WO2017008200A1 - 一种自动调温 led 高井灯 - Google Patents

一种自动调温 led 高井灯 Download PDF

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Publication number
WO2017008200A1
WO2017008200A1 PCT/CN2015/083762 CN2015083762W WO2017008200A1 WO 2017008200 A1 WO2017008200 A1 WO 2017008200A1 CN 2015083762 W CN2015083762 W CN 2015083762W WO 2017008200 A1 WO2017008200 A1 WO 2017008200A1
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WO
WIPO (PCT)
Prior art keywords
lamp
conducting plate
heat conducting
lamp holder
well
Prior art date
Application number
PCT/CN2015/083762
Other languages
English (en)
French (fr)
Inventor
陈传富
黄鹤鸣
Original Assignee
深圳市聚作照明股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳市聚作照明股份有限公司 filed Critical 深圳市聚作照明股份有限公司
Priority to PCT/CN2015/083762 priority Critical patent/WO2017008200A1/zh
Publication of WO2017008200A1 publication Critical patent/WO2017008200A1/zh

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V29/00Protecting lighting devices from thermal damage; Cooling or heating arrangements specially adapted for lighting devices or systems
    • F21V29/50Cooling arrangements
    • F21V29/60Cooling arrangements characterised by the use of a forced flow of gas, e.g. air
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V29/00Protecting lighting devices from thermal damage; Cooling or heating arrangements specially adapted for lighting devices or systems
    • F21V29/50Cooling arrangements
    • F21V29/60Cooling arrangements characterised by the use of a forced flow of gas, e.g. air
    • F21V29/67Cooling arrangements characterised by the use of a forced flow of gas, e.g. air characterised by the arrangement of fans
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V21/00Supporting, suspending, or attaching arrangements for lighting devices; Hand grips
    • F21V21/14Adjustable mountings

