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Changhoon Lee

Changhoon Lee

Overview

Changhoon Lee is affiliated with Yonsei University in South Korea and has a significant research output in engineering and materials science. Their work primarily focuses on the study of steels, alloys, and related mechanical properties, with a broad engagement in the microstructure and mechanical behavior of metallic materials.

Lee's main fields of study include Engineering and Materials Science, supported by a substantial publication record spanning 110 papers in each discipline. Within these broad fields, their research extends into several subfields such as Mechanical Engineering, Materials Chemistry, Metals and Alloys, Mechanics of Materials, and Civil and Structural Engineering.

The main topics of Changhoon Lee's research include:

  • Microstructure and Mechanical Properties of Steels
  • Hydrogen embrittlement and corrosion behaviors in metals
  • Metal Alloys Wear and Properties
  • Fusion materials and technologies
  • Welding Techniques and Residual Stresses
  • Nuclear Materials and Properties
  • Metallurgy and Material Forming

Lee has published frequently in a range of journals. The most common venues for their publications are:

  • Journal of Materials Research and Technology
  • Materials Characterization
  • Metals and Materials International
  • Journal of Welding and Joining
  • Materials Science and Engineering A

Among their recent papers are several studies published in the year 2020 and 2022, reflecting ongoing and current contributions to material science research. Notable papers include:

  • Role of bainitic microstructures with M-A constituent on the toughness of an HSLA steel for seismic resistant structural applications, 2020, Materials Science and Engineering A
  • Mechanisms for improving tensile properties at elevated temperature in fire-resistant steel with Mo and Nb, 2020, Materials & Design
  • Effects of Cr on pitting corrosion resistance and passive film properties of austenitic Fe-19Mn-12Al-1.5 C lightweight steel, 2022, Corrosion Science
  • Classification of martensite-austenite constituents according to its internal morphology in high-strength low alloy steel, 2020, Materials Letters
  • Characterization of microstructural evolution in austenitic Fe-Mn-Al-C lightweight steels with Cr content, 2020, Materials Characterization

Changhoon Lee has collaborated extensively with other researchers. Frequent co-authors include:

  • Joonoh Moon
  • Hyun-Uk Hong
  • Sung-Dae Kim
  • Hyungkwon Park
  • Heon-Young Ha

Best Publications

  • MHD flow of a Casson fluid over an exponentially shrinking sheet

    S. Nadeem;Rizwan Ul Haq;C. Lee

  • Application of neural networks to turbulence control for drag reduction

    Changhoon Lee;John Kim;David Babcock;Rodney Goodman

  • Flow of a Williamson fluid over a stretching sheet

    S. Nadeem;S. T. Hussain;Changhoon Lee

  • Turbulent boundary layer control utilizing the Lorentz force

    Timothy W. Berger;John Kim;Changhoon Lee;Junwoo Lim

  • Suboptimal control of turbulent channel flow for drag reduction

    Changhoon Lee;John Kim;Haecheon Choi

  • Convective heat transfer in the flow of viscous Ag–water and Cu–water nanofluids over a stretching surface

    K. Vajravelu;K.V. Prasad;Jinho Lee;Changhoon Lee

  • Boundary layer flow of nanofluid over an exponentially stretching surface

    Sohail Nadeem;Changhoon Lee

  • Materials science of DNA

    Young Wan Kwon;Chang Hoon Lee;Dong Hoon Choi;Jung Il Jin

  • Unsupervised deep learning for super-resolution reconstruction of turbulence

    Hyojin Kim;Junhyuk Kim;Sungjin Won;Changhoon Lee

  • Highly Efficient Light‐Emitting Diodes Based on an Organic‐Soluble Poly(p‐phenylenevinylene) Derivative Carrying the Electron‐Transporting PBD Moiety

    Sung Jae Chung;Ki Young Kwon;Seung Wuk Lee;Jung Il Jin

  • Effect of plastic deformation on the formation of acicular ferrite

    C.H. Lee;H.K.D.H. Bhadeshia;H.-C. Lee

  • Prediction of turbulent heat transfer using convolutional neural networks

    Junhyuk Kim;Changhoon Lee

  • Lagrangian statistics in turbulent channel flow

    Jung Ii Choi;Kyongmin Yeo;Changhoon Lee

  • Application of a 1H nuclear magnetic resonance (NMR) metabolomics approach combined with orthogonal projections to latent structure-discriminant analysis as an efficient tool for discriminating between Korean and Chinese herbal medicines.

    Jinho Kang;Moon-Young Choi;Sunmi Kang;Hyuk Nam Kwon

  • Use of magnetic nanoparticles to visualize threadlike structures inside lymphatic vessels of rats.

    Hyeon Min Johng;Jung Sun Yoo;Tae Jong Yoon;Hak Soo Shin

  • Numerical Study of Boundary Layer Flow and Heat Transfer of Oldroyd-B Nanofluid towards a Stretching Sheet

    Sohail Nadeem;Rizwan Ul Haq;Noreen Sher Akbar;Changhoon Lee

  • Vortex dynamics and zonal flows

    P. S. Marcus;T. Kundu;Changhoon Lee

  • Effect of Mo and Cr additions on the microstructure, mechanical properties and pitting corrosion resistance of austenitic Fe-30Mn-10.5Al-1.1C lightweight steels

    Joonoh Moon;Heon-Young Ha;Seong-Jun Park;Tae-Ho Lee

  • Alcian Blue Staining Method to Visualize Bonghan Threads Inside Large Caliber Lymphatic Vessels And X-Ray Microtomography to Reveal Their Microchannels

    Changhoon Lee;Seung–Kwon Seol;Byung–Cheon Lee;Young–Kwon Hong

  • Peristaltic transport of a Williamson fluid in asymmetric channels with permeable walls

    K. Vajravelu;S. Sreenadh;K. Rajanikanth;Changhoon Lee

Frequent Co-Authors

Sohail Nadeem
Sohail Nadeem Quaid-i-Azam University
John Kim
John Kim University of California, Los Angeles
Jinwoo Lee
Jinwoo Lee Korea Advanced Institute of Science and Technology
Sangmin Lee
Sangmin Lee Chung-Ang University
Jong Suk Lee
Jong Suk Lee Sogang University
Won Joon Shim
Won Joon Shim Korea Institute of Ocean Science and Technology
Kang L. Wang
Kang L. Wang University of California, Los Angeles
Cheol-In Kang
Cheol-In Kang Sungkyunkwan University

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