Direct insertion type high-efficiency new energy vehicle lamp with operation monitoring regulation function

By combining the design of a heat-conducting metal sleeve, air-cooling components, a flow-guiding mechanism, a stirring mechanism, and a spraying mechanism, the problem of low water cooling rate of the direct-plug LED vehicle light heat sink is solved, achieving a highly efficient integrated air-cooling and water-cooling heat dissipation effect.

CN116857588BActive Publication Date: 2025-10-24CHANGZHOU GUANGMING LIGHT BULB
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Patent Information

Application Number
CN202310929350.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-07-26
Publication Date
2025-10-24
Estimated Expiration
2043-07-26

AI Technical Summary

Technical Problem

When the heat dissipation device of the existing direct-plug LED lamp is cooled by water, the temperature of the water near the end of the heat sink rises rapidly, affecting the water cooling rate.

Method used

The combined design of heat-conducting metal sleeve, air-cooling component, drainage mechanism, stirring mechanism and spray mechanism, combined with temperature sensor and driving mechanism, realizes multiple heat dissipation control of LED lamps, including the comprehensive utilization of air cooling and water cooling.

Benefits of technology

It improves heat dissipation efficiency by effectively reducing the temperature of LED lights through the combined effect of air cooling and water cooling, thereby enhancing the heat dissipation rate and the overall cooling effect.

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Abstract

The application is suitable for the field of direct insertion type high-efficiency new energy vehicle lamp, and provides a direct insertion type high-efficiency new energy vehicle lamp with operation monitoring and regulation functions, which comprises an LED lamp holder, the LED lamp holder is electrically connected with a temperature sensor, and further comprises: a heat-conducting metal sleeve, the heat-conducting metal sleeve is fixedly connected with a mounting seat, the mounting seat is connected with a mechanism box, the mechanism box is rotatably connected with a rotating pipe, the rotating pipe is externally sleeved with an air cooling assembly, the air cooling assembly is rotatably connected with the inner end face of the mechanism box, and the rotating pipe and the air cooling assembly are jointly connected with a driving mechanism; when the temperature of the LED lamp rises to a certain value, the temperature sensor controls the water pump to start through the controller, the water pump sucks water through the water pipe, the water pipe sucks the water flow into the metal fan plate, and the metal fan plate cools and lowers the temperature of the water flow, thereby solving the problem of low heat dissipation efficiency of the existing direct insertion type high-efficiency new energy vehicle lamp.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the field of direct insertion type high-efficiency new energy vehicle lamps, in particular to a direct insertion type high-efficiency new energy vehicle lamp with operation monitoring and regulation functions. BACKGROUND

[0002] The direct insertion type LED headlamp is a new type of lighting equipment, which mainly adopts LED technology and has the advantages of high brightness, low energy consumption and long service life. Compared with traditional lamps, the direct insertion type LED headlamp is more energy-saving and environmentally friendly, and also more economical and practical.

[0003] The existing LED vehicle lamp is usually provided with two circuit boards, and LED lamp beads are arranged on the opposite surfaces of the two circuit boards. In order to effectively dissipate heat, a heat sink is arranged between the two circuit boards. The existing heat dissipation device usually inserts one end of the heat sink into water for water cooling. However, the water temperature near the end of the heat sink rises quickly, and the water temperature after being heated affects the water cooling rate.

[0004] In order to avoid the above technical problems, it is necessary to provide a direct insertion type high-efficiency new energy vehicle lamp with operation monitoring and regulation functions to overcome the defects in the prior art. SUMMARY

[0005] The present application aims to provide a direct insertion type high-efficiency new energy vehicle lamp with operation monitoring and regulation functions, which aims to solve the problem that the existing heat dissipation device usually inserts one end of the heat sink into water for water cooling, but the water temperature near the end of the heat sink rises quickly, and the water temperature after being heated affects the water cooling rate.

