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Dynamic Response of Magnesium Alloy AZ31B Under High Strain Rate Compressive Loading

机译:高应变率压缩负荷下镁合金AZ31B的动力响应

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Magnesium alloys have been increasingly used in automobile, aerospace, consumer electronics and communication industries due to their low density, high strength to weight ratio, good impact resistance and castability. Impact situations in vehicles and airplanes and high speed metal working are characterized with the high rates of loading. The dynamic properties of materials are critical to evaluate the materials' response in impact situations. They are also useful to design various automotive and aerospace components that are subjected to high rates of loadings. In current study, the compressive behaviour of magnesium alloy AZ31B has been examined over a wide range of strain rate between 103 and 3×10~3 s~(-1) in order to evaluate its potential in structural applications. Higher stresses are observed at higher strain rates. The peak stress increases about 10% for an increase in the strain rate from 980 s~(-1) to 2450 s~(-1). The hardening exponent n increases from 0.65 to 0.72 with increasing strain rate from 980 s~(-1) to 2450 s~(-1) indicating that the alloy is rate sensitive. However, the rate sensitivity of the alloy is negligible at lower strains and is significantly higher at higher strains. Energy absorption during deformation in general is increased with the strain rate.
机译:镁合金越来越多地用于汽车,航空航天,消费电子和通信行业,由于它们的低密度,高强度,重量比,耐抗冲击性良好。车辆和飞机的影响情况和高速金属加工的特点是载荷高的速度。材料的动态性质对于评估影响局势中的材料的反应至关重要。它们对于设计具有高负荷率的各种汽车和航空航天部件也是有用的。在目前的研究中,已经在103到3×10〜3 s〜(-1)之间的宽范围的应变速率范围内检查了镁合金AZ31b的压缩行为,以评估其在结构应用中的潜力。以较高的应变速率观察到更高的应力。峰值应力增加约10%,从980 s〜(-1)到2450 s〜(-1)的应变速率增加。硬化指数N从980 S〜(-1)至2450 s〜(-1)的应变速率增加增加0.65至0.72,表明合金是速率敏感。然而,合金的速率灵敏度在较低菌株处可忽略不计,并且在较高菌株处显着较高。变形期间的能量吸收随着应变速率而增加。

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