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Investigation of Closed-Loop Manufacturing with Acrylonitrile Butadiene Styrene over Multiple Generations Using Additive Manufacturing

机译:用添加剂制造研究多一代丙烯腈丁二烯苯乙烯的闭环制造

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摘要

This study examines the changes in physical and mechanical properties of acrylonitrile butadiene styrene (ABS) when manufactured using fused filament fabrication (FFF) 3D printing across multiple recycling phases. Tests were carried out initially using virgin ABS, which subsequently underwent two successive closed-loop filament extrusion and 3D printing phases. For each endpoint manufacturing phase, samples were examined to monitor the changes in thermal characteristics, mechanical properties, and polymer degradation. It was found that there was a series of physical changes of the polymer, which resulted in reduced melt flow, increased glass transition temperature, and the generation of carbonyl groups, which may be attributed to the thermal oxidative breakdown of both styrene acrylonitrile (SAN) and butadiene components of ABS. The recycled polymer also showed a reduction in both tensile and compressive strengths compared to the virgin material. However, compared to one-time recycled ABS, two-times recycled ABS showed increased strength, implying that increased recycle state of the polymer may be advantageous with respect to mechanical properties and potential manufacturing applications. This study ultimately demonstrates the potential to leverage additive manufacturing (AM) toward a closed-loop manufacturing paradigm by using waste ABS across several life cycles.
机译:该研究在使用跨多个回收相的熔融灯丝制造(FFF)3D印刷制造时,检查丙烯腈丁二烯苯乙烯(ABS)的物理和力学性质的变化。最初使用原始ABS进行测试,其随后接受了两个连续的闭环丝挤出和3D打印阶段。对于每个端点的制造阶段,检查样品以监测热特性,机械性能和聚合物降解的变化。结果发现,聚合物存在一系列物理变化,导致熔体流动降低,玻璃化转变温度增加,以及羰基的产生,这可能归因于苯乙烯丙烯腈(SAN)的热氧化崩解ABS的丁二烯组分。与原始材料相比,再循环聚合物还显示出拉伸和抗压强度的降低。然而,与一次性再循环ABS相比,两次再循环ABS显示出增加的强度,这意味着在机械性能和潜在的制造应用方面可能是有利的。本研究最终证明了通过使用几个生命周期的废物腹部来利用添加剂制造(AM)朝向闭环制造范式的潜力。

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