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Mechanism analysis of Eucommia ulmoides gum reducing the rolling resistance and the application study in green tires

机译:杜仲紫外线降低滚动阻力的机理分析及绿色轮胎应用研究

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Eucommia ulmoides (EU) gum is a natural polymer material extracted from Eucommia ulmoides (EU) oliver, which can be applied in the tire industry to reduce the rolling resistance of the tread compound and save the energy. However, the mechanism is not explicit, which limits EU gum to be applied widely. Therefore, the crystallization characteristics and mechanical properties of EU gum with different cross-linking densities are studied systematically to reveal the mechanism. It is found that the "forced crystallization", namely the crystallization of EU gum is hindered by the internal stress caused by numerous cross-linking points, is the main reason to reduce the rolling resistance. When the temperature reaches the melting point (about 60 degrees C), the EU gum converts into the random elastic network state immediately under the internal stress without the viscous sliding existed in the traditional molten polymer material, which greatly decreases the tan delta value at 60 degrees C, an index can evaluate the rolling resistance of tread material. Compared with the pure EU gum, the tan delta value at 60 degrees C decreases with a maximum drop of 45.2% under the forced crystallization caused by vulcanizing. However, EU gum cannot be made into tire directly for its crystallization at ambient temperature, which damages the high elastic property of tire. So EU gum is blended into natural rubber (NR) and reinforced by the carbon black. As a result, the comprehensive properties are improved when the content of EU gum is controlled lower than 30phr. Compared with NR nanocomposite, the NR/EU gum nanocomposite with 10phr EU gum can reduce the rolling resistance by 25.6% and improve the abrasion resistance by 9.5%.
机译:杜仲(EuC)ulmoides(欧盟)胶是由杜仲(欧盟)oliver中提取的天然聚合物材料,其可应用于轮胎工业中以降低胎面化合物的滚动阻力并节省能量。然而,该机制不明确,限制欧盟口香糖广泛应用。因此,系统地研究了具有不同交联密度的Eu Gum的结晶特性和机械性能,以显示该机制。发现“强制结晶”,即欧盟胶的结晶受到多次交联点引起的内应力阻碍的,是降低滚动阻力的主要原因。当温度达到熔点时(约60℃),Eu Gum在没有传统熔融聚合物材料中存在的内应力下立即转化为随机弹性网络状态,其在传统的熔融聚合物材料中存在,这极大地降低了60的Tan Delta值度C,指数可以评估胎面材料的滚动阻力。与纯EU口香糖相比,60℃的TANδ值随硫化引起的强制结晶下的最大滴加为45.2%。然而,欧盟口香糖不能直接进入轮胎,以便在环境温度下结晶,这破坏了轮胎的高弹性性能。因此,欧盟口香糖被混合成天然橡胶(NR)并由炭黑加固。结果,当欧盟胶的含量低于30phr时,改善了综合性质。与NR纳米复合材料相比,具有10PhR欧盟胶的NR / Eu Gum纳米复合材料可将轧制性降低25.6%,并提高耐磨性9.5%。

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