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Use of Acoustic Energy in the Processing of Molten Aluminium Alloys

机译:声能在熔融铝合金加工中的使用

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During the last years aluminium alloys have been gaining increased acceptance as structural materials in the automotive and aeronautical industries, mainly due to their light weight, good formability and corrosion resistance.However, improvement of mechanical properties is a constant in research activities, either by the development of new alloys or by microstructure manipulation.This presentation focuses a novel effective dynamic methodology to perform microstructural refinement / modification and degassing of light alloys, namely aluminium alloys, by applying acoustic energy to the melts.High intensity acoustic energy significantly improves the microstructure, therefore the mechanical properties of those alloys, avoiding the use of traditional chemically based degassing and refining techniques which are less effective and present significant environmental impact.Ultrasonic (US) vibration has proven to be extremely effective in degassing, controlling columnar dendritic structure, reducing the size of equiaxed grains and, under some conditions, producing globular grains and modifying the eutectic silicon cells in Al-Si alloys.The mechanisms of US processing of aluminium melts are discussed and experimental results on this field are presented.
机译:在过去几年中,铝合金在汽车和航空行业中的结构材料的接受程度上升,主要是由于它们的重量轻,可成形性和耐腐蚀性。然而,机械性能的改善是一种在研究活动中的常数新合金或通过微观结构操作的开发。本文通过将声学能量施加到熔体,对轻质合金进行微观结构细化/改性和脱气的新颖性动态方法集中起来.high强度声能显着改善了微观结构,因此,这些合金的机械性能,避免使用传统的化学脱气和精炼技术,这些脱气和炼油技术较低,呈现出较低的环境影响。(美国)振动已被证明在脱气中非常有效,控制柱状树突结构,REDU在某些条件下,在某些条件下,产生球状晶粒并在Al-Si合金中改变共晶硅细胞的尺寸。讨论了美国熔融处理的机制,并提出了该领域的实验结果。

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