0006] The specific operation of the peeling device for a slitting machine in this solution is as follows: The metallized paper is transferred around the fixed peeling roller; The swing arm drive mechanism drives the swing arm to rotate, causing the movable peeling roller to press against one side of the fixed peeling roller, thereby pressing the transfer aluminum-coated paper between the fixed and movable peeling rollers. Subsequently, during the peeling process of the transfer aluminum-coated paper, because the movable peeling roller is pressed against one side of the fixed peeling roller, the peeling point of the transfer aluminum-coated paper will be restricted to the contact position between the fixed and movable peeling rollers. This stabilizes the peeling point position of the transfer aluminum-coated paper, thereby improving the peeling effect and effectively solving the problem that the aluminum layer cannot be completely transferred to the paper due to the uncontrollable position of the peeling point, which affects the peeling effect.
[0007] After the transfer metallized paper is peeled off, the paper is wound onto the core of one winding device, and the peeled film is wound onto the core of another winding device.
[0008] Preferably, the system also includes two guide rollers rotatably mounted on the frame. These guide rollers are parallel to the fixed peeling roller and correspond one-to-one with the winding devices. The guide rollers are located between the fixed peeling roller and the core of the corresponding winding device. In this way, the running trajectory of the peeled paper and film can be adjusted using the guide rollers, ensuring that the peeled paper is stably wound onto the core of one winding device, and the peeled film is stably wound onto the core of another winding device.
[0009] Preferably, the system also includes a peeling roller drive mechanism, which drives a fixed peeling roller to rotate. During the peeling process of the transferred aluminized paper, driving the fixed peeling roller to rotate via the peeling roller drive mechanism facilitates the peeling of the transferred aluminized paper and improves the peeling effect.
[0010] Preferably, the swing arm is equipped with a sliding block and a position adjustment mechanism for driving the sliding block to move, and the movable peeling roller is rotatably disposed between the sliding blocks of a pair of swing arms. Different types of transfer metallized paper may require different peeling points during peeling. To accommodate the peeling needs of different types of transfer metallized paper, this solution makes the position of the movable peeling roller adjustable. Specifically, the position of the sliding block is adjusted by the position adjustment mechanism, thereby adjusting the position of the movable peeling roller, which in turn adjusts the contact position between the fixed peeling roller and the movable peeling roller, and consequently adjusts the peeling point position of the transfer metallized paper to better accommodate the peeling needs of different types of transfer metallized paper.
[0011] Preferably, the swing arm extends at an upward and downward inclination, and the slide slides along the upward and downward inclination direction. The position adjustment mechanism includes an adjusting bolt threaded onto the swing arm. The adjusting bolt is parallel to the sliding direction of the slide and is located below the slide. The slide rests against the end of the adjusting bolt under its own weight. Thus, by tightening or loosening the adjusting bolt, the positions of the slide and the moving peeling roller can be adjusted, thereby adjusting the contact position between the fixed peeling roller and the moving peeling roller, and ultimately adjusting the peeling point position of the transferred aluminized paper. Its structure is simple and the adjustment operation is convenient.
[0012] Preferably, the position adjustment mechanism is composed of an electric cylinder. In this way, the position of the slide and the moving peeling roller can be adjusted by the electric cylinder, thereby adjusting the contact position between the fixed peeling roller and the moving peeling roller, and further adjusting the peeling point position of the transferred metallized paper; its structure is simple and the adjustment operation is convenient.
[0013] Preferably, the swing arm drive mechanism is composed of a cylinder.
[0014] Preferably, the two ends of the moving stripping roller are rotatably mounted between a pair of swing arms via bearings.
[0015] Preferably, the frame is equipped with supports that correspond one-to-one with the swing arms, and each support has a support shaft. The swing arms are rotatably mounted on the support shafts of the corresponding supports via bearings. This facilitates the installation of the swing arms.
[0016] Preferably, the core is parallel to the fixed peeling roller, and the cores of the two winding devices are distributed on opposite sides of the fixed peeling roller. This facilitates the arrangement of the two winding devices and the winding of the peeled paper and film.
[0017] The beneficial effects of this invention are as follows: During the peeling process of the transfer aluminum-coated paper, since the moving peeling roller presses against one side of the fixed peeling roller, the transfer aluminum-coated paper is pressed between the fixed peeling roller and the moving peeling roller. The peeling point of the transfer aluminum-coated paper will be restricted to the contact position between the fixed peeling roller and the moving peeling roller, thereby stably controlling the peeling point position of the transfer aluminum-coated paper, thereby improving the peeling effect and effectively solving the problem that the aluminum layer cannot be completely transferred to the paper due to the uncontrollable position of the peeling point, which affects the peeling effect. Attached Figure Description
[0018] Figure 1 This is a partial structural schematic diagram of a slitting machine peeling device according to the present invention.
