首页> 外文期刊>Rubber Chemistry and Technology >ON THE FILLER FLOCCULATION IN SILICA AND CARBON BLACK FILLED RUBBERS: PART II. FILLER FLOCCULATION AND POLYMER-FILLER INTERACTION
【24h】

ON THE FILLER FLOCCULATION IN SILICA AND CARBON BLACK FILLED RUBBERS: PART II. FILLER FLOCCULATION AND POLYMER-FILLER INTERACTION

机译:关于硅胶和炭黑填充橡胶中的填料絮凝:第二部分。填料絮凝和聚合物-填料相互作用

获取原文
获取原文并翻译 | 示例
           

摘要

Filler flocculation and polymer-filler interaction in silica and carbon black filled rubbers containing different functional end-groups were investigated. Lithium-hexamethyleneimine initiated polymers terminated with a proton (HMI-P-H), SnCl{sub}4 (HMI-P-Sn), and a mixture of SnCl{sub}4 and tetraethyl orthosilicate (HMI-P-TEOS) were employed to determine the affinities of various functionalities toward fillers. Reduced filler flocculation was found for compounds of HMI-P-Sn and HMI-P-TEOS after thermal annealing at 171℃ for 1.5 minutes when compared to the annealed HMI-P-H stock. Curing at the same condition used for annealing gave further suppression of filler flocculation for HMI-P-TEOS stock by increased polymer-filler interaction during cure. Polymer-filler interaction was followed by examining G' strain dependence and the differences in G' obtained between HMI-P-Sn or HMI-P-TEOS and HMI-P-H (δG'). This treatment gave a peak maximum in the δG' plot as a function of strain. The magnitude of the maximum in HMI-P-TEOS stock is double that of HMI-P-Sn stock and increased after thermal annealing. The compound tanδ temperature dependence showed higher hysteresis around the T transition and strong dependence at elevated temperatures was found for HMI-P-TEOS stocks. This increased polymer-filler interaction is manifested with increased 0℃ tanδ and reduced 50℃ tanδ which relates to the improved wet traction and rolling resistance for tires.
机译:研究了含有不同官能端基的二氧化硅和炭黑填充橡胶中的填料絮凝和聚合物-填料相互作用。用六亚甲基亚胺锂引发的质子为末端的聚合物(HMI-PH),SnCl {sub} 4(HMI-P-Sn)以及SnCl {sub} 4和原硅酸四乙酯的混合物(HMI-P-TEOS)确定各种功能对填充剂的亲和力。与退火的HMI-P-H原料相比,在171℃下热退火1.5分钟后,发现HMI-P-Sn和HMI-P-TEOS化合物的填料絮凝减少。通过在固化过程中增加聚合物-填料的相互作用,在与退火相同的条件下进行固化可进一步抑制HMI-P-TEOS原料的填料絮凝。聚合物-填料相互作用之后,检查G'应变依赖性以及HMI-P-Sn或HMI-P-TEOS与HMI-P-H之间的G'差异(δG')。该处理在δG'图中给出了作为应变函数的峰值最大值。 HMI-P-TEOS库存的最大值的大小是HMI-P-Sn库存的最大值的大小,并且在热退火后会增加。对于HMI-P-TEOS,复合tanδ温度依赖性在T跃迁附近表现出较高的磁滞,并且在高温下具有较强的依赖性。聚合物-填料相互作用的增强表现为0℃tanδ升高和50℃tanδ降低,这与轮胎的湿牵引力和滚动阻力得到改善有关。

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