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Foaming of wood flour/polyolefin/layered silicate composites.

机译:木粉/聚烯烃/层状硅酸盐复合材料的发泡。

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摘要

This research provides a new insight on various properties, such as rheological, mechanical, and flame-retarding properties, as well as the foaming behaviors of wood flour/plastic composites (WPCs) through the addition of a small amount of nanosized clay particles. Although WPCs have replaced natural wood in many applications, their industrial usage has been limited because of their weak modulus, low impact strength, low screwing-ability/nailing-ability, high density compared to natural wood, as well as their flammability compared to plastics. In this context, the incorporation of nanoclay and foam structure into WPC has been studied to dramatically alleviate these drawbacks.Wood flour composites with high levels of clay dispersion were synthesized successfully using a general new route (i.e., maleated-polyolefin-based clay masterbatch and dilution). The effects of nanoclay particles on the rheological, thermal, and mechanical properties were identified. In addition, it was demonstrated that a small amount of well-dispersed nanoclay in WPC significantly improved flame retardancy of WPCs. The mechanism of improved flame-retarding effects on nanoparticles was elucidated as well. The relationship between the clay dispersion and the material properties were also clarified. Furthermore, the foaming behaviors of HDPE-based and PP-based wood flour/nanoclay composites were investigated using N2 as the blowing agent in an extrusion process. The cell nucleation and growth behaviors of wood flour/polyolefin/clay composite foams were elucidated while varying the temperature, pressure, wood flour content, clay content and dispersion degrees.The melt blending method was used to prepare different types of clay-filled wood flour composites such as intercalated and exfoliated clay nanocomposites. The effects of key processing variables such as the mixing time, mixing temperature and screw speed on clay dispersion were investigated from the thermodynamic and kinetic point of view. Their nanostructure was determined by using X-ray diffraction (XRD) and transmission electron microscopy (TEM). Accordingly, effective strategies for controlling intercalation and exfoliation of polyolefin/clay nanocomposites were proposed and evaluated.
机译:这项研究通过添加少量纳米粘土颗粒,提供了各种特性的新见解,例如流变,机械和阻燃特性,以及木粉/塑料复合材料(WPC)的发泡行为。尽管木塑复合材料已经在许多应用中取代了天然木材,但由于其模量低,抗冲击强度低,拧紧能力/钉合能力低,与天然木材相比密度高以及与塑料相比的易燃性,其工业用途受到了限制。 。在这种情况下,已经研究了将纳米粘土和泡沫结构结合到WPC中以显着减轻这些缺点的方法。采用通用的新方法成功地合成了具有高粘土分散度的木粉复合材料(即,马来化聚烯烃基粘土母料和稀释)。确定了纳米粘土颗粒对流变学,热学和机械性能的影响。此外,已证明在WPC中少量分散良好的纳米粘土可显着提高WPC的阻燃性。还阐明了对纳米颗粒的阻燃效果改善的机理。还阐明了粘土分散体与材料性能之间的关系。此外,在挤出过程中,以氮气为发泡剂,研究了HDPE基和PP基木粉/纳米粘土复合材料的发泡行为。在改变温度,压力,木粉含量,黏土含量和分散度的情况下,阐明了木粉/聚烯烃/粘土复合泡沫的泡孔成核和生长行为。采用熔融共混法制备了不同类型的粘土填充木粉复合材料,例如插层和脱落的粘土纳米复合材料。从热力学和动力学的角度研究了关键工艺变量如混合时间,混合温度和螺杆速度对粘土分散的影响。通过使用X射线衍射(XRD)和透射电子显微镜(TEM)确定其纳米结构。因此,提出并评估了控制聚烯烃/粘土纳米复合材料插层和剥离的有效策略。

著录项

  • 作者

    Lee, Yoon Hwan (Kevin).;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Agriculture Wood Technology.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 198 p.
  • 总页数 198
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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