Hyung-Suk Jung
Kwandong University
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Publication
Featured researches published by Hyung-Suk Jung.
International Journal of Polymer Science | 2018
Hyung-Suk Jung; Baek-Il Bae; Hyun-Ki Choi; Joo-Hong Chung; Chang-Sik Choi; Yun-Cheul Choi
This study was conducted to evaluate the applicability of concrete-filled steel tube (CFT) columns made from high-performance construction materials. KBC2016, South Korea’s current building code, limits the maximum compressive strength of concrete at 70 MPa and the maximum yield strength of steel at 650 MPa. Similar restrictions to material properties are imposed on major composite structural design parameters in other countries worldwide. With the recent acceleration of the pace of development in the field of material technology, the compressive strength of commercial concrete has been greatly improved and the problem of low tensile strength, known to be the major limitation of concrete, is being successfully addressed by adding fiber reinforcement to concrete. Therefore, the focus of this study was to experimentally determine the strength and ductility enhancement effects, which depend on material composition. To this end, we performed concentric axial loading tests on CFT stub columns made from steel with a yield strength of 800 MPa and steel fiber-reinforced high-strength concrete. By measuring the strain at the yield point of CFT steel during the test, we could determine whether steel yields earlier than ultimate failure load of the member, which is a key design concept of composite structures. The analysis results revealed that the yield point of steel preceded that of concrete on the stress-strain curve by the concurrent action of the strain increase at the maximum strength, attributable to the high compressive strength and steel fiber reinforcement, and the strain increase induced by the confining stress of the steel tube. Additionally, we performed parametric study using ABAQUS to establish the broad applications of CFT using high-performance materials, with the width-to-thickness ratio as the main parameter. Parametric study was undertaken as experimental investigation was not feasible, and we reviewed the criteria for limiting the width-to-thickness ratio as specified in the current building code.
Journal of The Korea Concrete Institute | 2017
Jung-Yeob Kim; Hyung-Suk Jung; Sung-Chul Chun; In-Ho Kim; Chang-Sik Choi
In exterior beam-column joints, hooked bars are used for anchorage, but usage of high-strength and large-diameter bars increases, headed bar is preferred for solving steel congestion and difficulty in construction. To investigate the structural performance of headed bars, Six exterior beam-column joints were tested under cyclic loading. Tests parameter were the anchorage methods and concrete strength. The test results indicate that behavior of headed bar specimens shows similar performance with hooked bar specimens. All specimens failed by flexural failure of the beam. Headed bar specimens shows better performance in anchorage and joint shear. All specimens were satisfied the criteria of ACI374.1-05. Test results indicate that use of headed bar in exterior beam column joint is available.
Aci Structural Journal | 2017
Sung-Chul Chun; Chang-Sik Choi; Hyung-Suk Jung
Engineering Structures | 2018
Baek-Il Bae; Joo-Hong Chung; Hyun-Ki Choi; Hyung-Suk Jung; Chang-Sik Choi
Advanced Science Letters | 2012
Hyung-Suk Jung; Joo-Hong Chung; Chang-Sik Choi
International Journal of Concrete Structures and Materials | 2018
Joo-Hong Chung; Hyung-Suk Jung; Baek-Il Bae; Chang-Sik Choi; Hyun-Ki Choi
Engineering Structures | 2018
Joo-Hong Chung; Baek-Il Bae; Hyun-Ki Choi; Hyung-Suk Jung; Chang-Sik Choi
Journal of Ceramic Processing Research | 2015
Hyung-Suk Jung; Hyun-Ki Choi; Chang-Sik Choi
Journal of Korean Society of Hazard Mitigation | 2014
Hyung-Suk Jung; Chang-Sik Choi; Hyun-Ki Choi
IABSE Congress Report | 2012
Jin-Soo Hong; Hyung-Suk Jung; Baek-Il Bae; Chang-Sik Choi