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Stress Separation in Thermoelastic Stress Analysis Using Nonlinearity of the Thermoelastic Effect

机译:利用热弹性效应的非线性进行热弹性应力分析中的应力分离

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摘要

Thermoelastic stress analysis (TSA) is a non-contact and full-field type method of experimental stress analysis. Since TSA provides only the sum of the principal stresses, many studies have been carried out for developing techniques of stress separation. Unfortunately, most of the techniques developed hitherto are rather complicated and require much labor in practical application. Recently, the authors have developed a simple technique by utilizing the nonlinearity of the thermoelastic effect. In this technique, principal stresses are determined from two sets of temperature amplitude data measured under sinusoidal loadings having same amplitude but different mean values. However, the difference between temperature amplitudes obtained at different mean loadings is very small and, therefore, the result of stress separation becomes very noisy. In this paper, several smoothing techniques are applied to the temperature amplitude data in order to improve the accuracy of stress separation. It is found that some simple smoothing techniques are effective.
机译:热弹性应力分析(TSA)是一种非接触式全场类型的实验应力分析方法。由于TSA仅提供主应力的总和,因此已经进行了许多研究来开发应力分离技术。不幸的是,迄今为止开发的大多数技术相当复杂,并且在实际应用中需要大量的劳动。最近,作者通过利用热弹性效应的非线性发展了一种简单的技术。在这种技术中,主应力是从两组温度振幅数据中确定的,该两组温度振幅数据是在具有相同振幅但平均值不同的正弦载荷下测量的。然而,在不同的平均载荷下获得的温度幅度之间的差异非常小,因此,应力分离的结果变得非常嘈杂。在本文中,将几种平滑技术应用于温度幅值数据,以提高应力分离的精度。发现一些简单的平滑技术是有效的。

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