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Rubber microfibers with morphological stability prepared through combination of electrospinning and in-situ chemical crosslinking

机译:通过静电纺丝和原位化学交联的组合制备具有形态稳定性的橡胶微纤维

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Rubber microfibers with morphological stability were prepared through combination of electrospinning and in-situ chemical crosslinking. The rubbers, including polybutadiene rubber (BR), butyl rubber (IIR), and silicon rubber (SiR) were first kneaded on a two-roll mill and dissolved in tetrahydrofuran (THF) to form stable solutions. Prior to electrospinning, camphorquinone (CQ) for BR and IIR, while two-part platinum catalyst for addition curing of SiR, were added into the solutions for in-situ chemical crosslinking. The morphology and crosslinking density of electrospun rubber microfibers were investigated. The results indicated that, for the formation of uniform microfibers without beads and/or beaded fibers, the concentration of spinning solution had to be higher than the "critical chain entanglement concentration (Ce)" and the value of Ce divided by the value of C* appeared to be a constant of ~1.8. The study suggested that the in-situ chemical crosslinking was an effective method to substantially improve the morphological stability of electrospun fibers; upon prolonged storage under ambient condition or even upon immersion in THF (a good solvent for BR, IIR and SiR), the crosslinked BR, IIR and SiR fibers well-retained their morphology.
机译:通过静电纺丝和原位化学交联的组合制备具有形态稳定性的橡胶微纤维。首先将包括聚丁二烯橡胶(Br),丁基橡胶(IIR)和硅橡胶(SIR)在双辊研磨机上捏合并溶解在四氢呋喃(THF)中以形成稳定的溶液。在静电纺丝之前,BR和IIR的樟脑醌(CQ),而另外一部分铂催化剂用于先生的加法固化,以原位化学交联溶液中加入溶液中。研究了电纺橡胶微纤维的形态和交联密度。结果表明,为了形成没有珠和/或串珠纤维的均匀微纤维,纺丝溶液的浓度必须高于“临界链缠结浓度(CE)”,Ce的值除以C值*似乎是〜1.8的常数。该研究表明,原位化学交联是显着提高Electurpul纤维的形态稳定性的有效方法;在环境条件下长时间储存​​或甚至在浸入THF(BR,IIR和SIR的良好溶剂)时,交联BR,IIR和SIR纤维很好地保留了它们的形态。

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