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Contactless Ultrasonic Cavitation in Alloy Melts

机译:合金熔体中的非接触式超声空化

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摘要

A high frequency tuned electromagnetic induction coil is used to induce ultrasonic pressure waves leading to cavitation in alloy melts. This presents an alternative ‘ ’ approach to conventional immersed probe techniques. The method can potentially offer the same benefits of traditional ultrasonic treatment (UST) such as degassing, microstructure refinement and dispersion of particles, but avoids melt contamination due to probe erosion prevalent in immersed sonotrodes, and it can be used on higher temperature and reactive alloys. An added benefit is that the induction stirring produced by the coil, enables a larger melt treatment volume. Model simulations of the process are conducted using purpose-built software, coupling flow, heat transfer, sound and electromagnetic fields. Modelling results are compared against experiments carried out in a prototype installation. Results indicate strong melt stirring and evidence of cavitation accompanying acoustic resonance. Up to 63% of grain refinement was obtained in commercial purity (CP-Al) aluminium and a further 46% in CP-Al with added Al–5Ti–1B grain refiner.
机译:高频调谐电磁感应线圈用于感应超声波压力波,从而导致合金熔体中发生气蚀。这是传统浸入式探头技术的另一种“”方法。该方法可以潜在地提供与传统超声处理(UST)相同的益处,例如脱气,微结构细化和颗粒分散,但避免了由于浸入式超声波焊条中普遍存在的探针腐蚀而造成的熔体污染,并且该方法可用于高温和反应性合金。另一个好处是,线圈产生的感应搅拌可实现更大的熔体处理量。使用专用软件,耦合流,传热,声场和电磁场对过程进行模型仿真。将建模结果与在原型安装中进行的实验进行比较。结果表明强烈的熔体搅拌和伴随声共振的气穴现象。在添加了Al-5Ti-1B晶粒细化剂的情况下,商业纯度(CP-Al)铝的晶粒细化率高达63%,在CP-Al中达到46%。

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