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Static and fatigue behaviour of continuous fibre reinforced thermoplastic composites manufactured by fused deposition modelling technique

机译:熔融沉积建模技术制备的连续纤维增强热塑性复合材料的静疲劳性能

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摘要

In additive manufacturing (AM), the thermoplastic parts made by FDM present lack of strength and low stiffness, as required for fully functional and load-bearing parts. Due to this restriction, a new technology to reinforce with fibres the thermoplastic filaments was developed over the last years. Continuous fibre reinforced thermoplastic composites (CFRTPC) printers are elevating this technology to a whole new level in terms of efficient production and mechanical properties. Static mechanical properties, as well as fatigue behaviour, were studied since in these types of loads a wide range of engineering dynamic applications can be envisaged. Tensile tests were performed to characterise the static mechanical properties. Fatigue tests were done to analyse the durability behaviour of the FDM composite materials, and the fracture surface was analysed by SEM microscopy. The results showed that carbon fibre isotropic layers had the higher ultimate tensile stress, with 165 MPa. From fatigue tests, stress vs. number of cycles curves (S vs N-f) in the temporary life zone were obtained. It was observed from the results that specimens with nylon matrix, triangular filling pattern and matrix density of 20%, reinforced with carbon fibre at 0-degrees, showed better fatigue performance, increasing significantly the number of cycles before specimen rupture. The parameters for the Basquin's equation were found (S = A.N-f(b)), with A = 206 MPa, and b = - 0,039. Accordingly, mechanical characterization of continuous fibre reinforced thermoplastic composites was investigated, which showed the potential use as a composite material for engineering applications.
机译:在增材制造(AM)中,由FDM制造的热塑性零件缺乏强度和低刚度,这是功能齐全和承重零件所需的。由于该限制,在过去几年中开发了一种用纤维增强热塑性长丝的新技术。连续纤维增强热塑性复合材料(CFRTPC)打印机在有效生产和机械性能方面将这项技术提升到一个全新的水平。研究了静态机械性能以及疲劳性能,因为在这些类型的负载中可以设想到广泛的工程动态应用。进行拉伸测试以表征静态机械性能。进行疲劳试验以分析FDM复合材料的耐久性,并通过SEM显微镜分析断裂表面。结果表明,碳纤维各向同性层具有较高的极限拉伸应力,为165 MPa。通过疲劳测试,获得了临时寿命区内的应力与循环次数曲线(S与N-f)。从结果中可以看出,在0度下用碳纤维增强的尼龙基体,三角形填充模式和20%的基体密度的样品表现出更好的疲劳性能,显着增加了样品断裂前的循环次数。找到Basquin方程的参数(S = A.N-f(b)),其中A = 206 MPa,b =-0,039。因此,对连续纤维增强的热塑性复合材料的机械性能进行了研究,表明了其在工程应用中作为复合材料的潜在用途。

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