首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >An analytical model for force prediction in micromilling silicon carbide particle-reinforced aluminum matrix composites
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An analytical model for force prediction in micromilling silicon carbide particle-reinforced aluminum matrix composites

机译:微型碳化硅粒子增强铝基基复合材料中力预测的分析模型

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摘要

In micromilling the silicon carbide particle-reinforced aluminum matrix composites, cutting forces can provide a better insight of the cutting mechanism. In this article, an analytical model for force prediction in micromilling composites is developed considering the size effect of the matrix. In modeling, for the matrix, the cutting area is divided into shearing area and plowing area and the removal forces are established considering chip formation and edge forces; for the particle, the removal forces are established based on Griffith fracture theory. The model is verified by micromilling experiments. The influences of the process parameters (milling width, milling depth, and feed per tooth) on the milling force were studied. It shows that the maximum milling force increased with the increase in the feed per tooth and the milling depth and increases first and then stabilizes with the increase in milling width; the average milling force increases with the increase in the three parameters. In addition, the contribution of the particle fracture force is analyzed, and it is found that the contribution of the particle fracture force is affected by the feed per tooth, which basically accounts for about 23% of the maximum milling force and accounts for 23%-30% of the average milling force.
机译:在碳化硅颗粒增强铝基基复合材料中,切割力可以提供更好地介绍切割机构。在本文中,考虑到基质的尺寸效应,开发了用于微磨料复合材料中的力预测的分析模型。在模型中,对于基质,切割区域被分成剪切区域和犁地区域,考虑芯片形成和边缘力建立去除力;对于颗粒,基于Griffith裂缝理论建立去除力。通过微米实验验证该模型。研究了过程参数(铣削宽度,铣削深度和饲料)对铣削力的影响。它表明,最大铣削力随着每齿的饲料和铣削深度的增加而增加,首先增加,然后随着铣削宽度的增加而稳定;平均铣削力随三个参数的增加而增加。此外,分析了颗粒断裂力的贡献,发现颗粒断裂力的贡献受到每颗牙齿的饲料的影响,基本上占最大铣削力的约23%,占23% -30%的平均铣削力量。

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