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The role of casting temperature in preparation of bulk metallic glasses

机译:铸造温度在制备大块金属玻璃中的作用

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摘要

In the past research on bulk metallic glasses (BMGs) has been concentrated on searching for alloy composition to obtain high glass forming ability. Very few studies are on the effect of processing condition on glass forming ability of BMGs. In this study, we have prepared CuZr-based BMGs at different casting temperatures. Increasing casting temperature increases glass forming ability and decreases the amount of the crystalline phase during BMG solidification. At a high casting temperature 1723 K, fully amorphous sample is obtained at a size of 2 mm in diameter. While under the lower casting temperatures (1523 K and 1323 K), crystalline CuZr phases exist. The formation of the crystalline phase is attributed to the initial crystals or cluster survived in the BMG melt during ingot remelting. The study indicates that casting temperature can be used as the controlling parameter to produce purely amorphous materials or crystalline CuZr-phase reinforced BMG composites, and the mechanical properties and thermal stability of the BMG composites can be tailored by the amount of the crystalline phase existed in the materials.
机译:过去,对块状金属玻璃(BMG)的研究一直集中在寻找合金成分以获得高玻璃成形能力上。很少有研究涉及加工条件对BMG玻璃形成能力的影响。在这项研究中,我们准备了在不同铸造温度下基于CuZr的BMG。升高铸造温度可提高玻璃成型能力,并减少BMG固化过程中结晶相的数量。在1723 K的高浇铸温度下,获得直径为2 mm的完全非晶态样品。在较低的铸造温度(1523 K和1323 K)下,存在结晶的CuZr相。晶相的形成归因于锭重熔期间在BMG熔体中幸存的初始晶体或簇。研究表明,铸造温度可以作为生产纯非晶态材料或结晶CuZr相增强BMG复合材料的控制参数,且BMG复合材料的力学性能和热稳定性可以根据合金中存在的晶相的量来调整。材料。

著录项

  • 作者

    Wang Hao;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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