基于多组分聚氨酯/聚甲基丙烯酸羟丙酯聚合物基体和纳米填料羟基poss的纳米复合材料作为潜在的噪声和振动阻尼材料

IF 4.6 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
RSC Advances Pub Date : 2025-10-10 DOI:10.1039/D5RA03574K
Lyudmyla Karabanova, Nataliia Babkina, Dmytro Klimchuk and Lyubov Honcharova
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引用次数: 0

摘要

以聚氨酯和聚甲基丙烯酸羟丙酯为基体,合成了半互穿聚合物网络的纳米复合材料和纳米填充剂羟基poss,研究了体系中相互作用的热力学参数、动态力学性能和形貌。根据复合材料中羟基poss的含量,计算了聚氨酯与聚甲基丙烯酸羟丙酯混合的自由能(吉布斯能)。结果表明,聚氨酯与聚甲基丙烯酸羟丙酯在热力学上是不相容的。羟基poss纳米填料的引入导致聚氨酯和聚甲基丙烯酸羟丙酯之间的热力学不相容性增加。动态力学分析表明,纳米复合材料的力学损失存在一个最大值(tg δ),这是强制相相容性和体系中存在大量相间层的结果。这个宽的tan δ最大值覆盖了0 ~ 100℃的温度范围,并且强度相当高。这意味着所创造的纳米复合材料有潜力被用作有效的噪声-振动阻尼材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Nanocomposites based on a multicomponent polyurethane/poly(hydroxypropyl methacrylate) polymer matrix and nanofiller hydroxy-POSS as potential noise and vibration damping materials

Nanocomposites based on a multicomponent polyurethane/poly(hydroxypropyl methacrylate) polymer matrix and nanofiller hydroxy-POSS as potential noise and vibration damping materials

Nanocomposites based on multicomponent polymer matrices, consisting of polyurethane and poly(hydroxypropyl methacrylate) and representing a semi-interpenetrating polymer network, and nanofiller hydroxy-POSS were synthesized, and the thermodynamic parameters of interactions in the system, the dynamic-mechanical properties and the morphology were investigated. The free energy (Gibbs energy) of polyurethane and poly(hydroxypropyl methacrylate) mixing was calculated depending on the hydroxy-POSS content in the nanocomposites. It was shown that polyurethane and poly(hydroxypropyl methacrylate) are thermodynamically incompatible. Introduction of a hydroxy-POSS nanofiller leads to an increase in the thermodynamic incompatibility between polyurethane and poly(hydroxypropyl methacrylate). Dynamic mechanical analysis has shown that for the nanocomposites, there is one maximum of the mechanical loss (tg δ), which is the result of forced phase compatibility and the existence of a large proportion of interphase layers in the systems. This broad maximum of tan δ covers the temperature range from 0 to 100 °C and has a rather high intensity. This means that the created nanocomposites have the potential of being used as effective noise-vibration-damping materials.

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来源期刊
RSC Advances
RSC Advances chemical sciences-
CiteScore
7.50
自引率
2.60%
发文量
3116
审稿时长
1.6 months
期刊介绍: An international, peer-reviewed journal covering all of the chemical sciences, including multidisciplinary and emerging areas. RSC Advances is a gold open access journal allowing researchers free access to research articles, and offering an affordable open access publishing option for authors around the world.
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