A split type guide with high stability for slitting rolling

By introducing a second fixed set of rotary drive grinding sheets into the split guide, the burr problem during split rolling is solved, the product quality is improved, and the subsequent grinding needs are reduced, and the labor intensity of workers is reduced.

CN119734104BActive Publication Date: 2025-07-01MAANSHAN FANGYUAN MATERIAL ENGINEEING CO LTD
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Patent Information

Application Number
CN202510210434.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-25
Publication Date
2025-07-01
Estimated Expiration
2045-02-25

AI Technical Summary

Technical Problem

During the existing slicing and rolling process, slicing tapes are prone to form burrs, affecting product quality, and the existing devices need to be polished after the product is produced, which increases the work intensity of workers.

Method used

A high-stability split-rolled split-type guide is designed. The second fixed set rotates and drives the grinding piece to grind the divided material. At the same time, the push rod and spring structure are used to make the material in close contact with the grinding piece, and assist the grinding piece to grind the splitting part to avoid burrs affecting the product quality.

Benefits of technology

It effectively avoids burrs caused by segmentation, improves product quality, and reduces the demand for subsequent polishing of products, reducing the work intensity of workers.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of split-type guide devices, and specifically to a split-type guide device for high-stability split rolling, including a workbench. One end of the workbench is fixedly connected with a splitting mechanism, the other end of the workbench is fixedly connected with a fixed column, the workbench is also fixedly connected with a feed inlet, and a pushing mechanism is further arranged on the workbench. The splitting mechanism includes a motor fixedly connected to the workbench, and the output end of the motor is connected to a first connecting rod, and the first connecting rod penetrates and is connected to a first splitting wheel. The purpose of the present invention is to drive the rotation of the second fixed sleeve through the rotation of the second fixed sleeve to polish the split material. At the same time, the first push rod pushes the fifth connecting rod to move, the fifth connecting rod pushes the spring to compress, and the spring pushes the pushing plate to extrude the material, so that the material is in close contact with the grinding sheet, assisting the grinding sheet to polish the split part of the split material, and avoiding the burrs generated by splitting from affecting the product quality.
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Description

Technical Field

[0001] The present invention relates to the technical field of split guide devices, and specifically provides a split guide device for high-stability split rolling. Background Art

[0002] Split rolling is a rolling technology that uses the roll pass, the splitting wheel in the guide device, or other splitting devices to longitudinally split the rolled piece into two or more lines during the rolling process. The split guide device, as a key component in split rolling, also known as the induction device, is an auxiliary device installed before and after the roll pass. Its main function is to ensure that the rolled piece can enter and exit the pass accurately and stably in a predetermined direction and state. In split rolling, the split guide device is particularly important because it not only affects whether the rolled piece can be smoothly split but also directly impacts the quality and production efficiency of the finished product.

[0003] In the existing split guide device for split rolling, burrs are likely to form at the splitting zone during the split rolling process. If not properly handled, folds may be formed, affecting the quality of the rolled piece. Most of the existing devices polish the burrs after the product production is completed, increasing the working intensity of the workers. Summary of the Invention

[0004] The purpose of the present invention is to provide a split guide device for high-stability split rolling. By driving the rotation of the second fixed sleeve to drive the second fixed sleeve to rotate, the split material is polished. At the same time, the first push rod pushes the fifth connecting rod to move, the fifth connecting rod pushes the spring to compress, and the spring pushes the pushing plate to extrude the material, so that the material is in close contact with the grinding disc, assisting the grinding disc to polish the splitting area of the split material, and avoiding the burrs generated by splitting from affecting the product quality.

