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In-plane anisotropy and tensile deformation behaviour of aluminium alloy AA 2014 forge plates

机译:AA 2014铝合金锻造板的面内各向异性和拉伸变形行为

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Plastic flow behaviour and fracture mechanism of aluminium alloy AA 2014 forged plates under tensile loading conditions are investigated and the results obtained are presented and discussed in the present study. The effects of heat treatment (namely, solution treatment and artificial ageing) on micro-structural homogeneity,tensile behaviour and nature of fracture were studied using hardness, tensile, optical and scanning electron microscopy methods. Experimental engineering stress–engineering strain and true stress–true strain data of the aluminium alloy AA 2014 in different ageing conditions have been analysed using Hollomon, Ludwik and Ludwigson plastic flow relationships. The alloy is found to exhibit moderate degree of in-plane anisotropy and anisotropic index. Further, the alloy in both solution-treated and aged conditions exhibits three different stages ofstrain-hardening rate and the highest strain-hardening rate occurs at regions of lower strain both in solution-treated and peak-aged conditions. It is also observed that the longitudinal specimen (L parallel to forging direction) exhibitshigher strain hardening, while the specimen with T orientation exhibits lowest strain-hardening rates both in solution-treated and aged conditions. The alloy under study in all the heat treatment conditions exhibits ductile fracture mechanism with higher density of uniformly distributed macro- and micro-dimples.
机译:研究了AA 2014铝合金锻造板在拉伸载荷条件下的塑性流动行为和断裂机理,并给出了讨论的结果。采用硬度,拉伸,光学和扫描电子显微镜方法研究了热处理(即固溶和人工时效)对组织均匀性,拉伸行为和断裂性质的影响。使用Hollomon,Ludwik和Ludwigson塑性流动关系分析了2014年AA铝合金在不同时效条件下的实验工程应力-工程应变和真实应力-真实应变数据。发现该合金表现出中等程度的面内各向异性和各向异性指数。此外,合金在固溶处理和时效条件下均表现出三个不同的应变硬化速率阶段,并且在固溶处理和峰值时效条件下,最高的应变硬化率发生在应变较低的区域。还可以观察到,纵向试样(平行于锻造方向的L)表现出较高的应变硬化,而T取向的试样在固溶处理和时效条件下表现出最低的应变硬化速率。所研究的合金在所有热处理条件下均表现出韧性断裂机理,具有较高密度的均匀分布的宏观和微观凹坑。

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