정동혁 교수
Donghyuk Jung
고려대학교 건축사회환경공학부 · 공학
연구실 소개
정동혁 교수의 연구실은 고성능 복합소재 및 구조물의 내구성과 안정성을 향상시키는 데 초점을 맞추고 있습니다. 특히 폴리우레탄 기반 유기-무기 하이브리드 소재, 고강도 concrete의 성능 향상 기술, 그리고 자가복구 기능을 가진 복합재료 개발을 통해 건축 및 civil 구조물의 수명 연장과 지진 저항성을 강화하고자 합니다. 형태 기억 합금과 나노입자를 활용한 스마트한 재료 설계 및 응용 기술이 핵심 연구 주제입니다.
연구 현황
연구 성과 추이
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
주요 논문
15Vinyltrimethoxysilane (VTMS)-modified silica particles were incorporated into the chain of amorphous polyurethane (PU) by covalent bonds, to synthesize an organic–inorganic hybrid material with an extremely long relaxation time. At 1% silica, the PU–silica chemical hybrids gave over 99% shape fixity and shape recovery with <2% hysteresis during the four thermomechanical cycles. As silica content increases (2, 3%) shape memory performance slightly decreased with repeated cycles. Results were favo
Abstract Despite its great potential, the use of high strength concrete (HSC) in bridge columns raises concerns associated with the intrinsic brittleness of the material and the insufficient lateral deformation capacity of the columns under seismic loading. To ensure the ductile response of HSC columns, this paper proposes and studies an innovative hybrid confinement method which provides traditional passive confinement combined with thermally triggered active confinement by using fiber-reinforc
This paper examines the influence of CA2 (monocalcium dialuminate, CaAl4O7) in calcium aluminate cement (CAC) on strength development relevant to conversion reaction in the hydration process. to ensure the different phase compositions at early ages, a curing temperature of 5 and 65 °C was applied to fabricating cement paste with two types of CAC for the first 24 h. The hydration behavior of the specimen was investigated by isothermal calorimetry, X-ray diffraction, and thermogravimetry. Simultan
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Abstract A self-repairing polyester matrix composite material is described which utilizes embedded polyoxymethylene urea (PMU) microspheres to store a crack filling agent to be released into the crack and rebond the crack faces. The developed repair mechanism uses naturally occurring functional sites in the polyester matrix network to trigger the repair action. The repair agent is mostly composed of styrene monomers and high molecular weight polystyrene. Microscopic observations of the microsphe
This study numerically examined the seismic performance of a multiple-frame bridge retrofitted with external shape memory alloy (SMA) spirals actively confining the plastic hinges of the bridge piers when subjected to strong main shock–aftershock sequences. A numerical model of the bridge, including abutments and expansion joints, was developed and used in the study. The model accounts for the spread of plasticity along the piers and the constitutive behavior of SMA-confined concrete. A suite of
The seismic performance of a ductile rod system for exterior precast concrete beam-to-column connections was experimentally evaluated. Five full-scale precast concrete beam-to-column subassemblies connected with ductile rods were fabricated, considering various aspects (ductile rod size, prestressing, and flexural/shear capacities). Lateral cyclic loading tests were conducted for the precast concrete connections along with two monolithic reinforced concrete connections. Despite their relatively
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