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Motion of Crystal Particles by the Electromagnetic Vibrations in Mg-Cu-Y Bulk Metallic Glasses

机译:Mg-Cu-Y块状金属玻璃中电磁振动引起的晶体颗粒运动

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摘要

The method for producing Mg-Cu-Y and Fe-Co-B-Si-Nb bulk metallic glasses using electromagnetic vibrations is effective in forming the metallic glass phase. Disappearance or decrement of clusters by the electromagnetic vibrations applied to the liquid state is considered to cause suppression of crystal nucleation, because the electromagnetic vibrations vibrate the clusters vigorously in the melt. The purpose of this study was to investigate motion of the crystal particles by the electromagnetic vibrations in Mg-Cu-Y bulk metallic glasses. The electromagnetic vibration force vibrated the crystal particles or the clusters that become crystal nuclei in the melt, because the electric current for the electromagnetic vibrations concentrates in those. Thus, the electromagnetic vibrations were found to select vibration particles from the melt. Moreover, it was considered that composites for which second phases or other compounds are dispersed into the metallic glass phase or a nanostructure phase can be produced by the electromagnetic vibration process.
机译:利用电磁振动制造Mg-Cu-Y和Fe-Co-B-Si-Nb块状金属玻璃的方法对于形成金属玻璃相是有效的。由于施加到液态的电磁振动而使团簇消失或减少,这被认为引起晶体成核的抑制,因为电磁振动在熔体中使团簇剧烈振动。本研究的目的是研究Mg-Cu-Y大块金属玻璃中电磁振动引起的晶体颗粒运动。电磁振动力使在熔体中成为晶体核的晶体颗粒或团簇振动,因为电磁振动的电流集中在其中。因此,发现电磁振动从熔体中选择振动颗粒。另外,认为可以通过电磁振动法制造将第二相或其他化合物分散在金属玻璃相或纳米结构相中的复合材料。

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