[0006] The present application is realized as follows: the direct insertion type high-efficiency new energy vehicle lamp with operation monitoring and regulation functions comprises an LED lamp holder, an LED lamp is arranged on the LED lamp holder, and a temperature sensor is electrically connected to the LED lamp holder, and further comprises:

[0007] A heat-conducting metal sleeve is threadedly connected to the LED lamp holder, the heat-conducting metal sleeve is fixedly connected with a mounting seat, the mounting seat is connected with a mechanism box, the mechanism box is rotatably connected with a rotating pipe, a forced air cooling assembly is arranged outside the rotating pipe, the forced air cooling assembly is rotatably connected with the inner end surface of the mechanism box, the rotating pipe and the forced air cooling assembly are jointly connected with a driving mechanism, the driving mechanism is used for driving the rotating pipe and the forced air cooling assembly to rotate in opposite directions, and the driving mechanism is electrically connected with the temperature sensor.

[0008] A water tank is arranged in the mounting seat, a plurality of heat-conducting rods are connected to the LED lamp holder, the heat-conducting rods are inserted into the water tank, and a flow guide mechanism is arranged between the water tank and the rotating pipe, the flow guide mechanism can make the water flow circulate in the water tank and the rotating pipe and cool.

[0009] Two cross pipes are communicated with the rotating pipe, the stirring mechanism is slidingly connected with the cross pipes, the stirring mechanism continuously rotates with the rotating pipe as the rotating center, and the stirring mechanism can reciprocatingly slide relative to the cross pipes, the spraying mechanism is connected between the cross pipes and the stirring mechanism, and the spraying mechanism can spray water flow in the rotating pipe outward.

[0010] The circuit box is connected with the mounting seat, the socket is connected with the circuit box, and the socket is electrically connected with the LED lamp.

[0011] Further, the air-cooled assembly comprises a rotating sleeve, a fan blade and an air guide pipe.

[0012] The rotating sleeve is rotationally connected with the inner end face of the mechanism box, the rotating sleeve is sleeved outside the rotating pipe, the rotating sleeve is fixedly connected with a plurality of fan blades, and the air guide pipe is communicated between the heat-conducting metal sleeve and the mechanism box.

[0013] Further, the driving mechanism comprises a motor, a gear transmission pair and a belt transmission pair.

[0014] The motor is fixedly connected with the inner end face of the mechanism box, the output shaft of the motor is drivingly connected with the rotating sleeve through the gear transmission pair, and the belt transmission pair is arranged between the output shaft of the motor and the rotating pipe.

[0015] Further, the drainage mechanism comprises a water pump, a spiral water pipe, a metal fan plate and a water pipe.

[0016] The water outlet of the water pump is rotationally connected with one end of the rotating pipe, the water inlet of the water pump is communicated with the spiral water pipe, the spiral water pipe is arranged in the mechanism box, the side wall of the mounting seat is annularly provided with a plurality of metal fan plates, the internal cavities of the metal fan plates are all communicated with the spiral water pipe and the water pipe, the water pipes are all arranged in the mounting seat, and the water pump is electrically connected with the temperature sensor.

[0017] Further, the stirring mechanism comprises an outer sleeve, a stirring rod, a one-way air inlet valve, a one-way air outlet valve and a limiting assembly.

[0018] One end of the cross pipe is fixedly connected with a piston, the outer sleeve is slidingly and sealingly connected with the piston, one end of the outer sleeve is provided with the one-way air inlet valve, the outer sleeve is annularly provided with a plurality of one-way air outlet valves, the outer sleeve is connected with a plurality of stirring rods, and the limiting assembly is used for driving the outer sleeve to reciprocatingly slide along the cross pipe.

[0019] Further, the limiting assembly comprises a spring, a baffle and a ring sleeve.

[0020] The outer sleeve is fixedly connected with a baffle, the ring sleeve is rotationally connected with a rotating pipe, springs are arranged between the outer sleeve and the ring sleeve, and an eccentric ring is arranged outside the rotating pipe.

[0021] Further technical solutions, the spraying mechanism includes a spraying pipe and a connecting rod, the spraying pipe is rotationally connected with a horizontal pipe, the spraying pipe and the horizontal pipe are communicated through a rubber pipe, and the connecting rod is rotationally connected between the spraying pipe and the outer sleeve.

[0022] Further technical solutions, the end surface of the mechanism box is provided with a plurality of air guide holes, and the air guide holes are arranged between adjacent two metal fan plates.

