Semi-finished product cutting processing device for color master batch processing
By designing a semi-finished product cutting and processing device for color masterbatch processing, the problem of recycling large-sized color masterbatch in traditional devices has been solved, and automated cutting and angle adjustment have been achieved, improving production efficiency and resource utilization.
Patent Information
- Application Number
- CN202411137311.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-19
- Publication Date
- 2026-03-03
AI Technical Summary
Traditional masterbatch cutting devices cannot effectively recycle and reuse larger masterbatch particles, resulting in resource waste.
A semi-finished product cutting and processing device was designed, which includes a housing assembly, a transport mechanism, a cutting mechanism, and a power mechanism. Through the cooperation of the sliding assembly and the cutting assembly, the device can automatically cut and adjust the angle of masterbatch of different sizes, ensuring cutting efficiency and continuity.
This enables the effective recycling and utilization of large-sized masterbatch particles, improving production efficiency and resource utilization.
Smart Images

Figure CN121589937A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of color masterbatch processing technology, specifically to a semi-finished product cutting and processing device for color masterbatch processing. Background Technology
[0002] Masterbatch cutting equipment is used to produce various plastic products, such as plastic sheets, pipes, and profiles. Precise cutting of the masterbatch ensures the uniformity and consistency of color in the plastic products. During the plastic injection molding process, the masterbatch cutting equipment can precisely add the masterbatch to the molten plastic to create injection-molded products with various colors and textures.
[0003] Traditional equipment is only suitable for cutting small masterbatch particles. In the manufacturing of large plastic pipes, industrial storage tanks, and other large plastic products, larger masterbatches are used to improve production efficiency. However, when there are surplus large masterbatches, they are not properly recycled. Summary of the Invention
[0004] To address the shortcomings of existing technologies, this invention provides a semi-finished product cutting and processing device for color masterbatch processing, which solves the problem of traditional methods that do not recycle larger color masterbatch particles.
[0005] To achieve the above objectives, the present invention provides the following technical solution: a semi-finished product cutting and processing device for color masterbatch processing, comprising: The outer shell assembly includes a feeding plate and a comb plate at the upper end of the feeding plate. The comb plate cooperates with the feeding plate to allow the cut master material to fall automatically. The outer shell assembly provides support. A transport mechanism is provided on one side of the upper end of the housing assembly. The transport mechanism includes two transport components. The two transport components transport the masterbatch to the cutting position. A sliding component is provided at the lower end of the transport component. The two sliding components adjust the distance between the transport components. A cutting mechanism is disposed on the upper side of the housing assembly. The cutting mechanism includes a cutting component that cuts the masterbatch conveyed by the transport mechanism. Two rotating components are disposed on the middle of both sides of the cutting component. A power mechanism is fixedly connected to the housing assembly on one side. The power mechanism adjusts the cutting angle of the cutting mechanism so that the cutting assembly can cut the masterbatch at different angles.
[0006] Preferably, the outer shell assembly includes a feeding plate, with a main shell fixedly connected to both sides of the feeding plate, an upper plate fixedly connected to the upper end of the main shell, a plurality of arc-shaped slide rails provided on the upper plate, two upper fixing plates fixedly connected to both sides of the upper end of the upper plate, a plurality of arc-shaped slide rails provided on the two upper fixing plates, a combing plate provided at the upper end of the feeding plate, an upper plate fixedly connected to both ends of the combing plate, and a plurality of cross grooves provided on one side of the upper end of the upper plate.
[0007] Preferably, the transport mechanism includes a transport component, and a sliding component is provided at the lower end of the transport component, the sliding component being disposed inside the main shell.
[0008] Preferably, the sliding assembly includes a motor, the output end of which is fixedly connected to a positive and negative threaded rod, the motor wall is fixedly connected to one side of the main housing, a positive slider is threadedly connected to the positive and negative threaded rod, a negative slider is threadedly connected to the positive and negative threaded rod, and two rollers are slidably connected to both sides of the negative slider, the two rollers being slidably connected to the positive slider.
