Steel surface press polish device

By designing a steel surface calendering device including inclined plates, conveyor belts and columns, the problem of round steel offset during calendering is solved, and the automatic loading and calendering of round steel is realized, thereby reducing labor intensity.

CN223012319UActive Publication Date: 2025-06-24HENAN JIGANG COLD-DRAWN SILVER BRIGHT MATERIAL CO LTD
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Patent Information

Application Number
CN202422227339.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-11
Publication Date
2025-06-24
Estimated Expiration
2034-09-11

AI Technical Summary

Technical Problem

During the steel calendering process, the round steel is prone to deviation, resulting in the need to manually load the material with the help of lifting equipment, which increases labor intensity and fatigue risk.

Method used

A steel surface calendering device is designed, including a chassis, inclined plate, conveyor belt and column. The round steel is separated by columns, maintaining its horizontal state, and automatically loading the conveyor belt and the feed pushing mechanism to replace manual operation.

Benefits of technology

Automatic feeding of round steel is realized, avoiding round steel offset, reducing labor intensity and improving work efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223012319U_ABST
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Abstract

The utility model relates to the field of steel processing equipment, in particular to a steel surface calendaring device which comprises a machine box, a feeding port arranged on the side face of the machine box, a machine frame arranged on the side face of the feeding port, an inclined plate arranged at the upper end of the machine frame, a plurality of through grooves formed in the inclined plate, and a conveying belt arranged below the inclined plate and parallel to the inclined plate. A plurality of stand columns are evenly arranged on the outer side face of the conveying belt and correspond to the through grooves, a pushing mechanism is fixedly arranged on the machine box, a pushing plate connected with the pushing mechanism is arranged in the machine box, and a press polish assembly is arranged in the machine box and corresponds to the pushing plate. The round steel feeding device has the advantages that manual feeding is replaced, and deviation of round steel is avoided in the feeding process.
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Description

Technical Field

[0001] The utility model relates to the field of steel processing equipment, in particular to a steel surface calendering device. Background Art

[0002] Calendering is a mechanical processing and manufacturing process, which means applying a certain pressure and force to the surface of metal parts to make the surface of the parts flat, smooth and burr-free. When calendering round steel, since the round steel is prone to rotation, during the feeding process, the round steel is prone to shift. Therefore, generally, manual labor is used with the assistance of lifting equipment for feeding, resulting in a high labor intensity for personnel and easy fatigue. Therefore, it is particularly necessary to develop a steel surface calendering device that replaces manual feeding and avoids the shift of round steel during the feeding process, and reduces the labor intensity of personnel. Summary of the Invention

[0003] The purpose of the utility model is to provide a steel surface calendering device, which has the advantages of replacing manual feeding and avoiding the shift of round steel during the feeding process.

[0004] The adopted technical scheme is as follows:

[0005] A steel surface calendering device includes a machine case, a feeding port is arranged on the side of the machine case, a rack is arranged on the side of the feeding port, an inclined plate is arranged at the upper end of the rack, a plurality of through grooves are formed in the inclined plate, a conveyor belt is arranged below the inclined plate, the conveyor belt is parallel to the inclined plate, a plurality of upright columns are uniformly arranged on the outer side surface of the conveyor belt, the upright columns correspond to the through grooves, a pushing mechanism is fixedly arranged on the machine case, a pushing plate connected to the pushing mechanism is arranged inside the machine case, and a calendering assembly is arranged inside the machine case, and the calendering assembly corresponds to the pushing plate.

[0006] Preferably, the calendering assembly includes a bracket, and a plurality of calendering units are installed on the bracket. Each calendering unit includes two calender rolls, and the calender rolls of adjacent calendering units differ by 30 degrees.

[0007] Preferably, a guiding conical tube is arranged on the bracket at the head end of the calendering assembly.

[0008] Preferably, telescopic mechanisms are arranged on both sides of the inclined plate, the telescopic mechanisms extend horizontally and are perpendicular to the through grooves, and baffles are connected to the ends of the telescopic mechanisms.

