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首页> 外文期刊>Materials Science and Engineering >Ultrasonic back reflection evaluation of crack growth from PSBs in low-cycle fatigue of stainless steel under constant load amplitude
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Ultrasonic back reflection evaluation of crack growth from PSBs in low-cycle fatigue of stainless steel under constant load amplitude

机译:恒定载荷振幅下不锈钢低周疲劳中PSB裂纹扩展的超声背反射评估

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摘要

The objective of this study is to develop a method for evaluating crack growth from persistent slip bands (PSBs) in low-cycle fatigue of stainless steel, using an ultrasonic back reflection wave during the early stages of its fatigue life. Changes in the back reflection intensity from surface of the material under cyclic loading are measured. Back reflection intensity decreased due to the evolution of PSBs before the start of fatigue crack growth from the crack initiated along PSBs with increase in the number of cyclic loads. The average dislocation density in a grain including PSBs corresponds to the attenuation change measured during the fatigue test, from the initial state to the nucleation and growth of the fatigue crack. The attenuation is caused by the movement of dislocation due to ultrasonic waves, whose mechanism was considered quantitatively. In this study, micromechanical modeling was conducted as a prediction method for remaining fatigue life to start crack growth from PSBs based on the changes in ultrasonic back reflection intensity.
机译:这项研究的目的是开发一种方法,该方法在疲劳寿命的早期阶段使用超声背反射波评估不锈钢在低周疲劳中的永久滑移带(PSB)引起的裂纹扩展。测量在循环载荷下从材料表面产生的背反射强度的变化。背向反射强度的下降是由于随着疲劳载荷的增加,从沿PSB开始的裂纹开始,在疲劳裂纹开始生长之前,PSB的演化所致。包含PSBs的晶粒中的平均位错密度对应于疲劳测试期间从初始状态到疲劳裂纹成核和生长的衰减变化。衰减是由于超声波引起的位错运动引起的,其机理已被定量考虑。在这项研究中,进行了微机械建模,作为剩余疲劳寿命的预测方法,以便根据超声背反射强度的变化从PSB开始裂纹扩展。

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