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Scaling relationships for acoustic control of two-phase microstructures during direct-write printing

机译:直写打印过程中两相微结构的声学控制的比例关系

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Acoustic forces can align and consolidate particles in fluids, enabling microstructural control of two-phase materials at time-scales compatible with direct-write printing of composites. This paper presents key scaling relationships for acoustically-assisted direct-write printing that describe characteristic time-scales for assembly and alignment of particles during printing. Critical combinations of system parameters (including particle and nozzle dimensions, acoustic excitation amplitude, viscosity, and flow rate) are defined that govern particle focusing and assembly in the print stream. The results can be used to identify combinations of printing protocols and nozzle configurations that control particle packing parallel and transverse to the print direction.Impact statementWe present theory and experiments demonstrating acoustic focusing in conjunction with direct-write printing for ‘on-the-fly’ control of two-phase microstructures, and a design framework for printing arbitrary material combinations.
机译:声力可以使流体中的颗粒排列和固结,从而可以在与复合材料的直接书写打印兼容的时间范围内对两相材料进行微结构控制。本文介绍了声学辅助直接写入打印的关键缩放比例关系,这些关系描述了打印过程中颗粒的组装和对齐的特征时间标度。定义了系统参数(包括粒子和喷嘴尺寸,声激发振幅,粘度和流速)的关键组合,这些参数控制着打印流中的粒子聚焦和组装。结果可用于识别打印协议和喷嘴配置的组合,以控制与打印方向平行和垂直的颗粒堆积。影响陈述我们提出了理论和实验,证明了声聚焦与直接写式打印相结合以实现``即时''打印两相微结构的控制,以及用于打印任意材料组合的设计框架。

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