The Development Trend of Molybdenum Electrode Used in Glass Furnace

The development trend of molybdenum electrodes for glass furnaces in recent years mainly focuses on the following aspects:

Improve material purity and uniformity: The purity and uniformity of molybdenum electrodes have a significant impact on their performance and service life. With the advancement of material preparation and processing technology, the preparation of molybdenum electrodes with high purity and better uniformity has become a development trend.

Improve high temperature resistance: The operating temperature in glass furnaces is usually high, so molybdenum electrodes need to have good high temperature resistance. The future development trend will focus on improving the high temperature stability of molybdenum electrodes to adapt to higher temperatures and harsher working environments.

Improve corrosion resistance: There is a certain corrosive environment in the glass melting process, and the corrosion problem of the molybdenum electrode needs to be solved. The future development trend will be to make efforts to improve the corrosion resistance of molybdenum electrodes, and to improve the corrosion resistance of electrodes by using anti-corrosion coatings or improving alloy design.

Increase service life and reduce cost: The service life and cost of molybdenum electrodes are the focus of attention in the glass furnace industry. The future development trend will be to extend the service life of molybdenum electrodes, reduce the frequency of replacement, and reduce the cost of molybdenum electrodes through material optimization, process improvement and production efficiency improvement.

Improve production process and technology: With the continuous development of glass furnace technology, the production process and technology of molybdenum electrodes are also continuously improved. The future development trend will seek innovation in production process and technology to increase production efficiency, reduce cost and improve electrode performance.

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