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Non-parametric identification of the non-homogeneous stress in high strain-rate uni-axial experiments

机译:高应变率单轴实验中非均匀应力的非参数识别

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摘要

Stress and strain homogeneity, in tested samples, is a crucial assumption during a dynamic test. Whenever this assumption is true, the conventional recovery of the mean strain and stress is valid. However, when the stress and strain fields in the sample are not homogeneous, more sophisticated treatment must be considered. Inverse problem techniques are then proposed. Nevertheless, they may yield a non-physical result. In this paper, a non-parametric solution to the problem of non-homogeneity in dynamic tests is presented. The stress field is deduced from the displacement field measured via a Digital Speckle Photography (DSP) technique and a force boundary condition. (c) 2008 Elsevier Ltd. All rights reserved.
机译:在测试样品中,应力和应变的均匀性是动态测试期间的关键假设。只要这个假设成立,平均应变和应力的常规恢复都是有效的。但是,当样品中的应力场和应变场不均匀时,必须考虑进行更复杂的处理。然后提出反问题技术。但是,它们可能会产生非物理结果。本文提出了动态测试中非均匀性问题的非参数解。从通过数字散斑摄影(DSP)技术和力边界条件测量的位移场推导出应力场。 (c)2008 Elsevier Ltd.保留所有权利。

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