一种双面显示的透明复合玻璃

By introducing a central front-back separation layer and a light-rotating material layer into transparent glass, and controlling the wavelength of light by using angles and coating layers, the technical challenge of double-sided display of transparent glass was solved, achieving independent display and enhanced impact resistance.

CN224510604UActive Publication Date: 2026-07-17母应雨

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
母应雨
Filing Date
2025-06-04
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing technologies struggle to achieve double-sided display while maintaining transparency and without affecting the display effect of the patterns on both sides.

Method used

By combining a central positive and negative separation layer with an optical rotation material layer, and controlling the wavelength of light through angle adjustment and coating thickness, optical signal separation is achieved, ensuring independent display on each side.

Benefits of technology

It enables independent display on both sides of the transparent glass, avoiding interference between patterns, enhancing the visual effect and improving the glass's impact resistance.

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Abstract

本实用新型公开了一种双面显示的透明复合玻璃,包括外玻璃保护层,所述外玻璃保护层的内部设置图案显示层以及中央正反分离层,图案显示层与所述中央正反分离层之间、所述中央正反分离层与另一侧图案显示层之间,均设置有另一图案显示层,所述图案显示层为旋光材料层,包括手性有机分子、有机高分子材料、1 / 2波片、1 / 4波片、PP薄膜或PC材料,其中BOPP薄膜或1 / 2波片为优选材料,所述图案显示层为镀膜层或反光薄膜层,且镀膜层包括氧化铝镀层,该双面显示的透明复合玻璃,通过中央正反分离层隔离两侧光学信号,避免正反图案相互干扰,同时保持玻璃整体透明特性,满足广告展示、工艺品等场景对通透感与双面信息独立呈现的需求。
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Claims

1. A transparent composite glass for double-sided display, comprising an outer glass protection layer (1), characterized in that: The outer glass protective layer (1) is provided with a pattern display layer (2) and a central front-back separation layer (3).

2. The double-sided display transparent composite glass according to claim 1, characterized in that: Another pattern display layer (2) is provided between the pattern display layer (2) and the central positive and negative separation layer (3), and between the central positive and negative separation layer (3) and the pattern display layer (2) on the other side.

3. The double-sided display transparent composite glass according to claim 1, characterized in that: The pattern display layer (2) is an optically active material layer, including chiral organic molecules, organic polymer materials, 1 / 2 wave plates, 1 / 4 wave plates, PP films or PC materials.

4. The double-sided display transparent composite glass according to claim 1, characterized in that: The pattern display layer (2) is a coating layer or a reflective film layer, and the coating layer includes an aluminum oxide coating layer, while the reflective film layer can produce a colorful dazzling effect.

5. The double-sided display transparent composite glass according to claim 1, characterized in that: The central positive and negative separation layer (3) is a linear polarizer. The angle between the optical axis of the pattern display layer (2) and the linear polarizer is 0° to 90°. The color depth of the displayed pattern is controlled by adjusting the angle, and the color depth is the largest when the angle is 45°.

6. The double-sided display transparent composite glass according to claim 1, characterized in that: The pattern display layer (2) generates light of different wavelengths by superimposing multiple optically rotating materials to achieve color pattern display, or adopts an LCD electronic liquid crystal layer to change the display pattern through circuit control, and the reflective pattern display layer (2) controls the wavelength of reflected light by the thickness of the coating layer.

7. The double-sided display transparent composite glass according to claim 1, characterized in that: The outer glass protective layer (1) is reinforced glass, which is used to improve the structural strength and impact resistance of the composite glass. The outer glass protective layer (1) and the pattern display layer (2), as well as the pattern display layer (2) and the central front and back separation layer (3), are all bonded and fixed by non-chiral polymer adhesive.