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Influence of Strain and Stress Triaxiality on the Fracture Behavior of GB 35CrMo Steel during Hot Tensile Testing

机译:应变和应力三轴性对热拉伸检测期间GB 35Crmo钢断裂行为的影响

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摘要

To better understand cavitation nucleation and crack initiation in 35CrMo steel during high-temperature tensile processing and the effect of stress triaxiality on its fracture behaviors, uniaxial and notch high-temperature tensile tests were performed. The microstructure, fracture morphology, fracture strain, and stress triaxiality of the tested 35CrMo steel were then characterized and discussed. The results showed that crack formation in 35CrMo steel included stages of nucleation, growth, and microcavity aggregation. Scanning electron microscopy and energy-dispersive X-ray spectroscopy demonstrated that crack formation was closely related to the presence of steel inclusions. High-temperature tensile testing of samples with different notch radii showed that the fracture strain of 35CrMo steel was decreased with increasing stress triaxiality, that is, increased stress levels corresponded to decreased material plasticity. In addition, the recrystallization degree was decreased with increased stress triaxiality, and the grain size growth was slowed. The failure of 35CrMo steel occurred via ductile fracture, and low stress triaxiality, and high temperature conditions induced large and deep dimples on the fracture surface.
机译:为了更好地了解在高温拉伸加工期间35Crmo钢中的空化成核和裂纹开始,并进行应激三轴性对其断裂行为的影响,进行单轴和凹口高温拉伸试验。然后表征和讨论了测试的35crmo钢的微观结构,断裂形态,断裂菌株和应激三轴性。结果表明,35Crmo钢中的裂缝形成包括成核,生长和微腔聚集的阶段。扫描电子显微镜和能量分散X射线光谱表明,裂缝形成与钢夹杂物的存在密切相关。具有不同陷波半径的样品的高温拉伸试验表明,随着应力三轴的增加,35Crmo钢的断裂应变降低,即压力水平的增加对应于降低的材料可塑性。此外,重结晶度随着应激三轴性的增加而降低,晶粒尺寸的生长缓慢。 35crmo钢的失效通过延性骨折,低应力三轴性,高温条件诱导裂缝表面上的大而深的凹坑。

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