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Shrinkage and Warpage Optimization of Expanded-Perlite-Filled Polypropylene Composites in Extrusion-Based Additive Manufacturing

机译:收缩和翘曲优化Expanded-Perlite-Filled聚丙烯复合材料在Extrusion-Based加法制造

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摘要

A major challenge in extrusion-based additive manufacturing is the lack of commercially available materials compared to those in well-established processes like injection molding or extrusion. This study aims at expanding the material database by evaluating the feasibility of polypropylene, which is one of the most common and technologically relevant semicrystalline polymers. Expanded-perlite-filled polypropylene and ternary blends with amorphous polyolefins are evaluated to establish an understanding of their processability and their printability. A detailed study on the shrinkage behavior, as well as on the thermal, mechanical, morphological, and warpage properties is performed. It is found that smaller sized fillers result in a tremendous warpage and shrinkage reduction and concurrently improved mechanical properties than compounds filled with bigger sized fillers. Based on the optimal properties profile, a ternary blend that can overcome the shrinkage and warpage of printed parts is suggested.
机译:一个重大的挑战在extrusion-based添加剂制造业是缺乏商业可用的材料相比像注塑的过程或挤压。材料数据库通过评估的可行性聚丙烯,这是最常见的一种和技术相关的半晶质聚合物。三元混合和无定型聚烯烃评价建立一个对他们的理解加工性能和印刷适性。研究收缩行为,以及热、机械、形态和弯曲性能。小尺寸的填料导致一个巨大的弯曲和减少收缩和并发改善力学性能比化合物充满了大尺寸的填料。最优属性剖面,三元混合可以克服的收缩和翘曲印刷吗部分建议。

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