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A Review of Developments and Challenges for UHPC in Structural Engineering: Behavior, Analysis, and Design

机译:结构工程中UHPC的发展与挑战述评:行为,分析和设计

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The number of studies on ultrahigh-performance concrete (UHPC) or ultrahigh-performance fiber-reinforced concrete (UHP-FRC) for more resilient and sustainable reinforced concrete (RC) structures has rapidly increased in recent years due to the superior mechanical and durability properties of UHPC. The application of UHPC as a replacement for conventional concrete materials in various RC elements necessitates a thorough understanding of the structural behavior of the reinforced UHPC (R/UHPC) components under various types of loadings. This paper presents a systematic review of the state-of-the-art developments in R/UHPC elements. It addresses various topics including beams, columns, beam-column joints, shear walls, bridges, structural retrofitting, and applications such as seismic and impact. Due to the ultrahigh tensile, compressive, and bond strengths, unique strain-hardening behavior, and ductility of UHPC, R/UHPC structures may exhibit substantially different behavior than conventional RC structures at both the component and system levels. This implies that particular attention must be paid when design and analysis approaches for conventional RC elements are applied to R/UHPC elements, and suggests that developing new design philosophies is warranted to take advantage of UHPC's unique mechanical properties. The present paper summarizes the developments in analysis and design approaches for R/UHPC elements under axial forces, shear forces, and bending moments, and highlights the advantages and limitations of these approaches. Important design considerations for effectively utilizing UHPC in structural elements are also suggested. In addition to normal-strength steel reinforcing bars, the potential for reinforcing UHPC with high-strength steel bars, fiber-reinforced polymer components, and structural steel shapes is discussed based on the results of pioneering studies. Finally, this paper identifies challenges and suggests future directions for research on UHPC in structural engineering.
机译:由于卓越的机械和耐久性,近年来,超高性能混凝土(UHPC)或超高效纤维钢筋混凝土(UHP-FRC)的研究数量近年来迅速增加了较高的机械和耐用性UHPC。 UHPC在各种RC元素中的常规混凝土材料的替代材料需要彻底了解各种类型的载荷下增强UHPC(R / UHPC)组分的结构行为。本文提出了对R / UHPC元素的最先进发展的系统审查。它解决了各种主题,包括梁,柱,光束柱接头,剪力墙,桥梁,结构改装和诸如地震和冲击的应用。由于超高拉伸,压缩和粘合强度,独特的应变 - 硬化行为和UHPC的延展性,R / UHPC结构可以表现出比组件和系统水平的常规RC结构的基本不同的行为。这意味着当传统RC元件的设计和分析方法应用于R / UHPC元件时,必须特别注意,并建议开发新的设计哲学,以利用UHPC的独特机械性能。本文总结了轴向力,剪切力和弯矩下R / UHPC元件的分析和设计方法的发展,并突出了这些方法的优点和限制。还提出了在结构元素中有效利用UHPC的重要设计考虑因素。除了正常强度钢筋加强杆之外,基于开创性研究的结果,讨论了利用高强度钢筋,纤维增强聚合物组分和结构钢形状来加强UHPC的可能性。最后,本文确定了挑战,并表明了结构工程中UHPC研究的未来方向。

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