Effect of Cast-in-Place Concrete and Stirrups on Shear Capacity of Precast Composite Hollow-Core Slabs

被引:0
|
作者
Kim, Sang Yoon [1 ]
Lee, Deuckhang [1 ]
Oh, Jong-Hwan [2 ]
Han, Sun-Jin [3 ]
机构
[1] Department of Architectural Engineering, Chungbuk National University, Cheongju, Korea, Republic of
[2] IS Dongseo Co. Research and Development Institute, Seoul, Korea, Republic of
[3] Department of Architectural Engineering, Jeonju University, Jeonju-si, Korea, Republic of
基金
新加坡国家研究基金会;
关键词
Concrete slabs - Concrete testing - Extrusion molding - Fracture mechanics - Hot topping - Precast concrete - Prestressed concrete - Reinforcement - Shear flow - Shear strength;
D O I
10.14359/51742141
中图分类号
学科分类号
摘要
In this study, full-scale loading tests were conducted to investigate web-shear strengths of hollow-core slab (HCS) members strengthened in shear by using practically viable methods. All the HCS units used in the current test program were fabricated by using the individual mold method, not by the extrusion method, and the key experimental variables of the shear test were set as the presence of shear reinforcement, core-filling concrete, topping concrete, and also the magnitude of effective prestress. The shear force-displacement behaviors, crack patterns, and strain response of shear reinforcements were reported in detail. In addition, to identify the shear strength enhancement provided under various strengthening conditions in a quantitative manner, existing shear test results of series specimens, including a naked HCS member and corresponding composite HCS members with cast-in-place (CIP) concrete and/ or shear reinforcements, were collected from literature. On this basis, a practical design expression capable of estimating shear strengths of HCSs strengthened with CIP concrete and stirrups was suggested based on the ACI 318 code equation. The proposed method evaluated the shear strengths of the collected specimens with a good level of accuracy, regardless of the presence of core-filling concrete, topping concrete, and shear reinforcements. © 2024, American Concrete Institute. All rights reserved.
引用
收藏
页码:75 / 90
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