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Preparation and characterization of waterborne ceramic ink with submicron-sized praseodymium-doped zirconium silicate pigment by water-based diblock polymer dispersants

机译:水基二嵌段聚合物分散剂的亚微米尺寸镨掺杂锆硅酸锆硅酸盐的制备与表征

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Two diblock polymer dispersants (i.e., PMAA-b-AMPS and PSSS-b-GMA) were synthesized and used as water-based dispersants for dispersion and stabilization of waterborne ceramic ink with submicron-sized praseody-mium-doped zirconium silicate (Pr-ZrSiO4) pigment. The color property, dispersion, and stability of the pigment particles in aqueous suspension were determined by colorimetry, laser particle size analysis, and sedimentation test. The adsorption mechanism of carbon chains of dispersants on the particle surface was analyzed by Fourier transform infrared spectroscopy, thermogravimetric analysis, X-ray photoelectron spectroscopy and electrokinetic potential measurement. Also, the viscosity, surface tension and stability of waterborne ceramic ink with the pigment particles were measured by rheometry, surface tension analysis and standing settlement. The results show that the submicron-sized pigment particles in waterborne ceramic ink show optimum dispersibility and stability at 5 wt% addition of diblock polymer dispersants PMAA-b-AMPS and PSSS-b-GMA mixed in a mass ratio of 9:1. This could be since the mixed dispersants provide the more interparticle electrostatic repulsion and steric hindrance energies due to the proper adsorption on the particle surfaces. It is indicated that adding 20 wt% of diethylene glycol monobutyl ether into the waterborne ceramic ink can effectively enhance the viscosity and reduce the surface tension, thus satisfying the applied requirements in inkjet printing. In addition, the jettability of waterborne ceramic ink on a simulated ceramic green body was also evaluated based on semi-empirical analysis.
机译:合成两种二嵌段聚合物分散剂(即,PMAA-B-AMPS和PSS-B-GMA)并用作水性分散剂,用于用亚微米大小的莫米掺杂的硅酸钠分散和稳定水性陶瓷油墨(PR- Zrsio4)颜料。通过比色法,激光粒度分析和沉淀试验测定含水悬浮液中颜料颗粒的颜色,分散和稳定性。通过傅里叶变换红外光谱,热重分析,X射线光电子能谱和电动电位测量分析了颗粒表面上分散剂碳链的吸附机理。而且,通过流变学,表面张力分析和稳定沉降测量水性陶瓷油墨的粘度,表面张力和水性陶瓷油墨的稳定性。结果表明,水性陶瓷油墨中的亚微米大小的颜料颗粒在5wt%的二嵌段聚合物分散剂PMAA-B-AMPS和PSS-B-GMA以9:1的质量比中混合的5wt%加入的最佳分散性和稳定性。这可能是由于混合分散剂由于颗粒表面上的适当吸附而提供更颗粒静电排斥和空间阻塞能量。结果表明,将20wt%的二甘醇单丁醚进入水性陶瓷油墨可以有效地增强粘度并降低表面张力,从而满足喷墨印刷中的应用要求。此外,还基于半实证分析评估了水性陶瓷油墨对模拟陶瓷生体上的喷涂性。

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