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Characterizing the feasibility of processing wet granular materials to improve rheology for 3D printing

机译:表征加工湿颗粒材料的可行性,提高3D印刷流变学

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摘要

Rheological measurements and extrusion tests are used to evaluate the viability of high mass fraction (80% solids content) wet granular materials for extrusion-based 3D printing. Such materials have diverse applications from making dense, strong ceramic custom parts to 3D printing uniquely shaped energetic materials. Traditionally, 3D-printed colloidal materials use much lower mass fraction inks, and hence, those technologies will not work for systems requiring higher mass fraction solids content. These wet granular materials are highly non-Newtonian presenting non-homogenous flows, shear thinning, yield stress, and high elasticity. Such behaviors improve some aspects of print quality, but make printing very difficult. In this work, the relationship between the rheological behavior of wet granular materials and the processing parameters that are necessary for successfully extruding these materials for printing is examined. In the future, such characterizations will provide key indicators on how to alter printer design/operating conditions and adjust material behavior in order to improve printability. This study is a fundamental first step to successfully developing 3D printing technology of wet granular materials.
机译:流变测量和挤出试验用于评估高质量分数(80%固体含量)湿颗粒材料的基于挤出的3D印刷的活力。这些材料具有不同的应用,从致密,强大的陶瓷定制部件到3D印刷唯一形状的能量材料。传统上,3D印刷的胶体材料使用大量质量分数油墨,因此,这些技术不会用于需要较高质量分数固体含量的系统。这些湿颗粒材料是高度非牛顿的呈现非均匀流动,剪切稀释,屈服应力和高弹性。这些行为改善了印刷质量的一些方面,但是打印非常困难。在这项工作中,研究了湿颗粒材料的流变行为与成功挤出所需的加工参数之间的关系进行检查。在未来,此类特征将提供关于如何改变打印机设计/操作条件的关键指标,并调整材料行为以提高可印刷性。本研究是成功开发湿颗粒材料的3D印刷技术的基本一步。

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