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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >High-Temperature Tensile Flow Behavior of Caliber-Rolled Mg-3Al-1Zn Alloy
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High-Temperature Tensile Flow Behavior of Caliber-Rolled Mg-3Al-1Zn Alloy

机译:口径轧制Mg-3Al-1Zn合金的高温拉伸流动行为

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摘要

Mg-3Al-1Zn (AZ31) alloy was caliber rolled isothermally in the temperature range of 523 K to 723 K (250 A degrees C to 450 A degrees C) to develop fine grains of 3 to 13 A mu m. Tensile tests by constant initial strain rate as well as differential strain rate test techniques were conducted over the temperature range of 493 K to 723 K (220 A degrees C to 450 A degrees C) and strain rate range of 10(-5) to 10(-1) s(-1). Maximum tensile elongation of 182 pct was obtained at test temperature of 723 K (450 A degrees C) and strain rate of 10(-3) s(-1) in the sample obtained from caliber rolling at 723 K (450 A degrees C), in spite of its large grain size of 13 A mu m. The strain rate sensitivity index 'm' was found to vary from 0.08 to 0.33 and activation energy for deformation 'Q' varied from 30 to 185 kJ mol(-1) depending on test condition and caliber-rolling condition. These variations in m and Q values are explained by the difference in prior grain size, texture, and twins developed as a function of caliber-rolling temperature, and further by the concomitant microstructural change occurring during tensile test itself. The presence of twins and orientation of grains influences the parameters of the constitutive relation to varying extent.
机译:Mg-3Al-1Zn(AZ31)合金在523 K至723 K(250 A至450 A摄氏度)的温度范围内等温轧制,以形成3至13 Aμm的细晶粒。在493 K至723 K(220 A到450 A摄氏度)的温度范围和10(-5)到10的应变率范围内,通过恒定的初始应变率以及差分应变率测试技术进行了拉伸测试。 (-1)s(-1)。在723 K(450 A摄氏度)的机芯轧制中获得的样品在723 K(450 A摄氏度)的测试温度和10(-3)s(-1)的应变速率下获得了182 pct的最大拉伸伸长率尽管其13 A的大晶粒尺寸。根据测试条件和口径轧制条件,发现应变率灵敏度指数“ m”在0.08至0.33之间变化,变形“ Q”的活化能在30至185 kJ mol(-1)之间变化。 m和Q值的这些变化可通过先验晶粒尺寸,织构和孪晶的差异来解释,这些差异是机芯轧制温度的函数,还可以通过在拉伸试验过程中随之而来的微观结构变化来解释。孪晶的存在和晶粒的取向在不同程度上影响本构关系的参数。

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