Determining the best exposure volumetric energy density for Diapow PP MF polypropylene from a study of its different dynamic mechanical properties

Fredrick Mulinge Mwania, Maina Maringa, Jacobus van der Walt
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Abstract

The popularity of additively manufacturing polymers using the powder bed fusion technique, particularly polymer laser sintering has seen an unprecedented increase. As a result, numerous studies have been conducted to determine the impact of different process parameters on the physical and mechanical properties of printed parts. In addition, extensive work has also been done to optimise the process parameters to ensure that printed parts possess high qualities. However, most of these studies have only focused on the static mechanical and physical properties. In this regard, the current study aims to determine the best exposure parameters for Diapow PP MF polypropylene for different dynamic mechanical properties. It was established that the loss and storage moduli of the Diapow PP MF polypropylene material might both be subject to the volumetric laser energy density. The best process parameter set of laser power, scanning speed, layer thickness, and hatch distance for Diapow PP MF to produce printed parts with low damping and high static load carrying capacity, the respective best process parameter set is 32.9 W, 3000 mm/s, 0.15 mm, and 0.25 mm (laser energy density = 0.290 Jmm−3). Conversely, for high damping at room temperature, the respective best process parameter set is 32.9 W, 5000 mm/s, 0.15 mm, 0.25 mm (laser energy density = 0.146 Jmm−3) for laser power, scanning speed, layer thickness, and hatch distance, respectively.

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通过研究 Diapow PP MF 聚丙烯的不同动态机械性能,确定其最佳暴露体积能量密度
使用粉末床熔融技术,特别是聚合物激光烧结技术进行聚合物添加制造的普及程度空前提高。因此,人们开展了大量研究,以确定不同工艺参数对打印部件物理和机械性能的影响。此外,还开展了大量工作来优化工艺参数,以确保打印部件具有高质量。然而,这些研究大多只关注静态机械和物理特性。因此,本研究旨在确定 Diapow PP MF 聚丙烯的最佳曝光参数,以获得不同的动态机械性能。研究发现,Diapow PP MF 聚丙烯材料的损耗模量和储存模量都可能受体积激光能量密度的影响。Diapow PP MF 的最佳激光功率、扫描速度、层厚和填充距离工艺参数集分别为 32.9 W、3000 mm/s、0.15 mm 和 0.25 mm(激光能量密度 = 0.290 Jmm-3)。相反,对于室温下的高阻尼,激光功率、扫描速度、层厚度和舱口距离的最佳工艺参数设置分别为 32.9 W、5000 mm/s、0.15 mm 和 0.25 mm(激光能量密度 = 0.146 Jmm-3)。
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