[0005] To achieve the above purpose, the present invention provides the following technical solution: A split guide device for high-stability split rolling, including a workbench, one end of the workbench is fixedly connected with a splitting mechanism, the other end of the workbench is fixedly connected with a fixed column, the workbench is also fixedly connected with a feed inlet, and a pushing mechanism is also arranged on the workbench;

[0006] The splitting mechanism includes a motor fixedly connected to the workbench. The output end of the motor is connected to a first connecting rod. The first connecting rod penetrates and connects to a first splitting wheel. A first splitting blade is provided on the first splitting wheel. A first steel belt pulley is also provided on the first connecting rod. A second steel belt pulley is also connected to the first connecting rod. A pressing wheel is connected to the second steel belt pulley. The pressing wheel is arranged at the upper end of the feeding port. A third connecting rod penetrates through the pressing wheel. A third steel belt pulley is also provided on the first connecting rod. A second connecting rod is connected to the third steel belt pulley. The second connecting rod penetrates and connects to a second splitting wheel. A second splitting blade is provided on the second splitting wheel. One end of the second connecting rod is connected to a fourth steel belt pulley. The fourth steel belt pulley is connected to a fourth connecting rod. A first rotating rod is connected to the fourth connecting rod. A collision wheel is eccentrically arranged on the first rotating rod. One end of the first rotating rod is rotatably connected to a fixed rod;

[0007] The pushing mechanism includes a second rotating rod. A grinding sheet is penetrated and connected to the second rotating rod. An output table is arranged below the grinding sheet. Two sets of pushing plates are arranged on the output table. Two sets of fifth connecting rods are arranged on the two sets of pushing plates. Springs and first push rods are respectively arranged at both ends of the two sets of fifth connecting rods. Sixth connecting rods are respectively arranged on the two sets of fifth connecting rods. Two sets of connecting plates are arranged on the sixth connecting rods. Multiple second push rods are arranged on the two sets of connecting plates. Multiple cleaning discs are arranged on the multiple second push rods.

[0008] Preferably, the first steel belt pulley is connected to the second rotating rod. The second rotating rod is connected to a second fixed sleeve. The second fixed sleeve is connected to the grinding sheet.

[0009] Preferably, a first separating piece and a second separating piece are respectively arranged on the output table. First grooves are arranged on both sides of the output table, and the size is adapted to the pushing plate.

[0010] Preferably, a fixed disc is arranged on the first connecting rod. The fixed disc is fixedly connected to the workbench.

[0011] Preferably, a second groove is arranged at the connection of the fifth connecting rod and the sixth connecting rod, and the size is adapted to the sixth connecting rod.

[0012] Preferably, fixing platforms are arranged at both ends of the output table. The fixing platforms are arranged below the sixth connecting rod.

[0013] Preferably, multiple cleaning discs are all made of elastic materials.

[0014] Preferably, a first fixed sleeve is arranged on the first rotating rod. The first fixed sleeve penetrates through the collision wheel. The first rotating rod is connected to the fixed rod. The fixed rod is fixedly connected to the workbench.

[0015] Preferably, a third groove is provided on the workbench, and the third groove is arranged below the collision wheel.

[0016] Preferably, a fourth groove is provided on the feed inlet, and the size is adapted to the collision wheel.

[0017] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0018] The present invention utilizes the rotation of the second fixed sleeve to drive the rotation of the second fixed sleeve to polish the divided materials. At the same time, the first push rod pushes the fifth connecting rod to move, the fifth connecting rod pushes the spring to compress, and the spring pushes the pushing plate to extrude the materials, so that the materials are in close contact with the polishing sheet, assisting the polishing sheet to polish the cutting part of the divided materials, and avoiding the burrs generated by cutting from affecting the product quality.

[0019] The present invention drives the first rotating rod to rotate through the rotation of the fourth connecting rod, the first rotating rod drives the first fixed sleeve to rotate, and the first fixed sleeve drives the collision wheel to rotate, so as to extrude the materials entering from the feed inlet, accelerate the shedding of impurities generated by pressing on the feed inlet, and separate from the third groove on the workbench to avoid impurities remaining inside and affecting the feeding.

