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2023 Fiscal Year Final Research Report

Basic Study on Plasma Nitriding Process and NH radical

Research Project

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Project/Area Number 20H02133
Research Category

Grant-in-Aid for Scientific Research (B)

Allocation TypeSingle-year Grants
Section一般
Review Section Basic Section 21010:Power engineering-related
Research InstitutionOita University

Principal Investigator

Ichiki Ryuta  大分大学, 理工学部, 准教授 (00454439)

Co-Investigator(Kenkyū-buntansha) 立花 孝介  大分大学, 理工学部, 助教 (10827314)
金澤 誠司  大分大学, 理工学部, 教授 (70224574)
Project Period (FY) 2020-04-01 – 2024-03-31
Keywordsプラズマ窒化反応 / NHラジカル / 大気圧プラズマ / レーザー誘起蛍光法
Outline of Final Research Achievements

The correlation between NH radicals and nitriding capability is investigated in order to make clear elementary processes of the plasma nitriding.
The density of NH radicals at the ground state present in the jet plume is measured by the laser-induced fluorescence. As a result, the NH density proved to exponentially decrease with increasing the hydrogen fraction of the nitrogen-hydrogen operating gas. On the other hand, performing nitriding treatment for iron samples with the identical plasma provided that also the concentration of doped nitrogen on the sample surface exponentially decreases with increasing the hydrogen fraction. The decay constants of the NH density and the nitrogen concentration are 0.92% and 0.85%, respectively, from which we concluded that the two factors have a scientific correlation.

Free Research Field

プラズマ材料科学

Academic Significance and Societal Importance of the Research Achievements

プラズマ窒化反応は金属材料の表面硬化に使用され,自動車産業や金型産業など機械コンポーネント製造の分野では必須のプロセス技術である。さらに,各種半導体材料,医療材料,触媒材料など多岐にわたる材料分野でも使用され,近年ではプラズマ農業応用の分野とも関連性が深い。また,窒素はもともと大気の80%を占める元素であるため我が国特有の資源偏在の問題がなく,プラズマ窒化反応は恒久的に使用可能な技術でもある。このように重要な技術の反応素過程が明確になれば,これまでにない高速窒化処理などの技術革新や,プロセスの高効率化による材料加工・熱処理産業におけるカーボンニュートラルの促進が期待される。

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Published: 2025-01-30  

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