Experimental Study on the Curing Process of Styrene-Butadiene-Rubber

H. Tsuji, S. Nozu, H. Miura, Kenji Onishi
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引用次数: 2

Abstract

This is the second paper of a series that describes the curing process of styrene-butadiene-rubber packed in a cylindrical mold with inner diameter of 74.6 mm. Present paper mainly describes the curing process under the mold cooling stage. Sulfur was used as the curing agent and the sulfur concentration ranged from 1.0 to 5.0 weight percent. The mold temperature was controlled in two stages. The mold was heated at 414 K for 45 min. then switched off, and the mold was cooled by natural convection to the surroundings up to 75 min. Time-dependent radial distributions of the temperature profile and the crosslink density were measured in the cooling stage. It was confirmed that the curing reaction was related strongly to the temperature field. In the cooling stage, rubber temperature decreased in the outer zone whereas overshooted in the inner zone. The degree of cure at the rubber center reached to around 0.8 at time 45–60 min. elapsed after taking the heater off for sulfur concentration of 1 and 3 weight percent.
丁苯橡胶固化工艺的实验研究
这是描述在内径为74.6 mm的圆柱形模具中填充丁苯橡胶固化过程的系列论文的第二篇。本文主要介绍了模具冷却阶段下的固化过程。采用硫作为固化剂,硫的浓度为1.0 ~ 5.0质量%。模具温度控制分两个阶段进行。模具在414 K下加热45分钟,然后关闭,模具通过自然对流冷却到周围环境75分钟。在冷却阶段测量温度分布和交联密度随时间的径向分布。结果表明,固化反应与温度场密切相关。在冷却阶段,外区橡胶温度下降,内区橡胶温度升高。当硫浓度为1和3重量%时,关闭加热器45-60分钟后,橡胶中心的硫化度达到0.8左右。
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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