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首页> 外文期刊>Agronomy Research >Investigation of the anticorrosion performance of lignin coatings after crosslinking with triethyl phosphate and their adhesion to a polyurethane topcoat
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Investigation of the anticorrosion performance of lignin coatings after crosslinking with triethyl phosphate and their adhesion to a polyurethane topcoat

机译:用三乙基磷酸酯交联后木质素涂层的防腐性能及其对聚氨酯面漆的粘附性

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This study investigates the anticorrosion properties of sustainable organic coatings, which were prepared by dissolution of two different types of technical lignins – organosolv lignin (OL) and kraft lignin (KL) – in an organic solvent and applied onto iron-phosphated steel by air-assisted spray coating. Influence of triethyl phosphate (TEP) as a crosslinking agent for lignin and its effect on the anticorrosion properties of coatings during 24 h of immersion in 3.5% NaCl were investigated. Results obtained from electrochemical impedance spectroscopy (EIS) of coated steels suggest that the initial protection performance (1 h immersion) of non-crosslinked OL is higher than that of KL. Nevertheless, KL coatings that contained TEP and were heat-treated at elevated temperature (180 °C) demonstrated the best overall anticorrosion performance. In contrast, a similar trend was not observed for OL coatings, which indicates that the structural properties of lignin may be a crucial factor in applicability of TEP as a crosslinking agent. In addition, a layer of polyurethane was applied on all the different types of lignin coatings prepared and their adhesion characteristics were studied by crosscut adhesion measurements (ISO 2409). These adhesion results revealed that neither KL-TEP nor OL-TEP coatings demonstrate proper adhesive characteristics with a polyurethane (PU) topcoat and consequently these coatings are not suitable for utilization as a primer coating for the PU topcoat studied.
机译:本研究调查可持续有机涂层的防腐性能,通过溶解两种不同类型的技术木质素 - 有机螺旋蛋白(OL)和牛皮蛋白(KL) - 在有机溶剂中制备,并通过空气施加到铁 - 磷化钢上辅助喷涂。研究了三乙酯(TEP)作为木质素的交联剂的影响及其对浸渍24小时涂层涂层防腐性质的影响3.5%NaCl。涂层钢的电化学阻抗光谱(EIS)获得的结果表明,非交联的OL的初始保护性能(1h浸渍)高于KL。然而,含有Tep并在升高的温度(180°C)的KL涂层上含有热处理(180°C),证明了最佳的整体防腐性能。相反,OL涂层未观察到类似的趋势,这表明木质素的结构性能是TED作为交联剂的适用性的关键因素。另外,在制备的所有不同类型的木质素涂层上施加一层聚氨酯,并且通过横切粘附测量研究其粘合特性(ISO 2409)。这些粘附结果表明,KL-TEP和OL-TEP涂层都没有表现出具有聚氨酯(PU)面漆的适当粘合特性,因此这些涂层不适合于所研究的PU面漆的底漆涂层。

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