3D printing of continuous metal fiber-reinforced recycled ABS with varying fiber loading

IF 3.4 4区 工程技术 Q1 ENGINEERING, MECHANICAL Rapid Prototyping Journal Pub Date : 2024-07-18 DOI:10.1108/rpj-02-2024-0087
Vishal Mishra, Jitendra Kumar, S. Negi, Simanchal Kar
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Abstract

Purpose The current study aims to develop a 3D-printed continuous metal fiber-reinforced recycled thermoplastic composite using an in-nozzle impregnation technique. Design/methodology/approach Recycled acrylonitrile butadiene styrene (RABS) plastic was blended with virgin ABS (VABS) plastic in a ratio of 60:40 weight proportion to develop a 3D printing filament that was used as a matrix material, while post-used continuous brass wire (CBW) was used as a reinforcement. 3D printing was done by using a self-customized print head to fabricate the flexural, compression and interlaminar shear stress (ILSS) test samples to evaluate the bending, compressive and ILSS properties of the build samples and compared with VABS and RABS-B samples. Moreover, the physical properties of the samples were also analyzed. Findings Upon three-point bend, compression and ILSS testing, it was found that RABS-B/CBW composite 3D printed with 0.7 mm layer width exhibited a notable improvement in maximum flexural load (Lmax), flexural stress at maximum load (sfmax), flex modulus (Ef) and work of fracture (WOF), compression modulus (Ec) and ILSS properties by 30.5%, 49.6%, 88.4% 13.8, 21.6% and 30.3% respectively. Originality/value Limited research has been conducted on the in-nozzle impregnation technique for 3D printing metal fiber-reinforced recycled thermoplastic composites. Adopting this method holds the potential to create durable and high-strength sustainable composites suitable for engineering applications, thereby diminishing dependence on virgin materials.
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连续金属纤维增强再生 ABS 的 3D 打印,纤维负载量各不相同
设计/方法/途径将回收的丙烯腈-丁二烯-苯乙烯(RABS)塑料与原生 ABS(VABS)塑料按 60:40 的重量比例混合,开发出一种 3D 打印长丝,用作基体材料,而使用后的连续黄铜丝(CBW)则用作增强材料。使用自定制的打印头进行三维打印,制造出弯曲、压缩和层间剪切应力(ILSS)测试样品,以评估构建样品的弯曲、压缩和 ILSS 性能,并与 VABS 和 RABS-B 样品进行比较。结果在三点弯曲、压缩和 ILSS 测试中发现,层宽为 0.7 mm 的 RABS-B/CBW 复合材料 3D 打印件在最大弯曲载荷 (Lmax)、最大载荷下的弯曲应力 (sfmax)、弯曲模量 (Ef) 和断裂功 (WOF)、压缩模量 (Ec) 和 ILSS 性能方面都有明显改善,分别提高了 30.5% 、49.6%、88.6%。原创性/价值关于喷嘴内浸渍技术用于 3D 打印金属纤维增强再生热塑性复合材料的研究还很有限。采用这种方法有可能制造出适用于工程应用的耐用高强度可持续复合材料,从而减少对原始材料的依赖。
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来源期刊
Rapid Prototyping Journal
Rapid Prototyping Journal 工程技术-材料科学:综合
CiteScore
8.30
自引率
10.30%
发文量
137
审稿时长
4.6 months
期刊介绍: Rapid Prototyping Journal concentrates on development in a manufacturing environment but covers applications in other areas, such as medicine and construction. All papers published in this field are scattered over a wide range of international publications, none of which actually specializes in this particular discipline, this journal is a vital resource for anyone involved in additive manufacturing. It draws together important refereed papers on all aspects of AM from distinguished sources all over the world, to give a truly international perspective on this dynamic and exciting area. -Benchmarking – certification and qualification in AM- Mass customisation in AM- Design for AM- Materials aspects- Reviews of processes/applications- CAD and other software aspects- Enhancement of existing processes- Integration with design process- Management implications- New AM processes- Novel applications of AM parts- AM for tooling- Medical applications- Reverse engineering in relation to AM- Additive & Subtractive hybrid manufacturing- Industrialisation
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