TWM340416U - Reflective bowl for illumination lamp - Google Patents
Reflective bowl for illumination lamp Download PDFInfo
- Publication number
- TWM340416U TWM340416U TW097204361U TW97204361U TWM340416U TW M340416 U TWM340416 U TW M340416U TW 097204361 U TW097204361 U TW 097204361U TW 97204361 U TW97204361 U TW 97204361U TW M340416 U TWM340416 U TW M340416U
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- reflective
- lamp
- bowl
- light
- reflective bowl
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- Non-Portable Lighting Devices Or Systems Thereof (AREA)
Description
M340416 八、新型說明: 【新型所屬之技術領域】 本創作係有關一種照明燈的反光碗結構,特別是一種室内外照明燈具上使 用的光源反光結構。 Λ 【先前技術】 一般⑦見的照明燈裝置略係由燈具外殼、燈管、反光板以及相關配置的電 源導線等構件所組成,利用電源導線傳輸電源到燈管供給發光,然後使光線經 '由背光板的匯集反射到特定方向,以達到照明的效果;習知照明燈的反光板大 •都是採用具有平滑潔淨表面的素(白)色烤漆板或鍍鋁鏡面板,其中,素色烤漆板 具有成本低廉的優點,但是其反光效能不佳亦為眾所周知,而鑛銘鏡面板則在 歷經-段_間的使用後,會在表面產生氧化現象造成反射鏡面霧化,這結果議 會導致反光效能不佳缺失;事實上,依據許多具公信力的科學實驗結果統計, 目前一般以白色塗漆板或鋁鏡面板作為背光板的燈具,其用以產生光線的額定 功率中,大約只有一半的光能成為有效的照明光線,而另一半的光能都由背光 板構件吸收掉了,易言之採用習知背光板的燈具其照明效率約僅有50%左右; 前述照明效率不佳的結果不僅造成電能的浪費、用電成本高居不下,而且該等 背光板吸收光能後會將光能轉為熱量而蓄積在燈具内部的空間中,使安裝在内 的相關的電氣構件,例如燈泡、電源線和控制迴路等,在歷經長時間高熱作用 後而大幅降低使用壽命,導致燈具經常損壞,這現象特別是在使用會產生高熱 鲁的而瓦數燈泡時’例如傳統的熱炙燈泡或鹵素燈丨包,更為明顯。 【新型内容】 鑒於前述缺失’本創作提供一種照明燈的反光碗結構,其可提升燈具背光 板之對照明光源的匯集反射效能,並產生複數光源投射的效果,據以增益照明 效率,使被照明區更加明亮。 根據本創作,該反光碗係安裝於燈具外殼與光源之間,用以將照明光源之 光線匯集投射到一所欲的方向或位置,其具有一個可嵌裝於燈具外殼内部的構 型,通常其橫向截面係略呈圓弧狀之碗形或碟盤形狀,並開設有供作光源安裝 使用的貫穿孔,例如該貫穿孔係被開設在該反光碗體的底部或二側部位,此外, 令該反光碗内側表面為一具備有高鏡面品質的反光表面,且在該反光表面上設 5 M340416 有多數導光單元,使該反光碗的反光表面產生具備複數光源投射的效果,以增 益照明效果,該等導光早疋可以為在該反光表面凸起或凹入之弧面直條紋路、 弧面環形條紋或球面反光圓點,並令該等導光單元係相對於該燈具光源作為中 心地以輻射狀向外而佈設,亦即例如:該等球面反光圓點係以該光源為中心而 同心圓地佈設在該反光表面,或是該等弧面直條紋路、弧面環形條紋和球面反 光圓點係以光源為中心而向外地使該弧面或球面的半徑逐漸變大而佈設在該反 光表面。 . 該反光碗本體的材料可採用玻璃、塑膠薄板或金屬薄板一體成型製成。 而該反光碗的反光表面設有一金屬電鍍層,最好,該金屬電鍍層是選用如: 銘、辞、鉻或經等材料,以便形成一耐氧化的反光鑛層。。 鲁 此將於下文中加以說明本創作其他的目的,優點及顯著的特徵,熟習本技 術者熟讀文中的說明後實現本創作。可由在文中所附的申請專利範圍中經由實 現本創作,而瞭解本創作的目的及優點。 【實施方式】 如后附第一、二圖式所示,本創作第一實施例之照明燈反光碗結構i係略 呈一碗形或碟盤形狀,在碗體底部中央開設一貫穿孔12以供燈座13及燈泡14 伸設安裝,該反光碗本體的材料可採用玻璃、塑膠薄板或金屬薄板一體成型製 成,令該反光碗的内側表面為一具有高鏡面品質的反光表面,並於該表面設有 一金屬電鍍層,而該金屬電鍍層可以選用如:鋁、鋅、鉻或鋰等材料,以便形 _成一耐氧化的反光鍍層,此外,於該反光碗内側面設有多數向表面凸起的弧面 環形條紋15 ’該等弧面環形條紋係以該燈泡14為中心而同心圓地順沿該反光表 •面向外而佈設;據前述結構設置,該反光碗使用時在其反光表面上的各弧面環 形條紋15將會對燈泡14的光線產生導光效用,使每一弧面環形條紋均成為一 燈光投射源,利用該複數光源投射的效果以增益照明效率,達倍增照明效能的 目的。 再如第三圖式所示之第二實施例,該反光碗結構與前述第一實施例雷同, 其在碗體二側分別開設一貫穿孔16以供橫向設置的燈座及燈泡伸設安裝,於該 反光碗内側面之反光表面上亦設有多數向表面凸起的弧面直條紋路17,據此當 燈光照射時,在其反光表面上的各弧面直條紋路17會產生導光效用,使每一弧 面環形條紋均成為一燈光投射源,以達倍增照明的效能。 6 M340416 第四、五圖式所示者,本創作第三實施例之照明燈反光碗結構主要係於該 反光碗1内側之反光表面上設有多數向表面凸起的球面反光圓點18,且令該等 球面反光圓點1係以相對於該燈泡14為中心地以輻射狀地順沿該反光表面向外 而佈設;藉此,當燈光照射於該反光表面上的球面反光圓點18時,該等球面反 光圓點18的導光效用會使每一球面反光圓點均變成猶如一燈光投射源,從而造 就複數光源投射的效果,達增益照明效能的目的。 【圖式簡單說明】 第一圖係本創作第一實施例之橫向截面剖示圖; 第二圖係本創作第一實施例之外觀俯視圖; 第三圖係本創作第二實施例之橫向戴面剖示圖 第四圖本創作第三實施例之立體外觀圖;以及 第五圖本創作第三實施例之橫向戴面剖示圖。 貫穿孔12 燈泡14 貫穿孔16 球面反光圓點18 【主要元件符號說明】 反光碗1 燈座13 弧面環形條紋15 弧面直條紋路17M340416 VIII. New description: [New technical field] This creation is about the reflective bowl structure of a kind of lighting lamp, especially the light source reflecting structure used on indoor and outdoor lighting fixtures. Λ 【Prior Art】 Generally, the lighting device of 7 is composed of the lamp housing, the lamp tube, the reflector and the related power supply wires. The power supply wire is used to transmit power to the lamp to supply light, and then the light passes through ' Reflected by the collection of backlights to a specific direction to achieve the effect of illumination; the reflectors of conventional illumination lamps are large • all use plain (white) paint plates or aluminized mirror panels with smooth clean surfaces, among them, plain The paint board has the advantage of low cost, but its poor reflective performance is also well known, and the mineral mirror panel will cause oxidation on the surface after the use of the period-span _, which results in the assembly of the mirror surface. The lack of good reflective performance; in fact, according to the results of many credible scientific experiments, currently the white lacquered board or aluminum mirror panel is used as the backlight of the luminaire, which is