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作 者:刘鹤[1] 徐徐[2] 高宏[1] 商士斌[1,3]
机构地区:[1]中国林业科学研究院林产化学工业研究所,南京210042 [2]南京林业大学化学工程学院,南京210037 [3]中国林业科学研究院林业新技术研究所,北京100091
出 处:《涂料工业》2013年第1期53-55,共3页Paint & Coatings Industry
基 金:林业公益性行业科研专项基金(201104031)
摘 要:利用松香改性多元酸马来海松酸合成了马来海松酸聚酯多元醇(MAPP),考察了制备MAPP过程中的诸多影响因素,包括催化剂种类和用量、常压下反应时间、二元醇的种类、反应温度以及醇酸的物质的量比、减压反应时间等,并对制备产品的相对分子质量进行了高效凝胶色谱(GPC)表征。最终得出制备高性能MAPP的最优方案,即反应物在常压下于220℃反应4 h,催化剂选择0.10%(质量分数)氧化锌、在减压下反应3 h、n(二甘醇)∶n(马来海松酸)为1.20。利用所研制的MAPP制备的水性聚氨酯(WPU)具有更高的硬度、更强的拉伸强度和更好的耐水性。In this paper, maleopimaric acid polyester polyols (MAPP) was synthesized by rosin modified maleopimaric acid. Factors that influence the reaction process, such as diol species, kinds and amounts of catalysts, temperature, reaction time under atmospheric pressure and reduced pressure, and molar ratio of diol to acid were studied. Molecular weights of the products were characterized by gel permeation chromato- graph (GPC). The high performance MAPP was obtained when using ZnO 0. 10% as catalyst, temperature 220 ℃, reaction time (atmospheric pressure) 4 h and ( reduced pressure) 3 h, and molar ratio of diol to acid l. 20, respectively. The properties of WPU with MAPP were improved including hardness, tensile strength and water resistance.
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