A plant supplementary light that can protect the light source and has strong heat dissipation
By designing a combination of protective tube, curved reflector and lamp body profile in plant fill lights, forming a gas channel and using a double pore design, the problem of poor heat dissipation performance of existing plant fill lights is solved, achieving more efficient heat dissipation effects and longer service life.
Patent Information
- Application Number
- CN202210024356.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-01-07
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2042-01-07
AI Technical Summary
The existing plant fill light lamps have poor heat dissipation performance, which leads to the explosion of the lamp tubes and the cracks may harm the human body or affect the quality of the plant.
A plant fill light including a first lamp head assembly, a second lamp head assembly, a lamp body assembly and a ballast are designed. The lamp body assembly forms an air channel through the combination of protective tube, curved reflector and lamp body profile to enhance the heat dissipation effect, and continuously removes heat through the double-hole design.
It effectively improves the heat dissipation performance of plant fill lights, reduces the risk of lamp bursting, avoids the harm of ruptures to the human body and plants, and extends the service life of the lamp.
Smart Images

Figure CN114216072B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of lamps, and particularly to a plant supplementary lamp that can protect the light source and has strong heat dissipation. Background Art
[0002] A plant supplementary lamp is a lamp specifically used to assist the growth of plants such as flowers or vegetables, which can supplement sufficient light to plants to promote their growth and improve the quality of flowers or the taste of vegetables. In order to ensure sufficient light, the plant supplementary lamp will work continuously for a long time. Currently, there are a wide variety of plant supplementary lamps at home and abroad, but generally their heat dissipation performance is poor, and the lamp tubes are directly exposed to the air. When the plant supplementary lamp works in a high-temperature environment for a long time, it will not only reduce the service life of the lamp, but also easily cause the lamp tube to burst. The objects generated after the burst fly everywhere, which not only poses a risk to the human body, but also falls into the planted flowers or vegetables, affecting the quality of the plants, and it takes a lot of time to clean up, bringing inconvenience to planting. Summary of the Invention
[0003] In order to overcome the deficiencies of the prior art, the purpose of the present invention is to provide a plant supplementary lamp that can protect the light source and has strong heat dissipation, which can improve the heat dissipation performance of the plant supplementary lamp and protect the lamp tube.
[0004] To solve the above problems, the technical solution adopted by the present invention is as follows: A plant supplementary lamp that can protect the light source and has strong heat dissipation, comprising: a first lamp head assembly, including a first seat body and a first lamp head installed in the first seat body, and the first seat body is provided with a first air hole; a second lamp head assembly, including a second seat body and a second lamp head installed in the second seat body, and the second seat body is provided with a second air hole; a lamp body assembly, including a lamp tube, a protection tube, a curved surface reflector and a lamp body profile, the left and right ends of the lamp tube are respectively connected to the first lamp head and the second lamp head, the protection tube is sleeved outside the lamp tube, and the left and right ends of the protection tube are respectively connected to the first seat body and the second seat body, a first air channel is provided between the protection tube and the lamp tube, and the left and right ends of the first air channel are respectively communicated with the first air hole and the second air hole, the protection tube, the curved surface reflector and the lamp body profile are arranged in sequence from bottom to top, the left and right ends of the curved surface reflector and the left and right ends of the lamp body profile are respectively connected to the first seat body and the second seat body, and the lamp body profile is provided with a second air channel, and the left and right ends of the second air channel are respectively communicated with the first air hole and the second air hole; and a ballast, electrically connected to the first lamp head and the second lamp head.
[0005] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0006] 1. The plant supplementary light has a first air hole and a second air hole at both ends of the lamp body assembly. When in use, cold air can be introduced from the first air hole, and the hot air inside the supplementary light will flow out from the second air hole. Or, cold air can be introduced from the second air hole, and the hot air inside the supplementary light will flow out from the first air hole. The setting method of the double air holes can continuously take away the heat inside the supplementary light, reduce the temperature of the whole supplementary light, so as to prevent the supplementary light from working in a high-temperature environment for a long time, and can improve the service life of the supplementary light;
[0007] 2. On the one hand, the heat inside the supplementary light is continuously taken away, and the lamp tube is not easily burst due to high temperature. On the other hand, the lamp tube is arranged inside the protection tube, which can also prevent the lamp tube from being damaged by external objects and causing rupture. Even if the lamp tube ruptures due to other factors, the protection tube can prevent the broken parts of the lamp tube from causing damage to the external environment, can prevent the broken parts from flying everywhere, so as not to hurt the staff, and can prevent the broken parts from falling into plants such as vegetables or flowers;
[0008] 3. The protection tube can not only protect the lamp tube, but also place the lamp tube in an internal environment. A first air channel is formed between the protection tube and the lamp tube, which can facilitate the flow of gas, so as to continuously take away the heat inside the supplementary light, especially the heat generated around the lamp tube;
[0009] 4. The arc-shaped reflector can reflect the light emitted from the upper part of the lamp tube, so that the light changes its transmission direction and irradiates the planted plants, and the light is only reflected once inside the arc-shaped reflector, which can reduce the loss of the light source, thus making more full use of the light source and reducing the heat generated inside the arc-shaped reflector during the reflection process;
[0010] 5. The lamp body profile is provided with a second air channel, which can facilitate the flow of gas, so as to continuously take away the heat inside the supplementary light, especially the heat around the arc-shaped reflector. The combined action of the second air channel and the first air channel can continuously take away the heat inside the supplementary light, greatly reducing the working temperature of the supplementary light and having a strong heat dissipation effect.
