Slicing machine for processing new material glitter powder
By introducing positioning, driving and adjusting structures into the glitter powder processing slicer, precise positioning and individual fixation of the material rolls and quick removal and installation of the slitting blades are achieved, solving the time-consuming, labor-intensive and unsafe problems of material roll fixation and slitting blade replacement, and improving operational efficiency and safety.
Patent Information
- Application Number
- CN202511195956.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-26
- Publication Date
- 2025-09-26
- Estimated Expiration
- 2045-08-26
AI Technical Summary
The existing glitter powder processing slicer has the problems of being time-consuming and labor-intensive, having low precision and poor safety during the process of fixing the material roll and replacing the slitting blade, and is inconvenient to operate.
The new material glitter powder processing slicer adopts a positioning structure, a driving structure, an adjustment structure and an installation structure. The electric push rod and the synchronous belt system are used to realize the precise positioning and individual fixation of the material roll. The electric push rod and the synchronous belt system realize the rapid removal and installation of the slitting blade. The motor drive structure realizes the automatic winding of the material.
It improves the efficiency and safety of material roll fixing and slitting blade replacement, reduces the operator's physical exertion, and ensures cutting consistency and operating comfort.
Smart Images

Figure CN120697101A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of material processing equipment, in particular to a slicer for processing new material glitter powder. Background Art
[0002] During the production process of glitter powder materials, wider materials need to be cut into narrower sheets. Vertical slitting machines are generally used for slicing. An air shaft will be installed at one end of the vertical slitting machine to fix and unwind the material roll. Two air shafts will be installed at the other end of the vertical slitting machine to reel in the slit materials. During the material transportation process, the wider material will be cut into narrower sheets by the slitting blade for subsequent use. The slitting blade will be installed on the knife holder through two bolts and a pressure block, and the knife holder will be installed on the mounting shaft at equal distances.
[0003] However, after the unsliced roll is installed on the air shaft, its position on the air shaft needs to be adjusted first, and then it is fixed by the air shaft. Generally, the operator manually pushes the roll to adjust the position. Since the unsliced roll is heavy, manual adjustment is time-consuming and laborious. At the same time, there is a risk of deviation in manual adjustment, resulting in low adjustment accuracy. In addition, the slitting blade needs to be replaced after a period of use. When replacing, the two screws need to be unscrewed with a wrench, and the operator needs to reach deep into the slicer due to the small operating space. The operation is less comfortable, and the hands may be scratched by the slitting blades if you are not careful, resulting in poor operation safety. If the knife holder is completely removed, it will take a certain amount of time to adjust the position of the knife holder during the subsequent installation process, which is not convenient for the quick replacement of the slitting blades. At the same time, multiple materials will be wound around the same air shaft during winding. When the sliced materials need to be removed, the air shaft must be removed first, and then the multiple material rolls must be removed from the air shaft. Since the air shaft is wrapped with multiple rolls of material and is heavy, it is more physically demanding to operate, and each disassembly and assembly of the air shaft will also waste a certain amount of time. Summary of the Invention
[0004] In view of the problems in the prior art, the present invention provides a slicer for processing a new material glitter powder.
[0005] The technical solution adopted by the present invention to solve the technical problem is: a slicing machine for processing new material glitter powder, comprising a vertical slitting machine body, a positioning structure provided on the vertical slitting machine body, a mounting shaft rotatably connected to the vertical slitting machine body, a slitting structure provided on the mounting shaft, a limiting structure provided on the slitting structure, a positioning structure provided on the vertical slitting machine body, a mounting structure provided on the vertical slitting machine body, a driving structure provided on the vertical slitting machine body, and a second inflatable shaft installed on the vertical slitting machine body; The mounting structure includes a connecting shaft and a rotating plate. Two connecting shafts are fixedly connected to the vertical slitting machine body. Multiple rotating plates are rotatably connected to the connecting shaft. A first pneumatic shaft is rotatably connected to the rotating plate. A slide plate is slidably connected to the rotating plate. A clamping block is fixedly connected to the slide plate. A connecting sleeve is provided on one side of the rotating plate. The connecting sleeve is fixedly connected to the connecting shaft. Four bayonet holes are provided on the connecting sleeve. The clamping block is engaged with one of the bayonet holes on the adjacent connecting sleeve. A second spring is fixedly connected between the slide plate and the rotating plate.
[0006] Specifically, the four bayonet holes are distributed in a circular array about the middle of the connecting sleeve, and the cross-section of the clamping block near one end of the bayonet hole is a trapezoidal structure.
