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首页> 外文期刊>Composites Science and Technology >Fabrication of carbon fiber grafted with acyl chloride functionalized multi-walled carbon nanotubes for mechanical reinforcement of nylon 6,6
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Fabrication of carbon fiber grafted with acyl chloride functionalized multi-walled carbon nanotubes for mechanical reinforcement of nylon 6,6

机译:用酰氯官能化多壁碳纳米管嫁接碳纤维的制造,用于尼龙的机械加固6,6

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摘要

Carbon fiber (CF) grafted with acyl chloride functionalized multi-walled carbon nanotube (MWCNT), or (MWCNT-CF), was prepared by the reaction of aminopyrene (AP) adsorbed on CF (CF-AP) and 1-pyrenebutyric chloride (PBC) adsorbed on MWCNT (MWCNT-PBC). It is introduced that four kinds of PA66 composites, containing single incorporation of pristine CF, two-component incorporation of pristine CF and pristine MWCNT, two-component incorporation of PBC adsorbed CF (PBC-CF) and MWCNT-PBC, and single incorporation of MWCNT-CF were fabricated by melt extrusion, and their fatigue life and tensile and interfacial properties were explored. The residual PBC on the MWCNT of MWCNT-CF was reacted with the amine end group of PA66 during the melt extrusion process to produce PA66 grafted MWCNT-CF. When the content of total carbon fillers was fixed, PA66/MWCNT-CF and PA66/CF-PBC/MWCNT-PBC composites exhibited better fatigue life and tensile strength than PA66/pristine CF/pristine MWCNT composites owing to improved interfacial adhesion between PA66 and carbon fillers. Among the composites examined, the highest fatigue life and tensile strength of the PA66/MWCNT-CF composite were owing to the hierarchical structure of MWCNT-CF and optimal interfacial adhesion caused by chain entanglement between the PA66 grafted to MWCNT-CF and matrix PA66.
机译:用酰氯官能化的多壁碳纳米管(MWCNT)或(MWCNT-CF)接枝的碳纤维(CF)通过在CF(CF-AP)和1-芘丁基氯(1-芘丁基)上的氨基芘(AP)反应制备( PBC)吸附在MWCNT(MWCNT-PBC)上。介绍了四种PA66复合材料,含有单一掺入原始CF,原始CF和原始MWCNT的双组分掺入,PBC吸附的CF(PBC-CF)和MWCNT-PBC的双组分掺入,以及单一掺入通过熔融挤出制造MWCNT-CF,探讨了它们的疲劳寿命和拉伸和界面性质。在熔融挤出过程中,MWCNT-CF的MWCNT MWCNT上的残留PBC与胺端组66反应,以产生PA66接枝MWCNT-CF。当固定总碳填料的含量时,由于PA66与PA66和PA66之间的界面粘合改善,PA66 / MWCNT-CF和PA66 / CF-PBC / MWCNT-PBC复合材料表现出比PA66 /原始CF /原始MWCNT复合材料更好的疲劳寿命和拉伸强度。碳填料。在检查的复合材料中,PA66 / MWCNT-CF复合材料的最高疲劳寿命和拉伸强度由于MWCNT-CF的分层结构和由嫁接到MWCNT-CF和基质PA66的PA66之间的链缠结引起的最佳界面粘附。

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