Cyclonic heat dissipation type LED magnolia denudata lamp
By employing a cyclone-style heat dissipation design and a petal-shaped protection mechanism, the problem of LED magnolia lamps being easily damaged by hurricanes has been solved, achieving a combination of efficient heat dissipation and aesthetic appeal.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-23
- Publication Date
- 2026-03-27
AI Technical Summary
In hurricane weather, the light source of LED magnolia lamps is easily damaged by foreign objects. Adding a protective cover directly affects heat dissipation and aesthetics.
It adopts a cyclone cooling design, using a cyclone fan pump to deliver airflow for heat dissipation, and retracts the petal plate to protect the lamp body in hurricane weather. Combined with an electric push rod to adjust the height of the lamp body and the position of the petal plate, it provides impact protection.
Improve heat dissipation efficiency in hot weather, protect the lamp body from damage in hurricane weather, and maintain overall aesthetics.
Smart Images

Figure CN224050324U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of street lamps, especially to a cyclone heat dissipation type LED magnolia lamp. BACKGROUND
[0002] The magnolia lamp is inspired by the magnolia flower, uses an LED light source, and has a main LED lamp body in the center and a plurality of side LED lamp body light sources outside, which is beautiful and widely used as a street lamp for urban roads, but the lamp body light source of the LED magnolia lamp is directly retained outdoors, lacks protection in a hurricane, and is at risk of being hit by foreign matter, but if a protective cover is directly added to the lamp body light source, it will not only affect the heat dissipation effect of the lamp body light source in hot weather, but also affect the overall appearance of the LED magnolia lamp. SUMMARY
[0003] In order to overcome the shortcomings of directly adding a protective cover to the lamp body light source of the LED magnolia lamp, which will affect its heat dissipation effect and overall appearance, the utility model provides a cyclone heat dissipation type LED magnolia lamp.
[0004] The technical scheme is: a cyclone heat dissipation type LED magnolia lamp, comprising a lamp pole, a hollow sliding rod, an electric push rod, a cyclone wind pump, a main LED lamp body, a hollow stem, a side LED lamp body, a movable rubber structure, a fixed stem, a petal plate and a pull rope; the lamp pole is provided with an inner cavity structure; the lamp pole is provided with an air inlet hole structure connected to the inner cavity structure; the lamp pole is slidably connected with the hollow sliding rod; the lamp pole is provided with the electric push rod for driving the hollow sliding rod to move up and down; the cyclone wind pump is installed at the bottom of the hollow sliding rod; the main LED lamp body is installed on the hollow sliding rod; the hollow sliding rod is provided with a main heat dissipation air hole structure aligned with the main LED lamp body; the hollow stem is fixedly connected to the hollow sliding rod; the side LED lamp body is installed on the hollow stem; the hollow stem is provided with a side heat dissipation air hole structure aligned with the corresponding side LED lamp body; the fixed stem is fixedly connected to the lamp pole and corresponds to the hollow stem in number and position; the movable rubber structure is provided on the fixed stem; the petal plate is fixedly connected to the movable rubber structure of the fixed stem; the pull rope is fixedly connected to the petal plate in number and position.
[0005] As a further preferred scheme, the petal plate is provided with a hollow groove structure.
[0006] As a further preferred scheme, the petal plate is provided with a hollow groove structure.
[0007] As a further preferred scheme, the petal plate is provided with a buffer rubber.
[0008] As a further preferred solution, a temperature sensor for monitoring the ambient temperature is mounted on the hollow slide rod.
[0009] As a further preferred solution, a baffle ring structure is provided on the lamp pole above the air inlet hole structure.
[0010] As a further preferred solution, a water baffle plug is inserted into the inner cavity structure of the lamp pole below the air inlet hole structure.
[0011] The cyclone heat dissipation type LED magnolia lamp has the following advantages: the cyclone wind pump for conveying cyclone heat dissipation airflow is mounted in the lamp pole, the hollow slide rod for mounting the main LED lamp body is slidably connected to the lamp pole, and the hollow stem rod for mounting the side LED lamp body is connected to the hollow slide rod, in hot weather, the cyclone wind pump performs heat dissipation treatment on the main LED lamp body and the side LED lamp body through the hollow slide rod and the hollow stem rod, in hurricane weather, the electric push rod pulls the hollow slide rod and the main LED lamp body and the side LED lamp body connected thereto to lower the height, and the electric push rod pulls the pull rope to drive the leaf plate to fold and surround the outside of the main LED lamp body and the side LED lamp body, the leaf plate provides anti-impact protection for the main LED lamp body and the side LED lamp body, and the overall appearance of the LED magnolia lamp is ensured, and the technical defects that the heat dissipation effect and the overall appearance are affected when a protective cover is directly added to the light source of the LED magnolia lamp are overcome. BRIEF DESCRIPTION OF DRAWINGS
[0012] Figure 1 It is a perspective view of the utility model;
[0013] Figure 2 It is a lamp pole sectional view of the utility model;
[0014] Figure 3 It is a leaf plate perspective view of the utility model;
[0015] Figure 4 It is a hollow stem rod perspective view of the utility model.
