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Application of Taguchi Technique to Surface-Grinding of Mold Steel

机译:Taguchi技术在模具钢表面研磨中的应用

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The selection of optimum machining parameters plays a significant role for the quality characteristics of products and its costs for grinding. This study describes the optimization of the grinding process for an optimal parametric combination to yield a surface roughness using the Taguchi method. An orthogonal array and analysis of variance are employed to investigate the effects of cutting environment (A), depth of cut (B) and feed rate (C) on the surface roughness characteristics of mold steels. Confirmation experiments were conducted to verify the optimal testing parameters. The experimental results indicated that the surface finish decreased with cutting-fluid and depth of cut, but decreased with increasing feed rate. It is revealed that the cutting fluid environment had highest physical as well as statistical influence on the surface roughness (71.38%), followed by depth of cut (25.54%), but the least effect was exhibited by feed rate (1.62%).
机译:选择最佳加工参数对于产品的质量特性及其研磨成本起着重要作用。该研究描述了用于最佳参数组合的研磨过程的优化,使用Taguchi方法产生表面粗糙度。采用正交阵列和方差分析来研究切割环境(A),切割深度(B)和进料速率(C)的效果对模具钢的表面粗糙度特性。进行确认实验以验证最佳测试参数。实验结果表明,表面光洁度随切割流体和切割深度而降低,但随着进料速率的增加而降低。据透露,切割流体环境具有最高的物理以及对表面粗糙度的统计影响(71.38%),然后进行切割深度(25.54%),但含有进料速率(1.62%)表现出最小效果。

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