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The Effects of Crosslinking on Foaming of EVA.

机译:交联对EVA发泡的影响。

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摘要

The effects of crosslinking on EVA foaming are studied in this thesis. A fundamental approach was applied to describe the influences of crosslinking on EVA/gas viscosities, gas solubility and diffusivity in EVA, EVA foaming nucleation and early stage of bubble growth, which leads to a better understanding of the plastic foaming mechanism.;Although crosslinked polyolefin foaming technology has been well applied in industry, more fundamental and thorough studies are demanded to understand the mechanism, which can serve to improve the present technology. The shear and extensional viscosities have been measured for the chemically crosslinked EVA with dissolved gas which could not be found from literature. Furthermore, by controlling the crosslinking agent amount, the polymer melt strength/viscosity can be controlled, so as to obtain optimum foam morphology. The crosslinking also has effects on the diffusivity and solubility of a blowing agent inside EVA. The solubility and the diffusivity of the blowing agent in the EVA decrease with the crosslinking degree increases. The diffusivity decrease makes more gas is utilized for the foaming rather than leak out of the polymer matrix quickly.;This thesis also presents the fundamental studies on the effects of crosslinking on cell nucleation and early bubble growth. Theoretical work and in-situ visualization experimental results indicate that partial crosslinking leads to higher cell nucleation density and slower bubble growth, both of which benefit a fine-cell foam morphology generation.;Last but not least, an optimized foaming process was conducted to produce chemically crosslinked EVA foams with large expansion ratios in a batch system, using a chemical blowing agent. The results determine that an optimal crosslinking degree is critical for the crosslinked EVA foaming with maximum expansion ratio. Furthermore, all research results not only benefit the foaming of crosslinked EVA, but also serve the better production of other crosslinked polyolefin foams.
机译:本文研究了交联对EVA发泡的影响。采用了一种基本的方法来描述交联对EVA /气体粘度,EVA中气体溶解度和扩散性,EVA发泡成核作用和气泡生长早期的影响,从而使人们更好地理解了塑料发泡机理。发泡技术已在工业中得到很好的应用,需要更深入,更深入的研究来理解其机理,这可以用来改进本技术。已经测量了用溶解气体对化学交联的EVA的剪切粘度和拉伸粘度,这在文献中是找不到的。此外,通过控制交联剂的量,可以控制聚合物的熔体强度/粘度,从而获得最佳的泡沫形态。交联还影响发泡剂在EVA内部的扩散性和溶解性。发泡剂在EVA中的溶解度和扩散度随着交联度的增加而降低。扩散率的降低使得更多的气体被用于发泡而不是迅速从聚合物基体中泄漏出去。;本论文还提出了交联对细胞成核和早期气泡生长影响的基础研究。理论工作和原位可视化实验结果表明,部分交联导致较高的泡孔成核密度和较慢的气泡生长,两者均有利于产生细孔泡沫形态。最后但并非最不重要的是,进行了优化的发泡工艺以生产使用化学发泡剂在批处理系统中以较大的膨胀比进行化学交联的EVA泡沫。结果确定最佳的交联度对于具有最大膨胀比的交联的EVA发泡至关重要。此外,所有研究结果不仅有益于交联EVA的发泡,而且还有助于更好地生产其他交联的聚烯烃泡沫。

著录项

  • 作者

    Chen, Nan.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Engineering Chemical.;Engineering Mechanical.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 129 p.
  • 总页数 129
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:43:45

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