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Structure-property correlations of polymeric films for transparent insulation wall applications. Part 2: Infrared optical properties

机译:用于透明绝缘墙应用的聚合物薄膜的结构特性相关性。第2部分:红外光学特性

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In this paper the results of a research project to establish a fundamental understanding of the physical relationships between the material structure and the infrared optical properties of polymeric transparent insulation (TI) materials are described. First, a systematic characterization of potential materials for TI applications in respect to their relevant physical properties in the infrared radiation range was done. Second, based on the investigation of polymer films with different thicknesses model functions for the infrared optical properties were established. Third, the infrared optical properties were interpreted on base of polymerphysical relations. The characterization in the infrared range and the calculation of infrared optical film properties have revealed, that various functional groups of the macromolecular structure are highly absorbing. For polymers with service temperatures of about 100℃ the carbon-oxygen single bond was identified as highly effective. For 50 μm thick films a good correlation between the concentration of the functional carbon-oxygen group and the non-spectral infrared optical thickness as well as the hemispherical emittance was found. An outstanding performance profile for TI wall applications with black absorbers was obtained for cellulose based materials.
机译:在本文中,描述了建立对聚合物透明绝缘(TI)材料的材料结构和红外光学特性之间的物理关系有基本了解的研究项目的结果。首先,针对TI应用的潜在材料在红外辐射范围内的相关物理特性进行了系统表征。其次,在研究不同厚度的聚合物薄膜的基础上,建立了红外光学特性的模型函数。第三,基于高分子物理关系解释了红外光学性质。红外范围内的表征和红外光学膜性质的计算表明,大分子结构的各种官能团是高度吸收的。对于使用温度约为100℃的聚合物,碳-氧单键被认为是非常有效的。对于50μm厚的膜,发现官能碳氧基团的浓度与非光谱红外光学厚度以及半球形发射率之间具有良好的相关性。对于纤维素基材料,使用黑色吸收剂的TI墙应用获得了出色的性能。

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