Towards a Process for the Assessment of Mixed Mode I+II Fracture Toughness

Afaf Bouydo, V. Lacroix, R. Chaouadi, V. Mareš
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Abstract

In fracture mechanics, a flaw behavior in pressure vessels is assessed with respect to the material fracture toughness. Fracture toughness which most Fitness-for-Service (FFS) codes relies on, only considers mode-I crack opening. However, in presence of tilted flaws, like quasi-laminar hydrogen flakes, this mode-I toughness may be too severe, and a mixed mode I+II fracture toughness seems to be more appropriate. In order to address the assessment of the fracture toughness curve, mixed mode I+II tests were performed by the authors on ferritic steel samples by adjusting the standard mode I CT specimen geometry to a geometry subjected to mixed mode I+II. Then, XFEM simulations of the mixed mode tests were performed in order to calculate the J-integral along the crack front. Based on tests and calculations results, the paper explains how the authors work towards proposing a method to measure the material fracture toughness in case of flaws subjected to mixed mode (I+II) loading.
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一种I+II混合模式断裂韧性评定方法的探讨
在断裂力学中,压力容器的缺陷行为是根据材料的断裂韧性来评估的。大多数FFS规范所依赖的断裂韧性只考虑i型裂缝开度。然而,当存在倾斜缺陷时,如准层流氢片,这种I型韧性可能过于严重,而I+II型混合断裂韧性似乎更合适。为了解决断裂韧性曲线的评估问题,作者对铁素体钢样品进行了混合模式I+II试验,将标准模式I CT试样的几何形状调整为混合模式I+II的几何形状。然后对混合模态试验进行了XFEM模拟,计算了沿裂纹前缘的j积分。基于试验和计算结果,本文解释了作者是如何提出一种方法来测量材料在混合模式(I+II)载荷下的断裂韧性。
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