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Geometrically Nonlinear Field Fracture Mechanics and Crack Nucleation Application to Strain Localization Fields in Al-Cu-Li Aerospace Alloys

机译:几何非线性场断裂力学和裂纹成核在Al-Cu-Li航空航天合金应变局部场中的应用

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摘要

The displacement discontinuity arising between crack surfaces is assigned to smooth densities of crystal defects referred to as disconnections, through the incompatibility of the distortion tensor. In a dual way, the disconnections are defined as line defects terminating surfaces where the displacement encounters a discontinuity. A conservation statement for the crack opening displacement provides a framework for disconnection dynamics in the form of transport laws. A similar methodology applied to the discontinuity of the plastic displacement due to dislocations results in the concurrent involvement of dislocation densities in the analysis. Non-linearity of the geometrical setting is assumed for defining the elastic distortion incompatibility in the presence of both dislocations and disconnections, as well as for their transport. Crack nucleation in the presence of thermally-activated fluctuations of the atomic order is shown to derive from this nonlinearity in elastic brittle materials, without any algorithmic rule or ad hoc material parameter. Digital image correlation techniques applied to the analysis of tensile tests on ductile Al-Cu-Li samples further demonstrate the ability of the disconnection density concept to capture crack nucleation and relate strain localization bands to consistent disconnection fields and to the eventual occurrence of complex and combined crack modes in these alloys.
机译:通过变形张量的不相容性,在裂纹表面之间产生的位移不连续性被分配给称为缺陷的晶体缺陷的平滑密度。以双重方式,将断开定义为线缺陷终止于位移遇到不连续的表面。裂纹开口位移的守恒声明以运输定律的形式为断开动力学提供了框架。将类似的方法应用于由于位错引起的塑性位移的不连续性会导致位错密度同时参与分析。假设几何位置的非线性是为了定义在存在错位和分离的情况下的弹性变形不相容性,以及它们的运输。在存在原子序的热激活波动的情况下,裂纹形核被证明是由弹性脆性材料中的这种非线性引起的,没有任何算法规则或特殊的材料参数。用于延展性Al-Cu-Li样品拉伸试验分析的数字图像相关技术进一步证明了断开密度概念捕获裂纹核并将应变局部化带与一致的断开场以及最终复杂的和组合的出现相关的能力。这些合金的裂纹模式。

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