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Development of Ambient Cured Polyesteramide Coatings from Linseed Oil: a Sustainable Resource

机译:用亚麻籽油开发环境固化聚酯酰胺涂料:一种可持续资源

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摘要

The resourceful employment of vegetable oil based polymers in coating applications that yield novel properties, faces challenges usually in their processing. We have developed polyesteramide coatings from linseed (Linnutn ussitatissium seeds) oil with improved coating properties. Linseed oil was first converted into N, N-bis 2-hydroxy ethyl linseed oil fatty amide diol (HELA). The resin was synthesized by the reaction of HELA with ethy-lenediaminetetraacetic acid (EDTA) to develop ethylenedi-amine polyesteramide (Ed-PEA). The latter was further treated with poly (styrene co-maleic anhydride) (SMA) in different (35-50) phr (part per hundred part of resin) to obtain ambient cured polyesteramide (AC-PEA). The structural elucidation of polymeric resin (AC-PEA) was carried out by FT-IR, 'H-NMR, and ~(13)C-NMR spectroscopic techniques. Thermal behavior of AC-PEA was studied by thermogravimetric analyses (TGA) and differential scanning calorimetry (DSC). The coatings of AC-PEA were prepared on mild steel strips to investigate their physico-mechanical and anticorrosive behavior (in acid, alkali, water and xylene). It was found that among all the samples, the one having 45 phr of SMA showed the best physico-mechanical and corrosion resistance performance. The thermal stability performance suggests that AC-PEA45 system could be safely used up to 150 ℃.
机译:在涂料应用中以植物油为基础的聚合物的资源利用产生了新颖的性能,通常在其加工中面临挑战。我们已经从亚麻籽油(亚麻籽)中开发了具有改善涂层性能的聚酯酰胺涂料。首先将亚麻籽油转化为N,N-双2-羟乙基亚麻籽油脂肪酰胺二醇(HELA)。该树脂是通过HELA与乙二胺四乙酸(EDTA)反应生成乙二胺聚酯酰胺(Ed-PEA)合成的。将后者用不同(35-50)phr(每100份树脂的份数)的聚(苯乙烯-马来酸酐)(SMA)进一步处理,以获得环境固化的聚酯酰胺(AC-PEA)。聚合物树脂(AC-PEA)的结构解析是通过FT-IR,1H-NMR和〜(13)C-NMR光谱技术进行的。通过热重分析(TGA)和差示扫描量热法(DSC)研究了AC-PEA的热行为。 AC-PEA涂层是在低碳钢带上制备的,以研究其物理机械和防腐性能(在酸,碱,水和二甲苯中)。发现在所有样品中,具有45 phr SMA的样品表现出最佳的物理机械性能和耐腐蚀性。热稳定性能表明AC-PEA45系统可在高达150℃的温度下安全使用。

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