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CN100356503C - Electronic energy-saving health-care fluoresent lamp - Google Patents

Electronic energy-saving health-care fluoresent lamp Download PDF

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Publication number
CN100356503C
CN100356503C CNB2004100355289A CN200410035528A CN100356503C CN 100356503 C CN100356503 C CN 100356503C CN B2004100355289 A CNB2004100355289 A CN B2004100355289A CN 200410035528 A CN200410035528 A CN 200410035528A CN 100356503 C CN100356503 C CN 100356503C
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CN
China
Prior art keywords
fluorescent
lamp
care
energy saving
present
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Expired - Fee Related
Application number
CNB2004100355289A
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Chinese (zh)
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CN1599022A (en
Inventor
于首成
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Individual
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Individual
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Priority to CNB2004100355289A priority Critical patent/CN100356503C/en
Publication of CN1599022A publication Critical patent/CN1599022A/en
Application granted granted Critical
Publication of CN100356503C publication Critical patent/CN100356503C/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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  • Vessels And Coating Films For Discharge Lamps (AREA)
  • Luminescent Compositions (AREA)
  • Glass Compositions (AREA)

Abstract

The present invention relates to an electronic energy saving and health care fluorescent lamp. An electronic ballast is used to drive a lamp tube. An ultraviolet transmitting glass tube is used as the lamp tube and the inner surface of the lamp tube is coated with fluorescent powder. The weight of the chemical components of the fluorescent power are between 15% and 18.8% of Sr, between 3.3% and 3.5% of Mg, between 15% and 17% of Al, between 30% and 35% of O, between 11% and 13% of Ce, between 5.30% and 7.35% of P, between 10.9% and 12.5% of Eu and between 3.20% and 5.0% of Sn. The sum of the percentage of each raw material component is equal to one hundred percent. The fluorescent powder producing medium wave ultraviolet rays (UV-B) of the present invention performs the function of high efficiency and energy saving of energy saving lamps as well as achieves the purpose of health care.

