Course title
2M6850001
Physical Metallurgy

kariya yoshiharu Click to show questionnaire result at 2018
Course content
The interested several chapters are chosen from the latest following English text, and the physical sides of the industrial material will be understood. From the method, the basic knowledge of the materials science is understood widely and precisely, and basis to publish the results of research can be cultivated in an English sentence.
Purpose of class
Understanding of the mechanical properties of materials to develop new materials and the reliability design.
Goals and objectives
  1. Understand the physical characteristics of materials.
  2. To acquire ability to understand and express physical properties of materials using English.
  3. To acquire ability to read academic papers on the physical properties of materials.
Language
Japanese
Class schedule

Class schedule HW assignments (Including preparation and review of the class.) Amount of Time Required
1. Atomic structure and interatomic bond
*Bonding force and energies
*Primary interatomic bonds
*Secondary Bonding
Prepara handouts 190minutes
2. Crystal structure
*Unit cell
*Metallic crystal structure
*Crystal system
Prepara handouts 190minutes
3. Defect in the solid
*Vacancies and self-interstitials
*Dislocations-Linear defect
*Interfacial defect
*Bulk defect
Prepara handouts 190minutes
4. Diffusion
*Diffusion mechanism
*Steady state diffusion
*Factor that influence diffusion
Prepara handouts 190minutes
5. Mechanical property of metal
*Stress and Strain
*Elastic properties of metals
*Tensile properties
*Elastic recoverly during plastic
Prepara handouts 190minutes
6. Dislocation and material strengthening
*Characteristics of dislocations
*Slip systems
*Slip in single crystal
*Strengthening mechanism
Prepara handouts 190minutes
7. Failure
*Ductile fracture
*Brtittle fracture
*Principles of fracture mechanism
Prepara handouts 190minutes
8. Phase diagram
*Solibility limit
*Phases
*Microstructure
*Equilibrium pahse diagram
*Gibbs phase rule
Prepara handouts 190minutes
9. Phase transformation and microstructural formation
*Kinetics od solid-state reaction
*Multipahse trasformation
*Isothremal transformation
*Continuous transformation diagram
Prepara handouts 190minutes
10. Metal heat treatment
*Process annealing
*Stress relief
*Quenching
*Heat treatment
Prepara handouts 190minutes
11. Alloy
*Steels
*Copper and its alloys
*Aluminum and its alloys
*Super alloys
Prepara handouts 190minutes
12. Electrical properties
*Ohm'law
*Electrical conductivities
*Energy band structures in solids
*Electron mobility
Prepara handouts 190minutes
13. Thermal properties
*Heat capacity
*Thermal expansion
*Thermal conductivity
Prepara handouts 190minutes
14. Summary Review all handouts 180minutes
Total. - - 2650minutes
Relationship between 'Goals and Objectives' and 'Course Outcomes'

Practice Final Report Total.
1. 40% 60% 100%
2. 0%
Total. 40% 60% -
Evaluation method and criteria
A report regarding the lecture contents(60%)
Practice regarding lecture contents(40%)
Textbooks and reference materials
W.D.Callister,Jr.,“Materials Science and Engineering (An Introduction)”,5th ed., Wiley, 2000.
Prerequisites
Review material physics 1 and 2
Office hours and How to contact professors for questions
  • Anytime
Relation to the environment
Non-environment-related course
Regionally-oriented
Non-regionally-oriented course
Development of social and professional independence
  • Course that cultivates a basic self-management skills
Active-learning course
N/A
Course by professor with work experience
Work experience Work experience and relevance to the course content if applicatable
Applicatable This lecture given based on the practical experience of reliability calculation for design and manufacture of ships and bridges.
Last modified : Wed Jun 26 04:04:13 JST 2019