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首页> 外文期刊>Magazine of concrete research >Bacteria-based self-healing of cement mortars loaded at different levels and exposed to high temperature
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Bacteria-based self-healing of cement mortars loaded at different levels and exposed to high temperature

机译:基于细菌的水泥砂浆在不同水平加载和高温下的自愈

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摘要

Structures are exposed to various external effects and loads throughout their service life, which can result in failure at a load lower than the design compressive strength. There are cement-based healing systems for repairing such damage, but it is often insufficient. A more effective autonomous healing system is thus needed, and microbial-induced calcite precipitation (MICP) has been studied for this purpose. In this study, bacterial mortar (BM) samples were produced and loaded at different levels of their ultimate compressive stress. The effects of loading were determined and the effectiveness of bacterial treatments was investigated. Experiments were conducted to determine crack healing, compressive strength, water absorption, ultrasonic pulse velocity and high-temperature effects. In the BM samples, the MICP mechanism repaired cracks about 3.5 times larger than the control samples. While the treatment of cracks and damage observed at 90% and 100% loading levels were highly limited thanks to the autogenous system, some properties of the BMs improved as the loading level increased. The MICP mechanism was especially effective in damaged samples under high load levels. In addition, the BMs demonstrated superior physical, mechanical and durability properties at each loading level.
机译:结构在其整个使用寿命期间会受到各种外部影响和载荷,这可能导致载荷低于设计抗压强度时失效。有基于水泥的愈合系统可以修复这种损伤,但通常是不够的。因此,需要一种更有效的自主愈合系统,并为此目的研究了微生物诱导的方解石沉淀(MICP)。在这项研究中,细菌砂浆(BM)样品在其极限压应力的不同水平下生产和加载。测定了负荷的影响,并考察了细菌处理的有效性。通过实验测定了裂纹愈合、抗压强度、吸水率、超声波脉冲速度和高温效应。在BM样品中,MICP机制修复的裂纹比对照样品大约3.5倍。虽然由于自生系统,在90%和100%加载水平下观察到的裂纹和损伤的处理受到高度限制,但随着加载水平的增加,BM的一些性能得到了改善。MICP机制在高负荷水平下的损伤样品中特别有效。此外,BM在每个负载水平上都表现出卓越的物理、机械和耐久性。

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