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How to prepare sapphire lenses

Time:2024-07-26

Sapphire lensesAs a high-performance optical material, it has been widely used in the field of optical products due to its physical and chemical properties. Its high transmittance, high hardness, high wear resistance, and good chemical stability have made it a leader in the field of optics. So, how is it carried out during the preparation process?

1、 Growth of Sapphire Crystals

The growth of sapphire crystals is a key step in the preparation of sapphire lenses, and commonly used methods for sapphire crystal growth include pulling and bubble forming. The pulling method involves adding a corresponding amount of solvent to the molten alumina to achieve supersaturation, resulting in the precipitation of sapphire crystals on the seed crystal. This method can grow high-quality sapphire single crystals, but it requires strict control of parameters such as temperature, concentration, and pulling speed. The bubble growth method is to grow sapphire crystals on the seed crystal by vapor deposition under high temperature and high pressure. This method has a fast growth rate and can produce large-sized sapphire crystals, but the crystal quality may be slightly inferior to the Czochralski method.

藍(lán)寶石鏡片

2、 Selection and pretreatment of sapphire material

Sapphire has the chemical formula Al ? O ∝ and is a single crystal of aluminum oxide. Before preparing sapphire lenses, it is necessary to select high-quality sapphire materials. These materials are usually rigorously screened and tested to ensure their high purity, complete crystal structure, and absence of cracks and impurities. After the material selection is completed, it is necessary to preprocess the sapphire raw material. This includes steps such as cleaning, cutting, and grinding. Cleaning is to remove oil stains and impurities from the surface of raw materials, ensuring the purity of subsequent processing. Cutting is the process of cutting large pieces of raw material into sizes suitable for subsequent processing. Grinding is to remove burrs and unevenness generated during the cutting process, making the surface of the raw material smoother.

3、 Processing and Polishing of Sapphire Crystals

The grown sapphire crystals need to undergo processing steps such as cutting, grinding, and polishing to prepare sapphire lenses that meet the requirements. Cutting is the process of cutting sapphire crystals into the desired shape and size, which requires high-precision cutting equipment and skilled operating techniques to ensure cutting accuracy and surface quality. Grinding is used to remove burrs and unevenness generated during the cutting process, making the surface of sapphire crystals smoother. During the grinding process, it is necessary to choose appropriate grinding materials and techniques to avoid damage to the sapphire crystal. Polishing can achieve high smoothness and transparency on the surface of sapphire lenses to meet the requirements of optical products. During the polishing process, it is necessary to use specialized polishing machines and polishing solutions, and strictly control parameters such as polishing time and pressure.

4、 Testing and Coating

After preparation, strict testing and coating treatment are required before it can be put into use. Testing mainly involves testing indicators such as transmittance, refractive index, hardness, wear resistance, etc. to ensure that they meet the requirements for use. Common testing methods include spectrophotometry, ellipsometer, microhardness tester, etc. Coating is to improve the performance and service life of sapphire lenses. Common coating materials include silicon dioxide, silicon nitride, titanium oxide, etc. After coating, it has better scratch resistance, wear resistance, and pollution resistance, while also improving its optical performance.

Sapphire has been widely used in the field of optical products due to its performance, and with the continuous development of technology, the application areas of sapphire lenses are also constantly expanding. Due to its high transmittance, hardness, and wear resistance, it is highly favored in fields such as smartphone cameras, smartwatches, VR/AR devices, etc.

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