LED energy-saving corn lamp
Technical Field
The utility model belongs to the technical field of lamps, and particularly relates to an LED energy-saving corn lamp.
Background
LED (LIGHT EMITTING Diode) lighting technology has been widely used in recent years due to its high efficiency and energy saving characteristics, and is particularly favored in the field of lighting. The LED energy-saving corn lamp is an important type of LED illumination products, has the characteristics of multi-lamp bead design, high brightness, low power consumption and the like, and is widely applied to the fields of commercial illumination, industrial illumination, indoor illumination and the like.
Conventional LED energy-saving corn lamps typically employ a simple heat dissipation design, such as a single heat sink or heat sink, and a simple heat dissipation structure. The design often cannot effectively conduct and dissipate heat emitted by the LEDs rapidly, so that the lamp is overheated after long-time use, and the performance and the service life of the lamp are affected.
Due to the defect of heat dissipation design, the traditional LED energy-saving corn lamp cannot realize the effect of rapid heat dissipation. The heat generated during the light emitting of the LED can not be absorbed and conducted by the heat dissipation system timely and effectively, so that the internal temperature of the lamp is increased, and the stable operation of the lamp is seriously influenced.
Because the radiating effect is not good, the stability of the traditional LED energy-saving corn lamp is often affected. The overheat can lead to the working temperature of the LED lamp bead to rise, so that the photoelectric conversion efficiency and the light attenuation speed of the LED lamp bead are reduced, the service life of the lamp is shortened, and even the lamp bead is damaged or the lamp is failed.
The long-time overheat operation can accelerate the attenuation and aging of the LED lamp beads, so that the service life of the lamp is greatly shortened. The traditional LED energy-saving corn lamp is frequently required to be maintained and replaced more frequently due to poor heat dissipation, so that the use cost and the management cost are increased.
In view of this, overcoming the defects in the prior art is a problem to be solved in the art.
Disclosure of utility model
Aiming at the technical problems in the background art, the utility model aims to provide the LED energy-saving corn lamp which has the advantages of simple structure, convenience in installation, capability of realizing the effect of rapid heat dissipation, ensuring long-time stable operation of the lamp and prolonging the service life of the lamp, so as to solve the technical problems in the background art.
In order to achieve the above purpose, the technical scheme is that the LED energy-saving corn lamp comprises a lamp cap, wherein the bottom of the lamp cap is respectively connected with a heat dissipation part and a light-transmitting lampshade, the light-transmitting lampshade is covered on the outer side of the heat dissipation part, a plurality of light source lamp belts are uniformly arranged on the outer side wall of the heat dissipation part, a light source lamp panel is arranged on the bottom of the heat dissipation part, a plurality of heat dissipation penetrating holes are uniformly formed in the edge of the lamp cap, a plurality of heat dissipation protruding blocks are uniformly and convexly arranged on the inner side wall of the heat dissipation part, a plurality of heat dissipation penetrating holes are uniformly formed in the surface of the light source lamp panel, a plurality of heat dissipation penetrating grooves are uniformly formed in the lower surface of the light-transmitting lampshade, and the heat dissipation penetrating holes, the heat dissipation penetrating holes and the heat dissipation penetrating grooves are correspondingly arranged.
Further, the middle part of this lamps and lanterns lamp holder has been seted up the installation fluting, and the inner edge of this installation fluting evenly is equipped with a plurality of first connection portions, and the heat dissipation fluting has been seted up at the middle part of this radiating part, and the inside wall of a plurality of heat dissipation flutings evenly is equipped with a plurality of second connection portions, and a plurality of these first connection portions and a plurality of these second connection portions are corresponding one by one to connect fixedly through the fastener, make this radiating part fixed mounting in the bottom of this lamps and lanterns lamp holder.
