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Effect of Si on the creep properties of AZ61 cast magnesium alloy

机译:Si对AZ61铸造镁合金蠕变性能的影响

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In the present study, the effect of silicon on the impression creep properties of AZ61 alloy was studied under different normalized stress values between 0.02 and 0.0425 at temperatures ranging from 423 to 495 K. The results showed that the steady state creep rate is decreased with increasing silicon content. The improvement of creep resistance of the alloy was ascribed to the formation of Mg_2Si intermetallic phase having two Chinese script and polygonal morphologies. It was found that the stress exponent, n, varies between 4 and 7 for low stress values and between 10 and 14 for high stress levels. Creep activation energy values of 102-123 kJ/mol and 167-190 kJ/mol obtained for the low and high stress regimes, respectively. The obtained stress exponent and creep activation energies reveal that climb controlled dislocation creep and PLB are the dominant mechanisms under low and high stress values, respectively and Si has no influence on the dominant creep mechanism.
机译:在本研究中,研究了硅对AZ61合金的压痕蠕变性能的影响,该温度在423至495 K的温度下在0.02和0.0425之间的不同归一化应力值下进行。结果表明,稳态蠕变速率随增加而降低硅含量。合金的抗蠕变性的提高归因于形成具有两种中文文字和多边形形态的Mg_2Si金属间相。已经发现,对于低应力值,应力指数n在4和7之间变化,对于高应力水平,应力指数n在10和14之间变化。在低应力和高应力条件下获得的蠕变活化能值分别为102-123 kJ / mol和167-190 kJ / mol。所获得的应力指数和蠕变活化能表明,在低应力和高应力下,蠕变控制的位错蠕变和PLB分别是主导机理,而Si对主导蠕变机理没有影响。

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