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Investigation on Thermo-mechanical Behavior of Mold Corner for Continuous Casting Slab

机译:连铸板坯结晶器角的热机械行为研究

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Corner cracks in slab and billet have always been the important issues during continuous casting. For the purpose of investigating heat transfer, stress and distortion behaviors of corner regions for the slab continuous casting mold, a full-scale stress model of mold which integrated finite-element method with inverse heat transfer algorithm was developed. An inverse algorithm was applied to calculate the heat flux through the measured temperatures from thermocouples buried inside mold plates. Based on this, a full-scale finite-element stress model, including four copper plates, nickel layer and water slots of different depths, was built to reveal the complex thermo-mechanical behavior of mold corners. The results show that the corner regions generate large stress and obvious stress concentration. The mold bends toward the molten steel and it appears V-shaped distortion in the corner region. And the area of water slots decrease after distortion, but it would not apparently affect heat transfer. The cooling effect could be optimized by changing the position, depth and angle of sloped water slots, which helps to flexibly improve the solidification behavior of slab corner.
机译:板坯和方坯的角裂一直是连铸过程中的重要问题。为了研究板坯连铸结晶器拐角区域的传热,应力和变形行为,建立了将有限元方法与逆传热算法相结合的结晶器全尺寸应力模型。应用了一种逆算法,通过掩埋在模板内部的热电偶的测量温度计算出热通量。在此基础上,建立了包括四个铜板,镍层和不同深度的水槽的全尺寸有限元应力模型,以揭示模具角部的复杂热机械行为。结果表明,拐角区域产生较大的应力,应力集中明显。模具向钢水弯曲,在拐角区域出现V形变形。并且变形后水槽的面积减小,但是显然不会影响传热。通过改变倾斜水槽的位置,深度和角度可以优化冷却效果,这有助于灵活地改善板角的凝固性能。

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