Stress softening in rubber vulcanizates. Part I. Use of a strain amplification factor to describe the elastic behavior of filler‐reinforced vulcanized rubber

硫化 天然橡胶 材料科学 复合材料 炭黑 体积热力学 软化 模数 肿胀 的 压力(语言学) 粒子(生态学) 拉伤 粘弹性 应力-应变曲线 热力学 变形(气象学) 物理 医学 语言学 哲学 海洋学 内科学 地质学
作者
L. Mullins,N. R. Tobin
出处
期刊:Journal of Applied Polymer Science [Wiley]
卷期号:9 (9): 2993-3009 被引量:471
标识
DOI:10.1002/app.1965.070090906
摘要

Abstract Measurements of Young's modulus of vulcanized rubbers containing thermal carbon black show the predicted dependence on the volume concentration given by relationships derived for a suspension of spherical particles, for example, that due to Guth, Simha, and Gold which gives E = E 0 (1 + 2.5 c + 14.1 c 2 ). A simple interpretation of the results is that the strain in the rubber is increased by the presence of filler so that the ratio of the average strain to the measured overall strain is given by the factor X = 1 + 2.5 c + 14.1 c 2 . This factor was used to analyze simple extension stress–strain data obtained at larger extensions. For this purpose the Mooney‐Rivlin relation was used to describe the behavior of the rubber phase. Values of C 1 independent of the volume concentration and in close accord with measurements of the equilibrium volume swelling of the rubbers were obtained. Values of λ * were also consistent with those of C 1 . Analysis of stress–strain data obtained on rubbers containing smaller particle‐sized carbon blacks is more complex. For these materials the relation due to Guth, viz., E = E 0 (1 + 0.67 fc + 1.62 f 2 c 2 ), was chosen. By the choice of suitable values of f , good agreement with the Mooney‐Rivlin stress–strain relation was achieved at volume concentrations less than about 0.15.
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