This inventor holds 1 USPTO granted patent and 1 published patent application. Top assignee: Shanghai Nuclear Engineering Research & Design Institute. Active years: 2020.
Company Filing History:
Years Active: 2020
Title: Innovations of Qianxue Ding in Neutron Absorption Technology
Introduction
Qianxue Ding is a notable inventor based in Shanghai, China. He has made significant contributions to the field of nuclear engineering, particularly in the development of advanced neutron absorbers. His innovative work has led to the creation of a unique gray control rod that enhances reactivity control in nuclear applications.
Latest Patents
Qianxue Ding holds a patent for a "Gray control rod having a neutron absorber comprising terbium and dysprosium." This invention features a neutron absorber that includes at least one first component and one second component. The first component's reactivity worth increases over time, while the second component's reactivity worth decreases. This design ensures that the neutron absorber's reactivity worth varies by no more than 15% throughout its service life. By adjusting the proportions of these components, the invention achieves a stable reactivity control characteristic.
Career Highlights
Qianxue Ding is affiliated with the Shanghai Nuclear Engineering Research & Design Institute. His work at this esteemed institution has allowed him to focus on innovative solutions for nuclear technology challenges. His expertise in neutron absorption has positioned him as a key figure in advancing safety and efficiency in nuclear reactors.
Collaborations
Qianxue Ding has collaborated with notable colleagues, including Junqiang Lu and Chuntao Tang. These partnerships have fostered a collaborative environment that encourages the exchange of ideas and expertise in nuclear engineering.
Conclusion
Qianxue Ding's contributions to neutron absorption technology exemplify the importance of innovation in the nuclear engineering field. His patented inventions not only enhance reactor safety but also demonstrate the potential for future advancements in this critical area of research.