Low-reflective laminated glass is a special type of glass with low reflective properties, usually consisting of two or more layers of glass sandwiched between one or more layers of a transparent polymer material (e.g. PVB, EVA, etc.). This type of glass has a range of desirable optical and physical properties and is therefore used in a wide range of applications in many fields.
Application Scenarios:
Construction industry: Low-reflection laminated glass is widely used in the construction industry for curtain walls, light roofs, doors, and windows. Due to its low reflection performance, it can reduce light pollution and improve indoor comfort and clarity of vision. At the same time, due to its good thermal and acoustic insulation properties, low-reflection laminated glass is also one of the ideal materials for energy-saving buildings.
Transport industry: Low-reflective laminated glass is also widely used in windows and windscreens of transport vehicles. For example, the windows of high-speed rail, aircraft, automobiles, and other means of transport need to have high strength, impact resistance, weather resistance, etc, and also need to maintain good clarity of vision and low reflective properties. Low-reflective laminated glass can meet these requirements and provide safe and reliable protection.
Home furnishing industry: Low-reflective laminated glass is also widely used in the home furnishing industry. For example, glass panels for furniture, kitchen cooktops, bathroom mirrors, etc. all require the use of low-reflective laminated glass. This type of glass not only improves the aesthetics and practicality of the product but also provides better protection and safety performance.
Electronics industry: Low-reflective laminated glass is also widely used in electronic products, such as mobile phones, tablet PCs, TVs, and other product displays. This type of glass can provide high clarity, high light transmission, and low reflection display effects to improve the user's visual experience.
Why do I need to use low-reflection laminated glass?
The use of low-reflection laminated glass is necessary in some specific situations for the following reasons:
Reducing light pollution: In some situations, strong sunlight or artificial light sources can produce glare and reflected light, affecting vision and comfort. The use of low-reflective laminated glass can effectively reduce light reflection and glare, improving sight clarity and comfort.
Improved indoor comfort: The use of low-reflective laminated glass in windows, light roofs, and other areas of a building can improve indoor comfort by reducing glare and overheating. At the same time, such glass can also effectively insulate heat and sound, further enhancing the energy-saving performance of the building.
Improved safety: The use of low-reflective laminated glass improves safety in applications where high strength and impact resistance are required, such as windows and windscreens in vehicles and curtain walls in high-rise buildings. The high strength and impact resistance of this glass can effectively protect passengers and buildings.
Improve product performance: In some electronic products that require high clarity, high light transmission, and low reflection, such as mobile phones, tablet PCs, and other product displays, the use of low-reflective laminated glass can improve the product's display effect and user experience. At the same time, this kind of glass can also improve the scratch and impact resistance of the product, prolonging the service life of the product.
In summary, low-reflective laminated glass has a wide range of applications in many fields, especially in some specific occasions, such as windows and light roofs of buildings, windows, and windscreens of vehicles, and displays of electronic products. The use of low-reflective laminated glass can effectively improve the clarity of vision, indoor comfort, safety performance, and product performance. With the continuous progress of technology and application demand, the application prospect of low-reflection laminated glass will be broader.