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Modelling of reoxidation inclusion formation in steel sand casting

机译:钢砂铸件中再氧化夹杂物形成的建模

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摘要

A model is developed that predicts the growth and motion of oxide inclusions during pouring, as well as their final locations on the surface of steel sand castings. Inclusions originate on the melt free surface, and their subsequent growth is controlled by oxygen transfer from the atmosphere. Inclusion motion is modelled in a Lagrangian sense, taking into account drag and buoyancy forces. The inclusion model is implemented in a general-purpose casting simulation code. The model is validated by comparing the simulation results to measurements made on production steel sand castings. Good overall agreement is obtained. In addition, parametric studies are performed to investigate the sensitivity of the predictions to various model parameters.
机译:建立了一个模型,该模型可预测浇铸过程中氧化物夹杂物的生长和运动以及它们在钢砂铸件表面上的最终位置。夹杂物起源于无熔体表面,其随后的生长受到大气中氧气的转移的控制。包含运动是在拉格朗日意义上建模的,其中考虑了阻力和浮力。包含模型是在通用铸造模拟代码中实现的。通过将模拟结果与生产的钢砂铸件上的测量结果进行比较,可以验证该模型。获得了良好的总体协议。另外,进行参数研究以研究预测对各种模型参数的敏感性。

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