[0011] For the above-mentioned plant supplementary light that can protect the light source and has strong heat dissipation, the lamp body assembly further includes a first lamp body baffle and a second lamp body baffle. The left end of the arc-shaped reflector and the left end of the lamp body profile are both connected to the first seat body through the first lamp body baffle, and the right end of the arc-shaped reflector and the right end of the lamp body profile are both connected to the second seat body through the second lamp body baffle.
[0012] The above-mentioned plant supplementary light that can protect the light source and has strong heat dissipation. The arc-shaped reflector includes an arc-shaped reflector sheet, a first reflector baffle and a second reflector baffle provided at the left and right ends of the arc-shaped reflector sheet. A plurality of first mounting holes are correspondingly provided on both the first lamp body baffle and the first reflector baffle, and a plurality of second mounting holes are correspondingly provided on both the second lamp body baffle and the second reflector baffle. The positions of the plurality of first mounting holes and the plurality of second mounting holes correspond one by one. The left and right ends of the arc-shaped reflector sheet are respectively movably clamped to the first reflector baffle and the second reflector baffle. The front and rear sides of the arc-shaped reflector sheet can be contracted or expanded. After deformation, the left and right ends of the arc-shaped reflector sheet are respectively fixedly connected to the first mounting holes and the second mounting holes at corresponding positions.
[0013] The above-mentioned plant supplementary light that can protect the light source and has strong heat dissipation. The upper part of the arc-shaped reflector sheet has a downward recess, and two sets of folded line parts are formed on the front and rear sides of the recess. The front and rear sides of the arc-shaped reflector sheet can be respectively contracted or expanded according to the two sets of folded line parts.
[0014] The above-mentioned plant supplementary light that can protect the light source and has strong heat dissipation. The lamp body assembly further includes a first lamp body wing plate and a second lamp body wing plate. The first lamp body wing plate and the second lamp body wing plate are respectively distributed on the front and rear sides of the lamp body profile. The upper ends of the first lamp body wing plate and the second lamp body wing plate are respectively hinged to the lamp body profile, and the lower ends of the first lamp body wing plate and the second lamp body wing plate are respectively clamped to the lower end of the arc-shaped reflector sheet.
[0015] The above-mentioned plant supplementary light that can protect the light source and has strong heat dissipation. The left and right ends of the protection tube are respectively provided with a first circumferential groove and a second circumferential groove. The right end of the first seat body, the first lamp body baffle and the first reflector baffle are all clamped to the first circumferential groove, and the left end of the second seat body, the second lamp body baffle and the second reflector baffle are all clamped to the second circumferential groove.
[0016] The above-mentioned plant supplementary light that can protect the light source and has strong heat dissipation. The first seat body includes a first upper cover and a first lower cover. The first air hole is opened on the first upper cover. The first lamp head is installed in the first lower cover. The first lower cover can be rotatably buckled and connected to the first upper cover. The second seat body includes a second upper cover and a second lower cover. The second air hole is opened on the second upper cover. The second lamp head is installed in the second lower cover. The second lower cover can be rotatably buckled and connected to the second upper cover.
[0017] The above-mentioned plant supplementary light that can protect the light source and has strong heat dissipation, one end of the first lower cover is rotatably connected to one end of the first upper cover, and the other end of the first lower cover is magnetically connected to the other end of the first upper cover. One end of the second lower cover is rotatably connected to one end of the second upper cover, and the other end of the second lower cover is magnetically connected to the other end of the second upper cover.
[0018] The above-mentioned plant supplementary light that can protect the light source and has strong heat dissipation, the lower end of the first lamp body baffle is provided with a first elastic baffle. After the first lamp body baffle is connected to the first base body, the first elastic baffle is located on the lower side of the first lower cover. The lower end of the second lamp body baffle is provided with a second elastic baffle. After the second lamp body baffle is connected to the second base body, the second elastic baffle is located on the lower side of the second lower cover.
[0019] The above-mentioned plant supplementary light that can protect the light source and has strong heat dissipation, the first base body further includes a first air hole baffle and a first sealing baffle. The first air hole is opened on the first air hole baffle. Both the front and rear sides of the first upper cover are provided with first side openings. The first air hole baffle is detachably connected to one of the first side openings, and the first sealing baffle is detachably connected to the other first side opening. The second base body further includes a second air hole baffle and a second sealing baffle. The second air hole is opened on the second air hole baffle. Both the front and rear sides of the second upper cover are provided with second side openings. The second air hole baffle is detachably connected to one of the second side openings, and the second sealing baffle is detachably connected to the other second side opening.
