Light energy air duct structure with siphonic effect

By introducing a siphon effect into the solar energy duct, the main airflow is heated and blown out by the driving component, while the secondary airflow is cooled, thus solving the problem of poor heat dissipation in the solar energy duct and achieving efficient heat dissipation and extended lifespan.

CN223715215UActive Publication Date: 2025-12-26DONGGUAN DONGJING ELECTRIC APPLIANCE CO LTD
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Patent Information

Application Number
CN202423224324.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2025-12-26
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

Existing solar-powered fan ducts have poor heat dissipation performance, which affects their service life.

Method used

The solar energy fan structure with siphon effect is adopted. The main airflow is driven by the working of the driving component to enter the main body and is heated by the heating frame before being blown out along the mounting bracket and front cover. The secondary airflow is blown out along the cup cavity through the siphon effect to achieve heat dissipation of the light-emitting component.

Benefits of technology

It significantly improves heat dissipation, extends product lifespan, simplifies structure, reduces energy consumption, and enhances airflow management flexibility.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an optical energy air duct structure with a siphon effect. The air duct structure comprises a main body, a front cover, a lamp cup, a mounting bracket, a heating frame, a driving part and a rear cover, the main body extends downwards to form a handle part communicated with the main body, the lamp cup, the mounting bracket and the heating frame are sequentially mounted in the main body from front to back, the lamp cup is provided with a plurality of cup cavities, and light-emitting parts are mounted in the cup cavities. The driving piece works to drive main airflow to enter the main body along the handle part, and is blown out along the mounting bracket and the front cover after being heated by the heating frame; the driving part works to generate a siphonic effect, so that the auxiliary airflow enters the main body along the rear cover and is blown out along the cup cavity. The driving piece works to drive the main air flow to enter the main body along the handle part, and the main air flow is blown out along the mounting bracket and the front cover after being heated by the heating frame, so that the hair drying effect is achieved; wherein the auxiliary airflow is introduced as cold air by the siphonic effect and is directly blown out along the cup cavity, so that the heat of the light-emitting part can be effectively dissipated, and the heat dissipation effect is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a wind tube technical field especially relates to a light energy wind tube structure with siphon effect. BACKGROUND

[0002] The existing light energy wind tube mostly can only heat dissipation from the side of main air duct or lamp cup, makes heat dissipation effect poor, leads to influence the service life of wind tube. UTILITY MODEL CONTENTS

[0003] The utility model discloses a light energy wind tube structure with siphon effect which overcomes the defects of the prior art.

[0004] In order to solve the above technical problem, the utility model adopts the following technical scheme:

[0005] The utility model discloses a light energy wind tube structure with siphon effect, including: main part, front cover, lamp cup, installation support, heating frame, driving piece and back cover, the front cover is installed in the main part front end, the back cover is installed in the main part rear end, the main part has the handle portion who communicates the main part and extends downward, the driving piece is installed in the handle portion, the lamp cup, installation support and heating frame are installed in the main part interior in proper order from front to back, the lamp cup is equipped with a plurality of cup cavities, the cup cavity is installed with light emitting piece, the driving piece work drives main airflow to enter the main part along the handle portion and blows out along the installation support and the front cover after heating through the heating frame, wherein, because the driving piece work produces siphon effect, to make secondary airflow enter the main part along the back cover and blow out along the cup cavity.

[0006] In a specific embodiment, the front end of the installation support is provided with an installation cavity, the rear end is provided with a sleeve which is communicated with the installation cavity, the lamp cup is installed in the installation cavity, and the heating frame is sleeved on the outside of the sleeve.

[0007] In a specific embodiment, the rear end of the heating frame is further provided with an end head frame, the end head frame is connected to the installation support, and the end head frame is communicated with the sleeve and the back cover.

[0008] In a specific embodiment, the front end of the installation support is provided with a sleeve head end, the rear end is provided with a containing cavity, and the lower end is provided with a guide pipe, the guide pipe is communicated with the containing cavity, the sleeve head end is communicated with the containing cavity, the driving piece is installed in the guide pipe, the heating frame is installed in the containing cavity, the lamp cup is sleeved on the sleeve head end, and the rear end of the installation support is further connected with an end cover, and the end cover is used for plugging the containing cavity.

[0009] In a specific embodiment, the rear end of the lamp cup is sequentially connected with a lamp holder and a lamp plate, the light emitting member is connected to the lamp holder, and the front end of the light emitting member extends into the cup cavity, and the rear end of the light emitting member extends out of the lamp holder and is connected to the lamp plate.