[0009] Preferably, the pushing mechanism includes a horizontally extending hydraulic telescopic cylinder.

[0010] Preferably, the upper end of the upright column is arched.

[0011] Compared with the prior art, the beneficial effects are as follows:

[0012] 1. In this utility model, the round steel is placed on the inclined plate, and the adjacent round steel is separated by the upright columns. A plurality of upright columns keep the round steel in a horizontal state, avoiding the inclination of the round steel. At the same time, the conveyor belt drives each round steel to move on the inclined plate, and the round steel is sequentially fed into the machine case for calendering, replacing manual feeding and reducing the labor intensity.

[0013] 2. In this utility model, the telescopic mechanism drives the baffle to move, thereby changing the interval between the two baffles to adapt to round steel of different lengths. Description of the Drawings

[0014] Figure 1 is a three-dimensional structural schematic diagram of a steel surface calendering device of this utility model.

[0015] Figure 2 is a three-dimensional structural schematic diagram at the calendering roller of a steel surface calendering device of this utility model.

[0016] In the figure: 1, machine case; 2, feed inlet; 3, frame; 4, inclined plate; 5, through groove; 6, conveyor belt; 7, upright column; 8, telescopic mechanism; 9, baffle; 10, pushing mechanism; 11, calendering roller. Detailed Embodiment

[0017] The following further describes this utility model in conjunction with specific embodiments, as From Figure 1 to Figure 2 shown:

[0018] Embodiment 1: A steel surface calendering device includes a machine case 1. A feed inlet 2 is arranged on the side of the machine case 1. A frame 3 is arranged on the side of the feed inlet 2. An inclined plate 4 is arranged at the upper end of the frame 3. One end of the inclined plate 4 close to the feed inlet 2 is the low end. The inclined plate 4 is provided with a plurality of through grooves 5. The plurality of through grooves 5 are parallel to each other. A conveyor belt 6 is arranged below the inclined plate 4. The conveyor belt 6 is parallel to the inclined plate 4. A plurality of upright columns 7 are evenly arranged on the outer side surface of the conveyor belt 6. The upright columns 7 correspond to the through grooves 5. A plurality of upright columns 7 are arranged at intervals in the through grooves 5 of the inclined plate 4. The round steel is placed on the inclined plate 4, and the adjacent round steel is separated by the upright columns 7. A plurality of upright columns 7 keep the round steel in a horizontal state, avoiding the inclination of the round steel.

[0019] A pushing mechanism 10 is fixedly arranged on the machine case 1. A push plate connected to the pushing mechanism 10 is arranged in the machine case 1. The pushing mechanism 10 controls the movement of the push plate. A calendering assembly is arranged in the machine case 1. The calendering assembly corresponds to the push plate. The round steel enters the feed inlet 2 from the inclined plate 4. The pushing mechanism 10 pushes the push plate to push the round steel into the calendering assembly, and the calendering assembly is used to calender the round steel.

[0020] Embodiment 2: A steel surface calendering device, including a chassis 1, a feeding port 2 is arranged on the side of the chassis 1, a frame 3 is arranged on the side of the feeding port 2, an inclined plate 4 is arranged at the upper end of the frame 3, one end of the inclined plate 4 close to the feeding port 2 is the low end, a plurality of through grooves 5 are formed in the inclined plate 4, the plurality of through grooves 5 are parallel to each other, a conveyor belt 6 is arranged below the inclined plate 4, the conveyor belt 6 is parallel to the inclined plate 4, a plurality of upright posts 7 are evenly arranged on the outer side surface of the conveyor belt 6, the upright posts 7 correspond to the through grooves 5, a plurality of upright posts 7 are arranged at intervals in the through grooves 5 of the inclined plate 4, round steel is placed on the inclined plate 4, and the adjacent round steel is separated by the upright posts 7, and the plurality of upright posts 7 keep the round steel in a horizontal state to avoid the cylinder from tilting, and the upper end of the upright post 7 is arched to avoid scratching the round steel.

