CN102287757A - High-condensation reflecting structure capable of hiding light source and lamp with hidden light source - Google Patents
High-condensation reflecting structure capable of hiding light source and lamp with hidden light source Download PDFInfo
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- CN102287757A CN102287757A CN2011102070325A CN201110207032A CN102287757A CN 102287757 A CN102287757 A CN 102287757A CN 2011102070325 A CN2011102070325 A CN 2011102070325A CN 201110207032 A CN201110207032 A CN 201110207032A CN 102287757 A CN102287757 A CN 102287757A
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Abstract
The invention relates to the technical field of daily lighting, and discloses a high-condensation reflecting structure capable of hiding a light source, which comprises a reflecting seat body and two light outlet covers. The reflecting seat body comprises two main reflecting surfaces connected in an alpha angle and two secondary reflecting surfaces respectively connected with the two ends of the main reflecting surfaces, the two secondary reflecting surfaces form an angle of beta, the two light outlet covers are respectively connected with the two sides of the reflecting seat body and are arranged in a gamma angle. The invention also relates to a lamp with a hidden light source, which comprises a lamp seat and the light source, wherein a reflecting device is arranged in the lamp seat and adopts the high-condensation reflecting structure capable of hiding the light source, and the light source is arranged between connecting ends of the reflecting structure and the two sides of the lamp seat. The light source is hidden delicately and integrated, and the light condensation and the lighting effect are improved. Moreover, cooling devices are arranged, the cooling effect can be effectively improved, the direct radiation of the light source and the damage to human eyes caused by glare can be reduced, and the normal production and activities of human beings can be ensured.
Description
Technical field
The present invention relates to the normal lighting technical field, refer in particular to a kind of high optically focused reflective structure and concealed light fixture of light source of hiding light source.
Background technology
At present the optical treatment of LED industry illuminating industry is the key problem of numerous producers, and wherein, and is particularly important at the research of the solution of LED light fixture glare problem.Dazzle is because being not suitable for of Luminance Distribution or brightness range, or has extreme brightness contrast, so that causes uncomfortable sensation or reduce the visual phenomenon of the ability of observing thin portion or target; If human eye touches dazzle, will feel to stimulate and nervous, under this condition, work for a long time, can produce bored, irritable uneasyly and tired, people's production and life caused very big influence.
Summary of the invention
One of purpose of the present invention is to overcome weak point of the prior art and a kind of light source of hiding is provided, and reduces dazzle to the injury of human eye, effectively improves the high optically focused reflective structure of the treatment effect of light.
Two of purpose of the present invention is to overcome weak point of the prior art and provides a kind of by the hiding light source of reflective structure, reduced the direct projection effect of light source, effectively improve the effect of heat radiation, guaranteed people's production and the concealed light fixture of light source that life can normally be carried out.
For achieving the above object, the present invention adopts following technical scheme to be:
The invention provides a kind of high optically focused reflective structure of hiding light source, it comprises:
One reflective pedestal, the main reflective surface and two that described reflective pedestal is connected by twenty percent α angle are connected to the inferior reflective surface at these two main reflective surfaces two ends to be formed, and is mutually the β angle between this twice reflective surface;
The scene 2 light shield describedly goes out light shield and is connected to reflective pedestal both sides, is mutually the γ angle between this scene 2 light shield.
The shape of two main reflective surfaces of described reflective pedestal and size are consistent, and the shape of this main reflective surface matches with the β angle that twice reflective surface became of reflective pedestal.
α angle between two main reflective surfaces of described reflective pedestal is 90 °~120 °, and this two main reflective surface is a plane, and the β angle between twice reflective surface of this reflective pedestal is 0 °~90 °, and this twice reflective surface is a plane.
β angle between twice reflective surface of described reflective pedestal is 0 °, and the height of two main reflective surfaces of this reflective pedestal is 50mm.
Describedly go out the relative end that light shield is connected in two main reflective surface links, and symmetrical about the link of two main reflective surfaces, this goes out light shield and also is connected with twice reflective surface with the link of main reflective surface, and the γ angle that is become between this scene 2 light shield is 120 °~160 °.
