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首页> 外文期刊>Journal of Applied Mechanical Engineering >Fourier Analysis of Milling Force for General Helical Cutters via SpacetimeConvolution, Part 1: Model Development
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Fourier Analysis of Milling Force for General Helical Cutters via SpacetimeConvolution, Part 1: Model Development

机译:通过时空卷积对普通螺旋铣刀铣削力进行傅立叶分析,第1部分:模型开发

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摘要

A space-time convolution approach to analyze the milling force for a general helical cutter is proposed. The single flute cutting force is firstly established through an integrated space-time convolution process. Subsequently, multi-flute milling forces are obtained through convolution integration in time domain (i.e., angular domain). In this convolution force model, convolution theorem does not apply directly and a modified convolution theorem is presented to find the Fourier coefficients of the total milling force for any analytically definable helical cutter. From the Fourier analysis, the magnitudes of higher order Fourier coefficients are shown to drop off quickly. Therefore, the capability to extract a small number of Fourier coefficients as characteristic values of milling forces is an important advantage of this convolution force model. Furthermore, this model provides a convenient means to calculate the Fourier coefficients of the milling forces if the profile of cutter/workpiece can not be analytically definable and only the discrete values of cutter/workpiece profile data are given from scanning. Also, the general effects of cutter geometry and cutting parameters on the spectra characteristics of the milling forces are extracted and discussed. Based on the spectra characteristics, the strategy of selecting cutters for rough and finish machining in slot milling is presented.
机译:提出了一种时空卷积方法来分析普通螺旋铣刀的铣削力。首先,通过集成的时空卷积过程来确定单个凹槽的切削力。随后,通过时域(即角域)中的卷积积分获得多刃铣削力。在该卷积力模型中,卷积定理不直接适用,并且提出了一种改进的卷积定理,以找到任何可解析定义的螺旋铣刀的总铣削力的傅立叶系数。从傅立叶分析中可以看出,高阶傅立叶系数的幅值迅速下降。因此,提取少量傅立叶系数作为铣削力特征值的能力是该卷积力模型的重要优势。此外,如果无法解析地定义刀具/工件的轮廓并且仅通过扫描给出刀具/工件轮廓数据的离散值,则该模型提供了一种方便的方法来计算铣削力的傅立叶系数。此外,还提取并讨论了刀具几何形状和切削参数对铣削力谱特征的一般影响。根据光谱特征,提出了在槽铣中选择粗加工和精加工刀具的策略。

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