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Full-field stress determination in photoelasticity with phase shifting technique

机译:相移技术的光弹性全场应力测定

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摘要

Photoelasticity is an effective method for evaluating the stress and its spatial variations within a stressed body. In the present study, a method to determine the stress distribution by means of phase shifting and a modified shear-difference is proposed. First, the orientation of the first principal stress and the retardation between the principal stresses are determined in the full-field through phase shifting. Then, through bicubic interpolation and derivation of a modified shear-difference method, the internal stress is calculated from the point with a free boundary along its normal direction. A method to reduce integration error in the shear difference scheme is proposed and compared to the existing methods; the integration error is reduced when using theoretical photoelastic parameters to calculate the stress component with the same points. Results show that when the value of Delta x/Delta y approaches one, the error is minimum, and although the interpolation error is inevitable, it has limited influence on the accuracy of the result. Finally, examples are presented for determining the stresses in a circular plate and ring subjected to diametric loading. Results show that the proposed approach provides a complete solution for determining the full-field stresses in photoelastic models.
机译:光弹性是评估压力和其在压力体内的空间变化的有效方法。在本研究中,提出了一种通过相移确定应力分布和改性剪切差的方法。首先,第一主应力和主应力之间的延迟的取向在全场通过相移确定。然后,通过双向插值和改进的剪切差异方法的推导,从具有自由边界的点沿其正常方向计算内部应力。提出了一种减少剪切差方案中的集成误差的方法,并与现有方法进行比较;使用理论光弹性参数计算具有相同点的应力分量时,减少了集成误差。结果表明,当Delta x / delta y的值接近一个时,误差最小,并且虽然插值误差是不可避免的,但它对结果的准确性有限。最后,提出了用于确定圆形板中的应力和经受直径载荷的环的实施例。结果表明,该方法提供了一种确定光弹性模型中全场应力的完整解决方案。

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