[0007] Specifically, the driving structure includes a second motor and a long shaft. A long shaft is provided on one side of the connecting shaft, and the long shaft is rotatably connected to the vertical slitting machine body. A plurality of first synchronous wheels are fixedly connected to the long shaft, and a plurality of rotating sleeves corresponding to the first synchronous wheels are fixedly connected to the connecting shaft. The first synchronous wheel is fixedly connected to the rotating sleeve, and a first synchronous belt is wound between two adjacent first synchronous wheels. The second synchronous wheel is fixedly connected to the rotating sleeve, and the second synchronous wheel is fixedly connected to the first inflatable shaft, and the same second synchronous belt is wound around two adjacent second synchronous wheels.
[0008] Specifically, the positioning structure includes an electric push rod and a movable plate. Two electric push rods are installed on the vertical slitting machine body. The extended end of the electric push rod is fixedly connected to the movable plate. The movable plate is slidably connected to the guide seat. The guide seat is fixedly connected to the vertical slitting machine body. A guide shaft is fixedly connected to the movable plate. Two connecting plates are fixedly connected to the mounting shaft. The connecting plate is provided with a guide groove with horizontal ends and an inclined middle part. The guide shaft extends to the inside of the guide groove and is slidably connected to the connecting plate.
[0009] Specifically, the slitting structure includes a connecting seat and a positioning protrusion, a plurality of connecting seats are installed on the mounting shaft, the connecting seat is rotatably connected to a block, the connecting seat is rotatably connected to a screw, a fixed handle is threadedly connected to the screw, one end of the fixed handle is in contact with the block, the block is in contact with the mounting shaft, one end of the connecting seat is integrally formed with a positioning protrusion, the positioning protrusion is engaged with the mounting seat, a positioning groove is provided on the mounting seat, a slitting blade is engaged inside the positioning groove, two bolts are threadedly connected to the mounting seat, one end of the two bolts is in contact with one side of the pressure block, and the other side of the pressure block is in contact with the slitting blade.
[0010] Specifically, the entire cross-section of the positioning protrusion is a stepped structure, and the cross-section of one end of the positioning protrusion is a trapezoidal structure.
[0011] Specifically, a cut surface is provided on the installation shaft, and one side of the stop block is in contact with the cut surface.
[0012] Specifically, a limiting structure is provided on the mounting seat, and the limiting structure includes a slider and a clamping rod. Sliders are slidably connected on both sides of the mounting seat, and one end of the two sliders is fixedly connected to the same clamping rod. A clamping groove is provided on the positioning protrusion, and the clamping rod is engaged with the clamping groove. A first spring is fixedly connected between the slider and the mounting seat.
[0013] Specifically, the positioning structure includes a first motor and a driving rod. The driving rod is rotatably connected to the vertical slitting machine body. The first motor is installed on the vertical slitting machine body. The output shaft of the first motor is fixedly connected to one end of the driving rod. A guide column is provided on both sides of the driving rod. The two guide columns are fixedly connected to the vertical slitting machine body. Two push plates are threadedly connected to the driving rod, and the push plates are slidably connected to the two guide columns.
[0014] Specifically, a limiting sleeve is fixedly connected to the guide column, and the two limiting sleeves located on the same guide column are symmetrically distributed about the middle of the guide column. The two push plates are symmetrically distributed about the middle of the drive rod, and the thread directions of the two sections of thread on the drive rod are opposite.
[0015] The beneficial effects of the present invention are: The present invention discloses a new material slicer for processing glitter powder. The mounting structure includes a rotating plate and a first pneumatic shaft. The sliced material can be individually fixed by the first pneumatic shaft. Therefore, when the cut material needs to be disassembled, it only needs to be disassembled individually. This not only saves physical effort, but also avoids repeated disassembly and assembly of the first pneumatic shaft, thereby effectively shortening the operation time and improving the operation efficiency. The driving structure can drive the first pneumatic shaft to rotate, thereby facilitating the winding of the cut material.
[0016] (2) The present invention discloses a new material glitter powder processing slicer, wherein the slitting structure includes a connecting seat, a positioning protrusion, a mounting seat and a slitting blade. The material can be slid by the slitting blade, so that the wider material can be cut into narrower slices. When the slitting blade needs to be disassembled, the positioning protrusion can be quickly released by the limiting structure, and then the mounting seat can be moved to separate it from the positioning protrusion. At this time, the quick disassembly of the mounting seat is completed, and the slitting blade will be disassembled together with the mounting seat, so that the slitting blade can be avoided from being disassembled in a narrow space, which effectively improves the comfort and safety of operation. The mounting shaft can be rotated by the adjustment structure, and the rotation of the mounting shaft can prevent multiple slitting blades from contacting the material, thereby facilitating the laying of the material.
