- Level Professional
- المدة 18 ساعات hours
- الطبع بواسطة Arizona State University
-
Offered by
عن
This course will explore higher-level details about phase diagrams, including the Fe-Fe3C phase diagram. We will use the Fe-Fe3C phase diagram to predict the possible phases and microstructures of a steel alloy based on its composition.الوحدات
Course Introduction
1
Discussions
- Meet and Greet
4
Videos
- Specialization Introduction
- Instructor Introduction Video, Terry Alford
- Instructor Introduction Video, Nirmal Theodore
- Mini Course #1 Introduction Video
2
Readings
- Specialization Overview
- Syllabus
Module 1: Lesson 1, Model System Fe-Fe3C and Phase Diagrams
1
Videos
- Phase Diagrams, Part 1
2
Readings
- Lesson 1 Overview
- Introduction to Material Science, Chapter 14, Phase Diagrams III -- Steel as a Model System
Module 1: Lesson 2, Model System Microstructure vs. Mechanical Properties
1
Discussions
- Alloy Phase Diagrams
2
Readings
- Lesson 2 Overview
- Introduction to Material Science, Chapter 14, Phase Diagrams III -- Steel as a Model System
Module 2: Lesson 1, Model System Phase Diagram vs. Microstructure
1
Discussions
- Fe-Fe3C Phase Diagrams
1
Videos
- Model System Fe-Fe3C, Part 1
2
Readings
- Lesson 1 Overview
- Introduction to Material Science, Chapter 14, Phase Diagrams III -- Steel as a Model System
Module 2: Lesson 2, Stress-Strain Curves As A Function Of Composition
1
Assignment
- Phase Diagrams III – Steel Quiz
1
Discussions
- Fe-Fe3C Phase Diagram Predictions
1
Videos
- Model System Fe-Fe3C, Part 2
2
Readings
- Lesson 2 Overview
- Introduction to Material Science, Chapter 14, Phase Diagrams III -- Steel as a Model System
Module 3: Lesson 1, Phase Transformations
1
Videos
- Non-Equilibrium Phase Diagrams, Part 1
2
Readings
- Lesson 1 Overview
- Introduction to Material Science, Chapter 15, Phase Diagrams IV -- Heat Treatment and Phase Transformations
Module 3: Lesson 2, Time-Temperature Transformation Rates
1
Videos
- Non-Equilibrium Phase Diagrams, Part 2
2
Readings
- Lesson 2 Overview
- Introduction to Material Science, Chapter 15, Phase Diagrams IV -- Heat Treatment and Phase Transformations
Module 3: Lesson 3, Isothermal Transformation Diagram
2
Videos
- Non-Equilibrium Phase Diagrams, Part 3
- Non-Equilibrium Phase Diagrams, Part 4
2
Readings
- Lesson 3 Overview
- Introduction to Material Science, Chapter 15, Phase Diagrams IV -- Heat Treatment and Phase Transformations
Module 3: Lesson 4, Isothermal Transformation Diagram for Heat Treatment
1
Discussions
- Hypoeutectic Fe-C Alloys
1
Videos
- Non-Equilibrium Phase Diagrams, Part 5
2
Readings
- Lesson 4 Overview
- Introduction to Material Science, Chapter 15, Phase Diagrams IV -- Heat Treatment and Phase Transformations
Module 4: Lesson 1, Heat Treatments for Phase Transformation
1
Videos
- Heat Treatments, Part 1
2
Readings
- Lesson 1 Overview
- Introduction to Material Science, Chapter 15, Phase Diagrams IV -- Heat Treatment and Phase Transformations
Module 4: Lesson 2, Nonequilibrium Microstructures
1
Videos
- Heat Treatments, Part 2
2
Readings
- Lesson 2 Overview
- Introduction to Material Science, Chapter 15, Phase Diagrams IV -- Heat Treatment and Phase Transformations
Module 4: Lesson 3, Nonequilibrium Microstructures vs. Mechanical Properties
1
Assignment
- Phase Diagrams IV – Steel Heat Treatment Quiz
1
Peer Review
- Heat Treatments
1
Discussions
- Isothermal Transformation Diagram
2
Videos
- Heat Treatments, Part 3
- Course Review
2
Readings
- Lesson 3 Overview
- Introduction to Material Science, Chapter 15, Phase Diagrams IV -- Heat Treatment and Phase Transformations
Auto Summary
"Phase Diagrams" is a professional-level course in Science & Engineering offered by Coursera. It delves into advanced concepts of phase diagrams, particularly the Fe-Fe3C phase diagram, to predict steel alloy phases and microstructures. The course spans 1080 minutes and offers Starter and Professional subscription options, ideal for learners seeking in-depth knowledge in this area.
Terry Alford