Yu Yun1, Li Xiaoping1, Li Jianguo2. Analysis of Heat-transfer and Structure of Air Slip Mold. [J]. Special Casting & Nonferrous Alloys 30(5):400-402(2010)
Yu Yun1, Li Xiaoping1, Li Jianguo2. Analysis of Heat-transfer and Structure of Air Slip Mold. [J]. Special Casting & Nonferrous Alloys 30(5):400-402(2010)DOI:
Analysis of Heat-transfer and Structure of Air Slip Mold
摘要
采用热阻计算的方法建立了气膜结晶器的传热模型
探讨了石墨环与结晶器间热阻对结晶器传热和结晶器内温度分布的影响
分析了石墨环各种安装工艺对结晶传热和石墨环工作温度的影响
提出了气膜连铸结晶器结构设计新方法。结果表明
石墨环与结晶器间热阻增大
石墨环的工作温度升高
导致工艺稳定性降低;间隙配合会使润滑油固结在石墨环表面
导致石墨透气性降低
无法形成气膜。试验验证了理论分析结果。
Abstract
The heat transfer model of air slip mold was established by the heat resistance theory
and effects of the contacted heat resistance between graphite ring and water cooling wall on the heat transfer and temperature distribution in the mold were analyzed
meanwhile
effects of different assembling ways on heat transfer and working temperature of graphite ring were approached.New method to structure design of mold for air slip continuous casting was presented.The results reveal that with increasing in heat resistance between graphite ring and mold
working temperature of graphite ring is increased
resulting in the deterioration of processing stability.In addition
the lubricating oil layer adhered on graphite ring in condition of a loose fit can result in the decrease of permeability of graphite
which is responsible for the absence of air film.The calculated results are in good agreement with the experimental ones.
关键词
气膜连续铸造传热热阻
Keywords
Air SlipContinuous CastingHeat TransferHeat Resistance