Strip steel longitudinal cutting edge wire waste treatment device

By designing a strip steel longitudinal edge wire waste treatment device, the rotational extrusion of waste is achieved using hydraulic cylinders and spiral slides, the problem of difficult waste winding is solved, and the cleaning efficiency and safety are improved.

CN222933421UActive Publication Date: 2025-06-03MAGANG (WUHAN) MATERIALS TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421585748.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-05
Publication Date
2025-06-03
Estimated Expiration
2034-07-05

AI Technical Summary

Technical Problem

The side wire waste generated by vertical cutting processing of strip steel occupies a large area during the cleaning process, is difficult to clean, and is time-consuming and labor-intensive to clean, which poses safety hazards.

Method used

A strip steel longitudinal edge wire waste treatment device is designed, including a hydraulic cylinder, a pressing component and a spiral slide. The hydraulic rod is driven out through the hydraulic cylinder to drive the pressing component down and rotate. The spiral slide and positioning block are used to realize the rotating extrusion of the pressing plate, forming cake-like waste for easy cleaning.

Benefits of technology

It effectively avoids the entanglement of waste materials, simplifies the cleaning process, reduces the cleaning time and labor, improves the cake pressing effect of waste materials, and reduces safety hazards.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a strip steel longitudinal cutting edge wire waste treatment device, relates to the technical field of strip steel waste treatment, and aims to solve the technical problem that the current strip steel waste is inconvenient to clean. The strip steel longitudinal cutting edge wire waste treatment device comprises a charging barrel assembly of which the top is detachably provided with a material arranging assembly, and the charging barrel assembly comprises a material storage barrel of which the outer edge surface is provided with a material inlet; the material arranging assembly comprises a bearing plate, a hydraulic cylinder is detachably installed in the middle of the upper end face of the bearing plate, a hydraulic rod is movably arranged in the hydraulic cylinder in a telescopic mode, the hydraulic rod extends and penetrates out of the bearing plate and is movably connected with a material pressing assembly, the bottom end of the hydraulic rod is constructed and connected with a cylindrical cam, and a spiral sliding way is formed in the outer edge face of the cylindrical cam. The spiral slide ways are of arc-shaped groove body structures which are communicated with one another and distributed in a mirror symmetry mode. The device has the advantages that strip steel waste is extruded into cakes, and inconvenience in cleaning due to mutual winding of the strip steel waste is avoided.
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Description

Technical Field

[0001] The utility model relates to the technical field of strip waste treatment, and more specifically, to a device for treating longitudinal cutting edge wire waste of strip steel. Background Art

[0002] Strip steel, also known as steel strip, is a narrow and long steel plate, whose width is usually between 20 mm and 1300 mm, and the length varies according to the size of each roll. Strip steel has the characteristics of thin thickness, narrow width and long length, and its specifications are usually expressed in the form of thickness × width.

[0003] During the longitudinal cutting process of strip steel, a large amount of edge waste is produced. Currently, the conventional method is to directly take it out from the edge waste bin of the longitudinal cutting equipment and throw it directly into the waste area. When the edge waste is taken out from the edge waste bin, it is in a loose coil state. After being randomly spread out in the waste area, it first occupies a large area. After the waste is laid flat, there will be a certain problem of loose coil blanking, resulting in entanglement between the scattered coils. It is extremely time-consuming and laborious to clean up later, and the workload is relatively large. Moreover, during the secondary cleaning process, due to the entanglement of the wire coils, the cleaning process is difficult, and it is extremely easy to cause cut injuries, posing a safety hazard. In view of this, we propose a device for treating longitudinal cutting edge wire waste of strip steel. Summary of the Utility Model

[0004] The purpose of the utility model is to overcome the deficiencies of the prior art, meet the actual needs, and provide a device for treating longitudinal cutting edge wire waste of strip steel to solve the technical problem that the current strip steel waste is not easy to clean up.

[0005] To solve the above technical problems, the utility model provides the following technical solution: A device for treating longitudinal cutting edge wire waste of strip steel, including a material barrel assembly with a material sorting component detachably installed on the top;

[0006] The material barrel assembly includes a storage barrel with a feed port formed on its outer edge surface;

[0007] The material sorting component includes a bearing plate with a hydraulic cylinder detachably installed in the middle of the upper end surface. A hydraulic rod is movably telescopically arranged inside the hydraulic cylinder. The hydraulic rod extends out of the bearing plate and is movably connected to a pressure component. And the bottom end of the hydraulic rod is structurally connected to a cylindrical cam. A spiral slideway is formed on the outer edge surface of the cylindrical cam. The spiral slideway is an arc-shaped groove structure that is mutually connected and symmetrically distributed in a mirror image;

[0008] The pressure component includes a pressure plate with a through hole formed in the middle of its interior. A positioning block that is movably arranged in the spiral slideway is structurally arranged on the inner edge surface of the through hole.

