首页> 外文会议>International conference on solidification science and processing >Development of Incremental FEM Based Deformation Model for Continuous Caster Strand, Incorporation of Aitken-Steffensen Algorithm for Fast Computation and Sensitivity Analysis of Constitutive Parameters on the Predictions of Stress-Strain
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Development of Incremental FEM Based Deformation Model for Continuous Caster Strand, Incorporation of Aitken-Steffensen Algorithm for Fast Computation and Sensitivity Analysis of Constitutive Parameters on the Predictions of Stress-Strain

机译:开发持续跨脚轮股线的增量FEM变形模型,掺入AITKEN-Steffensen算法的快速计算和敏感性分析对应力 - 应变预测的基本参数

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The knowledge of stress-strain field within the solidified shell is key to the understanding of crack formation as well as fracture of solid shell leading to operational breakout during continuous casting of steels. The stress-strain field is usually calculated by using the finite-element model that uses physical and constitutive properties of steel at elevated temperature as well as the thermal field in the strand. In the present work an incremental FEM based deformation model was developed for stress-strain calculations. The computation time was drastically reduced using Aitken-Steffensen algorithm. Further the predicted results were shown to be highly sensitive to elastic modulus and some of the constitutive parameters. It was thus suggested that experimentally generated stress-strain curves for a given alloy, at different temperatures and strain rates, should be preferred to simple constitutive equations.
机译:凝固壳内的应力 - 应变场的知识是了解裂缝形成的关键,以及固体壳体的断裂,导致钢连续铸造期间的操作突出。通常通过使用在升高的温度以及股线中的热场中使用钢的物理和本构体性能的有限元模型来计算应力 - 应变场。在本作工作中,开发了一种增量基于有限元的变形模型,用于应力 - 应变计算。使用Aitken-Steffensen算法,计算时间急剧减少。此外,预测结果显示对弹性模量和一些组成型参数非常敏感。因此,提出了在不同温度和应变率下的给定合金的实验产生的应力 - 应变曲线应该优选为简单的本构方程。

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