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首页> 外文期刊>Materials Characterization >The semi-solid microstructural evolution and coarsening kinetics of AZ80-0.2Y-0.15Ca magnesium alloy
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The semi-solid microstructural evolution and coarsening kinetics of AZ80-0.2Y-0.15Ca magnesium alloy

机译:AZ80-0.2Y-0.15CA镁合金的半固体微观结构演化与粗化动力学

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摘要

The semi-solid billets of the AZ80-0.2Y-0.15Ca magnesium alloy (AZ80M) were fabricated through the strain-induced melt activation (SIMA) process by hot extrusion and then partial remelting. The effects of isothermal temperature and soaking time on the microstructural evolution of the SIMA processed AZ80M in the semi-solid state were analyzed. The results showed that the average grain size (Deq) and the shape factor (SF) of globular grains increased with the increase of the isothermal temperature. However, the value of Deq has visibly declined trend with the isothermal temperature rising to 600 degrees C. The results of the coarsening kinetics of AZ80M alloy indicated that the coarsening rate (K) increases first and then decreases with the reduction of solid volume fraction (f(s)) and the critical solid volume fraction (f(s0)) is 0.5. The coarsening mechanism plays a dominant role in the growth behavior of the solid-grains when f(s) >= 0.5, which can be explained by the modified liquid film migration (MLFM) model. However, the melting mechanism plays a more critical role than coarsening mechanism when f(s )<= 0.5, which can be explained by the liquid film migration (LFM) model. In addition, the SIMA processed AZ80M alloy has a lower coarsening rate than other magnesium alloys, which most likely due to the addition of rare earth elements.
机译:通过热挤出通过应变诱导的熔体活化(SiMA)工艺制造AZ80-0.2Y-0.15CA-0.15CA镁合金(AZ80M)的半固体坯料,然后通过热挤出,然后部分重熔制成。分析了等温温度和浸泡时间对半固态中Sima加工AZ80M的微观结构演化的影响。结果表明,随着等温温度的增加,球状粒度的平均晶粒尺寸(DEQ)和形状因子(SF)增加。然而,DEQ的值具有明显下降的趋势,等温温度上升至600℃。AZ80M合金的粗化动力学的结果表明,粗化速率(K)首先增加,然后随着固体体积分数的还原而降低( F(S))和临界固体体积分数(F(S0))为0.5。当F(s)> = 0.5时,粗化机制在固体颗粒的生长行为中起显性作用,其可以通过改性的液体膜迁移(MLFM)模型来解释。然而,当F(s)<= 0.5时,熔融机构比粗化机制起到更关键的作用,这可以通过液体膜迁移(LFM)模型来解释。此外,Sima加工的AZ80M合金具有比其他镁合金的较低粗糙率,最有可能由于添加稀土元素而产生。

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