Further, the lower extreme of this lamps and lanterns lamp holder evenly is equipped with a plurality of connection limit pieces, and the lower extreme outward flange of a plurality of these connection limit pieces is equipped with the connecting thread respectively, and the top edge of this printing opacity lamp shade is equipped with annular lamp shade connecting portion, and the inside wall of this lamp shade connecting portion is equipped with the fixed screw thread with this connecting thread adaptation, and the lower extreme of a plurality of these connection limit pieces is connected in this lamp shade connecting portion to through between this fixed screw thread and this connecting screw thread screw-thread fit connection fixed, make this printing opacity lamp shade fixed connection in the bottom of this lamps and lanterns lamp holder.
Further, the heat dissipation member is a polygonal hollow cylinder.
Further, the outer side wall of the heat dissipation part is uniformly concavely provided with a plurality of lamp strip connecting grooves, and a plurality of light source lamp strips are respectively fixed in a plurality of lamp strip connecting grooves through adhesive bonding.
Further, the light source lamp panel is fixed at the bottom of the heat dissipation part by gluing.
The LED energy-saving corn lamp has the advantages that the radiating part is arranged at the bottom of the lamp cap, the light-transmitting lampshade is in threaded connection with the bottom of the lamp cap, the outer side wall of the radiating part is uniformly provided with the plurality of light source lamp strips, the bottom of the radiating part is provided with the light source lamp panel, the middle edge of the lamp cap is uniformly provided with the plurality of radiating through holes, the inner side wall of the radiating slot is uniformly provided with the plurality of radiating convex blocks, the surface of the light source lamp panel is uniformly provided with the plurality of radiating through holes, the lower surface of the light-transmitting lampshade is uniformly provided with the plurality of radiating through grooves, and the radiating through holes, the radiating convex blocks, the radiating through holes and the radiating through grooves are correspondingly arranged.
Drawings
Fig. 1 is a schematic overall perspective view of the present utility model.
Fig. 2 is a schematic diagram of the overall exploded structure of the present utility model.
Fig. 3 is a schematic view of a lamp cap structure of the present utility model.
Fig. 4 is a schematic view of a light-transmitting lampshade according to the present utility model.
Reference numerals are lamp cap 10, heat radiation member 20, light-transmitting globe 30, light source band 40, light source panel 50, mounting groove 11, first connecting portion 111, heat radiation groove 21, second connecting portion 211, connecting side block 12, connecting screw 121, globe connecting portion 31, fixing screw 311, lamp band connecting groove 22, heat radiation through hole 13, heat radiation bump 212, heat radiation through hole 51, heat radiation through groove 32.
Detailed Description
As shown in fig. 1 to 4, an LED energy-saving corn lamp comprises a lamp cap 10, a heat dissipation part 20 and a light-transmitting lampshade 30, wherein the heat dissipation part 20 is arranged at the bottom of the lamp cap 10, and passes through the heat dissipation part 20 and the lamp cap 10 through a fastener to be connected and fixed, the light-transmitting lampshade 30 is connected at the bottom of the lamp cap 10 through threads, meanwhile, the light-transmitting lampshade 30 is covered at the outer side of the heat dissipation part 20, a plurality of light source lamp strips 40 are uniformly arranged on the outer side wall of the heat dissipation part 20, a light source lamp plate 50 is arranged at the bottom of the heat dissipation part 20, the lamp cap 10 is respectively connected with a plurality of light source lamp strips 40 and the light source lamp plate 50 through wires, and in use, the lamp cap 10 is in threaded electric connection with a lamp holder, so that the lamp cap 10 respectively drives the light source lamp strips 40 and the light source lamp plate 50 to emit light through the light-transmitting lampshade 30 to illuminate.
In practical implementation, the middle part of the lamp cap 10 is provided with a mounting slot 11, the inner edge of the mounting slot 11 is uniformly provided with a plurality of first connection penetrating parts 111, the middle part of the heat dissipation part 20 is provided with a heat dissipation slot 21, the inner side walls of the plurality of heat dissipation slots 21 are uniformly provided with a plurality of second connection penetrating parts 211, the plurality of first connection penetrating parts 111 and the plurality of second connection penetrating parts 211 are in one-to-one correspondence, and the heat dissipation part 20 is fixedly connected with the bottom of the lamp cap 10 by penetrating through the second connection penetrating parts 211 and the first connection penetrating parts 111 through fasteners, so that the structure is simple, and the installation is convenient and stable.
