Lobov Evgeniy, Vindokurov Ilia, Tashkinov Mikhail
Laboratory of Mechanics of Biocompatible Materials and Devices, Perm National Research Polytechnic University, 29 Komsomolsky Ave., Perm 614990, Russia.
Polymers (Basel). 2024 Apr 16;16(8):1106. doi: 10.3390/polym16081106.
This paper presents the results of experimental investigation of the mechanical characteristics of 3D-printed acrylonitrile butadiene styrene (ABS) and its modifications reinforced with different types of short-fiber fillers: carbon, glass, and basalt. Elastic modulus, tensile and bending strength, as well as fracture toughness were determined in series of mechanical tests for samples produced with different manufacturing parameters, such as nozzle diameter and infill angle. It was found that the use of ABS filament reinforced with the short fibers can significantly improve the mechanical properties of 3D-printed devices when the infill angle is oriented along the vector of the applied load. In such a case, the elastic modulus and tensile strength can be increased by more than 1.7 and 1.5 times, respectively. The use of a larger nozzle diameter led to the growth of tensile strength by an average of 12.5%. When the macroscopic load is applied along the normal to the printed layers, the addition of short fibers does not give much gain in mechanical properties compared to pure ABS, which was confirmed by both standard tensile and fracture toughness tests. The surface of the fractured samples was examined using scanning electronic microscopy, which allowed us to make conclusions on the type of defects as well as on the level of adhesion between the polymeric matrix and different types of short fibers.
本文介绍了3D打印丙烯腈丁二烯苯乙烯(ABS)及其用不同类型短纤维填料增强的改性材料的力学性能实验研究结果,这些短纤维填料包括碳、玻璃和玄武岩。针对采用不同制造参数(如喷嘴直径和填充角度)生产的样品,通过一系列力学测试确定了弹性模量、拉伸强度和弯曲强度以及断裂韧性。研究发现,当填充角度沿施加负载的矢量方向时,使用短纤维增强的ABS丝材可显著提高3D打印器件的力学性能。在这种情况下,弹性模量和拉伸强度可分别提高1.7倍和1.5倍以上。使用较大的喷嘴直径可使拉伸强度平均提高12.5%。当沿垂直于打印层的方向施加宏观负载时,与纯ABS相比,添加短纤维在力学性能方面的提升不大,标准拉伸试验和断裂韧性试验均证实了这一点。使用扫描电子显微镜对断裂样品的表面进行了检查,这使我们能够对缺陷类型以及聚合物基体与不同类型短纤维之间的粘附水平得出结论。