[0016] Reference signs: 1-lamp pole, 101-inner cavity structure, 102-air inlet hole structure, 103-baffle ring structure, 2-hollow slide rod, 201-main heat dissipation hole structure, 21-electric push rod, 22-cyclone wind pump, 3-main LED lamp body, 4-hollow stem rod, 401-side heat dissipation hole structure, 5-side LED lamp body, 601-movable rubber structure, 602-hollow groove structure, 61-fixed stem rod, 62-petal plate, 63-pull rope, 64-protection net, 65-buffering rubber, 7-temperature sensor, 8-water baffle plug. DETAILED DESCRIPTION
[0017] The present invention will be further described below with reference to specific embodiments. It should also be noted that, unless otherwise explicitly specified and limited, terms such as "setting," "installing," "connecting," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in the present invention based on the specific circumstances.
[0018] This embodiment presents a cyclone-cooled LED magnolia lamp, such as... Figures 1-4 As shown, it includes a light pole 1, a hollow sliding rod 2, an electric push rod 21, a cyclone pump 22, a main LED light body 3, a hollow stem 4, a side LED light body 5, a movable rubber structure 601, a fixed stem 61, a petal plate 62, a pull rope 63, a protective net 64, a buffer rubber 65, and a temperature sensor 7; the light pole 1 has an inner cavity structure 101; the light pole 1 has several air inlet structures 102 that connect to the inner cavity structure 101; and a hollow sliding rod is slidably connected to the light pole 1. Pole 2; an electric push rod 21 is installed on the lamp post 1; the telescopic end of the electric push rod 21 is fixedly connected to the hollow slide rod 2; a cyclone pump 22 aligned with the air inlet structure 102 is installed at the bottom inside the hollow slide rod 2; a main LED lamp body 3 is installed on the hollow slide rod 2; several main heat dissipation vent structures 201 aligned with the main LED lamp body 3 are opened on the hollow slide rod 2; several hollow stems 4 are welded at equal intervals around the outer wall of the hollow slide rod 2, and the hollow stems 4 are connected to the hollow slide rod 2; each Each hollow stem 4 is equipped with a side LED light body 5; each hollow stem 4 has several side heat dissipation vent structures 401 aligned with the corresponding side LED light body 5; fixed stems 61, corresponding in number and position to the hollow stems 4, are fixed to the lamp post 1, and each fixed stem 61 has a movable rubber structure 601; each fixed stem 61 has a petal plate 62 fixed to its movable rubber structure 601; each hollow slide rod 2 has pull ropes 63, corresponding in number and position to the petal plates 62; each pull rope 63 is slidably connected to a corresponding fixed stem 61; each pull rope 63 is fixed to a corresponding petal plate 62; each petal plate 62 has several hollow groove structures 602; each hollow groove structure 602 of each petal plate 62 has a protective net 64 fixedly attached; each side of each petal plate 62 has a buffer rubber 65 fixedly attached; a temperature sensor 7 for monitoring ambient temperature is installed on the hollow slide rod 2.
[0019] The cyclone heat dissipation type LED magnolia lamp of the embodiment, in the conventional state, the hollow slide rod 2 holds up the main LED lamp body 3 connected by it and all the side LED lamp bodies 5 surrounded outside the main LED lamp body 3 to the state of far away from the petal plate 62, and the petal plate 62 drives the movable rubber structure 601 of the fixed stem 61 to the unfolded state under the action of natural gravity, simulates the blooming magnolia flower form by the main LED lamp body 3, the side LED lamp body 5 and the petal plate 62, and provides illumination by the main LED lamp body 3 and the side LED lamp body 5 together, and the hollow groove structure 602 on the petal plate 62 can reduce the shielding of the irradiation light of the main LED lamp body 3 and the side LED lamp body 5.
[0020] In hot weather, when the temperature sensor 7 monitors that the current environmental temperature will seriously affect the natural air cooling effect of the main LED lamp body 3 and the side LED lamp body 5, the cyclone wind pump 22 is quickly started and the outside air is sucked into the inner cavity structure 101 of the lamp rod 1 through the air inlet hole structure 102, the cyclone heat dissipation airflow is continuously transported into the hollow slide rod 2 by the cyclone wind pump 22, a part of the cyclone heat dissipation airflow is directly blown out to the main LED lamp body 3 along the hollow slide rod 2 and the main heat dissipation air hole structure 201 to perform cyclone air cooling heat dissipation treatment on it, and another part of the cyclone heat dissipation airflow is blown out to the side LED lamp body 5 along the hollow slide rod 2, the hollow stem 4 and the side heat dissipation air hole structure 401 in turn to perform cyclone air cooling heat dissipation treatment on it, so as to improve the heat dissipation effect of the main LED lamp body 3 and the side LED lamp body 5 and ensure that the main LED lamp body 3 and the side LED lamp body 5 can stably work.
