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含高弹性能量耗散极性悬空链段的聚氨酯弹性体的可控设计与合成。

Controllable Design and Synthesis of Polyurethane Elastomers Containing Polar Dangling Chains with High Mechanical Properties and Wide Damping Temperature Range.

机构信息

South China University of Technology, Guangzhou, 501641, China.

出版信息

Macromol Rapid Commun. 2024 Nov;45(22):e2400459. doi: 10.1002/marc.202400459. Epub 2024 Aug 26.

Abstract

Vibration and noise severely affect the operation of mechanical equipment and is also detrimental to human health. Therefore, the development of high performance damping materials is crucial. However, current methods to improve damping properties often come at the expense of mechanical properties, resulting in inferior mechanical performance of materials. In order to address the issue of imbalance between damping properties and mechanical properties in polyurethane damping elastomers. In this study, polyester dangling chains containing polar groups are synthesized and introduced into polyurethane. The obtained polyurethane exhibited an effective damping temperature range of 154 °C (-54 °C to 100 °C) and a tensile strength of 15.82 MPa. Furthermore, dynamic mechanical analysis and broadband dielectric relaxation spectroscopy are combined to investigate the influence of polar dangling chains on the structure and properties of polyurethane. The degree of microphase separation increases after the introduction of polar dangling chains, indicating enhances intermolecular interaction forces, facilitating the formation of hydrogen bond between the main chain and dangling chains, thereby increasing molecular chain friction and energy dissipation. This work overcomes the challenge of balancing the damping and mechanical properties of polyurethane, providing a new strategy for designing high performance polyurethane damping elastomers.

摘要

振动和噪声会严重影响机械设备的运行,也不利于人类健康。因此,开发高性能的阻尼材料至关重要。然而,目前提高阻尼性能的方法往往会牺牲机械性能,导致材料的机械性能下降。为了解决聚氨酯阻尼弹性体中阻尼性能与机械性能之间的不平衡问题。在本研究中,合成了含有极性基团的聚酯悬垂链,并将其引入到聚氨酯中。所得到的聚氨酯表现出有效的阻尼温度范围为 154°C(-54°C 至 100°C)和拉伸强度为 15.82 MPa。此外,还结合动态力学分析和宽频介电松弛谱研究了极性悬垂链对聚氨酯结构和性能的影响。引入极性悬垂链后,微相分离程度增加,表明分子间相互作用力增强,有利于主链和悬垂链之间氢键的形成,从而增加分子链摩擦和能量耗散。这项工作克服了平衡聚氨酯阻尼性能和机械性能的挑战,为设计高性能聚氨酯阻尼弹性体提供了新的策略。

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