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首页> 外文期刊>Advances in Mechanical Engineering >Three-dimensional numerical investigation of dendritic self-organizational structure growth on a nanopost surface:
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Three-dimensional numerical investigation of dendritic self-organizational structure growth on a nanopost surface:

机译:纳米柱表面上树枝状自组织结构生长的三维数值研究:

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Nanopost arrays are generally used in applications of reflection gratings and in changing material surface wettability. Nanopost arrays can be used as a passive component to induce dendritic self-organized hierarchical architectures. In this study, through the use of a phase-field model, we performed a three-dimensional numerical simulation to demonstrate that nanopost structures affect the expanding speed of the surface of a dendritic self-organized structure in the growing path of a hierarchical structure. Additionally, we demonstrated that the nanopost array arrangement on the surface changed the hierarchical structure branching. Finally, introducing an externally applied force to the system enabled the use of a nanopost as an active component. Nanopost surroundings were determined to significantly affect the final distribution of dendritic structures and induce hierarchical structures after an external force was introduced to the system.
机译:纳米柱阵列通常用于反射光栅的应用以及改变材料表面的润湿性。纳米柱阵列可以用作诱导树突状自组织分层体系结构的无源组件。在这项研究中,通过使用相场模型,我们进行了三维数值模拟,以证明纳米柱结构影响树状自组织结构表面在分层结构的生长路径中的膨胀速度。另外,我们证明了表面上的纳米柱阵列排列改变了分层结构分支。最后,将外部施加的力引入系统后,就可以将纳米柱用作活性成分。确定纳米柱周围环境会显着影响树突结构的最终分布,并在将外力引入系统后诱导分层结构。

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