Postgraduate Teaching in School of Materials Science and Engineering, Chongqing University of Technology

Master of Science

Master of materials science degree awarding point

In 2005, materials science was granted the right to master's degree, and enrollment began in 2007. After years of construction and development, we have a faculty of more than 20 full and associate professors with profound professional theory, rich engineering experience and strong scientific research ability, which has obvious characteristics and advantages in the fields of material strengthening, film and coating preparation and interface physical chemistry, functional materials and preparation technology, modern connecting materials and preparation technology. In the past three years, we have completed more than 65,438+000 national and provincial scientific research projects. The accumulated research funding is more than 4 million yuan, and the current research funding is more than 3 million yuan. Teachers have published more than 300 research papers (including more than 50 papers collected by SCI, EI and ISTP).

Relying on the Surface Engineering Sub-center of Chongqing Light Alloy Engineering Technology Research Center, Chongqing Key Laboratory of Mould Technology, Chongqing Mould Engineering Technology Center and Chongqing Institute of Electronic Materials and Surface Engineering, this major provides good learning and research conditions for graduate students.

Training objectives of Master of Materials Science:

1. Master the basic theory of Marxism, support the socialist system, love the motherland, abide by the law and have good moral quality. Have the spirit of dedication to science, cooperation and innovation, and can actively serve the socialist modernization.

2. Have a solid basic theory and systematic professional knowledge and strong practical skills in this discipline; Familiar with the development and trend of science and technology in research direction; Have strong scientific research and development ability, innovation ability, adaptability and competitiveness, and be competent for scientific research and teaching of this discipline or independently undertake engineering and technical work.

3. Master a foreign language, be proficient in reading foreign language materials of this major, and have certain scientific and technological foreign language writing ability. At the same time, it requires a certain computer application ability.

4. Have a healthy body.

Main research directions:

1. material strengthening, failure and protection

Taking the strengthening, failure and protection of metal materials as the research content, the research focuses on chemical heat treatment strengthening, laser heat treatment strengthening, coating and mechanical strengthening, corrosion and protection of materials, failure analysis and prevention of parts, friction and wear of materials, etc.

2. Preparation of thin films and coatings and physical chemistry of interfaces.

Taking surface films and coatings as the research content, the preparation and process optimization of films or coatings based on physical vapor deposition, chemical vapor deposition, thermal spraying, electroplating and brush plating, the properties of films or coatings and their interaction with matrix, and the corresponding interface physical chemistry are studied.

3. Functional materials and preparation technology

Taking high-performance functional materials and their preparation technology as the research content, the research focuses on lubricating functional materials and their preparation technology, the design and development of lead frame materials, expensive and cheap metal composite materials and their preparation technology, and information functional ceramic materials and their preparation technology.

4. High-performance structural materials

Taking new light alloy materials as the research content, the design and preparation of high-performance new light alloy materials such as magnesium alloy, aluminum alloy and titanium alloy, the relationship between alloy composition, microstructure and properties, and the influence of processing technology on alloy microstructure and properties are emphatically carried out.

5. Modern connecting materials and preparation technology

The research content is advanced material connection technology and advanced connection method, focusing on the design and preparation of micro-connection materials, green connection materials, advanced connection technology of light alloy materials and variable polarity plasma welding technology.

Years of study:

1. The academic system of full-time postgraduate students is 3 years, which cannot be extended generally. Among them, the course study time is 1- 1.5 years, and the working time after the formal thesis opening report is passed is not less than 1 year.

2. Due to special reasons, graduate students should submit a written application three months before the end of the prescribed academic system. With the consent of the tutor and the second-level college, the graduate office will review and approve the school leaders, and the study period in school may be appropriately extended, but the longest period shall not exceed 5 years.

Master's degree awarding point of material processing engineering

After more than ten years' construction, the discipline of material processing has made great progress in the fields of plastic forming technology and digital manufacturing of molds, and has become a key discipline in Chongqing and a brand specialty of Chongqing Institute of Technology. At present, there are full and associate professors 13, 2 academic leaders enjoying state government subsidies, Chongqing academic leaders 1 person, and 2 reserve academic leaders. Relying on Chongqing Key Laboratory of Mould Technology, Chongqing Mould Engineering Technology Research Center, Chongqing Institute of Technology-C3P Joint Center of Shanghai Jiaotong University and other scientific research institutions, this discipline has many scientific research projects and sufficient research funds. In the past three years, this discipline has completed nearly 200 national, ministerial and horizontal scientific research projects, with accumulated research funds of more than 5 million yuan and nearly 2 million yuan under research; He has published more than 300 papers, monographs and textbooks 10, won nearly 20 patents, won the second prize of National Science and Technology Progress Award 1, won the first prize of Chongqing Science and Technology Progress Award, and won the third prize of China Automobile Industry Science and Technology Progress Award 1. This discipline has established extensive scientific and technological cooperation and academic exchanges with famous universities and companies at home and abroad, and formed a production, learning and research base focusing on cultivating high-level materials science and engineering talents. There are six specialized laboratories, with an experimental teaching area of nearly1000 ㎡; The design and analysis software is complete, the processing and testing equipment is advanced, and there are more than 20 sets of precision equipment and conventional equipment, with total assets of more than 8 million yuan.

The training objectives of the Master of Materials Processing Engineering are:

1. Master the basic theory of Marxism, support the socialist system, love the motherland, abide by the law and have good moral quality. Have the spirit of dedication to science, cooperation and innovation, and can actively serve the socialist modernization.

2. Have a rigorous academic attitude and scientific style, strong theoretical knowledge of materials, mechanics, machinery, electronics and control in the field of material processing engineering, extensive and profound professional knowledge of modern material processing and skilled computer simulation application ability; Have strong scientific research and development ability, innovation ability, adaptability and competitiveness, and be competent for scientific research and teaching of this discipline or independently undertake engineering and technical work.

3. Master a foreign language, be proficient in reading foreign language materials of this major, and have certain scientific and technological foreign language writing ability.

4. Have a healthy body.

Main research directions:

1. sheet metal forming and its die technology

Mainly carry out the precision forming of plate parts and the forming process and control of large complex parts; Research and application of die CAD, computer simulation and simulation analysis of sheet metal forming process, etc.

2. Precision forming technology and its application

Mainly carry out precision volume forming, precision casting forming process and equipment technology of parts; Research and application of computer simulation and simulation analysis (CAE) in forming process.

3. Polymer molding and mold technology

Mainly carry out polymer material molding technology and mold technology; Computer simulation and simulation analysis (CAE) of molding process; New technology and process of polymer material molding: research and application of polymer alloying, high performance and functionalization.

4. Digital mold manufacturing and its special processing.

Mainly carry out computer aided design and manufacturing (CAD/CAM) of molds; Mould precision manufacturing technology; Rapid prototyping application technology; Research and application of mould networked manufacturing and special processing technology.

Years of study:

1. Postgraduates in this major should complete at least 26 credits (no more than 36 credits) during their study. Among them, the total credits of the course shall not be less than 24 credits (in the course credit requirements, the degree course shall not be less than 15 credits, and the non-degree course shall not be less than 9 credits); Practice should complete 2 credits.

2. Candidates with interdisciplinary or equivalent academic ability need to make up at least three required main courses for undergraduates of this major (study with undergraduate courses and pass the examination). Make-up classes don't count credits, and they can't offset compulsory credits in practice.