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Water permeability and rapid self-healing of sustainable sulfur composites using superabsorbent polymer and binary cement

机译:使用超吸收性聚合物和二元水泥的可持续硫复合材料的渗透性和快速自我愈合

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This study investigated the rapid self-sealing of modified sulfur polymer composites incorporating super-absorbent polymer (SAP) and binary cement. The SAP was employed as a primary remedy for the rapid self-sealing in less than 30 min. The binary cement was used as a secondary self-healing element, and was composed of calcium sulfoaluminate (CSA) expansive agent and Portland cement. The mixture cases were prepared and tested varying the proportions of the components of binary cement, depending on the presence of SAP. Water permeability tests were conducted on through-crack samples to evaluate their rapid self-sealing performances under water penetration. Nondestructive tests including elastic wave transmission and optical microscopy were carried out to assess the effectiveness of SAP and binary cement on the rapid self-healing. The test results revealed that the presence of SAP dramatically accelerated the rapid self-sealing performance. The SAP particles quickly swelled up by absorbing water, and sealed and bridged between the two crack faces, which likely assisted the nucleation and growth of hydrated products around them. In addition, an increasing ratio of CSA expansive agent in the binary cement led to the better rapid self-sealing. (C) 2020 Elsevier Ltd. All rights reserved.
机译:该研究研究了一种掺入超吸收性聚合物(SAP)和二元水泥的改性硫聚合物复合材料的快速自密封。在不到30分钟的情况下,将SAP作为初级补救措施进行初级补救措施。二元水泥用作二级自愈合元素,并由硫钙钙(CSA)膨胀剂和波特兰水泥组成。制备混合物案例并根据SAP的存在,改变二元水泥组分的比例。在通过裂纹样品上进行渗透性试验,以评估它们在水渗透下的快速自密封性能。在包括弹性波传输和光学显微镜的非破坏性测试,以评估SAP和二元水泥对快速自我愈合的有效性。测试结果表明,SAP的存在显着加速了快速的自密封性能。 SAP颗粒通过吸收水迅速膨胀,并在两个裂纹面之间密封和桥接,这可能辅助周围的水合产物的成核和生长。另外,在二元水泥中的CSA膨胀剂的增加导致了更快的自密封。 (c)2020 elestvier有限公司保留所有权利。

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