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Featured researches published by Jin-Wook Bang.


Advances in Materials Science and Engineering | 2014

Effect of W/C Ratio on Durability and Porosity in Cement Mortar with Constant Cement Amount

Yun-Yong Kim; Kwang-Myung Lee; Jin-Wook Bang; Seung-Jun Kwon

Water is often added to concrete placing for easy workability and finishability in construction site. The additional mixing water can help easy mixing and workability but causes increased porosity, which yields degradation of durability and structural performances. In this paper, cement mortar samples with 0.45 of W/C (water to cement) ratio are prepared for control case and durability performances are evaluated with additional water from 0.45 to 0.60 of W/C. Several durability tests including strength, chloride diffusion, air permeability, saturation, and moisture diffusion are performed, and they are analyzed with changed porosity. The changing ratios and patterns of durability performance are evaluated considering pore size distribution, total porosity, and additional water content.


Journal of The Korea Concrete Institute | 2012

Shear Strength Enhancement of Hollow PHC Pile Reinforced with Infilled Concrete and Shear Reinforcement

Jung-Hwan Hyun; Jin-Wook Bang; Seung-Soo Lee; Yun-Yong Kim

In order to improve the shear strength of conventional pre-tensioned spun high strength concrete (PHC) pile, concrete-infilled composite PHC (ICP) pile, a PHC pile reinforced by means of shear reinforcement and infilled concrete, is proposed. Two types of specimens were cast and tested according to KS (Korean Standards) to verify the shear strength enhancement of ICP pile. Based on the test results, it was found that the KS method was not suitable due to causing shear failure of ICP pile. However, shear strength enhancement was clearly verified. The obtained shear strength of the ICP pile was more than twice that of conventional PHC pile. In addition, the shear strength of ICP pile reinforced with longitudinal reinforcement was estimated to be more than 2.5 times greater than that of conventional PHC pile. The allowable shear force of ICP pile, which was determined by the allowable stress design process, indicated a large safety factor of more than 2.9 compared to the test results.


Journal of The Korea Concrete Institute | 2011

Flexural Experiments on Reinforced Concrete Beams Strengthened with ECC and High Strength Rebar

Hyun-Woo Cho; Jin-Wook Bang; Byung-Chan Han; Yun-Yong Kim

ECC is a micro-mechanically designed cementitious composite which exhibits tightly controlled crack width and strain hardening behavior in uniaxial tension while using a moderate amount of reinforcing fiber, typically less than 2% fiber volume fraction. Recently, a variety of applications of this material ranging from repair and retrofit of structures, cast-in-place structures, to precast structural elements requiring high ductility are developed. In the present study, a retrofitting method using ECC reinforced with high strength rebar was proposed to enhance load-carrying capacity and crack control performance of deteriorated reinforced concrete (RC) beams. Six beam specimens were designed and tested under a four-point loading setup. The flexural test revealed that load-carrying capacity and crack control performance were significantly enhanced by the use of ECC and high strength rebar. This result will be useful for practical field applications of the proposed retrofitting method.


Composites Part B-engineering | 2014

Flexural performance of reinforced concrete beams strengthened with strain-hardening cementitious composite and high strength reinforcing steel bar

Yun Yong Kim; Bang Yeon Lee; Jin-Wook Bang; Byung-Chan Han; Luciano Feo; Chang-Geun Cho


Nuclear Engineering and Design | 2014

Prediction of concrete compressive strength considering humidity and temperature in the construction of nuclear power plants

Seung Hee Kwon; Kyung Pil Jang; Jin-Wook Bang; Jang Hwa Lee; Yun Yong Kim


Construction and Building Materials | 2014

Effect of cover depth, w/c ratio, and crack width on half cell potential in cracked concrete exposed to salt sprayed condition

Yun Yong Kim; Jin-Man Kim; Jin-Wook Bang; Seung-Jun Kwon


Structural Engineering and Mechanics | 2014

Cyclic behavior of connection between footing and concrete-infilled composite PHC pile

Jin-Wook Bang; Jung Hwan Hyun; Bang Yeon Lee; Yun Yong Kim


Journal of The Korean Society for Composite Materials | 2010

Development of Hybrid Fiber-reinforced High Strength Lightweight Cementitious Composite

Jin-Wook Bang; Jung-Su Kim; Bang-Yeon Lee; Young-Il Jang; Yun-Yong Kim


Journal of The Korea Concrete Institute | 2018

Flexural Performance of Multi-layered Fiber-reinforced Cement Composites with Diverse Interface Shape

Ki-Seong Kwon; Jin-Wook Bang; Yun-Yong Kim


Journal of the Korea institute for structural maintenance and inspection | 2016

Pile-cap Connection Behavior Dependent on the Connecting Method between PHC pile and Footing

Jin-Wook Bang; Sang-Jin Oh; Seung-Soo Lee; Yun-Yong Kim

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Yun-Yong Kim

Chungnam National University

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Yun Yong Kim

Chungnam National University

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Bang Yeon Lee

Chonnam National University

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Byung-Chan Han

Kongju National University

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Jin-Man Kim

Kongju National University

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Jung Hwan Hyun

Chungnam National University

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