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Application of Taguchi method to optimization of surface roughness during precise turning of NiTi shape memory alloy

机译:TAGUCHI方法在尼蒂形记忆合金的精确转动期间优化表面粗糙度的应用

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This paper describes the research results of surface quality research after the NiTi shape memory alloy (Nitinol) precise turning by the tools with edges made of polycrystalline diamonds (PCD). Nitinol, a nearly equiatomic nickel-titanium shape memory alloy, has wide applications in the arms industry, military, medicine and aerospace industry, and industrial robots. Due to their specific properties NiTi alloys are known to be difficult-to-machine materials particularly by using conventional techniques. The research trials were conducted for three independent parameters (v_c, f, a_p) affecting the surface roughness were analyzed. The choice of parameter configurations were performed by factorial design methods using orthogonal plan type L9, with three control factors, changing on three levels, developed by G. Taguchi. S/N ratio and ANOVA analyses were performed to identify the best of cutting parameters influencing surface roughness.
机译:本文介绍了由多晶钻石(PCD)制成的工具精确转动的NITI形状记忆合金(Nitinol)后表面质量研究的研究结果。镍钛诺是一家近乎阶段的镍钛形状记忆合金,在武器行业,军事,医药和航空航天工业和工业机器人方面具有广泛的应用。由于它们的特定性质,已知Niti合金是难以充气的材料,特别是通过使用常规技术。对影响表面粗糙度的三个独立参数(V_C,F,A_P)进行了研究试验。参数配置的选择是通过使用正交计划类型L9的因子设计方法进行的,具有三个控制因子,由G.Gaguchi开发的三个级别。进行S / N比和ANOVA分析以识别影响表面粗糙度的最佳切割参数。

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