首页> 外文期刊>Journal of testing and evaluation >Behaviors of New RC Bridge Columns Made of Highly Flowable Strain-Hardening Fiber-Reinforced Concrete (HF-SHFRC) under Cyclic Loads
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Behaviors of New RC Bridge Columns Made of Highly Flowable Strain-Hardening Fiber-Reinforced Concrete (HF-SHFRC) under Cyclic Loads

机译:新型RC桥柱的行为在循环载荷下由高度流动应变硬化纤维钢筋混凝土(HF-SHFRC)制成的新型RC桥柱

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Remarkable development of high-strength concrete and reinforcement has been achieved nowadays. The purpose of the New Reinforced Concrete (New RC) project is aimed to reduce member section size by using high-strength concrete (f(c)' 70 MPa) and high-strength rebars (f(y) 685 MPa). Material consumption can be further reduced owing to the upgrade of strength. However, the brittle nature of high-strength concrete may also cause early cover spalling and other ductility issues. The addition of steel fibers is an alternative transverse reinforcement in New RC infrastructure systems. Highly flowable strain-hardening fiber-reinforced concrete (HF-SHFRC) has excellent workability in the fresh state and exhibits the strain-hardening and multiple-cracking characteristics of high-performance fiber-reinforced cementitious composites (HPFRCC) in their hardened state. This study aims to investigate the cyclic behavior of New RC bridge columns made of HF-SHFRC. Five large-scale bridge columns are subjected to cyclic lateral loading to verify their responses and deformation capacity. The test results show that by adding 1.5 % of high-strength hooked steel fibers, great deformation capacity is developed, in which either the stirrups spacing is increased to two times that of the control specimen or all tires are eliminated in New RC bridge columns. In addition, the accuracy of the proposed concept of equivalent lateral reinforcement is verified by the test results. Implementation of HF-SHFRC in New RC infrastructure offers opportunities to significantly simplify the design and construction of members for sustainable urbanization while ensuring adequate ductility and damage tolerance.
机译:如今,已经实现了高强度混凝土和加固的显着发展。新型钢筋混凝土(新RC)项目的目的旨在通过使用高强度混凝土(F(C)'> 70 MPA)和高强度钢筋(F(Y)> 685 MPa)来降低成员段大小。由于强度升级,可以进一步降低材料消耗。然而,高强度混凝土的脆性性质也可能导致早期覆盖剥落和其他延展性问题。添加钢纤维是新型RC基础设施系统中的替代横向增强。高度流动的应变硬化纤维增强混凝土(HF-SHFRC)在新鲜状态下具有优异的可加工性,并在其硬化状态下表现出高性能纤维增强水泥复合材料(HPFRCC)的应变硬化和多裂解特性。本研究旨在研究由HF-SHFRC制成的新RC桥柱的循环行为。五个大型桥柱循环横向负载验证它们的响应和变形容量。测试结果表明,通过加入1.5%的高强度钩钢纤维,开发了很大的变形能力,其中镫形间距增加到了对照样品的两倍,或者在新的RC桥柱中消除了所有轮胎。此外,通过测试结果验证了所提出的等效横向增强概念的准确性。新的RC基础设施中HF-SHFRC的实施提供了大大简化了可持续城市化的设计和构建的机会,同时确保了充足的延展性和损害耐受性。

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