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Neutron diffraction study of plasticity-induced martensite formation of the austenitic stainless steel AISI 321

机译:中子衍射研究诱导的奥氏体不锈钢AISI 321形成马氏体形成

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The elastic and plastic properties of the austenitic matrix and martensitic areas induced during cyclic tensile-compressive loading of low carbon metastable austenitic stainless steel were studied in an in-situ stress rig experiment on the ENGIN instrument at the ISIS pulsed neutron facility. Two sets of samples were prepared from the steel AISI 321. The first set of samples (annealed at 1050°C and quenched in water) was cycled under strain control with a strain amplitude of 1% at a frequency of 0.5 Hz. The second set (1070°C / quenched in air) was cycled under stress control with a stress amplitude of 330 MPa at 5 Hz. The applied stress - elastic strain responses of the austenitic and martensitic phases were obtained by Rietveld and Le Bail refinements of the neutron diffraction spectra. The results of the modified refinements accounting for the elastic anisotropy in polycrystalline materials under load are also presented. The residual strains were determined for the first set of samples using a noncycled sample as a reference sample.
机译:奥氏体基体和低碳亚稳奥氏体不锈钢的环状拉伸压缩载荷期间诱发马氏体区域的弹性和塑性性质上在ISIS脉冲中子设施ENGIN仪器原位应力钻机实验进行了研究。从钢AISI 321第一组样品(在1050℃下退火,并在水中淬灭),在0.5Hz的频率的1%的应变振幅应变控制下循环制备了两组样品。第二组(1070℃/在空气骤冷)与在5Hz 330兆帕的应力振幅应力控制下循环。所施加的应力 - 奥氏体和马氏体相的弹性应变应答通过中子衍射光谱的Rietveld和Le保释精炼获得。修改后的精炼占负载下多晶材料的弹性各向异性的结果也呈现。将残余的菌株用于使用noncycled样品作为参照样品的第一组样本的确定。

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