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CHARACTERIZATION OF CUTTING FORCE INDUCED SURFACE SHAPE VARIATION USING HIGH-DEFINITION METROLOGY

机译:利用高清计量表征切割力诱导表面形状变化的特征

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High-definition metrology (HDM) systems with fine lateral resolution are capable of capturing the surface shape on a machined part that is beyond the scope of measurement systems employed in manufacturing plants today. Such surface shapes can precisely reflect the impact of cutting processes on surface quality. Understanding the cutting processes and the resultant surface shape is vital to identifying opportunities for high-precision machining process monitoring and control. This paper presents modeling and experiments of a face milling process to extract surface patterns from measured HDM data and correlate these patterns with cutting force variation. A relation is established between instantaneous cutting forces and the observed dominant patterns along the feed and circumferential directions. Potential applications of such relationship in process monitoring, diagnosis, and control are also discussed.
机译:具有精细横向分辨率的高清计量(HDM)系统能够在当今制造工厂中采用的测量系统的范围内捕获表面形状。这种表面形状可以精确地反映切割过程对表面质量的影响。理解切割过程和所得表面形状对于识别高精度加工过程监测和控制的机会至关重要。本文介绍了面部铣削过程的建模和实验,以从测量的HDM数据提取表面图案,并将这些图案与切割力变化相关联。在瞬时切割力和沿饲料和圆周方向之间观察到的显性图案之间建立了关系。还讨论了在过程监测,诊断和控制过程中这种关系的潜在应用。

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