[0019] Figure 2 This is a schematic diagram of a specific embodiment of the peeling component of this utility model.
[0020] Figure 3 This is a schematic diagram of a specific embodiment of the peeling component of the present invention, which is a second specific embodiment of the present invention.
[0021] In the picture: Rack 1; 2. Rewinding device; 2.1. Fixed peeling roller 3; Peeling assembly 4, swing arm 4.1, moving peeling roller 4.2, swing arm drive mechanism 4.3, support 4.4, support shaft 4.5, slide 4.6; Guide roller 5; Paper 6; Membrane 7. Detailed Implementation
[0022] Specific Implementation Example 1, such as Figure 1 , Figure 2 As shown, a slitting machine peeling device includes a frame 1, two winding devices 2, a fixed peeling roller 3, and a peeling assembly 4.
[0023] The winding device 2 includes a rotatably mounted core 2.1 and a winding motor that drives the core 2.1 to rotate. One core 2.1 of the winding device 2 is used to wind up the paper 6 behind the glass, and the other core 2.1 of the winding device 2 is used to wind up the film 7 behind the glass.
[0024] The fixed peeling roller 3 is rotatably mounted on the frame 1. The core 2.1 is parallel to the fixed peeling roller 3.
[0025] The peeling assembly 4 includes a pair of swing arms 4.1 rotatably mounted on the frame 1, a movable peeling roller 4.2 rotatably mounted between the pair of swing arms 4.1, and a swing arm drive mechanism 4.3. In this embodiment, the pair of swing arms 4.1 rotatably mounted on the frame 1 refers to two swing arms 4.1 rotatably mounted on the frame 1. The pair of swing arms 4.1 are parallel to each other. The rotation axes of the pair of swing arms 4.1 are coaxially distributed, and the rotation axes of the pair of swing arms 4.1 are parallel to the rotation axis of the fixed peeling roller 3.
[0026] The movable peeling roller 4.2 is parallel to the fixed peeling roller 3. In this embodiment, the movable peeling roller 4.2 is located on one side of the fixed peeling roller 3. The two ends of the movable peeling roller 4.2 are directly rotatably mounted between a pair of swing arms 4.1 via bearings.
[0027] The swing arm drive mechanism 4.3 drives the swing arm 4.1 to rotate so that the movable peeling roller 4.2 abuts against one side of the fixed peeling roller 3. In this embodiment, the swing arm drive mechanism 4.3 is composed of a cylinder. Specifically, one end of the cylinder is hinged to the frame 1, and the other end of the cylinder is hinged to the swing arm 4.1. Of course, the swing arm drive mechanism 4.3 can also be composed of an electric cylinder.
[0028] In one example, such as Figure 2 As shown, the swing arm drive mechanism 4.3 consists of two cylinders, each corresponding to a swing arm 4.1. The cylinders drive the corresponding swing arm 4.1 to rotate, thereby causing the moving stripping roller 4.2 to swing.
[0029] In another example, the swing arm drive mechanism 4.3 consists of a cylinder that drives one of the swing arms 4.1 to rotate, thereby causing the moving stripping roller 4.2 to swing.
[0030] The specific operation of the peeling device of the slitting machine in this embodiment is as follows. The metallized paper is transferred around the fixed peeling roller 3; The swing arm drive mechanism 4.3 drives the swing arm 4.1 to rotate, causing the movable peeling roller 4.2 to press against one side of the fixed peeling roller 3, thereby pressing the transfer aluminum-coated paper between the fixed peeling roller 3 and the movable peeling roller 4.2. Subsequently, during the peeling process of the transfer aluminum-coated paper, because the movable peeling roller 4.2 presses against one side of the fixed peeling roller 3, the peeling point of the transfer aluminum-coated paper will be restricted to the contact position of the fixed peeling roller 3 and the movable peeling roller 4.2, thereby stably controlling the peeling point position of the transfer aluminum-coated paper, thus improving the peeling effect and effectively solving the problem that the aluminum layer cannot be completely transferred to the paper due to the uncontrollable position of the peeling point, which affects the peeling effect.
[0031] After the transfer aluminized paper is peeled off, the paper 6 is wound onto the core 2.1 of one winding device 2, and the peeled film 7 is wound onto the core 2.1 of another winding device 2.
[0032] Furthermore, the cores 2.1 of the two winding devices 2 are distributed on opposite sides of the fixed peeling roller 3. This facilitates the arrangement of the two winding devices 2 and the winding of the peeled paper and film.
