Determination of Hugoniot and strength properties of 6061 aluminium alloy under dynamic loading

S. Gandhi, D. Mukherjee, A. Rav, K. Joshi, T. C. Kaushik
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Abstract

Plate impact experiments have been carried out on 6061 grade aluminium alloy to determine the Hugoniot data points and mechanical failure properties like spall strength and dynamic yield strength at high strain rates. In each experiment, the shock pressure in the target material has been measured using piezo-resistive manganin gauge. In four plate impact experiments, performed at impact velocities of 196 m/s, 288m/s, 490m/s and 649m/s, peak shock pressures of 1.4GPa, 2.2GPa, 3.8GPa and 5.2GPa, respectively, have been generated in the target. To determine the spall strength and dynamic yield strength the velocity history of the free surface of target plate has been obtained employing the velocity interferometer system for any reflector (VISAR). The spall strength derived from the free surface velocity histories corresponding to impact velocities 196m/s, 288m/s and 490m/s are 0.81GPa, 0.96GPa and 1.08 GPa, respectively, with average strain rates ranging between 1.8×10 4/s to 3.7×104/s. The dynamic yield strength calculated from the experimentally derived Hugoniot Elastic Limit (HEL) is found to vary in the range 0.096GPa to 0.12GPa. The value of the spall strength determined in the present work is significantly higher than the quasi static ultimate tensile strength of ∼0.21GPa, whereas the dynamic yield strength remains more or less close to the quasi static value of 0.11GPa. These results indicate that 6061 aluminium alloy displays higher mechanical strength under dynamic loading condition as compared to that under static loading. These high strain rate mechanical properties of 6061 aluminium alloy are also compared with those of 2024 aluminium alloy.Plate impact experiments have been carried out on 6061 grade aluminium alloy to determine the Hugoniot data points and mechanical failure properties like spall strength and dynamic yield strength at high strain rates. In each experiment, the shock pressure in the target material has been measured using piezo-resistive manganin gauge. In four plate impact experiments, performed at impact velocities of 196 m/s, 288m/s, 490m/s and 649m/s, peak shock pressures of 1.4GPa, 2.2GPa, 3.8GPa and 5.2GPa, respectively, have been generated in the target. To determine the spall strength and dynamic yield strength the velocity history of the free surface of target plate has been obtained employing the velocity interferometer system for any reflector (VISAR). The spall strength derived from the free surface velocity histories corresponding to impact velocities 196m/s, 288m/s and 490m/s are 0.81GPa, 0.96GPa and 1.08 GPa, respectively, with average strain rates ranging between 1.8×10 4/s to 3.7×104/s. The dynamic yield str...
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动态载荷作用下6061铝合金强度和强度的测定
对6061级铝合金进行了板冲击试验,确定了高应变率下的Hugoniot数据点和剥落强度、动态屈服强度等力学失效特性。在每次实验中,都使用压阻式锰表测量了目标材料中的冲击压力。在196 m/s、288m/s、490m/s和649m/s四种冲击速度下,靶体内产生的冲击压力峰值分别为1.4GPa、2.2GPa、3.8GPa和5.2GPa。为了确定靶板的碎片强度和动态屈服强度,利用任意反射面速度干涉仪系统(VISAR)获得了靶板自由表面的速度历史。冲击速度为196m/s、288m/s和490m/s时,自由表面速度历史得到的碎片强度分别为0.81GPa、0.96GPa和1.08 GPa,平均应变速率为1.8×10 4/s ~ 3.7×104/s。根据Hugoniot弹性极限(HEL)计算的动态屈服强度在0.096 ~ 0.12GPa范围内变化。本研究确定的剥落强度值明显高于准静态极限抗拉强度(~ 0.21GPa),而动态屈服强度仍或多或少接近准静态值0.11GPa。结果表明,6061铝合金在动加载条件下表现出比静加载条件下更高的机械强度。并对6061铝合金与2024铝合金的高应变率力学性能进行了比较。对6061级铝合金进行了板冲击试验,确定了高应变率下的Hugoniot数据点和剥落强度、动态屈服强度等力学失效特性。在每次实验中,都使用压阻式锰表测量了目标材料中的冲击压力。在196 m/s、288m/s、490m/s和649m/s四种冲击速度下,靶体内产生的冲击压力峰值分别为1.4GPa、2.2GPa、3.8GPa和5.2GPa。为了确定靶板的碎片强度和动态屈服强度,利用任意反射面速度干涉仪系统(VISAR)获得了靶板自由表面的速度历史。冲击速度为196m/s、288m/s和490m/s时,自由表面速度历史得到的碎片强度分别为0.81GPa、0.96GPa和1.08 GPa,平均应变速率为1.8×10 4/s ~ 3.7×104/s。动态屈服率为…
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