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Electronic energy-saving and health-care fluorescent lamp

A technology for fluorescent lamps and health care, which is applied to parts, luminescent materials, chemical instruments and methods of gas discharge lamps, etc. It can solve the problems of lack of ultraviolet rays, low radiation intensity, and restrictions on wide application, and achieve high chemical stability.

Inactive Publication Date: 2003-11-12
威海市高升电子有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Health energy-saving lamps currently only have straight tube fluorescent solar tubes made of ordinary glass and black light mercury lamps with 365nm penetration. However, the former has low radiation intensity and the latter lacks healthy ultraviolet rays, which limits their use in health care and physical therapy. wide application of
The phosphor powder for ordinary energy-saving lamps uses rare earth three-color phosphor powder, which is composed of red powder, green powder, and blue powder. The peak wavelengths are 611nm, 543nm, and 453nm.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0007] Embodiment 1: The present invention adopts the electronic ballast to drive the lamp tube, and the lamp tube adopts a transparent purple glass tube, and the inner surface is coated with fluorescent powder, and the chemical raw material components (weight) of the fluorescent powder are: Sr 18.93%, Mg 3.15%, Al 19.4 %, O 29.6%, Ce 11.22%, P 4.23%, B 0.15%, Eu 10.44%, Sn 2.88%; the chemical raw material composition (weight) of the transparent purple glass tube is: SiO 2 72%, Na 2 O 6.7%, K 2 O 10.3%, B 2 o 3 3.5%, ZnO 3.8%, CaO 3.7%. Violet glass of the present invention has higher requirements on the purity of main raw material quartz sand, because Fe 2+ with Fe 3+ Will significantly affect the UV transmittance, so the content of iron in the ingredients must be less than 0.02%. The purpose of increasing the content of borax is to reduce the linear expansion coefficient of the glass, make the glass easy to melt, improve the performance of the lamp, improve the mecha...

Embodiment 2

[0008] Embodiment 2: The present invention adopts the electronic ballast to drive the lamp tube, and the lamp tube adopts a transparent purple glass tube, and the inner surface is coated with fluorescent powder, and the chemical raw material components (weight) of the fluorescent powder are: Sr 24.71%, Mg 3.32%, Al 18.4 %, O 28.27%, Ce 10.22%, P 3.23%, B 0.25%, Eu 8.5%, Sn 3.1%; the chemical raw material composition (weight) of the transparent purple glass tube is: SiO 2 73%, Na 2 O 6.9%, K 2 O 9.7%, B 2 o 3 3.1%, ZnO 4.0%, CaO 3.3%.

Embodiment 3

[0009] Embodiment 3: The present invention adopts the electronic ballast to drive the lamp tube, and the lamp tube adopts a transparent purple glass tube, and the inner surface is coated with fluorescent powder, and the chemical raw material components (weight) of the fluorescent powder are: Sr 20.88%, Mg 3.2%, Al20. 7%, O 28.3%, Ce 10.3%, P 5.38%, B 0.2%, Eu7.91%, Sn 3.13%; the chemical raw material composition (weight) of the transparent purple glass tube is: SiO 2 72%, Na 2 O 7.1%, K 2 O 9.9%, B 2 o 3 3.4%, ZnO 4.1%, CaO 3.5%. .

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PUM

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Abstract

The fluorescent lamp uses the electronic ballast. The vitaglass tube is utilized for the lamp tube. fluoresent powder material is coated on the inner surface. The constituent of fluoresent powder chemical material is as following (weight): Sr 18.93%-24.71%, Mg 3.15%-3.32%, Al 17.4%-24.36%, O 26.6%-30.22%, Ce 8.22%-11.50% etc. The constituent of chemical material of the vitaglass tube is as following (weight): SiO2 72%-73%, Na2O 6.7%-7.3%, K2O 9.7%-10.3%, B2O3 3.1%-3.5% etc.

Description

technical field [0001] The invention relates to the field of lighting fixtures or health care appliances, in particular to an electronic energy-saving health care fluorescent lamp. Background technique [0002] We know that ultraviolet rays are divided into long-wave (code-named UV-A, 320-380nm), medium-wave (code-named UV-B, 280-320nm), short-wave (code-named UV-C, 200-280nm) and vacuum (UV- D, 1-220nm) four bands. Ultraviolet medium wave has erythema effect and health care effect. It is suitable for medical care and has the following effects: 297nm UV-B ultraviolet rays can promote the conversion of η-dehydroergot cholesterol in the skin into vitamin D3, which is beneficial to the normal calcium and phosphorus circulation of the human body, especially It has anti-rickets effect on children; 300-320nm UV-B ultraviolet rays can increase the concentration of oxygen molecules in the room; UV-B ultraviolet rays have a regulating effect on the autonomic nervous system of the hu...

Claims

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Application Information

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IPC IPC(8): C03C17/00C03C17/23
CPCC03C17/23C03C17/003C03C2217/23C03C2218/17
Inventor 于首成姚桂波姜志强孙永新
Owner 威海市高升电子有限公司
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