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Feasibility of self-pre-stressing concrete members using shape memory alloys

机译:使用形状记忆合金进行预应力混凝土构件的可行性

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Shape memory alloys are a class of smart materials that recover apparent plastic deformation (approximate to 6%-8% strain) after heating, thus remembering the original shape. This shape memory effect can be exploited for self-post-tensioning applications, and NiTi-based shape memory alloys are promising as shape memory effect is possible at elevated temperatures amenable to practical application compared to conventional NiTi. This study investigates the feasibility of self-post-tensioned concrete elements by activating the shape memory effect of NiTiNb, a class of wide-hysteresis shape memory alloys, using the heat of hydration of grout. First, the microstructure characterization of the NiTiNb wide-hysteresis shape memory alloys is discussed. Then, the tensile stress-induced martensitic transformations in NiTiNb shape memory alloy tendons are studied. Next, the temperature increase due to the heat of hydration of four commercially available grouts is investigated. Pull-out tests are also conducted to investigate the bond between the grout and shape memory alloy bar. Results show that the increase in temperature due to hydration heat can provide significant strain recovery during a free recovery experiment, while the same temperature increase only partially activates the shape memory alloys during a constrained recovery.
机译:形状记忆合金是一类智能材料,可以在加热后恢复表观塑性变形(大约6%-8%应变),从而记住原始形状。这种形状记忆效应可用于自后张紧应用,并且与传统的NiTi相比,基于NiTi的形状记忆合金是有希望的,因为在适合实际应用的高温下,形状记忆效应是可能的。这项研究利用水泥浆的水化热来激活一类宽滞后形状记忆合金NiTiNb的形状记忆效应,从而研究自后张混凝土构件的可行性。首先,讨论了NiTiNb宽磁滞形状记忆合金的微观结构特征。然后,研究了拉伸应力引起的NiTiNb形状记忆合金腱中的马氏体相变。接下来,研究由于四种市售水泥浆的水合热引起的温度升高。还进行了拉拔测试,以研究灌浆和形状记忆合金棒之间的粘结。结果表明,由于水合热引起的温度升高可以在自由恢复实验期间提供显着的应变恢复,而相同的温度升高在受限恢复期间仅部分激活了形状记忆合金。

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