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Corrosion Behaviour of In Situ AlxNiy Reinforced AA6061 Composite

机译:原位Alxniy加强AA6061复合材料的腐蚀行为

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In-situ AlxNiy reinforced AMCs were fabricated by casting process (stir casting) by adding 5, 10 and 15 weight percentage (wt.%) of Ni to AA6061 aluminum alloy. The density, porosity, microstructure, hardness and corrosion behaviour of the as-cast AMCs was studied and compared with the as-cast AA6061. The porosity in all the castings was found to be less than 0.1%. Further, the porosity was found to decrease with increase in Ni addition. Optical microscopy studies showed that in-situ formed AlxNiy was distributed along the dendritic arms. The distribution became non-homogeneous and coarse with increase in AlxNiy content. The coarse distribution of AlxNiy in the AA6061 matrix also led to the decrease in hardness of the composite, after an initial increase in hardness till 10 wt.% Ni addition. The open circuit potential (OCP) and corrosion potential (Ecorr) of the AMCs with 5, 10 and 15 wt. of % Ni addition was noble than that of the AA6061 alloy. This was understood to be due to the presence of AlxNiy intermetallic which is known to have a noble corrosion potential than the aluminium alloy. However, the corrosion current (icorr) increased while the polarization resistance (Rp) decreased with increase in Ni addition in the AMC. This indicates that the coarse non-homogeneous distribution of in-situ AlxNiy had a detrimental effect on the corrosion performance of the AMCs.
机译:通过加入5,10和15重量百分比(WT.%)Ni至Aa6061铝合金,通过铸造方法(搅拌铸造)来制造原位炔醇增强AMC。研究了铸造AMCs的密度,孔隙,微观结构,硬度和腐蚀行为,并与AA6061进行比较。发现所有铸件中的孔隙率小于0.1%。此外,发现孔隙率随着Ni添加的增加而降低。光学显微镜研究表明,原位形成的Alxniy沿树突臂分布。随着Alxniy含量的增加,分布变得非均匀和粗糙。 AA6061基质中Alxniy的粗糙分布也导致复合材料的硬度降低,在硬度初始增加至10重量%时。%Ni添加。 AMC的开路电位(OCP)和腐蚀电位(ECORR),5,10和15重量%。 %Ni添加比AA6061合金的加入惰性。这应该理解为是由于已知具有比铝合金具有高贵腐蚀电位的Alxniy金属间质量。然而,腐蚀电流(ICorr)在AMC中增加偏振电阻(RP)随着Ni添加量增加而增加。这表明原位Alxniy的粗糙非均匀分布对AMCs的腐蚀性能有不利影响。

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