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Mechanical characterization and vibrational analysis of 3D printed PETG and PETG reinforced with short carbon fiber

机译:短碳纤维的3D印刷PETG和PETG的机械表征和振动分析

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In this study, mechanical characterization and vibration analysis of 3D printed Polyethylene terephthalate glycol (PETG) reinforced with short carbon fiber (PETG+CF) have been investigated. The 3D printed PETG with and without reinforcement was made based on the fused deposition method. The reinforcing effect on tensile properties evaluated experimentally using dumbbell specimen as per ASTM standards. It is observed that the reinforced PETG+CF samples exhibit better mechanical properties. The modulus of elasticity of reinforced improved by 29% and ultimate strength improved by 12% compared with PETG. Fractured surfaces observed after the tensile test using Field Emission Scanning Electron Microscope (FESEM). Severe flow lines were observed in PETG due to ductile in nature. In PETG+CF the fiber is aligned with the axis of loading and distributed evenly could be the reason for improved properties. Further, 3D printed beams were fabricated to study the free vibration analysis. It is observed that the natural frequency improved by 18% in PETG+CF samples compared to PETG.
机译:在该研究中,研究了用短碳纤维(PETG + CF)加强3D印刷聚对苯二甲酸乙二醇酯(PETG)的机械表征和振动分析。基于熔融沉积方法制造3D印刷PETG,具有和不具有增强。根据ASTM标准使用哑铃样品进行实验评估的拉伸性能的增强效果。观察到增强PETG + CF样品具有更好的机械性能。与PETG相比,增强增强的弹性模量增加了29%和最终强度。使用场发射扫描电子显微镜(FESEM)在拉伸试验后观察到的裂缝表面。由于本质上的延性,PETG中观察到严重的流动线。在PETG + CF中,纤维与装载轴线对齐,并且均匀分布可能是改善性质的原因。此外,制造了3D印刷光束以研究自由振动分析。观察到与PETG相比,Petg + CF样品中的自然频率在PETG + CF样品中提高了18%。

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