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Monitoring fatigue degradation in austenitic stainless steels

机译:监测奥氏体不锈钢的疲劳退化

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During cyclic loading of austenitic stainless steel, microstructural changes occurred, which affected both mechanical and physical properties. For certain steels, a strain-induced martensitic phase transformation was observed. The investigations showed that for the given material and loading conditions the volume fraction of martensite depended on the cycle number, temperature and initial material state. It was found that the martensite content continuously increased with the cycle number. Therefore, the volume fraction of martensite was used for indication of the fatigue usage. The temperature dependence of the martensite formation was described by a Boltzmann function. The martensite content decreased with increasing temperature. Two different heats of the austenitic stainless steel X6CrNiTi18-10 (AISI 321, DIN 1.4541) were investigated. The martensite formation rate was much higher for the cold-worked material than for the solution-annealed one. All applied techniques, neutron diffraction and advanced magnetic methods allowed the detection of martensite in the differently fatigued specimens.
机译:在奥氏体不锈钢的循环加载过程中,发生了微观结构变化,影响了机械和物理性能。对于某些钢,观察到应变引起的马氏体相变。研究表明,对于给定的材料和加载条件,马氏体的体积分数取决于循环次数,温度和初始材料状态。发现马氏体含量随着循环次数连续增加。因此,使用马氏体的体积分数来表示疲劳使用量。马氏体形成的温度依赖性由玻尔兹曼函数描述。马氏体含量随温度升高而降低。研究了两种不同的奥氏体不锈钢X6CrNiTi18-10(AISI 321,DIN 1.4541)。冷加工材料的马氏体形成速率比固溶退火材料的高。所有应用的技术,中子衍射和先进的磁性方法都可以检测出疲劳程度不同的试样中的马氏体。

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