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After graduation, he worked in the machinery industry. If you are lucky, you can engage in material research, which requires a certain number of contacts in your family.
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According to the latest professional catalogue of the Ministry of Education, metal materials cover metallurgy, non-ferrous metals, composite materials, powder metallurgy, material heat treatment, material corrosion and protection and surface and other majors.
The major cultivates senior engineering and technical talents who have knowledge of metal materials science and engineering, and can be engaged in scientific research, technology development, process and equipment design, production and operation management in the fields of metallurgy, material structure research and analysis, metal materials and composite material preparation, metal material forming, etc.
Students in this major mainly learn the basic theories of materials science, and master the basic laws of the relationship between the composition, microstructure, production process, environment and performance of metal materials and their composite materials. Improve the performance, quality and longevity of materials through integrated alloy design and process design, and develop new materials and processes.
After graduation, students can be engaged in the design and manufacture of metal materials, material surface modification, and the application of metal materials, inorganic non-metallic materials, polymer materials, composite materials, functional materials in the fields of machinery and chemical industry, energy and environment, electronics and information, metallurgy and mining, power and power and national defense construction, and can also be engaged in material production organization, technical management and material testing, failure analysis and other technical supervision.
Metal Materials Engineering.
At the master's or doctoral level, they can be engaged in the research of basic theory, design, manufacturing, analysis and testing of new materials in the fields of material surface engineering technology, aerospace technology, biomedical engineering technology, etc.
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Students in this major mainly learn the basic theories of materials science and master the basic laws of the relationship between the composition, organizational structure, production process, environment and performance of metal materials and their composite materials.
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Main disciplines: materials science and engineering.
Main courses: material thermodynamics, metallurgy, mechanical properties of materials, material analysis technology, metal materials, material forming and processing technology and equipment, computer application in materials engineering, and other main practical teaching links: including metalworking practice, production practice, curriculum design, professional experiments, computer application and computer practice, graduation project.
Main professional experiments: metallurgical experiments, physical and mechanical properties of metal materials, phase transformation and heat treatment of metal materials, etc.
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1. Metal materials engineering is a research direction supported by the national key orange branch, and there is a large amount of capital investment every year, and the results are also very significant. The field of study is very wide, and it can be said that all metal elements are within its scope of study. At present, China mainly focuses on the research and development of ferroalloys, aluminum alloys and other special metal materials.
2. The material engineering is a very practical profession, through the exploration of the preparation process and principle of metal materials, the research results can be directly applied to the actual production, and the progress made is closely related to the daily life of the people.
3. Students who like theoretical research can also give full play to their talents here, and there is a broad space for theoretical research. Although materials technicians have mastered the preparation process of many kinds of metal materials, they have not yet fully figured out the reason, and it is of great significance to further develop materials science to clarify all these theoretically. Therefore, computational materials science has also evolved from it, that is, the use of computers to simulate the interaction of various atoms and molecules, so as to design materials that meet the requirements, which has an extremely important guiding role in real production.
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The metal materials engineering major can be engaged in the design and manufacture of metal materials, product research and development, material production organization, production technology, material testing, failure analysis, technical management, quality management and other work in industrial enterprises.
The major of metal materials engineering is an undergraduate major in ordinary colleges and universities, which is a material major, with a basic study period of four years and a bachelor's degree in engineering. In 1998, the major of metal materials engineering officially appeared in the "Catalog of Undergraduate Majors in Ordinary Colleges and Universities". The training of metal materials engineering is in line with the needs of regional social and economic development.
Facing metal material preparation, machinery manufacturing, automobile manufacturing, process equipment manufacturing and other industries, with basic knowledge of metal materials engineering, can be engaged in metal materials related production process formulation, technology development, engineering design and use, production, operation and management in the fields of metal material preparation and processing, material quality and performance testing, etc.
Metal materials engineering application-oriented talent training mode:
In order to explore the training mode of applied talents in metal materials engineering in colleges and universities, we should first reform the curriculum system and adjust the proportion of students' theoretical knowledge and key re-knowledge, experimental courses and practical activities. Secondly, teachers should update their educational concepts, pay attention to students' learning needs for knowledge and skills in metal materials engineering, and respect students' main position in professional learning.
In addition, colleges and universities should strengthen the construction of the teaching talent team, cultivate the innovation ability of teachers in teaching methods and teaching content, and improve the professional level and professional quality of the teaching team. Only when the teaching and learning of metal materials engineering teachers and students are compatible, and both theory and practice are emphasized, can we explore an application-oriented talent training model suitable for the physical and mental development characteristics of students and in line with the needs of the social market.
The above content reference: Encyclopedia - Metal Materials Engineering.
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Metal materials engineering is an undergraduate major in ordinary colleges and universities, and it belongs to the materials major. Students in this major mainly learn the basic theories and related knowledge of metal materials science and engineering, understand the basic laws of the relationship between the composition, organizational structure, production process and performance or service behavior of metal materials, receive basic training in material preparation, performance analysis and testing skills, master the basic methods of metal material design, preparation and process control, and have the knowledge and ability to carry out metal material design and organization production, performance optimization, and new material development. <>
This major cultivates senior professionals who can adapt to the needs of social economy, science and technology and industrial production, develop comprehensively in moral, intellectual and physical aspects, have the basic knowledge and basic skills of metal materials engineering, and can be engaged in the research of metal materials and metal matrix composite materials in production enterprises, universities or scientific research institutes, the design of component technology and equipment, organization and performance inspection, manufacturing, technology development and operation management.
