首页> 美国卫生研究院文献>Journal of Advanced Research >Comparative study on the mechanical and microstructural characterisation of AA 7075 nano and hybrid nanocomposites produced by stir and squeeze casting
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Comparative study on the mechanical and microstructural characterisation of AA 7075 nano and hybrid nanocomposites produced by stir and squeeze casting

机译:搅拌和挤压铸造制备的AA 7075纳米和杂化纳米复合材料的力学和微观结构表征的比较研究

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摘要

class="kwd-title">Keywords: Hybrid nanocomposites, AA 7075, Alumina, Silicon carbide, Squeeze casting, Stir casting class="head no_bottom_margin" id="ab010title">AbstractIn this research work, a comparative evaluation on the mechanical and microstructural characteristics of aluminium based single and hybrid reinforced nanocomposites was carried out. The manufacture of a single reinforced nanocomposite was conducted with the distribution of 2 wt.% nano alumina particles (avg. particle size 30–50 nm) in the molten aluminium alloy of grade AA 7075; while the hybrid reinforced nanocomposites were produced with of 4 wt.% silicon carbide (avg. particle size 5–10 µm) and 2 wt.%, 4 wt.% nano alumina particles. Three numbers of single reinforced nanocomposites were manufactured through stir casting with reinforcements preheated to different temperatures viz. 400 °C, 500 °C, and 600 °C. The stir cast procedure was extended to fabricate two hybrid reinforced nanocomposites with reinforcements preheated to 500 °C prior to their inclusion. A single reinforced nanocomposite was also developed by squeeze casting with a pressure of 101 MPa. Mechanical and physical properties such as density, hardness, ultimate tensile strength, and impact strength were evaluated on all the developed composites. The microstructural observation was carried out using optical and scanning electron microscopy. On comparison with base alloy, an improvement of 63.7% and 81.1% in brinell hardness was observed for single and hybrid reinforced nanocomposites respectively. About 16% higher ultimate tensile strength was noticed with the squeeze cast single reinforced nanocomposite over the stir cast.
机译:<!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> <!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> class =“ kwd-title”>关键字:混合纳米复合材料,AA 7075,氧化铝,碳化硅,挤压铸造,搅拌铸造 class =“ head no_bottom_margin“ id =” ab010title“>摘要在这项研究工作中,对铝基单一和混杂增强纳米复合材料的力学和微观结构特征进行了比较评估。单一增强纳米复合材料的制造是在AA 7075级熔融铝合金中以2 wt。%纳米氧化铝颗粒(平均粒径30–50 nm)的分布进行的;而杂化增强纳米复合材料则由4%(重量)的碳化硅(平均粒径5-10 µm)和2%(重量),4%(重量)的纳米氧化铝颗粒制成。通过搅拌浇铸制造了三种数量的单一增强纳米复合材料,其中增强材料预热至不同温度。 400°C,500°C和600°C。扩展了搅拌铸造程序,以制造两种混合增强纳米复合材料,其中复合材料在加入之前已预热至500°C。还通过以101 MPa的压力挤压铸造开发了一种单一的增强纳米复合材料。在所有开发的复合材料上评估了机械和物理性能,例如密度,硬度,极限拉伸强度和冲击强度。使用光学和扫描电子显微镜进行显微结构观察。与基础合金相比,单一和混合增强纳米复合材料的布氏硬度分别提高了63.7%和81.1%。挤压铸造的单一增强纳米复合材料在搅拌铸造过程中观察到约16%的极限拉伸强度。

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