Strain softening of natural rubber composites filled with carbon black and aramid fiber

IF 3 2区 工程技术 Q2 MECHANICS
Zhaopeng Hu, Junwei Zhou, Yihu Song, Qiang Zheng, Wanjie Wang
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引用次数: 3

Abstract

Engineered rubber vulcanizates may contain a low content of short fibers and a high content of nanoparticles while the effects of the different fillers on the softening behavior are not yet explored. Herein, influences of carbon black (CB) and short aramid fiber (AF) on the Payne and Mullins effects of natural rubber composites are investigated for the first time by creating master curves of dynamic modulus or dissipation energy with respect to the straining responses of the matrix. It is revealed that the composite vulcanizates demonstrate the Payne effect characterized by decay of storage modulus, weak overshoot of loss modulus, and very weak high-order harmonics; this effect is mainly dominated by the rubber matrix experiencing microscopic strain amplitude enlarged by the filler. The composite vulcanizates exhibit the Mullins effect that becomes increasingly marked with increasing filler loading and is partially recovered by thermal annealing at relatively high temperatures. The energy dissipation during cyclic tensions is rooted in the viscoelastic deformation of the matrix and the filler-rubber interfacial debonding. The former is marked at room temperature where the rubber phase undergoes a crystallization-melting process during loading-unloading. The latter being marked in the presence of a small content of AF causes yieldinglike deformation for the virgin composites at low tensile strains, and its contribution to the softening is not recoverable during thermal annealing. The results show that the viscoelastic matrix is of importance in controlling the softening of the composite vulcanizates, which will be of guiding significance to conduct research studies on high-performance rubber composites products.
炭黑与芳纶填充天然橡胶复合材料的应变软化研究
工程橡胶硫化胶可能含有低含量的短纤维和高含量的纳米颗粒,而不同的填料对软化行为的影响尚未研究。本文首次研究了炭黑(CB)和短芳纶纤维(AF)对天然橡胶复合材料的Payne和Mullins效应的影响,方法是建立相对于基体应变响应的动态模量或耗散能主曲线。结果表明,复合硫化胶表现出贮存模量衰减、损耗模量弱超调、高次谐波极弱的佩恩效应;这种影响主要是由于填充剂增大了橡胶基体的微观应变幅值。复合硫化胶表现出马林斯效应,该效应随着填料的增加而变得越来越明显,并且在相对较高的温度下通过热退火可以部分恢复。循环拉伸过程中的能量耗散源于基体的粘弹性变形和填料-橡胶界面的脱粘。前者在室温下被标记,橡胶相在加载-卸载过程中经历结晶-熔化过程。后者在少量AF存在的情况下会导致原始复合材料在低拉伸应变下产生屈服变形,并且其对软化的贡献在热处理过程中是不可恢复的。结果表明,粘弹性基体对复合硫化胶的软化具有重要的控制作用,对开展高性能橡胶复合材料制品的研究具有指导意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Rheology
Journal of Rheology 物理-力学
CiteScore
6.60
自引率
12.10%
发文量
100
审稿时长
1 months
期刊介绍: The Journal of Rheology, formerly the Transactions of The Society of Rheology, is published six times per year by The Society of Rheology, a member society of the American Institute of Physics, through AIP Publishing. It provides in-depth interdisciplinary coverage of theoretical and experimental issues drawn from industry and academia. The Journal of Rheology is published for professionals and students in chemistry, physics, engineering, material science, and mathematics.
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