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Investigation of the mechanical features of low cycle fatigue samples of austenitic steel AISI 321 under applied load by neutron diffraction stress analysis

机译:中子衍射应力分析研究外加载荷作用下奥氏体AISI 321低周疲劳试样的力学性能

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摘要

The elastoplastic properties of a stainless steel with an austenitic matrix and martensitic inclusions induced during cyclic tensile-compressive fatigue loading were studied using neutron diffraction. Specimens of annealed and quenched AISI type 321 steel were subjected to low cycle fatigue (strain amplitude of 1 percent at 0.5 Hz). Subsequent in situ loading tests provided the elastoplastic responses of both austenitic and martensitic phases via Rietveld refinement of neutron diffraction spectra. A clear trend of increasing elastic modulus with increasing fatigue level was noted in the austenite matrix. The results of modified refinements accounting for the elastic anisotropy in polycrystalline materials under load are presented. The residual strains in the austenitic matrix and the deviatoric components of both phases' residual microstresses were determined as a function of fatigue cycling. In the Appendix it is demonstrated that the presence of residual stresses can have an effect on the observed elastic moduli in a two phase system, but that for typical magnitudes the effect is negligible.
机译:利用中子衍射研究了循环拉伸-压缩疲劳加载过程中产生的具有奥氏体基体和马氏体夹杂物的不锈钢的弹塑性性能。经过退火和淬火的AISI 321型钢的试样经受了低周疲劳(0.5 Hz时应变幅度为1%)。随后的原位加载测试通过中子衍射谱的Rietveld精细化提供了奥氏体和马氏体相的弹塑性响应。在奥氏体基体中,随着疲劳程度的增加,弹性模量明显增加。提出了改进的细化结果,考虑了载荷下多晶材料的弹性各向异性。确定了奥氏体基体中的残余应变和两相残余微应力的偏斜分量与疲劳循环的关系。在附录中,证明了残余应力的存在可能会对两相系统中观察到的弹性模量产生影响,但是对于典型的幅度,该影响可以忽略不计。

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