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Calibration of residual stress measurements obtained from EDM hole drilling method using physical material properties

机译:使用物理材料属性校准从EDM钻孔方法获得的残余应力测量值

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When using the electrodischarge machining (EDM) hole drilling method to measure residual stress, the stress induced by the metallurgical transformation layer formed during the drilling process can lead to significant measurement errors. In this study, it is shown that provided the dielectric fluid retains a high level of purity, the stress induced during the drilling process is determined primarily by the thermal conductivity and carbon equivalent of the specimen. Accordingly, these two material properties are used as the basis of two calibration equations designed to compensate the residual stress measurement obtained using the EDM hole drilling method. It is shown that the calibration equations reduce the discrepancy between the actual simulated residual stress values produced by the prestress loadings and the measured residual stress values to less than 8 MPa. The calibration equations provide a significant improvement in the accuracy of the measurement results obtained using the EDM hole drilling technique.
机译:当使用电火花加工(EDM)钻孔方法测量残余应力时,在钻孔过程中形成的冶金相变层引起的应力会导致明显的测量误差。在这项研究中,研究表明,只要介电液保持高纯度,钻孔过程中产生的应力主要取决于样品的导热率和碳当量。因此,这两种材料特性用作两个校准方程式的基础,该两个校准方程式旨在补偿使用EDM钻孔方法获得的残余应力测量值。结果表明,校准方程使预应力载荷产生的实际模拟残余应力值与测得的残余应力值之间的差异减小到小于8 MPa。校准方程式大大提高了使用EDM钻孔技术获得的测量结果的准确性。

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