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In Situ Formation and Refinement of Mg_2Si in Fiber-Reinforced AZ91D Magnesium Alloy

机译:纤维增强AZ91D镁合金中Mg_2Si的原位形成与细化

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In order to obtain a lightweight material having an excellent high-temperature strength, Mg alloy composites reinforced with short alumina fibers and in situ Mg_2Si particles were fabricated. The composites were fabricated by pressureless infiltration of the Mg alloy melt into the preform consisting of the fibers and attached Si particles. The volume fraction of Si particles in the preform, the melting temperature of the Mg alloy, and the cooling rate after the infiltration were varied. P and CaF_2 particles were also used as refiners of the Mg_2Si. Based on the results, the conditions dispersed the Mg_2Si particles finely and homogeneously and the formation and dispersion mechanism of the Mg_2Si were clarified. Although the Si content exceeds its equilibrium solubility in the Mg melt when the volume fraction of the Si particles was 9.5 vol percent, all of the Si particles reacted with the Mg alloy melt to form Mg_2Si particles. The Mg_2Si particles were homogeneously dispersed in the matrix, because the segmentation of Mg_2Si particles in the infiltration was prevented due to the presence of fibers. As the melting temperature decreased or the cooling rate after the infiltration increased, the Mg_2Si particles became finer. The introduction of P or CaF_2 further promoted the refinement of the Mg_2Si particles.
机译:为了获得具有优异的高温强度的轻质材料,制造了用短氧化铝纤维和原位Mg_2Si颗粒增强的Mg合金复合材料。通过将Mg合金熔体无压渗透到由纤维和附着的Si颗粒组成的预成型坯中来制造复合材料。预成型体中的Si颗粒的体积分数,Mg合金的熔化温度以及渗透后的冷却速率均发生变化。 P和CaF_2颗粒也用作Mg_2Si的细化剂。根据该结果,明确了使Mg_2Si粒子微细且均匀地分散的条件,明确了Mg_2Si的形成和分散机理。当Si颗粒的体积分数为9.5体积%时,尽管Si含量超过其在Mg熔体中的平衡溶解度,但是所有Si颗粒均与Mg合金熔体反应以形成Mg_2Si颗粒。 Mg_2Si颗粒均匀地分散在基质中,因为由于纤维的存在,防止了渗透中Mg_2Si颗粒的分段。随着熔化温度的降低或渗透后冷却速率的增加,Mg_2Si颗粒变得更细。 P或CaF_2的引入进一步促进了Mg_2Si颗粒的细化。

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