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Tae Jin Kang

Researcher at Seoul National University

Publications -  179
Citations -  6383

Tae Jin Kang is an academic researcher from Seoul National University. The author has contributed to research in topics: Composite number & Constitutive equation. The author has an hindex of 43, co-authored 179 publications receiving 5892 citations. Previous affiliations of Tae Jin Kang include Korea University & North Carolina State University.

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Effects of surface modification on rheological and mechanical properties of CNT/epoxy composites

TL;DR: In this article, carbon nanotubes (CNTs) were treated by an acidic solution to remove impurities and modified subsequently by amine treatment or plasma oxidation to improve interfacial bonding and dispersion of CNTs in the epoxy matrix.
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Preparation of antimicrobial poly(vinyl alcohol) nanofibers containing silver nanoparticles

TL;DR: In this article, polyvinyl alcohol (PVA) nanofibers containing Ag nanoparticles were prepared by electrospinning PVA/silver nitrate (AgNO3) aqueous solutions, followed by short heat treatment, and their antimicrobial activity was investigated for wound dressing applications.
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Plane stress yield function for aluminum alloy sheets—part II: FE formulation and its implementation

TL;DR: Gelin et al. as discussed by the authors proposed a plane stress yield function based on Yld2000-2d for aluminum alloy sheets, which was implemented in a finite element code and compared with those of previously suggested yield functions.
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Texture classification and segmentation using wavelet packet frame and Gaussian mixture model

TL;DR: The proposed method was successfully applied to Brodatz mosaic image segmentation and fabric defect detection and can be expanded to an unsupervised texture segmentation using a Kullback-Leibler divergence between two Gaussian mixtures.
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Electromagnetic Shielding Effectiveness of Multifunctional Metal Composite Fabrics

TL;DR: In this paper, a method for fabricating a multifunctional metal composite fabric with electromagnetic (EM) shielding characteristics was successfully developed, and the parameters influencing EM shielding properties of the metal composite fabrics were investigated.