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Sung Kyu Ha

Hanyang University · 工学

研究室紹介

Professor Sung Kyu Ha's research lab specializes in advanced materials and structural mechanics, with a strong focus on sustainable composites, smart materials, and biomechanical systems. The lab investigates the micromechanics of composite failure, piezoelectric actuation in laminated structures, and the development of biodegradable polymeric materials for environmental sustainability. It also conducts cutting-edge finite element modeling of spinal implants and hydrogen storage systems for clean energy applications, emphasizing lightweight, high-performance solutions for transportation and energy systems.

composite materialshydrogen storagebiomechanicssmart structuresbiodegradable polymers

Research Overview

Papers
259
Total Citations
5,666
Papers (5y)
29
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
29total
2021
2022
2023
2024
2025
Citations per year (5y)
717total
20212022202320242025

Selected Papers

15
1
Article|459 citations·1992
Finite element analysis of composite structures containing distributed piezoceramic sensors and actuators
Sung Kyu Ha, Charles Keilers, Fu‐Kuo Chang
SJR Q1AIAA Journal

A finite element formulation is presented for modeling the dynamic as well as static response of laminated composites containing distributed piezoelectric ceramics subjected to both mechanical and electrical loadings. The formulation was derived from the variational principle with consideration for both the total potential energy of the structures and the electrical potential energy of the piezoceramics. An eight-node three-dimensional composite brick element was implemented for the analysis, an

Aerospace EngineeringEngineering
2
Article|190 citations·2008
Micro-Mechanics of Failure (MMF) for Continuous Fiber Reinforced Composites
Sung Kyu Ha, Kyo Kook Jin, Yuanchen Huang
SJR Q2Journal of Composite Materials

The micromechanics of failure was developed to predict the failure of continuous fiber reinforced composites. A micromechanical approach using unit cells of square and hexagonal arrays was employed to compute the micro stresses of constituents and at the fiber—matrix interface, which were used to determine the failure initiation of a unidirectional ply. The constituent properties include two tensile and compressive strengths of fiber and matrix, plus normal and shear strengths at the interface.

Mechanics of MaterialsEngineering
3
Article|180 citations·2018
Recent progress in selected bio-nanomaterials and their engineering applications: An overview
Raghvendra Kumar Mishra, Sung Kyu Ha, Kartikey Verma, Santosh K. Tiwari
SJR Q1Journal of Science Advanced Materials and DevicesOA

Nowadays, the rapid climate change, water pollution and harmful gas emissions are largely caused by the extensive use of petrochemicals and the burning of plastic materials. The government authorities across the globe and experts mentioned that the dumping of plastic waste and non-biodegradable materials is a principal problem of the environmental pollution. In their numerous chemical forms, cellulose and various other biodegradable materials can be possible alternatives to resolve these challen

BiomaterialsMaterials Science
4
Article|125 citations·2005
Finite element modeling of multi-level cervical spinal segments (C3–C6) and biomechanical analysis of an elastomer-type prosthetic disc
Sung Kyu Ha
SJR Q3Medical Engineering & Physics

A three-dimensional finite element (FE) model for the multi-level lower cervical spinal segment C3-C6 has been developed using computed tomography (CT) data, and applied to study of the effects of the fusion and the artificial disc prosthesis on the biomechanical behavior of the lower cervical spine. The NURBS computer adided dedsig (CAD) data used in this study for modeling the vertebrae facilitate adding surface patch layouts for seamless attachment of the soft tissues, such as intervertebral

Pathology and Forensic MedicineMedicine
5
Review|123 citations·2023
A Review on the Cost Analysis of Hydrogen Gas Storage Tanks for Fuel Cell Vehicles
Hyun Kyu Shin, Sung Kyu Ha
SJR Q1EnergiesOA

The most practical way of storing hydrogen gas for fuel cell vehicles is to use a composite overwrapped pressure vessel. Depending on the driving distance range and power requirement of the vehicles, there can be various operational pressure and volume capacity of the tanks, ranging from passenger vehicles to heavy-duty trucks. The current commercial hydrogen storage method for vehicles involves storing compressed hydrogen gas in high-pressure tanks at pressures of 700 bar for passenger vehicles

Materials ChemistryMaterials Science
6
Article|107 citations·2021
Fiber waviness and its effect on the mechanical performance of fiber reinforced polymer composites: An enhanced review
Mariana Pimenta Alves, Carlos Alberto Cimini, Sung Kyu Ha
SJR Q1Composites Part A Applied Science and Manufacturing
Mechanics of MaterialsEngineering
7
Review|106 citations·2022
A Review on Industrial Perspectives and Challenges on Material, Manufacturing, Design and Development of Compressed Hydrogen Storage Tanks for the Transportation Sector
Mariana Pimenta Alves, Waseem Gul, Carlos Alberto Cimini, Sung Kyu Ha
SJR Q1EnergiesOA