Definitions

  • the utility model relates to the technical field of lighting lamps, in particular to a self-regulating LED high-well lamp.
  • High-well lamps are used in addition to the various lighting lamps used in normal environments, as well as explosion-proof lamps and anti-corrosion lamps used in special environments, and high-well lamps for large-scale high-rise buildings.
  • high-well lamps are used more frequently, and they are also essential as a lighting fixture.
  • the high-well lamp assembly processing in the prior art is difficult, the lighting angle adjustment is inconvenient, the lighting performance is not good, the glare is easily generated, and the heat dissipation performance is poor, and the high well lamp temperature cannot be maintained in an appropriate range, which affects the service life of the high well lamp.
  • the purpose of the present invention is to provide an automatic temperature-adjusting LED high-well lamp with convenient light angle adjustment, which aims to solve the problem of inconvenient adjustment of the light angle of the high-well lamp in the prior art and poor lighting performance.
  • the present invention provides a self-regulating LED high-well lamp, comprising a translucent cover, an LED lamp, a lamp cover, a lamp holder, a lamp holder, a motor, a heat sink and a heat conducting plate, the top end of the lamp holder passing through the hinge shaft
  • the lamp holder is hinged, and a limiting component is disposed between the lamp holder and the lamp holder; the motor is fixed in a middle portion of the bottom end of the lamp holder, and a fan blade is disposed on an output shaft of the motor, the heat dissipation One end of the device is connected to the bottom end of the lamp holder, and the motor and the fan blade are received therein, and the other end of the heat sink is sleeved on the upper bottom surface of the heat conducting plate, and the upper bottom surface of the heat conducting plate is An exhaust duct is disposed between the lower bottom surface; an aluminum substrate is fixed on a lower bottom surface of the heat conducting plate, and the LED lamp is disposed at a low end of the lamp
  • the limit component includes:
  • a limiting hole is disposed on the lamp holder
  • an adjusting hole is disposed on the socket with the hinge shaft as a center, and a circle having a radius between the hinge shaft and the limiting hole is close to a circle of the top of the socket On the arc.
  • an upper bottom surface of the heat conducting plate is provided with an annular groove along a circumference, and the other end of the heat sink is engaged in the annular groove.
  • a central portion of the upper surface of the heat conducting plate is provided with a cylindrical groove, an air inlet of the exhaust pipe is located at the bottom of the cylindrical groove, and an air outlet of the exhaust pipe is located at the heat conduction The bottom edge of the lower bottom of the plate.
  • the exhaust duct is uniformly radiated to the circumference of the cross section of the heat conducting plate.
  • each of the exhaust ducts is electrically connected.
  • the lampshade is divided into two segments, wherein the first segment is adjacent to the lamp holder and has a cylindrical structure; and the second segment is away from the lamp holder and has a tapered structure.
  • the heat conducting plate has a cylindrical shape, and a cross section radius of the first segment of the lamp cover is the same as a cross sectional radius of the heat conducting plate.
  • a fastening bolt is threadedly connected to one end of the first end of the lamp cover adjacent to the second segment, and the fastening bolt is sequentially screwed with the lamp cover, the heat conducting plate and the heat sink.
  • the heat sink is a mesh cylindrical body with two ends of the mouth, and the outer wall of the heat sink is provided with integrally formed fins.
  • the utility model has the beneficial effects that: the lamp holder is fixed by the limiting structure, the light-emitting direction of the high-well lamp can be adjusted, and the heat generated by the LED lamp is transmitted to the heat sink through the heat-conducting plate.
  • the lampshade is made of high-purity aluminum material; the temperature of the airflow of the air outlet is detected by the temperature sensor, and the rotation speed of the motor can be automatically controlled to maintain the temperature of the high-well lamp in an appropriate range.
  • the lampshade is provided with an anodized layer and a polished layer to minimize glare in optimizing the illumination performance
  • the translucent cover is made of high borosilicate transparent tempered glass, and is dust-proof through the translucent cover. It is resistant to the impact of high-temperature energy, improving the stability and life of the LED lamp.
  • the device can be fixed only by fastening bolts, which is easy to assemble and disassemble, and improve processing efficiency.
  • FIG. 1 is a schematic cross-sectional structural view of an auto-temperature-regulating LED high-well lamp in a preferred embodiment of the present invention.
  • an auto-regulating LED high-well lamp including an aluminum substrate 1, a translucent cover 2, an LED lamp 3, a lamp cover 4, a fastening bolt 5, an air inlet hole 6,
  • the middle of the top end of the lamp holder 7 is an arc-shaped protruding structure, and the lamp holder 10 is connected to the top end of the arc-shaped protruding structure.
  • the middle portion of the top end of the lamp holder 7 is hinged to the lamp holder 10 via a hinge shaft 8, and a limit member (not shown) is disposed between the lamp holder 10 and the lamp holder 7.
  • the limit assembly secures the high well light by securing the light fixture 10 in place.
  • the limiting component comprises: a limiting hole (not shown), a limiting bolt 9 and an adjusting hole 11.
  • the limiting hole is disposed on a side of the lamp holder 10.
