In-process control of surface roughness with tool wear via ultrasonic sensing

S. A. Coker, Y. Shin
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引用次数: 7

Abstract

This paper presents in-process monitoring and control of surface roughness during machining processes via ultrasonic sensing. A newly developed system is utilized to measure the reflected intensity of ultrasonic beams from the surface and in-process measurement capability is evaluated under machine vibration and tool wear. The experimental results show that the system is able to detect the changes in surface roughness caused by tool wear and can possibly be used to monitor tool wear. Finally, in-process control of surface roughness using the ultrasonic system is demonstrated by adapting the system to a CNC machining center and performing geometric control. The results show it is possible to maintain surface roughness within 10% of the target value for tool wear up to 0.3 mm.
基于超声传感的刀具磨损表面粗糙度过程控制
本文介绍了利用超声传感技术对加工过程中的表面粗糙度进行监测和控制。利用新开发的系统测量了超声波光束从表面反射的强度,并评估了在机床振动和刀具磨损情况下的测量能力。实验结果表明,该系统能够检测刀具磨损引起的表面粗糙度变化,可用于刀具磨损监测。最后,通过将超声系统应用于CNC加工中心并进行几何控制,演示了超声系统对表面粗糙度的过程控制。结果表明,当刀具磨损达0.3 mm时,表面粗糙度保持在目标值的10%以内是可能的。
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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