about half of the rated power used to generate light. Light energy becomes effective illumination light, and the other half of the light energy is absorbed by the backlight panel member. It is easy to use conventional backlights. The lighting efficiency of the luminaire is only about 50%; the result of poor illumination efficiency not only causes waste of electric energy, but also the cost of electricity is high, and the backlights absorb light energy and convert the light energy into heat and accumulate in In the space inside the luminaire, related electrical components such as bulbs, power lines and control circuits are installed, which greatly reduce the service life after a long period of high heat, which causes the lamps to be damaged frequently. This phenomenon is especially used. It will be more pronounced when a high-calorie wattage bulb is produced, such as a traditional hot bulb or halogen bulb. [New content] In view of the aforementioned shortcomings, the present invention provides a reflective bowl structure of a lighting lamp, which can improve the collection and reflection performance of the backlight of the lamp and the effect of the projection of the plurality of light sources, and according to the gain of the illumination efficiency, The illuminated area is brighter. According to the present invention, the reflective bowl is mounted between the lamp housing and the light source for projecting the light source of the illumination source into a desired direction or position, and has a configuration that can be embedded in the interior of the lamp housing, usually The transverse cross-section is substantially in the shape of a bowl or a disk having an arc shape, and is provided with a through hole for mounting the light source. For example, the through hole is opened at the bottom or the two sides of the reflective bowl, and The inner surface of the reflective bowl is a reflective surface having a high specular quality, and 5 M340416 has a plurality of light guiding units on the reflective surface, so that the reflective surface of the reflective bowl has a multi-source projection effect to gain illumination. The effect that the light guiding can be a straight stripe road, a curved surface stripe or a spherical reflective dot which is convex or concave on the reflective surface, and the light guiding unit is opposite to the light source of the lamp. The central ground is arranged radially outwardly, that is, for example, the spherical reflective dots are concentrically arranged on the reflective surface centered on the light source, or the curved straight stripes The road, the arcuate annular stripe and the spherical reflective dot are arranged on the reflective surface such that the radius of the curved surface or the spherical surface gradually increases toward the light source. The material of the reflective bowl body can be integrally formed by using glass, plastic sheet or metal sheet. The reflective surface of the reflective bowl is provided with a metal plating layer. Preferably, the metal plating layer is made of materials such as: Ming, Ci, Chromium or the like to form an oxidation resistant reflective ore layer. . This will be explained below with respect to other purposes, advantages and salient features of the present invention, which will be realized by those skilled in the art after reading the description in the text. The purpose and advantages of the present work can be understood by implementing the present invention within the scope of the appended claims. [Embodiment] As shown in the first and second drawings, the lighting reflector structure i of the first embodiment of the present invention is slightly in the shape of a bowl or a dish, and a uniform perforation 12 is opened in the center of the bottom of the bowl. The lamp holder 13 and the bulb 14 are extended and installed. The material of the reflector body can be integrally formed by using a glass, a plastic sheet or a metal sheet, so that the inner surface of the reflector