  • the limit hole is threaded to the limit bolt 9.
  • the limit bolt 9 is a limit bolt.
  • the cap of the limit pin 9 is provided with a silicone sleeve for easy manual operation.
  • the lamp holder 7 is centered on the hinge shaft 8 , and a plurality of adjustment holes 11 are evenly distributed around a circular arc of the circumference of the lamp holder 7 at a circumference where the distance between the hinge shaft 8 and the limit pin 9 is a radius. In order to rotate the lamp holder 10, and fix it to the adjusting hole 11 through the limiting pin 9 after being inserted into the limiting hole, the angle of the high-well lamp is adjusted.
  • the motor 12 is fixed to the middle of the bottom end of the lamp holder 7.
  • the fan 12 is disposed on the output shaft of the motor 12, and the fan 14 is rotated by the motor 12 to accelerate the flow of the airflow to dissipate heat from the high-well lamp.
  • One end of the heat sink 13 is connected to the bottom end of the socket 7, and the motor 12 and the blade 14 are housed therein.
  • the heat sink 13 is screwed to the lamp holder 7.
  • the heat sink 13 is a mesh cylindrical body with two ends.
  • the heat sink 13 is made of pure copper material, and the outer wall of the heat sink 13 is provided with integrally formed fins ( Not shown).
  • the other end of the heat sink 13 is sleeved on the upper bottom surface of the heat conducting plate 16.
  • the heat conducting plate 16 is cylindrical, and the upper bottom surface of the heat conducting plate 16 is provided with an annular groove along the circumference, and the other end of the heat sink 13 is engaged in the annular groove of the heat conducting plate 16 to fix the heat conducting plate 16.
  • An exhaust duct (not shown) is penetrated between the upper bottom surface and the lower bottom surface of the heat conducting plate 16.
  • a cylindrical recess is disposed in a middle portion of the upper bottom surface of the heat conducting plate 16
  • an air inlet 15 of the exhaust duct is located at a bottom of the cylindrical recess
  • an air outlet 17 of the exhaust duct is located under the heat conducting plate The periphery of the bottom surface.
  • the exhaust pipe is uniformly distributed with 3 to 8 strips circumferentially from the center of the cross section of the heat conducting plate 16, and each exhaust pipe is electrically connected.
  • the aluminum substrate 1 is fixed to the middle of the lower bottom surface of the heat conducting plate 16.
  • a plurality of LED lamps 3 are evenly distributed on the bottom end of the aluminum substrate 1, and the translucent cover 2 is fixed on the aluminum substrate 1 to cover the LED lamp 3, that is, on the outer circumference of the LED lamp 3.
  • the translucent cover 2 is made of high borosilicate transparent tempered glass, which is dust-proof through the translucent cover 2 and is resistant to high-temperature energy.
  • One end of the lamp cover 4 is sleeved at the lower end of the lamp holder 7, and the heat sink 13 and the heat conducting plate 16 are housed therein.
  • the lampshade 4 is made of high-purity aluminum material, and the lampshade 4 is anodized and polished to form an anodized polishing treatment layer. In the optimization of the lighting performance, the glare is minimized, and the lampshade 4 is divided into two segments, wherein the first segment is adjacent to the lamp holder 7 and has a cylindrical structure; the second segment is away from the lamp holder 7 and is a cone Shape structure. Moreover, the cylindrical structure (first section) of the lampshade 4 has the same cross-sectional radius as that of the heat conducting plate 16, which facilitates the tight connection of the heat conducting plate 16 to the lamp cover 4.
  • One end of the lampshade 4 is nested and latched on the notch of the lamp holder 7, and the first section of the lampshade 4 is provided with a plurality of air inlet holes 6, and the high-well lamp is dissipated through the air intake hole.
  • One end of the first section of the lampshade 4 near the second section is screwed with fastening bolts 5, and the fastening bolts 5 are evenly distributed on the outer ring of the lampshade 4, and the fastening bolts 5 are sequentially connected to the lampshade 4
  • the heat conducting plate 16 and the heat sink 13 are screwed together, and the lamp cover 4 and the heat conducting plate 16 are further fixed by the fastening bolts 5 to improve the stability of the device.
  • the inner side of the second section of the lampshade 4 is provided with a temperature sensor 18, the temperature of the airflow discharged from the air outlet 17 of the exhaust duct is detected by the temperature sensor 18, and the operating parameters of the motor 12 are adjusted to the high well.
  • the lamp is cooled quickly.
  • the working principle of the utility model is: fixing the high well lamp to the designated position through the lamp holder 10, and entering the lamp holder 7
  • the row rotates, and the lamp holder 7 is fixed by the limit bolt 9, the light direction of the high-well lamp can be adjusted, and the heat generated by the LED lamp 3 is transmitted to the heat sink 13 through the heat-conducting plate 16, and the heat sink 13 is made of pure copper material.
  • the outer ring of the heat sink 13 is provided with integrally formed fins, and is quickly dissipated by the heat sink 13; and is rotated by the motor 12, and is taken in from the air inlet hole 6, and the airflow is discharged through the air inlet port 15 to the air outlet port 17, and then discharged.
  • the lampshade 4 is made of high-purity aluminum material, and the lampshade 4 is anodized and polished. In the same way to optimize the lighting performance, the glare is minimized.
  • the translucent cover 2 is made of high borosilicate transparent tempered glass, which is dust-proof through the translucent cover 2, and withstands the impact of high-temperature energy, and enhances the LED lamp 3 Stability and longevity.

