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EFFECT OF PROCESSING ADDITIVES ON CARBON BLACK DISPERSION AND GRIP PROPERTY OF HIGH-PERFORMANCE TIRE TREAD COMPOUND

机译:加工助剂对高性能轮胎胎面胶的炭黑分散和抓地性能的影响

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Rubber and carbon black compounds show complex behaviors in their mixing process due to their complicated microcomposite structure. Therefore, establishing a clear relationship between the mixing state of the rubber compound and the physical properties of its cured rubber has still remained to be solved. in spite of formidable efforts by many rubber technologists. This paper investigated the influence of a processing additive on the carbon black incorporation and its dispersion behavior by inspecting Banbury power curves. From this investigation, we considered that good wettability toward the carbon black surface was necessary for processing additives in order to improve carbon black dispersion. The function of the processing additive was thought to enhance the surface lubrication of carbon black for disagglomeration in the early steps of mixing. The dry grip properties of a tire was estimated from the temperature dependence of dynamic viscoelastic properties of rubber compounds, with improved carbon black dispersion due to the processing additive; and it was confirmed by an actual tire running evaluation. Consequently, we found that tread compounds with improved carbon black dispersion had a remarkable effect on tire dry-grip properties at high temperatures. [References: 18]
机译:橡胶和炭黑化合物由于其复杂的微复合结构而在混合过程中表现出复杂的行为。因此,在橡胶混合物的混合状态与其固化橡胶的物理性能之间建立清晰的关系仍然有待解决。尽管许多橡胶技术人员做出了巨大的努力。通过检查班伯里功率曲线,研究了加工助剂对炭黑掺入及其分散行为的影响。通过该调查,我们认为为了改善炭黑的分散性,加工添加剂必须对炭黑表面具有良好的润湿性。认为加工添加剂的功能可增强混合早期阶段炭黑的表面润滑,以使其解聚。轮胎的干抓地力性能是根据橡胶混合物的动态粘弹性能的温度依赖性来估算的,由于加工助剂,炭黑的分散性得到了改善;并通过实际轮胎行驶评估得到确认。因此,我们发现具有改善的炭黑分散性的胎面胶对高温下的轮胎干抓地性能具有显着影响。 [参考:18]

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