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Biomimetic Self-Healing Cementitious Construction Materials for Smart Buildings

机译:用于智能建筑的仿生自我愈合水泥结构材料

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摘要

Climate change is anticipated to have a major impact on concrete structures through increasing rates of deterioration as well the impacts of extreme weather events. The deterioration can affect directly or indirectly climate change in addition to the variation in the carbon dioxide concentration, temperature and relative humidity. The deterioration that occurs from the very beginning of the service not only reduces the lifespan of the concretes but also demands more cement to maintain the durability. Meanwhile, the repair process of damaged parts is highly labor intensive and expensive. Thus, the self-healing of such damages is essential for the environmental safety and energy cost saving. The design and production of the self-healing as well as sustainable concretes are intensely researched within the construction industries. Based on these factors, this article provides the materials and methods required for a comprehensive assessment of self-healing concretes. Past developments, recent trends, environmental impacts, sustainability, merits and demerits of several methods for the production of self-healing concrete are discussed and analyzed.
机译:预计气候变化将通过增加恶化的速度以及极端天气事件的影响来对混凝土结构产生重大影响。除了二氧化碳浓度,温度和相对湿度的变化之外,劣化可以直接或间接气候变化。从服务的开始时发生的劣化不仅可以减少混凝土的寿命,而且还需要更多的水泥来维持耐用性。同时,损坏部件的修复过程是高度劳动密集型和昂贵的。因此,这种损害赔偿的自我愈合对于环境安全和节能至关重要。自我愈合的设计和制作以及可持续的混凝土在建筑行业内密集地研究。根据这些因素,本文提供了全面评估自愈混凝土所需的材料和方法。讨论了过去的发展,近期趋势,环境影响,可持续性,若干方法生产自我愈合混凝土方法的缺点。

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