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In Operando Monitoring of Dynamic Recovery in 3D-Printed Thermoset Nanocomposites by XPCS

机译:在XPCS中的3D印刷热固性纳米复合材料中动态恢复的操作数监测

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Extrusion-based additive manufacturing methods, such as direct-write of carbon fiber-reinforced epoxy inks, have become an attractive route toward development of structural composites in recent years, because of emerging techniques such as big area additive manufacturing. The development of improved materials for these methods has been a major focus area; however, an understanding of the effects of the printing process on the structural and dynamic recovery in printed materials remains largely unexplored. The goal of this work is to capture multiscale and temporal morphology and dynamics within thermosetting composite inks to determine the parameters during the printing process that influence the recovery of the printed material. Herein, we use X-ray photon correlation spectroscopy in small-angle scattering geometry to reveal both morphology and recovery dynamics of a nanoparticle (layered-silicate Cloisite 30B) in a thermoset epoxy resin (EPON 826) during the printing process in real time. Our results show that the dynamics of the layered silicate particles during recovery are anisotropic and slow down to behavior which is characteristic of aging in colloidal clay suspensions around t(age) approximate to 12 s. The dynamics and alignment of the particles during recovery were tempo-spatially mapped, and the recovery post printing was shown to be strongly influenced by the deposition onto the build plate in addition to the extrusion through the print head. Our in operando results provide insight into the parameters that must be considered when optimizing materials and methods for precisely tailored local properties during 3D printing.
机译:基于挤出的添加剂制造方法,例如碳纤维增强环氧树脂油墨的直接写入,近年来已经成为结构复合材料的有吸引力的途径,因为诸如大面积添加剂制造等新兴技术。这些方法的改进材料的开发是一个主要的焦点区域;然而,了解印刷过程对印刷材料中结构和动态恢复的影响仍然很大程度上是未开发的。这项工作的目标是捕获热固性复合墨水中的多尺度和时间形态和动力学,以确定影响印刷材料回收的印刷过程中的参数。在此,我们在小角度散射几何中使用X射线光子相关光谱,以实时在印刷过程中揭示在热固性环氧树脂(EPON 826)中的纳米颗粒(层状硅酸盐溶液30b)的形态和恢复动力学。我们的研究结果表明,恢复过程中分层硅酸盐颗粒的动态是各向异性的,并且慢慢降至胶体粘土悬浮液中老化的特征,其近似为12 s。在恢复过程中颗粒的动态和对准是凝固的空间映射,并且除了通过打印头的挤出之外,恢复后印刷还被沉积在构建板上受到强烈影响。我们的Operando结果提供了对在3D打印期间优化材料和方法时必须考虑的参数的洞察力。

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