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Jung‐Wook Cho

Pohang University of Science and Technology · Engineering

About the Lab

Professor Jung-Wook Cho's research lab specializes in the thermophysical properties and processing behavior of mold fluxes in continuous steel casting, with a focus on heat transfer, rheology, and glass structure-property relationships. The lab investigates interfacial thermal resistance, radiative and conductive heat transfer mechanisms, and the non-Newtonian behavior of molten mold fluxes, particularly under high-temperature conditions relevant to advanced high-strength steels. Using advanced characterization techniques such as Raman spectroscopy, FTIR, and 27Al MAS NMR, the lab explores the structural evolution of silicate-based mold fluxes and its impact on casting performance and defect formation.

mold fluxheat transferrheologyglass structurecontinuous casting

Research Overview

Papers
143
Total Citations
3,094
Papers (5y)
38
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
38total
2022
2023
2024
2025
2026
Citations per year (5y)
300total
20222023202420252026

Selected Papers

15
1
Article|161 citations·2013
Assessment of CaO^|^ndash;Al2O3 Based Mold Flux System for High Aluminum TRIP Casting
Jung‐Wook Cho, Kenneth Blazek, Michael Frazee, Hongbin Yin, Jeong Hyouk Park, Sangwoon Moon
SJR Q2ISIJ InternationalOA

Today, the demands for Advanced High Strength Steels (AHSS) have gradually increased due to their ability to reduce vehicle weight as a means to save energy, reduce the environmental impact while simultaneously improving passenger safety. However, AHSS often require the addition of large amounts of alloying elements such as aluminum and this can make it difficult to cast sound slabs without surface defects. When casting high aluminum AHSS, due to the reaction between aluminum in steel and silica

Mechanical EngineeringEngineering
2
Article|145 citations·1998
Thermal Resistance at the Interface between Mold Flux Film and Mold for Continuous Casting of Steels.
Jung‐Wook Cho, Hiroyuki Shibata, Toshihiko Emi, Mikio Suzuki
SJR Q2ISIJ InternationalOA

Heat transfer from solidifying shell to mold near the meniscus plays an important role for the formation of surface cracks on continuously cast steel products. The heat transfer is influenced substantially by the thermal resistance at the interface between mold flux film and copper mold. Accordingly, a model system consisting of steel shell/mold flux film/copper mold is built to simulate the heat transfer near the meniscus in the mold for continuous casting, and the thermal resistance is determi

Computational MechanicsEngineering
3
Article|124 citations·1998
Heat Transfer across Mold Flux Film in Mold during Initial Solidification in Continuous Casting of Steel.
Jung‐Wook Cho, Toshihiko Emi, Hiroyuki Shibata, Mikio Suzuki
SJR Q2ISIJ InternationalOA

Analysis of heat transfer near the meniscus in mold for continuous casting of steel has been carried out by taking into account conductive and radiative thermal resistances of infiltrated mold flux film and thermal resistance at the copper mold/solidifying mold flux film interface. Mold fluxes in commercial use for casting low and medium carbon steel are selected for this study. Thermal conductivities, absorption coefficients and interfacial thermal resistances of these fluxes have been determin

Mechanical EngineeringEngineering
4
Article|111 citations·2018
Inclusion evolution in additive manufactured 316L stainless steel by laser metal deposition process
Du-Rim Eo, Sunhong Park, Jung‐Wook Cho
SJR Q1Materials & DesignOA
Mechanical EngineeringEngineering
5
Article|95 citations·2014
Crystallization Characteristics of CaO-Al2O3-Based Mold Flux and Their Effects on In-Mold Performance during High-Aluminum TRIP Steels Continuous Casting
Chengbin Shi, Myung‐Duk Seo, Jung‐Wook Cho, Seon-Hyo Kim
SJR Q2Metallurgical and Materials Transactions BOA
Mechanical EngineeringEngineering
6
Article|88 citations·1998
Radiative Heat Transfer through Mold Flux Film during Initial Solidification in Continuous Casting of Steel.
Jung‐Wook Cho, Hiroyuki Shibata, Toshihiko Emi, Mikio Suzuki
SJR Q2ISIJ InternationalOA

