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Young Joo Lee

Ulsan National Institute of Science and Technology · 工学

研究室紹介

Professor Young Joo Lee's research lab specializes in advanced solid-state nuclear magnetic resonance (NMR) and in situ characterization techniques to investigate the local electronic and structural environments in energy materials, particularly lithium-ion and lithium–sulfur battery materials. The lab focuses on understanding ion diffusion, redox mechanisms, and structural evolution in complex oxides and polymers under electrochemical cycling, using a combination of NMR, XRD, and computational methods. A key research direction involves probing local lithium and proton environments in cathode materials to elucidate structure–property relationships critical for next-generation energy storage systems.

solid-state NMRenergy storagelithium-ion batterieslithium-sulfur batterieslocal structure

Research Overview

Papers
138
Total Citations
3,236
Papers (5y)
36
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
36total
2021
2022
2023
2024
2025
Citations per year (5y)
410total
20212022202320242025

Selected Papers

15
1
Article|101 citations·2010
Post-hazard flow capacity of bridge transportation network considering structural deterioration of bridges
Young‐Joo Lee, Junho Song, Paolo Gardoni, Hyunwoo Lim
SJR Q1Structure and Infrastructure Engineering

The flow capacity of a transportation network can be reduced significantly if its constituent bridges are damaged by natural or man-made hazards. For rapid risk-informed decision making on hazard mitigation and response, it is therefore essential to have a capability to predict the post-hazard flow capacity of the network efficiently and accurately. However, this is a challenging task due to the uncertainty in hazards and structural damage, and the complex nature of the network flow analysis. Mo

Civil and Structural EngineeringEngineering
2
Article|66 citations·2017
Flood fragility analysis for bridges with multiple failure modes
Hyunjun Kim, Sung‐Han Sim, Jaebeom Lee, Young‐Joo Lee, Jin‐Man Kim
SJR Q2Advances in Mechanical EngineeringOA

Bridges are one of the most important infrastructure systems that provide public and economic bases for humankind. It is also widely known that bridges are exposed to a variety of flood-related risk factors such as bridge scour, structural deterioration, and debris accumulation, which can cause structural damage and even failure of bridges through a variety of failure modes. However, flood fragility has not received as much attention as seismic fragility despite the significant amount of damage

Civil and Structural EngineeringEngineering
3
Article|66 citations·2019
Long‐term displacement measurement of bridges using a LiDAR system
Junhwa Lee, Kyoung‐Chan Lee, Sahyeon Lee, Young‐Joo Lee, Sung‐Han Sim
SJR Q1Structural Control and Health Monitoring

Long-term displacement measurements provide important information about the structural safety of civil engineering structures and the associated maintenance necessary. Most approaches developed for measuring displacement, such as direct measurements using the linear variable differential transformer and computer vision-based sensing, relate to campaign-type sensor deployment. However, these methods have critical limitations when used to accurately measure long-term displacement, because it is di

Civil and Structural EngineeringEngineering
4
Article|58 citations·2011
Risk Analysis of Fatigue-Induced Sequential Failures by Branch-and-Bound Method Employing System Reliability Bounds
Young‐Joo Lee, Junho Song
SJR Q1Journal of Engineering Mechanics

Various types of structural systems are often subjected to the risk of fatigue-induced failures. If a structure does not have an adequate level of structural redundancy, local failures may initiate sequential failures and cause exceedingly large damage. For the risk-informed design and maintenance of such structural systems, it is thus essential to quantify the risk of fatigue-induced sequential failure. However, such risk analysis is often computationally intractable because one needs to explor

Statistics, Probability and UncertaintyDecision Sciences
5
Article|49 citations·2018
Fragility Analysis of Space Reinforced Concrete Frame Structures with Structural Irregularity in Plan
Do-Soo Moon, Young‐Joo Lee, Sang Mok Lee
SJR Q1Journal of Structural EngineeringOA

Because significant damages to structures having structural irregularity in their plans were repeatedly observed during many past earthquakes, there have been great research efforts to evaluate their seismic vulnerability. Although most of the previous studies used simplified structural representations such as one-dimensional or two-dimensional models in the fragility analysis of plan-irregular structures, simple analytical models could not represent true seismic behavior from the complicated no

Civil and Structural EngineeringEngineering
6
Article|38 citations·2014
A new methodology of the development of seismic fragility curves
Young‐Joo Lee, Do-Soo Moon
SJR Q2Smart Structures and Systems

There are continuous efforts to mitigate structural losses from earthquakes and manage risk through seismic risk assessment; seismic fragility curves are widely accepted as an essential tool of such efforts. Seismic fragility curves can be classified into four groups based on how they are derived: empirical, judgmental, analytical, and hybrid. Analytical fragility curves are the most widely used and can be further categorized into two subgroups, depending on whether an analytical function or sim

