Spraying Ruthenium Iridium Liquid

Ultrasonic spraying machine spraying ruthenium iridium liquid: opening a new journey of efficient surface treatment

In the field of material surface treatment and functional coating preparation, ruthenium iridium liquid has become the core material for many key applications with its unique electrochemical properties and chemical stability. How to efficiently and accurately coat ruthenium iridium liquid on the target substrate is the key to exerting its performance advantages. Cheersonic’s ultrasonic sprayer, with advanced technology, has brought a new solution for the application of ruthenium iridium liquid.

Spraying Ruthenium Iridium Liquid - Ultrasonic Catalyst Coating

Ruthenium iridium liquid has excellent catalytic activity, corrosion resistance and conductivity, and is widely used in chlor-alkali industrial electrodes, water electrolysis hydrogen production electrodes, sewage treatment electrodes and other fields. Taking the chlor-alkali industry as an example, the ruthenium iridium coating on the electrode surface can significantly reduce the overpotential of the chlorine evolution reaction, improve the electrolysis efficiency, and effectively resist the corrosion of the electrolyte and extend the service life of the electrode. In the electrolysis of water to produce hydrogen, ruthenium iridium-based catalysts can accelerate the water decomposition reaction and improve the efficiency of hydrogen production. They are important materials for realizing clean energy conversion.

When dealing with ruthenium-iridium liquid, the traditional spraying method often faces problems such as uneven coating, difficult to accurately control thickness, and serious material waste. Cheersonic’s ultrasonic sprayer uses high-frequency vibration to atomize the ruthenium-iridium liquid into uniform, tiny particles, which can be accurately sprayed on the surface of the substrate. Whether it is a large-area flat electrode or a three-dimensional component with complex shape, it can achieve uniform coverage to form a coating with consistent thickness and good density. This uniform coating can not only give full play to the performance advantages of ruthenium-iridium liquid, but also avoid performance degradation caused by excessively thick or thin local coatings, ensuring the stability and reliability of devices such as electrodes.

In addition, the ultrasonic sprayer has a very high material utilization rate when spraying ruthenium-iridium liquid. Precise atomization and spraying control greatly reduces the splashing and loss of liquid and reduces production costs. For relatively expensive materials such as ruthenium-iridium, this advantage is particularly significant, which can effectively control the material cost in the production process. At the same time, the ultrasonic spraying process generates less waste gas and waste liquid, which conforms to the concept of green production and provides support for the sustainable development of enterprises.

In practical applications, ultrasonic spraying of ruthenium-iridium liquid has achieved good results in many fields. In sewage treatment equipment, electrodes coated with ruthenium-iridium coatings by this technology can efficiently catalyze the degradation of organic pollutants and improve sewage treatment efficiency; in the research and development of new energy batteries, the application of ruthenium-iridium coatings helps to improve the electrochemical properties of battery electrodes and improve battery charging and discharging efficiency and cycle life.

With the growing demand for high-performance materials and coatings in various industries, the technology of ultrasonic spraying of ruthenium-iridium liquid will continue to promote technological upgrading and industrial development in related fields with its advantages of high precision, high uniformity, and high material utilization, and inject new impetus into industrial production and green energy applications.

About Cheersonic

Cheersonic is the leading developer and manufacturer of ultrasonic coating systems for applying precise, thin film coatings to protect, strengthen or smooth surfaces on parts and components for the microelectronics/electronics, alternative energy, medical and industrial markets, including specialized glass applications in construction and automotive.

Our coating solutions are environmentally-friendly, efficient and highly reliable, and enable dramatic reductions in overspray, savings in raw material, water and energy usage and provide improved process repeatability, transfer efficiency, high uniformity and reduced emissions.

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