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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( Cu4AuA8 A )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)”。

Taking Au-Cu system as an example and being guided by systematoic science philosophy, the following contents are introduced: the alloy gene (AG) sequences and Gibbs energy transmission function of AG-holographic information; equilibrium and subequilibrium transmission models on disordering AuCuI( Cu4AuA8 A ) compound; the equilibrium holographic network phase diagrams (HNP) of Au3Cu-, AuCu- and AuCu3-type sublattice systems. The buleprints to predicate holographic information for designing advanced alloys are the equilibrium and subequilibrium HNP-diagrams of Au-Cu system, which describe the relationships among component, composition, structure, properties and temperature. The road algorithms to realize network, information and intelligence designing advanced alloys are that“basic component system—AG-sequences—equilibrium HNP-diagrams of sublattice systems—equilibrium and subequilibrium HNP-diagrams of alloy system—AG-engineering—holographic knowledge and database”, which is called as the holographic alloy positioning design system (HAPDS).

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