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Plastic deformation and creep damage evaluations of type 316 austenitic stainless steels by EBSD

机译:用EBSD评估316型奥氏体不锈钢的塑性变形和蠕变损伤

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The inspection method of plastic and/or creep deformations has been required as the quantitative damage estimation procedure for structural components especially used in electric power plants. In this study, the method using electron backscatter diffraction (EBSD) was applied to the deformation and damage evaluation of austenitic stainless steels strained by tension or compression at room temperature and also tested in creep at high temperature. It was found that the value of Grain Average Misorientation (GAM) which showed the average misorientation for the whole observed area including over several dozen grains, was a very useful parameter for quantifying the microstructural change as either the plastic or creep strain increased. The unique linear correlation was obtained between GAM and plastic strain in tension and compression. For creep damage evaluation, the difference of grain average misorientation from the value of the unstrained specimen (ΔGAM) showed an excellent correlation with the inelastic strain below strain at which the tertiary creep began.
机译:塑性和/或蠕变变形的检查方法已被要求作为对尤其是在发电厂中使用的结构部件进行定量损伤评估的程序。在这项研究中,使用电子背散射衍射(EBSD)的方法被应用于在室温下通过拉伸或压缩而应变的奥氏体不锈钢的变形和损伤评估,并在高温下进行了蠕变测试。发现晶粒平均取向错误(GAM)的值显示了整个观察区域(包括几十个晶粒)的平均取向错误,是量化塑性或蠕变应变增加时微观组织变化的非常有用的参数。在拉伸和压缩过程中,GAM与塑性应变之间获得了唯一的线性相关性。对于蠕变损伤评估,晶粒平均取向差与未应变试样的值(ΔGAM)的差异与三次蠕变开始时应变以下的非弹性应变表现出极好的相关性。

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