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Variable Length Scale Surface Finish Assessment of Machined Grade 4 Titanium Alloy

机译:机加工4级钛合金的变长标度表面光洁度评估

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Conventional surface roughness measurements provide surface topography information at one length scale only. Many applications, including osseointegration performance in the biomedical field, may requiresurface topography information at reduced length scales to improve performance. This paper presents an evaluation of surface roughness for length scales down to 5 microns for outside turned Grade 4 titanium alloy. The effect of cutting speed and feed rate are also evaluated. Surface roughness, skewness and kurtosis are evaluated at different length scales for different cutting parameters and compared to the theoretical expected behaviour. It was concluded that there exists a significant sub-micron surface roughness component that is not fully captured by the conventional roughness measurement techniques. It was also found that the variable length scale surface topography was affected by certain cutting parameters.
机译:常规的表面粗糙度测量仅在一个长度范围内提供表面形貌信息。许多应用(包括生物医学领域中的骨整合性能)可能需要减小长度比例的表面形貌信息以提高性能。本文介绍了一种用于外部车削的4级钛合金的,长度尺度可减小至5微米的表面粗糙度的评估方法。还评估了切削速度和进给速度的影响。在不同的切割参数下,以不同的长度尺度评估表面粗糙度,偏度和峰度,并将其与理论预期性能进行比较。得出的结论是,存在很大的亚微米表面粗糙度分量,而常规粗糙度测量技术无法完全捕获该分量。还发现可变长度标尺的表面形貌受某些切削参数的影响。

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