[0017] (3) The slicing machine for processing new material glitter powder described in the present invention can install and fix the new material roll that has not been cut through the first pneumatic shaft. Before the new material roll is fixed, the roll can be quickly and accurately positioned through the positioning structure to avoid deviation in manual position adjustment. At the same time, it can avoid the need to spend a lot of physical strength to push the roll, thereby effectively saving physical strength. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] The present invention will be further described below with reference to the accompanying drawings and examples.
[0019] Figure 1 A schematic diagram of the overall structure of a preferred embodiment of a slicer for processing new material glitter powder provided by the present invention; Figure 2 for Figure 1 An enlarged schematic diagram of part A is shown; Figure 3 for Figure 1 An enlarged schematic diagram of part B is shown; Figure 4 This is a schematic diagram of the connection structure between the connecting shaft and the rotating plate of the present invention; Figure 5 for Figure 4 An enlarged schematic diagram of section C is shown; Figure 6 This is a schematic diagram of the connection structure between the connecting shaft and the connecting sleeve of the present invention; Figure 7 for Figure 6 An enlarged schematic diagram of portion D is shown; Figure 8 This is a schematic diagram of the connection structure between the positioning protrusion and the mounting seat of the present invention; Figure 9 This is a schematic diagram of the connection structure between the slider and the clamping rod of the present invention; Figure 10 This is a schematic diagram of the connection structure between the slide plate and the clamping block of the present invention; Figure 11 It is a schematic diagram of the connection structure between the guide shaft and the connecting plate of the present invention.
[0020] In the figure: 1. Vertical slitting machine body; 2. Positioning structure; 201. First motor; 202. Driving rod; 203. Push plate; 204. Guide column; 205. Limiting sleeve; 3. Slitting structure; 301. Connecting seat; 302. Positioning protrusion; 303. Mounting seat; 304. Positioning slot; 305. Slitting blade; 306. Pressing block; 307. Bolt; 308. Block; 309. Screw; 310. Fixing handle; 4. Limiting structure; 401. Sliding block; 402. Clamping rod; 403. First spring; 404. Clamping slot; 5. Mounting shaft; 6. Cutting surface; 7. Positioning structure Structure; 701, electric push rod; 702, moving plate; 703, guide seat; 704, guide shaft; 705, guide groove; 706, connecting plate; 8, mounting structure; 801, connecting shaft; 802, rotating plate; 803, first inflatable shaft; 804, slide plate; 805, clamping block; 806, second spring; 807, connecting sleeve; 808, bayonet; 9, driving structure; 901, second motor; 902, long shaft; 903, first synchronous wheel; 904, first synchronous belt; 905, rotating sleeve; 906, second synchronous wheel; 907, second synchronous belt; 10, second inflatable shaft. DETAILED DESCRIPTION
[0021] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.
