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Thermomechanical Process Innovation via Computer Modeling and Simulation

机译:通过计算机建模和仿真创新热机械过程创新

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A new approach is proposed in this paper that describes the development of flexible rolling technology in industrial processing of C-Mn and Low C-microalloyed steels. Scientific knowledge of industrially-significant processes for these materials is presently fragmented and scattered in published literature, which causes impediment to process innovation and optimization. In the current work, it is demonstrated that new process sequences could be developed by breaking down existing process routes in to key elements and then by recombining them to generate novel alternative and more efficient hot processing sequences. The proposed methodology establishes a platform for a more realistic assessment of existing process routes and the development of new hybrid process routes that combine ideas from alternative processes. This enables the identification of an optimal process sequence for specified steel compositions that also satisfies simultaneous design criteria such as process feasibility and property maximization. Application of the proposed algorithm in industrial-scale rod rolling of a medium C-Mn steel is demonstrated and discussed.
机译:本文提出了一种新方法,描述了C-Mn和低C微合金钢工业加工中柔性轧制技术的发展。科学对这些材料的工业显着的方法是目前在公开的文献中分散和分散,这导致过程创新和优化导致障碍。在当前的工作中,证明可以通过将现有的过程路线分解为关键元素然后通过重新组合产生新颖的替代和更有效的热处理序列来开发新的过程序列。该拟议的方法建立了一个更现实地评估现有流程的平台,以及与替代过程中的想法相结合的新混合过程路线的开发。这使得能够识别用于指定的钢结构的最佳过程序列,该钢组合物还满足同时设计标准,例如工艺可行性和性能最大化。证实和讨论了所提出的算法在培养基C-MN钢的工业鳞杆轧制中的应用。

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