简介概要

A new calculation method for axial load capacity of separated concrete-filled steel tubes based on limit equilibrium theory

来源期刊:中南大学学报(英文版)2013年第6期

论文作者:LIU Xia-ping(刘夏平) SUN Zhuo(孙卓) TANG Shu(唐述) HUANG Hai-yun(黄海云) LIU Ai-rong(刘爱荣)

文章页码:1750 - 1758

Key words:concrete-filled steel tube; limit equilibrium theory; axial load capacity

Abstract: A new calculation method for axial load capacity of separated concrete-filled steel tubes based on limit equilibrium theory was proposed, which took into account the decrease of confinement effect by steel tube and the non-uniform distribution of ultimate stress in cored concrete. The accuracy of the analytical result is validated through running the numerical result by finite element method (FEM) and experimental data as well. The influences of the key parameters on the load capacity of the concrete-filled steel tube (CFST) was studied, including the separation ratio, concrete compressive strength, and steel strength. The results indicate that the load capacity of the tube increases with concrete strength and steel strength under the separation ratio less than 4%, while decreases with a higher separation ratio improved.

详情信息展示

A new calculation method for axial load capacity of separated concrete-filled steel tubes based on limit equilibrium theory

LIU Xia-ping(刘夏平), SUN Zhuo(孙卓), TANG Shu(唐述), HUANG Hai-yun(黄海云), LIU Ai-rong(刘爱荣)

(College of Civil Engineering, Guangzhou University, Guangzhou 510006, China)

Abstract:A new calculation method for axial load capacity of separated concrete-filled steel tubes based on limit equilibrium theory was proposed, which took into account the decrease of confinement effect by steel tube and the non-uniform distribution of ultimate stress in cored concrete. The accuracy of the analytical result is validated through running the numerical result by finite element method (FEM) and experimental data as well. The influences of the key parameters on the load capacity of the concrete-filled steel tube (CFST) was studied, including the separation ratio, concrete compressive strength, and steel strength. The results indicate that the load capacity of the tube increases with concrete strength and steel strength under the separation ratio less than 4%, while decreases with a higher separation ratio improved.

Key words:concrete-filled steel tube; limit equilibrium theory; axial load capacity

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