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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Assessment of Shell Strength During Solidification in the Mold Cracking Simulator (MCS) Test
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Assessment of Shell Strength During Solidification in the Mold Cracking Simulator (MCS) Test

机译:模具裂缝模拟器(MCS)试验中凝固过程中壳体强度评估

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摘要

To properly model the cracking susceptibility during solidification under continuous casting conditions, it is essential to have accurate data. Such data for the mechanical properties of steel during solidification are scarce if not non-existent. An experimental tool called the Mold Cracking Simulator (MCS) has been used to simulate the initial shell formation under continuous casting conditions. As part of the test, the shell is mechanically subjected to deformation. A mathematical model has been developed to translate the force and elongation measured during the MCS trials into stress-strain components. To test the model and validate the assumptions, two steel grades were tested, a peritectic steel grade and a higher-alloyed grade. The results show that the reproducibility of the test is very good and the stress-strain curves are consistent with the steel composition. Moreover, the metallographic and fractographic analysis of the deformed MCS samples shows that the microstructure is comparable to that of a continuously cast product and the cracks generated are interdendritic, i.e., hot tears.
机译:为了在连续铸造条件下凝固过程中正确模拟裂缝敏感性,必须具有准确的数据至关重要。如果不存在,凝固过程中钢的机械性能的这种数据是稀缺的。一种称为模具开裂模拟器(MCS)的实验工具已被用于在连续铸造条件下模拟初始壳体形成。作为测试的一部分,壳体机械地进行变形。已经开发了一种数学模型以将在MCS试验期间测量的力和伸长转化为应力 - 应变成分。为了测试模型并验证假设,测试了两种钢等级,包层钢级和更高合金化等级。结果表明,测试的再现性非常好,应力 - 应变曲线与钢组合物一致。此外,变形MCS样品的金相和地形分析表明,微观结构与连续铸造产品的微观结构相当,产生的裂缝是蛋白质的,即热泪。

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