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Application Of Ribbon Burners To The Flame Treatment Of Polypropylene Films

机译:碳带燃烧器在聚丙烯薄膜火焰处理中的应用

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This article focuses on recent advances in the understanding of industrial gas burners. Ribbon burners have been chosen as the focus of the review because of the advantages presented by the burner arrangement and burner performance. The ribbon burner configuration, because of its ability to provide large flame surface and flame stabilization, has a large range of stability as flow rate, equivalence ratio and reactant gas composition are varied. Discussed in detail is the application of ribbon burners in the surface modification, or flame treatment, of polymer films to increase the wettability of a polymer surface. Optimum treatment requires a spatially homogeneous post-flame reaction zone even with burners up to 3 m in length. For methane/air flames, the optimum equivalence ratio is near 0.93 where the active oxidizing-species concentration near the surface is a maximum. Chemical kinetic models of the impinging flame and surface oxidation chemistry of a polymer film are also discussed. The model predictions are in good qualitative agreement with the available understanding of the flame variables affecting surface treatment and the expected oxidized species on the polymer surface.
机译:本文重点介绍对工业燃气燃烧器的最新了解。由于燃烧器的布置和燃烧器的性能具有优势,因此选择了带状燃烧器作为本研究的重点。带状燃烧器构造由于其提供大的火焰表面和火焰稳定性的能力,因此随着流速,当量比和反应气体组成的变化而具有大范围的稳定性。详细讨论了带式燃烧器在聚合物膜的表面改性或火焰处理中的应用,以增加聚合物表面的润湿性。最佳处理要求在空间上均匀的火焰后反应区,即使燃烧器的长度不超过3 m。对于甲烷/空气火焰,最佳当量比接近0.93,其中靠近表面的活性氧化物质浓度最大。还讨论了撞击火焰的化学动力学模型和聚合物膜的表面氧化化学。模型预测与影响表面处理的火焰变量以及聚合物表面上预期的氧化物种的现有理解具有良好的定性一致性。

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