杨飞,朱立群,李春雨,王贤明,宁亮.氟改性和硅改性丙烯酸聚氨酯涂层的制备及环境行为[J].表面技术,2015,44(2):19-23,67.
YANG Fei,ZHU Li-qun,LI Chun-yu,WANG Xian-ming,NING Liang.Preparation of Fluorinated and Silicone Acrylic Polyurethane Coatings and Their Environmental Behaviors[J].Surface Technology,2015,44(2):19-23,67
氟改性和硅改性丙烯酸聚氨酯涂层的制备及环境行为
Preparation of Fluorinated and Silicone Acrylic Polyurethane Coatings and Their Environmental Behaviors
投稿时间:2014-09-05  修订日期:2015-02-20
DOI:10.16490/j.cnki.issn.1001-3660.2015.02.004
中文关键词:  涂层  丙烯酸聚氨酯  氟改性  硅改性  环境行为  失效
英文关键词:coating  acrylic polyurethane  fluorinated coating  silicone coating  environment behavior  failure
基金项目:
作者单位
杨飞 1. 北京航空航天大学, 北京 100191; 2. 武汉第二船舶设计研究所, 武汉 430064; 
朱立群 北京航空航天大学, 北京 100191 
李春雨 北京航空航天大学, 北京 100191 
王贤明 海洋化工研究院有限公司, 山东 青岛 266071 
宁亮 海洋化工研究院有限公司, 山东 青岛 266071 
AuthorInstitution
YANG Fei 1. Beihang University, Beijing 100191, China;2. Wuhan Second Ship Design and Research Institute, Wuhan 430064, China; 
ZHU Li-qun Beihang University, Beijing 100191, China 
LI Chun-yu Beihang University, Beijing 100191, China 
WANG Xian-ming Marine Chemical Research Institute, Qingdao 266071, China 
NING Liang Marine Chemical Research Institute, Qingdao 266071, China 
摘要点击次数:
全文下载次数:
中文摘要:
      目的 研究氟改性和硅改性丙烯酸聚氨酯涂层在不同环境中的失效行为。 方法 通过溶液聚合法制备具有一定羟基含量的丙烯酸酯树脂,再将丙烯酸树脂与多异腈酸酯固化剂配合,获得丙烯酸聚氨酯涂层。 通过在丙烯酸酯合成中引入含氟丙烯酸酯单体,制得氟改性丙烯酸聚氨酯涂层;通过在固化过程中引入氨基硅油,制得硅改性丙烯酸聚氨酯涂层。 利用傅里叶变换红外光谱(FT-IR)分析涂层的化学组成。 对涂层试样进行温度环境实验(室温和 100,150 ℃ )、湿热环境实验和氙灯老化实验,分析涂层疏水性、光泽度等表面特性的变化。 结果 氟、硅改性有效提高了涂层的疏水性。 未改性、氟改性和硅改性三种涂层在 100 ℃以下的环境中服役时,疏水性和光泽度比较稳定。 硅改性涂层在 150 ℃的高温环境中较未改性和氟改性涂层失效慢。 湿热环境对三种涂层的接触角和光泽度等性能影响不大。 氟改性涂层在氙灯老化环境中的失效程度较另外两种涂层轻。 结论 氟改性涂层耐光老化性能较好,硅改性涂层耐温性较好。
英文摘要:
      Objective To investigate the failure behaviors of different coatings in different environments. Methods Acrylic resins with certain amount of hydroxyl were prepared via a solution polymerization route. Acrylic polyurethane coating was obtained by mixing the acrylic resins with polyisocyanate. Fluorinated acrylic polyurethane coating was prepared by introducing fluorinated acrylate into the synthesis of the acrylic resins, while silicone acrylic polyurethane coating was synthesized by introducing amino silicone oil into the curing process of the coatings. The chemical structure of the coatings was confirmed by FT-IR. Failure behaviors of the coatings in different temperature environments ( room temperature, 100 ℃ , 150 ℃ ), hydrothermal environment and xenon arc lamp artificial aging experiment were monitored by characterizing the contact angle and glossiness of the coatings. Results The hydrophobicity of the coatings was effectively improved by the incorporation of the fluorine and silicon components. The normal, fluorinated and silicone acrylic polyurethane coatings had stable hydrophobicity and glossiness in environments with a temperature below 100 ℃ . Among the three coatings, the fluorinated coating failed most slowly in the xenon lamp aging test, and the silicone coating failed most slowly in the high-temperature environment (150 ℃ ). Hydrothermal environment had no significant influence on the contact angle and glossiness of all the three coatings. Conclusion Fluorinated coating showed better resistance to photo-aging, while silicone coating had better resistance to the high-temperature environment.
查看全文  查看/发表评论  下载PDF阅读器
关闭

关于我们 | 联系我们 | 投诉建议 | 隐私保护 | 用户协议

您是第26660228位访问者    渝ICP备15012534号-3

版权所有:《表面技术》编辑部 2014 surface-techj.com, All Rights Reserved

邮编:400039 电话:023-68792193传真:023-68792396 Email: bmjs@surface-techj.com

渝公网安备 50010702501715号