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Experimental Investigation of Silicon Carbide Nanoparticles Reinforced Magnesium Alloy (AZ91E) Metal Matrix Composite by Vacuum Stir Casting Method

机译:真空搅拌铸造法试验碳化硅纳米粒子增强镁合金(AZ91E)金属基质复合材料的实验研究

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In the present investigation silicon carbide nanoparticles reinforced magnesium alloy [AZ91E] composites were prepared by vacuum stir casting process in an inert atmosphere. Required amount of silicon carbide nanoparticles with grain size of 50nm was added into AZ91E molten melt with constant stir speed of 600 rpm and vacuum pressure of 1 lpm to obtain magnesium alloy composite containing 0, 5, 7.5 and 10 wt.% SiCp nanoparticles. The prepared composites were subjected to mechanical and microstructure studies. The mechanical properties were found to increase with the addition of silicon nanoparticles compared to unreinforced magnesium alloy. The maximum impact strength, yield strength and tensile strength were found to be 29.13J, 156 MPa and 401.13 MPa respectively. Microstructure studies reveal uniform distribution of silicon carbide in magnesium alloy matrix.
机译:在本发明的研究中,通过真空搅拌浇铸过程中的惰性气氛,制备碳化硅纳米颗粒增强镁合金[AZ91E]复合材料。将具有50nm的晶粒尺寸的碳化硅纳米粒子的所需量加入到AZ91E熔融熔体中,恒定搅拌速度为600rpm,真空压力为1升,得到含有0,5,7.5和10重量%的镁合金复合材料。%SICP纳米颗粒。对制备的复合材料进行机械和微观结构研究。与未合成的镁合金相比,发现使用加入硅纳米粒子来增加机械性能。发现最大的冲击强度,屈服强度和拉伸强度分别为29.13J,156MPa和401.13MPa。微观结构研究揭示了镁合金基质中碳化硅的均匀分布。

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