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Effects of Feed per Tooth and Radial Depth of Cut on Amplitude Parameters and Power Spectral Density of a Machined Surface

机译:每齿进给量和切割的径向深度对加工表面的振幅参数和功率谱密度的影响

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摘要

Surface topography and roughness significantly affect the functional properties of engineering parts. In this study, a mathematical model simulating the surface topography in end milling is presented and verified by milling experiments. The three dimensional (3D) surface amplitude parameters (arithmetic average deviation and root mean square deviation ) of the milled surface were calculated by using the model and the effects of the product ( ) and ratio ( ) of radial depth of cut and feed per tooth on amplitude parameters were researched. To evaluate the lateral characteristics of the milled surface, one dimensional (1D) power spectral densities (PSD) along both feed and step-over direction were calculated and investigated. It was found that affects 1D PSD along both directions, whereas affects 1D PSD along the step-over direction. An angular spectrum, derived from the area power spectral density (APSD), was employed to research the spatial distribution of spectral energy on the milled surface. Furthermore, the influences of and on the PSD properties were researched. It was found that is the significant factor that influences the direction of surface energy spectrum distribution.
机译:表面形貌和粗糙度会严重影响工程零件的功能特性。在这项研究中,提出了模拟立铣削表面形貌的数学模型,并通过铣削实验进行了验证。使用该模型计算出铣削表面的三维(3D)表面振幅参数(算术平均偏差和均方根偏差),并且径向切深乘以每齿的乘积()和径向比()的影响对振幅参数进行了研究。为了评估铣削表面的横向特性,计算并研究了沿进给和步进方向的一维(1D)功率谱密度(PSD)。发现沿两个方向影响一维PSD,而沿跨步方向影响一维PSD。由面积功率谱密度(APSD)得出的角谱用于研究铣削表面上谱能的空间分布。此外,还研究了PSD性能对PSD性能的影响。发现这是影响表面能谱分布方向的重要因素。

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