[0022] like Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 8 and Figure 9 As shown, the new material glitter powder processing slicer described in the present invention includes a vertical slitting machine body 1, a positioning structure 2 is provided on the vertical slitting machine body 1, a mounting shaft 5 is rotatably connected to the vertical slitting machine body 1, a slitting structure 3 is provided on the mounting shaft 5, a limiting structure 4 is provided on the slitting structure 3, a positioning structure 7 is provided on the vertical slitting machine body 1, a mounting structure 8 is provided on the vertical slitting machine body 1, a driving structure 9 is provided on the vertical slitting machine body 1, and a second inflatable shaft 10 is installed on the vertical slitting machine body 1; like Figure 1 、 Figure 3 、 Figure 4 、 Figure 5 、 Figure 6 、 Figure 7 and Figure 10As shown, the mounting structure 8 includes a connecting shaft 801 and a rotating plate 802. Two connecting shafts 801 are fixedly connected to the vertical slitting machine body 1. A plurality of rotating plates 802 are rotatably connected to the connecting shaft 801. The rotating plate 802 is rotatably connected to a first inflatable shaft 803. A slide plate 804 is slidably connected to the rotating plate 802. A clamping block 805 is fixedly connected to the slide plate 804. A connecting sleeve 807 is provided on one side of the rotating plate 802. The connecting sleeve 807 is fixedly connected to the connecting shaft 801. Four bayonet holes 808 are provided on the connecting sleeve 807. The clamping block 805 is engaged with one of the bayonet holes 808 on the adjacent connecting sleeve 807. The slide plate 804 is fixedly connected to the rotating plate 802. The second spring 806, the four bayonet holes 808 are distributed in a circular array about the middle of the connecting sleeve 807, the cross section of the block 805 near the bayonet hole 808 is a trapezoidal structure, the driving structure 9 includes a second motor 901 and a long shaft 902, a long shaft 902 is provided on one side of the connecting shaft 801, the long shaft 902 is rotatably connected to the vertical slitting machine body 1, a plurality of first synchronous wheels 903 are fixedly connected to the long shaft 902, a plurality of rotating sleeves 905 corresponding to the first synchronous wheels 903 are fixedly connected to the connecting shaft 801, a first synchronous wheel 903 is fixedly connected to the rotating sleeve 905, a first synchronous belt 904 is wound between two adjacent first synchronous wheels 903, and a first synchronous belt 904 is wound around the rotating sleeve 905. A second synchronous wheel 906 is connected, and a second synchronous wheel 906 is fixedly connected to the first inflatable shaft 803. The two adjacent second synchronous wheels 906 are wound with the same second synchronous belt 907, that is, the slit material can be wound on the first inflatable shaft 803. By setting multiple first inflatable shafts 803, the multiple sheet materials after slit can be wound separately. During the winding process, the second motor 901 can be started, and the output shaft of the second motor 901 rotates to drive the long shaft 902 to rotate. The rotation of the long shaft 902 drives the multiple first synchronous wheels 903 to rotate. The rotation of the first synchronous wheel 903 on the long shaft 902 will drive the first synchronous wheel 903 on the rotating sleeve 905 to rotate through the first synchronous belt 904. The rotation of the first synchronous wheel 903 will drive the rotating sleeve 905 to rotate, and the rotation of the rotating sleeve 905 will drive the second synchronous wheel 906 on it to rotate. The rotation of the second synchronous wheel 906 on the rotating sleeve 905 will drive the second synchronous wheel 906 on the first inflatable shaft 803 to rotate through the second synchronous belt 907, thereby rotating the first inflatable shaft 803. The rotation of the first inflatable shaft 803 will realize the winding of the material. When the winding is completed and the material roll needs to be taken out, it can be done by pulling the slide plate 804. The movement of the slide plate 804 drives the clamping block 805 to move away from the connecting sleeve 807, and the second spring 806 contracts. When the clamping block 805 is not engaged with one of the bayonet holes 808, the rotating plate 802 can be rotated, and the movement of the rotating plate 802 will drive the first inflatable shaft 803 to move.When the rotating plate 802 rotates 90 degrees, the second spring 806 will extend, causing the clamping block 805 to engage with the other clamping hole 808. At this time, if the rotating plate 802 is released, it will not rotate. Since the cross-section of one end of the clamping block 805 is a trapezoidal structure, it can act as a movement guide when it is engaged with the clamping hole 808. Then, the wound roll can be removed from the first inflatable shaft 803. Since one roll is removed at a time, it is more labor-saving and can avoid repeated disassembly and assembly of the first inflatable shaft 803, thereby effectively shortening the operation time and improving the efficiency of the operation.
