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Synthesis and characterization of water-thinnable thermosetting acrylic-resins for low-cure surface coatings

机译:用于水固化的低固化表面涂料的热固性丙烯酸树脂的合成与表征

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摘要

Among the various binders used for industrial finishes,thermosetting acrylics (TSAs) are gaining importance.There are two main reasons for this;firstly they possess inherently superior properties;such as water clear appearance,colour retention,good durability,low pigment reactivity,excellent chemical resistance and excellent flexibility.Secondly,thermosetting acrylics provide greater formulation latitude as they can be tailor made to suit specific applications.Presently,thermosetting acrylics are commonly used in the two major forms:Solvent soluble thermosetting acrylics for conventional solids coatings.Thermosetting acrylics for high solids coatings.In the present work,water-thinnable acrylic resins have been developed wherein water is used in place of volatile organic solvent which is the main source of VOC emission.Water-thinnable thermosetting acrylics are getting more prominence day after day because of their eco-friendly nature,cost effectiveness and superior films performance.However,ordinary water-thinnable thermosetting acrylic resins cure at high temperature (~120-150°C) and hence involve high energy consumption.Through this work,efforts have also been directed towards developing such water-thinnable thermosetting acrylic resins which can be cured at lower temperature to yield low-cure surface coatings.For achieving this,a series of TSAresins were prepared by reacting 2-hydroxy ethyl methacrylate (HEMA) and acrylic acid (AAj as monomers in butanol as solvent in presence of benzoyl peroxide as initiator.The prepared TSA resins were made water soluble by neutralizing with ammonia solution.The coating films were then baked at 90°C for 30 minutes to effect film cure.Cured films were evaluated for their various optical,mechanical and chemical resistance properties to ascertain the commercial utility of low-temperature curable water-thinnable TSA resins.
机译:在用于工业上光剂的各种粘合剂中,热固性丙烯酸酯(TSA)变得越来越重要。其主要原因有两个;首先,它们具有固有的优越性能;如水透明外观,保色性,耐久性,低颜料活性,优异第二,热固性丙烯酸酯可提供更大的配方自由度,因为它们可以根据特定的应用量身定制。目前,热固性丙烯酸酯通常以两种主要形式使用:溶剂型可溶性热固性丙烯酸酯,用于常规固体涂料。在目前的工作中,已经开发出水可稀释的丙烯酸树脂,其中用水代替挥发性有机溶剂(挥发性有机溶剂是VOC的主要排放源)。由于水可稀释的热固性丙烯酸的使用日趋重要。它们的环保特性,成本效益和出色的胶卷性能。因此,普通的水可稀释的热固性丙烯酸树脂在高温(〜120-150°C)下固化,因此涉及高能耗。通过这项工作,还致力于开发可固化的水可稀释的热固性丙烯酸树脂。为了达到这个目的,通过使甲基丙烯酸2-羟乙酯(HEMA)和丙烯酸(AAj作为单体在丁醇作为溶剂,在过氧化苯甲酰作为引发剂存在下)反应,制备了一系列TSA树脂。通过用氨水中和使制备的TSA树脂水溶性,然后将涂膜在90°C烘烤30分钟以实现膜固化。评估固化后的膜的各种光学,机械和化学耐性,以确定其商业用途低温可固化的水可稀释的TSA树脂的实用性。

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