INVESTIGATING PRINTABILITY AND MECHANICAL PERFORMANCE OF 3D PRINTED RECYCLED PET WITH PLA AND TPU HYBRID ADDITIVES

Kutay Çava, M. Aslan
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Abstract

This paper investigates the printability and mechanical performance of 3D printed recycled PET (rPET) filaments with the incorporation of PLA and TPU blend additives. The study focuses on evaluating the tensile, flexural, and impact properties of the resulting hybrid blends. Tensile testing revealed that the neat rPET specimens exhibited average maximum tensile strength of 51.4 MPa and a tensile elasticity modulus of 3.63 GPa. The addition of PLA and TPU additives slightly reduced the tensile strength and modulus. Regarding flexural properties, the rPET specimens demonstrated an average maximum flexural stress of 43.4 MPa, indicating their ability to withstand bending forces without significant deformation. The addition of the hybrid PLA and TPU additives led to a slight reduction in flexural performance. However, the specimens still exhibited acceptable flexural strength and modulus. Furthermore, the impact test results showed a significant improvement in impact strength for the hybrid blend, with the TPU/PLA (rPET blend) exhibiting a remarkable increase (%187 and 36%) compared to the commercial and neat rPET specimens, respectively. These findings suggest that the hybrid combination of PLA and TPU additives contributes to the microstructural integrity and printability of 3D printed objects made from recycled PET filaments, thereby contributing to the advancement of sustainable manufacturing practices.
研究PLA和tpu混合添加剂3d打印再生pet的打印性能和机械性能
本文研究了PLA和TPU共混添加剂对3D打印再生PET长丝的打印性能和力学性能的影响。该研究的重点是评估所得到的混合共混物的拉伸、弯曲和冲击性能。拉伸试验表明,整齐rPET试样的平均最大拉伸强度为51.4 MPa,拉伸弹性模量为3.63 GPa。PLA和TPU添加剂的加入略微降低了拉伸强度和模量。在弯曲性能方面,rPET试件的平均最大弯曲应力为43.4 MPa,表明其能够承受弯曲力而不会产生明显的变形。混合PLA和TPU添加剂的加入导致弯曲性能略有降低。然而,试件仍然表现出可接受的抗弯强度和模量。此外,冲击试验结果表明,混合共混物的冲击强度有显著提高,TPU/PLA (rPET共混物)的冲击强度分别比商用和纯rPET样品显著提高(%187和36%)。这些发现表明,PLA和TPU添加剂的混合组合有助于由回收PET长丝制成的3D打印物体的微观结构完整性和可打印性,从而有助于推进可持续制造实践。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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