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Study on Surface Properties of Aramid Fiber Modified in Supercritical Carbon Dioxide by Glycidyl-POSS

机译:缩水甘油基POSS改性超临界二氧化碳改性芳纶纤维的表面性能研究

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摘要

The outstanding diffusivity and permeability of supercritical carbon dioxide (scCO2) are extremely beneficial for grafting reaction. In this work, aramid fibers (AF) are modified in scCO2 by glycidyl-polyhedral oliomeric silsesquioxane (POSS) with 2-ethyl-4-methylimidazole (2E4MZ) on the basis of cleaning with acetone. The surface morphology and chemical structure of the modified AF were measured and characterized by Fourier transform infrared spectroscopy (FTIR), X-ray photoelectron spectroscopy (XPS), Scanning electron microscope (SEM), Thermogravimetric (TG), and Atomic force microscope (AFM). The interfacial shear strength (IFSS) was measured by a micro-bond pull-out test, then the modified AF/EP composites were prepared and the interlaminar shear strength (ILSS) was characterized. Research has shown that some of the glycidyl-POSS molecular chains permeated into the surface of the fiber and grafted onto the surface of the AF after modification, and the other glycidyl-POSS self-assembled on the surface of the fiber. XPS indicated the introduction of C–O and –COO–, which confirmed the existence of chemical reactions between AF and glycidyl-POSS. AFM and SEM images revealed that 2E4MZ, not only promoted the grafting reaction of glycidyl-POSS, but also intensified the self-assembly of glycidyl-POSS, both of which increased the roughness of the fiber. A monofilament tensile test and micro-bond pull-out test showed that there was a negative effect on the tensile strength after scCO2 processing. The tensile strength of modified AF, with glycidyl-POSS, increased the highest strength of 25.7 cN dtex−1, which was 8% higher than that of pristine AF. The improvement of ILS roughness and the polar chemical groups produced in grafting reaction. These results indicated that AF, treated in scCO2, with glycidyl-POSS, which is a suitable way of fiber modification, can significantly improve the surface adhesion of AF reinforced composites.
机译:超临界二氧化碳(scCO2)出色的扩散性和渗透性对于接枝反应极为有利。在这项工作中,在丙酮清洗的基础上,缩水甘油基多面体低聚倍半硅氧烷(POSS)与2-乙基-4-甲基咪唑(2E4MZ)在scCO2中对芳纶纤维(AF)进行了改性。通过傅里叶变换红外光谱(FTIR),X射线光电子能谱(XPS),扫描电子显微镜(SEM),热重分析(TG)和原子力显微镜(AFM)对改性后的AF的表面形态和化学结构进行了测量和表征)。通过微粘结拉拔试验测量界面剪切强度(IFSS),然后制备改性的AF / EP复合材料,并表征层间剪切强度(ILSS)。研究表明,修饰后,一些缩水甘油基-POSS分子链渗透到纤维表面并接枝到AF的表面上,而其他缩水甘油基-POSS分子链则自组装在纤维表面上。 XPS表明引入了C–O和–COO–,这证实了AF和缩水甘油基POSS之间存在化学反应。 AFM和SEM图像表明2E4MZ不仅促进了缩水甘油基POSS的接枝反应,而且增强了缩水甘油基POSS的自组装,这两者均增加了纤维的粗糙度。单丝拉伸试验和微粘合拉出试验表明,在scCO 2处理后,对拉伸强度有负面影响。修饰的AF与缩水甘油-POSS的抗张强度使最高强度提高到25.7 cN dtex -1 ,比原始AF高8%。 ILS粗糙度和接枝反应中产生的极性化学基团的改善。这些结果表明,在scCO2中用缩水甘油基-POSS处理的AF是一种合适的纤维改性方法,可以显着改善AF增强复合材料的表面附着力。

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