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Study of UHMWPE Fiber Surface Modification and the Properties of UHMWPE/Epoxy Composite

机译:UHMWPE纤维表面改性及UHMWPE /环氧复合材料的性能研究

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Ultra-high molecular weight polyethylene (UHMWPE)/epoxy composites with excellent adhesive properties were prepared by forming an interface membrane on the UHMWPE fiber surface. The interface membrane of the UHMWPE fiber and epoxy resin was polymerized by an aldol condensation between polyvinyl alcohol (PVA) and glutaraldehyde. Different surface treatment methods of UHMWPE fibers were optimized and the two-step PVA-glutaraldehyde condensation (Corona-PG-2S) method is the best. The interfacial adhesion between UHMWPE fiber and epoxy resin was enhanced, and the adhesive properties of the composite were improved. X-ray photoelectron spectroscopy (XPS) and energy dispersive spectrum (EDS) results of the fiber treated by Corona-PG-2S shows that the surface oxygen content was up to 25.0 wt %, with an increase of 17.3 wt % compared with the surface oxygen content of unmodified UHMWPE fiber, which indicated that the surface polarity was greatly enhanced. The adhesive properties were improved by improving the polarity of the surface. The peel strength, ultimate cohesive force, tensile strength and flexural strength of the composite treated by Corona-PG-2S were greatly increased to 262.8%, 166.9%, 139.7%, 200.6% compared with those of unmodified samples. The composite prepared by Corona-PG-2S had excellent adhesive properties, demonstrating that the Corona-PG-2S method plays a major role in significantly improving the composite adhesive properties.
机译:通过在UHMWPE纤维表面上形成界面膜来制备具有优异粘合性能的超高分子量聚乙烯(UHMWPE)/环氧复合材料。通过聚乙烯醇(PVA)与戊二醛之间的醛醇缩合聚合UHMWPE纤维和环氧树脂的界面膜。优化了UHMWPE纤维的不同表面处理方法,两步PVA-戊二醛缩合(Corona-PG-2S)方法是最佳的。提高了UHMWPE纤维和环氧树脂之间的界面粘附,改善了复合材料的粘合性能。 Corona-PG-2S处理的纤维的X射线光电子谱(XPS)和能量分散光谱(EDS)结果表明,表面氧含量高达25.0wt%,与表面相比,增加17.3重量%未经修改的UHMWPE纤维的氧含量,表明表面极性大大提高。通过改善表面的极性来改善粘合性能。与未修饰的样品相比,由Corona-PG-2S处理的剥离强度,终极内聚力,抗粘附力,拉伸力,抗拉强度和抗弯力和抗弯强度达到262.8%,166.9%,139.7%,200.6%。 Corona-PG-2S制备的复合材料具有优异的粘合性能,表明Corona-PG-2S方法在显着改善复合粘合性能方面发挥着重要作用。

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