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用于导电绿色轮胎应用的含二氧化硅的聚丁二烯/天然橡胶复合材料中的单壁和多壁碳纳米管

Single-Walled and Multiwalled Carbon Nanotubes in Polybutadiene/Natural Rubber Composites Containing Silica for Conductive Green-Tire Application.

作者信息

Campini Priscila Almeida Lucio, Ornaghi Felipe Gustavo, Braum Marcus Vinicius, Cargnin Elyff, Gramcianinov Guilherme Barnez, Lima Diego Moreira, Pereira Renata Dos Santos, Dos Santos Demétrio Jackson, Chinellato Anne Cristine, Vidotti Suel Eric, Carastan Danilo Justino, Champeau Mathilde

机构信息

Center of Engineering, Modeling and Applied Social Sciences, Federal University of ABC, Santo André, SP 09210-580, Brazil.

PROMETEON TYRE GROUP, Av. Alexandre de Gusmão, 487 - Vila Homero Thon, Santo André, SP 09111-310, Brazil.

出版信息

ACS Omega. 2025 Jul 1;10(27):29241-29255. doi: 10.1021/acsomega.5c01638. eCollection 2025 Jul 15.

Abstract

This study investigates the influence of commercial single-walled (SWCNT) and multiwalled carbon nanotubes (MWCNT) on the properties of natural rubber/polybutadiene composites containing silica for green tire applications. Composites were prepared on a laboratory scale using mixing protocols simulating conventional industrial methods, varying the nanotube content while keeping a fixed silica concentration of 55 phr. First, SWCNT and MWCNT were characterized in terms of atomic composition, number of defects, and morphology. Electrical conductivity measurements on nanocomposites indicate that SWCNT achieves the percolation threshold at lower concentrations (between 8 and 10 phr) compared to MWCNT (between 10 and 13.5 phr). Electrical conductivity in the range of antistatic properties (10 to 10 S·m) is achieved at 10 and 13.5 phr in both cases. Differences in nanotube dispersion were observed, with SWCNT forming long bundles and MWCNT exhibiting more entangled structures. Dynamic mechanical analysis shows that SWCNT increases the storage modulus and reduces the glass transition peak width more effectively than MWCNT, indicating superior reinforcement and reduced polymer mobility. Considering the sample with good dispersion and desired electrical conductivity (10 phr SWCNT and 13.5 phr MWCNT), dynamic mechanical analysis indicated that MWCNT leads to lower values of rolling resistance than SWCNT, while wet grip improves with the addition of SWCNT. The study concludes that SWCNT provides a more efficient conductive pathway and reinforcing effect than MWCNT at equivalent loadings, offering insights into optimizing conductive elastomer composites for energy-efficient tire technologies.

摘要

本研究调查了商用单壁碳纳米管(SWCNT)和多壁碳纳米管(MWCNT)对含二氧化硅的天然橡胶/聚丁二烯复合材料性能的影响,该复合材料用于绿色轮胎应用。在实验室规模下,使用模拟传统工业方法的混合方案制备复合材料,在保持二氧化硅浓度固定为55 phr的同时改变纳米管含量。首先,对SWCNT和MWCNT进行了原子组成、缺陷数量和形态方面的表征。对纳米复合材料的电导率测量表明,与MWCNT(在10至13.5 phr之间)相比,SWCNT在较低浓度(8至10 phr之间)时达到渗流阈值。在两种情况下,分别在10 phr和13.5 phr时实现了抗静电性能范围内(10至10 S·m)的电导率。观察到纳米管分散存在差异,SWCNT形成长束状,而MWCNT呈现出更多缠结结构。动态力学分析表明,SWCNT比MWCNT更有效地提高储能模量并减小玻璃化转变峰宽,表明其具有优异的增强作用和降低的聚合物流动性。考虑到具有良好分散性和所需电导率的样品(10 phr SWCNT和13.5 phr MWCNT),动态力学分析表明,MWCNT导致的滚动阻力值低于SWCNT,而添加SWCNT可改善湿抓地力。该研究得出结论,在同等负载下,SWCNT比MWCNT提供了更有效的导电途径和增强效果,为优化用于节能轮胎技术的导电弹性体复合材料提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f06/12268747/0baea292cfe3/ao5c01638_0001.jpg

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