[0009] The utility model designs a hydraulic cylinder and a blank pressing component. The waste materials generated by the longitudinal cutting process of the strip steel can be fed into the storage cylinder through the feeding port. By starting the hydraulic cylinder, the hydraulic rod extends, driving the blank pressing component to press down. The strip steel waste materials are extruded into cakes by the blank pressing component, avoiding entanglement and making it convenient to clean. By designing a spiral slideway and a positioning block, during the process of pressing the strip steel waste materials into cakes by the pressing plate, the continuous downward pressure of the hydraulic rod drives the cylindrical cam to move, forcing the positioning block to move inside the spiral slideway, causing the pressing plate to rotate and realizing the rotational extrusion of the strip steel waste materials, which is beneficial to improving the effect of pressing the strip steel waste materials into cakes.

[0010] Preferably, a bent pressing ring is constructed at the edge position of the lower end face of the pressing plate. The bent pressing ring has a claw-shaped structure in the sectional direction, and an arc-shaped pressing angle part for rounding the edge part of the strip steel waste materials is formed on the inner side surface of the bent pressing ring.

[0011] Preferably, an umbrella-shaped surface that bends upward and is used for forming a diffused pressure conduction when extruding the strip steel waste materials is formed on the lower end face of the pressing plate.

[0012] Preferably, support arms are constructed in a circular array at the edge position of the lower end face of the bearing plate. A clamping block is constructed at the bottom end of the support arm, and the clamping block is detachably connected to the top of the storage cylinder.

[0013] Preferably, a mounting frame is detachably installed at the bottom of the outer edge surface of the storage cylinder. A motor is detachably installed on one side of the mounting frame. The motor shaft is rotatably connected to the mounting frame, and ear plates are fixedly arranged at both ends of the outer edge surface of the motor shaft. The bottom end of the ear plate is fixedly connected to a mounting block, and the bottom end of the mounting block is fixedly connected to a connecting plate. The end of the connecting plate away from the mounting block is detachably connected to a bottom cover for realizing movable opening and discharging at the bottom of the storage cylinder. An arc-shaped chamfer structure is formed at the edge position of the bottom of the inner edge surface of the bottom cover.

[0014] Preferably, connecting blocks are constructed in a circular array on the outer edge surface of the storage cylinder. A support leg is constructed and connected to the end of the connecting block away from the storage cylinder.

[0015] Compared with the prior art, the beneficial effects of the utility model are:

[0016] 1. The utility model designs a hydraulic cylinder and a blanking component. The waste generated during the longitudinal cutting process of the strip steel can be fed into the storage cylinder through the feeding port. By starting the hydraulic cylinder, the hydraulic rod extends, driving the blanking component to press down. The blanking component presses the strip steel waste into a cake, avoiding entanglement and facilitating cleaning. By designing a spiral chute and a positioning block, during the process of pressing the strip steel waste into a cake by the pressing plate, the continuous downward pressure of the hydraulic rod drives the cylindrical cam to move, forcing the positioning block to move inside the spiral chute, causing the pressing plate to rotate and realizing the rotational extrusion of the strip steel waste, which is beneficial to improving the pressing effect of the strip steel waste and solving the problem of inconvenient cleaning of the strip steel waste.

[0017] 2. The utility model also designs a bending pressure ring at the edge position of the lower end face of the pressing plate, and an arc-shaped pressing angle part is formed on the inner side of the bending pressure ring. During the process of rotating and pressing the strip steel waste into a cake by the pressing plate, the arc-shaped pressing angle part can round the edge position of the cake-shaped strip steel waste, reducing the harm to workers caused by the edge position during the waste removal process. By forming an upwardly curved umbrella-shaped part on the lower end face of the pressing plate, during the pressing process of the strip steel waste, the pressing plate first contacts at the center position and gradually releases outward to extrude it, enabling the pressure to conduct from the center to the periphery. Combining with the rotational extrusion method is beneficial to ensuring the compaction effect of the strip steel waste, thereby further improving the pressing effect of the strip steel waste. Brief Description of the Drawings

[0018] Figure 1 is the structural schematic diagram of the utility model;

[0019] Figure 2 is the structural schematic diagram of the cartridge assembly of the utility model;

[0020] Figure 3 is the bottom structural schematic diagram of the cartridge assembly of the utility model;

[0021] Figure 4 is the structural schematic diagram of the blanking assembly of the utility model;

[0022] Figure 5 is the disassembled schematic diagram of the blanking assembly of the utility model;

[0023] Figure 6 is the cross-sectional view of the blanking component of the utility model.

