首页> 外文会议>International Conference on Stress Evaluation Using Neutrons and Synchrotron Radiation; 20070924-26; Vienna(AT) >Rod-textured Zircaloy-2: a case study of an anisotropic metal with multiple deformation modes, strong texture and thermal strains
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Rod-textured Zircaloy-2: a case study of an anisotropic metal with multiple deformation modes, strong texture and thermal strains

机译:杆状织构的Zircaloy-2:具有多种变形模式,强织构和热应变的各向异性金属的案例研究

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Hexagonal close-packed and lower symmetry metals often exhibit anisotropic mechanical properties because the dominant slip system forbids slip in certain lattice directions. Rod-textured Zircaloy-2 is a model system which can act as a road map for understanding more complex cases. In this case prism slip is dominant and pyramidal slip is only initiated at higher applied stresses. Tensile twinning does not always play a role since its initiation depends on the starting texture. Along the rod axis, Zircaloy-2 exhibits a very strong weighting of poles lying within the basal plane of the structure such as <1010>, <1120> etc. However, perpendicular to the rod axis, all poles are present. The coefficients of thermal expansion are unequal along the a- and c-axes of the crystal structure, so there are always large intrinsic thermal strains. Likewise, the mechanical properties perpendicular to the rod axis are dominated by the interaction of grains with hard and soft plastic response. Over two decades, the residual strains and the in-situ strain response parallel and perpendicular to the rod axis have been measured by neutron diffraction for both tensile and compressive applied stress. The paper reviews our understanding of the strain development for tensile and compressive applied stress in Zircaloy-2 in terms of slip and tensile twinning, the crucial part played by the thermal strains and the simplifying role of the strong texture.
机译:六角形密堆积且对称性较低的金属通常表现出各向异性的机械性能,因为主要的滑动系统禁止在某些晶格方向上滑动。带杆纹理的Zircaloy-2是一个模型系统,可以用作了解更复杂案例的路线图。在这种情况下,棱镜滑动占主导,而金字塔形滑动仅在较高的施加应力下才开始。拉伸孪生并不总是起作用,因为它的起始取决于起始纹理。沿杆的轴线,Zircaloy-2的杆极权重很大,位于结构的基础平面内,例如<1010>,<1120>等。但是,垂直于杆的轴线,所有杆都存在。沿晶体结构的a轴和c轴的热膨胀系数不相等,因此始终存在较大的固有热应变。同样,垂直于杆轴的机械性能主要受晶粒与硬,软塑性响应的相互作用的影响。在过去的二十多年中,已经通过中子衍射测量了拉伸应力和压缩应力的残余应变和平行于垂直于棒轴的原位应变响应。本文回顾了我们对Zircaloy-2中拉伸和压缩施加应力的应变发展的理解,包括滑动和拉伸孪生,热应变所起的关键作用以及强织构的简化作用。

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