[0020] The present invention will be further described in detail below with reference to the drawings and specific embodiments. Description of the Drawings
[0021] Figure 1 Schematic diagram of the overall structure of the plant supplementary light according to the embodiment of the present invention;
[0022] Figure 2 Schematic diagram of the gas flow in the embodiment of the present invention;
[0023] Figure 3 Schematic diagram of the arc surface reflector reflecting light in the embodiment of the present invention;
[0024] Figure 4 Exploded view of the plant supplementary light according to the embodiment of the present invention (partial structure exploded);
[0025] Figure 5 For Figure 4 Partial enlarged view at A in
[0026] Figure 6 For Figure 1 Bottom view of
[0027] Figure 7 is Figure 6 The partial enlarged view at position B in
[0028] Figure 8 The structural schematic diagram of the ballast in the embodiment of the present invention;
[0029] Figure 9 The exploded view of the ballast in the embodiment of the present invention;
[0030] Figure 10 is Figure 8 The left view of the ballast shown in
[0031] Figure 11 is Figure 8 The right view of the ballast shown in
[0032] Figure 12 The bottom view of the mating state of the first lamp cap assembly, the lamp body assembly and the second lamp cap assembly in the embodiment of the present invention;
[0033] Figure 13 is Figure 12 The partial enlarged view at position C in
[0034] Figure 14 The exploded view (partial structure explosion) of the first lamp cap assembly, the lamp body assembly and the second lamp cap assembly in the embodiment of the present invention;
[0035] Figure 15 The partial structural schematic diagram of the lamp body assembly in the embodiment of the present invention;
[0036] Figure 16 is Figure 15 The partial enlarged view at position D in
[0037] Figure 17 is Figure 15 The partial enlarged view at position E in
[0038] Figure 18 The mating relationship diagram of the lamp tube and the protection tube in the embodiment of the present invention;
[0039] Figure 19 The exploded view of the first lamp cap assembly in the embodiment of the present invention;
[0040] Figure 20 The structural schematic diagram of the first lamp cap assembly in the open state of the first lower cover in the embodiment of the present invention.
[0041] Explanation of the reference numerals in the drawings:
[0042] 100 First lamp holder assembly, 110 First base body, 111 First air hole, 112 First upper cover, 1121 Side opening, 113 First lower cover, 114 First air hole baffle, 115 First sealing baffle, 116 First card slot, 120 First lamp holder;
[0043] 200 Second lamp holder assembly, 210 Second base body, 211 Second air hole, 212 Second hanging ring;
[0044] 300 Lamp body assembly, 310 Lamp tube, 320 Protection tube, 321 First air channel, 322 First circumferential groove, 323 Second circumferential groove, 330 Arc-shaped reflector, 331 Arc-shaped reflecting sheet, 3311 Concave part, 3312 Fold line part, 3313 Second card slot, 3314 Bending part, 332 First reflector baffle, 3321 First mounting hole, 333 Second reflector baffle, 3331 Second mounting hole, 340 Lamp body profile, 341 Second air channel, 342 Connecting column, 350 First lamp body baffle, 351 First elastic retaining piece, 360 Second lamp body baffle, 370 First lamp body wing plate, 371 First clamping step, 380 Second lamp body wing plate;
[0045] 400 Ballast, 410 Housing, 411 Heat dissipation teeth, 412 Clamping block, 413 First hanging ring, 420 Left baffle, 421 Input terminal, 422 Network port dimming module, 423 Digital display module, 424 Manual dimming module, 430 Right baffle, 431 Air permeable valve, 432 Rainproof connector, 440 Control component. Detailed implementation mode
[0046] The following details the embodiments of the present invention. Refer to Figures 1 to 20 , the embodiments of the present invention provide a plant supplementary light that can protect the light source and has strong heat dissipation. As Figure 1 and Figure 4 shown, this plant supplementary light includes a first lamp holder assembly 100, a lamp body assembly 300, a second lamp holder assembly 200, and a ballast 400. As Figure 19 and Figure 20 shown, the first lamp holder assembly 100 includes a first base body 110 and a first lamp holder 120 installed in the first base body 110. The first base body 110 is provided with a first air hole 111; the second lamp holder assembly 200 includes a second base body 210 and a second lamp holder installed in the second base body 210. The second base body 210 is provided with a second air hole 211; as Figure 12 , Figure 14 , Figure 15 and Figure 18As shown in the figure, the lamp body assembly 300 includes a lamp tube 310, a protective tube 320, a curved reflector 330, and a lamp body profile 340. The left and right ends of the lamp tube 310 are respectively connected to the first lamp cap 120 and the second lamp cap. The protective tube 320 is sleeved outside the lamp tube 310, and the left and right ends of the protective tube 320 are respectively connected to the first base 110 and the second base 210. A first air passage 321 is provided between the protective tube 320 and the lamp tube 310. The left and right ends of the first air passage 321 are respectively communicated with the first air hole 111 and the second air hole 211. The protective tube 320, the curved reflector 330, and the lamp body profile 340 are arranged in sequence from bottom to top. The left and right ends of the curved reflector 330 and the left and right ends of the lamp body profile 340 are respectively connected to the first base 110 and the second base 210. The lamp body profile 340 is provided with a second air passage 341. The left and right ends of the second air passage 341 are respectively communicated with the first air hole 111 and the second air hole 211; the ballast 400 is electrically connected to the first lamp cap 120 and the second lamp cap.
[0047] In the embodiment of the present invention, the plant supplementary light controls the discharge start and shutdown of the first lamp cap 120 and the second lamp cap through the ballast 400, thereby realizing the opening and closing of the entire plant supplementary light. When the plant supplementary light needs to be used, the ballast 400 controls the first lamp cap 120 and the second lamp cap to discharge, so that the lamp tube 310 is lit, and plays a current-limiting role during subsequent use, enabling the plant supplementary light to work normally.