It is described that to go out light shield be a trapezoidal housing, this goes out light shield one end and is provided with the optically focused mouth, and a relative end with this optically focused mouth is provided with light-emitting window, and this optically focused mouth is connected with light-emitting window, the height of this light-emitting window matches with the height of main reflective surface, and reflective relatively pedestal one side of this light-emitting window all is extended with a baffle plate.
The described baffle plate that goes out a light shield end toward each other is connected with time reflective surface, and its relative other end forms a port with time reflective surface, and this optically focused mouth that goes out light shield is 46 * 46mm.
The present invention also provides a kind of light source concealed light fixture, comprise lamp socket and light source, be provided with a reflex reflector in the described lamp socket, this reflex reflector is the high optically focused reflective structure of the above-mentioned light source hidden, and described light source is installed between the link of reflective structure and lamp socket both sides.
Described lamp socket is the cavity of a hollow and an opening, and the inner chamber of this lamp socket size matches with the size of reflex reflector, is connected with formula of linking closely or screw fastening-type between this lamp socket and reflex reflector.
Described light source is installed on the optically focused mouth of reflex reflector, and is fastenedly connected in the relevant position of lamp socket.
Beneficial effect of the present invention is: the high optically focused reflective structure of hiding light source of the present invention, its both sides that go out light shield are provided with and the dimmer design of reflective each reflective surface of pedestal matches, hidden light source dexterously, reduce the injury effect of dazzle to human eye, and its by reflective surface to the reflection of light effect, integrated optical source has improved the aggtegation of light, has improved the effect of illumination; The concealed light fixture of light source of the present invention, its light source is provided with in the both sides of reflective structure, it has disperseed the heat radiation distributing position, effectively improve the effect of heat radiation, by the hiding effect of reflective structure to light source, reduced the direct projection effect of light source, can't see the installation site of light source from the reflective structure front, avoided the influence of dazzle to people's vision, guaranteed people production and the life can normally carry out.
Description of drawings
Fig. 1 is a stereogram of hiding the high optically focused reflective structure of light source of the present invention.
Fig. 2 is a vertical view of hiding the high optically focused reflective structure of light source of the present invention.
Fig. 3 is a side view of hiding the high optically focused reflective structure of light source of the present invention.
Fig. 4 is the three-dimensional structure diagram of the concealed light fixture of light source of the present invention.
The drawing reference numeral explanation:
The reflective pedestal of 1-; 11-master's reflective surface; 12-reflective surface;
2-goes out light shield; 21-optically focused mouth; The 22-light-emitting window;
The 23-baffle plate; The 24-port; The 3-lamp socket;
The 4-light source.
The specific embodiment
The invention will be further described below in conjunction with Figure of description:
Specific embodiment 1:
As Figure 1-3, the high optically focused reflective structure of hiding light source of the present invention comprises:
One reflective pedestal 1, the main reflective surface 11 and two that this reflective pedestal 1 is connected by twenty percent α angle are connected to the inferior reflective surface 12 at these two main reflective surfaces, 11 two ends to be formed, and 12 of this twice reflective surfaces are mutually the β angle;
As Figure 1-3, the shape of two main reflective surfaces 11 of reflective pedestal 1 and size are consistent, the shape of this main reflective surface 11 matches with the β angle that twice reflective surface 12 of reflective pedestal 1 become, wherein, the α angle that two main reflective surfaces of reflective pedestal 1 are 11 is 90 °~120 °, this two main reflective surface 11 is a plane, and the β angle that twice reflective surface of this reflective pedestal 1 is 12 is 0 °~90 °, and this twice reflective surface 12 is a plane.