bowl is a reflective surface having a high mirror quality. The surface is provided with a metal plating layer, and the metal plating layer may be selected from materials such as aluminum, zinc, chromium or lithium to form an oxidation resistant reflective coating, and a multi-directional surface is provided on the inner side of the reflective bowl. Raised arcuate annular strips 15' are arcuately centered on the bulb 14 and are concentrically arranged along the reflective sheet • facing outward; according to the foregoing configuration, the reflective bowl is reflective during use Each arcuate annular stripe 15 on the surface will have a light guiding effect on the light of the bulb 14, so that each arcuate annular stripe becomes a light projection source, and the effect of the complex light source is used to gain illumination. Rate, doubling object of illumination efficiency. In another embodiment, as shown in the third embodiment, the reflective bowl structure is the same as the first embodiment. The two sides of the bowl respectively have a continuous through hole 16 for laterally disposed lamp holders and bulbs. On the reflective surface of the inner side of the reflective bowl, a plurality of arc-shaped straight stripe roads 17 which are convex toward the surface are also provided, and accordingly, when the light is irradiated, the curved straight stripe roads 17 on the reflective surface thereof will guide light. The utility model makes each arc surface ring stripe become a light projection source to multiply the illumination performance. 6 M340416 The fourth embodiment of the present invention, the illuminating reflector structure of the third embodiment is mainly provided on the reflective surface of the inner side of the reflective bowl 1 with a spherical reflective dot 18 which is convex toward the surface. And arranging the spherical reflective dots 1 so as to be radially outwardly along the reflective surface with respect to the bulb 14; thereby, when the light illuminates the spherical reflective dot 18 on the reflective surface At the same time, the light guiding effect of the spherical reflective dots 18 causes each spherical reflective dot to become a light projection source, thereby creating the effect of the complex light source projection and achieving the purpose of gain illumination performance. BRIEF DESCRIPTION OF THE DRAWINGS The first drawing is a transverse cross-sectional view of the first embodiment of the present creation; the second drawing is a top view of the first embodiment of the present creation; and the third drawing is the horizontal wearing of the second embodiment of the present creation. 4 is a perspective view of a third embodiment of the present creation; and a cross-sectional view of a third embodiment of the third embodiment of the present creation. Through hole 12 bulb 14 through hole 16 spherical reflective dot 18 [Major component symbol description] Reflective bowl 1 Lamp holder 13 Curved ring stripe 15 Curved straight stripe road 17
Claims (1)
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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TW097204361U TWM340416U (en) | 2008-03-14 | 2008-03-14 | Reflective bowl for illumination lamp |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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TW097204361U TWM340416U (en) | 2008-03-14 | 2008-03-14 | Reflective bowl for illumination lamp |
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TWM340416U true TWM340416U (en) | 2008-09-11 |
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Family Applications (1)
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TW097204361U TWM340416U (en) | 2008-03-14 | 2008-03-14 | Reflective bowl for illumination lamp |
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2008
- 2008-03-14 TW TW097204361U patent/TWM340416U/en not_active IP Right Cessation
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MM4K | Annulment or lapse of a utility model due to non-payment of fees |