[0010] In a specific embodiment, the front end of the cup cavity is further provided with a lens member, and the light generated by the light emitting member passes through the lens member and is emitted.

[0011] In a specific embodiment, the front end of the lamp cup is further provided with an air outlet filter screen.

[0012] In a specific embodiment, the rear cover is further connected with an air inlet filter screen.

[0013] In a specific embodiment, the rear cover is further connected with an indicator lamp support, the front end of the indicator lamp support is connected with an indicator lamp plate, and the rear end is connected with an indicator lamp lens.

[0014] In a specific embodiment, the rear cover and the indicator lamp support are further provided with a filter screen member.

[0015] The light energy air duct structure with siphon effect of the utility model has the beneficial effects compared with the prior art: the main airflow is driven by the driving member to enter the main body along the handle part and is blown out along the mounting support and the front cover after being heated by the heating frame, so as to achieve the dry hair effect; wherein, due to the siphon effect generated by the driving member, the secondary airflow is introduced as cold air by the siphon effect and is directly blown out along the cup cavity, so as to effectively cool the light emitting member, significantly improve the overall cooling effect, and further improve the service life of the product.

[0016] The utility model will be further described below in combination with the drawings and specific embodiments. DRAWINGS

[0017] In order to more clearly illustrate the technical scheme in the embodiments of the utility model, the drawings needed to be used in the embodiments or the prior art description will be briefly introduced below, and obviously, the drawings in the following description are only some embodiments of the utility model, and other drawings can be obtained by those skilled in the art without creative labor.

[0018] Figure 1 The utility model provides the light energy air duct structure with siphon effect embodiment one's three -dimensional schematic view of the utility model;

[0019] Figure 2 The utility model provides the light energy air duct structure with siphon effect embodiment one's sectional view schematic view of the utility model;

[0020] Figure 3The utility model provides a light energy wind tube structure with siphon effect embodiment one's exploded schematic view is provided.

[0021] Figure 4 The utility model provides a light energy wind tube structure with siphon effect embodiment two's three -dimensional schematic view is provided.

[0022] Figure 5 The utility model provides a light energy wind tube structure with siphon effect embodiment two's section view schematic view is provided.

[0023] Figure 6 The utility model provides a light energy wind tube structure with siphon effect embodiment two's exploded schematic view is provided. DETAILED DESCRIPTION

[0024] In order to make the utility model's purpose, technical scheme and advantage clearer, in the following, the utility model is further detailed with specific embodiment and accompanying drawing.

[0025] The technical scheme in the embodiment of the utility model will be described clearly and completely in the following with the accompanying drawings in the embodiment of the utility model, and obviously, the described embodiment is only a part of the embodiment of the utility model, not all the embodiment. Based on the embodiment in the utility model, all other embodiments obtained by the person skilled in the art without making creative labor belong to the range of protection of the utility model.

[0026] In the description of the utility model, it is understood that the orientation or positional relation indicated by the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise" and the like is based on the orientation or positional relation shown in the drawings, and is only for the convenience of describing the utility model and simplifying the description, and therefore cannot be understood as indicating or implying that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the utility model.

[0027] In addition, the terms "first", "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first", "second" can explicitly or implicitly include one or more of the features. In the description of the utility model, the meaning of "multiple" is two or more than two, unless otherwise specifically limited.

[0028] In the utility model, unless another definite provision and limitation, the term " install ", " link ", " connect ", " fixed " and so on term should do broad sense understanding, for example, can be connection, also can be detachable connection, or be integrated; can be mechanical connection, also can be electrical connection; can be direct connection, also can be indirectly connected through intermediate medium, can be the communication of two elements or the interaction of two elements. For ordinary skilled in the art, the above-mentioned terms can be understood according to the specific meaning of the utility model.

[0029] In the utility model, unless another definite provision and limitation, the first feature is " on " or " below " the second feature can include that the first and second features are in direct contact, or the first and second features are not in direct contact but are in contact through another feature between them. Moreover, the first feature " above ", " above " and " on " the second feature includes that the first feature is directly above and obliquely above the second feature, or only indicates that the horizontal height of the first feature is higher than that of the second feature. The first feature " below ", " below " and " below " the second feature includes that the first feature is directly below and obliquely below the second feature, or only indicates that the horizontal height of the first feature is less than that of the second feature.

