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Colleges

Advanced Materials Engineering

Course Description: Introduction and Fundamentals of Refreshing Smart/Functional Materials, Smart/Functional Materials, High-Strength Ferrous Alloys, High-Strength Non-Ferrous Alloys, Superalloys, High-Performance Polymers and Environmental Materials, Thin Film Science and Technology, Advanced Joining Methods, Processing-Structure-Property Relationship, Damage Tolerance, Strengthening Mechanisms, Structural Integrity, and Reliability.
Credit hours: 3
Objectives of the course :

Enable students to learn about traditional methods for processing advanced composite materials.
Enable students to distinguish between available reinforced fiber performance.
3. Enable students to identify traditional thermosetting plastics and thermoplastics.
4. Enable students to describe the mechanical properties of a unidirectional continuous fiber polymer composite as an anisotropic medium.
5. Present required test methods for characterizing anisotropic media.
6. Explain how to calculate the elastic response of a composite layer.

Course outputs :

1.1 Classification of Important Types of Advanced Engineering Materials: Smart, Functional, Ferrous Alloys, Non-ferrous Alloys, Superalloys, Polymers, Environmental Materials, and Thin Films.
1.2 Description of advanced material processing methods, thin-film technology, and advanced bonding methods.
1.3 Interpretation of the physical and mechanical behavior of advanced engineering materials.

1.4 Explanation of the Processing-Structure-Properties Relationship for Advanced Engineering Materials
2.1 Application of fundamental principles of materials design and selection in choosing advanced engineering materials for engineering applications.
2.2 Solving mechanical engineering problems related to the applications, benefits, and limitations of advanced engineering materials.
2.3 Evaluate, review, and reflect on advanced engineering materials concepts to provide creative solutions to current challenges and problems related to the limited application of engineering materials.
3.1 Management of activities and responsibility related to the design and selection of advanced engineering materials suitable for engineering applications.

Additional information:

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