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首页> 外文期刊>Journal of Applied Polymer Science >Wetting of Oriented and Etched Ultrahigh Molecular Weight Polyethylene
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Wetting of Oriented and Etched Ultrahigh Molecular Weight Polyethylene

机译:定向和蚀刻的超高分子量聚乙烯的润湿

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Highly oriented gel-spun ultrahigh molecular weight polyethylene (UHMEPE) fibers possess many outstanding properties desirable for composite materials but their adhesion to such matrices as epoxy is poor. This article describes the combined effects of drawing and surface modificantion on the bulk and surface properties of gel-cast UHMWPE films emphasizing the effects of etching on both undrawn and drawn films. Drawing the films yields a fibrillar structural hierarchy similar to UHMWPE fibers and a significant increase in orientation, melting point, modulus, and strength. The effects of drawing on bulk properties were more significant than those of etching. The poor adhesion of epoxy to the smooth, fibrillar, and relatively nonpolar drawn film surface improves significantly with oxidization and roughening on etching. The interlaminar shear failure occurred cohesively in the UHMWPE, and thus the interlaminar shear failure strength was greater for the drawn UHMWPE wiht its greater tensile strength. Nitrogen plasma etching yielded the best results, both removing any low molecular weight surface layer and etching the UHMWPE beneath. Oxygen plasma etching enhanced wetting but was too harsh, causing extensive surface degradation and a significant reduction in mechanical properties.
机译:高取向凝胶纺丝超高分子量聚乙烯(UHMEPE)纤维具有复合材料所需的许多出色性能,但它们对环氧树脂等基质的粘合性很差。本文介绍了拉伸和表面改性对凝胶浇铸的UHMWPE薄膜的体积和表面性能的综合影响,强调了蚀刻对未拉伸和拉伸薄膜的影响。拉伸薄膜会产生类似于UHMWPE纤维的原纤维结构层次,并显着增加取向,熔点,模量和强度。拉伸对整体性能的影响比蚀刻的影响更大。环氧树脂对光滑,原纤维和相对非极性拉伸膜表面的不良附着力会随着蚀刻时的氧化和粗糙化而显着改善。在UHMWPE中,层间剪切破坏是内聚性发生的,因此,拉伸后的UHMWPE的层间剪切破坏强度更大。氮等离子体蚀刻产生了最好的结果,既去除了任何低分子量表面层,又蚀刻了下面的UHMWPE。氧等离子体蚀刻增强了润湿性,但过于苛刻,导致大量的表面退化和机械性能的显着降低。

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