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首页> 外文期刊>Polymers & Polymer Composites >Carbon Fibre-reinforced Poly(phenylenesulphide) Composite Csatings
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Carbon Fibre-reinforced Poly(phenylenesulphide) Composite Csatings

机译:碳纤维增强聚苯硫醚复合封罐

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摘要

To enhance the thermal conductivity and improve the mechanical properties of poly(phenylene sulphide) (PPS) that was used as a coating for carbon steel heat exchanger tubes, chopped carbon fibres, ~7,5 #mu#m diam. x~3 mm long were incorporated into the PPS matrix. All the experiments in this work were performed using steel panels instead of steel tubes. As a result, 0.5 wt% fibre-reinforced PPS composites were exposed for 14 days in an autoclave containing 20, 000 ppm CO_2-laden 13 wt% NaCl solution at 200 deg C, the coatings remained intact. This suggested that the composite coatings not only adequately protect steel against corrosion in a wet, harsh, and hostile geothermal environment, but they also have great hydrothermal stability. In addition, the thermal conductivity of the bulk PPS rose~60% by adding 0.5 wt% fibre. The rough surface texture of the fibres provided good mechanical interlocking bonds with the PPS matrix. Such interfacial bonding can be interpreted as one of the factors governing the outstanding mechanical properties, such as thensile strength, tensile modulus, and elongation, of the multidirectional fibre-reinforced composite films.
机译:为了增强导热性并改善用作碳钢热交换器管涂层的聚苯硫醚(PPS),切碎的碳纤维,直径约7,5#μm。将x〜3 mm长的颗粒掺入PPS基质中。这项工作中的所有实验都是使用钢板而不是钢管进行的。结果,将0.5重量%的纤维增强的PPS复合材料在200℃下在含有20,000ppm的载有CO 2的13重量%的NaCl溶液的高压釜中暴露14天,涂层保持完整。这表明复合涂层不仅可以充分保护钢在潮湿,恶劣和恶劣的地热环境中免受腐蚀,而且还具有出色的水热稳定性。另外,通过添加0.5wt%的纤维,块状PPS的热导率上升了约60%。纤维的粗糙表面纹理提供了与PPS基质的良好机械互锁键。可以将这种界面粘合解释为支配多方向纤维增强复合膜的优异机械性能(例如,拉伸强度,拉伸模量和伸长率)的因素之一。

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