LIQUID POLYBUTADIENE EXTENDED ESBR/SILICA WET-MASTERBATCH COMPOSITES FOR IMPROVING ABRASION RESISTANCE AND DYNAMIC PROPERTIES OF TIRE TREAD COMPOUNDS

IF 1.2 4区 工程技术 Q4 POLYMER SCIENCE
Woong Kim, Iz Muhammet, Donghyuk Kim, I. Kim, Jong-Yeop Lee, Wonho Kim
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引用次数: 0

Abstract

Silica wet-masterbatch (WMB) is a well-known technique for manufacturing high-content, highly dispersed silica-filled compounds. Emulsion styrene–butadiene rubber (ESBR)/silica WMB offers several advantages, including excellent silica dispersion and reduced hysteresis, as compared with conventional dry masterbatch (DMB) compound. However, because of the residual emulsifiers in ESBR latex, it can exhibit a decrease in the crosslink density and reductions in its mechanical properties. Moreover, the abrasion resistance cannot be significantly enhanced because of the tradeoff between the improvement in silica dispersion and decrease in crosslink density. Accordingly, the objective of this study was to improve the silica dispersion and abrasion resistance of ESBR/silica WMB compounds by using liquid polybutadiene rubber (LqBR) extended WMB. In detail, three types of LqBR were emulsified to LqBR emulsions, and three types of LqBR extended WMBs were produced by co-coagulating ESBR latex, silane-modified silica, and the LqBR emulsion. A thorough characterization was conducted with emphasis on the silica content, cure characteristics, mechanical properties, abrasion resistance, and dynamic viscoelastic properties. Based on the results, silane-terminated LqBR extended WMB vulcanizate showed a 58% improvement in the 300% modulus, 48% reduced DIN abrasion loss, and a 23% improvement in dynamic properties.
用于改善轮胎胎面化合物耐磨性和动态性能的液态聚丁二烯扩展esbr /二氧化硅湿母粒复合材料
二氧化硅湿母粒(WMB)是一种众所周知的制造高含量、高分散的二氧化硅填充化合物的技术。与传统的干母粒(DMB)相比,乳液型丁苯橡胶(ESBR)/二氧化硅WMB具有优异的二氧化硅分散性和低迟滞性等优点。然而,由于乳化剂残留在ESBR乳胶中,会导致交联密度降低,机械性能下降。此外,由于二氧化硅分散性的改善和交联密度的降低之间的权衡,耐磨性不能显著提高。因此,本研究的目的是通过使用液态聚丁二烯橡胶(LqBR)扩展WMB来改善ESBR/二氧化硅WMB化合物的二氧化硅分散性和耐磨性。将3种类型的LqBR乳化为LqBR乳液,并将ESBR乳液、硅烷改性二氧化硅与LqBR乳液共混制得3种类型的LqBR扩展wmb。进行了全面的表征,重点是二氧化硅含量,固化特性,机械性能,耐磨性和动态粘弹性。结果表明,硅烷端部LqBR扩展WMB硫化胶的模量提高了58%,DIN磨损损失降低了48%,动态性能提高了23%。
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来源期刊
Rubber Chemistry and Technology
Rubber Chemistry and Technology 工程技术-高分子科学
CiteScore
3.50
自引率
20.00%
发文量
21
审稿时长
3.6 months
期刊介绍: The scope of RC&T covers: -Chemistry and Properties- Mechanics- Materials Science- Nanocomposites- Biotechnology- Rubber Recycling- Green Technology- Characterization and Simulation. Published continuously since 1928, the journal provides the deepest archive of published research in the field. Rubber Chemistry & Technology is read by scientists and engineers in academia, industry and government.
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