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首页> 外文期刊>Journal of the European Ceramic Society >Zirconia nano-colloids transfer from continuous hydrothermal synthesis to inkjet printing
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Zirconia nano-colloids transfer from continuous hydrothermal synthesis to inkjet printing

机译:氧化锆纳米胶体从连续水热合成转移到喷墨印刷

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Water dispersions of nanometric yttria stabilized zirconia (YSZ) particles synthesized by Continuous Hydrothermal Synthesis are transferred into nano-inks for thin film deposition. YSZ nanoparticles are synthesized in supercritical conditions resulting in highly dispersed crystals of 10nm in size. The rheology of the colloid is tailored to achieve inkjet printability (Z) by using additives for regulating viscosity and surface tension. Inks with a wide range of properties are produced. A remarkable effect of nanoparticles on the ink printability is registered even at solid load <1%vol. In particular, nanoparticles hinder the droplet formation at low values of the printability while suitable jetting is observed at high Z values,i.e.Z ≈ 20. For the optimized inks, we achieve high quality printing with lateral and thickness resolutions of 70μm and ca. 250nm respectively, as well as self-levelling effect with a reduction of the substrate roughness. Densification is achieved at sintering temperatures below 1200°C.
机译:通过连续水热合成合成的纳米钇稳定氧化锆(YSZ)颗粒的水分散体转移到薄膜沉积中的纳米油墨中。 YSZ纳米颗粒在超临界条件下合成,得到高度分散的10nm的尺寸。通过使用用于调节粘度和表面张力的添加剂来定制胶体的流变学,以实现喷墨印刷性(Z)。产生具有各种属性的墨水。纳米颗粒对油墨印刷性的显着作用即使在固体载荷<1%Vol下也会注册。特别地,纳米颗粒在可印刷性的低值下阻碍液滴形成,同时在高Z值下观察到合适的喷射,即≈20.对于优化的油墨,我们通过70μm和Ca的横向和厚度分辨率实现高质量的印刷。分别为250毫米,以及底物粗糙度的降低的自平整效果。在1200℃以下的烧结温度下实现致密化。

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