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Study of fracture resistance of a weldment with a propagating crack

机译:岩体裂缝裂缝抗裂缝的研究

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The overall fracture resistance of a weldment with a propagating crack across the weld, HAZ and base material has been evaluated for a AISI type 316LN stainless steel (SS), based on coupled experimental-finite element analysis. Compact type (CT) specimens with initial crack tip in die in the weld heat affected zone (HAZ) and base material have been tested to evaluate J-integral resistance curve (J-R curve) across the weldment. Towards evaluating the J-integral for a heterogeneous material, elastic component of J was determined using equivalent Young's modulus (E-eq) in terms of instantaneous compliance and crack depths. Simultaneously, finite element (FE) analyses have been carried out to estimate J-integrals for various contours across the weldment and for nodal singularities along interfaces, leading to a modified J-integral for overall weldment. The reasonable agreement among experimental J values from different regions with the modified J-integral values gives credence to this procedure to predict overall fracture resistance across the weldment over a heterogeneous microstructural gradient.
机译:基于耦合的实验有限元分析,已经评估了通过焊接,HAZ和基材的传播裂缝的焊接焊接的整体断裂抗性。已经测试了焊接热影响区域(HAZ)和基材的模具中具有初始裂纹尖端的紧凑型(CT)样本,以评估焊接上的J-积分电阻曲线(J-R曲线)。为了评估异质材料的J-Intional,在瞬时顺应性和裂纹深度方面使用相同的杨氏模量(E-EQ)测定J的弹性部件。同时,已经进行了有限元(Fe)分析,以估计焊缝上的各种轮廓的J-Integrats以及沿界面的节点奇点,导致用于整体焊接的改进的J-Intional。具有改进的J积分值的不同区域的实验J值之间的合理一致性使得能够通过非均相微结构梯度来预测整个焊接的整体断裂抗性。

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