Doronin Fedor, Savel'ev Mikhail, Rytikov Georgy, Evdokimov Andrey, Nazarov Victor
Faculty of Printing Industry, Moscow Polytechnic University, 107023 Moscow, Russia.
Polymers (Basel). 2024 May 17;16(10):1423. doi: 10.3390/polym16101423.
A new technique of additive prototyping filament volumetric nanostructuring based on the high-speed mechanical mixing of acrylonitrile-butadiene-styrene (ABS) copolymer granules and single-walled carbon nanotube (CNT) powder (without prior dispersion in solvents) is considered. The morphological spectra of scanning electron microscopy (SEM) images of nanostructured filament slice surfaces were obtained and characterized with the original mathematical simulation. The relations of structural changes in the "ingredient-matrix" polymer system with dielectric and mechanical properties of the ABS-based filaments were established. The supplementation of 1.5 mass.% of CNT powder to the ABS filament composition leads to the tensile strength increasing from 36 ± 2 to 42 ± 2 MPa. It is shown that the greater the average biharmonic amplitude and the morphological spectrum localization radius of the slice surfaces' SEM images, the lower the electrical resistance of the corresponding nanostructured filaments. The possibility of carbon nanotube-modified filament functional layers forming using the extrusion additive prototyping technique (FFF) on the surface of plasma-chemically modified PET substrates (for the creation of load cell elements) is experimentally demonstrated.
本文考虑了一种基于丙烯腈-丁二烯-苯乙烯(ABS)共聚物颗粒与单壁碳纳米管(CNT)粉末高速机械混合(无需预先在溶剂中分散)的增材制造丝状体积纳米结构化新技术。获得了纳米结构丝状切片表面的扫描电子显微镜(SEM)图像的形态光谱,并通过原始数学模拟进行了表征。建立了“成分-基体”聚合物体系的结构变化与ABS基细丝介电性能和力学性能之间的关系。向ABS细丝组合物中添加1.5质量%的CNT粉末会导致拉伸强度从36±2MPa增加到42±2MPa。结果表明,切片表面SEM图像的平均双调和振幅和形态光谱定位半径越大,相应纳米结构细丝的电阻越低。通过实验证明了使用挤出增材制造技术(FFF)在等离子体化学改性的PET基板表面形成碳纳米管改性细丝功能层(用于制造称重传感器元件)的可能性。