[0033] Furthermore, such as Figure 1 As shown, a slitting machine peeling device further includes two guide rollers 5 rotatably mounted on the frame 1. The guide rollers 5 are parallel to the fixed peeling roller 3. The guide rollers 5 correspond one-to-one with the winding device 2. The guide rollers 5 are located between the fixed peeling roller 3 and the corresponding winding core 2.1 of the winding device 2. The peeled paper is wound around the corresponding guide roller 5 onto the winding core 2.1 of one winding device 2; the peeled film is wound around the corresponding guide roller 5 onto the winding core 2.1 of another winding device 2. In this way, the running trajectory of the peeled paper and film can be adjusted by the guide rollers 5, so that the peeled paper can be stably wound onto the winding core 2.1 of one winding device 2, and the peeled film can be stably wound onto the winding core 2.1 of another winding device 2.
[0034] Furthermore, a slitting machine peeling device also includes a peeling roller drive mechanism. The peeling roller drive mechanism drives the fixed peeling roller 3 to rotate. In this embodiment, the peeling roller drive mechanism is driven by a motor. During the peeling process of transferring the aluminized paper, driving the fixed peeling roller 3 to rotate through the peeling roller drive mechanism is beneficial for peeling the aluminized paper and improves the peeling effect.
[0035] Furthermore, such as Figure 2 As shown, the frame 1 is equipped with supports 4.4 corresponding to the swing arms 4.1. The supports 4.4 are fixed to the frame 1 by bolts. Each support 4.4 has a support shaft 4.5, and the support shafts 4.5 of the two supports 4.4 are coaxially distributed. The swing arms 4.1 are rotatably mounted on the support shafts 4.5 of their corresponding supports 4.4 via bearings. This facilitates the installation of the swing arms 4.1.
[0036] Specific embodiment two, such as Figure 1 , Figure 3 As shown, a slitting machine peeling device includes a frame 1, two winding devices 2, a fixed peeling roller 3, and a peeling assembly 4.
[0037] The winding device 2 includes a rotatably mounted core 2.1 and a winding motor that drives the core 2.1 to rotate. One core 2.1 of the winding device 2 is used to wind up the paper 6 behind the glass, and the other core 2.1 of the winding device 2 is used to wind up the film 7 behind the glass.
[0038] The fixed peeling roller 3 is rotatably mounted on the frame 1. The core 2.1 is parallel to the fixed peeling roller 3.
[0039] The peeling assembly 4 includes a pair of swing arms 4.1 rotatably mounted on the frame 1, a movable peeling roller 4.2 rotatably mounted between the pair of swing arms 4.1, and a swing arm drive mechanism 4.3. In this embodiment, the pair of swing arms 4.1 rotatably mounted on the frame 1 refers to two swing arms 4.1 rotatably mounted on the frame 1. The pair of swing arms 4.1 are parallel to each other. The rotation axes of the pair of swing arms 4.1 are coaxially distributed, and the rotation axes of the pair of swing arms 4.1 are parallel to the rotation axis of the fixed peeling roller 3. The movable peeling roller 4.2 is parallel to the fixed peeling roller 3. In this embodiment, the movable peeling roller 4.2 is located on one side of the fixed peeling roller 3.
[0040] The swing arm drive mechanism 4.3 drives the swing arm 4.1 to rotate so that the movable peeling roller 4.2 abuts against one side of the fixed peeling roller 3. In this embodiment, the swing arm drive mechanism 4.3 is composed of a cylinder. Specifically, one end of the cylinder is hinged to the frame 1, and the other end of the cylinder is hinged to the swing arm 4.1. Of course, the swing arm drive mechanism 4.3 can also be composed of an electric cylinder.
[0041] In one example, such as Figure 3 As shown, the swing arm drive mechanism 4.3 consists of two cylinders, each corresponding to a swing arm 4.1. The cylinders drive the corresponding swing arm 4.1 to rotate, thereby causing the moving stripping roller 4.2 to swing.
[0042] In another example, the swing arm drive mechanism 4.3 consists of a cylinder that drives one of the swing arms 4.1 to rotate, thereby causing the moving stripping roller 4.2 to swing.
