The influence of vibrations on surface roughness formed during precision boring

Dariusz Korzeniewski, Natalia Znojkiewicz
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引用次数: 1

Abstract

Abstract In this paper, the analysis of vibrations on surface roughness generated during boring with the application of the conventional boring tool and one with the damper is presented. The experiments included the measurement of vibration accelerations carried out with the piezoelectric sensor, as well as the evaluation of surface roughness parameters after each machining pass. The obtained results reveal that in the investigated range, no stability loss was found. Furthermore, the growth of the rotational speed induces the increase of vibration level, as well as the growth of the differences between the vibration values generated during boring with the conventional tool and one equipped with damper. Vibrations have also the direct influence on the machined surface roughness. In case of the tool equipped with the damper, the tool’s overhang L had more intense influence than rotational speed n. However, for the conventional boring tool this dependency was unequivocal.
精密镗削过程中振动对表面粗糙度的影响
摘要本文分析了传统镗刀和阻尼器镗刀在镗削过程中对表面粗糙度产生的振动。实验包括使用压电传感器进行振动加速度测量,以及每个加工道次后表面粗糙度参数的评估。结果表明,在研究范围内,没有发现稳定性损失。此外,转速的增加导致振动水平的增加,以及使用常规工具和安装减振器时产生的振动值的差异的增加。振动对加工表面的粗糙度也有直接影响。在配备阻尼器的工具中,工具的悬垂L比转速n的影响更大。然而,对于传统的镗孔工具,这种相关性是明确的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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