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首页> 外文期刊>鉄と鋼/Journal of the Iron and Steel Institute of Japan. >Recent progress in analytical models for the simultaneous optimization of deformed geometry and microstructure
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Recent progress in analytical models for the simultaneous optimization of deformed geometry and microstructure

机译:同时优化变形几何和微观结构的分析模型的最新进展

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摘要

Geometry of formed product and mechanical properties are the most important functions which are required in the products in metal forming processes. Numerical analysis for the evolution of microstructure in cold forming and hot forming is the key tool usable for the simultaneous optimization of geometry and mechanical properties of formed product. It is helpful not only to reduce time and cost for optimization but also to renovate design sequence of steel product. Novel design of steel product will be the combined design of forming condition and alloy composition, which is operated fully on digital computers. Here, components are 1) macro-process simulation, 2) micro-process simulation, 3) mechanical properties simulation as a function of microstructure and 4) material genom, and 5) nano-process simulation should located behind material genom and mechanical properties simulation as a function of microstructure. Analytical methods for the analyses of microstructure evolution for the forming of steels are reviewed in this paper. Their present standpoint and recent achievement will be explained, and its expected advance in future will be discussed.
机译:成形产品的几何形状和机械性能是金属成形过程中产品所需的最重要功能。对冷成形和热成形中的微观结构演变进行数值分析是可用于同时优化成形产品的几何形状和机械性能的关键工具。这不仅有助于减少优化所需的时间和成本,而且有助于革新钢铁产品的设计顺序。钢铁产品的新颖设计将是成形条件和合金成分的组合设计,可在数字计算机上完全操作。这里的组成部分是1)宏观过程仿真,2)微观过程仿真,3)力学性能作为微观结构的函数以及4)材料基因组和5)纳米过程仿真应位于材料基因组和力学性能模拟之后作为微观结构的函数。本文综述了分析钢成形过程中组织演变的分析方法。将说明他们目前的立场和最近取得的成就,并讨论其未来的预期进展。

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