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Metal materials engineering can be engaged in the design and manufacture of metal materials, product research and development, material production organization, production technology, material testing, failure analysis, technical management, quality management and other work in industrial enterprises, and can also be engaged in the development and research of new materials, new processes and new equipment, and scientific research of metal materials in scientific research units.
Metal materials engineering mainly studies the basic knowledge and skills of metal materials and their composite materials, such as composition, structure, performance, production process, etc., covering metallurgy, composite materials, powder metallurgy, material heat treatment, material corrosion and protection, etc. For example: the casting of metal parts of vehicles and ships, the smelting of steel and non-ferrous metals, the quality inspection and improvement of steel bars, and the prevention of seawater corrosion on the hull surface of ships.
Metal Materials Engineering mainly focuses on "Thermodynamics of Materials", "Mechanical Properties of Materials", "Metal Materials Science", "Fundamentals of Metal Physics", "Corrosion and Protection", "Metallurgy", "Metal Technology", "Fundamentals of Materials Engineering", "Heat Treatment Process and Equipment", "Solid State Phase Transformation of Materials", "Material Analysis Technology", "Metallographic Technology", etc.
The universities include Wuhan University, Dalian University of Technology, Suzhou University, Shanghai University, Hohai University, Southwest University, Jiangsu University, Hefei University of Technology, Yanshan University, Guangdong University of Technology, Hebei University of Technology, Taiyuan University of Technology, Wuhan University of Science and Technology, Changzhou University, Xi'an Jianxiang Zhenzhu University of Science and Technology, Jiangsu University of Science and Technology, Anhui University of Technology, Qingdao University of Science and Technology, Hunan University of Science and Technology, etc.
If you have any questions about the self-examination and college upgrade, do not know the content of the self-examination college upgrade test center, and do not know the local self-examination college upgrade examination policy, click on the bottom to consult the official website to get a personal education promotion plan for free:
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Metal materials engineering is a materials major.
Metal materials major learning content:
1.Materials Fundamentals: Learn the structure and properties of metallic materials, such as crystal structure, lattice defects, phase diagrams, etc. Understand the basic properties of metal materials, such as mechanical, electromagnetic, and thermal properties.
2.Preparation and processing of metal materials: learn the preparation techniques of metal refining, refining and alloying. Understand the processing and forming technologies of metal materials such as casting, forging, rolling, extrusion, and welding.
3.Properties and Characterization of Metal Materials: Learn the performance testing and evaluation methods of mechanical properties, thermodynamic properties, magnetic properties and other properties of metal materials. Master the microstructure analysis, physical property testing, chemical analysis and other characterization techniques of metal materials.
4.Failure analysis and prevention of metal materials: Learn the failure mechanisms and analysis methods of metal materials such as fracture mechanics, fatigue life, corrosion and protection. Learn about damage assessment and preventive measures for metallic materials.
5.Application and Engineering of Metallic Materials: Learn about the application of metallic materials in the field of engineering. Understand the design principles and material selection requirements of metal materials in aerospace, automotive, electronics, energy and other industries.
Learn what you can do in the future of the metal materials major:
1.Materials research and development: In the R&D department of scientific research institutions, universities or enterprises, they are clearly engaged in the research and development of metal materials, including the synthesis and modification of new materials, material performance testing and analysis, etc.
2.Preparation and modification of new materials: Cooperate in the preparation, regulation and modification of metal materials, develop new metal materials or improve the properties of existing materials to meet the application needs of different fields.
3.Metal material processing and forming: In the manufacturing industry, it is engaged in the processing and forming process of metal materials, and the processing technology of metal materials such as forging, casting, extrusion, and welding is mastered.
4.Material performance testing and analysis: Responsible for the physical, mechanical, thermal and chemical properties testing of metal materials, as well as the operation and maintenance of microstructure analysis, material characterization and testing equipment.
5.Product quality control and testing: Engaged in quality control and testing in the manufacturing industry, ensuring that the metal materials in the production process meet the specified standards, and is responsible for quality inspection and evaluation of products.
Students in this major mainly learn the basic theories of materials science and master the basic laws of the relationship between the composition, organizational structure, production process, environment and performance of metal materials and their composite materials.
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Ferrous metals: iron, chromium, and manganese.
Non-ferrous metals: aluminum, magnesium, potassium, sodium, calcium, strontium, barium, copper, lead, zinc, tin, cobalt, nickel, antimony, mercury, cadmium, bismuth, gold, silver, platinum, ruthenium, rhodium, palladium, osmium, iridium, beryllium, lithium, rubidium, cesium, titanium, zirconium, hafnium, vanadium, niobium, tantalum, tungsten, molybdenum, gallium, indium, thallium, germanium, rhenium, lanthanum, cerium, praseodymium, neodymium, Samarium, europium, gadolinium, terbium, dysprosium, holmium, erbium, thulium, ytterbium, lutetium, scandium, yttrium, thorium. >>>More
Beijing] Tsinghua University, University of Science and Technology Beijing, Beijing University of Chemical Technology, Tianjin] Tianjin University. >>>More