Determination of optimum placement of the liquid metal antenna design embedded in concrete beam prototype under center — Point loading test

E. Fernandez, A. Carandang, J. W. Orillo, Leny Rose Quezada, I. Valenzuela, V. Yee
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引用次数: 3

Abstract

This study describes the application of dipole liquid metal antenna as a possible sensor of crack when embedded in a concrete beam prototype on several locations. The approach to the fabrication of antenna is based on McGyver-esque approach to microfabrication. The antenna consists of Eutectic Gallium Indium (EGaIn), a fluid metal alloy injected into microfluidic channels comprising a silicone elastomer composed of polydimethylsiloxane (PDMS). While the fluidic dipole antennas are highly flexible, stretchable, and reversibly deformable, changing its length through stretching the elastomeric channel also changes its resonant frequency. Experiments show that increasing the length of the antenna (not embedded in concrete), decreases its resonant frequency. This relationship becomes the basis of the study whether the antenna behaves in the same manner when it is already embedded in prototype concrete beams. Simultaneous testing using center-point loading machine and network analyzer for the three embedding locations of antenna are conducted to gather the necessary data that would best adapt to the inverse relationship of antenna's resonant frequency and displacement due to loading.
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中心点荷载试验下混凝土梁原型内嵌液态金属天线设计最佳位置的确定
本研究描述了偶极子液态金属天线在混凝土梁原型中嵌入多个位置时作为裂缝传感器的应用。天线的制造方法是基于mcgyver式的微加工方法。天线由共晶镓铟(EGaIn)组成,这是一种注入微流控通道的流体金属合金,由聚二甲基硅氧烷(PDMS)组成的有机硅弹性体组成。虽然流体偶极子天线具有高度的柔性、可拉伸性和可逆变形性,但通过拉伸弹性通道来改变其长度也会改变其谐振频率。实验表明,增加天线长度(不嵌入混凝土中)会降低天线的谐振频率。这种关系成为研究天线嵌入原型混凝土梁时是否具有相同行为的基础。利用中心点加载机和网络分析仪对天线的三个嵌入位置进行同步测试,以收集最适合天线谐振频率与加载位移成反比关系的必要数据。
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