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热固性线圈涂层中的支化脂肪族聚酯和反应性稀释剂。

Hyperbranched aliphatic polyesters and reactive diluents in thermally cured coil coatings.

机构信息

School of Chemical Science and Engineering, Fibre and Polymer Technology, Royal Institute of Technology, KTH, SE-100 44 Stockholm, Sweden, and SSAB Tunnplåt, SE-781 84 Borlange, Sweden.

出版信息

ACS Appl Mater Interfaces. 2009 Jan;1(1):211-7. doi: 10.1021/am800036m.

Abstract

Two hydroxy-functional hyperbranched aliphatic polyesters based on 2,2-dimethylolpropionic acid (bis-MPA) and a partially aromatic conventional polyester have been studied as thermoset resins for solvent-borne thermally cured polyester cross-linked with melamine coatings for precoated sheet metal, i.e., coil coatings. The hyperbranched polyesters differ with respect to the ratio of the end groups, being either hydroxyls or alkyl esters. The rheological properties of formulations with different polyester resin composition and reactive diluent, i.e., rape seed methyl ester, content have been evaluated with viscosity measurements. Films cured either under industrial cure conditions to obtain a peak metal temperature of 232-241 degrees C or at a lower temperature, i.e., 130 degrees C, on untreated or organic primer-coated hot-dipped-galvanized steel substrates have been prepared. The film properties have been evaluated with differential scanning calorimetry and conventional film characterization techniques, i.e., adhesion, impact, Erichsen cupping, pencil hardness, microhardness, and scratch and chemical resistance tests. Formulations possessing high drying ability with maintained suitable film application viscosity were obtained using a hyperbranched polyester resin and a reactive diluent. It is proposed that a solvent-free polyester/melamine formulation with sufficient film properties to withstand the rough forming procedures associated with coil coatings can be obtained by further modification of the resin and greater amounts of reactive diluent.

摘要

两种基于 2,2-二羟甲基丙酸(双 MPA)的羟官能超支化脂肪族聚酯和部分芳香族传统聚酯已被研究为溶剂型热固性聚酯树脂,用于用三聚氰胺涂料交联的预涂金属板,即卷材涂料。超支化聚酯在端基的比例上有所不同,端基可以是羟基或烷基酯。通过粘度测量评估了不同聚酯树脂组成和反应性稀释剂(即油菜籽油甲酯)含量的配方的流变性能。在工业固化条件下固化的薄膜,以获得 232-241 摄氏度的峰值金属温度,或在未经处理或有机底漆涂层的热浸镀锌钢基板上以较低温度 130 摄氏度固化的薄膜,已制备。通过差示扫描量热法和常规薄膜特性技术,即附着力、冲击、埃里森杯突、铅笔硬度、显微硬度和划痕以及耐化学性测试评估了薄膜性能。使用超支化聚酯树脂和反应性稀释剂获得了具有高干燥能力且保持适当薄膜应用粘度的配方。提出通过进一步修改树脂和增加反应性稀释剂,可以获得具有足够薄膜性能以承受与卷材涂料相关的粗糙成型工艺的无溶剂聚酯/三聚氰胺配方。

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