An Installation for Studying the Triboelectric Properties of Materials in a Wide Temperature Range

IF 0.58 Q4 Materials Science Polymer Science, Series D Pub Date : 2024-09-19 DOI:10.1134/S1995421224701338
O. A. Belitskaya, S. O. Arestov, A. A. Mavlyutov
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Abstract

An experimental setup and methodology for studying the triboelectric properties of materials at various temperatures are described. The technique is based on recording the electrostatic field that occurs during friction of surfaces of two materials forming a dynamic pair. The use of a tuning fork electrostatic field sensor that has been developed made it possible to carry out measurements in a wide temperature range from –50 to +60°C. Based on the experimental results, the dependences of charge accumulation and decay were obtained for various pairs of shoe materials (felt, leather, natural, and synthetic fabrics).

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用于研究宽温度范围内材料三电性能的装置
摘要 介绍了在不同温度下研究材料三电特性的实验装置和方法。该技术的基础是记录形成动态对的两种材料表面摩擦时产生的静电场。通过使用已开发的音叉静电场传感器,可以在 -50 至 +60°C 的宽温度范围内进行测量。根据实验结果,获得了各种鞋材料(毛毡、皮革、天然织物和合成织物)的电荷积累和衰减的相关性。
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来源期刊
Polymer Science, Series D
Polymer Science, Series D Materials Science-Polymers and Plastics
CiteScore
0.80
自引率
0.00%
发文量
87
期刊介绍: Polymer Science, Series D  publishes useful description of engineering developments that are related to the preparation and application of glues, compounds, sealing materials, and binding agents, articles on the adhesion theory, prediction of the strength of adhesive joints, methods for the control of their properties, synthesis, and methods of structural modeling of glued joints and constructions, original articles with new scientific results, analytical reviews of the modern state in the field.
期刊最新文献
Studying the Properties of Paint-and-Varnish Materials Application of Ultrasonic Vibrations in the Course of Gluing The Influence of Hydrocarbon Resins on the Properties of Polyisobutylene-Based Hot-Melt Adhesives Welding of Parts Made of Polymer Composite Materials Based on Thermoplastics. Part 3. Methods for Welding Parts Made of Polymer Composite Materials Based on Thermoplastics with the Conversion of Various Types of Energy Studies on the Climatic Resistance of Thiokol and Siloxane Sealant
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