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Linking nanoscale and macroscale: calculation of the change in crack growth resistance of steels with different states of Cu precipitation using a modification of stress-strain curves owing to dislocation theory

机译:链接纳米级和宏观级:根据位错理论通过修改应力-应变曲线来计算具有不同Cu析出态的钢的抗裂纹扩展性能的变化

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摘要

In the present study, strengthening of steels due to Cu precipitates in the nanometer scale is investigated. These precipitates lead to a significant increase of the matrix yield stress due to impeded dislocation movement. This effect can be treated quantitatively on the mesomechanical level of dislocation theory. The impact on the macroscopic failure behaviour of ferritic steel is investigated in the framework of damage theory. The presented strategy can be also applied to related materials science problems.
机译:在本研究中,研究了由于铜在纳米尺度上析出而引起的钢的强化。这些沉淀由于位错运动受阻而导致基体屈服应力显着增加。这种作用可以在位错理论的细观力学水平上进行定量处理。在损伤理论的框架下研究了对铁素体钢宏观破坏行为的影响。提出的策略也可以应用于相关的材料科学问题。

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