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Zulu Nov . 01, 2025 13:24
In our daily lives, glass is almost everywhere. From the curtain walls of skyscrapers to our home windows, from smartphone screens to car windshields, glass is an indispensable material in modern architecture and technological products. However, ordinary glass has many limitations in terms of optical performance, energy efficiency, and safety. To overcome these shortcomings, coated glass emerged. By applying one or more layers of special thin films to the glass surface, it significantly expands the boundaries of glass applications.
Coated glass, as the name suggests, is a special type of glass where a thin film (or multiple layers) of metal, metal compounds, or non-metallic materials is applied to its surface through physical or chemical methods. Although this film is extremely thin (typically only nanometers to micrometers thick), it can fundamentally alter the physical and chemical properties of the glass, endowing it with new functionalities it originally lacked.
The core principle of coated glass lies in utilizing the interference effects and selective transmission characteristics of thin films. For example, by precisely controlling the thickness and material of the film, specific wavelengths of light (like visible light) can be transmitted, while others (like infrared rays) can be reflected or absorbed, thereby achieving goals such as energy saving and light control.
The manufacturing process for coated glass is precise and complex, primarily divided into two categories: Online Coating and Offline Coating.
This method is performed at the end of the float glass production line while the glass is still at a high temperature (around 600°C).
This coating process is carried out in independent vacuum chambers after the production of the base glass sheet is complete. Most mainstream energy-saving glass (like Low-E glass) uses this method.
III. Applications: How Coated Glass is Changing Our Lives?
Thanks to its diverse properties, coated glass is widely used in various fields.
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