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Effect of retained austenite stability on cyclic deformation behavior of low-alloy transformation-induced plasticity steels

机译:残余奥氏体稳定性对低合金相变诱发塑性钢循环变形行为的影响

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The retained austenite (RA) characteristics of Al-containing TRIP700 steels have been manipulated using varying bainitic isothermal transformation (BIT) processing. The microstructural evolution was investigated using optical microscopy and quantitative image analysis, while the amount of transformed RA was evaluated with the saturation magnetization (SM) technique. Cyclic behavior is found to depend on the applied strain amplitude and stability of RA. At strain amplitudes with comparable elastic and plastic strain components, cyclic softening prevails, facilitated by more stable RA microstructures and Low Cycle Fatigue (LCF) performance benefits from a lower RA stability, which controls the amount of cyclic softening rate. With increasing plastic strain component, a transition to cyclic hardening is observed, and the transition strain increases with increasing RA stability. LCF performance deteriorates because of excessive cyclic strain hardening promoting martensitic transformation. The effect is accompanied by a transition from mixed dimple/cleavage to cleavage-type fracture characteristics.
机译:含铝的TRIP700钢的残余奥氏体(RA)特性已使用不同的贝氏体等温转变(BIT)工艺进行了处理。使用光学显微镜和定量图像分析研究了微观结构的演变,同时使用饱和磁化(SM)技术评估了RA的转化量。发现循环行为取决于所施加的应变幅度和RA的稳定性。在具有可比较的弹性应变和塑性应变分量的应变振幅下,由于更稳定的RA微结构而促进了循环软化,而较低的RA稳定性(控制循环软化速率的量)则有利于低循环疲劳(LCF)性能。随着塑性应变分量的增加,观察到向循环硬化的过渡,并且过渡应变随着RA稳定性的增加而增加。由于过度的循环应变硬化促进马氏体相变,LCF性能恶化。该效果伴随着从混合的酒窝/劈裂向劈裂型断裂特征的转变。

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