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首页> 外文期刊>Journal of Applied Polymer Science >Preparation and characterization of ultrahigh molecular weight polyethylene and polyisoprene solvent-cast blend films
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Preparation and characterization of ultrahigh molecular weight polyethylene and polyisoprene solvent-cast blend films

机译:超高分子量聚乙烯和聚异戊二烯溶剂浇铸共混膜的制备和表征

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摘要

This study covers the preparation of noncrosslinked and crosslinked solvent-cast blend films of ultrahigh molecular weight polyethylene (UHMWPE) and polyisoprene rubber (PIR) and their mechanical, thermal, IR spectroscopic, and morphological characterizations. Solvent-cast films of polymer blends with 0, 10, 20, 35, 50, and 65% PIR composition were prepared by vigorous stirring from a hot decalin solution. The films were crosslinked chemically by using acetophenone as a crosslinking agent under UV radiation. The mechanical properties, measured as ultimate properties and tensile modulus, were found to decrease with PIR content but crosslinking was found to enhance the ultimate strength and tensile modulus. DSC results revealed that melting point of UHMWPE remains almost constant in blends. However, upon crosslinking, the melting point of UHMWPE is depressed almost 5 degrees C. We observed a similar trend in the enthalpy change of the melting of UHMWPE and the variation of percent crystallinity in UHMWPE. Scanning electron microscopy (SEM) studies on the fractured surfaces of the blends showed that the fibrillar texture is present in both crosslinked and noncrosslinked blends. The crosslinking appeared to be through oxygen linkages, which are preferentially conjugated to double bonds, in addition to the possible carbon-carbon crosslinks. (C) 1998 John Wiley & Sons, Inc. [References: 25]
机译:这项研究涵盖了超高分子量聚乙烯(UHMWPE)和聚异戊二烯橡胶(PIR)的非交联和交联溶剂浇铸共混膜的制备及其机械,热,红外光谱和形态学表征。通过从热十氢化萘溶液中剧烈搅拌来制备具有0、10、20、35、50和65%PIR组成的聚合物共混物的溶剂流延膜。通过使用苯乙酮作为交联剂在紫外线辐射下使膜化学交联。发现机械性能,作为极限性能和拉伸模量,随PIR含量而降低,但发现交联可提高极限强度和拉伸模量。 DSC结果表明,UHMWPE的熔点在混合物中几乎保持恒定。然而,在交联时,UHMWPE的熔点降低了近5摄氏度。我们观察到UHMWPE的熔融焓变和UHMWPE的结晶度百分比变化具有相似的趋势。在共混物的断裂表面上的扫描电子显微镜(SEM)研究表明,在交联和非交联的共混物中均存在原纤维织构。交联似乎是通过氧键进行的,除了可能的碳-碳交联以外,氧键还优先与双键结合。 (C)1998 John Wiley&Sons,Inc. [参考:25]

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