Thermoplastic film materials for damping in mechanical engineering

A. Syatkovskiy
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Abstract

An effective way of damping engineering structures is to use elements formed by a combination of hard and soft alternating layers. The outer rigid layers, made of structural materials, take up force infl uences, while the soft layers of viscoelastic polymers provide energy dissipation of the layered structure. The paper summarizes the results of research on the development of thin thermoplastic fi lms of plasticized polyvinyl acetate, polybutylmethacrylate and polymethylmethacrylate which have ultra-high dissipative properties and are used as a vibration-absorbing component of composite structures. It is shown that high damping properties are realized in fi lms with thickness of 0.1 –0.05 mm, which makes it possible to obtain two- and three-layer vibration-absorbing films with an extended temperature interval of effective damping in the metal-polymer-metal structures.
用于机械工程阻尼的热塑性薄膜材料
阻尼工程结构的有效方法是使用由软硬交替层组合而成的元件。由结构材料制成的外层刚性层承受力的影响,而由粘弹性聚合物制成的软层则为分层结构提供能量消耗。本文总结了开发塑化聚醋酸乙烯酯、聚甲基丙烯酸丁酯和聚甲基丙烯酸甲酯热塑性薄膜的研究成果,这些薄膜具有超高的耗散性能,可用作复合结构的吸振部件。研究表明,厚度为 0.1 -0.05 毫米的薄膜具有很高的阻尼特性,这使得在金属-聚合物-金属结构中获得有效阻尼温度间隔更长的双层和三层吸振薄膜成为可能。
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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