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Polyphenylenesulfied/montomorillonite clay nanocomposite coatings: Their efficacy in protecting steel against corrosion

机译:聚苯硫磺/蒙脱土粘土纳米复合涂料:防止钢腐蚀的功效

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Nanoscale montomorillonite (MMT) clay fillers became dispersed in a polyphenylenesulfied (PPS) matrix through the processes of octadecylamine (ODA) intercalation -> molten PPS co-intercalation->exfoliation. Cooling this molten exfoliated material led to the formation of a PPS/MMT nanocomposite. The MMT nanofiller conferred three advanced properties on the semi-crystalline PPS: First, it raised its melting point by nearly 40 to 290 deg C; second, it increased its crystallization energy, implying that an excellent adherence of the nanofillers' surfaces to PPS in terms of a good interfacial bond; and, third, it abated the degree of its hydrothermal oxidation due to sulfide->sulfite linkage transformations. When this advanced PPS nanocomposite was used as a corrosion-preventing coating for carbon steel in a simulated geothermal environment at 300 deg C, a coating of ~ 150 mum thickness adequately protected the steel against hot brine-caused corrosion. In contrast, an MMT-free PPS coating of similar thickness was not nearly as effective in mitigating corrosion as was the nanocompsite; in fact, the uptake of corrosive ionic electrolyte by the unmodified coating increased with an extending exposure time.
机译:纳米蒙脱土(MMT)粘土填料通过十八烷基胺(ODA)嵌入->熔融PPS共嵌入->剥落过程分散在聚苯硫醚(PPS)基质中。冷却该熔融剥落的材料导致形成PPS / MMT纳米复合材料。 MMT纳米填料在半结晶PPS上具有三个先进的性能:首先,它的熔点提高了近40到290摄氏度;第二,它增加了其结晶能,这意味着就良好的界面键而言,纳米填料表面与PPS的附着力极佳。第三,由于硫化物->亚硫酸盐键的转变,降低了其水热氧化的程度。当这种先进的PPS纳米复合材料在300摄氏度的模拟地热环境中用作碳钢的防腐蚀涂层时,厚度约为150微米的涂层足以保护钢免受热盐水引起的腐蚀。相反,类似厚度的无MMT的PPS涂层在缓解腐蚀方面不如纳米复合材料有效。实际上,未经修饰的涂层对腐蚀性离子电解质的吸收随着暴露时间的延长而增加。

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