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Shear induced orientation in polymer-clay solutions and their influence on the structure in multilayered films.

机译:聚合物-粘土溶液中的剪切诱导取向及其对多层膜结构的影响。

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摘要

The influence of shear on viscoelastic solutions of poly(ethylene oxide) (PEO) and clay (Cloisite, CNA) was investigated by rheology and small angle neutron scattering (SANS) under shear. These measurements determined the shear-induced orientation of the clay and the polymer as well as their relaxation behavior after cessation of shear. Comparison of PEO-CNA solutions (∼100 nm diameter platelets) to previously studied PEO-Laponite gels (∼30 nm diameter platelets) found that the orientation of CNA platelets occurs at much lower shear rates. Additionally, the relaxation times were much longer for CNA platelets than for Laponite platelets.; From these solutions and gels, multilayered nanocomposite films were prepared. Shear-induced orientation of polymer-clay solutions is important to the organization of the clay platelets in the films. The structure was determined by scattering and microscopy techniques. Experimental evidence suggests that clay platelets align within multilayers with their surface normal perpendicular to the spread direction. The unusual orientation of the multilayers persists on multiple length scales from nanometer to micrometer.; As part of an independent research project a series of PEO-Kaolinite (∼1.5 mum diameter platelets) solutions and films were studied and compared to the results mentioned above. Initial rheological studies of the PEO-Kaolinite solutions showed shear thinning behavior and possible flow irregularities. Preliminary investigation of the films made from the solutions suggests that shear orientation is preserved within the film. Continued optimization of the PEO-Kaolinite solutions leading to improved exfoliation of the platelets will result in a novel class of materials with unique properties.
机译:通过流变学和小角度中子散射(SANS)研究了剪切对聚环氧乙烷(PEO)和粘土(Cloisite,CNA)的粘弹性溶液的影响。这些测量确定了粘土和聚合物的剪切诱导取向以及在剪切停止后它们的松弛行为。将PEO-CNA溶液(直径约100 nm的血小板)与以前研究过的PEO-Laponite凝胶(直径约30 nm的血小板)进行比较,发现CNA血小板的取向发生在低得多的剪切速率下。另外,CNA血小板的弛豫时间比Laponite血小板的弛豫时间长得多。从这些溶液和凝胶中,制备了多层纳米复合膜。剪切引起的聚合物-粘土溶液的取向对于薄膜中粘土薄片的组织很重要。通过散射和显微镜技术确定结构。实验证据表明,粘土薄片在多层体内排列,其表面法线垂直于铺展方向。多层的异常取向在从纳米到微米的多个长度尺度上持续存在。作为一项独立研究项目的一部分,研究了一系列PEO-高岭石(约1.5微米直径的血小板)溶液和薄膜,并与上述结果进行了比较。 PEO-高岭石溶液的初步流变学研究表明剪切稀化行为和可能的流动不规则性。对由溶液制成的膜的初步研究表明,剪切取向保持在膜内。 PEO-高岭石溶液的持续优化导致血小板的剥落得到改善,将产生具有独特性能的新型材料。

著录项

  • 作者

    Malwitz, Matthew Michael.;

  • 作者单位

    Louisiana State University and Agricultural & Mechanical College.;

  • 授予单位 Louisiana State University and Agricultural & Mechanical College.;
  • 学科 Chemistry Polymer.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 122 p.
  • 总页数 122
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 高分子化学(高聚物);
  • 关键词

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