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A shape factor based ultrasonic measurement method for determination of bolt preload

机译:基于形状因子的超声波测量方法,用于确定螺栓的预紧力

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摘要

The existing ultrasonic testing models cannot accurately measure bolt preload due to the non-uniform distribution of axial stress in the effective stressed region of bolt and cannot rapidly complete the calibration of detection coefficients due to the difficulty to determine the key parameters such as effective stressed length. In order to eliminate the impact of non-uniform distribution of axial stress on the measurement, realize rapid and accurate calibration of detection coefficients and further improve the measurement accuracy of bolt preload, the concept and determination method of shape factor are proposed. Based on the shape factor, a combination of longitudinal and transverse waves is adopted to establish a mathematical model for measuring the preload applied to a bolt during assembly, avoiding the need to measure ambient temperature. The calculation method of shape factor is obtained by statics simulation of a bolted joint. Through the combination of finite element simulation and experimental calibration, the material factors and temperature factors of 45# steel as well as the shape factors of M20 and M16 bolts are obtained. The experiments show that the relative error of this method is within 5%, which meets the requirements of engineering applications.
机译:现有的超声波测试模型由于在螺栓的有效应力区域中轴向应力分布不均匀而无法准确地测量螺栓的预紧力,并且由于难以确定有效应力长度等关键参数而无法快速完成检测系数的校准。为了消除轴向应力的不均匀分布对测量的影响,实现对检测系数的快速准确校准,进一步提高螺栓预紧力的测量精度,提出了形状系数的概念和确定方法。基于形状因子,采用纵向和横向波的组合来建立数学模型,以测量组装期间施加到螺栓的预载荷,而无需测量环境温度。形状因子的计算方法是通过螺栓连接的静力学模拟获得的。通过有限元模拟和实验标定相结合,获得了45#钢的材料系数和温度系数以及M20和M16螺栓的形状系数。实验表明,该方法的相对误差在5%以内,可以满足工程应用的要求。

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