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Effect of Polymer Binder on the Synthesis and Properties of 3D-Printable Particle-Based Liquid Materials and Resulting Structures

机译:聚合物粘合剂对3D可印刷颗粒基液体材料合成及性能的影响及产生的结构

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Recent advances have demonstrated the ability to 3D-print, via extrusion, solvent-based liquid materials (previously named 3D-Paints) which solidify nearly instantaneously upon deposition and contain a majority by volume of solid particulate material. In prior work, the dissolved polymer binder which enables this process is a high molecular weight biocompatible elastomer, poly(lactic-co-glycolic) acid (PLGA). We demonstrate in this study an expansion of this solvent-based 3D-Paint system to two additional, less-expensive, and less-specialized polymers, polystyrene (PS) and polyethylene oxide (PEO). The polymer binder used within the 3D-Paint was shown to significantly affect the as-printed and thermal postprocessing behavior of printed structures. This development enables users to select one of several polymers to impart the most desirable properties for a given application. Additionally, 3D-Paints based on these new binders are not adversely affected by classes of particles that can chemically degrade PLGA, notably particles containing large quantities of alkali ions. This study demonstrates the ability to successfully use PS and PEO as binders in the 3D-Paint system and compares the rheological, mechanical, microstructural, and thermal properties of the modified 3D-Paints and resulting as-printed and thermally post-processed objects. These objects include, for the first time, structures resulting from 3D-Painting which mostly contain soda-lime glass and 45S5 bioactive glass.
机译:最近的进展已经证明了通过挤出,通过挤出的溶剂基液体材料(先前名为3D涂料)进行3D打印的能力,该液体材料几乎瞬间沉积地固化并含有大部分的固体颗粒材料。在现有的工作中,使能该方法的溶解聚合物粘合剂是高分子量的生物相容性弹性体,聚(乳酸共聚糖)酸(PLGA)。我们在这项研究中证明将该溶剂基3D涂料系统扩展到两个另外的,较昂贵,专用的聚合物,聚苯乙烯(PS)和聚环氧乙烷(PEO)。显示3D涂料内使用的聚合物粘合剂显着影响印刷结构的印刷和热性后处理行为。该开发使用户能够选择几种聚合物中的一个来赋予给定应用程序的最期望的属性。另外,基于这些新粘合剂的3D涂料不会受到可以化学降解PLGA的颗粒类别的不利影响,特别是含有大量碱金属离子的颗粒。本研究证明了在3D涂料系统中成功使用PS和PEO作为粘合剂的能力,并比较改进的3D涂料的流变,机械,微观结构和热性质,并产生了印刷和热后处理的物体。这些目的首次包括由3D涂装产生的结构,该3D涂料主要含有钠钙玻璃和45s5生物活性玻璃。

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