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Strength/elongation optimisation in alloys: a case for accelerated metallurgy research

机译:合金强度/伸长率优化:加速冶金研究的案例

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摘要

Two novel techniques are combined for the design of novel alloys for enhanced strength/ ductility relationships:(1)a principal component analysis on an extensive database of commercial alloys; and(2)thermostatistical modelling of alloy plasticity, which allows to capture the overall stress-strain curve as a function of composition and microstruc-ture. The combined models are validated with hundreds of Fe-base alloys, and it is demonstrated that strength/ductility improvements are still possible by altering both microstructre and composition. By combining the models with a third approach, an artificial neural network, new alloys exhibiting strength/ductility relationships beyond existing technology are conceived. This fits within the Accelerated Metallurgy programme, a major European effort towards the discovery of novel alloys to satisfy modern industrial and environmental needs.
机译:结合了两种新颖的技术,用于设计增强强度/延展关系的新型合金:(1)关于商业合金广泛数据库的主要成分分析; (2)合金可塑性的恒温模型,允许捕获整体应力 - 应变曲线作为组成和微动画作用的函数。组合模型验证了数百种Fe碱基合金,并证明通过改变微观结构和组合物来仍然可以进行强度/延展性改善。通过将模型与第三种方法组合,构思了一种人工神经网络,表现出超出现有技术的强度/延展关系的新合金。这适合加速冶金计划,是欧洲主要努力发现新颖的合金,以满足现代工业和环境需求。

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