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A shape memory polymer concrete crack closure system activated by electrical current

机译:电流激活的形状记忆聚合物混凝土裂纹闭合系统

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摘要

The presence of cracks has a negative impact on the durability of concrete by providing paths for corrosive materials to the embedded steel reinforcement. Cracks in concrete can be closed using shape memory polymers (SMP) which produce a compressive stress across the crack faces. This stress has been previously found to enhance the load recovery associated with autogenous self-healing. This paper details the experiments undertaken to incorporate SMP tendons containing polyethylene terephthalate (PET) filaments into reinforced and unreinforced 500 x 100 x 100 mm structural concrete beam samples. These tendons are activated via an electrical supply using a nickelchrome resistance wire heating system. The set-up, methodology and results of restrained shrinkage stress and crack closure experiments are explained. Crack closure of up to 85% in unreinforced beams and 26%-39% in reinforced beams is measured using crack-mouth opening displacement, microscope and digital image correlation equipment. Conclusions are made as to the effectiveness of the system and its potential for application within industry.
机译:裂缝的存在对混凝土的耐久性产生负面影响,通过为嵌入式钢筋提供腐蚀性材料的路径。使用形状记忆聚合物(SMP)可以封闭混凝土中的裂缝,其在裂纹面上产生压缩应力。先前已经发现这种应力提高了与自动愈合相关的负载恢复。本文详细说明了将含有聚对苯二甲酸乙二醇酯(PET)长丝的SMP筋掺入增强,不再是500×100×100mm结构混凝土梁样品的实验。通过使用镍电阻线加热系统通过电源激活这些肌腱。解释了限制收缩应力和裂纹闭合实验的设置,方法和结果。使用裂缝口开口位移,显微镜和数字图像相关设备,测量裂缝闭合高达85%的裂缝闭合高达85%,在加固梁中测量26%-39%。结论是对系统的有效性及其在行业中的应用潜力。

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