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Effect of lithium content on the mechanical and corrosion behaviors of HCP binary Mg–Li alloys

机译:锂含量对HCP二元Mg-Li合金机械和腐蚀行为的影响

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The microstructure, crystallographic texture, mechanical properties and corrosion resistance of as-extruded HCP Mg-xLi (x?=?1, 3, 5; in wt%) alloys were investigated. The results indicated that the HCP Mg-5Li alloy with high lithium content exhibited a low degree of dynamic recrystallization (DRX) compared with Mg-1Li and Mg-3Li alloys. Besides, the 45° base (0001) texture of Mg-1Li alloy could turn into (11–20) and (10–10) prismatic texture of Mg-3Li and Mg-5Li alloys with c-axis approximately parallel to transverse direction (TD). As a result, the strong prismatic texture resulted in the mechanical anisotropy of as-extruded Mg-3Li and Mg-5Li alloys with higher mechanical strength and low elongation along extrusion direction (ED) (reverse for TD sample). Regarding of corrosion behaviors, filiform corrosion occurred in the three Mg–Li alloys, whilst the high lithium content could mitigate the groove-like corrosion and improve the corrosion resistance of Mg-5Li alloy, which was ascribed to the refined grains, prismatic texture and surface film.
机译:挤出HCP Mg-XLI的微观结构,晶体纹理,机械性能和耐腐蚀性(X?= 1,3,5;在重量%)合金。结果表明,与Mg-1LI和Mg-3Li合金相比,具有高锂含量的HCP Mg-5LI合金表现出低锂含量(DRX)。此外,Mg-1LI合金的45°底座(0001)纹理可以变成(11-20)和(10-10)Mg-3Li和Mg-5LI合金的棱柱质地,C轴大致平行于横向( TD)。结果,强棱镜纹理导致用挤出的Mg-3Li和Mg-5LI合金的机械各向异性,沿挤出方向(ED)沿挤出方向(Ed)的低伸长率(逆样品相反)。关于腐蚀行为,在三种Mg-Li合金中发生丝状腐蚀,同时高锂含量可以减轻槽状腐蚀,提高Mg-5Li合金的耐腐蚀性,其归因于精制颗粒,棱柱形纹理和表面膜。

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