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Thermal Analysis Series
Joule Heat Rapid-Firing Furnace
High-Temperature Water-Oxygen Corrosion Testing Series
Box-Type Electric Furnace Series
Tubular Electric Furnace Series
Vacuum Brazing Furnace
Degreasing furnace
Automatic Feeding Rotary Sintering Furnace
Industrial Furnace Series
Non-standard customization
Paper Award – Contact Angle
Paper Award – Deformation Instrument
Paper Award – PECVD
Paper Award – Water-Oxygen Corrosion
Paper Award—Warm Congratulations to Professor Xu Yibiao of Wuhan University of Science and Technology for Publishing a Paper in an International Journal Using Our Company’s High-Temperature Contact Angle Tester
Professor Xu Yibiao’s paper, “Enhanced performance of free CaO impurity containing magnesia with Al2O3–TiO2 composite powder,” has been published in Ceramics International, a journal classified in the second quartile with an impact factor of 5.532. The paper was awarded third prize under our company’s Paper Award Program.
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Paper Award—Warm Congratulations to Professor Li Na’s Research Group on the Publication of a Paper in an International Journal Using Our Company’s PECVD System
The paper “Plasma-Promoted Surface-Regulation of A Novel Integrative Carbon Network For Boosting the Rate and Cycle Capability of Sodium-Ion Storage,” authored by Professor Li Na’s research group at Guangdong University of Technology, has been published in Carbon, a top-tier journal with an impact factor of 9.594. This paper was awarded the First Prize under our company’s Paper Award Program.
Paper Award—Warm Congratulations to Professor Li Yawei’s Research Group on the Publication of a Paper in an International Journal Using Our Company’s High-Temperature Contact Angle Tester
The paper “Wettability and Infiltration of Si Melt on SiO2–Si3N4 Composite Ceramic,” authored by Professor Li Yawei’s research group, has been published in the Journal of the European Ceramic Society, a journal classified in Q2 with an impact factor of 5.302. This paper was awarded third prize under our company’s Paper Award Program.
Paper Award—Warm Congratulations to Professor Zhou Yanchun’s Research Group and Professor Liu Jiachen’s Research Group at Tianjin University on Their Joint Publication in an International Journal
The paper “High entropy (Yb0.25Y0.25Lu0.25Er0.25)2SiO5 with strong anisotropy in thermal expansion,” jointly authored by Professor Zhou Yanchun’s research group and Professor Liu Jiachen’s research group at Tianjin University, has been published in the Journal of Materials Science & Technology, which is classified as a Zone 1 journal with an impact factor of 5.04. This paper was awarded the Second Prize under our company’s Paper Award Program.
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
The research group led by Professor Li Jiangtao has published a paper titled “Combustion Synthesis of Si2N2O Powder for Photovoltaic Silicon Casting Application” in Ceramics International, a journal classified in the second quartile with an impact factor of 3.83. This paper was awarded third prize under our company’s Paper Award Program.
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2024 Thesis Incentive Program | Research Support from Tianjin Zhonghuan Electric Furnace Co., Ltd.
To encourage researchers in universities, research institutes, and enterprises engaged in experimental testing to leverage the instruments of Tianjin Zhonghuan Electric Furnace Co., Ltd. for scientific research and technological innovation, and in line with the vision of fostering a leap forward in science and technology, Tianjin Zhonghuan Electric Furnace is launching a Research Support Program open to a broad user base.
What is the primary purpose of a high-temperature water-oxygen corrosion testing system?
The high-temperature water–oxygen corrosion testing system is primarily used to evaluate the corrosion behavior and performance of materials under conditions of elevated temperature, aqueous environments, and the presence of oxygen. This testing system can simulate the corrosive conditions that materials may encounter in real-world industrial settings, providing critical data to guide material selection, design, and optimization. The following is a detailed description of the system’s main applications and functions:
Operating Procedures and Precautions for Box-Type Resistance Furnaces
Operating Procedures and Precautions for Box-Type Resistance Furnaces I. Operating Procedures 1. Preparation Phase - Equipment Inspection: Prior to operation, first inspect the box-type resistance furnace to ensure that the outer casing is intact, that the power cord, control unit, and interior of the furnace chamber are free from damage or foreign objects, and that the furnace door seals properly. - Preheating Preparation: According to experimental or production requirements, set the appropriate heating temperature and holding time, and preheat the resistance furnace to a temperature slightly below the set point to minimize thermal shock. - Sample Placement: Use dedicated crucibles or containers to place the samples to be heated steadily inside the furnace chamber, taking care to avoid contact between samples to prevent contamination or uneven heat transfer.
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Introduction to the Function and Application Areas of Automatic Feed-and-Discharge Rotary Tube Furnaces
The automated charge-in/charge-out rotary tube furnace is a highly efficient, state-of-the-art heat-treatment system that combines the high-temperature, uniform heating capabilities of a rotary tube furnace with the operational convenience of an automated loading and unloading system. Featuring a dual-layer construction with a carbon-steel outer shell and an alumina-fiber inner lining, along with built-in cooling fans and three loading baskets, this furnace enables continuous material charging and discharging. It is suitable for a wide range of applications, including material sintering, coating deposition, enhancement of chemical reactions, heat treatment, and annealing.
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Maintenance, Servicing, and Troubleshooting Methods for Box-Type Electric Furnaces
Box-type electric furnaces are common heating equipment widely used in industrial processes such as heating, smelting, and drying. To ensure their reliable operation and extend their service life, regular maintenance and upkeep are essential. In addition, timely detection and elimination of faults are critical to prevent production interruptions and safety incidents caused by equipment malfunctions.