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首页> 外文期刊>Applied clay science >Vulcanization, interfacial interaction, and dynamic mechanical properties of in-situ organic amino modified kaolinite/SBR nanocomposites based on latex compounding method
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Vulcanization, interfacial interaction, and dynamic mechanical properties of in-situ organic amino modified kaolinite/SBR nanocomposites based on latex compounding method

机译:基于胶乳混合法的原位有机氨基改性高岭石/ SBR纳米复合材料的硫化,界面相互作用及动态力学性能

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摘要

With the help of soluble amino modifiers, the vulcanization delay of kaolinite/SBR composites is investigated to shorten the optimum curing time of the filled rubber system based on the latex compounding method (LCM). Compared to the traditional dry blending method, the LCM had better kaolinite dispersion in the rubber matrix. The two different amino modifiers, i.e., quaternary ammonium salt ((CH3)(3)-N-CH2-) and amino silane (H2N-(CH2)(2)-NH-(CH2)(2)-NH-(CH2)(3)-) were selected in the in-situ modification through two different routes: physical adsorption and chemical bonding. The Moving Die Rheometer revealed that the curing process with the amino group could accelerate the crosslinking reaction, and the kaolinite grafted KH892 nanocomposite showed the best vulcanization performance. An improvement in the curing rate and mechanical properties of kaolinite/SBR composite is ascribed to the outstanding distribution and chemical bonding of nanokaolinite lamellae in the vulcanizate. Furthermore, SEM, HR-TEM, and DMA results demonstrated that both the dispersion of kaolinite in the vulcanizate and the wet skid resistance of the kaolinite/SBR hybrid materials are superior to the composite made by the dry blending method.
机译:借助可溶性氨基改性剂,研究了高岭石/ SBR复合材料的硫化延迟,以缩短基于胶乳混合法(LCM)的填充橡胶体系的最佳固化时间。与传统的干混法相比,LCM在橡胶基质中具有更好的高岭石分散性。两种不同的氨基改性剂,即季铵盐((CH3)(3)-N-CH2-)和氨基硅烷(H2N-(CH2)(2)-NH-(CH2)(2)-NH-(CH2 )(3)-)是通过两种不同的途径进行原位修饰的:物理吸附和化学键合。动模流变仪表明,氨基的固化过程可以促进交联反应,高岭石接枝的KH892纳米复合材料表现出最佳的硫化性能。高岭石/ SBR复合材料的固化速率和机械性能的提高归因于硫化胶中纳米高岭土薄片的出色分布和化学键合。此外,SEM,HR-TEM和DMA结果表明,高岭石在硫化胶中的分散性和高岭石/ SBR杂化材料的耐湿滑性均优于干混法制备的复合材料。

著录项

  • 来源
    《Applied clay science》 |2020年第2期|105366.1-105366.10|共10页
  • 作者

  • 作者单位

    China Univ Min & Technol Sch Geosci & Surveying Engn Beijing 100083 Peoples R China;

    Zaozhuang Sanxing Adv Mat Co Ltd Zaozhuang Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Kaolinite; in-situ modification; Amino group; Vulcanization delay; Latex compounding method;

    机译:高岭石;原位修饰;氨基硫化延迟;乳胶复合方法;

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