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Investigation and Simulation on Amorphous Formation and Growth

机译:对非晶形成和生长的调查与模拟

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The amorphous formation mechanism was studied from the viewpoint of the crystallography. The experimental results showed that the heterogeneity atoms with chemical bonds had a higher capability of forming into compounds than that of congener atoms. It was proposed that the banded structure was induced by the variation of active atoms with a proper thickness, alternated depletion and enrichment of anions in the diffusion layer due to generation and evolution of hydrogen gas. The chemical force plays an important part in the formation. The factors working on chemical reaction affect the formation in the same. A number of steady motes are in a high speed movement, and collide with each other in all probability. The formation of amorphous alloys is the result of massive nucleus appearance, which was proposed from the crystallography in this paper. The cause of the chaotic distribution is of the suppression of each nucleus growth. The short-range order atomic structure is of the atomic nucleus growth orientation. And the long-range disorder structure is of the massive nucleus suppression growth.
机译:从晶体学的观点来看,研究了非形态形成机制。实验结果表明,具有化学键的异质性原子具有比同一原子原子的化合物的更高的成形能力。提出,由于氢气的产生和演化,通过具有适当的厚度,交替的耗尽和富集阴离子的活性原子的变化引起的带状结构引起的。化学力在地层中起重要作用。在化学反应上工作的因素影响了相同的形成。许多稳定的仪器处于高速运动,并且在所有概率中彼此碰撞。无定形合金的形成是大量核外观的结果,这是从本文中的晶体学提出的。混沌分布的原因是抑制每种核生长。短距离令原子结构是原子核生长取向。并且远程障碍结构是巨大的核抑制生长。

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