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Improved mechanical properties of dense β-Si3N4 ceramics fabricated by spark plasma sintering with Al2O3-YSZ additives

机译:用Al2O3-YSZ添加剂的火花血浆烧结制备的致密β-Si3N4陶瓷机械性能改善

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摘要

In this work the influence of sintering conditions on structure and mechanical properties of Si3N4 ceramics was investigated. Nearly full dense β-Si3N4 ceramics with excellent mechanical properties and interlock microstructure of elongated grains was fabricated using Al2O3 and yttria-stabilized zirconia (YSZ with 3 mol% Y2O3) as sintering additives by spark plasma sintering (SPS) at relatively low temperature of 1600 °C for 15 min. X-ray diffraction analysis shows that the SPSed sample is pure β-Si3N4 phase without any secondary crystalline phase. The elements Al, Zr, Y and O of the additive can diffuse into Si3N4 lattice forming β-Si3N4-based solid solution. The residual additive formed an amorphous phase at the β-Si3N4 grain boundaries. The β-Si3N4 ceramics obtained by SPS using 6.0 wt.% Al2O3 and 6.0 wt.% YSZ as additives shows interlock elongated β-Si3N4 grains of 500 nm in width and 3000 nm in length, high density of 3.29 g/cm3, Vickers hardness of 16.15 GPa and high fracture toughness KIC of 6.75 MPa m1/2.
机译:在这项工作中,研究了烧结条件对Si3N4陶瓷结构和力学性能的影响。具有优异的机械性能和细长晶粒互锁微观结构的近乎全致密的β-Si3N4陶瓷使用Al 2 O 3和ySz稳定的氧化锆(YSZ,3mol%Y2O3)作为烧结等离子体烧结(SPS)在相对较低的1600时烧结添加剂℃15分钟。 X射线衍射分析表明,SPSED样品是纯β-Si3N4相,没有任何次级结晶相。添加剂的元素Al,Zr,Y和O可以扩散成形成β-Si3N4的固溶体的Si3N4晶格。残余添加剂在β-Si3N4晶界处形成了非晶相。通过SPS使用6.0重量%的β-Si3N4陶瓷使用6.0重量%。%Al 2 O 3和6.0重量%。%YSZ作为添加剂显示宽度为500nm的互锁β-Si3N4颗粒,长度为3000nm,高密度为3.29g / cm3,维氏硬度16.15 GPA和高裂缝韧性KIC为6.75MPa m1 / 2。

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