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Plastic Deformation of Irradiated Zirconium Alloys: TEM Investigations and Micro-Mechanical Modeling

机译:辐照锆合金的塑性变形:TEM调查和微机械建模

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TEM investigations have been performed on irradiated samples after deformation covering various testing conditions for different recrystallized Zr alloys. It is shown that for transverse tensile tests and internal pressure tests performed at 350°C, only basal channels are observed for strain levels up to uniform elongation, whereas only prismatic and pyramidal channels are observed for axial tensile test. Then, focusing on internal pressure testing, irradiation hardening and strain hardening behavior have been analyzed in detail and compared to TEM observations. It is proposed that dislocation channeling phenomenon leads to high strain incompatibility between channels and surrounding grains and therefore to high microscopic internal stresses. These high microscopic internal stresses are believed to induce strong kinematic hardening at the macroscopic scale, as suggested by the mechanical behavior analysis. Finally, a micro-mechanical model based on microscopic deformation mechanisms and using homogenization techniques is proposed, taking into account the observed channeling phenomenon.
机译:在覆盖不同重结晶Zr合金的各种试验条件的变形后,对辐照样品进行了TEM调查。结果表明,对于在350℃下进行的横向拉伸试验和内部压力测试,仅观察到基底通道用于均匀伸长率,而仅观察到轴向拉伸试验的棱柱形和金字塔脉络线。然后,专注于内部压力测试,详细分析了辐照硬化和应变硬化行为并与TEM观察进行了比较。建议位错窜流现象导致通道和周围晶粒之间的高应变不相容性,因此对高显微部内应力产生高菌株。如机械行为分析所示,这些高显微镜内应力被认为在宏观尺度处诱导强烈的运动硬化。最后,提出了一种基于微观变形机制和使用均质化技术的微机械模型,考虑到观察到的渠道现象。

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