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Characterization of Adhesion Interlayer Between Rubber and Brass by a Novel Method of Sample Preparation

机译:一种新的样品制备方法表征橡胶和黄铜之间的粘合中间层

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Instrumental characterization of an adhesion interface in a rubber-brass system often faces a difficulty in exposing a clean surface due to a stick of rubber residue on a brass surface. We have succeeded in isolating an interface from the rubber matrix by inserting a filter paper between rubber and brass during the vulcanization. Clean interface was obtained by removing the filter paper after the vulcanization, enabling a detailed characterization of the interface by XPS and SEM-EDX from a practical rubber formulation. Formulation of cobalt naphthenate did not contribute to a formation of adhesion interlayer in an initial stage of cure, but greatly affected the composition of copper sulfide during the vulcanization. It was found that a dosage of cobalt improved a growth of interface at aging. Copper sulfide particles were found to be spherical at the interface for unaged specimens. It was revealed that excess growth of copper sulfide was a main feature at a humidity aging, while the growth of zinc oxide was eminent under a hot water aging. Scheme of an aging reaction was considered to depend on an interaction between brass and external factors such as heat, water, and oxygen.
机译:橡胶-黄铜系统中粘合界面的仪器表征通常会因暴露在黄铜表面的橡胶残留物而难以暴露干净的表面。通过在硫化过程中在橡胶和黄铜之间插入滤纸,我们成功地从橡胶基质中分离出界面。通过在硫化后除去滤纸,可获得干净的界面,从而可以通过XPS和SEM-EDX从实用的橡胶配方中详细表征界面。环烷酸钴的配制在固化的初始阶段没有促进粘合夹层的形成,但是在硫化过程中极大地影响了硫化铜的组成。已发现一定剂量的钴改善了老化时界面的生长。对于未老化的样品,发现硫化铜颗粒在界面处呈球形。结果表明,在潮湿老化下,硫化铜的过度生长是其主要特征,而在热水老化下,氧化锌的生长则明显。老化反应的方案被认为取决于黄铜与外部因素(例如热量,水和氧气)之间的相互作用。

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