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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Characterization of Cutting Force Induced Surface Shape Variation in Face Milling Using High-Definition ietrologf1
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Characterization of Cutting Force Induced Surface Shape Variation in Face Milling Using High-Definition ietrologf1

机译:使用高清ietrologf1表征端面铣削中切削力引起的表面形状变化

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摘要

High-definition metrology (HDM) systems with fine lateral resolution are capable of capturing the surface shape on a machined part that is beyond the capability 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 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 relationship is established between the instantaneous cutting forces and the observed dominant surface patterns along the feed and circumferential directions for face milling. Potential applications of this relationship in process monitoring, diagnosis, and control are also discussed for face milling. Finally a systematic methodology for characterizing cutting force induced surface variations for a generic machining process is presented by integrating cutting force modeling and HDM measurements.
机译:具有出色横向分辨率的高清计量(HDM)系统能够捕获加工零件上的表面形状,这超出了当今制造工厂所采用的测量系统的能力。这样的表面形状可以准确反映切削过程对表面质量的影响。了解切削过程和最终的表面形状对于高精度加工过程的监视和控制至关重要。本文介绍了一种端面铣削过程的建模和实验,以从测得的HDM数据中提取表面图案,并将这些图案与切削力变化相关联。在瞬时切削力与沿进给和圆周方向的端面铣削观察到的主要表面图案之间建立了关系。还讨论了这种关系在过程监控,诊断和控制中的潜在应用,以用于端面铣削。最后,通过集成切削力建模和HDM测量,提出了一种表征一般加工过程中切削力引起的表面变化的系统方法。

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