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合金基因、全息网络相图和全息合金定位设计与研发系统 被引量:4
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作者 谢佑卿 李小波 +2 位作者 刘心笔 彭红建 聂耀庄 《中国有色金属学报》 EI CAS CSCD 北大核心 2015年第10期2798-2843,共46页
以系统科学哲学为指导,以Au-Cu合金系为实例,介绍了以下内容:合金基因、合金基因全息信息传输的Gibbs能函数以及AuCuI(Cu4Au8AA)化合物无序化的平衡和亚平衡传输方式,Au3Cu、AuCu和AuCu3亚格子系统的平衡全息网络相图(HNP);描述组元—... 以系统科学哲学为指导,以Au-Cu合金系为实例,介绍了以下内容:合金基因、合金基因全息信息传输的Gibbs能函数以及AuCuI(Cu4Au8AA)化合物无序化的平衡和亚平衡传输方式,Au3Cu、AuCu和AuCu3亚格子系统的平衡全息网络相图(HNP);描述组元—成分—结构—性能—温度之间的关系;预测设计合金信息的蓝图:Au-Cu合金系的平衡和亚平衡HNP图。实现"网络化、信息化和智能化设计与研发先进合金"的路径规程是"基本组元合金系统—合金基因序列—亚格子合金系统的平衡HNP图—合金系的平衡和亚平衡HNP图—合金基因工程—合金系统全息知识与数据库"。实施此路径规程的基地称之为"全息合金定位设计与研发系统(HAPDS)"。 展开更多
关键词 Au-Cu系 合金基因序列 平衡和亚平衡全息网络相图 全息合金定位设计与研发系统 系统金属材料科学
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Derivation and application of concentration formula of alloy genes of DO_3-type in BCC alloy systems 被引量:1
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作者 PENG Hong-jian LI Ling +1 位作者 LI Xiao-bo XIE You-qing 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第7期1573-1581,共9页
Taking Ta–W alloy system as an example, the concentration formulae of alloy genes of DO3-type alloys in BCC structures were derived on the basis of the theory of alloy genes and the number of coordination atoms. The ... Taking Ta–W alloy system as an example, the concentration formulae of alloy genes of DO3-type alloys in BCC structures were derived on the basis of the theory of alloy genes and the number of coordination atoms. The concentrations of alloy genes of DO3-TaW3 and DO3-Ta3W ordered alloys were calculated as functions of composition xW and ordering degree (s). When s=smax, the concentrations of alloy genes of stoichiometric DO3-TaW3 compound are equal to those of alloys, that is, x8^Ta=0.25(at),x4^W=0.5(at),x8^W=0.25(at)The concentrations of alloy genes of stoichiometric DO3-Ta3W compound are also equal to those of alloys, that is,x0^Ta=0.25(at),x4^Ta=0.5(at),x0^W=0.25(at). As ordering degree decreases, alloy genes of DO3-TaW3 and DO3-Ta3W ordered alloys will split. And the degree of splitting of alloy genes increases with the ordering degree decreasing. The atomic states and properties of DO3-TaW3 and DO3-Ta3W ordered alloys were calculated as a function of composition xW. The reason was pointed out that preparation of DO3-TaW3 and DO3-Ta3W intermetallic compounds is difficult due to small differences in their cohesive energies. It will provide theoretical guidance for the scientific designation to new candidate for ultra- high-temperature materials in areo-engine applications. 展开更多
关键词 Ta–W alloy system BCC structure alloy gene
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