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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Uniaxial Tensile Deformation of Uranium 6 Wt Pct Niobium: A Neutron Diffraction Study of Deformation Twinning
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Uniaxial Tensile Deformation of Uranium 6 Wt Pct Niobium: A Neutron Diffraction Study of Deformation Twinning

机译:铀6 Wt Pct铌的单轴拉伸变形:变形孪晶的中子衍射研究

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The deformation of polycrystalline uranium 6 wt pct niobium (U6Nb) was studied in situ during uniaxial tensile loading by time-of-flight neutron diffraction. Diffraction patterns were recorded at incremental stresses to a maximum of 450 MPa (approx 4 pet macroscopic strain). Consistent with reorientation of the martensite variants by twinning, significant changes in the diffraction peak intensities, which were proportional to the plastic contribution of the macroscopic strain, were observed. Both the lattice parameters (a, b, C, and #gamma#) and interplanar spacings (d_(hkl)) were determined as a function of applied stress. Phenomenologically, the highly anisotropic stress response of the lattice parameters as well as the individual lattice spacings can be related to deformation twinning. Preliminary transmission electron microscopy (TEM) studies identified the (130) and (172) as active deformation twinning systems of U6Nb in tension.
机译:通过飞行中子衍射在单轴拉伸载荷过程中原位研究了6 wt%的多晶铀铌(U6Nb)的形变。在最大为450 MPa(约4 pet宏观应变)的增加应力下记录了衍射图样。与通过孪晶使马氏体变体重新取向一致,观察到衍射峰强度的显着变化,其与宏观应变的塑性贡献成比例。确定晶格参数(a,b,C和#gamma#)和晶面间距(d_(hkl))均是所施加应力的函数。从现象学上讲,晶格参数的高度各向异性应力响应以及各个晶格间距可能与变形孪生有关。初步的透射电子显微镜(TEM)研究确定(130)和(172)是U6Nb在张力下的主动变形孪生系统。

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