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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Effect of cooling methods on dimensional accuracy and surface finish of a turned titanium part
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Effect of cooling methods on dimensional accuracy and surface finish of a turned titanium part

机译:冷却方法对车削钛零件尺寸精度和表面光洁度的影响

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摘要

In metal cutting, the choice of cooling method influences the deformation mechanism, which is related to the dimensional accuracy and surface finish of the parts. The deformation mechanism of titanium alloys under machining conditions is known to be very different from that of commonly used industrial materials. Therefore, the effect of cooling methods on dimensional accuracy and surface finish in machining titanium is of particular interest. This paper investigates experimentally and analytically the influence of cooling method and cutting parameters on two major dimensional accuracy characteristics of a turned titanium part - diameter error and circularity, and surface finish. Data were analyzed via three methods: traditional analysis, Pareto ANOVA, and Taguchi method. The findings indicate that the cooling method has significant effect on circularity error (contribution ratio 76.75%), moderate effect on diameter error (contribution ratio 25.00%), and negligible effect on surface finish (contribution ratio 0.16%).
机译:在金属切削中,冷却方法的选择会影响变形机理,这与零件的尺寸精度和表面光洁度有关。已知钛合金在加工条件下的变形机理与常用的工业材料有很大不同。因此,冷却方法对机加工钛的尺寸精度和表面光洁度的影响尤其令人关注。本文通过实验和分析方法研究了冷却方法和切削参数对车削钛零件的两个主要尺寸精度特征(直径误差和圆度以及表面光洁度)的影响。数据通过三种方法进行分析:传统分析,帕累托方差分析和田口方法。研究结果表明,冷却方法对圆度误差(贡献率76.75%)有显着影响,对直径误差的影响中等(贡献率25.00%),对表面光洁度的影响可忽略不计(贡献率0.16%)。

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