[0023] Further technical solutions, the heat-conducting rod is a copper rod.

[0024] Further technical solutions, the LED lamp holder is provided with a plurality of air guide grooves at one end close to the heat-conducting metal sleeve.

[0025] Compared with the prior art, the beneficial effects of the present application are as follows:

[0026] 1. The straight-in high-efficiency new energy vehicle lamp with operation monitoring and regulation function provided by the present application can cool the heat-conducting rod through tap water in the water tank when the temperature of the LED lamp rises.

[0027] 2. When the temperature of the LED lamp rises to a certain value, the temperature sensor controls the water pump to start through the controller, the water pump sucks water through the water pipe, the water pipe sucks the water flow into the metal fan plate, the metal fan plate cools and lowers the temperature of the water flow, and then the water flow is further cooled and lowered in temperature through the spiral water pipe.

[0028] 3. The straight-in high-efficiency new energy vehicle lamp with operation monitoring and regulation function provided by the present application can increase the water flow heat dissipation rate by spraying the water flow out of the spraying pipe through the rotating pipe, the motor and the transmission pair.

[0029] 4. Under the action of the eccentric ring, when the outer sleeve slides outward along the horizontal pipe, the air pressure in the outer sleeve decreases, the tap water in the water tank enters the outer sleeve through the one-way air inlet valve; under the action of the spring tension, the baffle drives the outer sleeve to slide inward along the horizontal pipe, so that the air pressure in the outer sleeve increases, the tap water in the water tank is discharged through the one-way air outlet valve, so as to mix the water flow close to the side wall of the water tank to the middle, further improve the mixing effect of the tap water in the water tank, and improve the water flow heat dissipation rate in the water tank.

[0030] 5. The straight-in high-efficiency new energy vehicle lamp with operation monitoring and regulation function provided by the application, the rotating pipe drives the horizontal pipe to rotate, at this time, the horizontal pipe drives the outer sleeve to rotate synchronously, and the outer sleeve drives the stirring rod to mix and stir the tap water in the water tank, so that the tap water is mixed and the heat dissipation of the heat dissipation rod is accelerated.

[0031] 6. The straight-in high-efficiency new energy vehicle lamp with operation monitoring and regulation function provided by the application, the output shaft of the motor drives the rotating sleeve to rotate through the gear transmission pair, the rotating sleeve drives the fan blade to rotate, the fan blade generates wind power, and the cold wind enters the heat dissipation metal sleeve through the air guide pipe, so as to air-cool and dissipate heat for the heat dissipation metal sleeve and the LED lamp holder; at the same time, the fan blade outputs wind power through the air guide hole, so as to air-cool and dissipate heat for the metal fan plate, and the fan blade generates wind power to air-cool and dissipate heat for the spiral water pipe. BRIEF DESCRIPTION OF DRAWINGS

[0032] Figure 1 It is a structural schematic view of the application;

[0033] Figure 2 It is a front view of the application; Figure 1

[0034] Figure 3 It is a sectional view of the mounting seat and the mechanism box;

[0035] Figure 4 It is an enlarged structural schematic view of the A area in the application; Figure 2

[0036] Figure 5 It is a connection schematic view of the stirring mechanism and the spraying mechanism;

[0037] Figure 6 It is a structural schematic view of the stirring mechanism.

[0038] In the drawings: 1, LED lamp holder; 2, LED lamp; 3, heat dissipation metal sleeve; 4, mounting seat; 5, driving mechanism; 51, motor; 52, gear transmission pair; 53, belt transmission pair; 6, flow guiding mechanism; 61, water pump; 62, spiral water pipe; 63, metal fan plate; 64, water pipe; 7, stirring mechanism; 71, outer sleeve; 72, stirring rod; 73, one-way air inlet valve; 74, one-way air outlet valve; 75, limiting assembly; 751, spring; 752, baffle; 753, ring sleeve; 8, spraying mechanism; 81, spraying pipe; 82, connecting rod; 9, air-cooling assembly; 91, rotating sleeve; 92, fan blade; 93, air guide pipe; 10, mechanism box; 11, rotating pipe; 12, horizontal pipe; 13, water tank; 14, air guide hole; 15, heat dissipation rod; 16, circuit box; 17, socket; 18, air guide groove. DETAILED DESCRIPTION

[0039] ​​In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.

