首页> 外文期刊>Journal of Crystal Growth >Thermal Grain-boundary Grooving In Bicrystal Thin Solid Films Having Strong Anisotropic Surface Gibbs Free Energy Represented By The Modified Cycloid-curtate Function
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Thermal Grain-boundary Grooving In Bicrystal Thin Solid Films Having Strong Anisotropic Surface Gibbs Free Energy Represented By The Modified Cycloid-curtate Function

机译:具有改进的摆线-弯曲函数表示的具有强烈各向异性表面吉布斯自由能的双晶固体薄膜中的热晶界开槽

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The variational non-equilibrium thermodynamic method is further extended to give full coverage for the tilted grain-boundary (GB) configuration with respect to the sidewalls of a bicrystal thin solid film having strong anisotropic specific surface Gibbs free energy associated with the singular directions (faceting, vicinal planes). A set of critical computer simulation experiments supported by the generalized longitudinal force diagrams is performed on the asymmetrically disposed (inclination) bicrystal thin metallic films having four- and six-fold anisotropic specific surface Gibbs free energy to demonstrate the various GB-groove root topologies caused by the grain-boundary grooving under the surface drift-diffusion driven by the capillarity forces (thermal grooving). In the computer simulations, the strongly anisotropic surface-specific Gibbs free energy associated with the cusp regions is represented by the modified cycloid-curtate function (MCCF) as a basis (generator) for the Dirac delta distribution function on the Wulff construction, which involves not only the Wulff surface roughness (WSR) parameter (anisotropy constant) but also the Wulff surface topography (WST) index (shape parameter) that may be used as a metric for the temperature roughening phenomenon. A special computer run is also designed using the realistic structural and physicochemical properties in order to simulate the thermal groove profiles of cube-textured pure nickel tape {Ni-99.99 wt%} annealed four hours in vacuum at 800 ℃, and observed by the atomic force microcopy (AFM). The experimental line width fitting procedure applied to the simulation profile subjected to the self-similarity transformation, which resulted in almost perfect replication of the experimental digitized AFM photography, has yielded a mean surface (mass) diffusivity of nickel about 5.7×10~(-13)m~2/s (800 ℃), which is in excellent quantitative agreement with the diffusivity relationship at T≥1300 K reported in the literature on relatively contaminated surfaces, and obtained by high-precision profilometry measurements of the decay of capillary modes associated with the wide surface scratches.
机译:进一步扩展了变分非平衡热力学方法,以相对于具有强各向异性比表面的双晶固体薄膜的侧壁,为倾斜晶界(GB)构型提供了完全覆盖。 ,附近的飞机)。在具有四倍和六倍各向异性比表面吉布斯自由能的非对称布置(倾斜)双晶金属薄膜上进行了一组由广义纵向力图支持的关键计算机模拟实验,以证明引起的各种GB沟槽根拓扑通过毛细作用力驱动的表面漂移扩散下的晶界开槽(热开槽)。在计算机模拟中,与尖点区域相关的强各向异性表面特定的吉布斯自由能由修改后的摆线-曲线函数(MCCF)表示,作为Wulff结构上Diracδ分布函数的基础(生成器)不仅可以将Wulff表面粗糙度(WSR)参数(各向异性常数),而且可以将Wulff表面形貌(WST)指数(形状参数)用作温度粗糙现象的度量。还使用实际的结构和物理化学特性设计了一个特殊的计算机程序,以模拟在800℃的真空下退火四小时并通过原子观察的立方纹理纯镍带{Ni-99.99 wt%}的热槽轮廓。强制显微镜(AFM)。应用于自相似变换的模拟轮廓的实验线宽拟合过程,导致实验数字化AFM摄影几乎完美复制,产生的镍平均表面(质量)扩散系数约为5.7×10〜(- 13)m〜2 / s(800℃),与文献中报道的在相对污染的表面上T≥1300K时的扩散率关系极佳的定量一致性,并通过高精度轮廓测量法测量了毛细管模式的衰减与宽阔的表面划痕有关。

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