[0009] Preferably, the transport component includes a second motor, the output end of which is fixedly connected to a first gear, a plurality of second rollers are fixedly connected to the middle of the first gear, the plurality of second rollers are rotatably connected to a first slider, the plurality of second rollers are rotatably connected to the first roller, a plurality of third sliders are fixedly connected to the middle of the plurality of second rollers, the plurality of third sliders are slidably connected to a first cross groove, the plurality of second rollers are slidably connected to the two side walls of the first cross groove, a plurality of first rotating heads are fixedly connected to the upper ends of the plurality of second rollers, two masterbatch bodies are provided on one side of the plurality of first rotating heads, a second rotating head is provided between the two masterbatch bodies, and the bottom end of the second rotating head is fixedly connected to the upper plate.
[0010] Preferably, the cutting mechanism includes a rotating component, a cutting component is disposed in the middle of the rotating component, the cutting component is disposed at the upper end of the main shell, and one end of the rotating component is disposed on one side of the upper fixed plate.
[0011] Preferably, the rotating assembly includes two sliding plates, each with a second sliding groove. Two sliding pillars are provided on one side of each sliding plate, and the two sliding pillars are slidably connected to multiple arc-shaped slide rails. A roller is fixedly connected to the middle of one sliding pillar, and the roller is rotatably connected to an upper fixed plate. A motor is fixedly connected to the middle of the other sliding pillar, and the motor wall is fixedly connected to the upper fixed plate. The output end of the motor is fixedly connected to a roller on the upper side.
[0012] Preferably, the cutting assembly includes a cutter, the two sides of which are slidably connected to a slide groove 2. Two racks are fixedly connected to both ends of one side of the cutter. Multiple half gears are meshed with one side of the two racks. Multiple rollers 4 are fixedly connected to one end of the multiple rollers 4. Multiple gears 2 are fixedly connected to one end of one side of the multiple rollers 4. The gears 2 on one side are meshed with each other. One end of the multiple rollers 4 is rotatably connected to one side of multiple slide plates. One side of the rollers 4 is rotatably connected to one side of a slide column plate.
[0013] Preferably, one side of the power mechanism is fixedly connected to the upper fixed plate, and the middle part of the power mechanism is fixedly connected to the roller three.
[0014] Preferably, the power mechanism includes a protective shell, which is fixedly connected to one side of the upper fixed plate. A second lead screw is rotatably connected to one side of the upper end of the protective shell. A throttle is fixedly connected to the upper part of the second lead screw. A disc is meshed with the bottom end of the second lead screw. One end of the disc is rotatably connected to the protective shell. A third bevel gear is fixedly connected to the middle of the disc. A fourth bevel gear is meshed with one side of the third bevel gear. One end of the fourth bevel gear is rotatably connected to a first rotating shaft, which is fixedly connected to the protective shell. One end of the fourth bevel gear is fixedly connected to a third roller on one side.
[0015] This invention provides a semi-finished product cutting and processing device for color masterbatch processing. It has the following beneficial effects: 1. In this invention, the rotation of motor one in the sliding assembly of the transport mechanism drives the rotation of positive and negative threaded rod one, causing positive slider one and negative slider two. The negative slider two drives roller two, slider three and motor two to move to both sides, so that the device can transport masterbatch of different widths.
[0016] 2. In this invention, the third motor drives the second gear in the cutting component of the cutting mechanism to rotate, the second gear drives the half gear to rotate, the half gear drives the rack to move up and down, the rack drives the cutter to move up and down, and the cutter can cut the masterbatch, which is convenient for subsequent processing and makes reasonable use of the masterbatch.
[0017] 3. In this invention, the rotation of the lead screw in the power mechanism drives the auger, the rotation of the auger drives the bevel gear three to rotate, the rotation of the bevel gear three drives the bevel gear four to rotate, and the rotation of the bevel gear four drives the cutting mechanism to rotate, so that the cutter can cut the masterbatch at different angles. Attached Figure Description
[0018] Figure 1 This is a perspective view of the present invention; Figure 2 This is a partial schematic diagram of the present invention; Figure 3 This is an overall schematic diagram of the housing assembly of the present invention; Figure 4 This is a schematic diagram showing the overall disassembly of the housing assembly of the present invention; Figure 5 This is a cross-sectional schematic diagram of the power mechanism of the present invention; Figure 6 This is an overall schematic diagram of the transportation mechanism of the present invention; Figure 7 This is an overall schematic diagram of the cutting mechanism of the present invention; Figure 8 This is a schematic diagram showing the overall disassembly of the cutting mechanism of the present invention; Figure 9 This is a schematic diagram showing the overall disassembly of the cutting assembly of the present invention; Figure 10 This is an overall schematic diagram of the power mechanism of the present invention; Figure 11 This is a schematic diagram showing the overall disassembly of the power mechanism of the present invention.