[0043] In this embodiment, as Figure 3As shown, a slide block 4.6 and a position adjustment mechanism for driving the slide block 4.6 to move are slidably mounted on the swing arm 4.1. The movable peeling roller 4.2 is rotatably mounted between the slide blocks 4.6 of the pair of swing arms 4.1. Specifically, each swing arm 4.1 is provided with a slide rail, and the slide block 4.6 slides along the slide rail. The position adjustment mechanism drives the slide block 4.6 to slide along the slide rail, thereby adjusting the position of the slide block 4.6, and thus adjusting the position of the movable peeling roller 4.2 between the slide blocks 4.6 of the pair of swing arms 4.1. Different types of transfer metallized paper may require the peeling point to be controlled at different positions during peeling. In this embodiment, in order to adapt to the peeling needs of different types of transfer metallized paper, the position of the movable peeling roller 4.2 is set to be adjustable. Specifically, the position of the slide block 4.6 is adjusted by adjusting the position of the position adjustment mechanism, thereby adjusting the position of the movable peeling roller 4.2, thereby adjusting the contact position between the fixed peeling roller 3 and the movable peeling roller 4.2, and thus adjusting the peeling point position of the transfer metallized paper, so as to better adapt to the peeling needs of different types of transfer metallized paper.
[0044] The specific method by which the position adjustment mechanism drives the slide block 4.6 to slide along the slide rail is as follows. In one embodiment, the swing arm 4.1 extends at an upward and downward inclination. The slide rail extends at an upward and downward inclination, and the slide block 4.6 slides along the upward and downward inclination direction. The position adjustment mechanism includes an adjusting bolt threaded onto the swing arm 4.1, the adjusting bolt being parallel to the sliding direction of the slide block 4.6. The adjusting bolt is located below the slide block 4.6. The slide block 4.6 rests against the end of the adjusting bolt under its own weight. Thus, by tightening or loosening the adjusting bolt, the position of the slide block 4.6 and the moving peeling roller 4.2 can be adjusted, thereby adjusting the contact position between the fixed peeling roller 3 and the moving peeling roller 4.2, and further adjusting the peeling point position of the transferred aluminized paper; its structure is simple and the adjustment operation is convenient.
[0045] In another embodiment, the position adjustment mechanism includes a spring and an adjusting bolt threaded onto the swing arm 4.1. The adjusting bolt is parallel to the sliding direction of the slide 4.6. The slide 4.6 is located between the spring and the adjusting bolt. Under the action of the spring, the slide 4.6 rests against the end of the adjusting bolt. Thus, by tightening or loosening the adjusting bolt, the positions of the slide 4.6 and the moving peeling roller 4.2 can be adjusted, thereby adjusting the contact position between the fixed peeling roller 3 and the moving peeling roller 4.2, and further adjusting the peeling point position of the transferred aluminized paper; its structure is simple and the adjustment operation is convenient.
[0046] In the third embodiment, the position adjustment mechanism is composed of an electric cylinder. Thus, the position of the slide block 4.6 and the moving peeling roller 4.2 can be adjusted using the electric cylinder, thereby adjusting the contact position between the fixed peeling roller 3 and the moving peeling roller 4.2, and further adjusting the peeling point position of the transferred aluminized paper; its structure is simple and the adjustment operation is convenient.
[0047] The specific operation of the peeling device of the slitting machine in this embodiment is as follows. The metallized paper is transferred around the fixed peeling roller 3; The position of the movable peeling roller 4.2 is adjusted by the position adjustment mechanism. Then, the swing arm drive mechanism 4.3 drives the swing arm 4.1 to rotate, so that the movable peeling roller 4.2 abuts against one side of the fixed peeling roller 3, thereby pressing the transfer aluminum-coated paper between the fixed peeling roller 3 and the movable peeling roller 4.2. Subsequently, during the peeling process of the transfer aluminum-coated paper, since the movable peeling roller 4.2 abuts against one side of the fixed peeling roller 3, pressing the transfer aluminum-coated paper between the fixed peeling roller 3 and the movable peeling roller 4.2, the peeling point of the transfer aluminum-coated paper will be restricted to the contact position of the fixed peeling roller 3 and the movable peeling roller 4.2, thereby stably controlling the peeling point position of the transfer aluminum-coated paper, thereby improving the peeling effect and effectively solving the problem that the aluminum layer cannot be completely transferred to the paper due to the uncontrollable position of the peeling point, which affects the peeling effect.
[0048] After the transfer aluminized paper is peeled off, the paper 6 is wound onto the core 2.1 of one winding device 2, and the peeled film 7 is wound onto the core 2.1 of another winding device 2 (the position of the moving peeling roller 4.2 remains unchanged during the peeling process of the transfer aluminized paper).
