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Self-healing mortar with pH-sensitive superabsorbent polymers: testing of the sealing efficiency by water flow tests

机译:具有pH敏感性超吸收性聚合物的自修复砂浆:通过水流测试测试密封效率

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Superabsorbent polymers (SAPs) have potential to be used as healing agent in self-healing concrete due to their property to attract moisture from the environment and their capacity to promote autogenous healing. A possible drawback, however, is their uptake of mixing water during concrete manufacturing, resulting in an increased volume of macro-pores in the hardened concrete. To limit this drawback, newly developed SAPs with a high swelling and pH-sensitiveness were developed and tested within the FP7 project HEALCON. Evaluation of their self-sealing performance occurred through a water permeability test via water flow, a test method also developed within HEALCON. Three different sizes of the newly developed SAP were compared with a commercial SAP. Swelling tests in cement filtrate solution indicated that the commercial and in-house synthesized SAPs performed quite similar, but the difference between the swelling capacity at pH 9 and pH 13 is more pronounced for the self-synthesized SAPs. Moreover, in comparison to the commercial SAPs, less macro-pores are formed in the cement matrix of mixes with self-synthesized SAPs and the effect on the mechanical properties is lower, but not negligible, when using high amounts of SAPs. Although the immediate sealing effect of cracks in mortar was the highest for the commercial SAPs, the in-house made SAPs with a particle size between 400 and 600 mu m performed the best with regard to crack closure (mainly CaCO3 precipitation) and self-sealing efficiency, after exposing the specimens to 28 wet-dry cycles. Some specimens could even withstand a water pressure of 2 bar.
机译:超吸收性聚合物(SAPs)由于其从环境中吸收水分的特性以及促进自生愈合的能力,有潜力在自愈混凝土中用作愈合剂。但是,可能的缺点是在混凝土制造过程中会吸收混合水,从而导致硬化混凝土中的大孔体积增加。为了限制此缺点,在FP7项目HEALCON中开发并测试了新开发的具有高溶胀性和pH敏感性的SAP。他们的自密封性能的评估是通过水流的透水性测试进行的,该测试方法也是HEALCON内部开发的一种测试方法。将三种不同大小的新开发的SAP与商用SAP进行了比较。在水泥滤液溶液中的溶胀试验表明,市售的和内部合成的SAP的性能非常相似,但对于自合成的SAP,在pH 9和pH 13时的溶胀能力之间的差异更为明显。此外,与市售的SAP相比,在使用自合成SAP的混合物的水泥基体中形成的大孔更少,并且当使用大量的SAP时,对机械性能的影响较低,但不可忽略。尽管对于商品级SAP而言,砂浆中的裂纹的即时密封效果最高,但是在裂纹闭合(主要是CaCO3沉淀)和自密封方面,内部制成的粒径在400至600μm之间的SAP表现最好。将样品暴露于28个干湿循环后的效率。有些标本甚至可以承受2 bar的水压。

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