[0019] Among them, 100, outer shell assembly; 101, main shell; 102, upper fixing plate; 103, arc-shaped slide rail; 104, upper plate; 105, material feeding plate one; 106, cross slide groove one; 107, comb plate; 200, transport mechanism; 210, sliding assembly; 211, positive slider one; 212, roller one; 213, motor one; 214, positive and negative threaded rod one; 215, negative slider two; 220, transport assembly; 221, color masterbatch body; 222, rotating head one; 223, slider three; 224, gear one; 225, roller two; 2 26. Motor II; 227. Rotating Head II; 300. Cutting Mechanism; 310. Rotating Assembly; 311. Sliding Plate; 312. Roller III; 313. Slide Plate; 314. Slide Groove II; 315. Motor III; 320. Cutting Assembly; 321. Cutter; 322. Rack; 323. Gear II; 324. Half Gear; 325. Roller IV; 400. Power Mechanism; 401. Protective Shell; 402. Throttle; 403. Lead Screw II; 404. Dial Plate; 405. Bevel Gear III; 406. Bevel Gear IV; 407. Rotating Shaft I. Detailed Implementation
[0020] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0021] Please see the appendix Figure 1 - Appendix Figure 11 This invention provides a semi-finished product cutting and processing device for color masterbatch processing, comprising: The outer shell assembly 100 includes a feeding plate 105, and a comb plate 107 is provided at the upper end of the feeding plate 105. The comb plate 107 cooperates with the feeding plate 105 to make the cut master material fall automatically, and the outer shell assembly 100 plays a supporting role. The transport mechanism 200 is located on the upper side of the housing assembly 100. The transport mechanism 200 includes two transport components 220. The two transport components 220 transport the masterbatch to the cutting position. The lower end of the transport components 220 is provided with a sliding component 210. The two sliding components 210 adjust the distance between the transport components 220. The outer casing assembly 100 provides support, and the feed plate 105 slopes downwards to ensure smooth material discharge. The comb plate 107 provides a cutting position, and its two sides also slope downwards to ensure that the cut masterbatch can slide smoothly onto the feed plate 105. The transport mechanism 200 transports the masterbatch to the cutting point, and the transport component 220 can squeeze and rotate to convey the masterbatch to the cutting point. The sliding component 210 can drive the transport component 220 to move, allowing the transport component 220 to squeeze and hold masterbatch of more sizes to achieve the purpose of transport.
[0022] A cutting mechanism 300 is disposed on the upper side of the housing assembly 100. The cutting mechanism 300 includes a cutting component 320, which cuts the master material conveyed by the transport mechanism 200. Two rotating components 310 are disposed on the middle of both sides of the cutting component 320. The power mechanism 400 is fixedly connected to the housing assembly 100 on one side. The power mechanism 400 adjusts the cutting angle of the cutting mechanism 300 so that the cutting assembly 320 can cut the masterbatch at different angles.
[0023] The cutting mechanism 300 cuts the masterbatch transported by the transport component 220. The cutting component 320 allows for reciprocating cutting to ensure continuous cutting. The power mechanism 400, in cooperation with the rotating component 310, enables the cutting component 320 to rotate at a certain angle, ensuring that the cutting component 320 can cut the masterbatch into small pieces with different cross-sectional areas, which is beneficial for subsequent heating and replasticization.
