炭黑/橡胶复合材料的力学性能及耗散能

R. Chollakup, Supitta Suethao, P. Suwanruji, J. Boonyarit, W. Smitthipong
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引用次数: 10

摘要

通过研究炭黑对橡胶复合材料性能的影响,探讨其在低滚动阻力载重轮胎生产中的应用价值。用N330(粗级26 ~ 30 nm)和N220(细级20 ~ 25 nm)不同牌号的炭黑作为天然橡胶补强剂。研究了不同配比的炭黑N330(40、45、50、55)和N220(30、35、40、50)的影响。添加N220的橡胶复合材料与炭黑的相互作用大于添加N330的橡胶复合材料。随着炭黑比的增大,橡胶复合材料的穆尼粘度增大。橡胶硫化后,通过动态力学分析、拉伸强度和热积聚来表征样品。结果表明,随着炭黑掺量的增加,橡胶复合材料的强度有所提高。有趣的是,在相同的结合胶水平下,与N330相比,添加N220的橡胶复合材料具有更低的耗散能、热积聚和更好的力学性能。该研究表明,在低滚动阻力卡车轮胎中,添加适量的炭黑N220可以改善橡胶复合材料的一些理想特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanical properties and dissipation energy of carbon black/rubber composites
The effects of carbon black on the properties of rubber composites were studied in order to explore their value in producing low rolling resistance truck tires. Carbon black with different grades, N330 (coarser grade of 26–30 nm) and N220 (finer grade of 20–25 nm), was used as a reinforcing agent of natural rubber. The effects of different ratios of carbon black N330 at 40, 45, 50 and 55 parts per hundred rubber (phr) and N220 at 30, 35, 40 and 50 phr were investigated. Rubber composites with N220 had greater rubber/carbon black interaction than those with N330. The Mooney viscosity of rubber composite increased when the carbon black ratio increased. After vulcanisation of rubber, the samples were characterised by dynamic mechanical analysis, tensile strength and heat build-up. The results showed that the strength of rubber composites increased with increasing carbon black ratios. Interestingly, at the same bound rubber level, rubber composites with N220 presented lower dissipation energy, heat build-up and better mechanical properties than those with N330. This study indicated that reinforcement with an optimum amount of carbon black N220 would improve several desirable characteristics of rubber composites when used in low rolling resistance truck tires.
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