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首页> 外文期刊>Metallurgist >Computer Simulation of Double-Threaded Rolling in Production of Grinding Balls with a Diameter of 100 mm from Alloy Steels
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Computer Simulation of Double-Threaded Rolling in Production of Grinding Balls with a Diameter of 100 mm from Alloy Steels

机译:合金钢直径为100 mm的磨球生产中双螺纹轧制的计算机模拟

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摘要

At the moment, two-way rolls are used when rolling balls with a nominal diameter of 100 mm. In the process of rolling balls, due to the use of two-pass calibration, an increased vertical angle of inclination of the rolls is used. When working at such angles, the tangential stresses increase. The production of balls with a diameter of 100 mm on rolls with two-pass calibration with increased wear of the surface of the edges leads to the appearance of characteristic defects on the surface of the balls. This article presents a simulation of the ball rolling process, an analysis of the stress-strain state of the rolling process is carried out. The SSA calculation of the current calibration of rolls for rolling grinding balls with a diameter of 100 mm was carried out in order to analyze and compare with the existing rolling technology. According to the simulation results, it was found that when using the calibration of rolls with a constant step of cutting edges, in general, there is a fairly high level of stress throughout the entire volume.
机译:目前,在滚动公称直径为 100 毫米的球时使用双向滚筒。在滚珠过程中,由于使用了两道校准,因此使用了增加的滚筒垂直倾斜角度。当以这样的角度工作时,切向应力会增加。在轧辊上生产直径为 100 毫米的球,经过两次校准,边缘表面磨损增加,导致球表面出现特征缺陷。本文对滚珠过程进行了仿真,对滚珠过程的应力-应变状态进行了分析。对直径为100 mm的轧制磨球的轧辊进行SSA计算,以与现有轧制技术进行分析和比较。根据模拟结果,发现当使用具有恒定切削刃步长的辊子时,通常在整个体积范围内存在相当高的应力水平。

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