[0023] Specifically, such as Figure 1 、 Figure 2 、 Figure 8 、 Figure 9 and Figure 11As shown, the positioning structure 7 includes an electric push rod 701 and a movable plate 702. Two electric push rods 701 are installed on the vertical slitting machine body 1. The extended end of the electric push rod 701 is fixedly connected to the movable plate 702. The movable plate 702 is slidably connected to the guide seat 703. The guide seat 703 is fixedly connected to the vertical slitting machine body 1. The movable plate 702 is fixedly connected to a guide shaft 704. Two connecting plates 706 are fixedly connected to the mounting shaft 5. The connecting plate 706 is provided with a guide groove 705 with horizontal ends and an inclined middle portion. The guide shaft 704 extends to the inside of the guide groove 705 and is slidably connected to the connecting plate 706. The slitting structure 3 includes a connecting seat 301 and a positioning protrusion 302, a plurality of connecting seats 301 are installed on the installation shaft 5, and a block 308 is rotatably connected to the connecting seat 301, and a screw 309 is rotatably connected to the connecting seat 301, and a fixed handle 310 is threadedly connected to the screw 309, and one end of the fixed handle 310 conflicts with the block 308, and the block 308 conflicts with the installation shaft 5. A positioning protrusion 302 is integrally formed at one end of the connecting seat 301, and the positioning protrusion 302 is engaged with the mounting seat 303, and a positioning groove 304 is provided on the mounting seat 303, and a slitting blade 305 is engaged inside the positioning groove 304. Two bolts 307 are threadedly connected to the mounting seat 303, and one end of the two bolts 307 is engaged with the pressing block The one side of the described pressing block 306 conflicts with each other, and the other side of the described pressing block 306 conflicts with the slitting blade 305. The cross section of the overall positioning protrusion 302 is a stepped structure, and the cross section of one end of the described positioning protrusion 302 is a trapezoidal structure. The described mounting shaft 5 is provided with a cut surface 6, and one side of the described blocking block 308 fits between the cut surface 6. The described mounting seat 303 is provided with a limiting structure 4, and the limiting structure 4 includes a slider 401 and a clamping rod 402. Both sides of the described mounting seat 303 are slidably connected to the slider 401, and one end of the two described sliders 401 is fixedly connected to the same clamping rod 402. The described positioning protrusion 302 is provided with a card slot 404, and the clamping rod 402 is engaged with the card slot 404. The slider 401 and the mounting seat 303 are connected. The first spring 403 is fixedly connected between the two springs, that is, during the material conveying process, the material can be cut by multiple equidistantly arranged slitting blades 305. When the slitting is completed, the two electric push rods 701 can be started at the same time. The electric push rods 701 extend to drive the movable plate 702 to slide on the guide seat 703. The movement of the movable plate 702 drives the guide shaft 704 to move inside the guide groove 705. When the guide shaft 704 moves at the inclined position in the middle of the guide groove 705, the connecting plate 706 will rotate. The simultaneous rotation of the two connecting plates 706 will drive the installation shaft 5 to rotate. The rotation of the installation shaft 5 will cause the multiple slitting blades 305 to move away from the material until the slitting blades 305 are no longer in contact with the material, thereby facilitating the laying of the next material.When the slitting blade 305 needs to be replaced, the clamping rod 402 can be pulled, and the clamping rod 402 will drive the two sliders 401 to slide on the mounting seat 303. The two first springs 403 will extend at the same time. When the clamping rod 402 is no longer engaged with the clamping slot 404, the mounting seat 303 can be moved to separate it from the positioning protrusion 302. Then the mounting seat 303 can be taken out, and the slitting blade 305 can be taken out together with the mounting seat 303. Then, the two bolts 307 can be twisted off with the Allen wrench, and the pressure block 306 can be moved to have a certain distance between it and the slitting blade 305. Finally, the slitting blade 305 can be taken out from the inside of the positioning slot 304. At this time, the disassembly of the slitting blade 305 is completed. Since the operator does not need to reach into the narrow space inside the vertical slitting machine body 1 to twist the bolt 307 for a long time during disassembly, the operation can be improved. The slitting blade 305 is convenient to install and convenient to operate, and the user can conveniently install the slitting blade 305 by simply pressing the mounting base 303 and the positioning protrusion 302 together. The slitting blade 305 is convenient to install and convenient to operate, and the user can conveniently install the slitting blade 305 by pressing the mounting base 303 and the positioning protrusion 302 together. The slitting blade 305 is convenient to install and convenient to operate, and the user can conveniently install the slitting blade 305 by pressing the mounting base 303 and the positioning protrusion 302 together. The user can conveniently install the slitting blade 305 by pressing the mounting base 303 and the positioning protrusion 302 together. The user can conveniently install the slitting blade 305 by pressing the mounting base 303 and the positioning protrusion 302 together.
