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STUDIES IN THE CASTING OF AA6111 STRIP ON A HORIZONTAL, SINGLE BELT, STRIP CASTING SIMULATOR

机译:AA6111条带浇注水平,单皮带,条带铸造模拟器的研究

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Strips of AA6111 automotive alloy were cast on a horizontal single belt strip-casting simulator. Chill substrates of pure copper and carbon steel were sprayed with various coatings for improving the strips' surface quality. Experimental studies revealed that a graphite coating provided the greatest benefit in achieving good surface quality. Temperature variations within the moving mould were measured using thermocouples embedded at various depths and positions within the chill mould, and interfacial heat fluxes thereby calculated using the IHCP method (Inverse Heat Conduction Problem). Temperature variations and cooling rates within the strips themselves could then be calculated through numerical simulations based on the time-dependent heat fluxes obtained by the IHCP. The microstructures of the strip samples were studied by optical microscopy and by Scanning Electron Microscopy (SEM). The effects of casting parameters, including casting temperature and strip thickness, on interfacial heat fluxes, cooling rates and microstructures, were investigated. Very fine equi-axed grains were obtained for 1.2mm ~ 3.0mm thick strips thanks to the rapid extraction of heat, and effective grain refinement procedures.
机译:AA6111汽车合金的条纹被施放在水平单带状条铸造模拟器上。用各种涂层喷洒纯铜和碳钢的冷却衬底,用于提高条带的表面质量。实验研究表明,石墨涂层为实现良好的表面质量提供了最大的益处。使用嵌入在整个深度的热电偶和冷却模具内的位置的热电偶测量运动模具中的温度变化,以及使用IHCP方法(反导热问题)计算的界面热通量。然后,通过基于IHCP获得的时间依赖性热通量,通过数值模拟来计算条带内的温度变化和冷却速率。通过光学显微镜和扫描电子显微镜(SEM)研究了条带样品的微观结构。研究了铸造参数,包括铸造温度和条带厚度,在界面热通量,冷却速率和微观结构上的影响。由于快速提取了热量,有效的晶粒细化程序,获得了非常精细的等轴晶粒1.2mm〜3.0mm厚的条带。

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