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Improved properties of dissimilar rubber-rubber blends using plasma polymer encapsulated curatives : a novel surface modification method to improve co-vulcanization

机译:使用等离子体聚合物包封固化剂改善异种橡胶 - 橡胶共混物的性能:一种改进共硫化的新型表面改性方法

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摘要

In industrial applications, different rubber types are often blended to fine-tune or optimize the property portfolio required for successful performance of articles. Considering the complexity of a rubber blend compound, wherein numerous additives are involved, vulcanization or cure mismatch often occurs as an outcome of inhomogeneous distribution of the curatives or imbalanced reactivities of the different rubber phases towards the curatives.udThe solubility study of various curatives in different rubbers was measured with an easy and effective method based on weight up-take by the migration of curative molecules into slightly pre-crosslinked rubbers. The experimental results correlate well with calculated solubility parameter differences. The study provides valuable data for predicting the distribution of curatives in the different phases of dissimilar rubber blends. udA mixing study was carried out by applying the solubility knowledge of curatives in rubbers to improve the properties of unreinforced 50/50 w/w blends of SBR/EPDM (SE) and NBR/EPDM (NE). Different mixing procedures are performed based on the same overall recipe for each rubber blend. Large improvements are achieved for the SE blends, not for the NE blends.udThe surface modification of both sulfur and CBS through plasma polymerization with acetylene, perfluorohexane, and acrylic acid are described. As a result of the plasma surface treatment, the surface energies of sulfur and CBS are decreased and brought closer to the range of the rubber polymers involved in this study. A better co-vulcanisation is achieved in the SE blends with the plasma polyacetylene micro-encapsulated sulfur and CBS, however, appreciable improvements were obtained in the NE blends with only acrylic acid. udSeveral combinations of various plasma coated sulfur and CBS, in carbon black reinforced dissimilar rubber blends. The improvements achieved in the unreinforced rubber blends are again found by using both plasma coated sulfur and plasma coated CBS in carbon black filled blends. Interestingly, a bigger increase in properties is achieved in NE blends instead of in SE blends.udThe blooming behavior of plasma polyacetylene and polyperfluorohexane treated sulfur was determined in carbon black reinforced natural rubber and compared to soluble and insoluble sulfur.
机译:在工业应用中,通常会掺混不同类型的橡胶,以微调或优化制品成功性能所需的性能组合。考虑到涉及许多添加剂的橡胶共混物的复杂性,硫化剂或固化剂的不匹配通常是由于硫化剂的不均匀分布或不同橡胶相对硫化剂的反应性不平衡而导致的。 ud各种硫化剂在水中的溶解度研究根据固化剂分子向轻度预交联橡胶中迁移的吸收量,采用简便有效的方法测量了不同的橡胶。实验结果与计算的溶解度参数差异很好地相关。该研究提供了宝贵的数据,可用于预测不同橡胶共混物不同相中硫化剂的分布。 ud通过应用硫化剂在橡胶中的溶解度知识来改善SBR / EPDM(SE)和NBR / EPDM(NE)的未增强50/50 w / w共混物的性能,从而进行了混合研究。对于每种橡胶混合物,基于相同的总体配方执行不同的混合步骤。 SE共混物实现了很大的改进,而NE NE共混物则没有。 ud描述了通过与乙炔,全氟己烷和丙烯酸的等离子聚合对硫和CBS进行表面改性。等离子体表面处理的结果是,硫和CBS的表面能降低了,并且更接近本研究中涉及的橡胶聚合物的范围。 SE共混物与血浆聚乙炔微囊化硫和CBS的共硫化效果更好,但是,仅丙烯酸的NE共混物获得了明显的改善。 ud在炭黑增强异种橡胶混合物中,各种等离子涂层硫和CBS的几种组合。通过在炭黑填充的共混物中同时使用等离子涂覆的硫和等离子涂覆的CBS,再次发现了未增强橡胶混合物的改进。有趣的是,在NE混合物中而不是SE混合物中,性能得到了更大的提高。 ud在炭黑增强天然橡胶中测定了血浆聚乙炔和聚全氟己烷处理过的硫的起霜行为,并将其与可溶性和不溶性硫进行了比较。

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  • 作者

    Guo Rui;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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