B Tech In Metallurgy 2026 - Colleges, Fees, Eligibility, Syllabus

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HomeCoursesB.Tech in Metallurgy
UG4 Years

Bachelor of Technology (B.Tech) in Metallurgical and Materials Engineering

4 Years
B.Tech in Metallurgy (Metallurgical and Materials Engineering) is a 4-year undergraduate engineering course that focuses on metal extraction, processing, heat treatment, and materials performance. It prepares students for careers in steel plants, aluminium and non-ferrous industries, quality control, corrosion engineering, and materials testing across India’s core manufacturing sectors.

About B.Tech in Metallurgy

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Content Writer | Updated 17 Mar 2026

B.Tech in Metallurgy (Metallurgical and Materials Engineering) is a 4-year undergraduate engineering programme focused on the extraction, processing, characterization, and performance of metals and advanced materials. It covers core areas such as physical metallurgy, heat treatment, phase transformations, corrosion, welding, and foundry practices. Students gain strong laboratory exposure in metallography, mechanical testing, and failure analysis. Graduates work across steel, aluminium, mining, automotive, aerospace, energy, and manufacturing industries.
B.Tech in Metallurgical and Materials Engineering is designed to build a strong foundation in how metals and engineering materials are produced, processed, and selected for real-world applications. The curriculum integrates basic sciences, engineering fundamentals, and specialized metallurgy topics such as thermodynamics, kinetics, phase equilibria, iron and steel making, non-ferrous extractive metallurgy, mechanical metallurgy, and heat treatment. Students learn to interpret microstructures, correlate processing with properties, and address practical issues like corrosion, wear, and material failure. Laboratory and workshop components typically include metallography, mechanical testing (tension, hardness, impact, fatigue), foundry and welding practices, and advanced characterization using instruments such as optical microscopy and, where available, SEM/EDS and XRD. Most institutes include a mandatory internship and a final-year project focused on process improvement, quality control, or materials development. The degree prepares students for roles in production, quality, R&D, and plant operations in core metallurgical industries as well as materials-focused roles in automotive, manufacturing, and energy sectors.
Focus on metals and materials used in major industries such as steel, automotive, aerospace, and energy
Strong laboratory orientation including metallography, mechanical testing, corrosion, and characterization
Career pathways in production, QA/QC, process improvement, corrosion, and failure analysis with scope for higher studies

Eligibility Criteria

1

Educational Qualification

10+2 (or equivalent) with Physics and Mathematics as compulsory subjects along with one of Chemistry/Biotechnology/Biology/Technical Vocational subject; minimum aggregate as per institute (commonly 50–75% for General category; relaxation for reserved categories). Admission generally through national/state level engineering entrance exams and counselling.

2

Entrance Exam

JEE Main, JEE Advanced

Admission Process

How to Apply

Admission is typically through an engineering entrance exam score followed by centralized counselling or institute-level selection. Candidates choose Metallurgical/Metallurgical and Materials Engineering based on rank, preferences, and seat availability; document verification and fee payment complete the process.

Course Syllabus

Semester 16 Subjects
Engineering Mathematics I
Engineering Physics
Engineering Chemistry
Basic Electrical Engineering
Engineering Graphics
Programming for Problem Solving
Semester 26 Subjects
Engineering Mathematics II
Mechanics
Basic Electronics Engineering
Environmental Studies
Workshop/Manufacturing Practices
Data Structures/Programming Lab
Semester 36 Subjects
Engineering Mathematics III
Thermodynamics
Strength of Materials
Materials Science and Engineering
Metallurgical Thermodynamics (Basics)
Metallography and Materials Testing Lab
Semester 46 Subjects
Transport Phenomena/Fluid Mechanics
Physical Metallurgy I
Extractive Metallurgy I (Mineral Processing/Principles)
Phase Diagrams and Transformations
Mechanical Metallurgy I
Foundry and Welding Processes Lab
Semester 56 Subjects
Iron and Steel Making
Non-Ferrous Extractive Metallurgy
Heat Treatment of Metals
Mechanical Metallurgy II
Corrosion Engineering
Metallurgical Process/Heat Treatment Lab
Semester 66 Subjects
Physical Metallurgy II
Metal Forming and Deformation Processing
Powder Metallurgy and Ceramic Processing (Intro)
Welding Metallurgy and Joining
Materials Characterization Techniques
Corrosion and Characterization Lab
Semester 76 Subjects
Advanced Materials (Composites/Nanomaterials) (Elective)
Quality Control and Statistical Methods
Failure Analysis and Fracture Mechanics
Steel Plant Technology/Metal Casting (Elective)
Open Elective
Industrial Training/Internship
Semester 86 Subjects
Project Work/Dissertation
Process Modelling and Simulation (Elective)
Surface Engineering and Coatings (Elective)
Industrial Safety and Management
Seminar/Technical Presentation
Comprehensive Viva/Internship Report

Career Options & Jobs

Career prospects are strong in core sectors such as steel, aluminium, mining, and metal processing, where plants require engineers for production, process control, and quality. With skills in characterization and failure analysis, graduates also find opportunities in automotive, manufacturing, and energy industries, and can progress to R&D roles with an M.Tech/ME or specialization in materials engineering.

Career Options

Metallurgical Engineer (Steel/Non-Ferrous Plants)
Process Engineer (Smelting, Refining, Rolling, Heat Treatment)
Quality Control/Quality Assurance Engineer (Metals and Manufacturing)
Corrosion Engineer
Materials/Failure Analysis Engineer

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