[0048] As Figure 2 shown in the schematic diagram of gas flow in the figure, the plant supplementary light is provided with a first air hole 111 and a second air hole 211 at both ends of the lamp body assembly 300. During use, cold air can be introduced into the first air hole 111, and the hot air inside the supplementary light will flow out from the second air hole 211. Or, cold air can be introduced into the second air hole 211, and the hot air inside the supplementary light will flow out from the first air hole 111. Specifically, the implementation process can be blowing cold air into the first air hole 111 to make the hot air flow out from the second air hole 211, or pumping air from the second air hole 211 to extract the hot air inside the plant supplementary light, and the cold air will enter the interior from the first air hole 111. Of course, it can also be blowing cold air into the second air hole 211 to make the hot air flow out from the first air hole 111, or pumping air from the first air hole 111 to extract the hot air inside, and the cold air will enter the interior from the second air hole 211. The setting method of the double air holes can continuously take away the heat inside the supplementary light, reduce the temperature of the entire supplementary light, so as to prevent the supplementary light from working in a high-temperature environment for a long time, and can improve the service life of the supplementary light. The blowing or pumping method can not only continuously take away the internal heat of the plant supplementary light, but also cool the plant supplementary light by introducing cold air, so that the plant supplementary light has strong heat dissipation performance.
[0049] The heat inside the supplementary light can be continuously removed, and the supplementary light does not need to work in a high-temperature environment for a long time. On the one hand, the lamp tube 310 will not be easily burst due to high temperature. On the other hand, the lamp tube 310 is arranged inside the protection tube 320, which can also prevent the lamp tube 310 from being damaged by external objects and causing rupture. Even if the lamp tube 310 ruptures due to other factors, the protection tube 320 can prevent the broken objects of the lamp tube 310 from causing damage to the external environment, avoid the broken objects from flying everywhere to prevent injury to the staff, and prevent the broken objects from falling into plants such as vegetables or flowers. In addition, the protection tube 320 can not only protect the lamp tube 310, but also place the lamp tube 310 in an internal environment. A first air channel 321 is formed between the protection tube 320 and the lamp tube 310, which can facilitate the flow of gas, so as to continuously take out the heat inside the supplementary light, especially the heat generated around the lamp tube 310, and further improve the heat dissipation performance of the supplementary light.
[0050] As Figure 3 shown, the arc-shaped reflector 330 can reflect the light emitted from the upper part of the lamp tube 310, so that the direction of transmission of this part of the light is changed and the plants being planted are irradiated. And the light is only reflected once inside the arc-shaped reflector 330, which can reduce the loss of the light source, thus making more full use of the light source and reducing the heat generated inside the arc-shaped reflector 330 during the reflection process. In addition, the lamp body profile 340 is provided with a second air channel 341, which can facilitate the flow of gas, so as to continuously take out the heat inside the supplementary light, especially the heat generated around the arc-shaped reflector 330. The combined action of the second air channel 341 and the first air channel 321 can continuously take out the heat inside the supplementary light, greatly reducing the working temperature of the supplementary light and having a strong heat dissipation effect. Specifically, as Figure 15 shown, the lamp body profile 340 is close to or abuts against the upper end of the arc-shaped reflector 330, so that the second air channel 341 is closer to the arc-shaped reflector 330, which is convenient for better taking away the heat generated by the arc-shaped reflector 330. Specifically, the periphery of the second air channel 341 is closed, and only the two ends can be respectively communicated with the first air hole 111 and the second air hole 211 to facilitate the flow of gas.
[0051] Furthermore, referring to Figures 8 to 11, the ballast 400 includes a housing 410, a left baffle 420, a right baffle 430, and a control component 440 disposed within the housing 410. The ballast 400 is electrically connected to the first lamp cap 120 and the second lamp cap through the control component 440. For the connection method and the control and current-limiting principles of the ballast 400, reference can be made to the use of a common ballast 400 and a common fluorescent tube, which will not be elaborated here. Specifically, heat dissipation teeth 411 are provided on the exterior of the housing 410, and the heat dissipation teeth 411 on the front and rear sides are inclined outward from top to bottom. On the one hand, the heat dissipation teeth 411 can fully dissipate the heat generated by the control component 440 within the ballast 400. On the other hand, the inclined heat dissipation teeth 411 can prevent water accumulation on the heat dissipation teeth 411, so as to avoid water seeping into the interior through the fixing screws and damaging the internal control component 440. Specifically, referring to Figure 10 , the left baffle 420 is provided with an input terminal 421, a plurality of network port dimming modules 422, a digital display module 423, and a manual dimming module 424. The input terminal 421, the plurality of network port dimming modules 422, the digital display module 423, and the manual dimming module 424 are all electrically connected to the internal control component 440, which can facilitate the energization of the ballast 400, control the turning on and off of the ballast 400, and adjust the light intensity or color of the supplementary light. Referring to Figure 11 , the right baffle 430 is provided with a breather valve 431 and a rainproof connector 432 for fixing the output wire.
[0052] Specifically, as Figure 1 、 Figure 4 and Figure 6 shown, the ballast 400 is installed on one side of the first lamp cap assembly 100. The ballast 400 is fixedly connected to the first lamp cap assembly 100, the lamp body assembly 300, and the second lamp cap assembly 200 through long screws. The long screws sequentially connect the ballast 400, the first lamp cap assembly 100, the lamp body assembly 300, and the second lamp cap assembly 200, and are locked at both ends with gaskets and nuts. Further, as Figure 5 shown, a downwardly protruding block 412 is provided at the lower right end of the housing 410, and a first card slot 116 is provided on the left side wall of the first seat body 110. As Figure 7 shown, when installing the ballast 400, the block 412 at the lower right end of the ballast 400 can be inserted into the first card slot 116, so as to be able to support the ballast 400 and improve the installation strength of the ballast 400. Specifically, a first hanging ring 413 is provided at the upper end of the ballast 400, and a second hanging ring 212 is provided at the upper end of the second seat body 210 and / or the upper end of the lamp body profile 340, which can facilitate the user to install this supplementary light above the plants for use. Of course, a hanging ring can also be provided at the upper end of the first seat body 110 to facilitate the installation of the plant supplementary light.
