Stepashkin Andrey A, Mohammad Hussam, Makarova Elena D, Odintsova Yulia V, Laptev Alexander I, Tcherdyntsev Victor V
Laboratory of Functional Polymer Materials, National University of Science and Technology "MISIS", Leninskii prosp, 4, 119049 Moscow, Russia.
Polymers (Basel). 2023 Jan 22;15(3):570. doi: 10.3390/polym15030570.
Tensile deformation behavior of continuous high-strength and high-modulus single carbon fibers impregnated with a polysulfone solution was investigated. The effect of the carbon fiber type, mass fraction of the polymer, and the loading rate on the tensile strength was studied. It was observed that, whereas for high-modulus carbon fibers the magnitude of tensile strength depends significantly on the loading rate, for high-strength carbon fibers, such dependence was nearly not observed. SEM study shows that at low loading rates, elementary filaments inside the impregnated fiber are able to align themselves along the load application axis because a thermoplastic matrix can flow under the tensile stresses' force. As a result, the fiber's strength properties can be realized more effectively in the thermoplastic-based composites than in the same composite with an epoxy matrix.
研究了用聚砜溶液浸渍的连续高强度高模量单根碳纤维的拉伸变形行为。研究了碳纤维类型、聚合物质量分数和加载速率对拉伸强度的影响。结果发现,对于高模量碳纤维,拉伸强度的大小显著取决于加载速率,而对于高强度碳纤维,几乎未观察到这种依赖性。扫描电子显微镜研究表明,在低加载速率下,浸渍纤维内部的单丝能够沿加载轴排列,因为热塑性基体在拉应力作用下能够流动。因此,与具有环氧树脂基体的相同复合材料相比,基于热塑性塑料的复合材料能够更有效地实现纤维的强度性能。