In specific implementation, the lower end of the lamp cap 10 is uniformly provided with a plurality of connecting edge blocks 12, the outer edges of the lower ends of the plurality of connecting edge blocks 12 are respectively provided with connecting threads 121, the top edge of the light-transmitting lamp shade 30 is provided with a circular lamp shade connecting part 31, the inner side wall of the lamp shade connecting part 31 is provided with fixing threads 311 matched with the connecting threads 121, and when the lamp cap is installed, the lower ends of the plurality of connecting edge blocks 12 are connected in the lamp shade connecting part 31 and are fixedly connected with the connecting threads 121 through the screw threads of the fixing threads 311, so that the light-transmitting lamp shade 30 is fixedly connected to the bottom of the lamp cap 10, and the lamp cap is simple in structure and convenient and stable to install.
When in specific implementation, the heat dissipation component 20 is a polygonal hollow column, the outer side wall of the heat dissipation component 20 is uniformly concavely provided with a plurality of lamp strip connecting grooves 22, a plurality of light source lamp strips 40 are respectively embedded in a plurality of the lamp strip connecting grooves 22, the light source lamp strips 40 and the lamp strip connecting grooves 22 are fixed through adhesive bonding, and the light source lamp plates 50 are fixed at the bottom of the heat dissipation component 20 through adhesive bonding, so that the heat dissipation component is simple in structure and convenient to assemble in the production process.
In a specific implementation, the middle edge of the lamp cap 10 is uniformly provided with a plurality of heat dissipation through holes 13, the inner side wall of the heat dissipation slot 21 is uniformly provided with a plurality of heat dissipation convex blocks 212, the surface of the light source lamp panel 50 is uniformly provided with a plurality of heat dissipation through holes 51, the lower surface of the light-transmitting lamp cover 30 is uniformly provided with a plurality of heat dissipation through grooves 32, the heat dissipation through holes 13, the heat dissipation convex blocks 212, the heat dissipation through holes 51 and the heat dissipation through grooves 32 are correspondingly arranged, when the light source lamp belt 40 and the light source lamp panel 50 are electrified and emit light in use, certain heat energy is generated, and is respectively conducted to the heat dissipation part 20, and external air flows can respectively take out the heat energy through the heat dissipation through holes 13, the heat dissipation convex blocks 212, the heat dissipation through holes 51 and the heat dissipation through grooves 32, so that a rapid heat dissipation effect is realized, and the service life of the lamp is prolonged. The design can effectively enhance the heat radiation capability of the LED energy-saving corn lamp, ensure the long-time stable work of the lamp and prolong the service life of the lamp.
In summary, the heat dissipation component 20 is disposed at the bottom of the lamp cap 10, the light-transmitting lampshade 30 is screwed on the bottom of the lamp cap 10, the outer side wall of the heat dissipation component 20 is uniformly provided with a plurality of light source lamp strips 40, the bottom of the heat dissipation component 20 is provided with a light source lamp plate 50, the middle edge of the lamp cap 10 is uniformly provided with a plurality of heat dissipation through holes 13, the inner side wall of the heat dissipation slot 21 is uniformly convexly provided with a plurality of heat dissipation protruding blocks 212, the surface of the light source lamp plate 50 is uniformly provided with a plurality of heat dissipation through holes 51, the lower surface of the light-transmitting lampshade 30 is uniformly provided with a plurality of heat dissipation through grooves 32, and the heat dissipation through holes 13, the heat dissipation protruding blocks 212, the heat dissipation through holes 51 and the heat dissipation through grooves 32 are correspondingly arranged.