[0021] Expansion mechanisms 8 are arranged on both sides of the inclined plate 4, the expansion mechanisms 8 extend horizontally and are perpendicular to the through grooves 5, the ends of the expansion mechanisms 8 are respectively connected with baffles 9, and the expansion mechanisms 8 drive the baffles 9 to move, so as to change the interval between the two baffles 9 to adapt to round steel of different lengths.

[0022] The chassis 1 is fixedly provided with a material pushing mechanism 10, the material pushing mechanism 10 includes a hydraulically telescopic cylinder extending horizontally, a push plate connected with the material pushing mechanism 10 is arranged in the chassis 1, the material pushing mechanism 10 controls the movement of the push plate, a calendering assembly is arranged in the chassis 1, the calendering assembly corresponds to the push plate, the calendering assembly includes a bracket, multiple groups of calendering units are installed on the bracket, each calendering unit includes two calendering rollers 11, the calendering rollers 11 of adjacent calendering units differ by 30 degrees, a guiding tapered tube is arranged on the bracket at the head end of the calendering assembly, the guiding tapered tube guides the round steel, the round steel enters the feeding port 2 from the inclined plate 4, the material pushing mechanism 10 pushes the push plate to push the round steel into the calendering assembly, and the calendering assembly is used to calender the round steel.

[0023] The specific working process is as follows: The round steel is placed on the inclined plate 4 in sequence, and the adjacent round steel is separated by the upright posts 7, and the plurality of upright posts 7 keep the round steel in a horizontal state to avoid the cylinder from tilting. Start the conveyor belt 6 to rotate, and drive the round steel to move by the upright posts 7, and push the round steel from the feeding port 2 into the chassis 1. The material pushing mechanism 10 pushes the round steel to move, and inserts it into the calendering assembly from the guiding tapered tube, so as to calender the round steel by the calendering assembly. After calendering, the material pushing mechanism 10 drives the push plate to retract, and one calendering is completed.

[0024] The above embodiments are only the preferred embodiments of the present invention, and the protection scope of the present invention cannot be limited by this. Any non-substantial changes and substitutions made by those skilled in the art on the basis of the present invention belong to the protection scope required by the present invention.

Claims

1. A steel surface calendering device, characterized in that: The invention comprises a chassis (1), a feed port (2) is arranged on the side of the chassis (1), a frame (3) is arranged on the side of the feed port (2), an inclined plate (4) is arranged on the upper end of the frame (3), a plurality of through slots (5) are opened on the inclined plate (4), a conveyor belt (6) is arranged below the inclined plate (4), the conveyor belt (6) is parallel to the inclined plate (4), a plurality of columns (7) are evenly arranged on the outer side of the conveyor belt (6), the columns (7) correspond to the through slots (5), a pushing mechanism (10) is fixedly arranged on the chassis (1), a pushing plate connected to the pushing mechanism (10) is arranged inside the chassis (1), and a calendering component is arranged inside the chassis (1), and the calendering component corresponds to the pushing plate.

2. A steel surface calendering device as claimed in claim 1, characterized in that: The calendering assembly comprises a bracket, on which a plurality of calendering units are mounted, each calendering unit comprising two pressing rollers (11), and the pressing rollers (11) of adjacent calendering units are 30 degrees apart.

3. A steel surface calendering device as claimed in claim 2, characterized in that: A guiding conical tube is arranged on the bracket at the head end of the calendering component.

4. A steel surface calendering device as claimed in claim 1, characterized in that: Telescopic mechanisms (8) are provided on both sides of the inclined plate (4); the telescopic mechanisms (8) extend horizontally and are perpendicular to the through slot (5); and baffles (9) are connected to the ends of the telescopic mechanisms (8).

5. The steel surface calendering device according to claim 1, characterized in that: The material pushing mechanism (10) comprises a horizontally extending hydraulic telescopic cylinder.

6. The steel surface calendering device according to claim 1, characterized in that: The upper end of the column (7) is arched.