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首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >Designing an elastomeric polyurethane coating with enhanced mechanical and self-healing properties: The influence of disulfide chain extender
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Designing an elastomeric polyurethane coating with enhanced mechanical and self-healing properties: The influence of disulfide chain extender

机译:设计具有增强的机械和自我愈合特性的弹性聚氨酯涂层:二硫化物链增量剂的影响

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摘要

Polyurethane has been widely used in various coating industries due to its good weathering resistance, promising appearance, excellent elasticity and good mechanical properties. However, most of the polyurethanes are elastomeric and show poor resistance to mechanical damages. Efforts have been made to design polyurethanes with proper self-healing properties. In this study the self-healable polyurethanes and polyurethane-ureas coatings were prepared using hydroxyl-terminated polybutadiene, three functional amino alcohols as cross-linker and disulfide containing compounds as a chain extender and healing agents. The mechanical and healing properties of the coatings were optimized to achieve the highest recovery properties. For this purpose, dynamic mechanical thermal analysis (DMTA) and tensile test were employed. The results revealed that using 0.8 equivalent of 2-hydroxyethyl disulfide as chain extender besides of using 0.15 equivalent of the Methanol amine as cross-linker in the polymer matrix led to the maximum recovery ability. Maintaining to about 41% of fresh polymer strength and healing of the scratch were established as a result of using the optimized contents of components. Also, tensile test results revealed that the tensile strength increased by performing the thiol-ene side reactions in PU matrix which increased the cross-linking density and decreased the healing ability due to the elimination of the metathesis reaction source.
机译:由于其良好的耐候性,具有良好的耐候性,外观,优异的弹性和良好的机械性能,聚氨酯已被广泛应用于各种涂层行业。然而,大多数聚氨酯是弹性体,并且对机械损伤的抗性差。已经努力设计具有适当的自我愈合特性的聚氨酯。在这项研究中,使用羟基封端的聚丁二烯,三个官能氨基醇作为交联剂和含有链增量剂和愈合剂的化合物制备自我恢复的聚氨酯和聚氨酯 - 脲涂层。优化涂层的机械和愈合性能以实现最高的回收性能。为此目的,采用动态机械热分析(DMTA)和拉伸试验。结果表明,除了在聚合物基质中使用0.15当量的甲醇胺,使用0.8当量的2-羟乙基二硫醚作为增链剂,作为聚合物基质中的交联剂导致最大回收能力。在使用组分的优化含量的结果,确定维持大约41%的新鲜聚合物强度和康施的愈合。此外,拉伸试验结果表明,通过在PU基质中进行硫醇-ee副反应来增加拉伸强度,这增加了交联密度并降低了由于消除复分解反应来源而降低愈合能力。

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