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首页> 外文期刊>Journal of Transportation Engineering >Thermomechanical Characterization of Shape Memory Polymer-Based Self-Healing Syntactic Foam Sealant for Expansion Joints
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Thermomechanical Characterization of Shape Memory Polymer-Based Self-Healing Syntactic Foam Sealant for Expansion Joints

机译:基于形状记忆聚合物的伸缩缝自愈复合泡沫密封剂的热力学表征

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摘要

The failure of expansion joints is a leading cause for structural damage to bridge decks and concrete pavements. A fundamental requirement for sealant is that it should always apply a compressive stress to the concrete wall so that adhesive failure can be eliminated; also, the sealant must contract transversely (in the vertical direction) as temperature rises so that the sealant does not squeeze out of the channel. In addition, it is desired that the sealant has some self-healing capabilities so that cohesive failure can be healed. In this study, a shape memory polymer-based (SMP-based) self-healing syntactic foam sealant was prepared and tested. Special two-dimensional (2D) programming or training (compression in one direction and tension in the transverse direction) and free-shape recovery tests were conducted on the foam to evaluate its capability to serve as a sealant for expansion joints. The functional stability of the foam sealant was evaluated by repeated thermomechanical cycles. Furthermore, mechanical properties tests, including uniaxial compression, uniaxial tension, and interfacial shear, were also conducted. Results show that the smart foam sealant can eliminate the squeezing-out problem if programmed properly, and it has the potential to be used in expansion joints.
机译:伸缩缝的故障是导致桥面板和混凝土路面结构损坏的主要原因。密封胶的基本要求是,应始终对混凝土墙施加压缩应力,以消除胶粘剂失效。同样,密封剂必须随着温度的升高而横向(在垂直方向上)收缩,以使密封剂不会从通道中挤出。另外,期望密封剂具有一定的自修复能力,以便可以修复内聚破坏。在这项研究中,准备并测试了基于形状记忆聚合物(基于SMP)的自修复句法泡沫密封胶。对泡沫进行了特殊的二维(2D)编程或训练(沿一个方向压缩并沿横向拉伸)和自由形状恢复测试,以评估其用作膨胀缝密封剂的能力。通过重复的热机械循环来评估泡沫密封剂的功能稳定性。此外,还进行了机械性能测试,包括单轴压缩,单轴拉伸和界面剪切。结果表明,如果正确编程,智能泡沫密封剂可以消除挤出问题,并且有潜力在伸缩缝中使用。

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