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Tensile mechanical properties of composite materials with continuous fiber produced by additive manufacturing

机译:复合材料的拉伸力学性能,具有加油制造生产的连续纤维

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Additive manufacturing of composites parts reinforced with continuous fibers is emerging as a versatile process, capable of producing complex computer-aided design models by fabricating parts adding material layer by layer. Fused deposition modelling using polymeric materials has been used to produce prototypes, with the constraint of the strength of the material. Recently, the use of continuous fiber reinforcement has provided an alternative for the production of load-bearing functional parts. Current international standards for the characterization of composite materials from mechanical tests are established for parts manufactured by conventional methods, such as, manual molding, injection or coatings. Moreover, the standards do not specify procedures for composite materials produced by additive manufacturing. The objective of this work is to evaluate the performance of the reinforced composite materials produced by additive manufacturing for tensile tests under ISO and ASTM standards, and compare the results in terms of the topology of the material configuration. Average values of the tensile strength for composite materials having a triangular nylon matrix reinforced with fiberglass were obtained within the range of 205 MPa to 234 MPa, with deformations no greater than 0.020 mm. These values are higher than the strength provided by additive manufacturing using materials such as polylactic acid and acrylonitrile butadiene styrene.
机译:复合材料的添加剂制造用连续纤维增强的零件是一种通用的过程,能够通过制造零件通过层添加材料层来产生复杂的计算机辅助设计模型。使用聚合物材料的熔融沉积建模已被用于生产原型,其限制材料的强度。最近,使用连续纤维增强件为生产承载功能部件的生产提供了替代方案。目前,用于从机械试验表征复合材料的国际标准,用于通过常规方法制造的零件,例如手动模塑,注射或涂层。此外,标准不指定由添加剂制造产生的复合材料的程序。这项工作的目的是评估通过添加剂制造生产的增强复合材料的性能,用于在ISO和ASTM标准下的拉伸试验,并在材料构造拓扑方面进行比较结果。在205MPa至234MPa的范围内得到具有玻璃纤维的三角尼龙基质的复合材料的平均值的平均值,变形不大于0.020mm。这些值高于添加剂制造提供的强度,所述材料使用诸如聚乳酸和丙烯腈丁二烯苯乙烯的材料。

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