Preparation and Mechanical Properties of Micro- and Nano-sized SiC/Fluoroelastomer Composites

来源 :Journal of Wuhan University of Technology(Materials Science | 被引量 : 0次 | 上传用户:wo6857953
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Micro- and nano-sized SiC/fluoroelastomer (FKM) composites were prepared by a mechanical mixing method. These composites were first characterized by a rotorless rheometer. Then the effects of micro- and nano-sized SiC on hardness, static and dynamic mechanical properties of the composites were investigated. The increasing amount of the SiC filler increased the curing efficiency of the biphenyl curing system, which was evident from the rheometric properties of the resulting composites. The tensile properties of composite increased with the increasing of micro- and nano-sized SiC content. When the micro-and nano-sized SiC content was higher than 20 phr, the composites showed almost unchanged tensile properties. The increasing of the tensile property was mainly attributed to the well dispersed micro- and nano-sized SiC particles characterized by SEM images. Compared to pure FKM, the composites exhibited a higher glass transition temperature and lower tan δ peak value. The composites were prepared by a rotorless rheometer. Then the effects of micro- and nano-sized SiC on hardness, static and dynamic mechanical properties of the composites were investigated. The increasing amount of the SiC filler increased the curing efficiency of the biphenyl curing system, which was evident from the rheometric properties of the resulting composites. The tensile properties of composite increased with the increasing of micro- and nano- sized SiC content was higher than 20 phr, the increasing of the tensile property was mainly attributed to the well dispersed micro- and nano-sized SiC particles was by SEM images. Compared to pure FKM, the composites exhibited a higher glass transition temperature and lower tan δ peak value.
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