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Simplified numerical approach for the thermo-mechanical analysis of steelmaking components under cyclic loading: an anode for electric arc furnace

机译:循环载荷下炼钢部件热力学分析的简化数值方法:电弧炉阳极

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摘要

The need of a strong improvement of productivity and reliability led the adoption of advanced modeling techniques in the design of steelmaking plants components. In this work a procedure based on a finite element simulation is proposed in order to perform a durability analysis of an anode for electric arc furnace. This component undergoes cyclic thermal loads, which also produce a partial melting of one part, meanwhile the other is maintained at almost constant temperature by a cooling system. A simplified, but effective, procedure is developed to take into account steel melting during the heating phase. Considering the cyclic loading conditions, several material cyclic plasticity models, and their effect on the thermal fatigue behavior, are also systematically investigated. The proposed approach permits the component fatigue life to be assessed by a simple and fast uncoupled thermo-mechanical simulation in steady-state conditions.
机译:需要强大提高生产率和可靠性,领导了炼钢厂设计中先进的建模技术。 在这项工作中,提出了一种基于有限元模拟的过程,以便对电弧炉的阳极进行耐久性分析。 该部件经历循环热负荷,其也产生一个部分的部分熔化,同时另一个由冷却系统保持在几乎恒定的温度下。 简化但有效的程序是开发的,以考虑在加热阶段期间的钢熔化。 考虑到循环负载条件,还系统地研究了几种材料循环可塑性模型及其对热疲劳行为的影响。 该方法允许通过在稳态条件下通过简单和快速的未耦合的热机械模拟来评估组分疲劳寿命。

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