首页> 外文会议>International symposium on liquid metal processing amp; casting 2013 >COMPUTATIONAL MODELING OF ELECTROSLAG REMELTING (ESR) PROCESS USED FOR THE PRODUCTION OF HIGH-PERFORMANCE ALLOYS
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COMPUTATIONAL MODELING OF ELECTROSLAG REMELTING (ESR) PROCESS USED FOR THE PRODUCTION OF HIGH-PERFORMANCE ALLOYS

机译:用于生产高性能合金的电熔(ESR)过程的计算模型

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This paper presents a comprehensive computational model for the prediction of the transient Electroslag Remelting (ESR) process for cylindrical ingots based on axisymmetric two-dimensional analysis. The model analyzes the behavior of the slag and growing ingot during the entire ESR process involving a hot-slag start with an initial transient, near-steady melting, hot-topping and subsequent solidification of the slag and ingot after melting ends. The results of model application for an illustrative ESR process for Alloy 718 and its validation using results from an industrial trial arc presented. They demonstrate the comprehensive capabilities of the model in predicting the behavior of the ingot and slag during the entire process and properties of the final ingot produced. Such analysis can benefit the optimization of existing process schedules and design of new processes for different alloys and different ingot sizes.
机译:本文基于轴对称二维分析,提供了一种用于预测圆柱锭瞬态电渣重熔(ESR)过程的综合计算模型。该模型分析了整个ESR过程中炉渣和生长锭的行为,该过程涉及热炉渣,该炉渣始于初始瞬态,近乎稳定的熔化,热顶以及熔炼结束后炉渣和铸锭的随后凝固。给出了合金718的示例性ESR工艺的模型应用结果,并使用了来自工业试验的结果进行了验证。他们展示了该模型在预测铸锭和矿渣在整个过程中的行为以及最终铸锭的特性时的综合功能。这样的分析可以有利于优化现有工艺流程,并为不同合金和不同铸锭尺寸设计新工艺。

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