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Tensile Properties of Carbon Filled Liquid Crystal Polymer Composites

机译:碳填充液晶聚合物复合材料的拉伸性能

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Electrically and thermally conductive resins can be produced by adding carbon fillers. Mechanical properties such as tensile modulus, ultimate tensile strength, and strain at ultimate tensile strength are vital to the composite performance in fuel cell bipolar plate applications. This research focused on performing compounding runs followed by injection molding and tensile testing of carbon filled Vectra A950RX liquid crystal polymer composites. The four carbon fillers investigated included an electrically conductive carbon black, thermocarb synthetic graphite particles, and two carbon fibers (Fortafil 243 and Panex 30). For each different filler type, resins were produced and tested that contained varying amounts of these single carbon fillers. The carbon fiber samples exhibited superior tensile properties, with a large increase in tensile modulus over the base polymer, and very low drop in the ultimate tensile strength as the filler volume fraction was increased. The strain at the ultimate tensile strength was least affected by the addition of the Panex carbon fiber but was significantly affected by the Fortafil carbon fiber. In general, composites containing synthetic graphite did not perform as well as carbon fiber composites. Carbon black composites exhibited poor tensile properties.
机译:可以通过添加碳填料来生产导电和导热树脂。诸如拉伸模量,极限拉伸强度和极限拉伸强度下的应变等机械性能对于燃料电池双极板应用中的复合性能至关重要。这项研究的重点是进行复合操作,然后对碳填充的Vectra A950RX液晶聚合物复合材料进行注塑和拉伸测试。研究的四种碳填料包括一种导电炭黑,thermocarb合成石墨颗粒和两条碳纤维(Fortafil 243和Panex 30)。对于每种不同的填料类型,生产并测试了包含不同数量的这些单一碳填料的树脂。碳纤维样品表现出优异的拉伸性能,与基础聚合物相比,拉伸模量大大提高,并且随着填料体积分数的增加,最终拉伸强度的下降非常低。极限拉伸强度下的应变受Panex碳纤维的影响最小,但受Fortafil碳纤维的影响很大。通常,包含合成石墨的复合材料的性能不如碳纤维复合材料。炭黑复合材料表现出差的拉伸性能。

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