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Effect of hot isostatic pressing on the mechanical properties of aluminium metal matrix nanocomposites produced by dual speed ball milling

机译:热等静压压制对双速球磨产生的铝金属基质纳米复合材料的力学性能的影响

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In this study a suggested model for flake powder metallurgy were implemented and its mechanism was explained. The suggested model includes dual-speed ball milling (DSBM) to take the advantage of the low-speed and high-speed ball milling (LSBM and HSBM). The modelled process was utilised to uniformly disperse SiC nanoparticles into aluminium metal matrix to produce nanocomposites. The produced mixed powder was hot isostatically pressed. The effects of processing parameters such as stearic acid content, SiC volume content, ball milling speed and time on the microstructure and consequently tensile properties of the manufactured composites have been investigated experimentally to optimise the processing parameters bringing about the enhanced tensile properties of the fabricated composites. The results showed that the implementation of LSBM and HSBM processes can be considered as a unique strategy, i.e. the dual-speed ball milling (DSBM), for uniform dispersion of SiC nanoparticles associated with perfect bonding. (C) 2019 The Authors. Published by Elsevier B.V.
机译:在本研究中,实施了剥落粉末冶金的建议模型,并解释了其机制。建议的模型包括双速球铣削(DSBM),以利用低速和高速球铣削(LSBM和HSBM)的优势。建模的方法用于将SiC纳米颗粒均匀地分散成铝金属基质以产生纳米复合材料。产生的混合粉末热静压。实验研究了加工参数,如硬脂酸含量,SiC体积含量,球磨速度和时间上的抗组合物的拉伸性能的影响,以优化制造复合材料的增强拉伸性能的加工参数。 。结果表明,LSBM和HSBM过程的实施可以被认为是一种独特的策略,即双速球铣削(DSBM),用于均匀分散与完美粘接的SiC纳米粒子。 (c)2019年作者。 elsevier b.v出版。

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