[0024] Explanation of the reference numerals in the drawings:

[0025] 1. Barrel assembly; 101. Storage barrel; 102. Feeding port; 103. Support leg; 104. Connecting block; 105. Mounting frame; 106. Mounting block; 107. Ear plate; 108. Connecting plate; 109. Bottom cover; 2. Material sorting assembly; 201. Bearing plate; 202. Support arm; 203. Clamping block; 204. Hydraulic cylinder; 205. Hydraulic rod; 206. Cylindrical cam; 207. Spiral chute; 3. Material pressing assembly; 301. Material pressing plate; 302. Through hole; 303. Positioning block; 304. Bent pressing ring; 305. Arc pressing corner; 306. Umbrella surface. Detailed implementation mode

[0026] As Figure 1 , Figure 2 , Figure 4 , Figure 5 and Figure 6 shown, a strip steel longitudinal cutting edge wire waste treatment device involved in the present utility model includes a barrel assembly 1 with a material sorting assembly 2 detachably installed on the top. The barrel assembly 1 includes a storage barrel 101 with a feeding port 102 formed by opening on the outer edge surface. The material sorting assembly 2 includes a bearing plate 201 with a hydraulic cylinder 204 detachably installed in the middle of the upper end surface. A hydraulic rod 205 is movably telescopically arranged inside the hydraulic cylinder 204. The hydraulic rod 205 extends out of the bearing plate 201 and is movably connected to a material pressing assembly 3. And the bottom end of the hydraulic rod 205 is structurally connected to a cylindrical cam 206. A spiral chute 207 is formed by opening on the outer edge surface of the cylindrical cam 206. The spiral chute 207 is an arc-shaped groove structure that is mutually connected and symmetrically distributed in a mirror image. The material pressing assembly 3 includes a material pressing plate 301 with a through hole 302 formed by opening in the middle inside. A positioning block 303 that is movably arranged in the spiral chute 207 is structurally arranged on the inner edge surface of the through hole 302.

[0027] In an embodiment of the present utility model, as Figure 6 shown, a bent pressing ring 304 is structurally arranged at the edge position of the lower end surface of the material pressing plate 301. The bent pressing ring 304 is in a claw-shaped structure in the cutting plane direction. And an arc pressing corner 305 for rounding the edge part of the strip steel waste is formed on the inner side surface of the bent pressing ring 304. An umbrella surface 306 that bends upward and is used for forming a diffusion-type pressure conduction when pressing the strip steel waste is formed on the lower end surface of the material pressing plate 301.

[0028] In an embodiment of the present utility model, as Figure 1 , Figure 2 and Figure 4 shown, support arms 202 are structurally arranged in a circular array at the edge position of the lower end surface of the bearing plate 201. A clamping block 203 is structurally arranged at the bottom end of the support arm 202. The clamping block 203 is detachably connected to the top of the storage barrel 101.

[0029] In an embodiment of the present utility model, asFigure 2 and Figure 3 As shown in Figure 3 , a mounting frame 105 is detachably installed at the bottom of the outer edge surface of the storage bin 101. A motor is detachably installed on one side of the mounting frame 105. The motor shaft is rotatably connected to the mounting frame 105. Both ends of the outer edge surface of the motor shaft are fixedly provided with ear plates 107. The bottom end of the ear plate 107 is fixedly connected with a mounting block 106. The bottom end of the mounting block 106 is fixedly connected with a connecting plate 108. One end of the connecting plate 108 away from the mounting block 106 is detachably connected with a bottom cover 109 for realizing movable opening and discharging at the bottom of the storage bin 101. An arc chamfer structure is formed at the bottom edge position of the inner edge surface of the bottom cover 109. Connecting blocks 104 are arranged in a circular array structure on the outer edge surface of the storage bin 101. One end of the connecting block 104 away from the storage bin 101 is structurally connected with a support leg 103.