[0024] Specifically, such as Figure 1 and Figure 3As shown, the positioning structure 2 includes a first motor 201 and a driving rod 202. The driving rod 202 is rotatably connected to the vertical slitting machine body 1. The first motor 201 is installed on the vertical slitting machine body 1. The output shaft of the first motor 201 is fixedly connected to one end of the driving rod 202. A guide column 204 is provided on both sides of the driving rod 202. The two guide columns 204 are fixedly connected to the vertical slitting machine body 1. Two push plates 203 are threadedly connected to the driving rod 202. , the push plate 203 is slidably connected to the two guide posts 204, the guide posts 204 are fixedly connected to the limiting sleeves 205, the two limiting sleeves 205 on the same guide post 204 are symmetrically distributed about the middle of the guide post 204, the two push plates 203 are symmetrically distributed about the middle of the driving rod 202, and the thread directions of the two sections of the thread on the driving rod 202 are opposite, that is: when the uncut coil is installed on the second inflatable shaft 10, it can be started by starting the first motor 201, the first The rotation of the motor 201 drives the driving rod 202 to rotate, and the rotation of the driving rod 202 will threadably drive the two push plates 203 to move relative to each other. By setting two guide columns 204, the push plates 203 can play a role in guiding the movement. During the relative movement of the two push plates 203, they will contact the material roll to move on the second inflatable shaft 10. When the two push plates 203 simultaneously contact the limiting sleeve 205, the output shaft of the first motor 201 stops rotating. At this time, the precise positioning of the material roll is achieved, avoiding deviation in manual position adjustment, and at the same time avoiding the need to spend a lot of physical effort to push the material roll, thereby effectively saving physical effort. The position of the push plate 203 can be limited by the limiting sleeve 205. Since the distance between the two limiting sleeves 205 on the same guide column 204 is just equal to the width of the material roll, it can avoid that the two push plates 203 are too close to each other and damage the material roll, thereby effectively improving the safety of use. When the material roll is positioned, the two push plates 203 can be reset, and then the material roll can be fixed by the second inflatable shaft 10.
[0025] When the present invention is in use, after the uncut roll is mounted on the second inflatable shaft 10, the first motor 201 can be started, and the rotation of the first motor 201 drives the driving rod 202 to rotate. The rotation of the driving rod 202 will threadably drive the two push plates 203 to move relative to each other. By providing two guide posts 204, the push plates 203 can play a role in guiding the movement. During the relative movement of the two push plates 203, the roll will contact the movement of the material on the second inflatable shaft 10. When the two push plates 203 contact the limiting sleeve 205 at the same time, the output shaft of the first motor 201 stops rotating. At this time, the precise positioning of the roll is achieved, avoiding deviation in manual position adjustment, and avoiding the need to spend a lot of physical effort to push the roll, thereby effectively saving physical effort. The positioning sleeve 205 can limit the position of the push plate 203. Since the distance between the two limiting sleeves 205 on the same guide column 204 is just equal to the width of the material roll, it can avoid the two push plates 203 being too close to each other and damaging the material roll, thereby effectively improving the safety of use. When the material roll is positioned, the two push plates 203 can be reset, and then the material roll can be fixed by the second inflatable shaft 10. Then the material can be laid. After the material is laid, the material can be transported. During the material transportation process, the material can be cut by multiple equidistantly arranged slitting blades 305. By setting multiple first inflatable shafts 803, the multiple sheet materials after cutting can be wound separately. In the process of winding, the second inflatable shaft 10 can be started to The output shafts of the motor 901 and the second motor 901 rotate to drive the long shaft 902 to rotate, and the rotation of the long shaft 902 drives multiple first synchronous wheels 903 to rotate. The rotation of the first synchronous wheel 903 on the long shaft 902 drives the first synchronous wheel 903 on the rotating sleeve 905 to rotate through the first synchronous belt 904. The rotation of the first synchronous wheel 903 on the rotating sleeve 905 drives the rotating sleeve 905 to rotate. The rotation of the rotating sleeve 905 drives the second synchronous wheel 906 thereon to rotate. The rotation of the second synchronous wheel 906 on the rotating sleeve 905 drives the second synchronous wheel 906 on the first inflatable shaft 803 to rotate through the second synchronous belt 907, thereby rotating the first inflatable shaft 803. The rotation of the first inflatable shaft 803 will realize the winding of the material. When the winding is completed, the material roll needs to be taken out. By pulling the slide plate 804, the movement of the slide plate 804 drives the block 805 to move away from the connecting sleeve 807, and the second spring 806 contracts. When the block 805 is not engaged with one of the bayonet holes 808, the rotating plate 802 can be rotated, and the movement of the rotating plate 802 will drive the first inflatable shaft 803 to move. When the rotating plate 802 is rotated ninety