As Figure 1-3, go out the relative end that light shield 2 is connected in two main reflective surface 11 links, and the link about two main reflective surfaces 11 is symmetrical, this goes out light shield 2 and also is connected with twice reflective surface 12 with the link of main reflective surface 11,2 γ angles that become of this scene 2 light shield are 120 °~160 °, this goes out light shield 2 is a trapezoidal housing, this goes out light shield 2 one ends and is provided with optically focused mouth 21, be provided with light-emitting window 22 with these optically focused mouth 21 relative ends, this optically focused mouth 21 is connected with light-emitting window 22, the height of this light-emitting window 22 matches with the height of main reflective surface 11, reflective relatively pedestal 1 one sides of this light-emitting window 22 all are extended with a baffle plate 23, this baffle plate 23 end toward each other is connected with time reflective surface 12, and its relative other end forms a port 24 with time reflective surface 12.
Specific embodiment 2:
As shown in Figure 3, the high optically focused reflective structure of hiding light source of the present invention is specific embodiment 1 a described reflective structure, unaccounted technical characterictic in this specific embodiment, adopt the explanation in the specific embodiment 1, no longer give unnecessary details at this, and when the β angle of 12 of twice reflective surfaces of reflective pedestal 1 be 0 °, the height of two main reflective surfaces 11 of this reflective pedestal 1 is 50mm, its optically focused mouth 21 that goes out light shield 2 is 46 * 46mm.
Specific embodiment 3:
As shown in Figure 4, the concealed light fixture of light source of the present invention, comprise lamp socket 3 and light source 4, be provided with a reflex reflector in this lamp socket 3, this reflex reflector is specific embodiment 1 a described high optically focused reflective structure of hiding light source 4, and this light source 4 is installed between the link of reflex reflector and lamp socket 3 both sides, unaccounted technical characterictic in this specific embodiment, adopt the explanation in the specific embodiment 1, no longer give unnecessary details at this.
As shown in Figure 4, lamp socket 3 is the cavity of a hollow and an opening, the inner chamber size of this lamp socket 3 matches with the size of reflective structure, be connected with formula of linking closely or screw fastening-type between this lamp socket 3 and reflex reflector, light source 4 is installed on the optically focused mouth 21 of reflex reflector, and is fastenedly connected in the relevant position of lamp socket 3.
Specific embodiment 4:
As shown in Figure 4, the concealed light fixture of light source of the present invention, comprise lamp socket 3 and light source 4, be provided with a reflex reflector in this lamp socket 3, this reflex reflector is specific embodiment 1 a described high optically focused reflective structure of hiding light source 4, and this light source 4 is installed between the link of reflex reflector and lamp socket 3 both sides, this lamp socket 3 is light fixture described in the specific embodiment 3 and light source 4 with light source 4, unaccounted technical characterictic in this specific embodiment adopts the explanation in the specific embodiment 1 and 3, no longer gives unnecessary details at this.
The above only is to preferred embodiment of the present invention; be not that scope of the present invention is limited; so design under the prerequisite of spirit not breaking away from the present invention; the equivalence that the common engineers and technicians in this area do structure of the present invention, feature and principle changes or decorates, and all should fall in the protection domain of the present patent application patent.
Claims (10)
1. the high optically focused reflective structure that can hide light source is characterized in that it comprises:
One reflective pedestal, the main reflective surface and two that described reflective pedestal is connected by twenty percent α angle are connected to the inferior reflective surface at these two main reflective surfaces two ends to be formed, and is mutually the β angle between this twice reflective surface;
The scene 2 light shield describedly goes out light shield and is connected to reflective pedestal both sides, is mutually the γ angle between this scene 2 light shield.
2. a kind of high optically focused reflective structure of hiding light source according to claim 1, it is characterized in that: the shape of two main reflective surfaces of described reflective pedestal and size are consistent, and the shape of this main reflective surface matches with the β angle that twice reflective surface became of reflective pedestal.
3. want 2 described a kind of high optically focused reflective structures of hiding light source according to right, it is characterized in that: the α angle between two main reflective surfaces of described reflective pedestal is 90 °~120 °, this two main reflective surface is a plane, β angle between twice reflective surface of this reflective pedestal is 0 °~90 °, and this twice reflective surface is a plane.
4. a kind of high optically focused reflective structure of hiding light source according to claim 3, it is characterized in that: the β angle between twice reflective surface of described reflective pedestal is 0 °, the height of two main reflective surfaces of this reflective pedestal is 50mm.