[0030] Working principle: This embodiment provides a device for processing waste edge wires of longitudinally cut strip steel. When in use, the waste generated by the longitudinal cutting of strip steel can be fed into the storage bin 101 through the feed inlet 102. By starting the hydraulic cylinder 204, the hydraulic rod 205 extends, which can drive the pressing component 3 to press down. The strip steel waste is extruded into a cake by the pressing component 3 to prevent it from being entangled with each other and being inconvenient to clean. And through the design of the spiral chute 207 and the positioning block 303, during the process of pressing the strip steel waste into a cake by the pressing plate 301 pressing down, the continuous pressing down of the hydraulic rod 205 will drive the cylindrical cam 206 to move, thereby forcing the positioning block 303 to move inside the spiral chute 207, so that the pressing plate 301 rotates, realizing the rotary extrusion of the strip steel waste. During the process of the pressing plate 301 rotating and pressing down to press the strip steel waste into a cake, the arc-shaped pressing corner 305 can round the edge position of the cake-shaped strip steel waste, which can reduce the situation of the edge position causing harm to workers during the process of taking out the waste. And by forming an upwardly curved umbrella surface 306 on the lower end surface of the pressing plate 301, during the process of pressing the strip steel waste, the pressing plate 301 contacts with the strip steel waste first at the central position and gradually releases outward to extrude it, that is, the pressure is conducted from the center to the periphery, and the combined rotary extrusion method is beneficial to ensuring the compaction effect of the strip steel waste.

[0031] The embodiments disclosed in this utility model are preferred embodiments, but not limited thereto. Those of ordinary skill in the art can easily understand the spirit of this utility model according to the above embodiments and make different extensions and changes. As long as they do not depart from the spirit of this utility model, they are within the protection scope of this utility model.

Claims

1. A strip steel slitting edge wire waste processing device, characterized in that: It comprises a barrel assembly (1) with a monolithic assembly (2) detachably mounted on the top; The barrel assembly (1) comprises a storage barrel (101) having a feed port (102) formed on an outer edge surface; The material-forming assembly (2) comprises a supporting plate (201) with a hydraulic cylinder (204) detachably mounted in the center of the upper end surface, a hydraulic rod (205) being movably and telescopically arranged inside the hydraulic cylinder (204), the hydraulic rod (205) extending through the supporting plate (201) and movably connected to the material-pressing assembly (3), and a cylindrical cam (206) being connected to the bottom end structure of the hydraulic rod (205), a spiral slideway (207) being formed on the outer edge surface of the cylindrical cam (206), and the spiral slideway (207) being an arc-shaped trough structure which is interconnected and distributed in a mirror-symmetrical manner; The pressing assembly (3) comprises a pressing plate (301) with a through hole (302) formed in the center thereof, and a positioning block (303) movably arranged in a spiral slideway (207) is arranged on the inner edge surface of the through hole (302).

2. The strip steel longitudinal cutting edge wire waste processing device according to claim 1 is characterized in that: A bending pressure ring (304) is arranged at the edge of the lower end surface of the pressure plate (301). The bending pressure ring (304) is claw-shaped in the section direction, and an arc-shaped pressure corner portion (305) for rounding the edge of the strip steel scrap is formed on the inner side surface of the bending pressure ring (304).

3. The strip steel longitudinal cutting edge wire waste processing device according to claim 2 is characterized in that: The lower end surface of the pressing plate (301) is formed with an umbrella portion (306) that is bent upward and is used to form a diffuse pressure conduction when squeezing the strip steel scrap.

4. The strip steel longitudinal cutting edge wire waste processing device according to claim 1 is characterized in that: The lower end edge of the carrier plate (201) is provided with a support arm (202) in a ring array structure, and the bottom end of the support arm (202) is provided with a clamping block (203), and the clamping block (203) is detachably connected to the top of the storage barrel (101).

5. The strip steel longitudinal cutting edge wire waste processing device according to claim 1 is characterized in that: A mounting frame (105) is detachably mounted on the bottom of the outer edge surface of the material storage barrel (101), a motor is detachably mounted on one side of the mounting frame (105), the shaft of the motor is rotatably connected to the mounting frame (105), and ear plates (107) are fixedly arranged at both ends of the outer edge surface of the shaft of the motor, the bottom end of the ear plate (107) is fixedly connected to a mounting block (106), the bottom end of the mounting block (106) is fixedly connected to a connecting plate (108), and one end of the connecting plate (108) away from the mounting block (106) is detachably connected to a bottom cover (109) for realizing movable opening and unloading at the bottom of the material storage barrel (101), and a curved rounded structure is formed at the bottom edge of the inner edge surface of the bottom cover (109).

6. The strip steel longitudinal cutting edge wire waste processing device according to claim 5 is characterized in that: The outer edge surface of the material storage barrel (101) is provided with connecting blocks (104) in a ring array structure, and one end of the connecting block (104) away from the material storage barrel (101) is connected to a supporting leg (103).