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Microstructural characterization and mechanical properties of functionally graded PA12/HDPE parts by selective laser sintering

机译:通过选择性激光烧结对功能梯度PA12 / HDPE零件进行显微组织表征和力学性能

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摘要

The use of selective laser sintering in the production of functional gradient materials offers advantages, as freeform construction and localized control of the composition and process parameters, compared to other rapid manufacturing processes. In this work, selective laser sintering was used for manufacturing three-dimensional parts in functionally graded polymer blends based on polyamide 12 and high-density polyethylene with gradient composition in two directions (Y and Z). Test specimens were prepared in PA12/HDPE ratios of 0/100, 20/80, 50/50, 80/20 and 100/0 (w/w). These specimens were assessed in terms of density, microstructure by scanning electron microscopy and polarized light microscopy and mechanical performance by DMA. The sintered binary blend systems with composition gradient showed microstructure and properties variation as function of the blend compositions. The results demonstrated the potential of selective laser sintering to manufacture advanced polymeric functional gradient material parts.
机译:与其他快速制造工艺相比,在功能梯度材料的生产中使用选择性激光烧结具有优势,因为自由形式的构造以及成分和工艺参数的局部控制。在这项工作中,选择性激光烧结被用于制造功能梯度聚合物共混物中的三维零件,该共混物基于聚酰胺12和高密度聚乙烯,在两个方向(Y和Z)上具有梯度成分。以0 / 100、20 / 80、50 / 50、80 / 20和100/0(w / w)的PA12 / HDPE比制备试样。通过扫描电子显微镜和偏振光显微镜对这些样品的密度,微观结构以及通过DMA的机械性能进行了评估。具有组成梯度的烧结二元共混物系统显示出微结构和性质随共混物组成的变化。结果证明了选择性激光烧结制造高级聚合物功能梯度材料零件的潜力。

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