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Study of atmospheric pressure weakly ionized plasma as surface compatibilization technique for improved plastic composites loaded with cellulose based fillers.

机译:大气压弱电离等离子体作为表面相容技术的研究,用于改进的纤维素复合填料的塑料复合材料。

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摘要

Atmospheric pressure plasmas have gained considerable interest from researchers recently for their unique prospective of engineering surfaces with plasma without the need of vacuum systems. They offer the advantage of low energy consumption, minimal capital cost and their simplicity as compared to conventional low pressure plasmas make them easy to upscale from laboratory to industry size. The present dissertation summarizes results of our attempt at applying atmospheric pressure weakly ionized plasma (APWIP) to the engineering of plastic composites filled with cellulose based substrates. An APWIP reactor was designed and built based on a multipoint-to-grounded ring and screen configurations. The carrier gas was argon and acetylene serves as the precursor molecule. The APWIP reactors showed capability of depositing plasma polymerized coating rich in carbon on substrates positioned within the electrode gap as well as downstream of the plasma discharge into the afterglow region. Our findings show that films grow by forming islands which for prolonged deposition time grow into thin films showing nodules, aggregates of nodules and microspheres. They also show chemical structure similar to films deposited from hydrocarbons with other conventional plasma techniques. The plasma polymerized deposits were used on substrates to modify their surface properties. Results show the surface of wood veneer and wood flour can be finely tuned from hydrophilic to hydrophobic. It was achieved by altering the topography of the surfaces along with their chemical composition. The wettability of wood veneer was investigated with contact angle measurements on capacitive drops and the capillary effect was utilized to assess surface properties of wood flour exposed to the discharges.
机译:大气压等离子体最近因其无需真空系统即可使用等离子体工程表面的独特前景而引起了研究人员的极大兴趣。与传统的低压等离子相比,它们具有能耗低,投资成本低以及操作简便的优点,因此很容易从实验室规模扩大到工业规模。本文总结了我们在将大气压弱电离等离子体(APWIP)应用于填充纤维素基材料的塑料复合材料工程中的尝试结果。 APWIP反应堆是根据多点接地的环形和屏蔽配置设计和建造的。载气是氩气,乙炔用作前体分子。 APWIP反应器显示了将富含碳的等离子体聚合涂层沉积在位于电极间隙内以及等离子体放电到余辉区域下游的基底上的能力。我们的发现表明,薄膜通过形成岛而生长,这些岛在延长的沉积时间内会长成薄膜,显示出结核,结核的聚集体和微球。它们还显示出与通过其他常规等离子体技术从烃沉积的薄膜相似的化学结构。等离子体聚合沉积物用于在基材上改变其表面性能。结果表明,木皮和木粉的表面可以从亲水性到疏水性进行微调。通过改变表面的形貌及其化学组成来实现。用电容滴的接触角测量研究了木皮的润湿性,并利用毛细效应来评估暴露于放电的木粉的表面性能。

著录项

  • 作者

    Lekobou, William Pimakouon.;

  • 作者单位

    Washington State University.;

  • 授予单位 Washington State University.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 164 p.
  • 总页数 164
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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