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Effect of BN whisker-like additive on the flexural strength of Si3N4 ceramics prepared by gel casting method

机译:BN晶须添加剂对凝胶铸造方法制备的Si3N4陶瓷弯曲强度的影响

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The gel casting method was used for the production of Si3N4 porous ceramics with 25 vol% solid loading, and the effect of adding 1 and 3 wt.% of BN whisker-like (synthesized in the laboratory) on the flexural strength of the composites was investigated. The gel-cast samples were prepared using an AM-MBAM monomer system and deionized water solvent. The gel cast bodies were dried at ambient temperature and humidity for 48hrs. The burnout process was carried out at 600 degrees C for 14hrs in the air. The samples were then subjected to heat treatment at 1650 degrees C for 2 hrs in a bed of 50% Si3N4-50% BN. Results showed that BN whisker-like were agglomerated in deionized water. To solve this problem and to properly disperse the whisker-like in the slurry, active surface agent groups were employed. Adding BN whisker-like to ceramic bodies, increased the porosity from 33% in samples without BN to 46% in samples containing 3 wt% BN whisker-like, resulting in a decrease in the density from 1.8 g/cm(3) to about1.61 g/cm(3). Since the Si3N4 ceramics require aids for the sintering, SiO2 and Y2O3 additives were used with a ratio of 1 to 2, respectively, which led to the formation of Si2N2O phase. Si2N2O is similar to the Si3N4 phase in terms of the thermal expansion coefficient and chemical properties. Because of its rod shaped morphology, it has a similar function to beta-Si3N4 phase in improving the mechanical properties of the ceramic. Although porosity in the ceramics containing 3 wt.% BN whisker-like was higher than those containing 1 wt.%, the porosity created vacant spaces for further growth of Si2N2O-rod shaped grains and in spite of higher porosity, better flexural strength was achieved for bodies with 3 wt.% BN whisker-like. Also, in bodies without BN whisker-like, the flexural strength was 88 MPa, due to the low porosity and the presence of stretched Si2N2O grains.
机译:凝胶铸造方法用于生产具有25体积%的固体载荷的Si3N4多孔陶瓷,并加入1和3重量%的效果。在复合材料的弯曲强度上加入1和3重量%的BN晶须(在实验室中合成)调查。使用AM-MBAM单体系统和去离子水溶剂制备凝胶浇铸样品。将凝胶铸造体在环境温度和湿度下干燥48小时。燃尽过程在600℃下在空气中进行14小时。然后将样品在1650℃下在50%Si3N4-50%BN的床上进行热处理2小时。结果表明,在去离子水中凝聚BN晶须。为了解决这个问题并在浆料中正确地分散晶须,采用活性表面剂基团。将BN晶须添加到陶瓷体中,在含有3wt%BN晶须的样品中,在样品中的33%增加33%的孔隙率在含有3wt%的BN晶须的样品中,导致密度为1.8g / cm(3)至约1的密度降低.61 g / cm(3)。由于Si3N4陶瓷需要有助于烧结,因此SiO 2和Y 2 O 3添加剂分别使用1至2的比例,其导致形成Si2N 2 O相。在热膨胀系数和化学性质方面,Si2N2O类似于Si3N4相。由于其棒状形态,它具有与β-Si3N4相似的类似功能,以改善陶瓷的机械性能。虽然含有3wt%的陶瓷中的孔隙率高于含有1重量%的晶圆。%,但孔隙率为孔隙率为进一步生长的孔隙率并且尽管孔隙率较高,但实现了更好的弯曲强度,实现了更好的弯曲强度适用于3重量%的尸体。%BN晶须。而且,在没有BN晶须的体内,由于低孔隙率和拉伸的Si2N2O颗粒,弯曲强度为88MPa。

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