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Fabrication and characterization of hollow glass beads-filled thermoplastic composite filament developed for material extrusion additive manufacturing

机译:中空玻璃珠粒填充热塑性复合长丝的制造与表征,用于材料挤出添加剂制造

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摘要

This paper explores the characteristics of a new lightweight thermoplastic composite filament filled with hollow glass beads developed for material extrusion additive manufacturing. Compounding experiments, which mix hollow glass beads with neat acrylonitrile butadiene styrene matrix, were conducted using a twin-screw extruder to prepare composite filaments. Two different types of hollow glass beads were selected as the fillers of composite filament due to their varying densities. In order to characterize the final components produced using composite filament, various specimens were fabricated by a material extrusion additive manufacturing process. In order to characterize the physical properties of the specimens, measurements of density and flexural testing were performed. To identify the thermomechanical effects of hollow glass beads on the neat acrylonitrile butadiene styrene matrix, thermal diffusivity and specific heat were obtained. Consequently, the thermal conductivity of the specimen was derived from its density, thermal diffusivity, and specific heat capacity. The microstructures of the fractured interfaces of the specimens were also observed by scanning electron microscopy. The experimental results revealed that most of the hollow glass beads survived, thus bringing about lighter weight (lower density) and thermal insulation (lower thermal conductivity), which can be useful for numerous potential applications.
机译:本文探讨了填充有用于材料挤出添加剂制造业的空心玻璃珠粒的新型轻质热塑性复合灯丝的特点。使用双螺杆挤出机进行混合中空玻璃珠与纯丙烯腈丁二烯基质的复合实验,以制备复合细丝。选择两种不同类型的中空玻璃珠作为复合长丝的填料由于它们的不同密度。为了表征使用复合灯丝产生的最终组分,通过材料挤出添加剂制造方法制造各种样品。为了表征样本的物理性质,进行密度和弯曲测试的测量。为了识别中空玻璃珠对整齐的丙烯腈丁二烯苯乙烯基质,获得热扩散和特异性热量的热机械效应。因此,试样的导热率来自其密度,热扩散性和特定的热容量。还通过扫描电子显微镜观察标本的裂缝界面的微观结构。实验结果表明,大多数中空玻璃珠子存活,从而引起较轻的重量(更低的密度)和绝热(较低的导热率),这对于许多潜在的应用有用。

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