Paper Award—Warm Congratulations to Professor Li Jiangtao’s Research Group on the Publication of a Paper in an International Journal Using Our Company’s High-Temperature Contact Angle Tester
Tianjin Zhonghuan Paper Award Program — Warm congratulations to Professor Li Jiangtao’s research group on the publication of their paper in an international journal.

Professor Li Jiangtao’s Research Group —Institute of Physical Chemistry, Chinese Academy of Sciences
Teacher Profile:
Li Jiangtao is a researcher at the Institute of Physical Chemistry, Chinese Academy of Sciences, a doctoral supervisor, and the leader of the Functional Ceramic Materials Research Group; he also serves on the Inorganic Nonmetallic Materials Discipline Panel of the National Natural Science Foundation of China. 13、14 Member of the conference review panel. Main research areas include novel extreme manufacturing technologies based on hypergravity combustion synthesis, design, preparation, and energy-saving evaluation of infrared-radiating ceramic materials, and research on new combustion-synthesis processes for advanced ceramic materials.
Paper Introduction:
A paper by Professor Li Jiangtao’s research group was published in the Combustion synthesis of Si 2 N 2 O powder for photovoltaic silicon casting application 》In the Ceramics International » was published in, which is classified as a Q2 journal with an impact factor of 3.83 This paper was awarded third prize under our company’s paper award program.
Central Instruments:
The high-temperature contact-angle measurement system used in the paper by Professor Li Jiangtao’s research group was supplied by Tianjin Zhonghuan. The paper also specifically acknowledges Tianjin Zhonghuan Electric Furnace Co., Ltd., and we would like to express our gratitude for the professor’s recognition of Tianjin Zhonghuan’s instrumentation. Tianjin Zhonghuan will continue to support researchers in their scientific investigations and technological innovation.



Equipment Introduction:
The high-temperature contact angle tester is a specialized research instrument designed to investigate the variation patterns of contact angles between various molten materials and their corresponding substrates under high-temperature conditions. It enables the characterization of material surface and interface properties under high-temperature and high-vacuum environments. This instrument can provide visual and quantitative characterization of the shrinkage, deformation, melting, wetting, spreading, and solidification behaviors of low-melting-point materials during heating and cooling cycles.
For more product information, please visit the official website of Tianjin Zhonghuan Electric Furnace: http://www.ctjzh.com/
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