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Electrical/Mechanical Monitoring of Shape Memory Alloy Reinforcing Fibers Obtained by Pullout Tests in SMA/Cement Composite Materials

机译:通过SMA /水泥复合材料中的拉拔试验获得的形状记忆合金增强纤维的电气/机械监控

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摘要

Self-healing is an essential property of smart concrete structures. In contrast to other structural metals, shape memory alloys (SMAs) offer two unique effects: shape memory effects, and superelastic effects. Composites composed of SMA wires and conventional cements can overcome the mechanical weaknesses associated with tensile fractures in conventional concretes. Under specialized environments, the material interface between the cementitious component and the SMA materials plays an important role in achieving the enhanced mechanical performance and robustness of the SMA/cement interface. This material interface is traditionally evaluated in terms of mechanical aspects, i.e., strain–stress characteristics. However, the current work attempts to simultaneously characterize the mechanical load-displacement relationships synchronized with impedance spectroscopy as a function of displacement. Frequency-dependent impedance spectroscopy is tested as an in situ monitoring tool for structural variations in smart composites composed of non-conducting cementitious materials and conducting metals. The artificial geometry change in the SMA wires is associated with an improved anchoring action that is compatible with the smallest variation in resistance compared with prismatic SMA wires embedded into a cement matrix. The significant increase in resistance is interpreted to be associated with the slip of the SMA fibers following the elastic deformation and the debonding of the SMA fiber/matrix.
机译:自修复是智能混凝土结构的基本属性。与其他结构金属相比,形状记忆合金(SMA)具有两种独特的作用:形状记忆作用和超弹性作用。由SMA线材和常规水泥组成的复合材料可以克服常规混凝土中与拉伸断裂相关的机械缺陷。在特殊环境下,水泥基成分和SMA材料之间的材料界面在实现SMA /水泥界面的增强的机械性能和耐用性方面起着重要作用。传统上,这种材料界面是根据机械方面(即应变应力特性)进行评估的。然而,当前的工作试图同时将与阻抗谱同步的机械载荷-位移关系表征为位移的函数。随频率变化的阻抗谱已作为一种现场监测工具进行了测试,以检测由非导电胶凝材料和导电金属组成的智能复合材料的结构变化。与嵌入水泥基体中的棱柱形SMA线相比,SMA线中的人造几何形状变化与改善的锚固作用相关,该锚固作用与最小的阻力变化兼容。电阻的显着增加被认为与SMA纤维/基体的弹性变形和脱粘后的滑移有关。

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