Description

Electronic fluorescent lamp
Technical field
The present invention relates to a kind of lighting or health care device field, specifically a kind of electronic fluorescent lamp.
Background technology
We know, ultraviolet ray is divided into long wave, and (code name is UV-A, and 320-380nm), (code name is UV-B to medium wave, and 280-320nm), (code name is UV-C to shortwave, 200-280nm) and vacuum (UV-D, 1-200nm) four wave bands.Ultraviolet B radiation has erythemal effect and health-care effect, be applicable to health care, have following effect: 297nm UV-B ultraviolet ray can promote the η-dehydrogenation ergot cholesterol in the skin to be converted into cholecalciferol, help the normal calcium phosphorus circulation of human body, especially children are had antirachitic effect; 300-320nm UV-B ultraviolet ray can increase the concentration of indoor oxygen molecule; The UV-B ultraviolet ray has to regulate to the human body vegetative nerve and is elected to be usefulness, with regard to body, this means protection its restoring force and sensitive usefulness, can improve people and toil on or the power of regeneration of body after being ill; The UV-B ultraviolet ray has certain positive impact to nervous system, internal system, the hematological system of human body.Straight pipe type fluorescence natural light tube and the special black light mercury lamp of 365nm thoroughly that health-care energy-saving light is only made by simple glass at present, but the former is because radiation intensity is low, the latter is owing to lack healthy ultraviolet ray, thereby limited their extensive uses aspect health-care physical therapy.Common energy-saving lamp adopts rare-earth trichromatic fluorescent powder with fluorescent material, is made up of rouge and powder, green powder, three kinds of powder of blue powder, and wavelength peak is respectively 611nm, 543nm, and 453nm can not play a role in health care to human body.
Summary of the invention
Technology to be solved by this invention is that body is in order to overcome above-mentioned the deficiencies in the prior art, provide a kind of function of the sunlamp that will keep healthy to combine effectively with electricity-saving lamp, produce the fluorescent material of ultraviolet B radiation (UV-B), both played the energy-efficient effect of electricity-saving lamp, reached the purpose of health care again.
The technical scheme that the present invention solves the problems of the technologies described above employing is: adopt electric ballast to drive fluorescent tube, fluorescent tube adopts the uviol pipe, inner surface is coated with fluorescent material, the weight of fluorescent material chemical composition is for containing: Sr15%-18.8%, Mg 3.3%-3.5%, Al l5%-17%, O 30%-35%, Ce 11%-13%, P5.30%-7.35%, Eu 10.9%-12.5%, Sn 3.20%-5.0%, each raw material components percentage sum equals absolutely.
The peak value of emitting phosphor spectrum of the present invention is that 320 each raw material components percentage sum equal absolutely, under the exciting of mercuryvapour, can launch stronger UV-B ultraviolet ray, can see through the ultraviolet B radiation (UV-B) useful as health care lamp lens pipe to human body, absorb all harmful short wave ultraviolets (UV-C) simultaneously, but also has the denominator of general electric light source glass, for example certain coefficient of linear expansion, make easy and certain metal sealing of glass, thermal stability, chemical stability height.
Embodiment
The invention will be further described below in conjunction with embodiment:
Embodiment 1: the present invention adopts electric ballast to drive fluorescent tube, fluorescent tube adopts the uviol pipe, inner surface is coated with fluorescent material, the fluorescent material chemical composition is: Sr 18.8%, Mg 3.5%, Al 17%, O 30%, Ce 11%, P 5.3%, Eu 10.9%, Sn 3.2%, B 0.3%, wherein B is an impurity, and the chemical composition of uviol pipe is: SiO 2, NaO, K 2O, B 2O 3, ZnO, CaO.Uviol of the present invention is higher to the purity requirement that primary raw material adapts to sand, because Fe 2+With Fe 3+Can obviously influence ultraviolet ray transmissivity, therefore the content of iron must be less than 0.02% in the batching.The purpose that the content of borax increases is in order to reduce the coefficient of linear expansion of glass, is that glass is easy to fusing, improves lamp behaviour simultaneously, improves the mechanical strength and the toughness of glass, strengthens chemical stability.Adding zinc white is in order to improve smooth surface and transparency, with the transmitance of Enhanced UV-B.Adding potassium and sodium is in order to absorb the harmful ultraviolet (UV)-C below the 280nm.The thickness of glass tube has certain influence to saturating medium ultraviolet optical property, and tube wall is thin more, saturating ultraviolet light performance stronger (in certain limit), but mechanical strength of considering and the breakage in the transportation, and the wall thickness of glass tube is decided to be 0.5-0.8nm.In the founding and produce of uviol, require the crucible iron-holder low, must be earlier before feeding intake with the glass " cleanings " of composition of the same race totally, in order to avoid impurity introducing glass.The container of all Sheng raw materials, the instrument that uses in the manufacturing process is all used aluminum, and bamboo or stainless steel is made.The maximum temperature of glass smelting is 1420 ℃.
Embodiment 2: the present invention adopts electric ballast to drive fluorescent tube, fluorescent tube adopts the uviol pipe, inner surface is coated with fluorescent material, and fluorescent material chemical raw material component (weight) is: Sr 15%, Mg 3.3%, Al 15%, O 30%, Ce11.8%, P 7.35%, Eu 12.5%, Sn 5%, B 0.05%.
Embodiment 3: the present invention adopts electric ballast to drive fluorescent tube, fluorescent tube adopts the uviol pipe, inner surface is coated with fluorescent material, and fluorescent material chemical raw material component (weight) is: Sr 15%, Mg 3.4%, Al 15%, O 35%, Ce 11%, P5.6%, Eu 11%, Sn 4%.
Embodiment 4: the present invention adopts electric ballast to drive fluorescent tube, fluorescent tube adopts the uviol pipe, inner surface is coated with fluorescent material, and fluorescent material chemical raw material component (weight) is: Sr 16%, Mg3.3%, Al 15.4%, O 32%, Ce 12%, P5.7%, Eu 11%, Sn 4.5%, B 0.1%.

