A New Approach for Durable and Sustainable Infrastructure Concrete

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Abstract

The durability of reinforced concrete infrastructures is a major concern related to several aspects of the sustainability. The actual concrete design is still largely based on prescriptive indications, such as the cement content and the water cement ratio, while the durability investigation started to be oriented towards a more performance-based concept. The actual laboratory durability tests depend on the environmental exposure classes. Nonetheless, the actual stringent durability limits force to produce concrete with a too rapid strength development. This fact adversely affects the rigidity of the infrastructure and reduce the durability. Furthermore, the actual concrete requirement concepts partially inhibit the use of more sustainable concrete. This work proposes a new approach and a new concrete framework to produce more eco-efficient and more durable concrete. This will be attained by introducing a better laboratory-field relationship with respect to the durability by means of combined laboratory environmental attacks, which better simulate the real infrastructure site condition.
实现持久和可持续基础设施混凝土的新方法
钢筋混凝土基础设施的耐久性是与可持续发展的几个方面相关的主要问题。实际的混凝土设计在很大程度上仍以规定性指标为基础,如水泥含量和水灰比,而耐久性研究则开始以更注重性能的概念为导向。实际的实验室耐久性测试取决于环境暴露等级。然而,实际的严格耐久性限制迫使混凝土的强度发展过快。这对基础设施的刚度产生了不利影响,降低了耐久性。此外,实际的混凝土要求概念也在一定程度上阻碍了更具可持续性的混凝土的使用。这项工作提出了一种新方法和新的混凝土框架,以生产出更环保、更耐用的混凝土。为了实现这一目标,我们将通过实验室环境综合攻击,在耐久性方面引入更好的实验室-现场关系,从而更好地模拟真实的基础设施现场条件。
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