Zhang Shuhua: Science and Technology Innovation is the Key to the Promotion of Tannery Industry
Technological innovation is the key to the improvement of the tanning industry. In fact, in the entire leather industry chain, the technical content of tanning is relatively high, and the dependence on science and technology is also high. How to break this problem of pollution control? President Zhang Shuhua pointed out that during the "12th Five-Year Plan" period, technological innovation will become the key point for the improvement of the tanning industry. The specific performance in the improvement of tanning and clean production technology is not a technical issue in a certain part, but it should reflect system integration technology innovation, in which the progress of leather chemicals and leather machinery will promote the progress of tanning and clean technology and the research and development of new products. The key role and improvement of pollution control technologies, especially the treatment technologies of ammonia nitrogen and total nitrogen, are the key points.
The shift of industrial transfer from disorder to regulation At the meeting, Zhang Ting, director of the tanning industry, is also an important method for the future development of the tanning industry, and is also an advanced experience in the development of the international leather industry. . During the “Twelfth Five-Year Plan†period, 5-8 well-developed and comprehensive tanning production bases will be formed in areas where conditions permit, and the transfer of tanning industry will shift from spontaneous disorder to orderly order, which is also a new development in the industry. The important features.
Boride-based powders are commonly used in thermal spray applications due to their high hardness, wear resistance, and thermal stability. Some commonly used boride powders for thermal spray include:
1. Boron Carbide (B4C): Boron carbide is one of the hardest materials known, making it ideal for applications requiring high wear resistance. It also has excellent chemical resistance and thermal stability.
2. Titanium Diboride (TiB2): Titanium diboride offers a combination of high hardness, excellent wear resistance, and good thermal conductivity. It is often used in applications where both wear and heat resistance are required.
3. Tungsten Boride (WB): Tungsten boride powders have high hardness, excellent wear resistance, and good thermal stability. They are commonly used in thermal spray applications for their ability to withstand high temperatures and resist wear.
4. Chromium Boride (CrB2): Chromium boride powders offer high hardness, wear resistance, and good thermal stability. They are often used in thermal spray coatings for applications requiring resistance to abrasion and erosion.
These boride-based powders can be used in various thermal spray processes such as plasma spraying, high-velocity oxy-fuel (HVOF) spraying, and detonation gun spraying to provide protective coatings on surfaces that require enhanced wear resistance and thermal protection.
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