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Superplastic Flow at Elevated Temperatures in As-Rolled AZ91 Sheet

机译:高温轧制AZ91板中的超塑性流

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An alternative processing method for superplastic magnesium alloys has been studied on the form of sheet of Mg-9AI-1Zn (AZ91) via large strain by ingot metallurgy with an isothermal-rolling. Constant initial strain rate tensile tests have been conducted at elevated temperatures for AZ91 sheets as rolled with reduction in area of 90%. The values of total elongation exceeded over 50% at all strain rates and at all testing temperatures except 673 K, and the maximum total elongation exhibited 210%. The total elongation had a tendency to increase at low temperature side. The strain rate sensitivity, m-values, exceeded over 0.5 at strain rates from 1.0 × 10~(-4) to 2.5 × 10~(-4) s~(-1), The values of flow stress were lower than those of completely recrystallized AZ91 and did not depend so much on the tensile temperatures from 573 to 648 K at high strain rates. The activation energy required for superplastic flow in the high-m-deformation was calculated to be 80-83 kJ • mol~(-1). This value was close to the grain boundary self-diffusion energy of Mg. Anisotropic textures were no seen in X-ray (0002) pole figure analysis (XPFA) by Schulz''s reflection method. It was suggested that the stress concentrations through grain boundaries or in grains could be relaxed during superplastic deformation process and the superplastic flow was more easily associated with boundary diffusion.
机译:研究了一种超塑性镁合金的替代加工方法,该方法是通过等温铸锭冶金通过大应变对Mg-9Al-1Zn(AZ91)板材进行加工。对于轧制面积减少90%的AZ91板材,已经在升高的温度下进行了恒定的初始应变速率拉伸试验。在除673 K以外的所有应变率和所有测试温度下,总伸长率值均超过50%,最大总伸长率显示为210%。总伸长率在低温侧具有增加的趋势。从1.0×10〜(-4)到2.5×10〜(-4)s〜(-1)的应变率,应变率灵敏度m值超过0.5,流变应力值小于完全重结晶的AZ91,在高应变速率下,拉伸温度从573到648 K的依赖性不大。计算出高m形变中超塑性流所需的活化能为80-83 kJ•mol〜(-1)。该值接近Mg的晶界自扩散能。通过舒尔茨的反射法在X射线(0002)极图分析(XPFA)中看不到各向异性织构。有人认为,在超塑性变形过程中,可以放松通过晶界或晶粒内的应力集中,而超塑性流动更容易与边界扩散有关。

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