[0024] Please see the appendix Figure 1 - Appendix Figure 5The outer casing assembly 100 includes a feed plate 105, with a main casing 101 fixedly connected to both sides of the feed plate 105. An upper plate 104 is fixedly connected to the upper end of the main casing 101. Multiple arc-shaped slide rails 103 are provided on the upper plate 104. Two upper fixing plates 102 are fixedly connected to both sides of the upper end of the upper plate 104. Multiple arc-shaped slide rails 103 are provided on the two upper fixing plates 102. A comb plate 107 is provided at the upper end of the feed plate 105. The upper plate 104 is fixedly connected to both ends of the comb plate 107. Multiple cross grooves 106 are provided on one side of the upper end of the upper plate 104.
[0025] The outer casing assembly 100 provides support, and the feed plate 105 ensures that the cut material can slide smoothly down to the comb plate 107, avoiding interference with the next cutting step. One end of the comb plate 107 faces downwards, allowing the cut material falling from the feed plate 105 to be smoothly discharged and easily collected. The upper plate 104 provides a sliding location for the transport mechanism 200 and supports the transport assembly 220. The upper fixed plate 102 supports the power mechanism 400 and provides a sliding guide for the cutting mechanism 300. The arc-shaped slide rail 103 provides a sliding location for the cutting mechanism 300.
[0026] Please see the appendix Figure 6 The transport mechanism 200 includes a transport component 220, and a sliding component 210 is provided at the lower end of the transport component 220. The sliding component 210 is located inside the main housing 101.
[0027] The transport mechanism 200 can transport the masterbatch, allowing it to enter the cutting position for cutting. The transport component 220 can compress the masterbatch, ensuring its smooth transport to the cutting position and maintaining the continuity of cutting. The sliding component 210 ensures that the transport component 220 can move, allowing it to compress the masterbatch and achieve the purpose of transport.
[0028] The sliding assembly 210 includes a motor 213, the output end of which is fixedly connected to a positive and negative threaded rod 214. The motor wall is fixedly connected to one side of the main housing 101. A positive slider 211 is threadedly connected to the positive and negative threaded rod 214, and a negative slider 215 is threadedly connected to the positive and negative threaded rod 214. Two rollers 212 are slidably connected to both sides of the negative slider 215, and the two rollers 212 are slidably connected to the positive slider 211.
[0029] The rotation of motor 213 drives the rotation of the positive and negative threaded rod 214. Because the positive and negative threaded rod 214 is threadedly connected to the reverse slider 215 and the positive slider 211 with opposite thread directions, the reverse slider 215 and the positive slider 211 will move in opposite directions, allowing the transport component 220 to compress the masterbatch. Roller 212 engages with the main housing 101, and slidably connects the reverse slider 215 and the positive slider 211, allowing them to slide on it. Roller 212 supports the sliding component 210 and the transport component 220. The movement of the reverse slider 215 and the positive slider 211 will drive the movement of the transport component 220.
[0030] The transport component 220 includes a second motor 226. A gear 224 is fixedly connected to the output end of the second motor 226. A plurality of rollers 225 are fixedly connected to the middle of the gear 224. The plurality of rollers 225 are rotatably connected to a first slider 211 and a first roller 212. A plurality of third sliders 223 are fixedly connected to the middle of the plurality of rollers 225. The plurality of third sliders 223 are slidably connected to a first cross groove 106. The plurality of rollers 225 are slidably connected to the two side walls of the first cross groove 106. A plurality of rotating heads 222 are fixedly connected to the upper end of the plurality of rollers 225. Two color masterbatch bodies 221 are provided on one side of the plurality of rotating heads 222. A rotating head 227 is provided between the two color masterbatch bodies 221. The bottom end of the rotating head 227 is fixedly connected to the upper plate 104.
[0031] Rotating head 222 can rotate, pressing against the color masterbatch 221 to ensure its movement and continuous cutting. Slider 3 223 ensures that rotating head 222 rotates and moves stably on the upper plate 104. Gear 1 224 makes the rotating head 222 and the upper plate 104 more tightly locked, preventing rotating head 222 from moving due to pressing the color masterbatch 221 and affecting the rotational connection between the conveying roller 225 and the positive slider 1 211 and the negative slider 215, ensuring the normal rotation of rotating head 222. Motor 226 provides power for the rotation of rotating head 222 on one side, ensuring that rotating head 222 can rotate and drive the color masterbatch 221. One side of rotating head 227 is smoother, ensuring that rotating head 222 can drive the color masterbatch 221 to move when it rotates and presses the color masterbatch 221.
