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Effects of nitrogen pressure and diluent content on the morphology of gel-cast-foam-assisted combustion synthesis of elongated β-Si_3N_4 particles

机译:氮气压力和稀释剂含量对拉长β-Si_3N_4颗粒的凝胶铸造泡沫辅助燃烧合成形态的影响

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摘要

Elongated β-Si_3N_4 particles were prepared by gel-cast-foam-assisted combustion synthesis, which is a combination method of gel-casting-foam method and combustion synthesis. Gel-casting-foam method was used to prepare starting powder green body of high porosity and sufficient strength. Combustion synthesis reaction was conducted on the as-made green body. The effects of N_2 pressure and diluent content on the combustion velocity, conversion rate and morphology of the resulting particles arc studied. With high porosity (~80%), the conversion rate more than > 90% was achieved at low N_2 pressure (1.5 MPa) and low diluent content (even nil). In the epoxy composites, elongated β-Si_3N_4 powder was confirmed a better filler than its equiaxed counterpart in improving the thermal conductivities of the resultant composites.
机译:通过凝胶浇铸泡沫辅助燃烧合成方法制备了细长的β-Si_3N_4颗粒,该方法是凝胶浇铸泡沫方法与燃烧合成相结合的方法。采用凝胶浇铸泡沫法制备了高孔隙率和足够强度的原料粉末生坯。在生坯上进行燃烧合成反应。研究了N_2压力和稀释剂含量对燃烧速度,转化率和所得颗粒形态的影响。在高孔隙率(〜80%)的情况下,在低N_2压力(1.5 MPa)和低稀释剂含量(甚至为零)下,转化率大于90%。在环氧复合材料中,在改善所得复合材料的导热性方面,证实了细长的β-Si_3N_4粉末比等轴配对的粉末更好。

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