[0049] Furthermore, such as Figure 1 As shown, a slitting machine peeling device further includes two guide rollers 5 rotatably mounted on the frame 1. The guide rollers 5 are parallel to the fixed peeling roller 3. The guide rollers 5 correspond one-to-one with the winding device 2. The guide rollers 5 are located between the fixed peeling roller 3 and the corresponding winding core 2.1 of the winding device 2. The peeled paper is wound around the corresponding guide roller 5 onto the winding core 2.1 of one winding device 2; the peeled film is wound around the corresponding guide roller 5 onto the winding core 2.1 of another winding device 2. In this way, the running trajectory of the peeled paper and film can be adjusted by the guide rollers 5, so that the peeled paper can be stably wound onto the winding core 2.1 of one winding device 2, and the peeled film can be stably wound onto the winding core 2.1 of another winding device 2.
[0050] Furthermore, a slitting machine peeling device also includes a peeling roller drive mechanism. The peeling roller drive mechanism drives the fixed peeling roller 3 to rotate. In this embodiment, the peeling roller drive mechanism is driven by a motor. During the peeling process of transferring the aluminized paper, driving the fixed peeling roller 3 to rotate through the peeling roller drive mechanism is beneficial for peeling the aluminized paper and improves the peeling effect.
[0051] Furthermore, such as Figure 3 As shown, the frame 1 is equipped with supports 4.4 corresponding to the swing arms 4.1. The supports 4.4 are fixed to the frame 1 by bolts. Each support 4.4 has a support shaft 4.5, and the support shafts 4.5 of the two supports 4.4 are coaxially distributed. The swing arms 4.1 are rotatably mounted on the support shafts 4.5 of their corresponding supports 4.4 via bearings. This facilitates the installation of the swing arms 4.1.
[0052] Furthermore, the cores 2.1 of the two winding devices 2 are distributed on opposite sides of the fixed peeling roller 3. This facilitates the arrangement of the two winding devices 2 and the winding of the peeled paper and film.
[0053] The above description is merely a preferred embodiment of the present utility model and does not constitute any limitation on the present utility model. Any simple modifications, alterations, or equivalent transformations made to the above embodiments based on the technical essence of the present utility model shall still fall within the protection scope of the present utility model.
Claims
1. A slitting machine peeling device, comprising: frame; Two winding devices, each including a rotatably mounted core and a winding motor for driving the core to rotate, wherein the core of one winding device winds paper and the core of the other winding device winds film; characterized in that it further includes: A fixed peeling roller is rotatably mounted on the frame; The peeling assembly includes a pair of swing arms rotatably mounted on a frame, a movable peeling roller rotatably mounted between the pair of swing arms, and a swing arm drive mechanism. The movable peeling roller is parallel to the fixed peeling roller, and the swing arm drive mechanism drives the swing arms to rotate so that the movable peeling roller abuts against one side of the fixed peeling roller.
2. The slitting machine peeling device according to claim 1, characterized in that, It also includes two guide rollers that are rotatably mounted on the frame. The guide rollers are parallel to the fixed peeling rollers and correspond one-to-one with the winding devices. The guide rollers are located between the fixed peeling rollers and the cores of the corresponding winding devices.
3. The slitting machine peeling device according to claim 1, characterized in that, It also includes a peeling roller drive mechanism, which drives the fixed peeling roller to rotate.
4. A slitting machine peeling device according to claim 1, 2, or 3, characterized in that, The swing arm is slidably provided with a slide block and a position adjustment mechanism for driving the slide block to move, and the moving peeling roller is rotatably disposed between the slide blocks of a pair of swing arms.
5. The slitting machine peeling device according to claim 4, characterized in that, The swing arm extends at an angle, and the slide slides along the angle. The position adjustment mechanism includes an adjusting bolt threaded onto the swing arm. The adjusting bolt is parallel to the sliding direction of the slide and is located below the slide. The slide rests against the end of the adjusting bolt under its own weight.
6. The slitting machine peeling device according to claim 4, characterized in that, The position adjustment mechanism is composed of an electric cylinder.
7. A slitting machine peeling device according to claim 1, 2, or 3, characterized in that, The swing arm drive mechanism is composed of a cylinder.
8. A slitting machine peeling device according to claim 1, 2, or 3, characterized in that, The two ends of the moving stripping roller are rotatably mounted between a pair of swing arms via bearings.
9. A slitting machine peeling device according to claim 1, 2, or 3, characterized in that, The frame is provided with supports that correspond one-to-one with the swing arms. Each support has a support shaft, and the swing arms are rotatably mounted on the support shafts of the corresponding supports via bearings.
10. A slitting machine peeling device according to claim 1, 2, or 3, characterized in that, The core is parallel to the fixed peeling roller, and the cores of the two winding devices are distributed on opposite sides of the fixed peeling roller.
Citation Information
Patent Citations
Stripping and slitting machine
CN107986073A