通过表征材料的热性能来优化数值铸钢模拟

Morgan Souêtre, Alexis Vaucheret, P. Jacquet, J. Carton
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引用次数: 0

摘要

在许多铸造厂,数值模拟被用来确定不同缺陷的起源,因为这个工具允许加速设计过程。然而,不同软件提供的数据库似乎并不符合材料的实际特性。事实上,每个铸造厂都使用不同等级的钢和不同混合的砂。对不同材料性能的影响进行了评估,表明了测量每种物理性能对改进软件数据库的重要性。在此基础上,对数值模拟结果与实验结果之间的差距进行了评价。这个实验叫做热分析,是测量一个装满钢液的圆柱体的凝固和冷却过程。通过钢的性能计算和真实实验参数的模拟,实现了各冷却曲线之间的对比。结果表明,计算得到的冷却曲线比原始数据库中的冷却曲线更接近实验曲线。我们在这项研究中没有探索所有的金属性能,但我们探索了砂子性能的改变,以及钢和砂子的导热性。这些其他测量将在未来的研究中获得。
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The Optimization of a Numerical Steel Foundry Simulation Through a Characterization of the Thermal Properties of the Materials
In many foundries, numerical simulation is used to determine the origins of different defects as this tool allows the acceleration of the design process. However, the databases provided by different software do not seem to tally with the actual properties of the material. In fact, every foundry uses a different grade of steel and varying mixtures of sand. An evaluation of the impact of different material properties showed the importance of measuring every physical property to improve the database of the software. Following this, an experiment was conducted to evaluate the gap between numerical simulations and the results obtained through experimentation. This experiment, called thermal analysis, consists in measuring the solidification and cooling of a cylinder filled with liquid steel. After the calculation of the steel properties and a simulation with real experimental parameters, a comparison between each cooling curve was realized. This comparison shows that the calculated properties provide a simulated cooling curve which is closer to the experimental curve than the properties in the original database. We did not explore all of the metal properties in this study, but the modification of the sand properties was explored, together with the thermal conductivity of the steel and sand. These other measurements will be obtained in a future study.
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