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Ultrasonic Assisted Reduction of Hot-Tearing During High-Speed DC Casting of 6000 Series Aluminum Alloys

机译:超声辅助减少6000系列铝合金高速直流铸造过程中的热裂

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This work presents results of preliminary investigations concerning the effect of ultrasonic vibrations on the solidification structure and hot-tearing susceptibility of 6000 series aluminum alloys in high-speed direct chill casting processes. A pilot DC caster was used to produce billets of 82-97 mm in diameter. Ultrasonic vibrations were introduced directly into the mold through a high-amplitude ceramic sonotrode, the tip of which was positioned at different distances from the melt crystallization front. The cast billets were then investigated for the microstructure and hot tearing susceptibility. It is shown that the ultrasonic treatment leads to a significant reduction in hot tearing susceptibility, and at the same time to a rise in mechanical properties of the alloys. The results suggest that at least two ultrasonic effects contribute to these improvements. The first one is cavitation which results in forming more refined and uniform microstructure of alloys. The second one is acoustic streaming which is responsible for macro agitation of melt in the sump. This causes the liquid-solid system to approach an equilibrium state that results in increasing the fraction of eutectic phase solidified at the grain boundaries of α-Al phase.
机译:这项工作提出了有关超声波振动对高速直接冷硬铸造工艺中6000系列铝合金的凝固组织和热撕裂敏感性的初步研究的结果。使用中试DC连铸机生产直径为82-97毫米的钢坯。超声波振动通过高振幅陶瓷超声焊极直接引入模具中,其尖端与熔融结晶前沿的距离不同。然后研究铸坯的微观结构和热撕裂敏感性。结果表明,超声处理导致热撕裂敏感性显着降低,同时合金的机械性能提高。结果表明,至少两种超声作用有助于这些改善。第一个是空化作用,导致形成合金的更细化和更均匀的微观结构。第二个是声流,它负责油槽中熔体的宏观搅拌。这导致液-固体系达到平衡状态,从而导致在α-Al相晶界处凝固的共晶相分数增加。

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