[0053] Further, referring to Figure 12 and Figure 14, the lamp body assembly 300 further includes a first lamp body baffle 350 and a second lamp body baffle 360. The left ends of the arc-shaped reflector 330 and the lamp body profile 340 are both connected to the first base body 110 through the first lamp body baffle 350, and the right ends of the arc-shaped reflector 330 and the lamp body profile 340 are both connected to the second base body 210 through the second lamp body baffle 360. This can facilitate the installation of the arc-shaped reflector 330 and the lamp body profile 340. At the same time, it can also facilitate the enclosure of the internal environment, enabling the air to flow through the first air hole 111, the first air channel 321, the second air channel 341, and the second air hole 211, so as to better take away heat.
[0054] Further, referring to Figure 14 and Figure 15 , the arc-shaped reflector 330 includes an arc-shaped reflecting sheet 331, a first reflector baffle 332 and a second reflector baffle 333 provided at the left and right ends of the arc-shaped reflecting sheet 331 respectively. A plurality of first mounting holes 3321 are correspondingly provided on both the first lamp body baffle 350 and the first reflector baffle 332, and a plurality of second mounting holes 3331 are correspondingly provided on both the second lamp body baffle 360 and the second reflector baffle 333. The positions of the plurality of first mounting holes 3321 and the plurality of second mounting holes 3331 correspond one by one. The left and right ends of the arc-shaped reflecting sheet 331 are respectively movably clamped to the first reflector baffle 332 and the second reflector baffle 333. The front and rear sides of the arc-shaped reflecting sheet 331 can be contracted or expanded. After deformation, the left and right ends of the arc-shaped reflecting sheet 331 are respectively fixedly connected to the first mounting holes 3321 and the second mounting holes 3331 at the corresponding positions. Users can change the contraction angle or expansion angle of the front and rear sides of the arc-shaped reflector 330 according to needs. Each set of corresponding first mounting holes 3321 and second mounting holes 3331 can correspond to a contraction angle or expansion angle. After the user adjusts the angle, the arc-shaped reflector 330 can be fixedly connected to the first mounting holes 3321 and the second mounting holes 3331 at the corresponding positions. The adjustment is relatively convenient and fast, which is convenient for use.
[0055] Specifically, as Figure 14 shown, the upper part of the arc-shaped reflecting sheet 331 has a downward concave part 3311, and two sets of folding parts 3312 are formed on the front and rear sides of the concave part 3311. The front and rear sides of the arc-shaped reflecting sheet 331 can be respectively contracted or expanded according to the two sets of folding parts 3312, which can facilitate the contraction or expansion of the arc-shaped reflecting sheet 331. Specifically, as Figures 14 to 16As shown, both the left and right sides of the arc-shaped reflector 331 are lapped with the first reflector baffle 332 and the second reflector baffle 333 through the bending portions 3314, which can not only prevent the arc-shaped reflector 331 from detaching from the first reflector baffle 332 and the second reflector baffle 333, but also enable the left and right sides of the arc-shaped reflector 331 to move relative to the first reflector baffle 332 and the second reflector baffle 333, so as to facilitate the adjustment of the contraction or expansion of the arc-shaped reflector 331.
[0056] Furthermore, referring to Figure 15 , the lamp body assembly 300 further includes a first lamp body wing plate 370 and a second lamp body wing plate 380. The first lamp body wing plate 370 and the second lamp body wing plate 380 are respectively distributed on the front and rear sides of the lamp body profile 340. The upper ends of the first lamp body wing plate 370 and the second lamp body wing plate 380 are hinged to the lamp body profile 340, and the lower ends of the first lamp body wing plate 370 and the second lamp body wing plate 380 are respectively clamped to the lower end of the arc-shaped reflector 331. The first lamp body wing plate 370 and the second lamp body wing plate 380 can protect the arc-shaped reflector 331. At the same time, when it is necessary to adjust the contraction or expansion of the arc-shaped reflector 331, it can be achieved by adjusting the first lamp body wing plate 370 and the second lamp body wing plate 380. After adjusting to the appropriate use position, the arc-shaped reflector 331, the first lamp body wing plate 370, and the second lamp body wing plate 380 are fixedly connected to the first mounting holes 3321 and the second mounting holes 3331 at the corresponding positions.
[0057] Specifically, referring to Figures 15 to 17 , the upper part of the lamp body profile 340 is provided with connecting columns 342 running left and right, and connecting columns 342 are provided on both the front and rear sides of the lamp body profile 340 to facilitate the connection of the first lamp body wing plate 370 and the second lamp body wing plate 380 respectively. The upper end of the first lamp body wing plate 370 is provided with a first arc-shaped connecting groove running left and right, and the upper end of the second lamp body wing plate 380 is provided with a second arc-shaped connecting groove running left and right. The first lamp body wing plate 370 and the second lamp body wing plate 380 are respectively connected to the two connecting columns 342 on the lamp body profile 340 through the first arc-shaped connecting groove and the second arc-shaped connecting groove. Specifically, the lower ends of the first lamp body wing plate 370 and the second lamp body wing plate 380 are respectively provided with a first clamping step 371 and a second clamping step, and the front and rear lower sides of the arc-shaped reflector 331 are respectively provided with second clamping grooves 3313. The first lamp body wing plate 370 and the second lamp body wing plate 380 respectively clamp the two second clamping grooves 3313 of the arc-shaped reflector 331 through the first clamping step 371 and the second clamping step.
