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Solid State Synthesis Of Mg_2si/mgo Composites From An Elemental Mixture Powder Of Magnesium And Rice Husk Silica

机译:镁和稻壳二氧化硅元素混合粉固相合成Mg_2si / mgo复合材料

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摘要

The utilization of silica particles originating in rice husks as reinforcements for magnesium is discussed. The reactivity of magnesium with silica particles in the solid state to synthesize magnesium silicide (Mg_2Si) was investigated by DTA and XRD analysis. Finer silica particles were more effective for reacting with magnesium at low temperature due to the increase of their surface area in contact with magnesium. Amorphous silica was more useful for the reaction than the crystalline form. The reactivity of rice husk silica was superior to that of the conventional mineral silica particles because of not only its amorphous structure but the larger specific surface area caused by the pore structures. In the case of a green compact of the elemental mixture of silica particles and Mg powder, the silica particle size was not effective on the reactivity because the coarse particles are fractured into fine ones by cold compaction at the applied pressure of 600 MPa. The distribution of Mg_2Si intermetallics in magnesium powder composites consolidated by the SPS process was investigated by XRD and SEM-EDS analysis. When the sintering temperature was over the exothermic temperature of the elemental mixtures of silica particles and Mg powder in the DTA profile, the synthesis of Mg_2Si occurs completely occurs during sintering. The density and hardness of their composites sintered over the ignition temperature of the DTA profile were remarkably high because of the good densification by the high reactivity and the distribution of Mg_2Si hard compounds.
机译:讨论了将稻壳中的二氧化硅颗粒用作镁的增强剂。通过DTA和XRD分析研究了镁与固态二氧化硅颗粒反应生成硅化镁(Mg_2Si)的反应性。由于其与镁接触的表面积增加,因此较细的二氧化硅颗粒在低温下与镁反应更有效。无定形二氧化硅比结晶形式对反应更有用。稻壳二氧化硅的反应性优于常规矿物二氧化硅颗粒,这是因为其不仅具有无定形结构,而且由于孔结构而导致的比表面积更大。在二氧化硅颗粒和Mg粉末的元素混合物的生压坯的情况下,由于在600MPa的施加压力下通过冷压将粗颗粒破碎成细颗粒,因此二氧化硅颗粒尺寸对反应性无效。通过XRD和SEM-EDS分析研究了SPS固结的镁粉复合材料中Mg_2Si金属间化合物的分布。当烧结温度超过DTA曲线中二氧化硅颗粒和Mg粉末的元素混合物的放热温度时,在烧结过程中完全发生了Mg_2Si的合成。在DTA型材的着火温度范围内烧结的复合材料,其密度和硬度非常高,这是由于Mg_2Si硬质化合物的高反应活性和分布使其具有良好的致密性。

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