[0032] Please see the appendix Figure 7 - Appendix Figure 9 The cutting mechanism 300 includes a rotating component 310, a cutting component 320 is provided in the middle of the rotating component 310, the cutting component 320 is provided on the upper end of the main shell 101, and one end of the rotating component 310 is provided on one side of the upper fixed plate 102.
[0033] The cutting mechanism 300 cuts the masterbatch material. The rotating component 310, in conjunction with the power mechanism 400, can adjust the cutting angle of the cutting component 320. The cutting component 320 can reciprocate to cut the masterbatch material 221.
[0034] The rotating assembly 310 includes two slide plates 313. Two slide grooves 314 are provided on the two slide plates 313. Two sliding pillar plates 311 are provided on one side of the two slide plates 313. The two sliding pillar plates 311 are slidably connected to multiple arc-shaped slide rails 103. A roller 312 is fixedly connected to the middle of one side of the sliding pillar plate 311. The roller 312 is rotatably connected to the upper fixed plate 102. A motor 315 is fixedly connected to the middle of the other side of the sliding pillar plate 311. The motor wall is fixedly connected to the upper fixed plate 102. The output end of the motor 315 is fixedly connected to a roller 425 on the upper side.
[0035] The sliding plate 313 provides a location for the interaction of the cutter 321. The cutter 321 slides on the second slide groove 314, which can limit the cutter 321. The sliding plate 311 can slide on the arc-shaped slide rail 103 to ensure that the cutter 321 will slide stably to cut the masterbatch 221. The cutting mechanism 300 will rotate around the roller 312 as the center. The motor 315 provides power for the cutter 321 to move up and down.
[0036] The cutting assembly 320 includes a cutter 321, with both sides of the cutter 321 slidably connected to the slide groove 314. Two racks 322 are fixedly connected to both ends of one side of the cutter 321. Multiple half gears 324 are meshed on one side of the two racks 322. Multiple rollers 325 are fixedly connected to the multiple half gears 324. Multiple gears 323 are fixedly connected to one end of the multiple rollers 325. Two gears 323 are meshed on one side. One end of the multiple rollers 325 is rotatably connected to one side of multiple slide plates 313. One side of the rollers 325 is rotatably connected to one side of the slide column plate 311.
[0037] The cutter 321 cuts the masterbatch 221. Under the rotation of the motor 315, the gear 2 323 rotates, which drives the half gear 324 to rotate. The gear 2 323 drives the lower gear 2 323 to rotate, which in turn drives the lower half gear 324 to rotate. Since the upper half gear 324 and the lower half gear 324 rotate in opposite directions, the cutter 321 will make a reciprocating motion, which can continuously cut the masterbatch 221.
[0038] Please see the appendix Figure 10 - Appendix Figure 11 The power mechanism 400 is fixedly connected to the upper fixed plate 102 on one side, and the middle part of the power mechanism 400 is fixedly connected to the roller 312.
[0039] The power mechanism 400 is fixedly connected to the upper fixed plate 102 on one side, and the middle part of the power mechanism 400 is fixedly connected to the roller 312 to ensure the stability of the power mechanism 400.
[0040] The power mechanism 400 includes a protective shell 401, which is fixedly connected to one side of the upper fixed plate 102. A second lead screw 403 is rotatably connected to one side of the upper end of the protective shell 401. A throttle 402 is fixedly connected to the upper part of the second lead screw 403. A disc 404 is meshed with the bottom end of the second lead screw 403. One end of the disc 404 is rotatably connected to the protective shell 401. A third bevel gear 405 is fixedly connected to the middle of the disc 404. A fourth bevel gear 406 is meshed with one side of the third bevel gear 405. One end of the fourth bevel gear 406 is rotatably connected to a first rotating shaft 407, which is fixedly connected to the protective shell 401. One end of the fourth bevel gear 406 is fixedly connected to a third roller 312 on one side.
[0041] The protective shell 401 can serve as a seal. Rotating the handle 402 causes the lead screw 403 to rotate, which in turn causes the disc 404 to rotate. The disc 404 then causes the bevel gear 405 to rotate, which in turn causes the bevel gear 406 to rotate. The bevel gear 406 then causes the cutting mechanism 300 to rotate, thus tilting the cutting mechanism 300.
