A study for high accuracy measurement of residual stress by deep hole drilling technique

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Abstract

The deep hole drilling technique (DHD) received much attention in recent years as a method for measuring through-thickness residual stresses. However, some accuracy problems occur when residual stress evaluation is performed by the DHD technique. One of the reasons is that the traditional DHD evaluation formula applies to the plane stress condition. The second is that the effects of the plastic deformation produced in the drilling process and the deformation produced in the trepanning process are ignored. In this study, a modified evaluation formula, which is applied to the plane strain condition, is proposed. In addition, a new procedure is proposed which can consider the effects of the deformation produced in the DHD process by investigating the effects in detail by finite element (FE) analysis. Then, the evaluation results obtained by the new procedure are compared with that obtained by traditional DHD procedure by FE analysis. As a result, the new procedure evaluates the residual stress fields better than the traditional DHD procedure when the measuring object is thick enough that the stress condition can be assumed as the plane strain condition as in the model used in this study. © Published under licence by IOP Publishing Ltd.

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APA

Kitano, H., Okano, S., & Mochizuki, M. (2012). A study for high accuracy measurement of residual stress by deep hole drilling technique. In Journal of Physics: Conference Series (Vol. 379). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/379/1/012049

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