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Effect of magnesium titanate content on microstructures, mechanical performances and dielectric properties of Si3N4-based composite ceramics

机译:钛酸镁含量对Si3N4基复合陶瓷微结构,机械性能和介电性能的影响

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摘要

Silicon nitride-based composite ceramics with different contents of magnesium titanate have been fabricated via gas pressure sintering method. The phase compositions, microstructure, mechanical performances and dielectric properties of the composite ceramics were investigated. The density of the Si3N4-based composite ceramics firstly increased with additive of magnesium titanate powder up to 5 wt% and then gently decreased, and the mechanical properties firstly increased and then declined. Besides, the dielectric constant and dielectric loss increased with the increase of magnesium titanate contents. For the Si3N4-based composite ceramics with 5 wt% magnesium titanate powders, the flexural strength, elastic modulus, dielectric constant and dielectric loss reached 451 MPa, 274 GPa, 7.65, 0.0056, respectively. These results suggested that the magnesium titanate was beneficial for the improvement of mechanical performances and dielectric constant of Si3N4-based composite ceramics.
机译:通过气压烧结法制造具有不同含量钛酸镁的氮化硅基复合陶瓷。 研究了复合陶瓷的相组合物,微观结构,机械性能和介电性能。 基于Si3N4的复合陶瓷的密度首先用钛酸镁粉末的添加剂增加,高达5wt%,然后轻微降低,并且机械性能首先增加,然后下降。 此外,随着钛酸镁含量的增加,介电常数和介电损失增加。 对于具有5wt%钛酸镁粉末的Si3N4基复合陶瓷,弯曲强度,弹性模量,介电常数和介电损耗分别达到451MPa,274GPa,7.65,0.0056。 这些结果表明,钛酸镁是有利于改善Si3N4基复合陶瓷的机械性能和介电常数。

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