[0058] Furthermore, referring to Figure 18The left and right ends of the protection tube 320 are respectively provided with a first circumferential groove 322 and a second circumferential groove 323. The right end of the first base body 110, the first lamp body baffle 350 and the first reflector baffle 332 are all clamped with the first circumferential groove 322. The left end of the second base body 210, the second lamp body baffle 360 and the second reflector baffle 333 are all clamped with the second circumferential groove 323. The first base body 110, the first lamp body baffle 350, the first reflector and the protection tube 320 are fixed as a whole, and the second base body 210, the second lamp body baffle 360, the second reflector baffle 333 and the protection tube 320 are fixed as a whole, which can improve the installation strength of the entire fill light, and at the same time, it is also convenient to close the interior and form an internal environment so that the gas can circulate and take away the heat. Specifically, the protection tube 320 is made of quartz glass, which can protect the lamp tube 310 without causing much impact on the conduction of light. The heat emitted by the lamp tube 310 can be continuously taken away by the airflow and will not accumulate between the lamp tube 310 and the protection tube 320.
[0059] Further, refer to Figure 19 and Figure 20 The first base body 110 includes a first upper cover 112 and a first lower cover 113, the first air hole 111 is opened in the first upper cover 112, the first lamp holder 120 is installed in the first lower cover 113, the first lower cover 113 can be rotatably buckled and connected to the first upper cover 112, the second base body 210 includes a second upper cover and a second lower cover, the second air hole 211 is opened in the second upper cover, the second lamp holder is installed in the second lower cover, and the second lower cover can be rotatably buckled and connected to the second upper cover. It is convenient to install the first lamp holder 120 and the second lamp holder, and it is also convenient to disassemble and repair the first lamp holder 120 and the second lamp holder. Specifically, the first lamp body baffle 350, the first reflector baffle 332 and the first upper cover 112 are all clamped with the upper half of the first circumferential groove 322, and after the first lower cover 113 is rotated and fastened to connect with the first upper cover 112, the first lower cover 113 is clamped with the lower half of the first circumferential groove 322, so that the first seat body 110 can only communicate with the outside through the first air hole 111, and can only achieve gas flow through the first air channel 321 and the second air channel 341. Similarly, the second lamp body baffle 360, the second reflector baffle 333 and the second upper cover are all clamped with the upper half of the second circumferential groove 323, and after the second lower cover is rotated and fastened to connect with the second upper cover, the second lower cover is clamped with the lower half of the second circumferential groove 323, so that the second seat body 210 can only communicate with the outside through the second air hole 211, and can only achieve gas flow through the first air channel 321 and the second air channel 341.
[0060] Specifically, one end of the first lower cover 113 is rotatably connected to one end of the first upper cover 112, and the other end of the first lower cover 113 is magnetically connected to the other end of the first upper cover 112. One end of the second lower cover is rotatably connected to one end of the second upper cover, and the other end of the second lower cover is magnetically connected to the other end of the second upper cover. The installation and disassembly of the first lower cover 113 and the second lower cover can be conveniently and quickly realized. Specifically, magnets can be installed at the other end of the first lower cover 113, the other end of the first upper cover 112, the other end of the second lower cover, and the other end of the second upper cover. When the first lower cover 113 is rotationally snapped to connect with the first upper cover 112, the first lower cover 113 and the first upper cover 112 can be fixed by the adsorption of the magnets. When the second lower cover is rotationally snapped to connect with the second upper cover, the second lower cover and the second upper cover can be fixed by the adsorption of the magnets.
[0061] Further, referring to Figure 12 and Figure 13 , a first elastic flap 351 is provided at the lower end of the first lamp body baffle 350. After the first lamp body baffle 350 is connected to the first base 110, the first elastic flap 351 is located below the first lower cover 113. A second elastic flap is provided at the lower end of the second lamp body baffle 360. After the second lamp body baffle 360 is connected to the second base 210, the second elastic flap is located below the second lower cover. After the first lower cover 113 is rotationally snapped to connect with the first upper cover 112, the first elastic flap 351 can be bent to the left so that the first elastic flap 351 is located below the first lower cover 113. When the magnet of the first upper cover 112 or the first lower cover 113 fails, the first elastic flap 351 can stop the first lower cover 113 to prevent the first lower cover 113 from falling. Similarly, after the second lower cover is rotationally snapped to connect with the second upper cover, the second elastic flap can be bent to the right so that the second elastic flap is located below the second lower cover. When the magnet of the second upper cover or the second lower cover fails, the second elastic flap can stop the second lower cover to prevent the second lower cover from falling.