Absorption coefficient and extinction coefficient for various commercial mold fluxes have been determined to quantify the radiative and the total heat transfer through the flux film in continuous casting mold. The absorption coefficient is found to be less than 1000 m-1 for glassy specimens whereas the extinction coefficient is ca. 3000-30000 m-1 for crystalline ones. Comparison of observed with calculated radiative heat flux from the absorption coefficient has shown that gray gas approximation

Computational MechanicsEngineering
7
Article|76 citations·2014
Crystallization Behaviors of CaO-SiO2-Al2O3-Na2O-CaF2-(Li2O-B2O3) Mold Fluxes
Myung‐Duk Seo, Chengbin Shi, Jung‐Wook Cho, Seon-Hyo Kim
SJR Q2Metallurgical and Materials Transactions B
Mechanical EngineeringEngineering
8
Article|75 citations·2015
Effect of SiO2 on the Crystallization Behaviors and In-Mold Performance of CaF2-CaO-Al2O3 Slags for Drawing-Ingot-Type Electroslag Remelting
Chengbin Shi, Jing Li, Jung‐Wook Cho, Fang Jiang, In‐Ho Jung
SJR Q2Metallurgical and Materials Transactions B
Mechanical EngineeringEngineering
9
Article|55 citations·2001
Effect of solidification of mold fluxes on the heat transfer in casting mold
Jung‐Wook Cho, Hiroyuki Shibata
SJR Q2Journal of Non-Crystalline Solids
Mechanical EngineeringEngineering
10
Article|54 citations·2014
Shear Thinning Behavior of Calcium Silicate‐Based Mold Fluxes at 1623 K
Seung‐Ho Shin, Jung‐Wook Cho, Seon‐Hyo Kim
SJR Q1Journal of the American Ceramic Society

There have been consistent efforts on understanding rheological behavior of molten mold flux, used in continuous casting of steels. It is prevalent view that molten mold flux shows non‐Newtonian behavior, meaning that the viscosity varies with shear rate history. Hence, the present study attempts to evaluate shear thinning, which is one of the characteristic non‐Newtonian behaviors, by measuring its viscosity with a rotating type viscometer at 1623 K. Furthermore, Raman spectroscopy analysis is

Mechanical EngineeringEngineering
11
Article|43 citations·2021
Effect of Zr addition on metastable Liquid-Liquid Phase Separation of Cu-Fe alloys
Ho-Joon Moon, Tae‐min Yeo, Seung‐Hoon Lee, Jung‐Wook Cho
SJR Q1Scripta Materialia
Materials ChemistryMaterials Science
12
Article|42 citations·2014
Crystallization Kinetics and Mechanism of CaO–Al2O3-Based Mold Flux for Casting High-Aluminum TRIP Steels
Chengbin Shi, Myung‐Duk Seo, Hui Wang, Jung‐Wook Cho, Seon-Hyo Kim
SJR Q2Metallurgical and Materials Transactions B
Mechanical EngineeringEngineering
13
Article|42 citations·2019
Structure and its effect on viscosity of fluorine-free mold flux: Substituting CaF2 with B2O3 and Na2O
Tae‐min Yeo, Jung‐Wook Cho, Marco Alloni, Simone Casagrande, R. Carli
SJR Q2Journal of Non-Crystalline Solids
Mechanical EngineeringEngineering
14
Article|41 citations·2016
Fluoride evaporation and crystallization behavior of CaF2–CaO–Al2O3–(TiO2) slag for electroslag remelting of Ti-containing steels
Chengbin Shi, Jung‐Wook Cho, Dingli Zheng, Jing Li
SJR Q1International Journal of Minerals Metallurgy and Materials
Mechanical EngineeringEngineering
15
Article|39 citations·2015
Non-isothermal melt crystallization of cuspidine in CaO–SiO2–CaF2 based glasses
Myung‐Duk Seo, Chengbin Shi, Hui Wang, Jung‐Wook Cho, Seon-Hyo Kim
SJR Q2Journal of Non-Crystalline Solids
Ceramics and CompositesMaterials Science

Research Areas

Mechanical EngineeringCeramics and CompositesMaterials ChemistryArtificial IntelligenceComputational MechanicsElectrical and Electronic Engineering

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