Landscapes

  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Non-Portable Lighting Devices Or Systems Thereof (AREA)
  • Arrangement Of Elements, Cooling, Sealing, Or The Like Of Lighting Devices (AREA)

Abstract

一种自动调温LED高井灯,包括灯座(7),所述灯座(7)的中部通过铰接轴(8)铰接设有灯架(10),所述灯座(7)的右侧中部固定有电机(12),所述电机(12)的外圈于灯座(7)上螺纹连接有散热器(13),所述散热器(13)的右端套接设有导热板(16),所述导热板(16)的左侧圆柱形槽上于导热板(16)的内部均匀设有若干通孔,通孔均与排气管导通连接,所述导热板(16)的右侧通过铝基板(1)设有LED灯(3),所述散热器(13)和导热板(16)的外圈于灯座的右侧套接设有灯罩。该自动调温LED高井灯结构稳定,易于组装和拆卸,散热性能好,角度调节方便,适用范围广。

Description

一种自动调温 LED高井灯 技术领域
[0001] 本实用新型涉及照明灯技术领域, 特别是涉及一种自动调温 LED高井灯。
背景技术
[0002] 高井灯除了在通常环境中使用的各种照明灯外, 还有特殊环境中使用的防爆灯 和防腐蚀灯, 还有高井灯用于一些大型高层建筑物。 在传统生产作业中, 高井 灯使用较为频繁, 其作为一种照明器具, 也是必不可少的。 现有技术中的高井 灯组装加工困难, 出光角度调节不便, 照明性能不佳, 容易产生炫光, 且散热 性能差, 无法将高井灯温度维持在适宜的范围, 影响高井灯的使用寿命。
技术问题
[0003] 本实用新型目的在于提供一种光角度调节方便的自动调温 LED高井灯, 旨在解 决现有技术中的高井灯出光角度调节不便, 照明性能不佳的问题。
问题的解决方案
技术解决方案
[0004] 本实用新型提供了一种自动调温 LED高井灯, 包括透光罩、 LED灯、 灯罩、 灯 座、 灯架、 电机、 散热器和导热板, 所述灯座的顶端通过铰接轴铰接所述灯架 , 所述灯架与所述灯座之间设有限位组件; 所述灯座的底端中部固定所述电机 , 所述电机的输出轴上设有扇叶, 所述散热器的一端与所述灯座的底端连接并 将所述电机和扇叶收容在内, 所述散热器的另一端套接于所述导热板的上底面 , 所述导热板的上底面与下底面之间贯通有排气管道; 所述导热板的下底面固 定有铝基板, 所述铝基板的低端设有若干所述 LED灯, 所述透光罩固定于所述 铝基板上将所述 LED灯包覆在内; 所述灯罩一端套接于所述灯座的低端并将所述 散热器和导热板收容在内, 且所述灯罩与靠近所述灯座的一端设有若干进气孔 , 所述灯罩于远离所述灯座的另一端内侧设有温度传感器。
[0005] 进一步地, 所述灯座的顶端中部为弧形凸出结构, 所述灯架接设于所述弧形凸 出结构的顶端。 [0006] 进一步地, 所述限位组件包括:
[0007] 限位孔, 设于所述灯架的上;
[0008] 限位栓, 可插接于上所述限位孔;
[0009] 调节孔, 幵设于所述灯座上以所述铰接轴为圆心, 以所述铰接轴和限位孔之间 的距离为半径所处的圆周靠近所述灯座顶端的一段圆弧上。
[0010] 进一步地, 所述导热板的上底面沿周缘设有环形凹槽, 所述散热器的另一端卡 接于所述环形凹槽内。
[0011] 进一步地, 所述导热板的上底面中部设有柱形凹槽, 所述排气管道的入气口位 于所述柱形凹槽底部, 所述排气管道的出气口位于所述导热板的下底面周缘。
[0012] 进一步地, 所述排气管道以所述导热板的横截面圆心向圆周均匀辐射分布有 3
〜8条, 各个所述排气管道之间均导通连接。
