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Study of the Effects of the Mold Surface and Solid Mold Flux Crystallization on Radiative Heat Transfer Rates in Continuous Casting

机译:连铸结晶器表面和结晶器熔剂结晶对辐射传热速率的影响研究

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摘要

Radiative heat transfer plays a crucial role in the meniscus area of a steel continuous casting machine. However, the study of radiation across the mold flux and copper molds is very difficult due to the harsh environment and highly transient nature of the phenomena in continuous casting molds. By using an infrared radiation emitter, a radiative heat flux was able to be applied to a copper mold with different top surfaces to observe their effects on the radiative heat transfer. The mold surface was covered with solid slag disk subjected to the radiative heat flux to simulate the radiative heat transfer phenomena in continuous casting. The solid slag disk could either be glass or a mixture of glass and precipitated crystals. The effect of full crystallization of a slag disk was to reduce the heat transfer rate by 20.5%, as compared with a completely glassy sample.
机译:辐射传热在钢连铸机的弯月面区域起着至关重要的作用。然而,由于恶劣的环境和连续铸造模具中现象的高度瞬态性质,研究跨模剂和铜模具的辐射非常困难。通过使用红外辐射发射器,可以将辐射热通量施加到顶部表面不同的铜模具上,以观察其对辐射热传递的影响。模具表面覆盖有经受辐射热通量的固体渣盘,以模拟连续铸造过程中的辐射传热现象。固体渣盘可以是玻璃,也可以是玻璃与沉淀晶体的混合物。与完全玻璃状的样品相比,渣盘完全结晶的效果是使传热速率降低了20.5%。

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