水溶性合成丙烯酸聚合物对羧化丙烯腈-丁二烯胶乳中二氧化硅增强作用的影响

L. Liyanaarachchi, N. Liyanage
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引用次数: 1

摘要

用表面改性的沉淀二氧化硅填充羧基丁腈橡胶(XNBR)乳胶。在水介质中,通过与含有亲水性和疏水性基团的合成聚合物(SP)反应,影响二氧化硅的表面改性。通过在5 ~ 20 phr的负荷范围内,对填充改性二氧化硅的XNBR胶乳制成的硫化胶膜的力学性能进行研究,评价了SP对XNBR胶乳膜中二氧化硅补强作用的有效性。撕裂强度是某些乳胶基产品(如手套)的重要机械性能,与未改性的二氧化硅填充铸膜相比,改性二氧化硅填充铸膜的撕裂强度有所提高。在填料负荷范围内,铸膜的撕裂性能继续提高。添加改性填料的薄膜在15phr负载下的拉伸强度达到最佳,超过未添加改性填料的薄膜在相同负载下的拉伸强度。通过扫描电子显微镜进行的形态学研究表明,改性填料颗粒在XNBR基体内的更好分布已经发生,这可能是表面改性抑制填料聚集的结果。二氧化硅的表面改性提高了XNBR的增强作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The effectiveness of a watersoluble synthetic acrylic polymer in enhancing reinforcing action of silica in carboxylated acrylonitrile butadiene rubber latex
Carboxylated acrylonitrile butadiene rubber (XNBR) latex was filled with surface modified precipitated silica. Surface modification of silica was affected in an aqueous medium by reacting with a synthetic polymer (SP) containing both hydrophilic and hydrophobic groups. The effectiveness of SP in enhancing reinforcing action of silica in XNBR latex films was evaluated through investigation of mechanical properties of vulcanized latex films cast from XNBR latex compounds filled with modified silica over a range of 5 to 20 phr loadings. Tear strength, which is an important mechanical property in certain latex based products like gloves, of modified silica filled cast films was found to be improved in comparison with that of unmodified silica filled cast films. Tear properties of cast films were continued to increase within the range of filler loadings investigated. An optimization of tensile strength was observed at 15phr filler loading in films containing modified fillers and it exceeds the tensile strength of unmodified filler added films with same loading. Morphological studies performed by scanning electron microscopy illustrated that a better distribution of modified filler particles within the XNBR matrix has occurred which may be a consequence of the discouragement of filler aggregation with surface modification. Surface modification of silica has improved the reinforcement action on XNBR.
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