[0040] The specific implementation of the present invention is described in detail below with reference to specific embodiments.

[0041] like Figures 1-6 As shown, the plug-in high-efficiency new energy vehicle lamp with operation monitoring and control function provided by the present invention includes an LED lamp holder 1, an LED lamp 2 is provided on the LED lamp holder 1, and the LED lamp holder 1 is electrically connected to a temperature sensor, and further includes:

[0042] The heat-conducting metal sleeve 3 is threadedly connected to the LED lamp holder 1. The heat-conducting metal sleeve 3 is fixedly connected to the mounting base 4. The mounting base 4 is connected to the mechanism box 10. The mechanism box 10 is rotatably connected to the rotating tube 11. The outer side of the rotating tube 11 is provided with an air-cooling component 9. The air-cooling component 9 is rotatably connected to the inner end surface of the mechanism box 10. The rotating tube 11 and the air-cooling component 9 are jointly connected to a driving mechanism 5. The driving mechanism 5 is used to drive the rotating tube 11 and the air-cooling component 9 to rotate in opposite directions. The driving mechanism 5 is electrically connected to the temperature sensor.

[0043] A water tank 13 is provided in the mounting base 4, and a plurality of heat conducting rods 15 are connected to the LED lamp holder 1. The heat conducting rods 15 are inserted into the water tank 13. A drainage mechanism 6 is provided between the water tank 13 and the rotating tube 11. The drainage mechanism 6 can circulate water in the water tank 13 and the rotating tube 11 and cool the water.

[0044] The rotating pipe 11 is connected to two horizontal pipes 12, and the horizontal pipes 12 are slidably connected to the stirring mechanism 7. The stirring mechanism 7 continuously rotates with the rotating pipe 11 as the rotation center, and the stirring mechanism 7 can slide back and forth relative to the horizontal pipes 12. A spraying mechanism 8 is connected between the horizontal pipes 12 and the stirring mechanism 7. The spraying mechanism 8 can spray the water flow in the rotating pipe 11 to the outside;

[0045] The mounting base 4 is externally connected to a circuit box 16 , the circuit box 16 is connected to a socket 17 , and the socket 17 is electrically connected to the LED lamp 2 .

[0046] When the LED lamp 2 is used, tap water in the water tank 13 cools the heat-conducting rod 15 when the temperature of the LED lamp 2 rises to a certain value, the flow guide mechanism 6 can make the water flow in the water tank 13 and the rotating pipe 11 circulate and cool, the temperature sensor controls the driving mechanism 5 to start, the driving mechanism 5 drives the rotating pipe 11 and the air-cooled assembly 9 to rotate reversely, the spraying mechanism 8 can spray the water flow in the rotating pipe 11 outward, and the air-cooled assembly 9 air-cools and cools the heat-conducting metal sleeve 3, so that the cooling efficiency is increased.

[0047] In the embodiment of the present application, as a preferred embodiment of the present application, the air-cooled assembly 9 comprises a rotating sleeve 91, a fan blade 92 and a wind guide pipe 93.

[0048] The rotating sleeve 91 is rotatably connected to the inner end face of the mechanism box 10, the rotating sleeve 91 is sleeved outside the rotating pipe 11, a plurality of fan blades 92 are fixedly connected to the rotating sleeve 91, and the heat-conducting metal sleeve 3 is communicated with the mechanism box 10 through the wind guide pipe 93.

[0049] In the air-cooled assembly 9, the rotating sleeve 91 drives the fan blade 92 to rotate, the fan blade 92 generates wind power, and the cold air enters the heat-conducting metal sleeve 3 through the wind guide pipe 93, so that the heat-conducting metal sleeve 3 and the LED lamp holder 1 are air-cooled and cooled.

[0050] In the embodiment of the present application, as a preferred embodiment of the present application, the driving mechanism 5 comprises a motor 51, a gear transmission pair 52 and a belt transmission pair 53.

