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Mechanism of adhesion degradation of rubber to brass-plated steel cords

机译:橡胶与镀黄铜钢帘线的粘合降解机理

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We have explored the effect of the presence of the sulfide layer on the corrosion performance of sulfidized brass-coated steel cords extracted from tires and squalene formulations.The corrosion performance of sulfidized brass cords extracted from various rubber formulations was tested in 3% NaCl electrolyte solution using DC polarization techniques.We found that the copper sulfide layer made the sulfidized brass cords passive and protected them from corroding in severe corroding environment(3% NaCl).The degree of protection offered by the sulfidized brass cords was found to vary depending on the formulation in which they were sulfidized.Our results suggest that the type of sulfide layer formed on the sulfidized brass cords is different in different compounds,depending on the individual compound formulation ingredients.Hence,the type of protection that the sulfide layer offers depends on the formulation.Generally,a higher loading of sulfur in the rubber formulation led to formation of a poor copper sulfide adhesion layer which performed worst under aging and corrosion testing environments.The cords in such cases were found to show corrosion cracking after corrosion testing.Resins along with normal sulfur loading did not show this effect.However,resins along with higher loading of sulfur were found to further deteriorate the corrosion performance of the copper sulfide adhesion layer.We are proposing that the copper sulfide is modified in terms of its crystal structure,which makes it protective in some cases and crack in other cases.Also,a correlation was found between the level of iron migration and the corresponding corrosion performance of the sulfidized tire cord using SIMS analysis on various sulfidized cords.The migration of iron was more pronounced in cases where high sulfur was used,which ultimately resulted in poor corrosion performance.A new mechanism for adhesion degradation of rubber to brass-plated steel cords is proposed based on these corrosion studies.It is proposed that the aging of the cord,which results in loss of rubber-to-brass bonding,is due to iron dissolution from the sulfidized tire cord.It is further discussed how this overall approach of testing the corrosion protection properties of the copper sulfide adhesion layer as a function of formulation ingredients might be useful to formulate newer formulations for better and durable adhesion performance in rubber-to-brass bonding in tires.
机译:我们研究了硫化物层的存在对从轮胎和角鲨烯配方中提取的硫化黄铜涂层钢丝帘线的腐蚀性能的影响。在3%NaCl电解液中测试了从各种橡胶配方中提取的硫化黄铜帘线的腐蚀性能。使用DC极化技术,我们发现硫化铜层使硫化的黄铜线成为被动的,并在严酷的腐蚀环境(3%NaCl)中保护它们免受腐蚀。发现硫化的黄铜线提供的保护程度取决于我们的结果表明,硫化化合物的黄铜帘线上形成的硫化物层的类型在不同的化合物中是不同的,具体取决于各个化合物制剂的成分。因此,硫化物层提供的保护类型取决于通常,橡胶配方中较高的硫含量会导致形成硫化铜附着力差的层在老化和腐蚀测试环境下表现最差。在这种情况下,帘线在腐蚀测试后显示出腐蚀开裂。树脂和正常的硫负荷没有显示出这种效果。我们发现,硫进一步恶化了硫化铜粘附层的腐蚀性能。我们建议对硫化铜的晶体结构进行改性,使其在某些情况下具有保护性,在其他情况下具有开裂性。通过对各种硫化帘线进行SIMS分析,发现了铁迁移水平与硫化轮胎帘线的相应腐蚀性能之间的关系。在使用高硫的情况下,铁的迁移更为明显,最终导致不良的腐蚀性能。在这些腐蚀研究的基础上,提出了橡胶对镀黄铜钢帘线的粘合降解机理。有人建议将帘线的老化归因于硫化轮胎帘线中的铁溶解,从而导致橡胶与黄铜之间的结合力丧失。进一步讨论了这种测试铜腐蚀防护性能的整体方法硫化粘合层作为配方成分的函数可能有助于配制更新的配方,从而在轮胎的橡胶-黄铜粘合中获得更好和持久的粘合性能。

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