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Impact of adhesive ingredients on adhesion between rubber and brass-plated steel wire in tire

机译:胶粘成分对轮胎橡胶和黄铜镀钢丝粘附的影响

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Proficiency on underlying mechanism of rubber-metal adhesion has been increased significantly in the last few decades. Researchers have investigated the effect of various ingredients, such as hexamethoxymethyl melamine, resorcinol, cobalt stearate, and silica, on rubber-metal interface. The role of each ingredient on rubber-metal interfacial adhesion is still a subject of scrutiny. In this article, a typical belt skim compound of truck radial tire is selected and the effect of each adhesive ingredient on adhesion strength is explored. Out of these ingredients, the effect of cobalt stearate is found noteworthy. It has improved adhesion strength by 12% (without aging) and by 11% (humid-aged), respectively, over control compound. For detailed understanding of the effect of cobalt stearate on adhesion, scanning electron microscopy and energy dispersive spectroscopy are utilized to ascertain the rubber coverage and distribution of elements. X-ray photoelectron spectroscopy results helped us to understand the impact of CuXS layer depth on rubber-metal adhesion. The depth profile of the CuXS layer was found to be one of the dominant factors of rubber-metal adhesion retention. Thus, this study has made an attempt to find the impact of different adhesive ingredients on the formation of CuXS layer depth at rubber-metal interface and establish a correlation with adhesion strength simultaneously.
机译:在过去的几十年中,橡胶金属粘连潜在机制的熟练程度显着增加。研究人员研究了各种成分,例如六甲氧二甲基三聚氰胺,间苯二酚,钴硬脂酸盐和二氧化硅的效果,如橡胶 - 金属界面。每种成分对橡胶金属界面粘连的作用仍然是审查的主题。在本文中,选择了卡车径向轮胎的典型带脱脂化合物,探讨了每个粘合成分对粘合强度的影响。在这些成分中,钴硬脂酸钴的作用是值得注意的。它分别具有12%(不老化)和11%(湿于老化)的粘合强度,分别在对照化合物上产生11%。为了详细了解硬脂酸钴对粘附性的影响,利用扫描电子显微镜和能量分散光谱来确定橡胶覆盖率和元素的分布。 X射线光电子能谱结果有助于我们了解Cuxs层深度对橡胶金属粘合的影响。发现CUXS层的深度曲线是橡胶金属粘附保留的主要因素之一。因此,该研究试图发现不同粘合成分对橡胶 - 金属界面的形成的影响,并同时与粘合强度建立相关性。

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