[0051] The motor 51 is fixedly connected to the inner end face of the mechanism box 10, the output shaft of the motor 51 is drivingly connected to the rotating sleeve 91 through the gear transmission pair 52, and the belt transmission pair 53 is arranged between the output shaft of the motor 51 and the rotating pipe 11.

[0052] In the driving mechanism 5, the temperature sensor controls the motor 51 to start through the controller, the motor 51 drives the rotating pipe 11 to rotate through the belt transmission pair 53, the rotating pipe 11 drives the cross pipe 12 and the spraying mechanism 8 to rotate, the cross pipe 12 drives the stirring mechanism 7 to stir and mix the tap water in the water tank 13, the water cooling efficiency of the tap water on the heat-conducting rod 15 is increased, and the spraying mechanism 8 can spray the water flow in the rotating pipe 11 outward, so that the water cooling efficiency is increased; meanwhile, the output shaft of the motor 51 drives the rotating sleeve 91 to rotate through the gear transmission pair 52.

[0053] In the embodiment of the present application, as a preferred embodiment of the present application, the flow guide mechanism 6 comprises a water pump 61, a spiral water pipe 62, a metal fan plate 63 and a water pipe 64.

[0054] The water outlet of the water pump 61 is rotationally connected to one end of the rotating pipe 11, the water inlet of the water pump 61 is communicated with the spiral water pipe 62, the spiral water pipe 62 is arranged in the mechanism box 10, the side wall of the mounting seat 4 is annularly provided with a plurality of metal fan plates 63, the internal cavities of the metal fan plates 63 are all communicated with the spiral water pipe 62 and the water pipe 64, the water pipes 64 are all arranged in the mounting seat 4, and the water pump 61 is electrically connected with the temperature sensor.

[0055] In the drainage mechanism 6, the temperature sensor controls the water pump 61 to start through the controller, the water pump 61 sucks water through the water pipe 64, the water pipe 64 sucks the water flow into the metal fan plate 63, the metal fan plate 63 cools the water flow, then the water flow is further cooled through the spiral water pipe 62, and then the water flow enters the rotating pipe 11, and the spraying mechanism 8 sprays and cools the water flow.

[0056] In the embodiment of the application, as a preferred embodiment of the application, the stirring mechanism 7 comprises a sleeve 71, a stirring rod 72, a one-way air inlet valve 73, a one-way air outlet valve 74 and a limiting assembly 75.

[0057] One end of the cross pipe 12 is fixedly connected with a piston 76, the sleeve 71 is slidingly and sealingly connected with the piston 76, one end of the sleeve 71 is provided with the one-way air inlet valve 73, the sleeve 71 is annularly provided with a plurality of one-way air outlet valves 74, the sleeve 71 is connected with a plurality of stirring rods 72, and the limiting assembly 75 is used for driving the sleeve 71 to reciprocatingly slide along the cross pipe 12.

[0058] In the stirring mechanism 7, the rotating pipe 11 drives the cross pipe 12 to rotate, at this time, the cross pipe 12 drives the sleeve 71 to synchronously rotate, the sleeve 71 drives the stirring rod 72 to mix and stir the tap water in the water tank 13, so that the tap water is mixed and the heat dissipation of the heat dissipation rod 15 is accelerated.

[0059] The limiting assembly 75 is used for driving the sleeve 71 to reciprocatingly slide along the cross pipe 12, at this time, the air pressure of the sleeve 71 changes, when the sleeve 71 slides outwardly along the cross pipe 12, the air pressure in the sleeve 71 decreases, the tap water in the water tank 13 enters the sleeve 71 through the one-way air inlet valve 73, then the sleeve 71 slides inwardly along the cross pipe 12, so that the air pressure in the sleeve 71 increases, the tap water in the water tank 13 is discharged through the one-way air outlet valve 74, so that the water flow close to the side wall of the water tank 13 is mixed to the middle, and the mixing effect of the tap water in the water tank 13 is further improved.

[0060] In the embodiment of the application, as a preferred embodiment of the application, the limiting assembly 75 comprises a spring 751, a baffle 752 and a ring sleeve 753.

