527 M4400

Ceramics Smart Materials

Department
Materials Science and Engineering
Instructor
謝宗霖/ Tzong-Lin Jay Shieh
分類
2026年春季學期研究生課程

課程介紹

MSE7042 · 材料科學與工程學系

Ceramics Smart Materials

Ceramics Smart Materials — 114-2 Elective (3.0 credits).

MSE7042 Curriculum Number 114-2 Semester 3.0 Credits

✦ Course Information

Course title Ceramics Smart Materials
Semester 114-2
Designated for Materials Science and Engineering
Curriculum Number MSE7042
Curriculum Identity Number 527M4400
Class
Credits 3.0
Full / Half Yr. Half
Required / Elective Elective
Remarks Ceiba Web Server
Core Capabilities
  • Professional knowledge of materials science
  • Build the ability to think innovatively and practice research independently
  • Build the ability to solve problems and coordinate
  • Build the capacity for lifelong self-learning

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Class Section

Class Instructor Time Location
Tzong-Lin Jay Shieh Thursday 7, 8, 9

Course Description

To provide the students with broad coverage of the physical properties, processing, and applications of ferroelectric materials.

Course Objective

  1. Introduction to smart materials
  2. Fundamental aspects of ferroelectrics
  3. Parameters for ferroelectric ceramics and their measurement
  4. Experimental hysteresis measurements
  5. Principal ferroelectric types and applications
  6. Fatigue crack growth in ferroelectrics
  7. The multi-axial response of ferroelectrics under stress and electric field
  8. Processing aspects of ferroelectric ceramics
  9. Ferroelectric thin films and composites

Course Requirement

  • Experimental Work
  • Mid-Semester Examination: Open book, 3 hours
  • Final Examination: Open book, 3 hours
  • Student Workload (Expected weekly study hours before and/or after class): —
  • Office Hours: By email arrangement.
  • Designated reading:
    • Electroceramics: Materials, Properties, and Applications, A.J. Moulson and J.M. Herbert.
    • Ferroelectric Materials and Their Applications, Y. Xu.

References

The primary source of material will come from the lecture notes. No one textbook covers all of the material covered in the course. The course material draws from several textbooks which are available in the library; these textbooks are listed on the next page.

Grading

No. Item % Explanations for the conditions
1 Homework
2 Experimental 10% Bonus
3 Midterm #1 50%
4 Midterm #2
5 Final exam 50%

Progress

Week Date Topic
Week 12/26Introduction to smart materials
Week 23/5Fundamental aspects of piezoelectricity
Week 33/12Fundamental aspects of piezoelectric, pyroelectric and ferroelectric materials
Week 43/19Hysteresis evolution and characterization
Week 53/26Constitutive relationships for piezoelectric effects
Week 64/2Parameters for ferroelectric ceramics and their measurements
Week 74/9Principal ferroelectric types and applications (perovskite systems)
Week 84/16Midterm exam
Week 94/23Principal ferroelectric types and applications (relaxor systems)
Week 104/30Principal ferroelectric types and applications (tungsten-bronze-type)
Week 115/7Principal ferroelectric types and applications (lithium niobate)
Week 125/14Ferroelectric polymers and composites
Week 135/21The multi-axial response of ferroelectrics under stress and electric field
Week 145/28Processing aspects of ferroelectric ceramics
Week 156/4Pyroelectricity and pyroelectric materials
Week 166/11Final exam

附件

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