[0042] Working principle: For the whole system, turning on motor 1 (213) causes it to rotate, driving the positive and negative threaded rods 1 (214) to rotate. The rotation of the positive and negative threaded rods 1 (214) causes the positive slider 1 (211) and the negative slider 2 (215) to slide to both sides. This sliding of the negative slider 2 (215) and the positive slider 1 (211) to slide to both sides causes the rotating head 1 (222) to slide to both sides, ensuring that the rotating head 1 (222) can clamp more of the masterbatch material 221. Turning on motor 3 (315) causes it to rotate. Under the rotation of motor 3 (315), gear 2 (323) rotates, driving the half gear 324 to rotate. Gear 2 (323) drives the lower gear 2 (323) to rotate, which in turn drives the lower half gear 324 to rotate. Because the upper half gear... The wheel 324 rotates in the opposite direction to the lower half gear 324, so the cutter 321 will make a reciprocating motion, which can continuously cut the masterbatch 221. The cutter 321 slides on the second slide groove 314, which can limit the cutter 321. The slide plate 311 can slide on the arc-shaped slide rail 103 to ensure that the cutter 321 will slide stably to cut the masterbatch 221. The cutting mechanism 300 will rotate around the roller 312 as the center, and the motor 315 provides power for the cutter 321 to move up and down. The protective shell 401 can serve as a seal. Rotating the handle 402 causes the lead screw 403 to rotate, which in turn causes the disc 404 to rotate. The disc 404 then causes the bevel gear 405 to rotate, which in turn causes the bevel gear 406 to rotate. The bevel gear 406 then causes the cutting mechanism 300 to rotate, thus tilting the cutting mechanism 300.
[0043] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A semi-finished product cutting and processing device for color masterbatch processing, characterized in that, include: The outer shell assembly (100) includes a feeding plate (105), and a comb plate (107) is provided at the upper end of the feeding plate (105). The comb plate (107) cooperates with the feeding plate (105) to make the cut master material fall automatically. The outer shell assembly (100) plays a supporting role. A transport mechanism (200) is disposed on one side of the upper end of the housing assembly (100). The transport mechanism (200) includes two transport components (220). The two transport components (220) transport the masterbatch to the cutting position. A sliding component (210) is disposed at the lower end of the transport component (220). The two sliding components (210) adjust the distance between the transport components (220). A cutting mechanism (300) is disposed on the upper side of the housing assembly (100). The cutting mechanism (300) includes a cutting component (320) which cuts the masterbatch conveyed by the transport mechanism (200). Two rotating components (310) are disposed on the middle of both sides of the cutting component (320). A power mechanism (400) is fixedly connected on one side to the housing assembly (100). The power mechanism (400) adjusts the cutting angle of the cutting mechanism (300) so that the cutting assembly (320) can cut the masterbatch at different angles.
2. The semi-finished product cutting and processing device for color masterbatch processing according to claim 1, characterized in that, The outer shell assembly (100) includes a feed plate (105), with a main shell (101) fixedly connected to both sides of the feed plate (105). An upper plate (104) is fixedly connected to the upper end of the main shell (101). Multiple arc-shaped slide rails (103) are provided on the upper plate (104). Two upper fixing plates (102) are fixedly connected to both sides of the upper end of the upper plate (104). Multiple arc-shaped slide rails (103) are provided on the two upper fixing plates (102). A comb plate (107) is provided at the upper end of the feed plate (105). The upper plate (104) is fixedly connected to both ends of the comb plate (107). Multiple cross grooves (106) are provided on one side of the upper end of the upper plate (104).
3. The semi-finished product cutting and processing device for color masterbatch processing according to claim 1, characterized in that, The transport mechanism (200) includes a transport component (220), and a sliding component (210) is provided at the lower end of the transport component (220). The sliding component (210) is located inside the main shell (101).