[0062] Further, referring to Figure 19 and Figure 20The first base body 110 further includes a first sealing baffle 115, the front and rear sides of the first upper cover 112 are both provided with first side openings 1121, the first air hole 111 is connected to the outside through one of the first side openings 1121, and the first sealing baffle 115 is detachably connected to the other first side opening 1121, and the second base body 210 further includes a second sealing baffle, the front and rear sides of the second upper cover are both provided with second side openings, the second air hole 211 is connected to the outside through one of the second side openings, and the second sealing baffle is detachably connected to the other second side opening. This structure can facilitate users to replace the positions of the first air hole 111 and the second air hole 211. For example, when the first air hole 111 needs to be opened on the front side of the first base body 110, the first side opening 1121 on the rear side can be closed by the first sealing baffle 115, and when the first air hole 111 needs to be opened on the rear side of the first base body 110, the first side opening 1121 on the front side can be closed by the first sealing baffle 115.
[0063] Specifically, continue to refer to Figure 19 and Figure 20 The first seat body 110 also includes a first air hole baffle 114, and the first air hole baffle 114 is connected to one of the first side openings 1121. When replacing the positions of the first air hole baffle 114 and the first sealing baffle 115, the first elastic baffle 351 can be pushed aside and the first lower cover 113 can be forcefully opened. At this time, the first air hole baffle 114 and the first sealing baffle 115 can be removed, and the positions of the first air hole baffle 114 and the first sealing baffle 115 can be replaced, and the first lower cover 113 can be rotated and fastened to connect the first upper cover 112 again, and then the first elastic baffle 351 can be moved to the bottom of the first lower cover 113 again to prevent the first lower cover 113, the first sealing baffle 115 and the first air hole baffle 114 from falling off after the magnetic force fails. Similarly, the second base body 210 also includes a second air pore baffle. When the second air pore 211 is connected to one of the second side openings, when the positions of the second air pore baffle and the second sealing baffle are replaced, the second elastic baffle can be pushed aside and the second lower cover can be forcefully opened. At this time, the second air pore baffle and the second sealing baffle can be removed, and the positions of the second air pore baffle and the second sealing baffle can be replaced. The second upper cover can be rotated and snapped together to connect the second upper cover, and then the second elastic baffle can be moved to the bottom of the second lower cover to prevent the second lower cover, the second sealing baffle and the second air pore baffle from falling off after the magnetic force fails.
[0064] It should be noted that in the embodiments of the present invention, the structure of the second lamp holder assembly 200 can refer to the structure of the first lamp holder assembly 100. Therefore, a schematic diagram of the structure of the second lamp holder assembly 200 will not be provided in detail. However, the structures of the first base 110 and the second base 210 are not exactly the same. The first base 110 and the second base 210 can be provided with openings or baffles according to the installation requirements. For example, at the position connected to the ballast 400, an opening can be appropriately formed in the first base 110 to facilitate the insertion of the rainproof joint 432. The right baffle 430 of the ballast 400 can close the left side of the first base 110, so that the first base 110 can only communicate with the outside through the first air hole 111. Since the ballast 400 does not need to be installed on the right side of the second base 210, the right side of the second base 210 is completely closed, so that the second base 210 can only communicate with the outside through the second air hole 211.
[0065] It should be noted that in the description of the present invention, if there is any reference to the orientation description, such as the orientation or positional relationship indicated by up, down, front, back, left, right, etc., it is all based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed or operated in a specific orientation, and should not be construed as a limitation to the present invention.
[0066] In the description of the present invention, the meaning of several is one or more, and the meaning of multiple is two or more. Understandings such as greater than, less than, exceeding, etc. do not include the present number, and understandings such as above, below, within, etc. include the present number. If there is a description of the first or the second, etc., it is only for the purpose of distinguishing technical features and cannot be construed as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features or implicitly indicating the sequence relationship of the indicated technical features.
[0067] In the description of the present invention, unless otherwise clearly defined, words such as setting, installing, connecting, etc. should be understood in a broad sense. Those skilled in the art can reasonably determine the specific meanings of the above words in the present invention in combination with the specific content of the technical solution.
[0068] The above embodiments are only the preferred embodiments of the present invention and cannot be used to limit the scope of protection of the present invention. Any non-substantial changes and substitutions made by those skilled in the art based on the present invention belong to the scope of protection required by the present invention.
Claims
1. A plant supplementary light that can protect the light source and has strong heat dissipation, characterized in that, it includes: A first lamp head assembly (100), including a first body (110) and a first lamp head (120) installed in the first body (110), and the first body (110) is provided with a first air hole (111); A second lamp head assembly (200), including a second body (210) and a second lamp head installed in the second body (210), and the second body (210) is provided with a second air hole (211); A lamp body assembly (300), including a lamp tube (310), a protection tube (320), a curved surface reflector (330) and a lamp body profile (340). The left and right ends of the lamp tube (310) are respectively connected to the first lamp head (120) and the second lamp head. The protection tube (320) is sleeved outside the lamp tube (310), and the left and right ends of the protection tube (320) are respectively connected to the first body (110) and the second body (210). A first air channel (321) is provided between the protection tube (320) and the lamp tube (310), and the left and right ends of the first air channel (321) are respectively communicated with the first air hole (111) and the second air hole (211). The protection tube (320), the curved surface reflector (330) and the lamp body profile (340) are arranged in sequence from bottom to top. The left and right ends of the curved surface reflector (330) and the left and right ends of the lamp body profile (340) are respectively connected to the first body (110) and the second body (210). The lamp body profile (340) is provided with a second air channel (341), and the second air channel (341) is a straight channel extending in the left-right direction. The left and right ends of the second air channel (341) are respectively communicated with the first air hole (111) and the second air hole (211). The lamp body profile (340) is close to or abuts against the upper end of the curved surface reflector (330), and the periphery of the second air channel (341) is closed; and A ballast (400), electrically connected to the first lamp head (120) and the second lamp head.
