Sinha Arkabrata, Wang Qi, Wei Jianqiang
Department of Civil and Environmental Engineering, Francis College of Engineering, University of Massachusetts Lowell, Lowell, MA 01854, USA.
Materials (Basel). 2021 Feb 18;14(4):958. doi: 10.3390/ma14040958.
Cracking can facilitate deteriorations of concrete structures via various mechanisms by providing ingress pathways for moisture and aggressive chemicals. In contrast to conventional maintenance methods, self-healing is a promising strategy for achieving automatic crack repair without human intervention. However, in capsule-based self-healing concrete, the dilemma between capsules' survivability and crack healing efficiency is still an unfathomed challenge. In this study, the feasibility of a novel property-switchable capsule system based on a sustainable biomass component, polylactic acid, is investigated. Capsules with different geometries and dimensions were studied focusing on the compatibility with concrete, including survivability during concrete mixing, influence on mortar and concrete properties, and property evolution of the capsules. The results indicate that the developed elliptical capsules can survive regular concrete mixing with a survival ratio of 95%. In concrete containing 5 vol.% of gravel-level capsules, the compressive strength was decreased by 13.5% after 90 days, while the tensile strength was increased by 4.8%. The incorporation of 2 vol.% of sand-level capsules did not impact the mortar strength. Degradation and switchable properties triggered by the alkaline matrix of cement were observed, revealing the potential of this novel biomass capsule system in achieving both high survivability and self-healing efficiency in concrete.
开裂可通过为水分和侵蚀性化学物质提供侵入途径,经由多种机制促进混凝土结构的劣化。与传统维护方法不同,自修复是一种有望在无需人工干预的情况下实现自动裂缝修复的策略。然而,在基于胶囊的自修复混凝土中,胶囊的生存能力与裂缝修复效率之间的两难困境仍是一个尚未解决的挑战。在本研究中,研究了一种基于可持续生物质成分聚乳酸的新型性质可切换胶囊系统的可行性。研究了具有不同几何形状和尺寸的胶囊,重点关注其与混凝土的相容性,包括混凝土搅拌过程中的生存能力、对砂浆和混凝土性能的影响以及胶囊的性质演变。结果表明,所开发的椭圆形胶囊能够在常规混凝土搅拌中存活,存活率为95%。在含有5体积%砾石级胶囊的混凝土中,90天后抗压强度降低了13.5%,而抗拉强度提高了4.8%。掺入2体积%的砂级胶囊对砂浆强度没有影响。观察到由水泥碱性基体引发的降解和可切换性质,揭示了这种新型生物质胶囊系统在混凝土中实现高生存能力和自修复效率的潜力。