Formation of spherical micron-sized polyamide particles for additive manufacturing via liquid-liquid phase separation

M. A. Dechet, Stephanie Kloos, W. Peukert, Jochen Schmidt
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Abstract

Selective laser sintering (SLS) is an additive manufacturing (AM) process that yields excellent part qualities with good mechanical properties. The SLS process employs micron-sized polymer particles, which are selectively fused by a laser. While there seem to be hardly any boundaries regarding design, there are quite some restrictions concerning the variety of commercially available SLS materials. With a market share of roughly 90%, polyamide 12 (PA12) is currently the most widely used polymer material for SLS. In order to increase the understanding of the precipitation based manufacturing process for polyamide powders, production of polyamide 11 powders via precipitation in ethanol was investigated. The polymer particles need to be optimized regarding size, shape, flowability and packing characteristics. In this contribution particle manufacturing via liquid-liquid phase separation is discussed. Bulk polymer material of polyamide 11 is directly converted to spherical micron sized particles in a single unit operation. The produced particles are characterized regarding their size and morphology. Furthermore, also structural characteristics, crystallinity and flowability are analyzed and the product properties are correlated with process parameters. We discuss the potential of this process for the production of novel, easy-to-handle polymer particle systems for SLS.
通过液-液相分离形成用于增材制造的微米级球形聚酰胺颗粒
选择性激光烧结(SLS)是一种增材制造(AM)工艺,具有优异的零件质量和良好的机械性能。SLS工艺采用微米大小的聚合物颗粒,通过激光选择性融合。虽然在设计上似乎几乎没有任何界限,但在商业上可用的SLS材料的种类上却有相当多的限制。聚酰胺12 (PA12)是目前应用最广泛的SLS聚合物材料,市场份额约为90%。为了进一步了解聚酰胺粉末的沉淀法制备工艺,对乙醇沉淀法制备聚酰胺11粉末进行了研究。聚合物颗粒需要在尺寸、形状、流动性和填充特性方面进行优化。本文讨论了通过液-液相分离制造颗粒的方法。聚酰胺11的大块聚合物材料在单个单元操作中直接转化为微米大小的球形颗粒。所产生的颗粒在其大小和形态方面具有特征。分析了产品的结构特性、结晶度和流动性,并对产品性能与工艺参数的关系进行了分析。我们讨论了该工艺在生产用于SLS的新型易于处理的聚合物颗粒系统方面的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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