2. The plant supplementary light that can protect the light source and has strong heat dissipation according to claim 1, characterized in that, the lamp body assembly (300) further includes a first lamp body baffle (350) and a second lamp body baffle (360). The left end of the curved surface reflector (330) and the left end of the lamp body profile (340) are both connected to the first body (110) through the first lamp body baffle (350). The right end of the curved surface reflector (330) and the right end of the lamp body profile (340) are both connected to the second body (210) through the second lamp body baffle (360).
3. The plant supplementary light that can protect the light source and has strong heat dissipation according to claim 2, characterized in that, The arc-shaped reflector (330) includes an arc-shaped reflecting sheet (331), a first reflector baffle (332) and a second reflector baffle (333) provided at the left and right ends of the arc-shaped reflecting sheet (331). A plurality of first mounting holes (3321) are correspondingly provided on both the first lamp body baffle (350) and the first reflector baffle (332), and a plurality of second mounting holes (3331) are correspondingly provided on both the second lamp body baffle (360) and the second reflector baffle (333). The positions of the plurality of first mounting holes (3321) and the plurality of second mounting holes (3331) correspond one by one. The left and right ends of the arc-shaped reflecting sheet (331) are respectively movably clamped to the first reflector baffle (332) and the second reflector baffle (333). The front and rear sides of the arc-shaped reflecting sheet (331) can be contracted or expanded. After deformation, the left and right ends of the arc-shaped reflecting sheet (331) are respectively fixedly connected to the corresponding first mounting holes (3321) and the second mounting holes (3331).
4. The plant supplementary light capable of protecting the light source and having strong heat dissipation according to claim 3, wherein, The upper part of the arc-shaped reflecting sheet (331) has a downward recess (3311), and two groups of folded line parts (3312) are formed on the front and rear sides of the recess (3311). The front and rear sides of the arc-shaped reflecting sheet (331) can be respectively contracted or expanded according to the two groups of folded line parts (3312).
5. The plant supplementary light capable of protecting the light source and having strong heat dissipation according to claim 3, wherein, The lamp body assembly (300) further includes a first lamp body wing plate (370) and a second lamp body wing plate (380). The first lamp body wing plate (370) and the second lamp body wing plate (380) are respectively distributed on the front and rear sides of the lamp body profile (340), and the upper ends of the first lamp body wing plate (370) and the second lamp body wing plate (380) are respectively hinged to the lamp body profile (340). The lower ends of the first lamp body wing plate (370) and the second lamp body wing plate (380) are respectively clamped to the lower end of the arc-shaped reflecting sheet (331).
6. The plant supplementary light capable of protecting the light source and having strong heat dissipation according to claim 3, wherein, The left and right ends of the protection tube (320) are respectively provided with a first circumferential groove (322) and a second circumferential groove (323). The right end of the first seat body (110), the first lamp body baffle (350) and the first reflector baffle (332) are all clamped to the first circumferential groove (322). The left end of the second seat body (210), the second lamp body baffle (360) and the second reflector baffle (333) are all clamped to the second circumferential groove (323).
7. The plant supplementary light capable of protecting the light source and having strong heat dissipation according to claim 3, wherein, The first housing (110) includes a first upper cover (112) and a first lower cover (113). The first air hole (111) is formed in the first upper cover (112). The first lower cover (113) is rotatably and snap-connectedly coupled to the first upper cover (112). The second housing (210) includes a second upper cover and a second lower cover. The second air hole (211) is formed in the second upper cover. The second lower cover is rotatably and snap-connectedly coupled to the second upper cover.
8. The plant supplementary light capable of protecting a light source and having strong heat dissipation according to claim 7, characterized in that, one end of the first lower cover (113) is rotatably connected to one end of the first upper cover (112), and the other end of the first lower cover (113) is magnetically connected to the other end of the first upper cover (112). One end of the second lower cover is rotatably connected to one end of the second upper cover, and the other end of the second lower cover is magnetically connected to the other end of the second upper cover.
9. The plant supplementary light capable of protecting a light source and having strong heat dissipation according to claim 8, characterized in that, a first elastic flap (351) is provided at the lower end of the first lamp body baffle (350). After the first lamp body baffle (350) is connected to the first housing (110), the first elastic flap (351) is located below the first lower cover (113). A second elastic flap is provided at the lower end of the second lamp body baffle (360). After the second lamp body baffle (360) is connected to the second housing (210), the second elastic flap is located below the second lower cover.
10. The plant supplementary light capable of protecting a light source and having strong heat dissipation according to claim 7, characterized in that, the first housing (110) further includes a first air hole baffle (114) and a first sealing baffle (115). The first air hole (111) is formed in the first air hole baffle (114). First side openings (1121) are provided on both the front and rear sides of the first upper cover (112). The first air hole baffle (114) is detachably connected to one of the first side openings (1121), and the first sealing baffle (115) is detachably connected to the other first side opening (1121). The second housing (210) further includes a second air hole baffle and a second sealing baffle. The second air hole (211) is formed in the second air hole baffle. Second side openings are provided on both the front and rear sides of the second upper cover. The second air hole baffle is detachably connected to one of the second side openings, and the second sealing baffle is detachably connected to the other second side opening.
Citation Information
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