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Additive manufacturing of continuous fibre reinforced thermoplastic composites using fused deposition modelling: Effect of process parameters on mechanical properties

机译:使用熔融沉积建模的连续纤维增强热塑性复合材料的增材制造:工艺参数对机械性能的影响

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Continuous Fibre Reinforced Thermoplastic Composites (CFRTPCs) are becoming alternative materials to replace the conventional thermosetting polymers and metals due to excellent mechanical performance, recycling and potential used in lightweight structures. Fused deposition modelling (FDM) is a promising additive manufacturing technology and an alternative of conventional processes for the fabrication of CFRTPCs due to its ability to build functional parts having complex geometries. The mechanical properties of a built part depend on several process parameters. The aim of this study is to characterize the effect of build orientation, layer thickness and fibre volume content on the mechanical performance of 3D printed continuous fibre reinforced composites components manufactured by a desktop 3D printer. Tensile and three-point bending tests are carried out to determine the mechanical response of the printed specimens. SEM images of fractured surfaces are evaluated to determine the effects of process parameters on failure modes.It is observed that the effect of layer thickness of nylon samples on the mechanical performance is marginally significant. In addition, continuous fibre reinforced samples show higher strength and stiffness values than unreinforced ones. The results show that carbon fibre reinforced composites exhibit the best mechanical performance with higher stiffness and flat samples exhibit higher values of strength and stiffness than on-edge samples. Additionally, the results show that strength and stiffness increase as fibre volume content increases in most cases but, conversely, the level of increment in mechanical performance is moderate with continued rise in fibre content, particularly in the case of Kevlar (R) and glass fibres, due to weak bonding between the fibreylon layers as well as the presence of increased levels of defects. Finally, the practicality of the results is assessed by testing an evaluation structure.
机译:连续纤维增强热塑性复合材料(CFRTPC)成为替代常规热固性聚合物和金属的替代材料,原因是其出色的机械性能,可回收性以及在轻型结构中的潜力。熔融沉积建模(FDM)是一种有前途的增材制造技术,并且是制造CFRTPC的常规方法的替代方法,因为它能够构建具有复杂几何形状的功能部件。零件的机械性能取决于几个工艺参数。这项研究的目的是表征构建方向,层厚度和纤维体积含量对台式3D打印机制造的3D打印连续纤维增强复合材料组件的机械性能的影响。进行拉伸和三点弯曲测试以确定印刷样品的机械响应。评估断裂表面的SEM图像以确定工艺参数对破坏模式的影响。观察到尼龙样品的层厚对机械性能的影响略显着。另外,连续纤维增强的样品比未增强的样品显示出更高的强度和刚度值。结果表明,碳纤维增强复合材料表现出最好的机械性能,具有更高的刚度,而扁平样品则比边缘样品具有更高的强度和刚度值。此外,结果表明,在大多数情况下,强度和刚度随纤维体积含量的增加而增加,但是相反,机械性能的增加水平随着纤维含量的持续增加而处于中等水平,尤其是在凯夫拉尔(R)和玻璃纤维的情况下,是由于纤维/尼龙层之间的结合力较弱以及缺陷水平增加所致。最后,通过测试评估结构来评估结果的实用性。

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