degrees, the second spring 806 will extend to engage the block 805 with the other bayonet hole 808. At this time, the rotating plate 802 is released and it will not rotate. Since the cross-section of one end of the block 805 is a trapezoidal structure, it can play a role in guiding the movement when it is engaged with the bayonet hole 808. Then the rolled material roll can be removed from the first inflatable shaft 803. Since one material roll is removed separately at a time, it is more labor-saving.At the same time, it can avoid repeated disassembly and assembly of the first inflatable shaft 803, thereby effectively shortening the operation time and improving the operation efficiency; When the cutting is completed, the two electric push rods 701 can be started at the same time. The electric push rod 701 extends and drives the movable plate 702 to slide on the guide seat 703. The movement of the movable plate 702 drives the guide shaft 704 to move inside the guide groove 705. When the guide shaft 704 moves at the inclined position in the middle of the guide groove 705, the connecting plate 706 will rotate. The simultaneous rotation of the two connecting plates 706 will drive the installation shaft 5 to rotate. The rotation of the installation shaft 5 will cause the multiple slitting blades 305 to move away from the material until the slitting blades 305 are no longer in contact with the material. This makes it convenient to lay the material next time. When the blade 305 is replaced, the clamping rod 402 can be pulled, and the clamping rod 402 will drive the two sliders 401 to slide on the mounting seat 303. The two first springs 403 will extend at the same time. When the clamping rod 402 is no longer engaged with the clamping groove 404, the mounting seat 303 can be moved to separate it from the positioning protrusion 302. Then the mounting seat 303 can be taken out, and the slitting blade 305 will be taken out together with the mounting seat 303. Then, the two bolts 307 can be twisted off with the Allen wrench, and the pressing block 306 can be moved to have a certain distance between it and the slitting blade 305. Finally, the slitting blade 305 can be removed from The inside of the positioning groove 304 is taken out, and the disassembly of the slitting blade 305 is completed. Since the operator can avoid having to put his body into the narrow space inside the vertical slitting machine body 1 to twist the bolt 307 for a long time during disassembly, the comfort of operation can be improved, and the risk of the operator's hand being scratched by the slitting blade 305 is also reduced, thereby improving the safety of operation. Since the position of the connecting seat 301 has not changed, during the installation of the slitting blade 305, it is only necessary to engage the mounting seat 303 with the positioning protrusion 302, so that quick installation can be achieved. The fixed handle 310 can prevent it from interfering with the stop block 308, and then the position of the connecting seat 301 on the mounting shaft 5 can be adjusted. After the position adjustment of the connecting seat 301 is completed, the fixed handle 310 can be rotated in the opposite direction. When one end of the fixed handle 310 is pressed against the stop block 308, one side of the stop block 308 will fit between the cutting surface 6, thereby avoiding the change in the direction of the connecting seat 301 after the position adjustment. At the same time, the fit between the stop block 308 and the cutting surface 6 can make multiple slitting blades 305 at the same angle, thereby ensuring the consistency of cutting. The slit material can be wound on the first inflatable shaft 803.
[0026] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the invention can be embodied in other specific forms without departing from the spirit or essential characteristics of the invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be included therein. Any reference sign in a claim should not be construed as limiting the claim to which it relates.
[0027] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.
Claims
1. A new material glitter powder processing slicer, characterized in that, The vertical slitting machine comprises a body (1), a mounting shaft (5) rotatably connected to the body (1), a slitting structure (3) provided on the mounting shaft (5), a mounting structure (8) provided on the body (1), a driving structure (9) provided on the body (1), and a second pneumatic shaft (10) installed on the body (1); The mounting structure (8) comprises a connecting shaft (801) and a rotating plate (802), two connecting shafts (801) are fixedly connected to the vertical slitting machine body (1), a plurality of rotating plates (802) are rotatably connected to the connecting shaft (801), a first inflatable shaft (803) is rotatably connected to the rotating plate (802), a slide plate (804) is slidably connected to the rotating plate (802), a clamping block (805) is fixedly connected to the slide plate (804), a connecting sleeve (807) is provided on one side of the rotating plate (802), the connecting sleeve (807) is fixedly connected to the connecting shaft (801), four bayonet holes (808) are provided on the connecting sleeve (807), the clamping block (805) is engaged with one of the bayonet holes (808) on the adjacent connecting sleeve (807), and a second spring (806) is fixedly connected between the slide plate (804) and the rotating plate (802).
2. A new material glitter powder processing slicer according to claim 1, characterized in that: The four bayonet holes (808) are distributed in a circular array about the middle of the connecting sleeve (807), and the cross-section of the clamping block (805) close to one end of the bayonet hole (808) is a trapezoidal structure.
