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Research and development of cold rammed paste

The current development of cold rammed paste actually has its own characteristics, which have been developed through our research in recent years. During this period, we cannot forget the development status of cold rammed paste, because this has always been one of the knowledge points we advocate for. In our view, the research and development of cold rammed paste is actually what we are going to talk about today.


This article briefly introduces the basic knowledge of cold ramming paste for aluminum and provides a detailed summary of the work of researchers in this field. On this basis, combined with recent research from abroad, the main development direction of cold ramming paste in China is proposed. It is pointed out that only by adhering to independent research and development of high graphite cold ramming paste can we break the technological blockade imposed by foreign countries on China, improve the service life of China's aluminum electrolysis cells, and narrow the gap with international advanced levels.


Cathode cold ramming paste for aluminum is a ramming material for cathode carbon blocks at a construction temperature of 8 ℃~25 ℃. Due to the low construction temperature of cold ramming paste, it can be used directly at room temperature without heating. Therefore, it significantly improves the physical damage and environmental pollution caused by workers during construction. The industrial production of cold rammed paste has always been in the hands of developed countries such as the United States, France, Norway, etc. [1], and for a long time, they have implemented strict control over our country


Application of Cold Tamping Paste in Cathode Tamping of Self Baking Tank Abstract: The application of Cold Tamping Paste in Cathode Tamping of Self Baking Tank has a significant effect on saving tamping materials, stabilizing construction quality, increasing the service life of electrolytic cells, promoting energy conservation, consumption reduction, and increasing production efficiency in aluminum electrolysis production.