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Characterizing Binder-Powder Interaction in Binder Jetting Additive Manufacturing Via Sessile Drop Goniometry

机译:通过术通过柄滴功率测定粘合剂喷射添加剂制造中的粘合剂粉末相互作用

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摘要

Understanding the binder-powder interaction and primitive formation is critical to advancing the binder jetting Additive Manufacturing process and improving the accuracy, precision, and mechanical properties of the printed parts. In this work, the authors propose an experimental approach based on sessile drop goniometry on a powder substrate to characterize the binder wetting powder process. As a binder drop penetrates into a prepared powder substrate, the dynamic contact angle formed in powder pores is calculated based on the measured binder penetration time, and the binder penetration depth is measured from the binder-powder granule retrieved from the powder substrate. Coupled with models of capillary flow, the technique provides a fundamental understanding of the binder-powder interaction that determines the material compatibility and printing parameters in binder jetting. Enabled by this gained understanding, it was determined that suspending nanoparticles in a binder could increase the capillary-driven penetration depth, which was then reduced by the further increase of the nanoparticle solid loading and resultant binder viscosity.
机译:了解粘合剂粉末相互作用和原始形成对于推进粘合剂喷射添加剂制造工艺并提高印刷部件的精度,精度和力学性能至关重要。在这项工作中,作者提出了一种基于粉末基底上的术术滴功率术的实验方法,以表征粘合剂润湿粉末方法。当粘合剂下降渗透到制备的粉末基板中时,基于测量的粘合剂穿透时间计算在粉末孔中形成的动态接触角,并且从粉末基板检出的粘合剂粉末颗粒测量粘合剂穿透深度。再加上毛细血管流量的模型,该技术提供了对粘合剂粉末相互作用的基本理解,以确定粘合剂喷射中的材料兼容性和印刷参数。通过这种获得的理解实现,确定粘合剂中的悬浮纳米颗粒可以增加毛细管驱动的渗透深度,然后通过进一步增加纳米颗粒固体载荷和所得粘合剂粘度来降低。

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