首页> 外文会议>TMS(The Minerals, Metals amp; Materials Society) Annual Meeting; 20050213-17; San Francisco,CA(US) >THE ROLE OF RARE EARTH ELEMENTS IN STRUCTURE AND PROPERTY CONTROL OF MAGNESIUM DIE CASTING ALLOYS
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THE ROLE OF RARE EARTH ELEMENTS IN STRUCTURE AND PROPERTY CONTROL OF MAGNESIUM DIE CASTING ALLOYS

机译:稀土元素在镁合金铸造合金的结构和性能控制中的作用

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摘要

The performance of magnesium die cast parts is governed by the microstructure and by the distribution of structural features which occur as a result of the chemical composition and processing history of the alloy. The elevated temperature properties, especially mechanical strength under creep conditions, are primarily determined by the grain structure, the elements in solid solution and the effectiveness of second phase particles in stabilizing the grain boundaries. The current emphases in alloy development focus on the utilization of elements with low solubility in the solid state, leading to the formation of stable precipitates during solidification. Such elements include the rare earths, as well as silicon, strontium and calcium. A detailed analysis of the various microstructural features and attributes is given for a new family of rare earth-containing alloys. The optimization of alloy composition is addressed in terms of blending advantageous microstructural characteristics with phase equilibria considerations.
机译:镁压铸件的性能取决于合金的微观结构和结构特征的分布,这些分布是由于合金的化学成分和加工历史而产生的。高温特性,特别是蠕变条件下的机械强度,主要取决于晶粒结构,固溶体中的元素以及第二相颗粒稳定晶界的有效性。合金开发的当前重点是利用固态中溶解度低的元素,从而在凝固过程中形成稳定的沉淀。这些元素包括稀土,以及硅,锶和钙。对新的含稀土合金族进行了各种微观结构特征和属性的详细分析。通过将有利的微观结构特征与相平衡的考虑相混合,解决了合金成分的优化问题。

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