source:本站author:超级管理员time:2024-12-17views:90018
How to enhance the adhesion of material surfaces through plasma cleaning treatment in 3C electronic manufacturing? The application of plasma cleaning technology provides an effective solution for improving the adhesion of various material surfaces
With the continuous development of science and technology, electronic manufacturing is gradually becoming an important demand for global economic growth. In this process, the performance and quality of materials are also crucial for the reliability and competitiveness of electronic products. Among them, surface adhesion of materials is a key factor that directly affects the service life, performance, and appearance of materials. If exposed to polluted atmosphere, mixed with floating ash, oil stains, and impurities, the surface will gradually decrease. During chemical changes, oxygen-containing polar groups such as hydroxyl and carboxyl groups will be introduced into the shaker plasma cleaning machine for treatment.
In order to meet this demand, low-temperature plasma cleaning technology has emerged, which can effectively enhance the adhesion of material surfaces in electronic manufacturing, thereby improving the overall performance of products. Today, I will learn with the editor about the application of plasma cleaning technology in electronic manufacturing, in order to provide brief research and demonstrations for more related fields.
In a vacuum chamber, the effect of plasma can be adjusted at the nanometer level by adjusting the bombardment time of the plasma, so it will not damage the processed object to achieve the work purpose. Reactive plasma refers to the active particles generated in the plasma that can undergo chemical reactions with surfaces of materials that are difficult to adhere, thereby introducing a large number of polar groups. The addition of these polar groups changes the non-polar nature of the material surface, thereby increasing surface tension and enhancing the material's adhesiveness. The reactive plasma active gases are mainly oxygen/nitrogen, etc., which are difficult to adhere to the plastic surface under the bombardment of plasma, forming some active atoms, free radicals, and unsaturated bonds.
Low temperature plasma cleaning technology is a high-tech dry cleaning technology that generates high-energy ions through ionized gas, causing gas molecules or atoms to physically interact with the surface of the workpiece to form a uniform and dense coating. It has many advantages such as fast coating speed, high efficiency, good coating quality, and environmental friendliness without pollution. So it has been widely used in many fields, especially in electronic manufacturing.
What are the common application characteristics of low-temperature plasma cleaning technology in 3C electronic manufacturing?
On the market, most metal materials are the most common substrates in electronic manufacturing. In order to enhance the adhesion of metal surfaces, and due to their good conductivity, thermal conductivity, and mechanical properties, metal materials are widely used in various electronic components and structural parts. However, factors such as oxide layers and oil stains on the surface of metal materials can affect their adhesion to coatings, reducing the service life and performance of products. Through plasma cleaning technology, a uniform and dense ceramic coating can be formed on the surface of metal materials, which can quickly remove oxide layers and oil stains, improve the adhesion between the coating and the substrate, and thus extend the service life and performance of the product.
2. Plastic products are also widely used in electronic manufacturing, and how to improve the adhesion of plastic surfaces has become a problem that needs to be solved. Coincidentally, with the emergence of plasma technology, ceramic powder can be sprayed on plastic surfaces to form coatings with excellent wear resistance, corrosion resistance, and chemical corrosion resistance. After plasma cleaning technology treatment, the coatings can not only improve the hardness and wear resistance of plastic parts, but also enhance their resistance to ultraviolet radiation, oxidation, and arc corrosion, thus meeting the requirements of the process.
3. Electronic components are also one of the key materials in the electronic manufacturing industry. For example, optical glass often has weak adhesion, which indirectly affects the optical performance and mechanical strength of the product. Through plasma technology, a ceramic coating with high adhesion and excellent wear resistance can be generated on glass. This coating can effectively resist scratching, wear, and chemical corrosion, maintain glass smoothness and inductivity, thereby improving the optical performance and mechanical strength of the product.
In this era of pursuing quality, cleanliness has become a trend. Because the treatment of the shock plasma cleaning machine is manifested in chemical and physical changes. Physical changes refer to the modification and roughening of material surfaces, resulting in an increase in surface protrusions and surface area after etching.
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