首页> 外文会议>Symposium on Actinides - Basic Science, Applications and Technology; 20031201-20031203; Boston,MA; US >Transformation Crystallography and Plasticity of the δ→ α′ Transformation in Plutonium Alloys
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Transformation Crystallography and Plasticity of the δ→ α′ Transformation in Plutonium Alloys

机译:P合金中δ→α′相变的相变晶体学和塑性

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In delta phase Pu-Ga alloys, the transformation from the ductile face-centered cubic (fcc) δ phase that is retained at room temperature to the brittle low-temperature monoclinic alpha-prime phase is a thermally activated diffusionless transformation with double-c kinetics. Accurate modeling of the phase transformation requires detailed understanding of the role of plastic flow during the transformation and of the crystallographic transformation path. Using transmission electron microscopy (TEM), we find a significant increase in dislocation density in δ near the α′ plates, which suggests that plastic deformation contributes to the accommodation of the 20% reduction in volume during the transformation. Analysis of a series of optical micrographs of partially transformed alloys suggests that the α′ habit plane is usually nearly perpendicular to <111> δ. However, a small number of TEM observations support a habit plane near <112> or <123>, in agreement with earlier work.
机译:在三角相Pu-Ga合金中,从室温下保持的延性面心立方(fcc)δ相到脆性低温单斜晶α-初生相的转变是具有双c动力学的热活化无扩散转变。对相变的准确建模需要对相变过程中塑性流动的作用以及结晶相变路径的详细了解。使用透射电子显微镜(TEM),我们发现α'板附近δ的位错密度显着增加,这表明塑性变形有助于转变过程中体积减少20%。对部分相变合金的一系列光学显微照片的分析表明,α'惯性平面通常几乎垂直于<111>δ。但是,与早期工作一致,少数TEM观测结果支持<112>或<123>附近的习惯平面。

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