1. What is the major of special energy technology and engineering?
Special energy technology and engineering mainly studies the basic knowledge and skills related to special energy conversion such as pyrogenics, pyrotechnics and pyrotechnics. It is based on chemistry and chemical industry, involving the design, manufacturing and application of energy-containing materials, and serves the national defense and military industry, and carries out production system design, technology development, product manufacturing, experimental testing, etc. of special energy engineering and pyrotechnics. For example: research and development and design of pyrotechnic products such as detonators, fuses, explosion switches, and production and manufacturing of pyrotechnics and pyrotechnics.
Special energy technology and engineering belong to the weapons category. The basic study period is four years, and the bachelor's degree in engineering is awarded . The major aims to cultivate basic theories and basic knowledge in weapons such as pyrogenics, pyrotechnics and pyrotechnics, and civil special energy and their energy conversion, familiar with the technical standard system, intellectual property rights, industrial policies and laws and regulations in the fields related to the special energy technology and engineering major, and have the ability to engage in product analysis, scientific research, engineering practice and manufacturing, performance testing, computer application, etc. After graduation, you can engage in the development, research, design, manufacturing, testing, application and management of pyrotechnics and pyrotechnics manufacturing technology in relevant scientific research institutions, universities, production enterprises and management departments.
2. What should I learn in special energy technology and engineering?
Example 1 ( Beijing Institute of Technology ): theoretical mechanics, material mechanics , digital electronic technology foundation, analog electronic technology foundation, design and manufacturing foundation II, applied physics and chemistry, organic material chemistry foundation, explosive physics, energy-containing materials science, energy-containing components design and manufacturing, dynamic testing technology, combustion, functional materials foundation, etc.
Example 2 ( Taipei University ): Inorganic and analytical chemistry, organic chemistry, physical chemistry, chemical principles, explosive theory, gunpowder physical and chemical properties, explosive chemistry and process, pyrotechnic principle and design, combustion and explosion testing technology, blasting technology, etc.
Example 3 ( Nanjing University of Science and Technology ): inorganic chemistry , organic chemistry, physical chemistry, chemical principles, polymer physics , explosive theory, combustion theory, energy-containing materials, energy-containing materials application technology, pyrotechnic principle, security technology, etc.
Example 4 ( Anhui University of Technology ): Inorganic and analytical chemistry, organic chemistry, physical chemistry, chemical principles, explosive explosion theory, combustion theory, chemical technology of energy-containing materials, pyrotechnic products principle, polymer physics and chemistry, propellant and fireworks, dynamic testing technology, pyrogen charge technology, thermal analysis technology basics, ammunition introduction, chemical safety and evaluation, fireworks and firecracker technology, etc.
Example 5 ( Southwest University of Science and Technology ): University physics (partial Thermal ), electrical and electronic technology, inorganic and analytical chemistry, inorganic and analytical chemistry experiments, energy-containing material safety technology, chemical principles, chemical principle experiments, physical chemistry, physical chemistry experiments, organic chemistry, organic chemistry experiments, basic experiments of energy-containing materials, combustion theory, explosives theory, pyrotechnic principles and design, special energy technology and engineering course design, special energy technology and engineering production internship, special energy technology and engineering graduation design, special energy technology and engineering major graduation internship, etc.
3. What are the special energy technology and engineering majors? After graduation, students majoring in special energy technology and engineering can engage in system design, technology development, product manufacturing, experimental testing and scientific management in scientific research institutes, enterprises and institutions of the national defense industry, public security and fire protection, energy-containing materials industry, safety supervision and the military, etc.