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Nanosize silicon nitride: characteristic of doped powders and of the related sintered materials

机译:纳米氮化硅:掺杂粉末和相关烧结材料的特性

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The paper reports on both the characteristics of ultrafine silicon nitride powder produced by plasma synthesis and the microstructure and properties of the relative sintered material. The powder, already containing yttria and alumina as sintering aids, has a bimodal particle size distribution and it is partly amorphous. The chemical composition and morphology of the particles are shown. Yttria and alumina were not found in separate particles but the elements constituting them (i.e., Y, Al, O) are either in solid solutions in the crystalline particles or dispersed within the amorphous portion of the powder. Dense materials were obtained by pressureless sintering at 1750℃. Microstructure and composition of silicon nitride grains and of grain boundary phases are analyzed and discussed. When compared to a micro-sized Si_3N_4, nanoindentation tests clearly revealed the inverse Hall Petch relation. The nanosize Si_3N_4 shows a Young's modulus which is almost independent on the peak load.
机译:该论文既报道了通过等离子体合成生产的超细氮化硅粉末的特性,也报道了相关烧结材料的微观结构和性能。该粉末已经包含氧化钇和氧化铝作为烧结助剂,具有双峰粒度分布,部分为非晶态。显示了颗粒的化学组成和形态。在单独的颗粒中未发现氧化钇和氧化铝,但构成它们的元素(即Y,Al,O)要么以固溶体形式存在于结晶颗粒中,要么分散在粉末的非晶态部分中。 1750℃无压烧结得到致密材料。分析和讨论了氮化硅晶粒的组织和组成以及晶界相。与微米尺寸的Si_3N_4相比,纳米压痕测试清楚地揭示了霍尔Petch的反比关系。纳米尺寸的Si_3N_4的杨氏模量几乎与峰值载荷无关。

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