[0020] The present invention drives one end of the sixth connecting rod to move on the fixed table through the movement of the fifth connecting rod, the sixth connecting rod drives the connecting plate to move, the connecting plate drives the second push rod to move, and the second push rod drives the cleaning disc to move, respectively cleaning the first cutting blade and the second cutting blade to prevent impurities generated by cutting from adhering and affecting the cutting quality. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 It is the first overall structure schematic diagram of the present invention;

[0022] Figure 2 It is the second overall structure schematic diagram of the present invention;

[0023] Figure 3 It is the first partial structure schematic diagram of the cutting mechanism of the present invention;

[0024] Figure 4 It is the first partial structure schematic diagram of the pushing mechanism of the present invention;

[0025] Figure 5 It is the second partial structure schematic diagram of the cutting mechanism of the present invention;

[0026] Figure 6 It is the third partial structure schematic diagram of the cutting mechanism of the present invention;

[0027] Figure 7 It is the second partial structure schematic diagram of the pushing mechanism of the present invention;

[0028] Figure 8 The third partial structural schematic diagram of the driving mechanism of the present invention;

[0029] Figure 9 The fourth partial structural schematic diagram of the splitting mechanism of the present invention.

[0030] In the figure: 1, workbench; 11, fixed column; 12, feed inlet; 2, splitting mechanism; 3, driving mechanism; 21, motor; 22, first connecting rod; 221, first splitting wheel; 222, first splitting blade; 223, fixed disk; 224, first steel belt pulley; 225, second steel belt pulley; 226, third steel belt pulley; 23, second splitting wheel; 231, second connecting rod; 232, second splitting blade; 233, fourth steel belt pulley; 24, pressing wheel; 241, third connecting rod; 25, fixed rod; 251, first rotating rod; 252, first fixing sleeve; 253, collision wheel; 254, fourth connecting rod; 31, second rotating rod; 311, grinding piece; 312, second fixing sleeve; 32, first push rod; 321, fifth connecting rod; 322, pushing plate; 323, sixth connecting rod; 324, fixed table; 325, connecting plate; 326, second push rod; 327, cleaning disk; 328, spring; 33, discharge table; 331, first separating piece; 332, second separating piece. Specific embodiments

[0031] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Therefore, the following detailed description of the embodiments of the present invention provided in the drawings is not intended to limit the scope of the claimed present invention, but merely represents selected embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts fall within the scope of protection of the present invention.

[0032] The present invention provides a split-type guide for high-stability splitting rolling, including a workbench 1, a splitting mechanism 2 fixedly connected to one end of the workbench 1, a fixed column 11 fixedly connected to the other end of the workbench 1, a feed inlet 12 fixedly connected to the workbench 1, and a driving mechanism 3 provided on the workbench 1;

[0033] The splitting mechanism 2 includes a motor 21 fixedly connected to the workbench 1. The output end of the motor 21 is connected to a first connecting rod 22. The first connecting rod 22 penetrates and connects to a first splitting wheel 221. A first splitting blade 222 is provided on the first splitting wheel 221. A first steel belt pulley 224 is also provided on the first connecting rod 22. A second steel belt pulley 225 is also connected to the first connecting rod 22. A pressing wheel 24 is connected to the second steel belt pulley 225. The pressing wheel 24 is arranged at the upper end of the feeding port 12. A third connecting rod 241 penetrates through the pressing wheel 24. A third steel belt pulley 226 is also provided on the first connecting rod 22. A second connecting rod 231 is connected to the third steel belt pulley 226. The second connecting rod 231 penetrates and connects to a second splitting wheel 23. A second splitting blade 232 is provided on the second splitting wheel 23. One end of the second connecting rod 231 is connected to a fourth steel belt pulley 233. The fourth steel belt pulley 233 is connected to a fourth connecting rod 254. A first rotating rod 251 is connected to the fourth connecting rod 254. A collision wheel 253 is eccentrically arranged on the first rotating rod 251. One end of the first rotating rod 251 is rotatably connected to a fixed rod 25;

