Rchr
J-GLOBAL ID:202101008396291465   Update date: Sep. 02, 2024

HOU Yuyang

ホウ ユイヤーン | HOU Yuyang
Affiliation and department:
Homepage URL  (1): http://www.jwri.osaka-u.ac.jp/research/research04_4.html
Research theme for competitive and other funds  (1):
  • 2022 - 2024 Oxide Accelerating Primary Ferrite Nucleation of Austenitic Stainless Steel Weldment
Papers (20):
  • Yuyang Hou, Kota Kadoi. Effect of Ti, Al, and Mg addition on microstructure evolution in weld metal of stainless steel solidified with F and FA modes and the tensile property. Materials Science and Engineering: A. 2024. 147190
  • Yuyang Hou, Kota Kadoi. Nucleation of equiaxed δ-ferrite by accelerating TiN formation controlled by oxide during welding of ferritic stainless steel. Materials Characterization. 2023. 113212
  • Wenjun Shen, Guoguang Cheng, Yuyang Hou, Yao Li, Xinlin Zhan, Junjiang Liu, Hongguang Zheng. Effects of the Cooling Rate and Recovery Temperature on the Growth of AlN Precipitates in Gear Steel. STEEL RESEARCH INTERNATIONAL. 2022. 93. 10
  • Y. Hou, G. Cheng, K. Kadoi, H. Inoue, Q. Ruan, J. Pan, X. Chen. Formation Mechanism of Stripe Pattern Defect in Cold-Rolled AISI 441 Stainless Steel Stabilized by Ti and Nb. Metallurgical and Materials Transactions B. 2022. 53. 2499-2511
  • Y. Hou, G. Cheng, K. Kadoi, H. Inoue. Acceleration Mechanism of Ti2O3 on TiN Formation and δ-Ferrite Nucleation of Ferritic Stainless Steel. Journal of Alloys and Compounds. 2022. 912. 165221
more...
MISC (9):
  • 門井 浩太, He Fendong, Hou Yuyang, 青木 聡, 岡野 成威. オーステナイト系異材溶接部の凝固割れ感受性予測の試み. 日本鉄鋼協会第188回秋季講演大会, 大阪. 2024
  • 門井 浩太, He Fendong, Hou Yuyang, 青木 聡, 岡野 成威. オーステナイト系異材溶接金属部の凝固割れ感受性予測とその影響因子. 溶接学会2024年度秋季全国大会, 札幌. 2024
  • HOU YUYANG, 門井 浩太. FAとFモ ード凝固するオーステナイト系ステンレ ス鋼溶接金属の引張特性に及ぼすフェライト結晶粒微細化の影響. 溶接学会2023年度秋季全国大会,. 2023
  • HE FENGDONG, 門井 浩太, HOU YUYANG, 岡野 成威, 青木 聡. 異材溶接部の凝固割れ感受性予測に向けた実験と解析による検証. 溶接学会2023年度秋季全国大会,. 2023
  • 侯 雨陽, 門井 浩太. FAモード凝固におけるオーステナイト形成に及ぼすフェライト結晶粒微細化の影響. , online. 2023
more...
Lectures and oral presentations  (1):
  • Pitting corrosion behavior in weld heat affected zone of duplex stainless steel
    (Thermec2023 2023)
Professional career (1):
  • 博士(工学) (北京科技大学)
※ Researcher’s information displayed in J-GLOBAL is based on the information registered in researchmap. For details, see here.

Return to Previous Page