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MICROMECHANICAL ASPECTS OF CONSTRAINT EFFECT AT BRITTLE FRACTURE INITIATION

机译:脆性骨折启动的约束效果的微机械方面

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Applying the two-parameter fracture mechanics approach to the analysis of failure initiation condition of the three point bend specimens with shallow and deep cracks were tested at various temperatures. Low carbon manganese cast steel was used for the analysis. This steel is tested as one of several candidate materials for containers of spent nuclear fuel. The effect of crack length on the fracture toughness-temperature diagram has been analysed. Although a strong dependence of measured fracture toughness on crack tip constraint was observed no evident differences in fracture morphology have been identified except for quantitative ones. Peculiarities of fracture behaviour in the transition and lower shelf regions of the steel investigated have been explained. The effect of crack tip constraint on brittle fracture characteristics has been quantified by means of the Q-parameter. The role of critical (cleavage) fracture stress in brittle fracture initiation under the influence of crack tip constraint has been analysed.
机译:在各种温度下测试应用双参数断裂力学方法对具有浅和深裂缝的三点弯曲标本的失效发起条件的分析。低碳锰铸钢用于分析。该钢被测试为几种候选材料中的一种用于废物核燃料的材料之一。分析了裂缝长度对断裂韧性 - 温度图的影响。尽管观察到测量的裂缝韧性对裂缝尖端约束的强烈依赖性未被识别出骨折形态的明显差异,但除了定量之外。已经解释了钢的过渡和较低架子区域中骨折行为的特性。通过Q参数量化脆性骨折特性对脆性断裂特性的影响。分析了临界(切割)断裂应力在裂纹尖端约束的影响下的脆性断裂胁迫的作用。

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