Traditional Culture Encyclopedia - Traditional customs - What do you study in metallurgy?
What do you study in metallurgy?
Metallurgical Engineering
1. Overview
The field of metallurgical engineering is the study of extracting metals or compounds from ores and other resources, and making them into products with good performance and Economic value of materials in the field of engineering technology.
Metallurgy is the foundation of national economic construction and a symbol of national strength and industrial development level. It provides needs for various industries such as machinery, energy, chemical industry, transportation, construction, aerospace industry, national defense and military industry, etc. material products. The development of modern industry, agriculture, national defense and science and technology constantly puts forward new requirements for the metallurgical industry and promotes the development of metallurgical disciplines and engineering technology. In turn, the development of metallurgical engineering continues to provide new material foundations for the progress of human civilization.
The development trend of metallurgical engineering technology is to continuously draw on new achievements in related disciplines and engineering technology to enrich, update and deepen. In terms of metallurgical thermodynamics, metals, molten matte, slag, molten salt structure and physical properties, etc. The research will be more in-depth, establish an intelligent thermodynamics and kinetics database, strengthen the research on metallurgical dynamics and metallurgical reaction engineering, and use computers to gradually realize system optimal design and automatic control of the entire metallurgical process. Metallurgical production technology will achieve flexible, high-speed and continuous production, achieve full utilization of resources and energy, and optimal protection of the ecological environment. With the emergence of new metallurgical technologies, new equipment, and new processes, metallurgical products will develop in ultra-pure and ultra-high performance and play an increasingly important role in supporting the development of economy, national defense, and high technology.
Metallurgical engineering is closely related to many disciplines and promote the development of each other. Metallurgical engineering includes two categories: iron and steel metallurgy and non-ferrous metal metallurgy. Metallurgical physical chemistry is the applied theoretical basis of metallurgical engineering. This engineering field is closely connected with engineering fields such as materials engineering, environmental engineering, mining engineering, control engineering, computer technology, and basic disciplines such as physics, chemistry, and engineering thermophysics, promoting each other and developing together.
2. Training objectives
Cultivation of scientific research and development applications, engineering design and implementation, technical research and technological transformation, promotion and application of new technologies, engineering planning and metallurgical enterprises in the field of metallurgical engineering High-level talents in management and other fields.
Engineering master’s students in the field of metallurgical engineering should have solid basic theories and systematic professional knowledge of modern metallurgical technology, and have a comprehensive understanding of the current status and development trends of metallurgical engineering technology at home and abroad. Be able to skillfully use advanced science and technology and experimental methods, and have the ability to engage in engineering technology research, transformation, development and application (including engineering design and engineering management).
3. Field Scope
The field scope of metallurgical engineering can be divided into two categories: iron and steel metallurgy and non-ferrous metallurgy. From the research direction and technical nature, it can be subdivided into:
(1) Physical and chemical theory and application of metallurgical processes and material synthesis.
(2) Comprehensive utilization of mineral resources and environmental protection during the smelting process.
(3) Design and construction of steel smelting processes, technologies, equipment and production systems.
(4) Solidification processing technology.
(5) Metallurgical process simulation.
(6) Pure steel manufacturing technology.
(7) Analysis and comprehensive integration of steel manufacturing processes.
(8) The application of electrochemical metallurgical principles, processes, and technologies in non-ferrous metallurgical processes, and the application of solid-state ionics and related theories in metallurgy and materials.
(9) Hydrometallurgy and powder engineering in non-ferrous smelting process.
(10) Development and application of non-ferrous metal functional materials, etc.
IV. Curriculum
Basic courses: Scientific socialist theory, natural dialectics, foreign languages, calculation methods or mathematical statistics or mathematical equations or fuzzy mathematics and its applications, basics of computer technology applications, etc. .
Technical foundation: metallurgical physical chemistry, metallurgical transmission principles and reaction engineering, modern physical and chemical research methods, introduction to materials science and engineering, business management or engineering economics, etc.
Professional courses: Iron and steel metallurgy, new non-ferrous metallurgy technologies, mathematical simulation and simulation of metallurgical processes, comprehensive utilization of metallurgical resources and environmental protection, modern metallurgy and material testing technology, plastic processing physical metallurgical theory, solidification principles and connections Casting process, metallurgical quality control, foam metallurgical melt, refractory material structure and properties, rolling process and equipment, hydrometallurgical physical chemistry, non-ferrous metallurgical principles and methods, non-ferrous metal materials and processing, etc.
The above courses can be classified as degree courses and non-degree courses. Other courses can also be determined by the training unit and cooperative enterprises based on actual needs. The total score of the course shall not be less than 28 credits.
5. Dissertation
Conduct research work based on the actual topics of metallurgical enterprises. It can be the research and development of new smelting technologies, new processes, new equipment, or the original metallurgical process. Technological innovations in equipment and equipment systems can be metallurgical process detection technology and quality control, research on condition monitoring and fault diagnosis systems for metallurgical process equipment, or innovations in the management model of large metallurgical enterprises, etc.
Write a paper based on the research results: For the results of new product design and development technology, the paper should include comparison and evaluation of design plans, design calculations, and complete drawings; for the results of major technological transformation and innovation, the paper should have an analysis of the original equipment and technology Evaluation, review of transformation and innovation plans and analysis of the technical and economic effects of the results; for product quality control and test results, there must be test plans, complete experimental data, data processing and analysis methods, and result analysis; for production equipment management results , it is necessary to provide a new management theory system, analyze the effects of enterprise output and quality, and provide an innovative management information system, etc.
There is nothing that girls cannot learn, and there is nothing inappropriate. As long as you are confident and like this major, then you should think about it~~~~
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