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首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >Mechanical and anticorrosive properties of non toxic coal-tar epoxy alternative coating
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Mechanical and anticorrosive properties of non toxic coal-tar epoxy alternative coating

机译:无毒煤焦油环氧替代涂料的机械和防腐性能

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Coal tar epoxy (CTE) coating system has been widely used for protection of steel structures under atmospheric, buried and immersion conditions because of their low water vapour permeability, high electrolyte resistance and good antibacterial properties. However, coal tar has been classified as carcinogen, mutagen and toxic for reproduction (CMR) as per International guideline (REACH, IARC and GS 11). It is now banned in the developed nations like US, Europe, Japan, etc. As the use of coal tar is being restricted, there is an urgent need to formulate a coal tar free epoxy product for corrosion protection of structures. In the present study, alternative approaches have been proposed to replace coal tar such as bitumen (BIT), hydrocarbon resin (HR), flexibilizer (FL) and curing agents like polyamide (PAD) or polyamine (PAM). Four different coal tar free formulations were formulated separately by using these approaches. The standard CTE and coal tar free epoxy compositions were evaluated for mechanical properties such as elongation at break, tensile strength, adhesion strength and resistance to abrasion, impact and flexibility. The resistance to corrosion of optimized composition (epoxy-HR-FL-PAD-PAM) and coal tar epoxy coating was evaluated by exposing to different environments. The corrosion resistance property was also evaluated by cathodic disbondment and electrochemical impedance spectroscopy (EIS) technique. Results indicate that epoxy-hydrocarbon resin-flexibilizer composition cured with blend of polyamide and polyamine has comparable mechanical and corrosion protection properties to that of standard CTE.
机译:煤焦油环氧(CTE)涂层系统因其低的水蒸气渗透性,高的耐电解质性和良好的抗菌性能,已在大气,埋藏和浸没条件下被广泛用于保护钢结构。但是,根据国际准则(REACH,IARC和GS 11),煤焦油已被归类为致癌物质,诱变物质和生殖毒性物质(CMR)。目前已在美国,欧洲,日本等发达国家禁止使用。由于限制了煤焦油的使用,迫切需要配制不含煤焦油的环氧产品来保护结构。在本研究中,已经提出了替代方法来替代煤焦油,例如沥青(BIT),烃树脂(HR),增韧剂(FL)和固化剂,例如聚酰胺(PAD)或聚胺(PAM)。使用这些方法分别配制了四种不同的无煤焦油配方。评价了标准的CTE和无煤焦油的环氧组合物的机械性能,例如断裂伸长率,拉伸强度,粘合强度和耐磨性,冲击强度和柔韧性。通过暴露在不同的环境中来评估优化组合物(环氧-HR-FL-PAD-PAM)和煤焦油环氧涂料的耐腐蚀性。还通过阴极剥离和电化学阻抗谱(EIS)技术评估了耐腐蚀性。结果表明,用聚酰胺和多胺的混合物固化的环氧-烃类树脂-增韧剂组合物具有与标准CTE相当的机械和腐蚀防护性能。

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