Rchr
J-GLOBAL ID:200901031998764255   Update date: Apr. 28, 2024

Araki Yoshikazu

アラキ ヨシカズ | Araki Yoshikazu
Affiliation and department:
Job title: Professor
Research field  (1): Building structures and materials
Research keywords  (10): 地震工学 ,  構造動力学 ,  構造材料 ,  構造解析 ,  建築構造力学 ,  Earthquake Engineering ,  Structural Dynamics ,  Structural Materials ,  Computational Mechanics ,  Mechanics of Building Structures
Research theme for competitive and other funds  (28):
  • 2023 - 2027 Renaissance of lost technology of coal slag and slag bricks for solving multiple SDGs issues of modern India
  • 2022 - 2027 Development of safe, sustainable and low-cost solid-state concrete storage battery
  • 2023 - 2026 多数回の強い揺れを伴う大地震後の建物の機能維持に向けた高耐疲労形状記憶合金の開発
  • 2022 - 2025 Development of Damage-Controlled RC Beams with Super-Elastic Alloy in the Yield Hinge Region and Application to Mid-Rise Multi-Unit Apartment Buildings
  • 2020 - 2025 Development and implementation of a sliding isolation system for earthquake resistant masonry constructions in developing countries
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Papers (64):
  • Huanpeng Hong, Bora Gencturk, Yoshikazu Araki, M. Saiid Saiidi, Sumio Kise. Machinability of Cu-Al-Mn Shape Memory Alloys. Journal of Materials in Civil Engineering. 2024
  • Huanpeng Hong, Bora Gencturk, Sumio Kise, Yoshikazu Araki, Amit Jain, M. Saiid Saiidi, Kenji Uruma. Headed coupling behavior of large diameter Cu-Al-Mn shape memory alloy bars: Mechanical testing and microstructural analyses. Construction and Building Materials. 2024
  • Hong, H., Gencturk, B., Brown, S.A., Hosseini, F., Jain, A., Aryan, H., Saiidi, S., Araki, Y., Kise, S. Long-term corrosion resistance of Cu-Al-Mn superelastic alloys and steel rebar for use in bridges. Construction and Building Materials. 2022. 350
  • Hong, H., Gencturk, B., Aryan, H., Jain, A., Araki, Y., Saiidi, M.S., Kise, S. Low-cycle fatigue behavior of Cu-Al-Mn superelastic alloys at different temperatures. Smart Materials and Structures. 2022. 31. 11
  • Sumio Kise, Yoshikazu Araki, Toshihiro Omori, Ryosuke Kainuma. Orientation Dependence of Plasticity and Fracture in Single-Crystal Superelastic Cu-Al-Mn SMA Bars. Journal of Materials in Civil Engineering. 2021. 33. 4. 04021027-04021027
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MISC (8):
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Patents (2):
  • 構築部材の接合構造と接合装置
  • 組積造の壁体の補強方法
Books (2):
  • 鋼構造物の座屈に関する諸問題,第10,11章
    日本建築学会 2013
  • 鋼構造座屈設計指針,第2,5,10章
    日本建築学会 2009
Lectures and oral presentations  (6):
  • Development of new shape memory alloys and their applications in structural engineering
    (Invited lecture 2013)
  • 可変支持荷重機構を持つ上下免振装置の開発
    (復元力応用分科会第14回講演会 2012)
  • Development of new shape memory alloys and their application to structural engineering -from structural control devices to self healing concrete-
    (Invited lecture 2012)
  • 巨大地震に備える-地震動レベルの増大と新材料の利用による建築物の高耐震化-
    (東北支部構造部会 2010)
  • 建築構造物への材料応用動向と形状記憶合金用途の可能性
    (分科会P-SCD358:医療・福祉・環境における形状記憶合金の高機能化および応用に関する分科会 2009)
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Education (1):
  • - 1998 Kyoto University Graduate School, Division of Engineering
Professional career (1):
  • 博士(工学) (京都大学)
Work history (3):
  • 2024/04 - 現在 Kyoto University Graduate School of Engineering Department of Architecture and Architectual Systems Engineering Professor
  • 2018/04/01 - 2024/04 Nagoya University Graduate School of Environmental Studies Department of Environmental Engineering and Architecture Building Structure and Construction Systems Professor
  • 2000/04/01 - 2018/03/31 京都大学 工学研究科
Awards (2):
  • 2018/07 - フジサンケイビジネスアイ 先端技術大賞「産経新聞社賞」 大型単結晶超弾性合金の開発と制震構造への応用展開
  • 2016/08 - 日本学術振興会 科研費審査員表彰
Association Membership(s) (1):
日本建築学会
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