4. The semi-finished product cutting and processing device for color masterbatch processing according to claim 3, characterized in that, The sliding assembly (210) includes a motor (213), the output end of which is fixedly connected to a positive and negative threaded rod (214). The motor wall is fixedly connected to one side of the main housing (101). A positive slider (211) is threadedly connected to the positive and negative threaded rod (214). A negative slider (215) is threadedly connected to the positive and negative threaded rod (214). Two rollers (212) are slidably connected to both sides of the negative slider (215). The two rollers (212) are slidably connected to the positive slider (211).
5. The semi-finished product cutting and processing device for color masterbatch processing according to claim 3, characterized in that, The transport component (220) includes a second motor (226), the output end of which is fixedly connected to a first gear (224). A plurality of second rollers (225) are fixedly connected to the middle of the first gear (224). The plurality of second rollers (225) are rotatably connected to a first slider (211), and are rotatably connected to a first roller (212). A plurality of third sliders (223) are fixedly connected to the middle of the plurality of second rollers (225). The three (223) are slidably connected to the cross slide groove one (106), and the multiple rollers two (225) are slidably connected to the two side walls of the cross slide groove one (106). The upper ends of the multiple rollers two (225) are fixedly connected to multiple rotating heads one (222). Two color masterbatch bodies (221) are provided on one side of the multiple rotating heads one (222). A rotating head two (227) is provided between the two color masterbatch bodies (221). The bottom end of the rotating head two (227) is fixedly connected to the upper plate (104).
6. The semi-finished product cutting and processing device for color masterbatch processing according to claim 1, characterized in that, The cutting mechanism (300) includes a rotating component (310), a cutting component (320) is provided in the middle of the rotating component (310), the cutting component (320) is provided on the upper end of the main shell (101), and one end of the rotating component (310) is provided on one side of the upper fixing plate (102).
7. The semi-finished product cutting and processing device for color masterbatch processing according to claim 1, characterized in that, The rotating assembly (310) includes a sliding plate (313), two of which are provided. Two sliding grooves (314) are provided on the two sliding plates (313). Two sliding columns (311) are provided on one side of the two sliding plates (313). The two sliding columns (311) are slidably connected to multiple arc-shaped slide rails (103). A roller (312) is fixedly connected to the middle of one side of the sliding column (311). The roller (312) is rotatably connected to the upper fixed plate (102). A motor (315) is fixedly connected to the middle of the other side of the sliding column (311). The motor wall is fixedly connected to the upper fixed plate (102). The output end of the motor (315) is fixedly connected to a roller (325) on the upper side.
8. The semi-finished product cutting and processing device for color masterbatch processing according to claim 1, characterized in that, The cutting assembly (320) includes a cutter (321), the two sides of which are slidably connected to a slide groove (314). Two racks (322) are fixedly connected to one end of one side of the cutter (321). Multiple half gears (324) are meshed on one side of the two racks (322). Multiple rollers (325) are fixedly connected to one end of the multiple rollers (325). Multiple gears (323) are fixedly connected to one end of one end of the multiple rollers (325). The gears (323) on one side are meshed in pairs. One end of the multiple rollers (325) is rotatably connected to one side of multiple slide plates (313). One side of the rollers (325) is rotatably connected to one side of a slide column plate (311).
9. The semi-finished product cutting and processing device for color masterbatch processing according to claim 1, characterized in that, The power mechanism (400) is fixedly connected to the upper fixed plate (102) on one side, and the middle part of the power mechanism (400) is fixedly connected to the roller three (312).
10. The semi-finished product cutting and processing device for color masterbatch processing according to claim 1, characterized in that, The power mechanism (400) includes a protective shell (401), which is fixedly connected to one side of the upper fixed plate (102). A second lead screw (403) is rotatably connected to one side of the upper end of the protective shell (401). A throttle (402) is fixedly connected to the upper part of the second lead screw (403). A disc (404) is engaged with the bottom end of the second lead screw (403). One end of the disc (404) is rotatably connected to the protective shell (401). On the 401), a bevel gear three (405) is fixedly connected to the middle of the tray (404), a bevel gear four (406) is meshed on one side of the bevel gear three (405), one end of the bevel gear four (406) is rotatably connected to a rotating shaft one (407), the rotating shaft one (407) is fixedly connected to the protective shell (401), and one end of the bevel gear four (406) is fixedly connected to a roller three (312) on one side.