[0021] In the hurricane weather, the electric push rod 21 pushes the hollow slide rod 2 to move downward along the lamp rod 1, and the hollow slide rod 2 drives the main LED lamp body 3 and the side LED lamp body 5 connected by it to move downward to reduce the height, and the hollow slide rod 2 pulls the pull rope 63 to drive the petal plate 62 and the movable rubber structure 601 of the fixed stem 61 to overturn towards the side LED lamp body 5, so that all the petal plates 62 surround the outside of the main LED lamp body 3 and the side LED lamp body 5 in the inwardly gathered state, and the petal plate 62 and the protective net 64 connected by it provide anti-collision protection for the main LED lamp body 3 and the side LED lamp body 5, and at this time, all the petal plates 62 are tightly attached to each other through the buffer rubber 65, and in the process of continuously blowing the petal plate 62 by the movable rubber structure 601 of the fixed stem 61, the collision between the adjacent petal plates 62 occurs through the buffer rubber 65, so as to reduce the noise and collision wear between the adjacent petal plates 62.
[0022] As Figure 2As shown, the cyclone heat dissipation type LED magnolia lamp of the embodiment is provided with the baffle ring structure 103 which shields above the air inlet hole structure 102 on the lamp rod 1, in the rainy weather, the rainwater is blocked by the baffle ring structure 103 and is not easy to pour into the inner cavity structure 101 of the lamp rod 1 through the air inlet hole structure 102; The water stop 8 located below the air inlet hole structure 102 is inserted in the inner cavity structure 101 of the lamp rod 1, in the rainy weather, the rainwater entering the inner cavity structure 101 of the lamp rod 1 along the hollow slide rod 2 through the main heat dissipation air hole structure 201 and the side heat dissipation air hole structure 401 is blocked by the water stop 8, and the rainwater entering the inner cavity structure 101 of the lamp rod 1 will be discharged outward through the air inlet hole structure 102.
[0023] The above only is the preferred implementation of the present application, it should be pointed out, for ordinary skilled person in the art, without departing from the principles of the present application, on the premise of still can make a number of improvements and refinements, these improvements and refinements also should be considered as the protection scope of the present application.
Claims
1. A cyclone heat dissipation type LED magnolia lamp, comprising a lamp rod (1); an inner cavity structure (101) is formed in the lamp rod (1); an air inlet hole structure (102) is formed in the lamp rod (1) and communicates with the inner cavity structure (101); characterized in that Further comprising a hollow sliding rod (2); the hollow sliding rod (2) is slidingly connected to the lamp rod (1); an electric push rod (21) is installed on the lamp rod (1) and drives the hollow sliding rod (2) to move up and down; a cyclone pump (22) is installed at the bottom of the hollow sliding rod (2); a main LED lamp body (3) is installed on the hollow sliding rod (2); a main heat dissipation air hole structure (201) is formed in the hollow sliding rod (2) and aligns with the main LED lamp body (3); a plurality of hollow stems (4) are fixedly connected to the hollow sliding rod (2); a side LED lamp body (5) is installed on the hollow stem (4); a side heat dissipation air hole structure (401) is formed in the hollow stem (4) and aligns with the corresponding side LED lamp body (5); a fixed stem (61) is fixedly connected to the lamp rod (1) and corresponds in number and position to the hollow stem (4); a movable rubber structure (601) is arranged on the fixed stem (61); a petal plate (62) is fixedly connected to the movable rubber structure (601) of the fixed stem (61); a pull rope (63) is fixedly connected to the petal plate (62) and corresponds in number and position to the petal plate (62).
2. The cyclone heat dissipation type LED magnolia lamp according to claim 1, characterized in that, The petal plate (62) is provided with a hollow groove structure (602).
3. A cyclone heat dissipation type LED plum lamp according to claim 2, characterized in that, The hollow groove structure (602) of the petal plate (62) is fixedly connected with a protective net (64).
4. The cyclone heat dissipating LED Chinese lampion lamp of claim 1, wherein, The petal plate (62) is fixedly connected with a buffer rubber (65).
5. The cyclone heat dissipating LED Chinese lampion lamp of claim 1, wherein, A temperature sensor (7) for monitoring the ambient temperature is installed on the hollow sliding rod (2).
6. A cyclone heat dissipating LED Chinese lampion lamp according to claim 1, characterized in that, The lamp rod (1) is provided with a baffle ring structure (103) which blocks the air inlet hole structure (102).
7. A cyclone heat dissipation type LED jade orchid lamp according to any one of claims 1-6, characterized in that, A water stop plug (8) is inserted into the inner cavity structure (101) of the lamp rod (1) and is located below the air inlet hole structure (102).