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contributor authorQingxiong Wu
contributor authorJianping Luo
contributor authorKangming Chen
contributor authorDongdong Han
contributor authorQiaofeng Zheng
date accessioned2025-08-17T22:20:18Z
date available2025-08-17T22:20:18Z
date copyright4/1/2025 12:00:00 AM
date issued2025
identifier otherJSENDH.STENG-14223.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4306788
description abstractTo reveal the mechanism by which internal studs enhance the fatigue resistance of concrete-filled steel tubular K-joints (CFST K-joints) and to develop a method for calculating the stress concentration factor (SCF) of CFST K-joints with internal studs (CFST KS-joints), this study conducted full-scale specimen fatigue tests on CFST K-joints with array-arranged and circular-arranged internal studs. The influence of internal studs on the fatigue performance of CFST K-joints was thoroughly analyzed. The equivalent wall thickness theory was introduced, and the wall thickness correction factor was derived. A highly accurate SCF calculation method for CFST KS-joints was established. The research results indicate that the arrangement of internal studs can enhance fatigue life by 100.6% and reduce the SCF by 77.6%. Furthermore, the efficiency of circular-arranged studs is approximately twice that of array-arranged studs. When the undetermined factors mc for CFST K-joints with array-arranged and circular-arranged internal studs are set to 0.002 and 0.019, respectively, the maximum deviations of the wall thickness correction factor a are only 7.98% and 8.20%, respectively. Utilizing the equivalent wall thickness theory, SCF calculation methods for CFST K-joints with array-arranged and circular-arranged internal studs are derived, yielding errors of less than 19.6% and 21.4%, respectively.
publisherAmerican Society of Civil Engineers
titleFatigue Performance and SCF Calculation Method of CFST K-Joints with Array-Arranged and Circular-Arranged Internal Studs
typeJournal Article
journal volume151
journal issue4
journal titleJournal of Structural Engineering
identifier doi10.1061/JSENDH.STENG-14223
journal fristpage04025010-1
journal lastpage04025010-14
page14
treeJournal of Structural Engineering:;2025:;Volume ( 151 ):;issue: 004
contenttypeFulltext


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