K
Kazumasa Nishio
Researcher at Nishinippon Institute of Technology
Publications - 119
Citations - 621
Kazumasa Nishio is an academic researcher from Nishinippon Institute of Technology. The author has contributed to research in topics: Welding & Heat-affected zone. The author has an hindex of 11, co-authored 119 publications receiving 561 citations. Previous affiliations of Kazumasa Nishio include Kyushu Institute of Technology.
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Thermodynamic assessment of the Ni–Si system by incorporating ab initio energetic calculations into the CALPHAD approach
TL;DR: In this article, a thermodynamic assessment was conducted using experimental data on the phase boundaries of the Ni-Si system and other related thermochemical properties, including the Gibbs energy of formation and the enthalpy of formation for both the ordered and disordered fcc phases obtained from ab initio energetic calculations.
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Modeling of the yoke-magnetization in MFL-testing by finite elements
TL;DR: In this paper, a finite element approach is applied to model the magnetization situation and the effectiveness of the modeling is confirmed by an experiment. But the authors did not consider the effect of magnetic leakage flux density from an artificial flaw in the standard specimen.
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Phase Equilibria in the Ni-Si-B System
TL;DR: In this article, a regular solution approximation based on the sublattice model was adopted to describe the Gibbs energy for the individual phases in the binary and ternary systems.
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Interface Microstructure and Weld Strength of Steel/Aluminum Alloy Joints by Resistance Spot Welding
TL;DR: In this article, the effects of welding conditions and alloy element Cu in aluminum alloy on growth of intermetallic compounds at weld interfacial zones and weld strength of steel/aluminum alloy joints were investigated.
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Fabrication, microstructure, and wear performance of WC-Fe composite/metal coating fabricated by resistance seam welding
Wenqin Wang,Xian Zeng,Yulong Li,Yulong Li,De Wang,Ying Liu,Tomiko Yamaguchi,Kazumasa Nishio,Jian Cao +8 more
TL;DR: In this paper, the microstructures and phase compositions of the WC-Fe composite/metal coatings with different WC particle sizes (nano, fine, and coarse) were investigated.