Civil and Structural EngineeringEngineering
7
Article|37 citations·2019
Probabilistic prediction of mechanical characteristics of corroded strands
Jaebeom Lee, Young‐Joo Lee, Chang-Su Shim
SJR Q1Engineering Structures
Mechanics of MaterialsEngineering
8
Article|33 citations·2016
SHM-Based Probabilistic Fatigue Life Prediction for Bridges Based on FE Model Updating
Young‐Joo Lee, Soojin Cho
SJR Q1SensorsOA

Fatigue life prediction for a bridge should be based on the current condition of the bridge, and various sources of uncertainty, such as material properties, anticipated vehicle loads and environmental conditions, make the prediction very challenging. This paper presents a new approach for probabilistic fatigue life prediction for bridges using finite element (FE) model updating based on structural health monitoring (SHM) data. Recently, various types of SHM systems have been used to monitor and

Civil and Structural EngineeringEngineering
9
Article|33 citations·2020
Accelerated System-Level Seismic Risk Assessment of Bridge Transportation Networks through Artificial Neural Network-Based Surrogate Model
Sungsik Yoon, Jeongseob Kim, Minsun Kim, Hye-Young Tak, Young‐Joo Lee
SJR Q2Applied SciencesOA

In this study, an artificial neural network (ANN)-based surrogate model is proposed to evaluate the system-level seismic risk of bridge transportation networks efficiently. To estimate the performance of a network, total system travel time (TSTT) was introduced as a performance index, and an ANN-based surrogate model was incorporated to evaluate a high-dimensional network with probabilistic seismic hazard analysis (PSHA) efficiently. To generate training data, the damage states of bridge compone

Civil and Structural EngineeringEngineering
10
Article|30 citations·2012
Finite-element-based system reliability analysis of fatigue-induced sequential failures
Young‐Joo Lee, Junho Song
SJR Q1Reliability Engineering & System Safety
Statistics, Probability and UncertaintyDecision Sciences
11
Article|25 citations·2019
System‐Level Seismic Risk Assessment of Bridge Transportation Networks Employing Probabilistic Seismic Hazard Analysis
Hye-Young Tak, Wonho Suh, Young‐Joo Lee
SJR Q2Mathematical Problems in EngineeringOA

Earthquakes can have significant impacts on transportation networks because of the physical damage they can cause to bridges. Hence, it is essential to assess the seismic risk of a bridge transportation network accurately. However, this is a challenging task because it requires estimating the performance of a bridge transportation network at the system level. Moreover, it is necessary to deal with various possible earthquake scenarios and the associated damage states of component bridges conside

Civil and Structural EngineeringEngineering
12
Article|25 citations·2018
Continuous fatigue crack length estimation for aluminum 6061-T6 plates with a notch
Hyung Jin Lim, Young‐Joo Lee, Hoon Sohn
SJR Q1Mechanical Systems and Signal Processing
Mechanics of MaterialsEngineering
13
Article|23 citations·2022
Natural Shaping of Acellular Dermal Matrices for Implant‐Based Breast Reconstruction via Expansile Kirigami
Young‐Joo Lee, Suhail Kanchwala, Hyesung Cho, Jason Christopher Jolly, Eric M. Jablonka, Michael Tanis, Randall D. Kamien, Shu Yang
SJR Q1Advanced Materials

To complete a successful and aesthetic breast reconstruction for breast cancer survivors, tissue reinforcing acellular dermal matrices (ADMs) are widely utilized to create slings/pockets to keep breast implants or autologous tissue transfer secured against the chest wall in the desired location. However, ADM sheets are 2D and cannot completely cover the entire implant without wrinkles. Here, guided by finite element modeling, a kirigami strategy is presented to cut the ADM sheets with locally an

Automotive EngineeringEngineering
14
Article|21 citations·2018
Long-Term Deflection Prediction from Computer Vision-Measured Data History for High-Speed Railway Bridges
Jaebeom Lee, Kyoung‐Chan Lee, Young‐Joo Lee
SJR Q1SensorsOA

Management of the vertical long-term deflection of a high-speed railway bridge is a crucial factor to guarantee traffic safety and passenger comfort. Therefore, there have been efforts to predict the vertical deflection of a railway bridge based on physics-based models representing various influential factors to vertical deflection such as concrete creep and shrinkage. However, it is not an easy task because the vertical deflection of a railway bridge generally involves several sources of uncert

Civil and Structural EngineeringEngineering
15
Article|20 citations·2017
Probabilistic Fatigue Life Updating for Railway Bridges Based on Local Inspection and Repair
Young‐Joo Lee, Robin Kim, Wonho Suh, Kiwon Park
SJR Q1SensorsOA

Railway bridges are exposed to repeated train loads, which may cause fatigue failure. As critical links in a transportation network, railway bridges are expected to survive for a target period of time, but sometimes they fail earlier than expected. To guarantee the target bridge life, bridge maintenance activities such as local inspection and repair should be undertaken properly. However, this is a challenging task because there are various sources of uncertainty associated with aging bridges, t

Mechanics of MaterialsEngineering

Research Areas

Civil and Structural EngineeringStatistics, Probability and UncertaintyInformation SystemsMechanics of MaterialsMechanical EngineeringGeneral Health Professions

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