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Development of the cellular automata framework dedicated for metallic materials microstructure evolution models

机译:用于金属材料微观结构演化模型的元胞自动机框架的开发

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摘要

The main goal of the paper is to design and implement a framework based on the cellular automata (CA) method, which is dedicated to numerical simulations of microstructure evolution in metallic materials under thermal and mechanical processing. Major assumptions and implementation details of the proposed solution involving classes containing dedicated fields and methods are discussed. Finally, the cellular automata framework (CAP) is tested for selected case studies supported by the Windows Workflow Foundation (WWF) approach. Particular attention is put on modelling simple grain growth, static recrystallization and phase transformation phenomena occurring at the microstructure level. Obtained results of simulations as well as performance characteristics are also presented in the paper. As a result, the CA framework, which supports design of complex algorithms with flexible data flow and reusable components is proposed. (C) 2014 Politechnika Wroclawska. Published by Elsevier Urban & Partner Sp. z o.o. All rights reserved.
机译:本文的主要目的是设计和实现基于元胞自动机(CA)方法的框架,该框架致力于在热和机械处理下金属材料的微观结构演化的数值模拟。讨论了所提出解决方案的主要假设和实现细节,该解决方案涉及包含专用字段和方法的类。最后,针对Windows Workflow Foundation(WWF)方法支持的选定案例研究,对元胞自动机框架(CAP)进行了测试。特别注意的是对在微观结构水平上发生的简单晶粒生长,静态再结晶和相变现象进行建模。本文还介绍了获得的仿真结果以及性能特征。因此,提出了一种CA框架,该框架支持具有灵活数据流和可重用组件的复杂算法的设计。 (C)2014 Politechnika Wroclawska。由Elsevier Urban&Partner Sp。动物园。版权所有。

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