Heat flux and thermal behavior of wide-thick slab continuous casting molds for peritectic steel
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摘要: 基于熱電偶實測溫度,建立了包晶鋼寬厚板坯連鑄結晶器有限元傳熱模型和熱流密度非線性估算模型.應用模型反算獲得包晶鋼寬厚板坯結晶器的熱流密度,在與熱平衡計算得到的平均熱流密度進行比較后,闡述了模型的有效性,并分析了實際生產條件下結晶器銅板的溫度分布規律.結晶器寬面和窄面的平均熱流密度分別為1.141和1.119 MW·m-2.溫度在靠近結晶器背面呈波浪形分布,最大溫差為29.6℃,然而在遠離背面位置,溫度變化平緩.隨距彎月面距離的增加,溫度呈降低趨勢,然而在距結晶器出口附近出現回溫現象.同時寬厚板坯連鑄結晶器的熱流密度和溫度分布均有別于傳統板坯連鑄.Abstract: Based on measured temperature by thermocouples, a finite element model of heat transfer and a nonlinear estimation model of heat flux were built for a continuous casting wide-thick slab mold for peritectic steel. The heat flux of the mold was inversely computed by using the model. In comparison with the average heat flux calculated by heat balance, the model was proved to be valid. The temperature distribution of cooper plates in the mold was analyzed under actual production conditions by the model. The averaged heat flux is 1.141 and 1.119 MW·m-2 for the wide and the narrow face, respectively. The temperature near the mold back appears to be waved with a maximum difference about 29.6℃, whereas presents to be fiat far away from the mold back. Although the temperature decreases with the increase of the distance below the meniscus, it picks up near the mold exit. The heat flux and temperature distributions of the mold differ from those of conventional slab molds.
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Key words:
- peritectic steel /
- continuous casting /
- molds /
- heat flux /
- thermal properties
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