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Ceramic Ink-Jet Printing for Digital Decoration: Physical Constraints for Ink Design

机译:用于数字装饰的陶瓷喷墨印刷:油墨设计的物理限制

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In the last decade, the drop-on-demand (DOD) ink-jet printing has become the leading technology for the decoration of ceramic tiles. The inks employed for such application are colloidal suspensions of oxide particles (0.3 mu m) whose stability (against agglomeration and over time) is fundamental to get successfully the tile decoration. Jettability from the DOD print heads is a key requirement along with proper colour after sintering. This means that a careful set up of inks properties (viscosity, density, surface tension) is required. The phenomena involved in the different stages of the ink-jet printing process (drop ejection from the nozzles, impact and spreading on the substrates) are described through dimensionless numbers as Reynolds, Weber, and Bond numbers, or their combinations. In literature physical constraints, obtained with a semi-theoretical approach on the basis of experimental evidences on other systems, allow to define a reference region in the space of the dimensionless numbers (here called "printable fluid region," PER) where the inks should be suitable for the application. In this paper, 26 inks currently used for ceramic tile decoration were characterized and mapped in the space of dimensionless numbers for several printing conditions. For typical nozzle diameters (20-50 mu m) and drop velocities (6-8 m/s), it has been found that they fall in the region identified by 3 < Re < 30, 27 < We < 160, and 0.6 < 1/Oh <2.5, where Re, We, and Oh, are the Reynolds, Weber and Ohnesorge numbers, respectively. Such experimental region can be taken as reference to tune the colloidal interactions in proper way, though the thresholds delimiting the PFR should be better defined.
机译:在过去的十年中,按需滴(DOD)喷墨打印已成为瓷砖装饰的领先技术。用于这种用途的油墨是氧化物颗粒(0.3微米)的胶体悬浮液,其稳定性(抗结块和随时间变化)是成功获得瓷砖装饰的基础。烧结后,DOD打印头的可喷射性以及适当的颜色是关键要求。这意味着需要仔细设置油墨特性(粘度,密度,表面张力)。喷墨打印过程的不同阶段所涉及的现象(从喷嘴喷出的液滴,在基材上的撞击和散布)通过无量纲数(如雷诺数,韦伯数和邦德数)或其组合来描述。在文献中,物理约束是在其他系统的实验证据的基础上,以半理论方法获得的,可以在无量纲数字的空间中定义一个参考区域(此处称为“可打印流体区域”,PER),在该区域中应使用墨水适用于该应用程序。在本文中,针对几种印刷条件,对目前用于瓷砖装饰的26种油墨进行了表征,并将其绘制在无量纲数的空间中。对于典型的喷嘴直径(20-50μm)和下降速度(6-8 m / s),已经发现它们落在3

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