首页> 外文期刊>Journal of Applied Polymer Science >Relation between activation energy and induction in rubber sulfur vulcanization: An experimental study
【24h】

Relation between activation energy and induction in rubber sulfur vulcanization: An experimental study

机译:橡胶硫化活化能量与诱导的关系:实验研究

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

The article presents the possibility to use the so-called frequency factors in order to select the optimal temperature to mix rubber blend recipes before vulcanization without inducing premature crosslinking. As secondary result of the research, it provides a very simple approach to evaluate induction assuming a first order kinetic approach. It has been frequently observed that the activation energy in a first order rubber vulcanization scheme appears to be function of the particular activators used and that activation energy links to the so-called waiting time (and induction) by means of the frequency factor through an exponential relationship. A total of 212 rheometer curves are experimentally obtained and suitably postprocessed, consisting of pure natural rubber (NR), polybutadiene (PB), and 50-50 or 70%-30% NR-PR blends in presence of different concentrations of sulfur and accelerants (diphenyl guanidine [DPG] andN-t-butylbenzothiazole-sulfenamide [TBBS]). Data reduction is carried out to have an insight into the most suitable temperature to utilize in the different cases in order to: (a) Obtain the best mixed blends without risking premature vulcanization and (b) design the induction phase without over vulcanize the blend and/or delaying curing because the time required is too long. Waiting time and induction are evaluated by means of a well-established exponential law requiring the knowledge of the activation energy (assuming for the sake of simplicity that crosslinking occurs following a first order reaction kinetic law) and a constant called "frequency factor". Frequency factor, considering all reactions monomolecular for the sake of simplicity, is assumed of the order of magnitude of 10(-13)-10(-14)s. All experimental data carried out are critically compared and a wide explanation of the expected induction times and most suitable temperatures to use in the mixing phase is provided in the different cases considered. The article provides a meaningful insight into the importance of the link existing among activation energy, vulcanization recipe (with particular regard to concentration of accelerants, blend between two rubbers with very different activation energies and interaction between two accelerants) and mixing temperature to adopt before curing.
机译:本文提出了使用所谓的频率因子来选择最佳温度的可能性,以便在硫化前混合橡胶共混配方,而不会导致过早交联。作为研究的第二个结果,它提供了一个非常简单的方法来评估归纳假设一阶动力学方法。人们经常观察到,一级橡胶硫化方案中的活化能似乎是所用特定活化剂的函数,并且活化能通过指数关系的频率因子与所谓的等待时间(和诱导)相联系。在不同浓度的硫和促进剂(二苯基胍[DPG]和N-t-丁基苯并噻唑硫酰胺[TBBS])存在下,共获得212条流变仪曲线,并进行适当的后处理,这些曲线由纯天然橡胶(NR)、聚丁二烯(PB)和50-50或70%-30%NR-PR共混物组成。进行数据缩减是为了深入了解在不同情况下使用的最合适温度,以便:(a)在不存在过早硫化风险的情况下获得最佳混合共混物;(b)在不过度硫化共混物和/或延迟固化(因为所需时间太长)的情况下设计诱导阶段。等待时间和诱导通过一个完善的指数定律进行评估,该定律要求了解活化能(为简单起见,假设交联发生在一级反应动力学定律之后)和一个称为“频率因子”的常数。为简单起见,考虑到所有反应均为单分子反应,假设频率因子的数量级为10(-13)-10(-14)s。对进行的所有实验数据进行了严格比较,并对所考虑的不同情况下的预期诱导时间和混合阶段使用的最合适温度进行了广泛解释。这篇文章对活化能、硫化配方(特别是促进剂浓度、两种不同活化能的橡胶之间的混合以及两种促进剂之间的相互作用)和硫化前的混合温度之间存在的联系的重要性提供了有意义的见解。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号