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The influence of the as-hot rolled microstructure on the elevated temperature mechanical properties of magnesium AZ31 sheet

机译:热轧组织对AZ31镁薄板高温力学性能的影响

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An AZ31 alloy was rolled at temperatures between 350 and 450 ℃, after soaking at rolling temperature for either 1 or 10 h, using various rolling reductions per pass and rolling speeds. Two extremes of as-hot rolled microstructure were generated: (ⅰ) a banded structure comprised of very fine equiaxed grains, but with a few 'pancaked grains', i.e. 'partially recrystallized', and (ⅱ) much coarser equiaxed grains with no banding or pancaked grains, i.e. 'recrystallized'. These hot-rolled sheets were tensile tested at temperatures between 300 and 450℃, with strain rates from 0.1 to 0.001 s~(-1). Grain boundary sliding appeared to dominate at higher test temperatures and lower strain rates, and dynamic recrystallization dominated at lower temperatures and higher strain rates. In terms of good high temperature formability (i.e. low flow stress and high ductility) the partially recrystallized structure was more beneficial than the fully recrystallized structure, under test conditions where grain boundary sliding dominated.
机译:AZ31合金在350至450℃之间的温度下进行轧制,然后在轧制温度下均热1或10 h,并采用不同的每道次压下率和轧制速度。产生了两个极端的热轧微观组织:(ⅰ)由非常细的等轴晶粒组成的带状组织,但有一些“片状晶粒”,即“部分重结晶”,以及(ⅱ)较粗的等轴晶粒,无带状或煎饼谷物,即“重结晶”。这些热轧板在300至450℃的温度下进行了拉伸测试,应变速率为0.1至0.001 s〜(-1)。晶界滑动似乎在较高的测试温度和较低的应变速率下占主导地位,而动态再结晶在较低的温度和较高的应变率下占主导地位。在良好的高温成形性(即低流动应力和高延展性)方面,在晶界滑动占主导的测试条件下,部分重结晶的组织比完全重结晶的组织更有利。

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