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首页> 外文期刊>Advances in Mechanical Engineering >Analysis of the Forces in Micromilling of Hardened AISI H13 Steel with Different Grain Sizes Using the Taguchi Methodology
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Analysis of the Forces in Micromilling of Hardened AISI H13 Steel with Different Grain Sizes Using the Taguchi Methodology

机译:使用Taguchi方法分析不同晶粒尺寸的AISI H13硬化钢的微铣削力

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摘要

The micromachining process has been applied to the free form and micromolds markets. This has occurred due to the growth in demand for microcomponents. However, micromachining of hardened steels is a challenge due to the reduction in tool life and the increase of the surface roughness when compared with the macromachining process. This paper focused on the analysis of micromilling forces on hardened AISI H13 steel with different grain sizes. Experimental tests were carried out on workpieces with different austenitic grain sizes and a hardness of 46 HRC. Micro-end-mill cutters with a diameter of 0.5 mm and (TiAl) N coatings were applied in the milling of workpieces of 11 Chi 11 mm. The input parameters were two radial depths of cut, two cutting speeds, and two feed rates. The influence of the input parameters on the response cutting force was analyzed using the Taguchi method. Finally, considering the large grain size, the cutting forces in the x-, y-, and z-axes direction were small.
机译:微加工工艺已应用于自由形式和微模具市场。这是由于对微组件的需求增长而发生的。但是,与宏加工相比,淬硬钢的微加工是一项挑战,因为它会缩短工具寿命并增加表面粗糙度。本文着重分析了不同晶粒尺寸的硬化AISI H13钢的微铣削力。在具有不同奥氏体晶粒尺寸和46 HRC硬度的工件上进行了实验测试。将直径为0.5 mm的微型立铣刀和(TiAl)N涂层用于铣削11 Chi 11 mm的工件。输入参数为两个径向切削深度,两个切削速度和两个进给速度。使用Taguchi方法分析了输入参数对响应切削力的影响。最后,考虑到较大的晶粒尺寸,x轴,y轴和z轴方向的切削力较小。

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