[0061] The outer sleeve 71 is fixedly connected with a baffle 752, the ring sleeve 753 is rotationally connected with the rotating pipe 11, the spring 751 is arranged between the outer sleeve 71 and the ring sleeve 753, the rotating pipe 11 is externally provided with an eccentric ring 754, and the baffle 752 abuts against the eccentric ring 754;

[0062] In the limiting assembly 75, under the action of the eccentric ring 754, when the outer sleeve 71 slides outward along the transverse pipe 12, the air pressure in the outer sleeve 71 decreases, and the tap water in the water tank 13 enters the outer sleeve 71 through the one-way air inlet valve 73; under the action of the pulling force of the spring 751, the baffle 752 drives the outer sleeve 71 to slide inward along the transverse pipe 12, so that the air pressure in the outer sleeve 71 increases, and the tap water in the water tank 13 is discharged through the one-way air outlet valve 74, so that the water flow close to the side wall of the water tank 13 is mixed to the middle, and the mixing effect of the tap water in the water tank 13 is further improved.

[0063] In the embodiment of the application, as a preferred embodiment of the application, the spraying mechanism 8 comprises a spraying pipe 81 and a connecting rod 82, the spraying pipe 81 is rotationally connected with the transverse pipe 12, the spraying pipe 81 and the transverse pipe 12 are communicated through a rubber pipe, and the connecting rod 82 is rotationally connected between the spraying pipe 81 and the outer sleeve 71.

[0064] In the spraying mechanism 8, the tap water in the rotating pipe 11 enters the spraying pipe 81 through the transverse pipe 12, and then is sprayed outwards through the spraying pipe 81, so that the heat dissipation rate of the water flow is increased; meanwhile, under the driving of the outer sleeve 71, the connecting rod 82 reciprocatingly drives the spraying pipe 81 to swing, so that the water flow spraying range is further increased, and the water flow heat dissipation efficiency is increased.

[0065] In the embodiment of the application, as a preferred embodiment of the application, the end surface of the mechanism box 10 is provided with a plurality of air guide holes 14, and the air guide holes 14 are arranged between adjacent two metal fan plates 63.

[0066] The rotating sleeve 91 drives the fan blade 92 to rotate, the fan blade 92 generates wind power, and the wind power is output through the air guide hole 14, so that the metal fan plate 63 is air-cooled and heat-dissipated.

[0067] In the embodiment of the application, as a preferred embodiment of the application, the heat-conducting rod 15 is a copper rod, and has good heat-conducting efficiency.

[0068] In the embodiment of the application, as a preferred embodiment of the application, the LED lamp holder 1 is provided with a plurality of air guide grooves 18 at one end close to the heat-conducting metal sleeve 3.

[0069] When the LED lamp 2 is used, the tap water in the water tank 13 is heat-dissipated to the heat-conducting rod 15 when the temperature of the LED lamp 2 is increased;

[0070] When the temperature of the LED lamp 2 rises to a certain value, the temperature sensor controls the water pump 61 to start through the controller, the water pump 61 sucks water through the water pipe 64, the water pipe 64 sucks the water flow into the metal fan plate 63, the metal fan plate 63 cools the water flow, then the water flow is further cooled through the spiral water pipe 62, and then the water flow enters the rotating pipe 11;

[0071] The temperature sensor controls the motor 51 to start through the controller, the motor 51 drives the rotating pipe 11 to rotate through the belt transmission pair 53, the tap water in the rotating pipe 11 enters the spray pipe 81 through the horizontal pipe 12, and then is sprayed out through the spray pipe 81, so that the water flow heat dissipation rate is increased; at the same time, under the driving of the outer sleeve 71, the connecting rod 82 pulls the spray pipe 81 to reciprocate, so that the water flow spraying range is further increased, and the water flow heat dissipation efficiency is increased;

