首页> 外文期刊>Journal of Applied Polymer Science >Studies on Urethane-Modified Alumina-Filled Polyesteramide Anticorrosive Coatings Cured at Ambient Temperature
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Studies on Urethane-Modified Alumina-Filled Polyesteramide Anticorrosive Coatings Cured at Ambient Temperature

机译:常温固化氨基甲酸酯改性氧化铝填充聚酯酰胺防腐涂料的研究

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Coatings prepared from polyesteramide resin synthesized from linseed oil, a renewable reasource, have been found to show improved physicomechanical and anticorrosive characteristics. These properties are further improved when aluminum is incorporated in the polyesteramide resin. The coatings of this resin are generally obtained by baking at elevated temperatures. With a view toward the use of linseed oil, as a precursor for the synthesis of polyesteramide resins and to cure their coatings at ambient temperature, toluylene diisocyanate (TDI) was incorporated into polyesteramide and alumina-filled polyesteramide in varying proportions to obtain urethane-modified resins. The latter resins were found to cure at room temperature. The broad structural features of the urethane-modified polyesteramide and alumina-filled polyesteramide were confirmed by FTIR and ~1H-NMR spectrosocpies. Scratch hardness; impact resistance; bending resistance; specular gloss; and resistance to acid, alkali, and organic solvents of the coatings of these resins were determined by standard methods. Physicomechanical and anticorrosive properties, specular gloss, and thermal stability of the urethane-modified alumina-filled polyesteramide coatings were found to be at higher levels among these resins. It was found that TDI could be incorporated in polyesteramide u pto only 6 wt %, such that above this loading its properties started to deteriorate, whereas alumina-filled polyesteramide could take up to 10 wt % TDI. Explanation is provided for the increase in scratch hardness and impact resistance above 6 and 10 wt % addition of TDI in polyesteramide and alumina-filled polyesteramide, respectively, as well as for the decrease in flexibility and resistance to solvents, acid, and alkali of coatings of these resins above these limits of TDI addition.
机译:已经发现由由亚麻籽油(一种可再生的资源)合成的聚酯酰胺树脂制备的涂料显示出改善的物理机械和防腐特性。当将铝掺入聚酯酰胺树脂中时,这些性能得到进一步改善。该树脂的涂层通常通过在高温下烘烤而获得。为了使用亚麻籽油,作为合成聚酯酰胺树脂的前体并在室温下固化其涂层,将甲苯二异氰酸酯(TDI)以不同比例掺入聚酯酰胺和氧化铝填充的聚酯酰胺中,以得到氨基甲酸酯改性树脂。发现后者树脂在室温下固化。 FTIR和〜1H-NMR光谱证实了氨基甲酸酯改性的聚酯酰胺和氧化铝填充的聚酯酰胺的广泛结构特征。划痕硬度;耐冲击性耐弯曲性镜面光泽用标准方法测定这些树脂涂层的耐酸,碱和有机溶剂性能。在这些树脂中,发现氨基甲酸酯改性的氧化铝填充的聚酯酰胺涂料的物理机械和耐腐蚀性能,镜面光泽和热稳定性较高。已经发现,TDI只能以6重量%掺入聚酯酰胺中,使得在该负载以上,其性能开始恶化,而氧化铝填充的聚酯酰胺可能占高达10重量%的TDI。分别说明了在聚酯酰胺和氧化铝填充的聚酯酰胺中分别添加6和10 wt%以上的TDI时,划痕硬度和耐冲击性提高,以及涂层的柔韧性和耐溶剂性,耐酸性和耐碱性的降低这些树脂的含量超过TDI添加的这些限制。

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