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Structural engineering of polyurethane coatings for high performance applications

机译:高性能涂料用聚氨酯涂料的结构工程

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This review addresses trends in the development of high performance polyurethane (PU) and its subclass coatings.Changes in the understanding the technical requirements and properties,along with novel approaches in creating high performance PU films are discussed.Some discussion of developments leading to the current status is provided,along with opportunities for the development of architectural,domestic and automotive coatings from carbamate chemistry.The review also focuses on the chemistry of PU,the importance of side products such as biuret,allophanate formation,as well as different low VOC PU coatings such as moisture-cured PU-urea,polyurea,PU-imide,UV cure and waterborne PU coatings.A brief description of functionalized dendritic/hyperbranched polymers,different monomers and synthetic approaches,and their use in the PU coating sector is addressed.In the context of nanostructuring,sol-gel chemistry to formulate ceramer coatings and use of functionalized nanomaterials in PU coatings is described.This portion also includes silica grafting and functionalization of nanosilica particles,polyhedral oligomeric silsesquioxane and the use of bridged polysilsesquioxanes in PU coatings.A wide variety of fillers,whiskers and fibers as well as clay and wollastonites with structural modification is described for use in nanocomposite PU coatings,with special emphasis on the latest development in PU-layered silicate nanocomposites.The use of different reactive-type organophosphorus compounds,aziridinyl curing agents in aqueous PU dispersions,phosphazenes,organo-boranes such as-different carboranes for use in the formulation of flame retardant coatings is described.Since surface properties determine the resistivity of coatings towards corrosive chemicals,moisture and dirt repellency,a portion of the review will also be devoted towards modification of surface properties using fluoropolymer,and the synthesis and a brief description of the available fluorinated diols is given.
机译:这篇评论探讨了高性能聚氨酯(PU)及其子类涂料的发展趋势。讨论了对技术要求和性能的理解的变化,以及有关创建高性能PU膜的新方法。对当前发展的一些讨论综述还着重于聚氨酯的化学,副产物如缩二脲,脲基甲酸酯的形成以及不同的低VOC PU的重要性,以及氨基甲酸酯化学在建筑,家用和汽车涂料方面的发展。湿固化PU-脲,聚脲,PU-酰亚胺,UV固化和水性PU涂料等涂料。简要介绍了功能化的树枝状/超支化聚合物,不同的单体和合成方法,以及它们在PU涂料领域的用途。在纳米结构化的背景下,溶胶-凝胶化学配制陶瓷体涂料以及功能化纳米材料在PU涂料中的应用本部分还包括二氧化硅的接枝和纳米二氧化硅颗粒的功能化,多面体低聚倍半硅氧烷以及桥式聚倍半硅氧烷在PU涂层中的使用。描述了各种填料,晶须和纤维以及结构改性的粘土和硅灰石。用于纳米复合PU涂料,特别着重于PU层状硅酸盐纳米复合材料的最新发展。在水性PU分散体中使用不同的反应型有机磷化合物,叠氮基固化剂,磷腈,有机硼烷(例如不同的碳硼烷)由于表面性能决定了涂层对腐蚀性化学品,水分和污垢的抵抗力,因此,部分综述还将致力于使用含氟聚合物改性表面性能,以及合成方法和简要说明。给出了可用的氟化二醇的描述。

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