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首页> 外文期刊>Polymers & Polymer Composites >Nanoscale Boehmite Filler for Corrosion- and Wear-resistant Polyphenylenesulfide Coatings
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Nanoscale Boehmite Filler for Corrosion- and Wear-resistant Polyphenylenesulfide Coatings

机译:纳米级勃姆石填料,用于耐腐蚀和耐磨的聚苯硫醚涂料

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摘要

We evaluated the usefulness of nanoscale boehmite crystals as a filler for anti-wear and anti-corrosion polyphenylenesulfide (PPS) coatings exposed to a very harsh, 300degC corrosive geothermal environment. The boehmite fillers dispersed uniformly into the PPS coating, conferring two advanced properties: First, they reduced markedly the rate of blasting wear; second, they increased the PPS's glass transition temperature and thermal decomposition temperature. The wear rate of PPS surfaces was reduced threefold when 5 wt% boehmite was incorporated into the PPS. During exposure for 15 days at 300degC, the PPS underwent hydrothermal oxidation, leading to the substitution of sulfide linkages by sulfite linkages. However, such molecular alteration did not significantly diminish the ability of the coating to protect carbon steel against corrosion. In fact, PPS coating filled with boehmite of <=5 wt% adequately mitigated its corrosion in brine at 300degC. One concern in using this filler was that it absorbs brine. Thus, adding an excess amount of boehmite was detrimental to achieving maximum protection.
机译:我们评估了纳米勃姆石晶体作为填料的用途,该填料用于暴露于非常恶劣的300℃腐蚀性地热环境中的抗磨和抗腐蚀聚苯硫醚(PPS)涂层。勃姆石填料均匀地分散在PPS涂层中,具有两个先进的性能:首先,它们显着降低了喷砂磨损率;其次,它们提高了PPS的玻璃化转变温度和热分解温度。当将5重量%的勃姆石掺入PPS中时,PPS表面的磨损率降低了三倍。在300°C下暴露15天期间,PPS经历了水热氧化,导致硫化物键被亚硫酸盐键取代。但是,这种分子改变并没有显着降低涂层保护碳钢不受腐蚀的能力。实际上,用≤5重量%的勃姆石填充的PPS涂层充分减轻了其在300℃的盐水中的腐蚀。使用这种填料的一个问题是它吸收盐水。因此,添加过量的勃姆石不利于获得最大的保护。

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