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Investigation on the impression creep properties of a cast Mg-6Al-lZn magnesium alloy

机译:Mg-6Al-1Zn铸造镁合金的压痕蠕变性能研究

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In the present study, the creep behavior of a cast Mg-6Al-lZn (AZ61) magnesium alloy was investigated using impression creep technique at the temperature range of 423-495 K under shear modulus normalized stress ((_(imp)/G) between 0.02 and 0.0425. Based on the obtained results in the applied stress range, the creep behavior of the alloy was divided into two low and high stress regimes. Stress exponent varied in the range of 4-6 and 11-12 at the low and high stress regimes, respectively. Also, creep activation energy (Q) varied in the range of 113-199 kJ/mol and 170-188 kJ/mol at the low and high stress regimes, respectively. The activation energy values obtained at the low stress regime were between activation energy for magnesium lattice self diffusion (135 kj/mol) and dislocation pipe diffusion (92 kJ/mol). Considering the obtained stress exponents and creep activation energies, it can be stated that the climb controlled dislocation creep and power law breakdown are the dominant creep mechanisms at the low and high stress regimes, respectively.
机译:在本研究中,采用压痕蠕变技术研究了Mg-6Al-1Zn(AZ61)铸造镁合金在423-495 K温度范围内在剪切模量归一化应力((_(imp)/ G )在0.02和0.0425之间。根据在施加应力范围内获得的结果,合金的蠕变行为分为低应力和高应力两种状态,应力指数在4-6和11-12范围内变化同样,在低应力和高应力下蠕变活化能(Q)分别在113-199 kJ / mol和170-188 kJ / mol范围内变化。镁晶格自扩散的活化能(135 kj / mol)与位错管扩散的活化能(92 kJ / mol)之间处于低应力状态,考虑得到的应力指数和蠕变活化能,可以认为爬升控制的位错蠕变和幂律分解是主要定律ep机制分别处于低应力和高应力状态。

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