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首页> 外文期刊>Acta Materialia >THE CONTROL OF BRITTLENESS AND DEVELOPMENT OF DESIRABLE MECHANICAL PROPERTIES IN POLYCRYSTALLINE SYSTEMS BY GRAIN BOUNDARY ENGINEERING
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THE CONTROL OF BRITTLENESS AND DEVELOPMENT OF DESIRABLE MECHANICAL PROPERTIES IN POLYCRYSTALLINE SYSTEMS BY GRAIN BOUNDARY ENGINEERING

机译:晶界工程控制多晶体系中的无定形及所需的力学性能

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摘要

Grain boundaries can be effectively controlled to produce or enhance their beneficial effects and also to diminish or reduce their detrimental effects on bulk properties in polycrystalline materials. Particular attention has been paid to the control of intergranular brittleness which remains a serious problem of material processing and development. Recent studies are presented and discussed, which have been successfully performed to control intergranular brittleness of “intrinsically brittle” materials such as the refractory metal molybdenum and the ordered intermetallic alloy Ni_3Al and to produce superplasticity in an Al-Li alloy, by grain boundary engineering through controlling a new microstructural factor termed the grain boundary character distribution (GBCD). The optimization of GBCD and the grain boundary connectivity has been found to be a key to produce desirable bulk mechanical properties in both structural and functional polycrystalline materials.
机译:可以有效地控制晶界以产生或增强它们的有益效果,并且还可以减少或减少其对多晶材料的整体性质的有害影响。特别注意控制晶间脆性,这仍然是材料加工和开发的严重问题。提出并讨论了最近的研究,这些研究已成功地通过晶界工程技术来控制“固有脆性”材料(例如难熔金属钼和有序金属间合金Ni_3Al)的晶间脆性,并在Al-Li合金中产生超塑性。控制一种称为晶粒边界特征分布(GBCD)的新的微观结构因素。已发现GBCD的优化和晶界连通性是在结构和功能多晶材料中产生合乎要求的整体机械性能的关键。

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