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Surface treatment of styrene-butadiene rubber with carboxylic acids

机译:羧酸对丁苯橡胶的表面处理

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摘要

Solutions of carboxylic acids (fumaric acid, maleic acid, acrylic acid, succinic acid, malonic acid) in ethanol were used for surface treatment of two very different formulations of vulcanized synthetic styrene-butadiene rubbers to improve their adhesion to a polyurethane adhesive. The increase in the T-peel strength of adhesive joints formed between polyurethane and rubber surfaces treated with carboxylic acids depends on the rubber compounding and the characteristics of the carboxylic acid (acidity, solubility in ketones). The chemical composition of the treated surfaces was characterized by means of infra-red spectroscopy, and XPS (ESCA) analysis. The increase in the adhesion properties of styrene-butadiene rubbers treated with carboxylic acids is attributed to the elimination of abhesive substances on the surface of the rubber and to the modification of the failure mode of the joint (from interfacial to interfacial 4- cohesive failure of rubber). The effectiveness of the surface treatment of rubber with carboxylic acids is ascribed to a migration of the carboxylic acid into the polyurethane adhesive layer once the adhesive joint is formed. It is postulated that the carboxylic acid acts as a compatibilizer between rubber and polyurethane. The difference in effectiveness of the carboxylic acids studied is ascribed to the difference in the extent of rubber-adhesive interfacial interaction which, with increased interaction, allows varying degrees of cohesive failure at greater depths in the rubber.
机译:使用羧酸(富马酸,马来酸,丙烯酸,丁二酸,丙二酸)在乙醇中的溶液对两种截然不同的硫化合成丁苯橡胶配方进行表面处理,以提高其与聚氨酯粘合剂的粘合力。在聚氨酯和用羧酸处理过的橡胶表面之间形成的粘合接缝的T-剥离强度的增加取决于橡胶的配混物和羧酸的特性(酸度,在酮中的溶解度)。通过红外光谱和XPS(ESCA)分析来表征处理过的表面的化学成分。用羧酸处理的丁苯橡胶的粘合性能的提高归因于橡胶表面上附着性物质的消除和接头失效模式的改变(从界面到界面的4-内聚破坏)。橡胶)。一旦形成粘合剂接缝,用羧酸对橡胶进行表面处理的有效性归因于羧酸向聚氨酯粘合剂层中的迁移。假定羧酸在橡胶和聚氨酯之间起增容剂的作用。所研究的羧酸的有效性的差异归因于橡胶-粘合剂界面相互作用程度的差异,随着相互作用的增加,允许在橡胶的更大深度处发生不同程度的内聚破坏。

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