M.Tech. in Alloy Technology, also known as M.Tech. in Metallurgy, is a 2-year long postgraduate course spanning the areas of Materials Technology and manufacturing processes such as metal- forming and material- joining, and related characterization techniques.
The average tuition fee charged for the course in India ranges between INR 40,000 and 2 Lacs. Admission is based on the candidate’s performance in a relevant entrance exam, such as GATE, CMJ, CCMT etc.
Successful postgraduates of the course are hired in capacities such as Researcher Metallurgist, Welding Engineer, Plant Equipment Engineer and Ballistics Engineer etc.
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Organizations such as Hindalco Industries Limited, Tata Steel, HCL, Jindal Steel and Steel Authority of India (SAIL) etc. hire such postgraduates.
Average annual salary offered to such professionals in India ranges between INR 3 and 8 Lacs.
Top Colleges for Master of Technology [M.Tech] (Alloy Technology)
M.Tech. in Alloy Technology: Course Highlights
Listed below are some of the major highlights of the course.
|Course Level||Post Graduate|
|Examination Type||Semester System|
|Eligibility||B.E./B.Tech. or equivalent qualification|
|Admission Process||Based on entrance exams such as GATE, CMJ, CCMT etc.|
|Course Fee||INR 40,000 to 2 Lacs|
|Average Starting Salary||INR 3 to 8 Lacs|
|Top Recruiting Companies||Hindalco Industries Limited, Tata Steel, HCL, Jindal Steel and Steel Authority of India (SAIL) etc.|
|Job Positions||Researcher, Metallurgist, Welding Engineer, Plant Equipment Engineer, Ballistics Engineer, Quality Planning Engineer, Senior Process Engineer, Alloy Technologist, R&D Lab Technician, Supplier Development Engineer etc.|
M.Tech. in Alloy Technology: What is it About?
The program is designed to offer advanced learning to students in the core areas of Alloy Technology and Materials Engineering, and to meet related needs of Indian industries and R&D organizations. A blend of theoretical knowledge and modern laboratory and industry- based practices is accomplished through core and elective subjects.
Core subjects such as Mechanical Behavior of Materials, Materials Characterization, etc. are to be taken up by all M.Tech. students. Alloy Technology involves the study of the physical and chemical behavior of metallic elements, their inter-metallic compounds, and their alloys.
Alloy Technology can be broadly divided into three categories, namely Physical Metallurgy, Extractive Metallurgy, and Mineral Processing.
Top Institutes Offering M.Tech. in Alloy Technology
Listed below are some of the top institutes offering the course in the country with the corresponding locations and fees charged by each.
|Name of Institute||City||Average Fees|
|IIT||Varanasi||INR 0.5 lacs (course)|
|IIT||Chennai||INR 40,000 (course)|
|Malviya National Institute of Technology||Jaipur||INR 55,000(course)|
|IIT Mumbai||Mumbai||INR 84,500 (course)|
|BIT||Sindri||INR 1.6 lacs (course)|
Eligibility for M.Tech. in Alloy Technology
Candidates wishing to apply for the course need to meet the following minimum criteria of eligibility:
- 10+2 qualification with Physics, Chemistry and Math as main subjects.
- B.Tech./ B.Sc. in Chemistry or related discipline.
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M.Tech. in Alloy Technology: Admission Process
Admission to the course is based on the candidate’s GATE score in the relevant discipline. A minimum aggregate score of 60% (55% for SC/ST) is needed to have been scored at the level of the qualifying examination a recognized university.
M.Tech. in Alloy Technology: Career Prospects
Alloy Technology is a wide field that offers to eligible aspirants, a range of career opportunities, such as in industries and enterprises that manufactures metals or metallic products.
Metal manufacturing industries such as Hindalco Industries Limited, Tata Steel, HCL, Jindal Steel and Steel Authority of India (SAIL) are the main recruiters of Alloy Technology Consultants in India. In the electrical industry, Cable Corporation of India and Finolex Cables Ltd. are two of the top employers of metallurgy scholars. Professionals of this field can also opt for teaching jobs in universities and colleges.
Alloy Technology Engineers prepare metallic alloys required or needed for different kinds of manufacturing and construction work. Another branch of metallurgy is extractive metallurgy which involves the extraction of metals from their ores.
Alloy Technology Engineers use complex equipment, including electron microscopes, X-ray machines, and spectrographs to arrive at precise scientific and technological findings.
Some of the popular professional avenues open to such postgraduates are listed below with the corresponding salaries offered for the respective positions.
|Job Position||Job Description||Average Annual Pay Scale in INR|
|Researcher||Social Researchers plan, design, conduct, manage and report on social research projects. They use a variety of methods to collect, analyse and organise information and data, to present it to others, either in written reports, or as oral presentations.||5,93,252|
|Metallurgist||Metallurgists work with metals and alloys in the development and manufacturing of metal items and structures that range from tiny precision-made components to huge engineering parts. Metallurgists usually specialize in a specific area such as process, chemical or structural metallurgy.||3,31,401|
|Welding Engineer||Welding Engineers develop welding techniques, procedures, and application of welding equipment to problems involving fabrication of metals, utilizing knowledge of production specifications, properties and characteristics of metals and metal alloys, and engineering principles.||4,57,303|
|Plant Equipment Engineer||Plant Equipment Engineers’ tasks include determining standards and policies for installation, modification, quality control, testing, inspection and maintenance, inspecting plant and machinery to ensure optimum performance, directing the maintenance of plant buildings and equipment, and scheduling and planning production activities.||3,04,898|
|Ballistics Engineer||Ballistics Experts are among the most highly trained forensic scientists. Many have college degrees, and often spend two, three or more years in initial training, followed by dozens of hours in continuing education every year.||3,94,026|
|Quality Planning Engineer||Planning Engineers are required to develop the most appropriate method and sequence of shut down and turnaround activities, in conjunction with the Project Manager, in order to ensure that the project is completed timely, safely, and on budget.||3,72,618|
|Senior Process Engineer||Senior Process Engineers evaluate a process' efficiency, effectiveness, quality, and safety. They then identify any areas that need to be improved or changed, with the ultimate goal being to make a process efficient and less costly.||6,77,247|
M.Tech. in Alloy Technology: Syllabus and Course Description
A semester- wise breakup of the course’s syllabus is tabulated below.
|Advanced Physical and Mechanical Metallurgy|
|Advanced Ferrous Metal Production 4 0 0 4 Elective -1|
|Materials Testing Lab|
|Soft Skills Lab|
|Advanced Non-Ferrous Metal Production|
|Elective - 5|
|Elective - 6|
|Elective - 7|
|Elective - 8|
|Welding Technology Lab|
|Comprehensive Viva Voce 4|
|Project Phase – I|
|Project Phase – II & Dissertation|