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Thermo-Mechanical Behavior of the Continuous Casting Bloom in the Heavy Reduction Process

机译:重铸过程中连铸坯的热机械行为

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摘要

A two-stage sequential heavy reduction ( HR) method, in which the reduction amount was increased both before and after the solidification end, is presented to simultaneously improve the homogeneity and compactness of the continuous casting bloom. With bearing steel GCr15 chosen as the specific research steel, a three-dimensional thermal-mechanical finite element model was developed to simulate and analyze the thermal and mechanical behaviors of the continuous casting bloom during the HR process. In order to ensure the accuracy of the simulation, the constitutive model parameters were derived from the experimental results. The predicted temperature distribution and shell thickness were verified using a thermal infrared camera and nail shooting results, respectively. The real measured relationship between the HR pressure and amount were applied to verify the mechanical model. The explorative application results showed that the quality of the bloom center and compactness of rolled bars have both been significantly improved after the HR was applied.
机译:为了同时提高连铸坯的均匀性和致密性,提出了一种两阶段连续重还原(HR)方法,其中在凝固结束之前和之后都增加了还原量。以GCr15轴承钢为研究专用钢,建立了三维热力有限元模型,以模拟和分析热轧过程中连铸大方坯的热力学行为。为了保证仿真的准确性,从实验结果中导出了本构模型参数。使用红外热像仪和射钉结果分别验证了预测的温度分布和壳厚度。应用HR压力和量之间的实际测量关系来验证机械模型。探索性应用结果表明,应用HR后,大方坯中心质量和轧制钢筋的致密性都得到了显着提高。

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