[0072] Under the action of the eccentric ring 754, when the outer sleeve 71 slides outward along the horizontal pipe 12, the air pressure in the outer sleeve 71 decreases, and the tap water in the water tank 13 enters the outer sleeve 71 through the one-way air inlet valve 73; under the action of the spring 751, the baffle 752 drives the outer sleeve 71 to slide inward along the horizontal pipe 12, so that the air pressure in the outer sleeve 71 increases, and the tap water in the water tank 13 is discharged through the one-way air outlet valve 74, so that the water flow close to the side wall of the water tank 13 is mixed to the middle, the mixing effect of the tap water in the water tank 13 is further improved, and the water flow heat dissipation rate in the water tank 13 is improved;

[0073] The rotating pipe 11 drives the horizontal pipe 12 to rotate, at this time the horizontal pipe 12 drives the outer sleeve 71 to rotate synchronously, the outer sleeve 71 drives the stirring rod 72 to mix and stir the tap water in the water tank 13, so that the tap water is mixed and the heat dissipation of the heat conduction rod 15 is accelerated;

[0074] The output shaft of the motor 51 drives the rotating sleeve 91 to rotate through the gear transmission pair 52, the rotating sleeve 91 drives the fan blade 92 to rotate, the fan blade 92 generates wind power, the cold air enters the heat conduction metal sleeve 3 through the air guide pipe 93, so that the heat conduction metal sleeve 3 and the LED lamp holder 1 are air-cooled and heat-dissipated; at the same time, the fan blade 92 outputs the wind power through the air guide hole 14, so that the metal fan plate 63 is air-cooled and heat-dissipated, and the fan blade 92 generates wind power to air-cool and heat-dissipate the spiral water pipe 62.

[0075] The above only describes the preferred embodiments of the present application, and is not used to limit the present application, any modification, equivalent replacement and improvement made within the spirit and principle of the present application shall be included in the protection scope of the present application.

[0076] Furthermore, it should be understood that although the specification is described in terms of embodiments, not every embodiment includes every feature or implementation described herein. The specification can include implicit combinations of explicitly mentioned features and / or implicit combinations of implicitly mentioned features. Such combinations are also expressly included within the scope of the specification and an embodiment.

Claims

1. A direct insertion type high-efficiency new energy vehicle lamp with operation monitoring regulation function, comprising an LED lamp holder (1), a temperature sensor is electrically connected to the LED lamp holder, an LED lamp (2) is arranged on the LED lamp holder (1), characterized in that, Also includes: A heat-conducting metal sleeve (3) is threadedly connected to the LED lamp holder (1); the heat-conducting metal sleeve (3) is fixedly connected to a mounting seat (4); the mounting seat (4) is connected to a mechanism box (10); the mechanism box (10) is rotatably connected to a rotating tube (11); an air-cooling component (9) is sleeved on the outer side of the rotating tube (11); the air-cooling component (9) is rotatably connected to the inner end surface of the mechanism box (10); the rotating tube (11) and the air-cooling component (9) are jointly connected to a driving mechanism (5); the driving mechanism (5) is used to drive the rotating tube (11) and the air-cooling component (9) to rotate in opposite directions; the driving mechanism (5) is electrically connected to a temperature sensor; A water trough (13) is provided in the mounting seat (4), and a plurality of heat-conducting rods (15) are connected to the LED lamp holder (1), and the heat-conducting rods (15) are plugged into the water trough (13). A drainage mechanism (6) is provided between the water trough (13) and the rotating pipe (11), and the drainage mechanism (6) can cause water to circulate in the water trough (13) and the rotating pipe (11) and cool down. The rotating pipe (11) is connected to two transverse pipes (12), and the transverse pipes (12) are slidably connected to a stirring mechanism (7). The stirring mechanism (7) continuously rotates with the rotating pipe (11) as the rotation center, and the stirring mechanism (7) can slide back and forth relative to the transverse pipes (12). A spraying mechanism (8) is connected between the transverse pipes (12) and the stirring mechanism (7), and the spraying mechanism (8) can spray the water flow in the rotating pipe (11) to the outside.

2. The direct insertion type high-efficiency new energy vehicle lamp with operation monitoring regulation function according to claim 1, characterized in that, The air cooling assembly (9) comprises a rotating sleeve (91), fan blades (92) and an air guide pipe (93); The rotating sleeve (91) is rotatably connected to the inner end surface of the mechanism box (10), and the rotating sleeve (91) is sleeved on the outside of the rotating tube (11). The rotating tube (91) is fixedly connected to a plurality of fan blades (92). An air guide pipe (93) is connected between the heat-conducting metal sleeve (3) and the mechanism box (10).

