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Near-net shaping of silicon nitride via aqueous room-temperature injection molding and pressureless sintering

机译:通过含水室温注塑和无压烧结近净氮化碳近净成型

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Silicon nitride (Si3N4) is of interest because of its high inherent fracture toughness due to interlocking and elongated beta-Si3N4 grains, but it is difficult to economically produce into near-net and complex shapes. In this study, the difficulties were overcome with the use of a novel injection molding process where highly loaded (up to 45 vol%) suspensions were loaded into a syringe and injected at a controlled rate into a mold of a desired shape. The suspensions have carefully tailored yield-pseudoplastic rheology such that they can be injection molded at room temperature and low pressures (< 150 kPa). Four suspensions were studied; two different commercially available concrete water-reducing admixtures (WRAs) were used as dispersants with and without a polymer binder (Polyvinylprolidone, PVP) added for rheological modification and improved green body strength. Test bars formed via this process were sintered to high densities (up to 97% TD) without the use of external pressure, and had complete conversion to the desirable (beta-Si3N4 phase with high flexural strengths up to 700 MPa. The specimen sets with the smallest average pore size on the fracture surface (77 mu m) had the highest average flexural strengths of 573 MPa. The hardness of all specimens was approximately 16 GPa. The ease and low cost of processing of these water-based suspensions, and the robust mechanical properties reported, demonstrate this as a viable process for the economical and environmentally friendly production of Si3N4 parts.
机译:由于其互锁和细长的β-Si3N4晶粒,氮化硅(Si3N4)是感兴趣的,但是由于互锁和细长的β-Si3N4晶粒,但难以经济地产生近净和复杂的形状。在这项研究中,使用新的注射成型方法克服了困难,其中将高负荷(高达45体积)悬浮液加载到注射器中并以受控速率注入所需形状的模具中。悬浮液仔细定制了产量 - 假塑性流变学,使得它们可以在室温下注射成型,低压(<150kPa)。研究了四种悬浮液;两种不同的市售混凝土减水混合物(WRA)用作具有和不添加聚合物粘合剂(聚乙烯醇醚酮,PVP)的分散剂以进行流变改性和改善的绿体强度。通过该方法形成的测试棒烧结至高密度(高达97%Td)而不使用外部压力,并完全转化为所需的(β-Si3N4相,高弯曲强度高达700 MPa。样本套装断裂表面上最小的平均孔径(77μm)具有573mPa的平均平均弯曲强度。所有标本的硬度约为16 GPa。这些水基悬浮液加工的缓解和低成本,以及报告的强大的机械性能,证明这是一种可行的Si3N4零件生产的可行方法。

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