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The effect of monomer structure on the adhesive properties of thermally reversible isocyanate polymers

机译:单体结构对热可逆异氰酸酯聚合物粘合性能的影响

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The benefits of thermally reversible polymers derives from their structure; they dissociate into much lower molecular weight components when heated above a critical temperature and reform into a polymer when cooled below that temperature. This allows them to flow at a modestly elevated temperature, while exhibiting good strength, adhesion, solvent resistance at lower temperatures. Such polymers can be used as hot melt adhesives that combine the best features of both thermoplastics and thermosets. They can be reheated repeatedly, while producing a crossslinked network at ambient conditions. The properties of reversible isocyanate polymers depend on the structure of the monomers incorporated into the polymer backbone. This paper summarizes the influence of several polyester based monomers ont he adhesive characteristics of the resulting polymer.
机译:热可逆聚合物的益处源于其结构;当在低于该温度下冷却时,将它们分离成在临界温度高于临界温度并重新进入聚合物中。这使得它们在适度升高的温度下流动,同时在较低温度下表现出良好的强度,粘附性,耐溶剂性。这种聚合物可用作热熔粘合剂,其结合了热塑性塑料和热固性件的最佳特征。它们可以重复再加热,同时在环境条件下产生互连网络。可逆异氰酸酯聚合物的性质取决于掺入聚合物主链中的单体的结构。本文总结了几种聚酯基单体对所得聚合物的粘合特性的影响。

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