A kind of heavy-duty, anti-corrosive and flow coating with high-temperature resistance, is prepared based on the principle of biomimetic "lotus leaf effect", organic-inorganic hybridization, and modification by nano functional materials. Its main components include specially modified heat-resistant siloxane and other materials as main film-forming substrate, and nano modified pigments, fillers, and special additives, etc.
This product has been tested for long-term high-temperature and high-pressure resistance, and its performance is excellent. It fills the industry gap, and has been evaluated for significant anti-corrosion and drag reduction energy-saving effects.
This product has enormous social benefits and economic value for the development of China's heating industry. The details are as follows.
·Safety Protection
Protect the thermal pipeline, avoid continuous corrosion of the inner wall of the pipeline, prevent corrosion and perforation of the pipeline from causing a large amount of water loss or pipe explosion more severely, leading to significant economic losses and even casualties. Extend the safe operation and service life of the thermal pipelines.
·Drag Reduction and Energy Saving
The coating has a smooth surface, low surface energy, and excellent hydrophobicity, greatly reducing the frictional resistance between water and pipeline during transportation, and increasing the flow rate of the pipeline. At the same time, by effectively preventing corrosion products from scaling and increasing friction resistance due to surface roughness increase, it can reduce fouling in the heat exchanger, thereby improve heating and heat exchange efficiency, and reduce operating and maintenance costs.
·Construction and Cost Advantages
This technology product can be constructed and dried at room temperature, with high production efficiency, facilitating the coating construction and on-site welding repair of pipeline and pipe fitting companies, while greatly reducing the comprehensive application cost.
It is suitable for high-temperature resistance, anti-corrosion, and drag reduction of the internal surface of thermal pipelines, as well as for anti-corrosion protection of transportation pipelines and steel structures in industries such as petroleum, metallurgy, and chemical engineering in high-temperature acidic and alkaline environments.
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