[0034] The pushing mechanism 3 includes a second rotating rod 31. A grinding piece 311 penetrates through the second rotating rod 31. A discharge table 33 is arranged below the grinding piece 311. Two groups of pushing plates 322 are arranged on the discharge table 33. Two groups of fifth connecting rods 321 are arranged on the two groups of pushing plates 322. Springs 328 and first push rods 32 are respectively arranged at both ends of the two groups of fifth connecting rods 321. Two groups of sixth connecting rods 323 are respectively arranged on the two groups of fifth connecting rods 321. Two groups of connecting plates 325 are arranged on the sixth connecting rods 323. Multiple groups of second push rods 326 are arranged on the two groups of connecting plates 325. Multiple groups of cleaning discs 327 are arranged on the multiple groups of second push rods 326.

[0035] When this device needs to be used, the material to be cut is fed in through the feed inlet 12. By turning on the motor 21, the first connecting rod 22 is driven to rotate. The rotation of the first connecting rod 22 drives the rotation of the first cutting wheel 221. The rotation of the first cutting wheel 221 drives the rotation of the first cutting blade 222. At the same time, the rotation of the first connecting rod 22 drives the rotation of the third connecting rod 241 through the second steel belt pulley 225 arranged on the first connecting rod 22. The rotation of the third connecting rod 241 drives the rotation of the pressing wheel 24, and the material entering through the feed inlet 12 is pressed for the first time. At the same time, the rotation of the first connecting rod 22 drives the rotation of the second connecting rod 231 through the third steel belt pulley 226 connected to the first connecting rod 22. The rotation of the second connecting rod 231 drives the rotation of the second cutting wheel 23. The rotation of the second cutting wheel 23 drives the rotation of the second cutting blade 232. The second cutting blade 232 and the first cutting blade 222 cooperate to cut the material pressed by the pressing wheel 24. At the same time, the rotation of the second connecting rod 231 drives the rotation of the fourth connecting rod 254 through the fourth steel belt pulley 233 arranged on the second connecting rod 231. The rotation of the fourth connecting rod 254 drives the rotation of the first rotating rod 251. The rotation of the first rotating rod 251 drives the rotation of the first fixed sleeve 252. The rotation of the first fixed sleeve 252 drives the rotation of the collision wheel 253, and the material entering through the feed inlet 12 is extruded, accelerating the shedding of impurities generated by pressing on the feed inlet 12, and separating from the third groove on the workbench 1 to avoid impurities remaining inside and affecting the feeding.

[0036] At the same time, the rotation of the first connecting rod 22 drives the rotation of the second rotating rod 31 through the rotation of the first steel belt pulley 224 connected to the first connecting rod 22. The rotation of the second rotating rod 31 drives the rotation of the second fixed sleeve 312. The rotation of the second fixed sleeve 312 drives the rotation of the second fixed sleeve 312 to polish the cut material. At the same time, the first push rod 32 pushes the fifth connecting rod 321 to move. The fifth connecting rod 321 pushes the spring 328 to compress. The spring 328 squeezes the push plate 322 to extrude the material, making the material closely contact with the polishing piece 311, assisting the polishing piece 311 to polish the cutting part of the cut material and avoiding the burrs generated by cutting from affecting the product quality.

[0037] At the same time, the movement of the fifth connecting rod 321 drives one end of the sixth connecting rod 323 to move on the fixed table 324. The sixth connecting rod 323 drives the connecting plate 325 to move. The connecting plate 325 drives the second push rod 326 to move. The second push rod 326 drives the cleaning disc 327 to move, respectively cleaning the first cutting blade 222 and the second cutting blade 232 to prevent impurities generated by cutting from adhering and affecting the cutting quality.

[0038] In an alternative embodiment, the first steel belt pulley 224 is connected to the second rotating rod 31. The second rotating rod 31 is connected to the second fixed sleeve 312. The second fixed sleeve 312 is connected to the polishing piece 311.