Hydrogen fuel cell technology is securing a place in the future of advanced mobility and the energy revolution, as engineers explore multiple paths in the quest for decarbonization. The feasibility of hydrogen-based fuel cell vehicles particularly relies on the development of safe, lightweight and cost-competitive solutions for hydrogen storage. After the demonstration of hundreds of prototype vehicles, today, commercial hydrogen tanks are in the first stages of market introduction, adopting con

Electrical and Electronic EngineeringEngineering
8
Article|77 citations·2000
Five-port equivalent electric circuit of piezoelectric bimorph beam
Young S. Cho, Y. Eugene Pak, Chang‐Soo Han, Sung Kyu Ha
SJR Q1Sensors and Actuators A Physical
Aerospace EngineeringEngineering
9
Article|68 citations·2012
Prediction of three-dimensional composite laminate response using micromechanics of failure
Yuanchen Huang, Lei Xu, Sung Kyu Ha
SJR Q2Journal of Composite Materials

A three-dimensional micromechanics of failure model was developed and applied in order to predict triaxial failure envelopes and stress–strain curves for 12 test cases in the Second World-Wide Failure Exercise (WWFE-II), which involves five continuous fiber–matrix laminates and multi-axial loadings, including those in through-thickness direction. The micromechanics of failure is based on micromechanical unit cell models, which characterize the microstructure of composites, and consists of indepe

Mechanics of MaterialsEngineering
10
Article|67 citations·2001
Optimum design of multi-ring composite flywheel rotor using a modified generalized plane strain assumption
Sung Kyu Ha, Dong-Jin Kim, Tae-Hyun Sung
SJR Q1International Journal of Mechanical Sciences
Control and Systems EngineeringEngineering
11
Article|64 citations·2016
Flutter performance of bend–twist coupled large-scale wind turbine blades
Khazar Hayat, Alvaro Gorostidi Martinez de Lecea, Carlos Donazar Moriones, Sung Kyu Ha
SJR Q1Journal of Sound and Vibration
Aerospace EngineeringEngineering
12
Article|63 citations·2014
Ultimate strength prediction of braided textile composites using a multi-scale approach
Lei Xu, Cheng Zhu Jin, Sung Kyu Ha
SJR Q2Journal of Composite Materials

In this paper, the strength of braided textile composites is predicted using a multi-scale approach bridging the mesoscale and microscale regimes. Mesoscale finite element models of representative unit cells of biaxial and triaxial braided composites are developed for predicting strength. The constituent stresses of tows inside the braided unit cell are calculated using micromechanics. Correlations between mesoscale stresses and microscale constituent stresses are established by using stress amp

Mechanics of MaterialsEngineering
13
Article|57 citations·2001
Analysis of the asymmetric triple-layered piezoelectric bimorph using equivalent circuit models
Sung Kyu Ha
SJR Q1The Journal of the Acoustical Society of America

An eight-port impedance matrix and an equivalent circuit are presented for the analysis of an asymmetric triple-layered piezoelectric bimorph with separate electrical ports. The separate electric ports for the top and bottom piezoelectric layers operate independently of each other: they generate and/or sense the coupled extensional and flexural motions. Taking into account shear and rotatory inertia, the eight-port impedance model is first obtained for the bimorph. The electromechanical behavior

Aerospace EngineeringEngineering
14
Article|56 citations·2015
Load mitigation of wind turbine blade by aeroelastic tailoring via unbalanced laminates composites
Khazar Hayat, Sung Kyu Ha
SJR Q1Composite Structures
Aerospace EngineeringEngineering
15
Article|51 citations·2010
Micromechanics of Failure for Ultimate Strength Predictions of Composite Laminates
Sung Kyu Ha, Yuanchen Huang, Hoon Hee Han, Kyo Kook Jin
SJR Q2Journal of Composite MaterialsOA

A micromechanics-based constituent progressive damage model was proposed in this study to predict macroscopic failure behavior of composite laminates under multi-axial mechanical loadings as well as thermal influences. For this purpose, a micromechanics-based failure theory, named the micromechanics of failure, has been further developed not only to account for the constituent failure but also to progress damage. We first modeled the unit cell of the microstructure of a UD lamina both to derive

Mechanics of MaterialsEngineering

Research Areas

Mechanics of MaterialsNephrologyBuilding and ConstructionAerospace EngineeringControl and Systems EngineeringMechanical Engineering

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