An Overview of Smart Materials and Technologies for Concrete Construction in Cold Weather

J. Nilimaa, Vasiola Zhaka
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引用次数: 5

Abstract

Cold weather conditions pose significant challenges to the performance and durability of concrete materials, construction processes, and structures. This paper aims to provide a comprehensive overview of the material-related challenges in cold weather concrete construction, including slow setting, reduced curing rate, and slower strength development, as well as frost damage, early freezing, and freeze–thaw actions. Various innovative materials and technologies may be implemented to address these challenges, such as optimizing the concrete mix proportions, chemical admixtures, supplementary cementitious materials, and advanced construction techniques. The paper also examines the impact of weather-related challenges for personnel, equipment, and machinery in cold environments and highlights the importance of effective planning, communication, and management strategies. Results indicate that the successful implementation of appropriate strategies can mitigate the challenges, reduce construction time, and enhance the performance, durability, and sustainability of concrete structures in cold and freezing temperatures. The paper emphasizes the importance of staying updated about the latest advancements and best practices in the field. Future trends include the development of smart and functional concrete materials, advanced manufacturing and construction techniques, integrated design, and optimization of tools, all with a strong focus on sustainability and resilience.
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寒冷天气下混凝土施工智能材料与技术综述
寒冷的天气条件对混凝土材料、施工工艺和结构的性能和耐久性构成了重大挑战。本文旨在全面概述在寒冷天气下混凝土施工中与材料相关的挑战,包括缓慢的凝结,降低的养护速率,较慢的强度发展,以及霜冻损伤,早期冻结和冻融作用。可以采用各种创新材料和技术来应对这些挑战,例如优化混凝土配合比、化学外加剂、补充胶凝材料和先进的施工技术。本文还研究了寒冷环境中与天气相关的挑战对人员、设备和机械的影响,并强调了有效规划、沟通和管理策略的重要性。结果表明,成功实施适当的策略可以缓解这些挑战,缩短施工时间,提高混凝土结构在寒冷和冰冻温度下的性能、耐久性和可持续性。本文强调了了解该领域最新进展和最佳实践的重要性。未来的趋势包括智能和功能性混凝土材料的发展、先进的制造和施工技术、集成设计和工具优化,所有这些都将重点放在可持续性和弹性上。
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