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首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >IR laser radiation induced changes in the IR absorption spectra of thermoplastic and thermosetting polymers
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IR laser radiation induced changes in the IR absorption spectra of thermoplastic and thermosetting polymers

机译:红外激光辐射引起热塑性和热固性聚合物的红外吸收光谱变化

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This paper demonstrates that powerful laser radiation causes changes in the absorbance spectra of epoxy resin, polyethylene and polysulfone. Thin polymer films were located between IR AgBrCl optical fibres and exposed to the radiation of a CO_2 laser. The output of the laser source was varied in the range 0-8.5 W. The absorbance spectra were recorded using a Fourier transform infrared (FTIR) spectrophotometer. It was revealed that characteristic polymer absorbance peaks decay under exposure to the powerful IR light. The apparent dependence of peak magnitude on IR radiation power has been established. We showed that the phenomenon of the absorbance peak disappearances associated wtih the polymers-thermoplastic (including an engineering polymer such as polysulfone) and thermosetting-is of a threshold nature. The mathematical theory of the observed effect was derived. We propose that the effect under discussion is caused by the oxygen-free thermal action of IR radiation on the chemical structure of the polymer materials. The revealed effect could be effectively used to lower the losses in adhesive contacts of IR optical elements. The novelty of the proposed method lies in the fact that thermal treatment is localized strictly within the adhesive layer; optical elements to be contacted (fibres, lenses, etc) which are highly IR transparent do not experience the IR radiation, but the polymer adhesive is subjected to a temperature rise.
机译:本文证明了强大的激光辐射会导致环氧树脂,聚乙烯和聚砜的吸收光谱发生变化。聚合物薄膜位于IR AgBrCl光纤之间,并暴露于CO_2激光辐射下。激光源的输出在0-8.5 W范围内变化。使用傅立叶变换红外(FTIR)分光光度计记录吸收光谱。揭示了特征性聚合物吸收峰在暴露于强红外光下衰减。已经确定了峰值幅度对红外辐射功率的明显依赖性。我们表明,与热塑性聚合物(包括工程聚合物,如聚砜)和热固性聚合物相关的吸收峰消失现象具有阈值性质。得出了观察到的效果的数学理论。我们建议讨论中的影响是由IR辐射对聚合物材料化学结构的无氧热作用引起的。所揭示的效果可以有效地用于降低IR光学元件的粘合剂接触中的损耗。所提出的方法的新颖性在于热处理严格地局限于粘合剂层内。高度红外透明的要接触的光学元件(纤维,透镜等)不会经历红外辐射,但是聚合物粘合剂会经历温度上升。

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