探讨了影响超声振动螺钉松动检测系统精度的因素

Haruhisa Kawasaki, Seiki Murayama, M. Kanetomo
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引用次数: 0

摘要

对于所有产品装配中经常使用的螺钉,有各种检查方法,以防止因提前松动而发生事故。然而,目前尚无准确、简便的方法。为了解决这一问题,已有研究开发了一种结合机械阻抗谱和光谱模式识别的检测系统。在此基础上,进一步开展了抑制测量值变化、缩短测量时间、测量小直径螺钉等方面的研究。在随后的研究中,我们研究了压力载荷变化对小直径螺钉的影响,评估了螺钉与探头之间的接触位置依赖关系,并研究了几种不同类型螺钉的影响。通过这些研究,我们的目标是实现一个具有高度精确性能的检测系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of the factors to improve the accuracy of the inspection system for loosening screws using ultrasonic vibration
Various inspection methods for screws that are frequently used in assembling all products has been reported to prevent accidents due to loosening in advance. However, there is no accurate and simple method at present. As a solution to this, previous research has developed an inspection system that combines mechanical impedance spectra and spectral pattern recognition. Following the research, studies on suppressing variation in measured values, reducing measurement time, and measuring small diameter screws have been advanced. As a subsequent study, we examined the effects of variation in the pressing load on small diameter screws, evaluated the contact position dependence between screws and probe, and investigated the effects of several different types of screws. Through these investigations, we aimed to realize an inspection system with highly accurate performance.
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