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Behavior of Smart Concrete Beams with Embedded Shape Memory Alloy Bundles

机译:嵌入形状记忆合金束的智能混凝土梁的性能

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The behavior of smart concrete beams with embedded shape memory alloy (SMA) bundles is investigated in this study. Two beams measuring 1996 × 99 × 85 cm~3, which will be integrated into a smart bridge in a freeway, are manufactured and examined. Each beam contains six trusses of SMA bundles used as actuators to achieve recovery force. The SMA bundles are connected with pre-stressing steel strands and separated from the concrete matrix, so that temperature interaction between SMA bundles and the matrix can be reduced to as low as possible. Some temperature sensors, reinforcement meters, and displacement sensors are used to monitor the active control effect of SMA bundles, all the data are acquired through a 16-channel dynamic data-acquisition system, and each beam is examined several times with different activating current intensity. Experimental results indicate that the recovery force induced by SMA bundles is significant and controllable, the deflection generated by the SMA bundles at the middle span of the beam is about 0.44 mm, and the capability of resisting overload of each beam is about 2.98 kN (average). A relationship between SMA temperature and activating/inactivating time is also formulated. The conclusion is that SMA can be used in civil engineering structures either from a technological or economic aspect.
机译:本研究研究了嵌有形状记忆合金(SMA)束的智能混凝土梁的性能。制造并检查了两根尺寸为1996×99×85 cm〜3的光束,这些光束将集成到高速公路的智能桥中。每个梁都包含六个SMA捆桁架,用作促动器以实现恢复力。 SMA束与预应力钢绞线相连,并与混凝土基体分开,从而可以将SMA束与基体之间的温度相互作用降低到尽可能低的水平。一些温度传感器,钢筋计量仪和位移传感器用于监控SMA束的主动控制效果,所有数据都是通过16通道动态数据采集系统获取的,并且在不同的激活电流强度下对每根光束进行了数次检查。实验结果表明,SMA束引起的恢复力显着且可控,SMA束在梁的中跨处产生的挠度约为0.44 mm,每个梁的抗过载能力约为2.98 kN(平均)。还制定了SMA温度与激活/灭活时间之间的关系。结论是,从技术或经济角度来看,SMA均可用于土木工程结构。

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