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High-contrast transparent projection display screen and manufacturing method thereof

A projection display and screen technology, applied in optics, instruments, projection devices, etc., can solve problems such as the popularization of unfavorable anti-ambient light display screens, increase the cost of display screens, etc., and achieve the effect of improving brightness, reducing reflection, and improving display effects.

Pending Publication Date: 2018-10-23
江苏坦能纳米材料科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, most of the anti-environmental light display screens it provides require the construction of precise microstructures on the display screen, and the coating of light-absorbing agents or light-reflecting agents on both sides of the microstructures, which greatly increases the cost of the display screen and is not conducive to anti-environmental light. Popularity of optical display screens

Method used

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  • High-contrast transparent projection display screen and manufacturing method thereof
  • High-contrast transparent projection display screen and manufacturing method thereof
  • High-contrast transparent projection display screen and manufacturing method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0052] The structural schematic diagram of the projection display screen provided in this embodiment is shown in figure 2 , The projection display screen is composed of an imaging layer (3), a light absorbing layer (2) and an antireflection layer (1).

[0053] Wherein, the imaging layer is composed of imaging nanoparticles (6) with a plasmon resonance wavelength of 450nm, imaging nanoparticles (5) with a plasmon resonance wavelength of 560nm, and imaging nanoparticles with a plasmon resonance wavelength of 660nm (4) In the polymer film layer, the imaging nanoparticles are spherical silver nanoparticles.

[0054] The light-absorbing layer is a polymer film layer containing light-absorbing particles (9) with an absorption wavelength of 410 nm, light-absorbing particles (8) with an absorption wavelength of 505 nm, and light-absorbing particles (7) with an absorption wavelength of 610 nm, and the light-absorbing particles are in the shape of a sphere of silver nanoparticles.

...

Embodiment 2

[0072] The projection display screen provided in this embodiment is composed of an imaging layer, a light absorbing layer and an antireflection layer.

[0073] Wherein, the imaging layer is a polymer film layer containing imaging nanoparticles with a plasmon resonance wavelength of 450nm, imaging nanoparticles with a plasmon resonance wavelength of 560nm, and imaging nanoparticles with a plasmon resonance wavelength of 660nm, The imaging nanoparticles are triangular prism shaped silver nanoparticles.

[0074] The light-absorbing layer is a polymer film layer containing light-absorbing particles with a light-absorbing wavelength of 415nm, light-absorbing particles with a light-absorbing wavelength of 500nm, and light-absorbing particles with a light-absorbing wavelength of 605nm, and the light-absorbing particles are spherical silver nanoparticles.

[0075] The anti-reflection layer is a three-layer transparent film composed of magnesium fluoride film-silicon dioxide film-magne...

Embodiment 3

[0087] The projection display screen provided in this embodiment is composed of an imaging layer, a light absorbing layer and an antireflection layer.

[0088] Wherein, the imaging layer is a polymer film layer containing imaging nanoparticles with a plasmon resonance wavelength of 450nm, imaging nanoparticles with a plasmon resonance wavelength of 560nm, and imaging nanoparticles with a plasmon resonance wavelength of 660nm, The imaging nanoparticles are silver-coated silica nanoparticles.

[0089] The light-absorbing layer is a polymer film layer containing light-absorbing particles with a plasmon resonance wavelength of 435nm, light-absorbing particles with a plasmon resonance wavelength of 550nm, and light-absorbing particles with a plasmon resonance wavelength of 650nm. Silicon coated silver nanoparticles.

[0090] The anti-reflection layer is a 4-layer transparent film composed of magnesium fluoride film-silicon dioxide film-magnesium oxide film-tin indium oxide film. ...

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Abstract

The invention provides a high-contrast transparent projection display screen and a manufacturing method thereof. The projection display screen comprises an imaging layer, a light absorbing layer and an anti-reflection layer, wherein the light absorbing layer is located between the imaging layer and the anti-reflection layer. The projection display screen has high contrast, is flexible and foldable, and can be restored completely after bending and folding, and the display effects are not influenced. The projection display screen provided in the invention can be used for both front projection and back projection, and the obtained projection display screens can be seamlessly joined to form a display screen with an extra large size.

Description

technical field [0001] The invention belongs to the field of projection equipment, and relates to a projection display screen and a preparation method thereof, in particular to a high-contrast transparent projection display screen and a preparation method thereof. Background technique [0002] The transparent display screen can display images clearly without affecting the observation of things behind the screen. Transparent display screen technology is a rapidly developing technology and has been applied in many fields. Through transparent display screen technology, navigation information, instrument panel information, etc. can be displayed on the front glass of cars and fighter jets. While the driver obtains relevant information, it will not affect his observation of the front, which can improve driving safety. Combined with transparent display technology, ordinary glass walls and even glasses can also be turned into display screens for work or entertainment. Currently co...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G03B21/60B32B5/16B32B9/00B32B9/04B32B5/30
CPCG03B21/60B32B5/16B32B5/30B32B9/00B32B9/04B32B9/048
Inventor 张宇明
Owner 江苏坦能纳米材料科技有限公司
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