[0013] 进一步地, 所述灯罩分为两段, 其中第一段靠近所述灯座, 为圆柱形结构; 第 二段远离所述灯座, 为锥形结构。
[0014] 进一步地, 所述导热板为圆柱形, 所述灯罩的第一段的横截面半径与所述导热 板的横截面半径相同。
[0015] 进一步地, 所述灯罩的第一端上靠近第二段的一端螺纹连接有紧固螺栓, 所述 紧固螺栓依次与所述灯罩、 导热板和散热器螺纹连接。
[0016] 进一步地, 所述散热器为两端幵口的网状圆柱形筒体, 且所述散热器的外壁设 有一体成型的鰭片。
发明的有益效果
有益效果
[0017] 与现有技术相比, 本实用新型的有益效果是: 通过限位结构对灯座进行固定, 可以调节高井灯的出光方向, 通过导热板将 LED灯产生的热量传递给散热器进行 快速散热, 且通过电机转动, 从进气孔进气, 气流通过排气管道后排出, 加速 气流流动, 提升散热效果, 并且从导热板的下底面外圈排出高热气流, 可以避 免灯罩的内壁累积灰尘, 灯罩采用高纯铝材料制成; 通过温度传感器对出气孔 的气流温度进行检测, 可以自动控制电机的转速, 以使得高井灯的温度维持在 适宜的范围。 [0018] 此外, 灯罩设有经阳极氧化层和抛光处理层, 在优化照明性能的同吋将炫光减 至最少, 透光罩采用高硼硅透明钢化玻璃, 通过透光罩进行防尘, 且耐受高温 能量的冲击, 提升 LED灯的稳定性和寿命, 此外, 仅通过紧固螺栓即可对装置进 行固定, 易于组装和拆卸, 提升加工效率。
对附图的简要说明
附图说明
[0019] 图 1为本实用新型较佳实施例中自动调温 LED高井灯的截面结构示意图。
本发明的实施方式
[0020] 为了使本实用新型要解决的技术问题、 技术方案及有益效果更加清楚明白, 以 下结合附图及实施例, 对本实用新型进行进一步详细说明。 应当理解, 此处所 描述的具体实施例仅仅用以解释本实用新型, 并不用于限定本实用新型。
[0021] 请参阅图 1, 本实用新型较佳实施例中自动调温 LED高井灯, 包括铝基板 1、 透 光罩 2、 LED灯 3、 灯罩 4、 紧固螺栓 5、 进气孔 6、 灯座 7、 铰接轴 8、 限位栓 9、 灯 架 10、 调节孔 11、 电机 12、 散热器 13、 扇叶 14、 入气口 15、 导热板 16、 出气口 1 7和温度传感器 18。
[0022] 所述灯座 7的顶端中部为弧形凸出结构, 所述灯架 10接设于所述弧形凸出结构 的顶端。 灯座 7的顶端中部通过铰接轴 8铰接灯架 10, 所述灯架 10与所述灯座 7之 间设有限位组件 (图未示) 。 限位组件将灯架 10固定于适当位置即可对高井灯 进行固定。
[0023] 限位组件包括: 限位孔 (图未示) 、 限位栓 9和调节孔 11。 所述限位孔设于灯 架 10的侧面上。 限位孔上螺纹连接有限位栓 9。 限位栓 9为限位螺栓。 限位栓 9的 螺帽上设有硅胶套, 便于人手操作。 所述灯座 7上以铰接轴 8为圆心, 以铰接轴 8 和限位栓 9之间的距离为半径所处的圆周靠近所述灯座 7顶端的一段圆弧均匀分 布有若干调节孔 11, 以便于对灯架 10进行转动, 并通过限位栓 9插接在限位孔后 固定于调节孔 11上, 对高井灯的角度进行调节。
[0024] 电机 12固定于所述灯座 7的底端中部, 电机 12的输出轴上设有扇叶 14, 通过电 机 12带动扇叶 14转动, 以加速气流流动, 对高井灯进行散热。 [0025] 散热器 13的一端与所述灯座 7的底端连接并将所述电机 12和扇叶 14收容在内。 散热器 13灯座 7上螺纹连接, 散热器 13为两端幵口的网状圆柱形筒体, 散热器 13 采用纯铜材料制成, 且散热器 13的外壁设有一体成型的鰭片 (未示出) 。
[0026] 散热器 13的另一端套接于导热板 16的上底面。 所述导热板 16为圆柱形, 导热板 16的上底面沿周缘设有环形凹槽, 将散热器 13的另一端卡接于导热板 16的环形 凹槽内, 以对导热板 16进行固定。
