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Crystallographic texture and creep anisotropy in cold worked and recrystallized zirlo.

机译:在冷加工和重结晶的锆石中的晶体织构和蠕变各向异性。

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摘要

Zirlo, one kind of Zirconium alloys, being hexagonally close packed, have limited number of slip systems, and exhibit preferred orientations following thermo-mechanical treatments, which result in anisotropic mechanical properties. The objective of this project is to investigate the anisotropic mechanical properties, crystallographic texture, and microstructure of crept zirlo materials.; The anisotropic mechanical properties were investigated using uniaxial and biaxial creep tests. Different axial and hoop stress, which produced different stress ratios (0, 0.67,0.75, 1, and 2) are selected for creep tests at 450°C. Creep data are used to determine strain rate ratios vs. stress ratios, the anisotropic parameters (R and P), and creep loci for cold-worked and recrystallized zirlo.; The crystallographic textures were characterized in terms of inverse and direct pole figures using X-ray diffraction techniques. Inverse pole figures were constructed for specimens in the rolling direction, transverse direction, and normal direction for both cold worked and recrystallized tubes. Direct pole figures were constructed for specific reflection planes, such as basal (0002), prismatic (101¯0) and pyramidal (101¯2). Crystallite orientation distribution function (CODF) was derived from the pole figure data. Euler plots were obtained from crystallite orientation distribution coefficients (wlmn) and subsequently therefore, ideal orientations were calculated. These CODFs were combined with the Lower-Bound model to predict creep anisotropy assuming the dominance of prismatic, basal and pyramidal slip systems. Creep strain rate ratios vs. stress ratios, creep loci and anisotropy parameters (R and P) were predicted. The predictions based on the prismatic dominance matche with the experimental data very well.; Microstructure of the crept specimens was characterized by Transmission Electron Microscopy for different stress ratios (0, 0.75 and 1). The results show mainly dislocations in the matrix with no subgrain formation. The samples tested under equibiaxial loading revealed deformation twins. More detailed work is called for in characterizing the influence of stress-states and stress levels as well as cold work on deformation microstructures.
机译:Zirlo是一种六方密堆积的锆合金,具有有限的滑移系统,并且在进行热机械处理后表现出优选的取向,这导致各向异性的机械性能。该项目的目的是研究蠕变锆石材料的各向异性力学性能,晶体结构和微观结构。使用单轴和双轴蠕变试验研究各向异性力学性能。在450°C下进行蠕变试验时,选择了产生不同应力比(0、0.67、0.75、1和2)的不同轴向应力和环向应力。蠕变数据用于确定应变率比与应力比,各向异性参数(R和P)以及冷加工和重结晶Zirlo的蠕变轨迹。使用X射线衍射技术根据反极图和直接极图来表征晶体织构。对于冷加工和再结晶管材,在轧制方向,横向和法向方向上为试样构造了反极图形。为特定的反射平面构造了直接极点图形,例如基底(0002),棱柱形(101’0)和角锥(101’2)。从极图数据导出了微晶取向分布函数(CODF)。从微晶取向分布系数(wlmn)获得欧拉图,因此,随后计算出理想取向。这些CODF与Lower-Bound模型结合起来,以假定棱柱,基层和锥体滑移系统为主导的蠕变各向异性来预测。预测了蠕变应变率比与应力比,蠕变轨迹和各向异性参数(R和P)。基于棱柱优势的预测与实验数据非常吻合。通过透射电子显微镜对不同应力比(0、0.75和1)表征了蠕变试样的微观结构。结果表明,主要是位错在基体中没有形成亚晶粒。在等双轴载荷下测试的样品显示出变形孪晶。在表征应力状态和应力水平以及冷加工对变形微结构的影响方面,需要进行更详细的工作。

著录项

  • 作者

    Yan, Jinyuan.;

  • 作者单位

    North Carolina State University.;

  • 授予单位 North Carolina State University.;
  • 学科 Engineering Nuclear.; Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 308 p.
  • 总页数 308
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 原子能技术;工程材料学;
  • 关键词

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