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A performance study of high-strength microbial mortar produced by low pressure grouting for the reinforcement of deteriorated masonry structures

机译:低压注浆生产高强度微生物砂浆加固劣化砖石结构的性能研究

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摘要

Microbial grouting reinforcement to repair the deterioration of masonry structures involves injecting microorganisms and nutrient solution (a cementation solution) into existing granular system pores to induce the generated calcium carbonate cementation to form a microbial mortar of certain strength. Microbial grouting reinforcement is used when traditional grouting materials, such as lime, cement and epoxy, cannot be employed. In this paper, based on experimental study, the main biochemical factors that affect microbial mortar strength were investigated. In addition, the mixture ratio and laboratory preparation method for high-strength microbial mortars were determined. Microbial mortars of different strengths were successfully produced, through which the maximum uniaxial compressive strength reached 55 MPa. The mechanical properties of the microbial mortar, such as uniaxial compressive strength, splitting tensile strength, compressive strength under cyclic loading and uniaxial compressive fatigue, were tested, and the crystal structure of the carbonate cementation and pore-size distribution of the microbial mortar were analyzed. The results indicate that in strength, deformation and durability, this new material is superior to conventional cement-lime mortar. This new type of grouting is ideal for the in situ reinforcement of deteriorated masonry structures. The preparation method for high-strength microbial mortar, the material's tested mechanical properties and the quantitative relationships of the material's grouting parameters are reported. The material provides a novel method to reinforce deteriorated masonry structures, particularly historical masonry structures.
机译:微生物注浆加固技术可修复砖石结构的劣化,包括将微生物和营养液(胶结溶液)注入现有的颗粒状系统孔隙中,以诱导产生的碳酸钙胶结,从而形成一定强度的微生物砂浆。当不能使用传统的灌浆材料(例如石灰,水泥和环氧树脂)时,可以使用微生物灌浆加固。本文在实验研究的基础上,研究了影响微生物砂浆强度的主要生化因素。此外,确定了高强度微生物砂浆的混合比和实验室制备方法。成功生产了不同强度的微生物砂浆,最大单轴抗压强度达到55 MPa。测试了微生物砂浆的力学性能,如单轴抗压强度,劈裂抗拉强度,循环载荷下的抗压强度和单轴压缩疲劳,并分析了碳酸盐胶结的晶体结构和微生物砂浆的孔径分布。 。结果表明,这种新材料在强度,变形和耐久性方面均优于常规水泥石灰砂浆。这种新型灌浆非常适合于现场加固损坏的砖石结构。报道了高强度微生物砂浆的制备方法,材料的测试力学性能以及材料灌浆参数的定量关系。该材料提供了一种加固恶化的砖石结构,特别是历史砖石结构的新颖方法。

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