[0039] It should be noted that the movement of the first connecting rod 22 drives the rotation of the first steel belt pulley 224. The rotation of the first steel belt pulley 224 drives the rotation of the second rotating rod 31. The rotation of the second rotating rod 31 drives the rotation of the second fixed sleeve 312. The rotation of the second fixed sleeve 312 drives the rotation of the grinding disc 311 to grind the cut materials on the discharge table 33, reduce the burrs generated by cutting, and improve the product quality.

[0040] In an optional embodiment, a first separating piece 331 and a second separating piece 332 are respectively arranged on the discharge table 33. First grooves are arranged on both sides of the discharge table 33, and the size is adapted to the pushing plate 322.

[0041] It should be noted that after the materials are cut, the first separating piece 331 separates the cut materials to prevent the cut materials from sticking, which is convenient for grinding the cut part. At the same time, the pushing plate 322 is arranged inside the discharge table 33 to prevent the cut materials from squeezing with the pushing plate 322, resulting in the situation that the materials cannot enter the discharge table 33.

[0042] In an optional embodiment, a fixed disk 223 is arranged on the first connecting rod 22, and the fixed disk 223 is fixedly connected to the workbench 1.

[0043] It should be noted that the first connecting rod 22 is fixed on the workbench 1 to ensure the normal operation of the equipment.

[0044] In an optional embodiment, a second groove is arranged at the connection between the fifth connecting rod 321 and the sixth connecting rod 323, and the size is adapted to the sixth connecting rod 323.

[0045] It should be noted that the second groove is used for driving the sixth connecting rod 323 to move on the fixed table 324 when the fifth connecting rod 321 moves. The fixed table 324 drives the connecting plate 325 to move. The connecting plate 325 drives the second push rod 326 to move. The movement of the second push rod 326 drives the cleaning disc 327 to move to clean the first cutting blade 222 and the second cutting blade 232, preventing the waste generated during cutting from adhering and affecting the cutting quality.

[0046] In an optional embodiment, fixed tables 324 are arranged at both ends of the discharge table 33, and the fixed tables 324 are arranged below the sixth connecting rod 323.

[0047] It should be noted that the fixed table 324 is used to assist the movement of the sixth connecting rod 323 to ensure the operation of the equipment.

[0048] In an optional embodiment, multiple groups of cleaning discs 327 are all made of elastic materials.

[0049] It should be noted that the cleaning disk 327 contacts and presses against the first slicing blade 222 and the second slicing blade 232 to clean the impurities attached to the first slicing blade 222 and the second slicing blade 232, preventing excessive residue of impurities from affecting the slicing quality.

[0050] In an alternative embodiment, a first fixing sleeve 252 is provided on the first rotating rod 251. The first fixing sleeve 252 penetrates through the collision wheel 253. The first rotating rod 251 is connected to the fixing rod 25, and the fixing rod 25 is fixedly connected to the workbench 1.

[0051] It should be noted that the rotation of the first rotating rod 251 drives the rotation of the first fixing sleeve 252, and the rotation of the first fixing sleeve 252 drives the rotation of the collision wheel 253 to press the compacted material and shed the impurities generated during the compaction process.

[0052] In an alternative embodiment, a third groove is provided on the workbench 1, and the third groove is arranged below the collision wheel 253.

[0053] It should be noted that after the collision wheel 253 presses against the material, the impurities are separated through the third groove, avoiding accumulation inside the device and affecting the normal operation of the device.

[0054] In an alternative embodiment, a fourth groove is provided on the feed inlet 12, and the size is adapted to the collision wheel 253.

[0055] It should be noted that this ensures that the collision wheel 253 can rotate to press the material and ensures the normal operation of the device.