[0030] In the description of the specification, the description of the terms " one embodiment ", " some embodiments ", " example ", " specific example " or " some examples " means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the utility model. In the specification, the illustrative description of the above terms should not be understood as necessarily referring to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. In addition, those skilled in the art can combine and combine different embodiments or examples described in the specification.

[0031] Referring to Figures 1 to 6The utility model discloses a light energy wind tube structure with siphon effect, including: main body 10, front cover 20, lamp cup 30, installation support 40, heating frame 50, driving part 60 and back cover 70, the front cover 20 is installed in the main body 10 front end, the back cover 70 is installed in the main body 10 rear end, the main body 10 has the handle portion 11 of intercommunication main body 10 and extends downward, the driving part 60 is installed in the handle portion 11, the lamp cup 30, installation support 40 and heating frame 50 are installed in the main body 10 inside in proper order from front to back, the lamp cup 30 is equipped with a plurality of cup cavities 31, the cup cavity 31 is installed with light emitting part 80, the driving part 60 work drives main airflow along the handle portion 11 and enters the main body 10 and blows out along installation support 40 and front cover 20 after heating through heating frame 50, wherein, because the driving part 60 work produces siphon effect, to make secondary airflow along the back cover 70 and enter the main body 10 and blow out along the cup cavity 31.

[0032] Specifically, by driving part 60 work drives main airflow along handle portion 11 and enters main body 10 and blows out along installation support 40 and front cover 20 after heating through heating frame 50, to play the dry hair effect, wherein, because driving part 60 work produces siphon effect, secondary airflow is introduced as cold air by siphon effect, and blows out along cup cavity 31 directly, can effectively heat dissipation light emitting part 80, significantly improve the overall heat dissipation effect, and then improve the service life of product. In addition, by the siphon effect produced by driving part 60 work, without additional power source can realize the natural introduction of secondary airflow, this design not only simplifies the structure, reduces energy consumption, also enhances the flexibility of airflow management of wind tube, the dual action of main airflow and secondary airflow (cold air) guarantees the dry hair effect, also improves the heat dissipation efficiency.

[0033] Wherein, refer to Figure 2 And Figure 5 As shown, the thick arrow is the flow path of main airflow, and the thin arrow is the flow path of secondary airflow.

[0034] Referring to Figures 1 to 3 As shown in the embodiment one, the front end of the installation support 40 is provided with an installation cavity (not shown in the figure), and the rear end is provided with a sleeve 41 communicated with the installation cavity, the lamp cup 30 is installed in the installation cavity, and the heating frame 50 is sleeved outside the sleeve 41.

[0035] Specifically, the mounting bracket 40 is designed to have a structure with two parts, front and back; the front end part is provided with a mounting cavity, which is used to fix and support the lamp cup 30; the back end part is provided with a sleeve 41, which is connected with the inside of the mounting cavity, ensuring that the secondary airflow can pass smoothly. The lamp cup 30 is precisely installed in the mounting cavity at the front end of the mounting bracket 40, and the inside of the lamp cup 30 is provided with a plurality of cup cavities 31, each of which is installed with a light emitting piece 80. The heating frame 50 is designed as a ring structure, which is sleeved outside the sleeve 41 at the back end of the mounting bracket 40, and can be in full contact with the heating frame 50 when the primary airflow passes through and is heated to an appropriate temperature. In addition, the driving piece 60 is composed of a motor and an impeller, and the motor works to drive the impeller to rotate, so that the primary airflow is sucked in and heated by the heating frame 50 to form hot air, and then the primary airflow is blown out along the outside of the mounting bracket 40 to provide hot air for the user. At the same time, due to the siphon effect generated by the operation of the driving piece 60, the secondary airflow is introduced into the system, which enters the sleeve 41 at the back end of the mounting bracket 40 along the back cover 70, and is blown out along the cup cavities 31 of the lamp cup 30. The secondary airflow, as cold air, can effectively cool the light emitting piece 80 in the lamp cup 30, improving the heat dissipation effect. In addition, through the above design, the primary airflow and the secondary airflow are divided inside and outside in the flow path of the airflow, the primary airflow flows along the outside of the mounting bracket 40, and the secondary airflow flows along the inside of the mounting bracket 40 and the cup cavities 31. This design not only ensures the smooth flow of the airflow, but also improves the heat dissipation efficiency and avoids overheating.

