Dong Jie, Wang Chunhai, Fan Xingyu, Wei Liang, Shen Guodong, Sun Runjun, Li Rong
School of Textile Science and Engineering, Xi'an Polytechnic University, Xi'an 710048, China.
Key Laboratory of Functional Textile Material and Product (Xi'an Polytechnic University), Ministry of Education, Xi'an 710048, China.
Nanomaterials (Basel). 2022 Jun 25;12(13):2182. doi: 10.3390/nano12132182.
Rubber-based conductive composites are widely used in sensors, wearable electronic devices and electromagnetic fields. In this work, by using the two-roll milling and hot-pressing process, chopped glass fiber (CGF) and graphene (Gr) as additives, and acrtlinitrile-brtadiene rubber (NBR) as the matrix, a series of anisotropic flexible rubber-based composites were prepared. Using this preparation method, both CGF and Gr additives were directly arranged in the material. When the content of CGF was 1 wt.%, the tensile strength in both the T and W directions of the material reached 27 MPa and 28 MPa, respectively. When the content of CGF was fixed at 1 wt.% and Gr was 1.5 wt.% and the elongation at break in both directions reached 328% and 347%. By focusing on the comparison of the dielectric differences in the T and W directions in the X band, it was found that the directional arrangement of the additives led to differences in the dielectric properties.
橡胶基导电复合材料广泛应用于传感器、可穿戴电子设备和电磁场领域。在本工作中,通过双辊研磨和热压工艺,以短切玻璃纤维(CGF)和石墨烯(Gr)为添加剂,丙烯腈-丁二烯橡胶(NBR)为基体,制备了一系列各向异性的柔性橡胶基复合材料。采用这种制备方法,CGF和Gr添加剂均直接排列在材料中。当CGF含量为1 wt.%时,材料在T方向和W方向的拉伸强度分别达到27 MPa和28 MPa。当CGF含量固定为1 wt.%且Gr为1.5 wt.%时,两个方向的断裂伸长率分别达到328%和347%。通过聚焦于X波段T方向和W方向的介电差异比较,发现添加剂的定向排列导致了介电性能的差异。