Phosphor with compound paraboloid light collecting capability and preparation method thereof

A compound paraboloid and phosphor technology, which is applied in chemical instruments and methods, luminescent materials, lighting and heating equipment, etc., can solve the problems of miniaturization and integration of lamps, luminescent materials do not have the ability to gather light, and compound paraboloids can solve the problem of light collection Problems such as large size of the device, to achieve poor heat dissipation, offset the tensile stress, and reduce the volume of the lamp

Pending Publication Date: 2021-06-25
SHANGHAI AVIATION ELECTRIC
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In terms of light collection, the luminescent materials in traditional lamps do not have the light collection ability, and the light collection mainly uses a compound parabolic concentrator for concentrating light. However, the compound parabolic concentrator is bulky, causing troubles for the miniaturization and integration of lamps

Method used

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  • Phosphor with compound paraboloid light collecting capability and preparation method thereof
  • Phosphor with compound paraboloid light collecting capability and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0013] The selected CE: YAG fluorescent ceramic is a solid fluorescent conversion material, which is processed into an excitation light incident surface (simultaneously transmitted light output surface) as a planar polishing, and puts the material other face polishing, processes it into a parabolic surface. CE: YAG fluorescent ceramics is blue-ray excitation, so blue-raised blue-plated film plated in a planar polishing surface of solid fluorescent conversion material. The organosilane epidy was prepared by a sol gel method using a sol gel method, and SiO is plated in the epidural surface surface. 2 / Zro 2 The system is visible to the light repeat medium film, and the Al + Cu metal film is plated in the full transmissive medium, and the material surface is metimetiphassed on the basis of improving the reflection. The above material surface and shape match metal heat sink were welded using the solder prefabricated piece to achieve device-based binding. The device has a composite pa...

Embodiment 2

[0015] The selected CE: YAG fluorescent glass ceramic is a solid fluorescent conversion material, which is processed into an excitation light incident surface (simultaneous transmitted light output surface) as a planar polishing, and performs surface polishing materials on other faces, processes it into a parabolic surface. . CE: YAG fluorescent glass ceramic is blue-ray excited, so blue-raised blue-plated film plated in a solid fluorescent conversion material. The UV coated hard film was prepared by spraying method using spraying method, and SiO is plated in the epidural surface 2 / TiO 2 The system is visible to the light repeated diaphragm, and the Ag + Au metal film is plated in the full transition medium, and the surface metallization of the material is realized on the basis of improving the reflection. The above material surface and shape match metal heat sink were welded using the solder prefabricated piece to achieve device-based binding. The device has a composite parabol...

Embodiment 3

[0017] The selected CE: luyag mixed crystalline fluorescent ceramic is a solid fluorescent conversion material, which is processed into an excitation light injection surface (simultaneous transmitted light output surface) as a plane polishing, and polls the material other faces, and processes it into a class. paraboloid. CE: luyag mixed fluorescent ceramics is blue-ray excitation, so blue-raised blue-plated film plated in a solid fluorescent conversion material. The organosilane epidy was prepared by a sol gel method using a sol gel method, and SiO is plated in the epidural surface surface. 2 / HFO 2 The system is visible to the light repeat media membrane, and the Al + Au metal film externally plated in the full transmissive medium, and the surface metal is achieved on the basis of improving the reflection. The above material surface and shape match metal heat sink were welded using the solder prefabricated piece to achieve device-based binding. The device has a composite parabol...

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Abstract

The invention discloses a phosphor with compound paraboloid light collecting capability and a preparation method thereof. The phosphor comprises a solid fluorescence conversion material defined by a first surface and a second surface, wherein the first surface is a plane and is an exciting light incident surface, the second surface is one of a paraboloid, a paraboloid-like surface, a spherical surface and a free-form surface, and the first surface is plated with an antireflection film layer. According to the invention, output light can be homogenized, the heat dissipation capacity is excellent, and thephosphor has the compound paraboloid light collecting capacity, so that the phosphor meets the high-power illumination use requirement.

Description

Technical field [0001] The present invention relates to phosphors prepared, particularly, with composite parabolic surface collecting capacity and preparation methods thereof. Background technique [0002] High-power lighting fixtures heat dissipation, collective lighting is a very important key technique. [0003] In terms of heat dissipation, the light-emitting material is difficult to heat dissipation in the traditional design. Even if there is a heat sink, it is basically a flat contact heat, the contact area is small, the heat dissipation effect is high, and the actual operating temperature of the phosphor is high and uneven causing the phosphor heat to quench, or even fry. The heat dissipation of fluorescent materials in high-power lighting has become a key technique. The phosphor of the present invention has a parabolic surface, a parabolic surface, a spherical or free surface and a heat sink, a large contact area having excellent heat dissipation capability, and simultane...

Claims

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Application Information

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IPC IPC(8): C09K11/02C09K11/80F21V29/87
CPCC09K11/025C09K11/7774F21V29/87
Inventor 张攀德王红叶勇李东升曾庆兵王盛李春晖
Owner SHANGHAI AVIATION ELECTRIC
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