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Materials Science Experts

Wu Xinqiang

Professor
Materials Science and Engineering
China University of Science and Technology
China

Biography

 Wu Xinqiang is Professor in the Research Center for Corrosion of Materials and Environment, Institute of Metal Research, Chinese Academy of Sciences

Research Interest

Mainly engaged in materials high temperature and pressure water corrosion damage behavior, mechanism and evaluation techniques, including 360 o C / 20 MPa light water reactor nuclear power plant service environment and 374 o C / 22.1 MPa above the super-water environment. Mainly to energy and environmental safety as the background, research on the second generation of pressurized water reactors and three generations of large advanced pressurized water reactor nuclear power plant and the fourth generation of supercritical water reactor key equipment materials, service safety, localization design, operation of water chemistry, online monitoring Principle and method and life assessment technology. At the same time, it is involved in the assessment of service injury of key materials for ultra-supercritical thermal power units, development of new technologies for supercritical water oxidation of industrial organic poisonous waste, selection of key equipment, selection of key equipment for supercritical coal gasification technology , Supercritical hydrothermal synthesis principle and technology research, as well as new corrosion-resistant materials research and development and corrosion performance evaluation.   • Nuclear power high-temperature high-pressure water and supercritical water simulation equipment and experimental techniques    •  High temperature and pressure water corrosion electrochemical and online monitoring technology   •  Mechanisms and parameter optimization of water chemistry affecting corrosive damage in nuclear power operations   •  High temperature and pressure water corrosion fatigue and life design model of nuclear power material   •  Supercritical water corrosion damage and hydrothermal synthesis   •  High Temperature High Pressure Liquid Environmental Corrosion Failure Analysis and Countermeasures   •  New corrosion resistant materials research and development and evaluation of the corrosion

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