ENERGY & MATERIALS

理工学部 - 機能創造理工学科

SEA6540E

コース情報

担当教員: 高井 健一

単位数: 2

年度: 2024

学期: 秋学期

曜限: 木6

形式: 対面授業

レベル: 300

アクティブラーニング: あり

他学部履修: 不可

評価方法

出席状況

10%

リアクションペーパー

30%

授業内期末試験

授業期間中

60%

詳細情報

概要

Material developments contribute to energy saving such as light weight vehicle. In the present course, I explain the materials science and engineering to need to develop the various energy saving machines. For example, we describe the structure of crystalline solids, imperfection in solids, diffusion, dislocations and strengthening mechanisms, plastic deformation of polycrystalline, and phase transformations in metals. Positioning in the curriculum (relevance to Curriculum Policy) is related to CP3 and CP4. ・The course will use Moodle for providing class materials, posting reference material and submitting homework. Students are asked to register this course on Moodle. Course registration and Moodle are not interlinked; and therefore, registration on Moodle must be done separately. ・Students should check Moodle for updates on homework for each class.

目標

Mastery of the structure of crystalline solids, imperfection in solids, diffusion, dislocations and strengthening mechanisms, plastic deformation of polycrystalline, and phase transformations in metals. Positioning in the Diploma Policy is related to DP3 and DP4.

授業外の学習

【Preparation】(Time required: approx. 60 minutes for each session). ・Read the textbook for the class (Materials Science and Engineering an Introduction). 【Review】 (Time required: approx. 130 minutes for each session) ・Read the lecture notes and handouts and summarize the content of the lecture as well as reviewing the provided textbook. ・Solve the assignments and submit them through Moodle.

所要時間: 190 min

スケジュール

  1. Introduction
  2. The structure of crystalline solids
  3. Crystallographic directions
  4. Crystallographic planes
  5. Imperfection in solids
  6. Vacancy and dislocation
  7. Diffusion
  8. Steady-state diffusion
  9. Nonsteady-state diffusion
  10. Dislocations and strengthening mechanisms
  11. Slip systems
  12. Plastic deformation of polycrystalline
  13. Phase transformations in metals
  14. Heat treatment and microstructures

教科書

Textbook is given at the first class.

    参考書

    書籍情報はありません。

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