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Kusano, Koji (11.5%) / Assistant Professor   [Detail]
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Year of Birth: 1968 A.D.
Phone: +81 - 88 - 656 - 2151 E-mail:  k u s a n o (@) m e . t o k u s h i m a - u . a c . j p 
Academic Degree: Doctor of Engineering Field of Study: Heat Transfer Engineering, Multiphase Flow, Refrigeration and Air Conditioning Engineering
Lecture: オリエンテーション3年 (Bachelor Course), Heat Transfer Engineering (Bachelor Course), Exercise on Mechanical Engineering (Graduate School), Mechanical Engineering Laboratory (Graduate School), Seminar on Mechanical Engineering (Graduate School), Mechanical Engineering Laboratory (Bachelor Course), Numerical Analysis for Mechanical Engineering (Bachelor Course), Mechanical Engineering Laboratory 3 (Bachelor Course), Thermal Engineering 1 (Bachelor Course), Introduction to Science and Technology (Common Curriculum), Steam Power Plant Engineering (Bachelor Course)
Subject of Study: Heat and Species Transfer Phenomena in Aqueous Solution (Solid/Liquid Phase Change Heat Transfer, Latent Thermal Energy Storage, Numerical Analysis, Multiphase Flow), 液·液系二相流における流動諸特性に関する研究 (Solid/Liquid Phase Change Heat Transfer, Latent Thermal Energy Storage, Numerical Analysis, Multiphase Flow), 土壌の凍結及び融解に及ぼす諸パラメータの影響に関する研究, 固-液相変化を利用した潜熱蓄熱に関する研究 (Solid/Liquid Phase Change Heat Transfer, Latent Thermal Energy Storage, Numerical Analysis, Multiphase Flow)
Yonekura, Daisuke (3.3%) / Professor   [Detail]
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Year of Birth: 1972 A.D.
Phone: +81 - 88 - 656 - 9186 E-mail:  y o n e k u r a (@) m e . t o k u s h i m a - u . a c . j p 
Academic Degree: 博士(工学) Field of Study: Fracture Mechanics, Functional Materials, Fracture Mechanics, Tribology, Fracture Mechanics, Functional Materials, 粉体工学
Lecture: オリエンテーション3年 (Bachelor Course), Presentation Method (D) (Graduate School), Presentation Method (M) (Graduate School), Manufacturing Process 2 (Bachelor Course), Metal Forming and Theory of Plasticity (Bachelor Course), Synthetic Exercise in Engineering (Bachelor Course), Strength and Fracture Behavior of Materials (Bachelor Course), Advanced Strength and Fracture of Materials (Graduate School), Mechanical Engineering Laboratory (Bachelor Course), Engineering Materials 2 (Bachelor Course), Mechanical Engineering Laboratory 3 (Bachelor Course), Design of Machine Elements and Drawing (Bachelor Course), Introduction to Science and Technology (Common Curriculum), Advanced Fracture and Structural Mechanics (Graduate School), Research Approaches in Science and Technology A (Graduate School), Materials Surface Performance Control (Graduate School)
Subject of Study: 硬質薄膜被覆材の疲労破壊特性 (thin film, 応力拡大係数, 疲労, 表面改質, residual stress, フレッティング), スパッタリング法を用いた機能性薄膜の創製 (sputtering, thin film, transparent conducting oxides, photocatalyst, 透明ガスバリア膜), 硬質薄膜被覆材の密着強度および摩耗特性 (硬質薄膜, PVD法, 摩擦·摩耗, 密着強度), 各種接合材の強度 (residual stress, welding, はんだ接合, ultrasound), 粉体の付着を抑制する表面処理に関する研究 (, 粉体, 付着力)