[0027] 导热板 16的上底面与下底面之间贯通有排气管道 (未示出) 。 所述导热板 16的 上底面中部设有柱形凹槽, 所述排气管道的入气口 15位于所述柱形凹槽底部, 所述排气管道的出气口 17位于所述导热板的下底面周缘。 排气管道以导热板 16 的横截面圆心向圆周均匀辐射分布有 3〜8条, 各个排气管道之间均导通连接。
[0028] 导热板 16的下底面中部固定有铝基板 1。 铝基板 1的底端均匀分布设有若干 LED 灯 3, 透光罩 2固定于所述铝基板 1上将所述 LED灯 3包覆在内, 即位于所述 LED灯 3的外圈于。 透光罩 2采用高硼硅透明钢化玻璃, 通过透光罩 2进行防尘, 且耐受 高温能量的冲击。
[0029] 灯罩 4一端套接于所述灯座 7的低端, 并将所述散热器 13和导热板 16收容在内。
灯罩 4采用高纯铝材料制成, 灯罩 4经阳极氧化和抛光处理形成阳极氧化抛光处 理层。 在优化照明性能的同吋将炫光减至最少, 灯罩 4分为两段, 其中, 第一段 靠近所述灯座 7, 为圆柱形结构; 第二段远离所述灯座 7, 为锥形结构。 且灯罩 4 的圆柱形结构 (第一段) 的横截面半径与导热板 16的横截面半径相同, 便于导 热板 16与灯罩 4紧密连接。 所述灯罩 4的一端嵌套卡接于灯座 7的缺口上, 且灯罩 4的第一段的幵设有若干进气孔 6, 通过进气孔 6进气对高井灯进行散热。
[0030] 灯罩 4的第一段上靠近第二段的一端螺纹连接有紧固螺栓 5, 所述紧固螺栓 5于 灯罩 4的外圈均匀分布有四个, 紧固螺栓 5依次与灯罩 4、 导热板 16和散热器 13螺 纹连接, 通过紧固螺栓 5对灯罩 4和导热板 16进一步固定, 提升装置的稳定性。
[0031] 所述灯罩 4的第二段的内侧设有温度传感器 18, 通过温度传感器 18对排气管道 的出气口 17排出的气流进行温度检测, 以及吋的调节电机 12的工作参数, 对高 井灯进行快速降温。
[0032] 本实用新型的工作原理是: 通过灯架 10将高井灯固定于指定位置, 对灯座 7进 行转动, 并通过限位栓 9对灯座 7进行固定, 可以调节高井灯的出光方向, 通过 导热板 16将 LED灯 3产生的热量传递给散热器 13, 散热器 13采用纯铜材料制成; 且散热器 13的外圈设有一体成型的鰭片, 通过散热器 13进行快速散热; 且通过 电机 12转动, 从进气孔 6进气, 气流通过入气口 15到出气口 17后排出, 加速气流 流动, 提升散热效果; 并且, 从导热板 16的下底面周边排出高热气流, 可以避 免灯罩 4的内壁累积灰尘, 灯罩 4采用高纯铝材料制成, 灯罩 4经阳极氧化和抛光 处理, 在优化照明性能的同吋将炫光减至最少, 此外, 透光罩 2采用高硼硅透明 钢化玻璃, 通过透光罩 2进行防尘, 且耐受高温能量的冲击, 提升 LED灯 3的稳定 性和寿命。
[0033] 对于本领域技术人员而言, 显然本实用新型不限于上述示范性实施例的细节, 而且在不背离本实用新型的精神或基本特征的情况下, 能够以其他的具体形式 实现本实用新型。 因此, 无论从哪一点来看, 均应将实施例看作是示范性的, 而且是非限制性的, 本实用新型的范围由所附权利要求而不是上述说明限定, 因此旨在将落在权利要求的等同要件的含义和范围内的所有变化囊括在本实用 新型内。 不应将权利要求中的任何附图标记视为限制所涉及的权利要求。
[0034] 此外, 应当理解, 虽然本说明书按照实施方式加以描述, 但并非每个实施方式 仅包含一个独立的技术方案, 说明书的这种叙述方式仅仅是为清楚起见, 本领 域技术人员应当将说明书作为一个整体, 各实施例中的技术方案也可以经适当 组合, 形成本领域技术人员可以理解的其他实施方式。