3. The new material glitter powder processing slicer according to claim 1, characterized in that: The driving structure (9) comprises a second motor (901) and a long shaft (902). The long shaft (902) is provided on one side of the connecting shaft (801). The long shaft (902) is rotatably connected to the vertical slitting machine body (1). A plurality of first synchronous wheels (903) are fixedly connected to the long shaft (902). A plurality of rotating sleeves (905) corresponding to the first synchronous wheels (903) are fixedly connected to the connecting shaft (801). The first synchronous wheels (903) are fixedly connected to the rotating sleeves (905). A first synchronous belt (904) is wound between two adjacent first synchronous wheels (903). A second synchronous wheel (906) is fixedly connected to the rotating sleeves (905). The second synchronous wheel (906) is fixedly connected to the first inflatable shaft (803). The same second synchronous belt (907) is wound around two adjacent second synchronous wheels (906).
4. The new material glitter powder processing slicer according to claim 1, characterized in that: The slitting structure (3) is provided with a limiting structure (4), and the vertical slitting machine body (1) is provided with a positioning structure (7), the positioning structure (7) comprising an electric push rod (701) and a movable plate (702), two electric push rods (701) are installed on the vertical slitting machine body (1), the extended end of the electric push rod (701) is fixedly connected to the movable plate (702), the movable plate (702) is slidably connected to the guide seat (703), the guide seat (703) is fixedly connected to the vertical slitting machine body (1), the movable plate (702) is fixedly connected to the guide shaft (704), and two connecting plates (706) are fixedly connected to the mounting shaft (5), the connecting plate (706) is provided with a guide groove (705) with two ends horizontal and a middle portion inclined, and the guide shaft (704) extends into the inside of the guide groove (705) and is slidably connected to the connecting plate (706).
5. The new material glitter powder processing slicer according to claim 1, characterized in that: The slitting structure (3) comprises a connecting seat (301) and a positioning protrusion (302), a plurality of connecting seats (301) are mounted on the mounting shaft (5), a stop block (308) is rotatably connected to the connecting seat (301), a screw rod (309) is rotatably connected to the connecting seat (301), a fixed handle (310) is threadedly connected to the screw rod (309), one end of the fixed handle (310) is in contact with the stop block (308), the stop block (308) is in contact with the mounting shaft (5), and the connecting seat A positioning protrusion (302) is integrally formed at one end of (301), and the positioning protrusion (302) is engaged with the mounting seat (303). The mounting seat (303) is provided with a positioning groove (304), and a slitting blade (305) is engaged inside the positioning groove (304). Two bolts (307) are threadedly connected to the mounting seat (303), and one end of the two bolts (307) is in conflict with one side of the pressing block (306), and the other side of the pressing block (306) is in conflict with the slitting blade (305).
6. The new material glitter powder processing slicer according to claim 5, characterized in that: A cut surface (6) is provided on the installation shaft (5), and one side of the stop block (308) is in contact with the cut surface (6).
7. The new material glitter powder processing slicer according to claim 5, characterized in that: A limiting structure (4) is provided on the mounting seat (303), and the limiting structure (4) includes a slider (401) and a clamping rod (402). Both sides of the mounting seat (303) are slidably connected to the sliders (401), and one end of the two sliders (401) is fixedly connected to the same clamping rod (402). A clamping groove (404) is provided on the positioning protrusion (302), and the clamping rod (402) is engaged with the clamping groove (404). A first spring (403) is fixedly connected between the slider (401) and the mounting seat (303).
8. The new material glitter powder processing slicer according to claim 1, characterized in that: The vertical slitting machine body (1) is provided with a positioning structure (2), the positioning structure (2) comprises a first motor (201) and a driving rod (202), the driving rod (202) is rotatably connected to the vertical slitting machine body (1), the first motor (201) is mounted on the vertical slitting machine body (1), the output shaft of the first motor (201) is fixedly connected to one end of the driving rod (202), a guide column (204) is provided on both sides of the driving rod (202), the two guide columns (204) are fixedly connected to the vertical slitting machine body (1), two push plates (203) are threadedly connected to the driving rod (202), and the push plates (203) are slidably connected to the two guide columns (204).
9. The new material glitter powder processing slicer according to claim 8, characterized in that: A limiting sleeve (205) is fixedly connected to the guide column (204), and the two limiting sleeves (205) located on the same guide column (204) are symmetrically distributed about the middle of the guide column (204). The two push plates (203) are symmetrically distributed about the middle of the driving rod (202), and the thread directions of the two sections of threads on the driving rod (202) are opposite.
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