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Effects of Aging on the Morphology of Rubber-Brass Interfacial Layer

机译:老化对橡胶-黄铜界面层形貌的影响

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Adhesion between rubber compound and brass-plated steel tire cord is crucial in governing the overall performance of tires. The rubber-brass interfacial adhesion is influenced by the chemical composition and thickness of the interfacial layer. It has been shown that the interfacial layer consists mainly of sulfides and oxides of copper and zinc. This paper discusses the effect of changes in the chemical composition and the structure of the interfacial layers due to addition of adhesion promoter resins. Grazing incidence X-ray diffraction (GIXRD) experiments were run on sulfidized polished brass coupons previously bonded to five experimental rubber compounds. It was confirmed that heat and humidity conditions lead to physical and chemical changes of the rubber-steel tire cord interfacial layer, closely related to the degree of rubber-brass adhesion. Morphological transformation of the interfacial layer led to loss of adhesion after aging. The adhesion promoter resins inhibit unfavorable morphological changes in the interfacial layer, thus stabilizing it during aging and prolonging failure. Tire cord adhesion tests illustrated that the one-component resins improved adhesion after aging using a rubber compound with lower cobalt loading. Based on the acquired diffraction profiles, these resins were also found to impede crystallization of the sulfide layer after aging, leading to improved adhesion. Secondary ion mass spectrometry depth profiles and scanning electron microscopy micrographs strongly corroborated the findings from GIXRD. This interfacial analysis adds valuable information to our understanding of the complex nature of the rubber-brass bonding mechanism.
机译:橡胶混合物与镀黄铜的钢帘线之间的粘合对于控制轮胎的整体性能至关重要。橡胶-黄铜界面的附着力受界面层的化学成分和厚度的影响。已经表明,界面层主要由铜和锌的硫化物和氧化物组成。本文讨论了由于添加增粘剂树脂而引起的化学成分和界面层结构变化的影响。掠入射X射线衍射(GIXRD)实验是在预先与5种实验橡胶混合物粘合的硫化抛光黄铜试样上进行的。已确认,高温和高湿条件会导致橡胶钢丝轮胎帘线界面层的物理和化学变化,这与橡胶黄铜的粘附程度密切相关。界面层的形态转变导致老化后失去附着力。增粘剂树脂抑制了界面层中不利的形态变化,从而使其在老化过程中稳定并延长了失效时间。轮胎帘线附着力测试表明,使用一种钴含量较低的橡胶化合物,单组分树脂在老化后可改善附着力。基于所获得的衍射图,还发现这些树脂在老化后阻碍硫化物层的结晶,从而导致改善的粘合性。二次离子质谱深度分析和扫描电子显微镜显微照片强烈证实了GIXRD的发现。这种界面分析为我们对橡胶-黄铜键合机理的复杂性的理解提供了宝贵的信息。

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