Medium Of Instructions | Mode Of Learning | Mode Of Delivery |
---|---|---|
English | Self Study | Video and Text Based |
The Aluminium Based Alloys And Metal Matrix Composites certification course offers a deep dive into aluminium alloys and composites, crucial materials across various engineering sectors. Through the lens of physical metallurgy, students explore the structure-property relationship of these materials, covering alloy composition, microstructure, and mechanical behaviour.
With the Aluminium Based Alloys And Metal Matrix Composites certification by Swayam, students gain a comprehensive understanding of aluminium alloys, physical metallurgy principles, and metal matrix composites. With a duration of 12 weeks, it provides students with valuable insights into metallurgy and material science, particularly within the context of industrial applications.
Fees Informations | Certificate Availability | Certificate Providing Authority |
---|---|---|
INR 1000 | yes | IIT Madras (IITM) |
The Aluminium Based Alloys And Metal Matrix Composites certification fees is free. However, if you want a certificate, you must register and take the proctored exam at designated centres, which is optional and comes with a fee of Rs 1000.
Aluminium Based Alloys And Metal Matrix Composites Certification Fee Structure
Particulars | Total Fees |
Aluminium Based Alloys And Metal Matrix Composites (exam) | Rs 1000/- |
Academic Qualifications
The Aluminium Based Alloys And Metal Matrix Composites certification course requires a basic understanding of materials science and engineering.
Certification Qualifying Details
To receive the Aluminium Based Alloys And Metal Matrix Composites certification by Swayam, you need a minimum average assignment score of 10/25 and an exam score of 30/75.
After completing the Aluminium Based Alloys And Metal Matrix Composites certification syllabus, you will gain a deep understanding of aluminium alloys and their properties and applications. You will also explore the relationship between the structure and properties of these materials.
Upon completion of the Aluminium Based Alloys And Metal Matrix Composites training, you will learn about alloy composition, microstructure, and how various factors influence their mechanical behaviour. You will develop a comprehensive understanding of aluminium alloys, including their diverse uses and the factors that contribute to their performance.
The Aluminium Based Alloys And Metal Matrix Composites online course is suitable for students interested in metallurgy, material science, and engineering. It is also beneficial for professionals in any field where the use of aluminium alloys and composites is prevalent, such as:
Follow these steps to join the Aluminium Based Alloys And Metal Matrix Composites classes:
Step 1: Browse the URL below:
https://onlinecourses.nptel.ac.in/noc23_mm40/preview
Step 2: Click on the “Sign-in/ Register” button
Step 3: Fill out the necessary details and submit the form
The Aluminium Based Alloys And Metal Matrix Composites certification offers an optional exam. Your final score is determined by averaging the best 8 out of 12 assignments (25%) and your proctored exam score (75%).
A basic understanding of materials science and engineering is required as a prerequisite. This includes familiarity with concepts such as atomic structure, material properties, and processing techniques.
This course provides valuable insights into aluminium alloys, composites, and physical metallurgy principles, which are highly relevant in industries such as automotive manufacturing, aerospace, and materials engineering.
While the course primarily focuses on theoretical concepts, practical examples and case studies are incorporated to illustrate real-world applications of aluminium alloys and composites.
The course is designed to cover fundamental principles as well as recent advancements in the field of aluminium alloys and composites. You will explore current research trends and technological developments.
Yes. Professionals in industries related to materials engineering, manufacturing, and product development can benefit from gaining a deeper understanding of aluminium alloys, composites, and physical metallurgy principles.