A metal bar processing apparatus

CN224688445UActive Publication Date: 2026-08-28RUIAN CHAOYANG METAL MATERIAL CO LTD
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Patent Information

Application Number
CN202521734973.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-14
Publication Date
2026-08-28
Estimated Expiration
2035-08-14

AI Technical Summary

Technical Problem

[0003]目前市面上的金属棒材加工,加工装置为独立分体式结构,无法实现拉直送料、无心车削、无心磨削及切割等核心加工工序的一体化集成,导致加工流程断点多、设备占地空间大、工序转换效率低且棒材二次装夹易引入累积误差,难以满足高精度、连续化生产需求,因此需要一种金属棒材加工设备集成所有加工工序实现连续化生产需求,提高生产的效率

Benefits of technology

[0025]本实用新型的有益效果:将架料、拉直送料、排屑加工、切割、平直及精磨等工序集成于同一机架,实现了全流程连续化生产,实现一体化生产。

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Abstract

The utility model relates to a kind of metal bar processing equipment, including rack, rack side is equipped with the material frame structure for the metal material to carry out material frame and the straight feeding mechanism that metal material is straightened and sent into next process, rack is located in straight feeding mechanism side is equipped with the chip removal processing mechanism that metal material is modified and is processed to outer diameter, chip removal processing mechanism side is equipped with the cutting mechanism that metal material is cut, cutting mechanism side is equipped with the flat mechanism that metal material is further straightened and sent into next step, flat mechanism side is equipped with the fine grinding equipment that metal material is polished and processed, and the processes such as material frame, straight feeding, chip removal processing, cutting, flattening and fine grinding are integrated in same rack, realize the full-process continuous production, realize integrated production.
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Claims

1. A metal bar processing equipment, comprising a frame, characterized in that: One side of the frame is provided with a material-supporting structure for supporting metal materials and a straightening and feeding mechanism for straightening the metal materials and feeding them into the next process. The frame is provided with a chip removal processing mechanism for modifying the outer diameter and surface processing of the metal materials on the side of the straightening and feeding mechanism. A cutting mechanism for cutting the metal materials is provided on the side of the chip removal mechanism. A straightening mechanism for further straightening the metal materials and feeding them into the next step is provided on the side of the straightening mechanism. A fine grinding device for grinding the metal materials is provided on the side of the straightening mechanism.

2. The metal rod processing equipment according to claim 1, characterized in that: The material-supporting structure includes a material-supporting roller axially arranged on the frame. The material-supporting roller is rotatably arranged on the frame and a first drive motor is provided at its end. A guide roller is provided on one side of the frame on the material-supporting roller. A first guide groove is formed between the guide roller and the frame. The first guide groove can guide the metal material into the straightening and feeding mechanism.

3. The metal rod processing equipment according to claim 2, characterized in that: The straightening and feeding mechanism includes several vertically fixed seats mounted on the frame. A fixed roller is rotatably mounted on one side of each fixed seat. An adjusting seat is provided on the top of each vertical fixed seat. An adjusting wheel capable of height adjustment is rotatably mounted on the same side of the fixed roller on the adjusting seat. A second drive motor capable of driving the fixed roller to rotate is provided on one side of each fixed roller. Several horizontal fixed seats are provided on the surface of the frame. The horizontal fixed seats are staggered on the surface of the frame. Horizontal fixed seats are provided with horizontal rollers. A flattening groove for flattening and straightening metal materials is formed between the adjusting wheel and the fixed roller, and between the horizontal rollers.

4. The metal rod processing equipment according to claim 1, characterized in that: The chip removal processing mechanism includes a processing table disposed on one side of a horizontal roller. The surface of the processing table is provided with a centerless machine tool that can modify the outer diameter of the metal trough and perform surface chip removal processing. The centerless machine tool is provided with a through slot for metal material to pass through and process. The processing table is provided with guide components at both ends of the centerless machine tool.

5. The metal rod processing equipment according to claim 4, characterized in that: The guiding assembly includes a guide seat vertically disposed on the processing table, and a plurality of guide rollers are vertically disposed on the guide seat. The guide rollers are evenly distributed on the guide seat, and a second guide groove is formed between the guide rollers to guide the metal material trough. A third drive motor capable of driving the guide rollers to rotate is provided on one side of the processing table.

6. The metal rod processing equipment according to claim 1, characterized in that: The cutting mechanism includes a worktable disposed on one side of the guide roller, a vertical cutter disposed on the surface of the worktable, a material transfer mechanism disposed on the side of the worktable facing the guide roller that can reciprocate between the guide roller and the vertical cutter, and clamping tables for clamping metal materials disposed on the top of the material transfer mechanism and the bottom of the vertical cutter.

7. The metal rod processing equipment according to claim 6, characterized in that: The material transfer mechanism includes a movable slide rail extending from the worktable surface toward the cutting machine. A movable rod is provided between the movable slide rails. A fourth drive motor is provided at the end of the movable rod. A mounting platform is slidably provided on the slide rail. The mounting platform is sleeved on the movable rod. The fourth drive motor can drive the mounting platform to reciprocate between the guide roller and the vertical cutting machine. The clamping platform is fixedly installed on the top of the mounting platform.

8. The metal rod processing equipment according to claim 1, characterized in that: The straightening mechanism is set on a straight platform on one side of the vertical cutting machine. The straight platform is provided with a set of transport rollers for transporting the cut metal material on the side facing the vertical cutting machine. The straight platform is provided with a leveling mechanism on the side of the transport rollers.

9. A metal rod processing equipment according to claim 8, characterized in that: The leveling mechanism includes a leveling box disposed on one side of the transport roller assembly. The leveling box has bearing seats at both ends, and a transport shaft is disposed between the bearing seats and the box. A fifth drive motor is disposed at the bottom of the box. A first synchronous pulley is disposed on one side of the transport shaft, and a second synchronous pulley is disposed on the fifth drive motor. The first synchronous pulley and the second synchronous pulley are connected by a synchronous belt. The transport shaft has a transport hole for metal materials to pass through. Several flattening rollers are disposed inside the box, and the flattening rollers are evenly distributed within the box. A box cover that can be opened or closed is disposed on one side of the box. A guide rod for guiding metal materials is disposed on the side of the flat platform facing the precision grinding equipment, and the guide rod is located on one side of the transport shaft.

10. A metal rod processing equipment according to claim 1, characterized in that: The precision grinding equipment includes a processing base, on which a first precision grinding roller is detachably connected. A lifting platform is provided on the top of the processing base, and a second precision grinding roller is provided at the bottom of the lifting platform. The first and second precision grinding rollers are arranged alternately. A sixth drive motor capable of driving the first and second precision grinding rollers is provided on one side of the processing base. A discharge channel is provided on one side of the processing base near the first and second precision grinding rollers.