Claims

权利要求书
[权利要求 1] 一种自动调温 LED高井灯, 包括透光罩、 LED灯、 灯罩、 灯座、 灯架
、 电机、 散热器和导热板, 其特征在于, 所述灯座的顶端通过铰接轴 铰接所述灯架, 所述灯架与所述灯座之间设有限位组件; 所述灯座的 底端中部固定所述电机, 所述电机的输出轴上设有扇叶, 所述散热器 的一端与所述灯座的底端连接并将所述电机和扇叶收容在内, 所述散 热器的另一端套接于所述导热板的上底面, 所述导热板的上底面与下 底面之间贯通有排气管道; 所述导热板的下底面固定有铝基板, 所 述铝基板的低端设有若干所述 LED灯, 所述透光罩固定于所述铝基板 上将所述 LED灯包覆在内; 所述灯罩一端套接于所述灯座的低端并将 所述散热器和导热板收容在内, 且所述灯罩与靠近所述灯座的一端设 有若干进气孔, 所述灯罩于远离所述灯座的另一端内侧设有温度传感 器。
[权利要求 2] 如权利要求 1所述的自动调温 LED高井灯, 其特征在于, 所述灯座的 顶端中部为弧形凸出结构, 所述灯架接设于所述弧形凸出结构的顶端 如权利要求 1或 2所述的自动调温 LED高井灯, 其特征在于, 所述限位 组件包括:
限位孔, 设于所述灯架的上;
限位栓, 可插接于上所述限位孔;
调节孔, 幵设于所述灯座上以所述铰接轴为圆心, 以所述铰接轴和限 位孔之间的距离为半径所处的圆周靠近所述灯座顶端的一段圆弧上。 如权利要求 1所述的自动调温 LED高井灯, 其特征在于, 所述导热板 的上底面沿周缘设有环形凹槽, 所述散热器的另一端卡接于所述环形 凹槽内。
如权利要求 1所述的自动调温 LED高井灯, 其特征在于, 所述导热板 的上底面中部设有柱形凹槽, 所述排气管道的入气口位于所述柱形凹 槽底部, 所述排气管道的出气口位于所述导热板的下底面周缘。 [权利要求 6] 如权利要求 1或 5所述的自动调温 LED高井灯, 其特征在于, 所述排气 管道以所述导热板的横截面圆心向圆周均匀辐射分布有 3〜8条, 各个 所述排气管道之间均导通连接。
[权利要求 7] 如权利要求 1所述的自动调温 LED高井灯, 其特征在于, 所述灯罩分 为两段, 其中第一段靠近所述灯座, 为圆柱形结构; 第二段远离所述 灯座, 为锥形结构。
[权利要求 8] 如权利要求 7所述的自动调温 LED高井灯, 其特征在于, 所述导热板 为圆柱形, 所述灯罩的第一段的横截面半径与所述导热板的横截面半 径相同。
[权利要求 9] 如权利要求 7或 8所述的自动调温 LED高井灯, 其特征在于, 所述灯罩 的第一端上靠近第二段的一端螺纹连接有紧固螺栓, 所述紧固螺栓依 次与所述灯罩、 导热板和散热器螺纹连接。
[权利要求 10] 根据权利要求 1所述的自动调温 LED高井灯, 其特征在于, 所述散热 器为两端幵口的网状圆柱形筒体, 且所述散热器的外壁设有一体成型 的鰭片。
PCT/CN2015/083762 2015-07-10 2015-07-10 一种自动调温 led 高井灯 WO2017008200A1 (zh)

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CN108167682A (zh) * 2017-12-23 2018-06-15 湖南湘讯企业管理有限公司 一种具有凹凸结构铝基板的节能照明灯
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CN108150860A (zh) * 2017-12-23 2018-06-12 湖南湘讯企业管理有限公司 一种阻风槽式节能照明灯
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