Company Filing History:
Years Active: 2025
Title: Innovations of Zaicong Wang
Introduction
Zaicong Wang is a notable inventor based in Wuhan, China. He has made significant contributions to the field of high-temperature and high-pressure reactor technology. His work focuses on developing devices and methods that enhance the control of pressure in these complex systems.
Latest Patents
Zaicong Wang holds a patent for "Devices and methods for controlling pressure of high-temperature and high-pressure reactors." This invention discloses a device and method for effectively managing pressure within high-temperature and high-pressure reactors. The device comprises an automatic pressurizing unit, a manual pressurizing unit, a temperature boosting and pressure boosting control unit, and a temperature and pressure control panel. The design includes a first valve, a first pressure gauge, a second valve, and a second pressure gauge, which are arranged sequentially between the automatic and manual pressurizing units. Additionally, a pipeline connecting the temperature boosting and pressure boosting control unit is integrated between the first pressure gauge and the second valve. The temperature and pressure control panel is wired to the automatic pressurizing unit, manual pressurizing unit, and the temperature boosting and pressure boosting control unit.
Career Highlights
Zaicong Wang is affiliated with the China University of Geosciences in Wuhan. His academic and research endeavors have positioned him as a key figure in the development of innovative technologies in his field.
Collaborations
Some of his notable coworkers include Haihao Guo and Jinlong Li, who have collaborated with him on various projects and research initiatives.
Conclusion
Zaicong Wang's contributions to the field of high-temperature and high-pressure reactor technology are noteworthy. His innovative patent reflects his commitment to advancing engineering solutions in this area. His work continues to influence the development of safer and more efficient reactor systems.