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Common problems with plasma surface treatment equipment

1. Processing time of plasma surface treatment equipment? The chemical modification on the polymer surface of plasma equipment is due to free radicals. The longer the plasma equipment is processed, the greater the discharge power will be. Therefore, it needs a good grasp. 2. What is the power of the plasma surface processor? The power of a common plasma device is about a thousand watts. 3. How long can I keep the products with the surface treatment of plasma processor? This is based on the material of the product itself. In order to avoid secondary pollution of the product, it is suggested that the next process can be carried out after the plasma surface treatment, which can effectively solve the problem of secondary pollution and improve the performance and quality of the product. 4. Will the plasma device produce harmful substances during use? There is no need to worry about this problem, because the plasma equipment has a full set of preventive measures when it is processed. It will be equipped with an exhaust system, and a small part of ozone will be ionized by the air, so it is not harmful to human body. The above problems are some common problems of plasma surface treatment equipment, so the manufacturers who buy and use plasma surface treatment equipment can rest assured to use, because it will not produce harmful substances in the process of treatment, it is this characteristic that the plasma equipment has achieved good results in the market.

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Plasma surface coating

Plasma surface coating is a process by which active groups are deposited on the surface of a material, allowing ordinary coatings to be applied to a wide variety of special materials. In addition according to the need to achieve the purpose of the selection of hydrophobic coating, hydrophilic coating, diffusion resistant coating, biocompatible coating, primer coating and so on, get a variety of wonderful results. Selective corrosion protection of electronic components and components against climate impacts is critical to the reliability of a wide range of products. Almost half of all defects in modern cars are caused by weather-related aging and corrosion damage to electronic components. Even at extreme temperatures, protection against moisture, chemicals and harmful gases is an essential prerequisite for avoiding such system failures. Currently, these requirements are met primarily through paint, resin, or gel (silicon) coatings. However, the application of these processes is laborious and time-consuming, and shows limitations in economic and environmental protection. Solvent-based coating systems commonly used are relatively thick and difficult to select coating areas. Depending on the specific type of protective coating, defects such as poor heat dissipation, moisture absorption, coating peeling off or sensor signal attenuation may also occur. High tolerance to environmental conditions: the new quality standards for components are coated in the required areas without affecting other sensitive areas to bring long-term stability to the adhesives. The plasma system has a small space footprint and can be integrated into the product's processing flow to maintain a process pattern that requires small processing cycles and short environmental protection when recycling materials.

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