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Evaluation of the Self-Healing Ability of Mortar Mixtures Containing Superabsorbent Polymers and Nanosilica

机译:含超吸收性聚合物和纳米硅藻的砂浆混合物的自愈能力评价

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摘要

Addition of superabsorbent polymers (SAPs) to cementitious mixtures promotes the self-healing ability of the material. When cracking occurs; SAPs present inside the crack will swell upon contact with water and subsequently release this water to stimulate the further hydration of unhydrated cement particles and the calcium carbonate crystallization. However; the inclusion of SAPs affects the mechanical performance of the cementitious material by the creation of macro-pores as water is retracted from the swollen SAP. To counteract the reduction in strength, part of the cement is replaced by nanosilica. In this research, different mixtures containing either SAPs or nanosilica and a combination of both were made. The samples were subjected to wet−dry cycles simulating external conditions, and the self-healing efficiency was evaluated by means of the evolution in crack width, by optical measurements, and a water permeability test. In samples containing SAPs, an immediate sealing effect was observed and visual crack closure was noticed. The smaller influence on the mechanical properties and the good healing characteristics in mixtures containing both nanosilica and SAPs are promising as a future material for use in building applications.
机译:超吸收性聚合物(SAP),以水泥混合物的加成促进材料的自愈能力。当发生裂纹;本裂缝内的SAP会溶胀在与水接触,并随后释放这种水以刺激未水化水泥颗粒的进一步水合和碳酸钙结晶。然而; SAP的夹杂物会影响所创作的水泥材料的机械性能大孔作为水从溶胀SAP缩回。为了抵消强度降低,水泥的部分由纳米二氧化硅取代。在这项研究中,是由包含任一的SAP或纳米二氧化硅和两者的组合不同的混合物。的样品进行湿 - 干循环模拟外部条件,和自我修复效率进行评价通过在裂缝宽度的演变的手段,通过光学测量,以及水渗透性测试。在含有SAP的样品中,观察到立即的密封效果和视觉裂纹闭合被发现。对机械性能和在含有纳米二氧化硅的混合物和SAP将该良好的愈合特性的影响更小是有希望作为未来的材料用于建筑应用中使用。

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