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首页> 外文期刊>Cement and Concrete Research >Water penetration through cracks in self-healing cementitious materials with superabsorbent polymers studied by neutron radiography
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Water penetration through cracks in self-healing cementitious materials with superabsorbent polymers studied by neutron radiography

机译:通过中子造影研究的超吸收性聚合物的自我愈合水泥材料裂缝的水渗透

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摘要

Super Absorbent Polymers (SAPs) are a promising admixture to obtain self-sealing and self-healing cementitious materials. They are able to physically block water penetration through cracks due to their swelling ability. This is very useful in a cementitious material which is prone to cracking leading to a reduced durability. The effectiveness of counteracting water penetration is of concern. Neutron radiography was performed in order to investigate the influence of SAPs on the water permeability through healed cracks with respect to a reference material without SAPs. The gravimetrically measured capillary absorption corresponded with the obtained results after image analysis and a quantitative analysis could be made. SAPs enhance the water impermeability and are able to seal and heal a crack effectively up to 100 mu m. The healing was a main factor to impede water movement through cracks. This will lead to less water ingress in building infrastructures and a possible longer service life.
机译:超吸收性聚合物(SAP)是获得自我密封和自我愈合水泥材料的有望的混合物。由于它们的膨胀能力,它们能够通过裂缝物理地阻止水渗透。这在伴有裂解的水泥质材料中非常有用,这导致耐久性降低。抵消水渗透的有效性是值得关注的。进行中子造影以研究SAP通过相对于没有SAP的参考材料的愈合裂缝对水渗透性的影响。热分传测量的毛细管吸收与图像分析后的结果相对应,并且可以进行定量分析。 SAP增强不透水性,能够有效地密封并愈合高达100亩。愈合是阻碍通过裂缝的水运动的主要因素。这将导致建筑基础设施的水进入较少,也可能更长的使用寿命。

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