表面处理策略及其对集成在玻璃纤维增强聚合物层压板结构中的形状记忆合金镍钛丝的材料行为和界面粘附强度的影响

Materials Pub Date : 2024-07-16 DOI:10.3390/ma17143513
S. Palaniyappan, Harshan Kalenahalli Ramesha, M. Trautmann, S. Quirin, Tobias Heib, Hans-Georg Herrmann, Guntram Wagner
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引用次数: 0

摘要

过去几十年来,设计多功能材料并将各种功能无缺陷地集成到单个组件结构中的趋势日益明显。本研究正是为了满足将多种功能无缝集成到热塑性层压结构中的当代需求。镍钛基形状记忆合金(SMA)因其具有引入应变测量和形状变化等功能的潜力而闻名于世,本研究将重点放在镍钛基形状记忆合金(SMA)上,探索 SMA 线材的各种表面处理方法。研究了热氧化、等离子处理、化学活化、硅烷化和附着力促进涂层等技术。为了实现多功能特性,研究人员将镍钛 SMA 与玻璃纤维增强聚合物(GFRP)层压板进行了整合。主要目的是评估这些表面处理对表面特性的影响,包括粗糙度、相变和机械特性。对未加工和处理过的 SMA 金属丝进行了微观结构、分析和现场机械特性分析。表征后,利用热压技术将 SMA 金属丝与 GFRP 层压板结合,通过拉伸试验确定界面粘附强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Surface Treatment Strategies and Their Impact on the Material Behavior and Interfacial Adhesion Strength of Shape Memory Alloy NiTi Wire Integrated in Glass Fiber-Reinforced Polymer Laminate Structures
Over the past few decades, there has been a growing trend in designing multifunctional materials and integrating various functions into a single component structure without defects. This research addresses the contemporary demand for integrating multiple functions seamlessly into thermoplastic laminate structures. Focusing on NiTi-based shape memory alloys (SMAs), renowned for their potential in introducing functionalities like strain measurement and shape change, this study explores diverse surface treatments for SMA wires. Techniques such as thermal oxidation, plasma treatment, chemical activation, silanization, and adhesion promoter coatings are investigated. The integration of NiTi SMA into Glass Fiber-Reinforced Polymer (GFRP) laminates is pursued to enable multifunctional properties. The primary objective is to evaluate the influence of these surface treatments on surface characteristics, including roughness, phase changes, and mechanical properties. Microstructural, analytical, and in situ mechanical characterizations are conducted on both raw and treated SMA wires. The subsequent incorporation of SMA wires after characterization into GFRP laminates, utilizing hot-press technology, allows for the determination of interfacial adhesion strength through pull-out tensile tests.
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