5. a kind of high optically focused reflective structure of hiding light source according to claim 1, it is characterized in that: describedly go out the relative end that light shield is connected in two main reflective surface links, and the link about two main reflective surfaces is symmetrical, this goes out light shield and also is connected with twice reflective surface with the link of main reflective surface, and the γ angle that is become between this scene 2 light shield is 120 °~160 °.
6. a kind of high optically focused reflective structure of hiding light source according to claim 5, it is characterized in that: described to go out light shield be a trapezoidal housing, this goes out light shield one end and is provided with the optically focused mouth, a relative end with this optically focused mouth is provided with light-emitting window, this optically focused mouth is connected with light-emitting window, the height of this light-emitting window matches with the height of main reflective surface, and reflective relatively pedestal one side of this light-emitting window all is extended with a baffle plate.
7. a kind of high optically focused reflective structure of hiding light source according to claim 6, it is characterized in that: the described baffle plate that goes out a light shield end toward each other is connected with time reflective surface, its relative other end forms a port with time reflective surface, and this optically focused mouth that goes out light shield is 46 * 46mm.
8. concealed light fixture of light source, comprise lamp socket and light source, it is characterized in that: be provided with a reflex reflector in the described lamp socket, this reflex reflector is the described high optically focused reflective structure of hiding light source of aforesaid right requirement 1-7, and described light source is installed between the link of reflective structure and lamp socket both sides.
9. the concealed light fixture of a kind of light source according to claim 8, it is characterized in that: described lamp socket is the cavity of a hollow and an opening, the inner chamber of this lamp socket size matches with the size of reflex reflector, is connected with formula of linking closely or screw fastening-type between this lamp socket and reflective structure.
10. the concealed light fixture of a kind of light source according to claim 8 is characterized in that: described light source is installed on the optically focused mouth of reflex reflector, and is fastenedly connected in the relevant position of lamp socket.
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CN2011102070325A CN102287757A (en) | 2011-07-23 | 2011-07-23 | High-condensation reflecting structure capable of hiding light source and lamp with hidden light source |
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CN2011102070325A CN102287757A (en) | 2011-07-23 | 2011-07-23 | High-condensation reflecting structure capable of hiding light source and lamp with hidden light source |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108962082A (en) * | 2018-08-19 | 2018-12-07 | 国胜科技(惠州)有限公司 | A bill-board that is used for urban road both sides to have concealed and tests speed snapshot function |
CN111426452A (en) * | 2020-03-26 | 2020-07-17 | 西安理工大学 | Glare source device for simulating street lamp lighting environment and design method thereof |
Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101660676A (en) * | 2008-08-25 | 2010-03-03 | 株式会社小糸制作所 | Lamp |
US20110032698A1 (en) * | 2009-08-05 | 2011-02-10 | U.R. Tech Corporation | United reflection lights with light-emitting diode |
CN202158502U (en) * | 2011-07-23 | 2012-03-07 | 陈俊峰 | High light-condensing reflecting structure capable of concealing light source |
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2011
- 2011-07-23 CN CN2011102070325A patent/CN102287757A/en active Pending
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101660676A (en) * | 2008-08-25 | 2010-03-03 | 株式会社小糸制作所 | Lamp |
US20110032698A1 (en) * | 2009-08-05 | 2011-02-10 | U.R. Tech Corporation | United reflection lights with light-emitting diode |
CN202158502U (en) * | 2011-07-23 | 2012-03-07 | 陈俊峰 | High light-condensing reflecting structure capable of concealing light source |
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108962082A (en) * | 2018-08-19 | 2018-12-07 | 国胜科技(惠州)有限公司 | A bill-board that is used for urban road both sides to have concealed and tests speed snapshot function |
CN108962082B (en) * | 2018-08-19 | 2020-12-01 | 日照市德衡信息技术有限公司 | A bill-board that is used for urban road both sides to have concealed and tests speed snapshot function |
CN111426452A (en) * | 2020-03-26 | 2020-07-17 | 西安理工大学 | Glare source device for simulating street lamp lighting environment and design method thereof |
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Application publication date: 20111221 |