Course syllabus

010623217-63 วัสดุใช้งานที่อุณหภูมิสูง (High-Temperature Materials)

Course Syllabus

Data entry : Asst.Prof. Dr.Tanaporn Rojhirunsakool
1. Course number and name

010623217-63 วัสดุใช้งานที่อุณหภูมิสูง (High-Temperature Materials)

2. Credits and contact hours

3(3-0-6)

3. Instructor’s or course coordinator’s name

Asst.Prof. Dr.Tanaporn Rojhirunsakool

4. Text book, title, author, and year

  1. Roger C. Reed, The Superalloys: Fundamentals and Applications, Cambridge University Press, 2006
  2. Tanaporn Rojhirunsakoo, เอกสารคำสอน เรื่อง วัสดุใช้งานอุณหภูมิสูง, 2569

5. Specific course information

  1. brief description of the content of the course (catalog description)
    Transformation reaction of materials in intermediate environment at high temperature; creep mechanism; diffusion in vacancy of atoms; dislocation motion; grain boundary sliding; materials selection for high temperature materials application.
  2. prerequisites or co-requisites
  3. indicate whether a required, elective, or selected elective (as per Table 5-1) course in the program
    Elective :

6. Specific goals for the course

  1. specific outcomes of instruction (e.g. The student will be able to explain the significance of current research about a particular topic.)
  2. explicitly indicate which of the student outcomes listed in Criterion 3 or any other outcomes are addressed by the course.
    ABET Student Outcome (SO) Listed in Criterion 3 Performance indicator
    SO3 an ability to communicate effectively with a range of audiences.
    • PI-3.1 Organize content and effectively provide data to inform audience
    • PI-3.2 Conduct effective oral technical presentation

7. Brief list of topics to be covered
  • Introduction to high temperature materials
  • History and Development of Superalloys
  • Physical Metallurgy of Superalloys
  • Strengthening Mechanisms in Superalloys
  • Imperfection of crystals
  • Creep Mechanism
  • Midterm exam
  • Processing of Single crystal for Turbine Blade
  • Optimization of Chemistry in Superalloys
  • Mechanical Properties of Single Crystal
  • Processing of Polycrystal for Turbine Disc
  • Coating protection
  • Present Research in Superalloys-part 1
  • Present Research in Superalloys-part 2
8. Course Assessment
Course assessment Weight score (%) Assessment tools Date
Attendance 10 assignment
Quiz/homework 10 assignment
Midterm 25 midterm examination
Research topic presentation 25 assignment
Final exam 30 final examination
The grading table
Grading Rank
>= 80% A
75% - 79.99% B+
70% - 74.99% B
65% - 69.99% C+
57% - 64.99% C
49% - 56.99% D+
40% - 48.99% D
0% - 39.99% F

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