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LOAD NORMALIZATION METHOD ACCOUNTING FOR ELASTIC AND ELASTIC-PLASTIC CRACK GROWTH

机译:加载标准化方法弹性和弹性塑料裂纹生长

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A single specimen technique to estimate crack length, standardized in ASTM E1820, is the so called load-normalization technique, also known as the Key-curve technique. The method is based on the separability between deformation and crack length. This means that if the load is normalized by a suitable function of crack length, the result will be a single crack length independent load-displacement curve. If this "Key "-curve is known, then based only on load and displacement information it is possible to estimate the corresponding crack length. The load normalizing method assumes a plastic response of the specimen during crack growth. If there is crack growth already in the elastic regime, non-linearity in the load-displacement record is not due to plasticity, but due to the crack growth. In this case the standard load-normalization method does not work since it assumes that the non-linearity is due to plasticity or crack tip blunting. Such materials require a modified approach. Here, a modified load normalization method accounting for possible elastic crack growth is presented. The method is shown to produce realistic crack growth estimates regardless of plasticity level of the specimen. The method applies an improved load normalization equation compared to the one presently used in ASTM E1820.
机译:单一试样技术来估计ASTM E1820中标准化的裂缝长度,是所谓的负载标准化技术,也称为密钥曲线技术。该方法基于变形和裂缝长度之间的可分离性。这意味着如果负载通过合适的裂缝长度函数归一化,则结果将是单个裂缝长度独立的负载 - 位移曲线。如果已知该“键”-Curve,则仅基于负载和位移信息,可以估计相应的裂缝长度。负荷标准化方法假设样品在裂纹生长期间的塑料响应。如果有弹性状态已经存在裂缝的增长,则负载 - 位移记录中的非线性不是由于可塑性,而是由于裂纹增长。在这种情况下,标准负载标准化方法不起作用,因为它假设非线性是由于可塑性或裂纹尖端钝化。这些材料需要修改方法。这里,提出了一种修改的负载归一化方法,占可能弹性裂纹增长。该方法显示出产生现实的裂纹增长估计,而不管样本的可塑性水平如何。与目前用于ASTM E1820中使用的一个方法,该方法应用改进的负载归一化方程。

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