增材制造用工程热塑性塑料:支持功能应用的实验证据的关键视角

G. Cicala, A. Latteri, B. Del Curto, A. Lo Russo, G. Recca, S. Faré
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引用次数: 82

摘要

背景在增材制造技术中,基于细丝的技术涉及所谓的熔融沉积建模(FDM)。FDM材料目前仅限于选定数量的聚合物。本研究的重点是研究在FDM中使用高端工程聚合物的潜力。此外,还完成了对市场上可获得的材料与此处研究的材料的批判性审查。方法采用FDM对不同的工程热塑性塑料进行加工,从工业级聚碳酸酯到新型聚醚醚酮(PEEK)。在此之前,对于基于PEEK的创新长丝,进行了挤出加工。研究了每种挤压材料的机械性能(即拉伸和弯曲)。使用工业型FDM机器(Stratasys Fortus®400 mc)来充分表征印刷参数对聚碳酸酯机械性能的影响。将获得的性能与通过注射成型获得的样品进行比较。最后,还对PEEK制成的FDM样品进行了表征,并与注塑成型的FDM进行了比较。结果证实了光栅间气隙和光栅角度对印刷PC拉伸和弯曲性能的影响;与现有技术的材料相比,PEEK细丝作为新型FDM材料的潜力得到了强调。结论通过与注塑件的比较,可以更好地了解FDM在功能应用中的潜力。这项研究讨论了不同材料的利弊。最后,新型PEEK长丝的开发取得了重要成果,在需要高机械和热性能时为市场提供了一种新的解决方案。
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Engineering Thermoplastics for Additive Manufacturing: A Critical Perspective with Experimental Evidence to Support Functional Applications
Background Among additive manufacturing techniques, the filament-based technique involves what is referred to as fused deposition modeling (FDM). FDM materials are currently limited to a selected number of polymers. The present study focused on investigating the potential of using high-end engineering polymers in FDM. In addition, a critical review of the materials available on the market compared with those studied here was completed. Methods Different engineering thermoplastics, ranging from industrial grade polycarbonates to novel polyetheretherketones (PEEKs), were processed by FDM. Prior to this, for innovative filaments based on PEEK, extrusion processing was carried out. Mechanical properties (i.e., tensile and flexural) were investigated for each extruded material. An industrial-type FDM machine (Stratasys Fortus® 400 mc) was used to fully characterize the effect of printing parameters on the mechanical properties of polycarbonate. The obtained properties were compared with samples obtained by injection molding. Finally, FDM samples made of PEEK were also characterized and compared with those obtained by injection molding. Results The effect of raster to raster air gap and raster angle on tensile and flexural properties of printed PC was evidenced; the potential of PEEK filaments, as novel FDM material, was highlighted in comparison to state of the art materials. Conclusions Comparison with injection molded parts allowed to better understand FDM potential for functional applications. The study discussed pros and cons of the different materials. Finally, the development of novel PEEK filaments achieved important results offering a novel solution to the market when high mechanical and thermal properties are required.
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来源期刊
Journal of Applied Biomaterials & Biomechanics
Journal of Applied Biomaterials & Biomechanics 生物-材料科学:生物材料
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