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Study of the Mechanical Properties and Toughening Mechanism of Nano-NbC Particles Toughened Si3N4-Based Ceramics

机译:纳米NBC颗粒的力学性能和增韧机理研究膨胀Si3N4陶瓷

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摘要

In this article, nano-NbC particles toughened Si3N4-based ceramics were prepared by injection moulding and their mechanical properties along with toughening mechanism were studied. An increase of nano-NbC content, gradually homogenizes microstructure of the Si3N4-based ceramics along with increase in its density. However, the fracture toughness and flexural strength first increases and then decreases. The Si3N4-based ceramics demonstrate good comprehensive properties at the 15 wt% nano-NbC content and sintering temperature of 1550 degrees C (where the density is 85.3%, the flexural strength is 845 MPa, and the fracture toughness is 9.3 MPa . m(1/2)), Backscattered electron imaging shows that nano-NbC particles can be well dispersed in the Si3N4 ceramic matrix by injection moulding and ceramics are toughened by crack deflection and microcracking effects. It was also found that increasing sintering temperature makes the beta-Si3N4 grain distribution more uniform by reducing the porosity.
机译:在本文中,通过注射成型制备纳米NBC颗粒增韧Si3N4的陶瓷,并研究了它们的机械性能以及增韧机理。 纳米NBC含量的增加,逐渐均化Si3N4基陶瓷的微观结构以及其密度的增加。 然而,断裂韧性和弯曲强度首先增加,然后减少。 基于Si3N4的陶瓷在15wt%纳米Nbc含量和1550℃的烧结温度下表现出良好的综合性质(密度为85.3%,弯曲强度为845mPa,骨折韧性为9.3MPa。M( 1/2),反向散射的电子成像表明,通过注射成型,纳米NBC颗粒可以在Si3N4陶瓷基质中分散在Si3N4陶瓷基质中,并且通过裂缝偏转和微裂纹效果来增韧陶瓷。 还发现,通过降低孔隙率,增加烧结温度使得β-Si3N4晶粒分布更均匀。

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