
The technological password of ultra white glass: the magic of low iron and high transparency
In modern architecture, electronic displays, and high-end homes, ultra white glass stands out with its crystal clear appearance and excellent performance. So, what kind of technological code is hidden behind this seemingly non-existent glass?
Ultra white glass, also known as low iron glass, has the core secret of "low iron content". Ordinary glass contains a high amount of iron oxide, which presents a green tone and affects transparency. Ultra white glass, by controlling the iron content in the raw materials, greatly reduces green impurities and presents a purer colorless state. The light transmittance can reach over 91%, which is much higher than the 82% of ordinary float glass.
In addition to the low iron formula, the manufacturing process of ultra white glass has extremely high requirements for the purity of raw materials, melting temperature, and forming technology. In order to achieve ultimate transparency, impurities and bubbles must be strictly controlled during the production process, and precise polishing and coating techniques must be used to enhance its UV resistance and anti reflection performance.
Ultra white glass is not only visually almost invisible, but also widely used in fields such as photovoltaic power generation, high-end displays, bulletproof glass, aquariums, etc. due to its high strength and good stability. It has even become an "invisible luxury" in museum display cabinets and luxury buildings.
It can be said that ultra white glass is the crystallization of technology and art. It may seem simple and transparent, but it embodies the wisdom of pursuing the ultimate in materials science and industrial manufacturing. It is a "magic glass" interwoven with low iron content and high transparency, providing more possibilities for future architecture and design.
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Contact person:Carrie Niu
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