Claims (1)

1. electronic fluorescent lamp, adopt electric ballast to drive fluorescent tube, fluorescent tube adopts the uviol pipe, inner surface is coated with fluorescent material, it is characterized in that: the weight of fluorescent material chemical composition is for containing: Sr 15%-18.8%, Mg 3.3%-3.5%, Al 15%-17%, O 30%-35%, Ce 11%-13%, P 5.30%-7.35%, Eu10.9%-12.5%, Sn 3.20%-5.0%, each raw material components percentage sum equals absolutely.
CNB2004100355289A 2004-08-06 2004-08-06 Electronic energy-saving health-care fluoresent lamp Expired - Fee Related CN100356503C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNB2004100355289A CN100356503C (en) 2004-08-06 2004-08-06 Electronic energy-saving health-care fluoresent lamp

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNB2004100355289A CN100356503C (en) 2004-08-06 2004-08-06 Electronic energy-saving health-care fluoresent lamp

Publications (2)

Publication Number Publication Date
CN1599022A CN1599022A (en) 2005-03-23
CN100356503C true CN100356503C (en) 2007-12-19

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CNB2004100355289A Expired - Fee Related CN100356503C (en) 2004-08-06 2004-08-06 Electronic energy-saving health-care fluoresent lamp

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CN (1) CN100356503C (en)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1854242B (en) * 2005-04-26 2012-08-29 李其灵 Total spectral energy-saving light

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0950786A (en) * 1995-05-29 1997-02-18 Nichia Chem Ind Ltd Phosphorescent lamp
CN1175616A (en) * 1996-09-04 1998-03-11 北京电力电子新技术研究开发中心 Jade green rare-earth fluorescent powder and preparing method thereof
CN1175618A (en) * 1996-09-04 1998-03-11 北京电力电子新技术研究开发中心 Bright-red rare-earth fluorescent powder and preparing method thereof
CN1218083A (en) * 1997-11-21 1999-06-02 中国科学院长春应用化学研究所 Preparation of fluorescent powder for dysprosium ion activating high voltage mercury lamp
CN1233642A (en) * 1998-04-24 1999-11-03 中国科学院长春物理研究所 Red phosphor powder for high pressure mercury lamp
US6407498B1 (en) * 1998-11-18 2002-06-18 Koninklijke Philips Electronics N.V. Luminescent material comprising an alkaline earth borate
CN1455432A (en) * 2003-04-17 2003-11-12 威海市高升电子有限公司 Electronic energy-saving and health-care fluorescent lamp

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0950786A (en) * 1995-05-29 1997-02-18 Nichia Chem Ind Ltd Phosphorescent lamp
CN1175616A (en) * 1996-09-04 1998-03-11 北京电力电子新技术研究开发中心 Jade green rare-earth fluorescent powder and preparing method thereof
CN1175618A (en) * 1996-09-04 1998-03-11 北京电力电子新技术研究开发中心 Bright-red rare-earth fluorescent powder and preparing method thereof
CN1218083A (en) * 1997-11-21 1999-06-02 中国科学院长春应用化学研究所 Preparation of fluorescent powder for dysprosium ion activating high voltage mercury lamp
CN1233642A (en) * 1998-04-24 1999-11-03 中国科学院长春物理研究所 Red phosphor powder for high pressure mercury lamp
US6407498B1 (en) * 1998-11-18 2002-06-18 Koninklijke Philips Electronics N.V. Luminescent material comprising an alkaline earth borate
CN1455432A (en) * 2003-04-17 2003-11-12 威海市高升电子有限公司 Electronic energy-saving and health-care fluorescent lamp

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Granted publication date: 20071219

Termination date: 20110806