3. The direct insertion type high-efficiency new energy vehicle lamp with operation monitoring regulation function according to claim 2, characterized in that, The driving mechanism (5) comprises a motor (51), a gear transmission pair (52) and a belt transmission pair (53); The motor (51) is fixedly connected to the inner end surface of the mechanism box (10), the output shaft of the motor (51) is connected to the rotating sleeve (91) through a gear transmission pair (52), and the belt transmission pair (53) is arranged between the output shaft of the motor (51) and the rotating tube (11).

4. The direct insertion type high-efficiency new energy vehicle lamp with operation monitoring regulation function according to claim 1, characterized in that, The drainage mechanism (6) includes a water pump (61), a spiral water pipe (62), a metal fan plate (63) and a water pipe (64); The water outlet of the water pump (61) is rotatably connected to one end of the rotating pipe (11), and the water inlet of the water pump (61) is communicated with the spiral water pipe (62). The spiral water pipe (62) is arranged in the mechanism box (10). The side wall of the mounting seat (4) is annularly provided with a plurality of metal fan plates (63). The internal cavities of the metal fan plates (63) are communicated with the spiral water pipe (62) and the water pipe (64). The water pipe (64) is arranged in the mounting seat (4).

5. The direct insertion type high-efficiency new energy vehicle lamp with operation monitoring regulation function according to claim 1, characterized in that, The stirring mechanism (7) comprises an outer sleeve (71), a stirring rod (72), a one-way air inlet valve (73), a one-way air outlet valve (74) and a limiting assembly (75); One end of the transverse pipe (12) is fixedly connected with a piston (76), the outer sleeve (71) is in sliding sealing connection with the piston (76), one end of the outer sleeve (71) is provided with the one-way air inlet valve (73), the outer sleeve (71) is annularly provided with a plurality of one-way air outlet valves (74), the outer sleeve (71) is connected with a plurality of stirring rods (72), and the limiting assembly (75) is used for driving the outer sleeve (71) to reciprocatingly slide along the transverse pipe (12).

6. The direct insertion type high-efficiency new energy vehicle lamp with operation monitoring regulation function according to claim 5, characterized in that, The limiting assembly (75) comprises a spring (751), a baffle (752) and a ring sleeve (753); The outer sleeve (71) is fixedly connected with the baffle (752), the ring sleeve (753) is in rotary connection with the rotating pipe (11), the spring (751) is arranged between the outer sleeve (71) and the ring sleeve (753), and the rotating pipe (11) is externally provided with an eccentric ring (754); the baffle (752) is in abutment with the eccentric ring (754).

7. The direct insertion type high-efficiency new energy vehicle lamp with operation monitoring regulation function according to claim 5, characterized in that, The spraying mechanism (8) comprises a spraying pipe (81) and a connecting rod (82), the spraying pipe (81) is in rotary connection with the transverse pipe (12), the spraying pipe (81) and the transverse pipe (12) are communicated through a rubber pipe, and the connecting rod (82) is in rotary connection between the spraying pipe (81) and the outer sleeve (71).

8. The direct insertion type high-efficiency new energy vehicle lamp with operation monitoring regulation function according to claim 4, characterized in that, End faces of the mechanism box (10) are provided with a plurality of air guide holes (14), and the air guide holes (14) are arranged between adjacent two metal fan plates (63).

9. The direct insertion type high-efficiency new energy vehicle lamp with operation monitoring regulation function according to claim 1, characterized in that, The heat-conducting rod (15) is a copper rod.

10. The direct insertion type high-efficiency new energy vehicle lamp with operation monitoring regulation function according to claim 1, characterized in that, The LED lamp holder (1) is provided with a plurality of air guide grooves (18) at one end close to the heat-conducting metal sleeve (3). The LED lamp holder (1) is provided with a plurality of air guide grooves (18) at one end close to the heat-conducting metal sleeve (3).

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