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Measurement of plastic strain of polycrystalline material by electron backscatter diffraction

机译:电子背散射衍射测量多晶材料的塑性应变

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It is important to know the degree of plastic strain in order to evaluate the susceptibility and crack growth rate of stress corrosion cracking (SCC) in stainless steel and nickel based alloy, because SCC is enhanced by the cold work and causes many problems in nuclear power plant components. In this study, electron backscatter diffraction in conjunction with scanning electron microscopy is applied to measure the plastic strain imposed to stainless steel by tensile load. A new parameter, which quantifies the spread of the crystal orientation within individual grains arising due to dislocation accumulation during plastic deformation, is correlated with imposed plastic strain. The new parameter is called 'crystal deformation' and is determined from the spread in misorientation from the central grain orientation. It is confirmed that this parameter has a good correlation with plastic strain and is not affected by the data density of the crystal orientation map. The dislocation density distribution is also evaluated from the misorientation from the central orientation. Relatively high dislocation density was observed near grain boundaries and grain boundary triple points, which was consistent with the observed deterioration of EBSD pattern quality in those locations.
机译:了解塑性应变的程度对于评估不锈钢和镍基合金中应力腐蚀裂纹(SCC)的敏感性和裂纹扩展速率非常重要,因为冷加工会增强SCC并导致核电中的许多问题植物成分。在这项研究中,电子背散射衍射结合扫描电子显微镜被用于测量拉伸载荷作用于不锈钢的塑性应变。一个新的参数,它量化了由于塑性变形过程中的位错积累而引起的单个晶粒内晶体取向的扩散,并与施加的塑性应变相关。新的参数称为“晶体变形”,它是根据中心晶粒取向的取向偏差而确定的。可以确定的是,该参数与塑性应变具有良好的相关性,并且不受晶体取向图的数据密度的影响。位错密度分布也从中心取向的取向错误来评估。在晶界和晶界三点附近观察到相对较高的位错密度,这与在这些位置观察到的EBSD图案质量下降相一致。

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