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APPLICATION OF EXTERNAL FIELDS TO THE DEVELOPMENT OF ALUMINUM-BASED NANOCOMPOSITE AND MASTER ALLOYS

机译:外田在基于铝基纳米复合材料的研制中的应用

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Application ultrasonic cavitation and high-energy pulses (e.g. detonation) is a promising way of incorporating reinforcing and grain refining particles in composite and master alloys. This paper gives an overview of research performed recently on the development of new technological approaches and materials with the aim to introduce and distribute nanoparticles in the matrix of aluminum alloys. Both types of particles, introduced externally or formed insitu are discussed. External fields are used for making concentrated master alloys, e.g. Alalumina with subsequent introduction of such a master alloy into the melt with the aid of ultrasonic cavitation; or for direct production of nanocomposites. The examples of implementation include Al-based composites reinforced with nanodiamonds, nanoalumina and nanospinel. The efficiency is illustrated by structure and properties characterization. The research is done within a European program on the application of external fields in liquid metal processing Exomet (EC grant 280421).
机译:应用超声波空化和高能量脉冲(例如爆炸)是在复合材料和母合金中掺入增强和晶粒精制颗粒的有希望的方法。本文概述了最近在开发新技术方法和材料的研究概述,目的是在铝合金基质中引入和分配纳米颗粒。讨论了两种类型的颗粒,外部引入或形成的Insitu。外部领域用于制造浓缩的主合金,例如,借助超声波空化,阿拉努纳随后将这种主合金引入熔体中;或直接生产纳米复合材料。实施的实例包括用纳米金刚胺,纳米金氨酸,纳米烃和纳米螺母增强的基于基于基于的组合材料。通过结构和属性表来说明效率。该研究是在欧洲液体金属加工进展中施加外部领域的欧洲计划(EC授予280421)。

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