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Ultra-high durable concrete: A way towards safe and durable structures

机译:超高耐久性混凝土:通往安全耐用结构的一种方法

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摘要

Durability of construction and building materials is a pivotal issue for any civil engineering project in the context of sustainable development. In this regard, developing any material with improved durability characteristics would be of great significance particularly for infrastructures encountered aggressive environments. Ultra-high performance concrete (UHPC) is one of this promising materials, as a high-tech self-compacting composite material, which shows advanced characteristics such as self-compactness, compressive strength higher than 150 MPa, and exceptional durability performances compared to other kinds of concrete. This material offers variety of sustainable applications. It enables designers to have slim sections with higher strength, ductility and durability for applications such as shell structures, interior and exterior architectural and structural elements in any shape and texture even in high-rise structures and aggressive environments. In this paper, the durability of a specific composition of UHPC was studied. The dense matrix of the designed UHPC exhibited ultra-high durability performance through long-term and intense carbonation and chloride-ion migration tests. As results demonstrated, even after 191 days, no carbonation depth was observed. No chloride depth was also detected after 14 days of being in the chloride solution with maximum voltage of 60 V.
机译:在可持续发展的背景下,建筑和建材的耐用性是任何土木工程项目的关键问题。在这方面,开发任何具有改善的耐久性能的材料都将具有重要意义,特别是对于遇到恶劣环境的基础设施而言。超高性能混凝土(UHPC)是一种有前途的材料,它是一种高科技的自密实复合材料,具有先进的特性,如自密实性,高于150 MPa的抗压强度以及与其他同类产品相比出色的耐久性能各种混凝土。这种材料可提供多种可持续应用。它使设计人员能够具有纤薄的型材,具有更高的强度,延展性和耐久性,适用于各种形状和纹理的壳体结构,内部和外部建筑以及结构元素,即使在高层结构和恶劣的环境中也是如此。在本文中,研究了UHPC特定成分的耐久性。通过长期和强烈的碳化和氯离子迁移测试,设计的UHPC的致密基质表现出超高的耐久性能。结果表明,即使在191天后,也未观察到碳化深度。在氯化物溶液中放置14天后,最大电压为60 V,也未检测到氯化物深度。

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