[0056] Working principle: When this device needs to be used, the material to be cut is fed in through the feed inlet 12. By starting the motor 21, the first connecting rod 22 is driven to rotate. The rotation of the first connecting rod 22 drives the first cutting wheel 221 to rotate, and the rotation of the first cutting wheel 221 drives the first cutting blade 222 to rotate. At the same time, the rotation of the first connecting rod 22 drives the third connecting rod 241 to rotate through the second steel belt pulley 225 arranged on the first connecting rod 22. The rotation of the third connecting rod 241 drives the pressing wheel 24 to rotate, and the material entering through the feed inlet 12 is pressed for the first time. At the same time, the rotation of the first connecting rod 22 drives the second connecting rod 231 to rotate through the third steel belt pulley 226 connected to the first connecting rod 22. The rotation of the second connecting rod 231 drives the second cutting wheel 23 to rotate, and the rotation of the second cutting wheel 23 drives the second cutting blade 232 to rotate. The second cutting blade 232 and the first cutting blade 222 cooperate to cut the material pressed by the pressing wheel 24. At the same time, the rotation of the second connecting rod 231 drives the fourth connecting rod 254 to rotate through the fourth steel belt pulley 233 arranged on the second connecting rod 231. The rotation of the fourth connecting rod 254 drives the first rotating rod 251 to rotate, the rotation of the first rotating rod 251 drives the first fixed sleeve 252 to rotate, and the rotation of the first fixed sleeve 252 drives the collision wheel 253 to rotate, squeezing the material entering through the feed inlet 12, accelerating the shedding of impurities generated by the pressing on the feed inlet 12, and separating from the device through the third groove on the workbench 1, avoiding the remaining of impurities inside and affecting the feeding.

[0057] At the same time, the rotation of the first connecting rod 22 drives the second rotating rod 31 to rotate by driving the first steel belt pulley 224 connected to the first connecting rod 22 to rotate. The rotation of the second rotating rod 31 drives the second fixed sleeve 312 to rotate, and the rotation of the second fixed sleeve 312 drives the second fixed sleeve 312 to rotate to polish the cut material. At the same time, the first push rod 32 pushes the fifth connecting rod 321 to move, the fifth connecting rod 321 pushes the spring 328 to compress, and the spring 328 pushes the pushing plate 322 to squeeze the material, making the material in close contact with the polishing piece 311, assisting the polishing piece 311 to polish the cutting part of the cut material, and avoiding the burrs generated by cutting from affecting the product quality.

[0058] At the same time, the movement of the fifth connecting rod 321 drives one end of the sixth connecting rod 323 to move on the fixed table 324. The sixth connecting rod 323 drives the connecting plate 325 to move, the connecting plate 325 drives the second push rod 326 to move, and the second push rod 326 drives the cleaning disc 327 to move, respectively cleaning the first cutting blade 222 and the second cutting blade 232 to prevent the attachment of impurities generated by cutting and affecting the cutting quality.

[0059] After the material is sliced, the first separation piece 331 separates the sliced material to prevent the sliced material from sticking, which facilitates grinding at the sliced part. At the same time, the pushing plate 322 is arranged inside the discharge table 33 to prevent the sliced material from being squeezed by the pushing plate 322, resulting in the situation where the material cannot enter the discharge table 33. The second groove is used for the fifth connecting rod 321 to drive the sixth connecting rod 323 to move on the fixed table 324 when moving. The fixed table 324 drives the connecting plate 325 to move, the connecting plate 325 drives the second push rod 326 to move, and the movement of the second push rod 326 drives the cleaning disc 327 to move to clean the first slicing blade 222 and the second slicing blade 232, preventing the waste generated during cutting from adhering and affecting the cutting quality. After the collision wheel 253 squeezes the material, the impurities are separated through the third groove to prevent accumulation inside the device and affect the normal operation of the device.

