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Characteristics of Medium Carbon Steel Solidification and Mold Flux Crystallization Using the Multi-Mold Simulator

机译:使用多模模拟器进行中碳钢凝固和结晶器熔剂结晶的特性

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An oscillating multi-mold simulator with embedded thermocouples was used to study the initial solidification of medium carbon steels and crystallization characteristics of the mold flux. Casting speed variations in the simulator from 0.7 m/min to 1.4 m/min at fixed oscillation frequency and stroke resulted in higher copper mold temperatures. Frequency modifications from 2.5 Hz to 5.0 Hz and stroke changes from 8.1 mm to 5.4 mm at fixed casting speeds also resulted in higher copper mold temperatures. Surface profile analysis of as-cast steel strips showed characteristic oscillation marks comparable to the narrow faces of the industrial cast slabs. The apparent effect of casting variables on the temperature and surface profiles during the solidification of the medium carbon steels could be correlated to the variations in the negative strip time and subsequent changes in the extent of mold flux infiltration Back scattered scanning electron microscope analysis of the full length of the retrieved flux film after casting showed cuspidine crystallization ratio that increased from the upper to lower portion of the flux film This dynamic crystallization and growth of the cuspidine phase increases as the flux is sustained at high temperatures for longer periods. Additional experiments with industrial fluxes designed for soft cooling of medium carbon steel grades showed comparable infiltration thickness of the flux, but the crystallization characteristics were significantly different, which could have a significant impact on the heat transfer rate and mechanism through the flux film
机译:带有嵌入式热电偶的振荡多模模拟器用于研究中碳钢的初始凝固和保护渣的结晶特性。在固定的振荡频率和行程下,模拟器中的铸造速度从0.7 m / min到1.4 m / min的变化导致较高的铜模具温度。在固定铸造速度下,将频率从2.5 Hz更改为5.0 Hz,将行程从8.1 mm更改为5.4 mm,这也导致了较高的铜模具温度。铸钢带的表面轮廓分析显示出与工业铸坯窄面相当的特征振动痕迹。中碳钢凝固过程中铸造变量对温度和表面轮廓的明显影响可能与负剥皮时间的变化以及铸模熔剂渗透程度的后续变化有关。流延后回收的焊剂膜的长度显示出从焊剂膜的上部到下部的cuspidine结晶率增加。随着焊剂在高温下保持更长的时间,cuspidine相的动态结晶和生长增加。为中碳钢牌号的软冷却设计的工业焊剂的其他实验表明,焊剂的渗透厚度相当,但结晶特性却存在显着差异,这可能会对通过焊剂膜的传热速率和机理产生重大影响

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