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微生物自修复材料掺量对砂浆裂缝修复效果的影响研究

Influence of Microbial Self-healing Material Dosage on the Crack Repair Efficiency of Mortar

  • 摘要: 通过制备40 mm×40 mm×160 mm水泥砂浆试件,开展跳桌流动度试验、力学强度及预设裂缝的修复性能测试,研究微生物自修复剂掺量(0%~50%)对砂浆工作性、力学性能及0.2~0.4 mm与0.4~0.6 mm宽度裂缝修复效果的影响,分析掺量与裂缝宽度之间的匹配关系以优化修复效率,并借助扫描电镜观察裂缝区沉积产物的微观形貌进行观察以揭示其修复机理。结果表明:微生物自修复剂的掺入显著提高了砂浆流动性,当掺量为50%时扩展度达到238.8 mm,较基准组提升64%;但随掺量增加,力学性能下降,50%掺量下抗压与抗折强度分别降低了36.2%和62.0%。裂缝处沉积产物主要为微生物代谢诱导生成的碳酸钙,其晶体形貌由初始的球霰石转化为稳定的方解石,并在裂缝内致密堆积,从而实现高效修复。综合考虑修复效率与强度保留率,建议自修复剂掺量控制在20%以内,以兼顾修复效果与力学性能的平衡;针对0.2~0.4 mm裂缝推荐掺量为5%~15%,可在8~16 d内实现90%以上修复率;对于0.4~0.6 mm裂缝,推荐掺量为10%~20%,可在16 d内达到相近修复水平。本研究为不同宽度裂缝提供了对应的微生物自修复剂适宜掺量范围,为该类材料在工程中的应用提供了可靠的数据支撑。

     

    Abstract: Forty-millimeter by forty-millimeter by one-hundred-sixty-millimeter cement mortar specimens were fabricated and subjected to flow table tests, mechanical strength tests, and pre-crack repair performance evaluations. The influence of microbial self-healing agent content (0%−50%) on the workability, mechanical properties, and repair efficacy of cracks with widths of 0.2−0.4 mm and 0.4−0.6 mm was investigated. The correspondence between dosage and crack width was analyzed to optimize the repair efficiency, and the micromorphology of the deposited products within the crack zones was examined using scanning electron microscopy (SEM) to elucidate the underlying repair mechanism. The results indicate that the workability of mortar is significantly enhanced by the incorporation of the microbial self-healing agent, with a 50% dosage leading to a flow spread of 238.8 mm, representing a 64% increase compared to the reference group. However, the mechanical properties are observed to decline as the dosage rises, showing reductions of 36.2% in compressive strength and 62.0% in flexural strength at the 50% dosage level. The deposition products within the cracks are identified as calcium carbonate induced by microbial metabolism, whose crystal morphology is transformed from initial vaterite into stable calcite and densely accumulated in the cracks, thereby achieving efficient repair. Considering both the repair efficiency and strength retention, the dosage of the self-healing agent is recommended to be limited to within 20% to balance the repair effectiveness and mechanical performance. For cracks with widths of 0.2−0.4 mm, a dosage of 5%−15% is suggested, which can achieve a healing ratio exceeding 90% within 8−16 d, while for cracks of 0.4−0.6 mm, a dosage of 10%−20% is recommended, attaining a similar repair level within 16 days. This study provides appropriate dosage ranges of the microbial self-healing agent corresponding to different crack widths, offering reliable data support for its engineering applications.

     

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