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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Model-based identification of tool runout in end milling and estimation of surface roughness from measured cutting forces
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Model-based identification of tool runout in end milling and estimation of surface roughness from measured cutting forces

机译:基于模型的端铣中刀具跳动的识别以及根据测得的切削力估算表面粗糙度

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摘要

This paper presents a model-based approach for the identification of tool runout and the estimation of surface roughness from measured cutting forces. In the first part of the paper, the effect of tool runout on variations in the cutting forces and the effect on surface roughness generation are studied. Thereby, several influencing parameters are identified and examined systematically. Based on theoretical considerations, systematic relationships between tool runout, resultant process force variations, and surface roughness characteristics are deduced. The sensitivity of process force variation is investigated for varying runout parameters by experimental tests. In the next part, the model-based runout identification method is developed, which identifies runout parameters accurately from the measured process forces. The approach has been tested extensively and was verified by measured runout parameters and the correlation of surface roughness characteristics of the machined workpiece. The performance of the developed approach is demonstrated in the final part by comparing the result of the model-based surface reconstruction with the measured surface topography.
机译:本文提出了一种基于模型的方法,用于识别刀具跳动并根据测量的切削力估算表面粗糙度。在本文的第一部分中,研究了刀具跳动对切削力变化的影响以及对表面粗糙度产生的影响。从而,系统地识别和检查了几个影响参数。基于理论上的考虑,推导了刀具跳动,合力变化和表面粗糙度特征之间的系统关系。通过试验测试,针对变化的跳动参数研究了过程力变化的敏感性。在下一部分中,将开发基于模型的跳动识别方法,该方法将从测量的过程力中准确识别跳动参数。该方法已经过广泛测试,并通过测得的跳动参数和加工工件的表面粗糙度特征的相关性进行了验证。通过将基于模型的表面重建结果与测量的表面形貌进行比较,在最后一部分中证明了所开发方法的性能。

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