[0060] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A split guide for high stability split rolling, comprising a workbench (1), characterized in that: A cutting mechanism (2) is fixedly connected to one end of the workbench (1), a fixing column (11) is fixedly connected to the other end of the workbench (1), a feed port (12) is also fixedly connected to the workbench (1), and a pushing mechanism (3) is also provided on the workbench (1); The slitting mechanism (2) comprises a motor (21) fixedly connected to the workbench (1); the output end of the motor (21) is connected to a first connecting rod (22); the first connecting rod (22) is connected to a first slitting wheel (221); the first slitting wheel (221) is provided with a first slitting blade (222); the first connecting rod (22) is also provided with a first steel belt pulley (224); the first connecting rod (22) is also connected to a second steel belt pulley (225); the second steel belt pulley (225) is connected to a clamping wheel (24); the clamping wheel (24) is arranged at the upper end of the feed port (12); the clamping wheel (24) is connected to a third connecting rod (241); the The first connecting rod (22) is also provided with a third steel belt pulley (226), the third steel belt pulley (226) is connected to the second connecting rod (231), the second connecting rod (231) penetrates and is connected to the second cutting wheel (23), the second cutting wheel (23) is provided with a second cutting blade (232), one end of the second connecting rod (231) is connected to a fourth steel belt pulley (233), the fourth steel belt pulley (233) is connected to a fourth connecting rod (254), the fourth connecting rod (254) is connected to a first rotating rod (251), a collision wheel (253) is eccentrically provided on the first rotating rod (251), and one end of the first rotating rod (251) is rotatably connected to a fixed rod (25); The pushing mechanism (3) comprises a second rotating rod (31), the second rotating rod (31) is connected with a grinding plate (311) through and through, a discharging platform (33) is arranged below the grinding plate (311), two groups of pushing plates (322) are arranged on the discharging platform (33), two groups of fifth connecting rods (321) are arranged on the two groups of pushing plates (322), springs (328) and first push rods (32) are arranged at both ends of the two groups of fifth connecting rods (321), sixth connecting rods (323) are arranged on the two groups of fifth connecting rods (321), two groups of connecting plates (325) are arranged on the sixth connecting rod (323), multiple groups of second pushing rods (326) are arranged on the two groups of connecting plates (325), and multiple groups of cleaning disks (327) are arranged on the multiple groups of second pushing rods (326).

2. A split guide for high stability split rolling according to claim 1, characterized in that: The first steel pulley (224) is connected to the second rotating rod (31), the second rotating rod (31) is connected to the second fixing sleeve (312), and the second fixing sleeve (312) is connected to the grinding sheet (311).

3. A split guide for high stability split rolling according to claim 1, characterized in that: The discharging platform (33) is provided with a first separation sheet (331) and a second separation sheet (332), respectively. Both sides of the discharging platform (33) are provided with first grooves, the size of which is adapted to the pushing plate (322).

4. A split guide for high stability split rolling according to claim 1, characterized in that: A fixed plate (223) is provided on the first connecting rod (22), and the fixed plate (223) is fixedly connected to the workbench (1).

5. A split guide for high stability split rolling according to claim 1, characterized in that: A second groove is provided on the fifth connecting rod (321) at the connection with the sixth connecting rod (323), and the size of the second groove matches that of the sixth connecting rod (323).

6. A split guide for high stability split rolling according to claim 5, characterized in that: Both ends of the discharge platform (33) are provided with fixed platforms (324), and the fixed platforms (324) are arranged below the sixth connecting rod (323).

7. A split type guide for high stability split rolling according to claim 1, characterized in that: The plurality of cleaning discs (327) are all made of elastic material.

8. The split guide for high stability split rolling according to claim 1, characterized in that: A first fixing sleeve (252) is provided on the first rotating rod (251), the first fixing sleeve (252) penetrates the collision wheel (253), the first rotating rod (251) is connected to the fixing rod (25), and the fixing rod (25) is fixedly connected to the workbench (1).

9. A split type guide for high stability split rolling according to claim 1, characterized in that: The workbench (1) is provided with a third groove, and the third groove is arranged below the collision wheel (253).

10. A split type guide for high stability split rolling according to claim 1, characterized in that: The feed port (12) is provided with a fourth groove, the size of which is adapted to the collision wheel (253).

Citation Information

Patent Citations

  • Core fixing type pinch roll guide

    CN101786108A

  • Preparation device and preparation method of spiral solder cake

    CN108080817A