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Mechanical Behaviors of Magnesium Alloy AZ61 Under Different Strain Rates and Heating Rates

机译:应变速率和加热速率下镁合金AZ61的力学行为

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The effects of strain rate (SR) and heating rate (HR) on the mechanical behaviors of the tensile specimens of magnesium alloy AZ61 were experimentally investigated using a Gleeble-1500 thermal-mechanical material testing system. It showed that the higher the temperature is, the lower the ultimate strength of the specimens will be. The higher the heating rate is, the higher the ultimate strength of the specimens will be. The metallurgraphs of the fracture section of the specimens were also experimentally investigated for exploring their failure mechanism under different temperatures and heating rates. It showed that the high temperatures and high heating rates will induce microvoids in the specimens. The microvoids make the specimens failure under relative low loads.
机译:使用Gleeble-1500热机械材料测试系统,通过实验研究了应变速率(SR)和加热速率(HR)对镁合金AZ61拉伸试样力学性能的影响。结果表明,温度越高,试样的极限强度越低。加热速率越高,样品的极限强度就越高。还通过实验研究了试样断裂部位的金相,以探索其在不同温度和加热速率下的破坏机理。结果表明,高温和高加热速率会在样品中产生微孔。微孔使样品在相对较低的载荷下失效。

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