DIELECTRIC SPECTROSCOPY METHOD FOR POLAR POLYMERS ELASTIC PROPERTIES DIAGNOSTICS

M. Danilaev, S. V. Drobyshev, S. Karandashov, M. A. Klabukov, V. Kuklin, I. V. Lunev
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Abstract

The mechanical properties of polymer materials are changes under the complex influence of such climatic factors as, for example, solar radiation, temperature changes, high humidity, and the impact of microorganisms – destructors. The methods of non-invasive diagnostics have to be used for changes prediction of the polymers materials products mechanical properties. The dielectric spectroscopy possibility using for diagnosing the modulus of elasticity of polymeric materials is considered in that paper. The results of elasticity modulus investigation by the dielectric spectroscopy using the DiMarzio–Bishop model and the mechanical measurements method are considered and compared in that paper. The results of dielectric and mechanical properties of polymers samples (polymethylmethacrylate, polycarbonate and polyvinylchloride) investigation are considered in that paper. These polymers are polar, so their mechanical properties in the elastic region of deformations can be investigate by dielectric spectroscopy method. This is due to the fact that the elastic deformations of a polymer are determined by the deformation of its macromolecules. It is show, that there are qualitative agreements between results of that measurement and the DiMarzio–Bishop model have to be refinement. The dipoles are represented as a spheres and interaction between dipoles are neglected in the DiMarzio–Bishop model. In our opinion, the interaction between dipoles in polymeric macromolecules is inevitable, and the configuration of dipoles differs from spherical. The necessity of using the calibration coefficient in the DiMarzio–Bishop model is shown by comparing the results of elastic modulus experimental measurements by the mechanical method and the dielectric spectroscopy method. This calibration factor takes into account the average number of dipoles in a macromolecule with a coefficient proportionality ∼6,7⋅10–5.
用于极性聚合物弹性性能诊断的介电光谱法
在太阳辐射、温度变化、高湿度和微生物(破坏者)影响等气候因素的复杂影响下,聚合物材料的机械性能会发生变化。必须使用非侵入性诊断方法来预测聚合物材料产品机械性能的变化。本文考虑了使用介电光谱诊断聚合物材料弹性模量的可能性。文中考虑并比较了使用 DiMarzio-Bishop 模型的介电光谱法和机械测量法对弹性模量的研究结果。该论文考虑了聚合物样品(聚甲基丙烯酸甲酯、聚碳酸酯和聚氯乙烯)的介电和机械性能调查结果。这些聚合物具有极性,因此可以通过介电光谱法研究它们在变形弹性区域的机械性能。这是由于聚合物的弹性变形是由其大分子的变形决定的。结果表明,测量结果与 DiMarzio-Bishop 模型之间存在定性一致,但还需进一步完善。在 DiMarzio-Bishop 模型中,偶极子被表示为球体,偶极子之间的相互作用被忽略。我们认为,聚合物大分子中偶极子之间的相互作用是不可避免的,而且偶极子的构型也不同于球形。通过比较机械法和介电光谱法的弹性模量实验测量结果,可以看出在 DiMarzio-Bishop 模型中使用校准系数的必要性。该校准系数考虑了大分子中偶极子的平均数量,其系数比例为 ∼6,7⋅10-5。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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