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Coarse-grained superplasticity and gas blow forming of commercial AZ31 magnesium alloy sheet

机译:商用AZ31镁合金薄板的粗粒超塑性和吹塑成型

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摘要

Superplasticity of commercial AZ31 magnesium alloy sheet has been investigated at strain rate range of 0.7 x 10(-3)-1.4 x 10(-1) s(-1) and temperature range of 523-673 K. Hot uniaxial and equibiaxial tensile tests are carried out. The maximum elongation of 362% has been obtained at the temperature of 673 K and strain rate of 0.7 x 10(-3) s(-1). The calculation of activation energy Q and examination of microstructures show that the deformation mechanism of commercial AZ31 magnesium alloy is dissimilar at different conditions. With the decreasing of temperature and increasing of strain rate, the deformation mechanism is converted from grain boundary sliding controlled by grain boundary diffusion to the mix of grain boundary sliding and plastic or/and creep deformation controlled by lattice diffusion. In the free bulging tests, the hemisphere has been formed successfully and for the components, the failure reason is the growing and connecting of the cavities.
机译:在应变率范围为0.7 x 10(-3)-1.4 x 10(-1)s(-1)和温度范围为523-673 K的情况下,研究了商用AZ31镁合金薄板的超塑性。热单轴和等双轴拉伸试验被执行。在673 K的温度和0.7 x 10(-3)s(-1)的应变速率下,最大伸长率为362%。活化能Q的计算和微观组织的研究表明,商用AZ31镁合金的变形机理在不同条件下是不同的。随着温度的降低和应变率的增加,变形机理由晶界扩散控制的晶界滑动转变为晶界滑动与塑性或晶格扩散控制的蠕变变形的混合。在自由膨胀试验中,半球已成功形成,并且对于组件而言,失败的原因是空腔的生长和连接。

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