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Synthesis and characterisation of new modified anti-corrosive poiyesteramide resins by partial replacement of the ingredient source of the Polybasic acid for organic surface coatings

机译:通过部分替代用于有机表面涂料的多元酸的成分来源,合成和表征新型改性的防腐性聚酯酰胺树脂

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Purpose - Polymeric systems based on polyesteramides (PEA) are high performance materials, which combine the useful properties of polyester and polyamlde resins, and find many applications, most Importantly as protective surface coatings. The purpose of this paper is to characterise and evaluate new modified anti-corrosive PEA resins for use in protective coating formulations. Design/methodology/approach - In the study report here, new modified PEA compositions were prepared and evaluated as vehicles for surface coating. The PEA resins were obtained by means of a condensation polymerisation reaction between phthalic anhydride (PA) and N,N-bis-(2-hydroxyethyl) linseed oil fatty acid amide (HELA) as the ingredient source of the polyol used. The phthalic anhydride was partially replaced with N-phthaloylglutamic acid NPGA as the ingredient source of the dibasic acid. The structure of the resin was confirmed by FT-IR spectral studies. Coatings of 50 ± 5 μm thickness were applied to the surface of glass panels and mild steel strips by means of a brush. The coating performance of the resins was evaluated using international standard test methods and involved the measurement of phyisco-mechanical properties and chemical resistance. Findings - The tests carried out revealed that the modified PEA based on N-phthaloylglutamic acid (NPGA) enhanced both phyisco-mechanical and chemical properties. Also, the resins were incorporated within primer formulations and evaluated as anti-corrosive single coatings. The results illustrate that the introduction of N-phthaloylglutamic acid, within the resin structure, improved the film performance and enhances the corrosion resistance performance of PEA resins. Practical implications - The modified PEA compounds can be used as binder in paint formulations to improve chemical, physical and corrosion resistance properties. Originality/value - Modified PEA resins are cheaper and can be used to replace other more expensive binders. These modified PEA resins can compensate successfully for the presence of many the anticorrosive paint formulations and thus lower the costs. The main advantage of these binders is that they combine the properties of both polyester and polyamide resins based on nitrogenous compound, are of lower cost, and they also overcome the disadvantages of both its counterparts. Also, they can be applied in other industrial applications.
机译:用途-基于聚酯酰胺(PEA)的聚合物体系是高性能材料,结合了聚酯和聚酰胺树脂的有用特性,并找到了许多应用,最重要的是作为保护性表面涂料。本文的目的是表征和评估用于防护涂料配方的新型改性防腐PEA树脂。设计/方法/方法-在这里的研究报告中,制备了新的改性PEA组合物,并将其评估为表面涂层的载体。通过邻苯二甲酸酐(PA)与作为所用多元醇的成分来源的N,N-双-(2-羟乙基)亚麻籽油脂肪酸酰胺(HELA)之间的缩聚反应获得PEA树脂。用N-邻苯二甲酰基谷氨酸NPGA部分取代邻苯二甲酸酐,作为二元酸的成分来源。通过FT-IR光谱研究确认了树脂的结构。用刷子将厚度为50±5μm的涂料涂在玻璃板和低碳钢带的表面上。使用国际标准测试方法对树脂的涂层性能进行了评估,并涉及了物理力学性能和耐化学性的测量。发现-进行的测试表明,基于N-邻苯二甲酰谷氨酸(NPGA)的改性PEA增强了物理力学性能和化学性能。同样,将树脂掺入底漆配方中,并作为防腐蚀单层涂料进行评估。结果表明,在树脂结构内引入N-邻苯二甲酰基谷氨酸可改善膜性能,并增强PEA树脂的耐腐蚀性。实际意义-改性的PEA化合物可用作油漆配方中的粘合剂,以改善化学,物理和耐腐蚀性能。原创性/价值-改性的PEA树脂更便宜,可用于替代其他更昂贵的粘合剂。这些改性的PEA树脂可以成功补偿许多防腐涂料配方的存在,从而降低成本。这些粘合剂的主要优点是它们结合了基于含氮化合物的聚酯和聚酰胺树脂的特性,具有较低的成本,并且还克服了两种粘合剂的缺点。而且,它们可以应用于其他工业应用。

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