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Investigation of the Mechanical Properties of Acrylonitrile Butadiene Styrene (ABS)-Nanosilica Reinforced Naanccomposites for Fused Filament Fabrication 3D Printing

机译:丙烯腈丁二烯苯乙烯(ABS) - 纳硅胶增强Naanccom应用熔融长丝制造3D印刷的力学性能研究

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To expand the capabilities of 3D printed structures generated from commercial thermoplastic printers, this paper presents the fabrication of polymer filaments that contain inorganic nanoparticles. Nanosilica was dispersed ultrasonically into acrylonitrile butadiene styrene (ABS) and extruded into filaments for fused filament fabrication (FFF) 3D printing. The produced filaments had nanosilica compositions of 5% and 10%wt. A dynamic ultra-micro hardness tester was used in order to characterize the mechanical behavior of the filaments. Also, 3D printed tensile specimens were used to obtain the strain-strain curves and monitor the tensile strength of such structures. The morphology of the nanosilica/ABS composite was studied with a scanning electron microscope (SEM). The results from the dynamic ultra-micro hardness tester reveal that the incorporation of nanosilica particles increases the stiffness and hardness of the ABS material especially in the case of 10%wt concentration. However, for such concentration 3D printing was not possible due to the severe embrittlement of the material. 3D printed structures produced in the form of tensile specimens from the 5%wt nanocomposites display a higher breaking point stress and stiffness than those printed from the pure ABS polymer.
机译:为了扩展来自商业热塑性打印机产生的3D印刷结构的能力,本文介绍了含有无机纳米颗粒的聚合物长丝的制造。纳米硅酸盐超声波分散到丙烯腈丁二烯苯乙烯(ABS)中,并挤出成熔丝丝制造(FFF)3D印刷的长丝。生产的长丝具有5%和10%wt的纳米硅组合物。使用动态超微量硬度测试仪以表征长丝的机械性能。而且,3D印刷的拉伸试样用于获得应变株曲线并监测这种结构的拉伸强度。用扫描电子显微镜(SEM)研究了纳米碱/ ABS复合材料的形态。动态超微硬度测试仪的结果表明,纳米硅颗粒的掺入增加了ABS材料的刚度和硬度,特别是在10%wt浓度的情况下。然而,由于材料的严重脆化,因此不可能为这种浓度3D打印。 3D以来自5%WT纳米复合材料的拉伸试样形式产生的3D印刷结构显示比从纯ABS聚合物印刷的那些更高的断裂点应力和刚度。

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