[0036] More specifically, the secondary airflow, as cold air, is introduced into the system and blown out along the cup cavities 31 of the lamp cup 30, which effectively cools the light emitting piece 80 in the lamp cup 30, preventing performance degradation or damage due to overheating; at the same time, this also improves the overall heat dissipation efficiency and prolongs the service life of the product. In addition, by dividing the primary airflow and the secondary airflow inside and outside in the flow path of the airflow, this design ensures the smooth flow of the airflow, which not only improves the performance of the product, but also provides users with a more comfortable use experience. In addition, this design simplifies the overall structure through the ingenious airflow path and component layout, which not only reduces the manufacturing cost, but also facilitates subsequent maintenance and maintenance work.

[0037] Referring to Figures 1 to 3 In the first embodiment shown, the back end of the heating frame 50 is also provided with an end frame 90, which is connected to the mounting bracket 40, and the end frame 90 is connected to the sleeve 41 and the back cover 70.

[0038] Specifically, the rear end of the heating frame 50 is additionally provided with an end frame 90, which is a specially designed structure for limiting and fixing the heating frame 50. The shape and size of the end frame 90 are accurately designed to ensure that it can be tightly connected to the mounting bracket 40 and form effective communication with the sleeve 41 and the rear cover 70. In addition, the end frame 90 is firmly installed on the mounting bracket 40 by appropriate connection methods (such as screw fixing, buckle connection, etc.). This connection method not only ensures the stability of the end frame 90, but also tightly restricts the heating frame 50 on the sleeve 41, avoiding displacement caused by air flow impact or other factors during use. In addition, the design of the end frame 90 also considers the maintenance of the secondary air flow path, which ensures that the secondary air flow can smoothly enter the sleeve 41 from the rear cover 70 and be blown out along the cup cavity 31 of the lamp cup 30. This design not only improves the circulation efficiency of the secondary air flow, but also ensures the overall performance of the product.

[0039] More specifically, by adding the end frame 90 and limiting and fixing the heating frame 50, the stability of the heating frame 50 is significantly improved, avoiding displacement of the heating frame 50 caused by air flow impact or other factors during use, ensuring normal operation and safety of the product. In addition, the design of the end frame 90 not only ensures the stability of the heating frame 50, but also optimizes the air flow path.

[0040] Referring to Figures 4 to 6 In the second embodiment shown, the front end of the mounting bracket 40 is provided with a sleeve end 42, the rear end is provided with a containing cavity (not shown in the figure), and the lower end is provided with a guide pipe 43, which is communicated with the containing cavity. The sleeve end 42 is communicated with the containing cavity, the driving member 60 is installed inside the guide pipe 43, the heating frame 50 is installed in the containing cavity, the lamp cup 30 is sleeved on the sleeve end 42, and the rear end of the mounting bracket 40 is further connected with an end cover 100, which is used to block the containing cavity.

[0041] Specifically, the front end of the mounting bracket 40 is designed with a sleeve end 42, which is in communication with the accommodating cavity and used for sleeving the lamp cup 30, and the lamp cup 30 is fixed through the sleeve end 42; the rear end of the mounting bracket 40 is provided with an accommodating cavity for mounting the heating bracket 50 and other components, and the accommodating cavity is in communication with the guide pipe 43 and the sleeve end 42, which ensures the smooth flow of the airflow; the lower end of the mounting bracket 40 is designed with a guide pipe 43, which is in communication with the accommodating cavity, and the main function of the guide pipe 43 is to serve as the installation position of the driving member 60 and guide the airflow through the heating bracket 50. The driving member 60 is installed inside the guide pipe 43; when the driving member 60 works, it will generate a main airflow, and then the main airflow will enter the accommodating cavity along the guide pipe 43 and be heated through the heating bracket 50 and then blow out along the inner side of the mounting bracket 40. The rear end of the mounting bracket 40 is also connected with an end cover 100, and the main function of the end cover 100 is to block the accommodating cavity to prevent the main airflow from leaking from the rear end. The secondary airflow enters the main body 10 along the rear cover 70 and blows out along the cup cavity 31 after passing through the outer side of the mounting bracket 40.

[0042] More specifically, through the design of the above structure, the main airflow and the secondary airflow are effectively divided into two parts inside and outside. The main airflow blows out from the inner side of the mounting bracket 40 after being heated; and the secondary airflow blows out along the cup cavity 31 after passing through the outer side of the mounting bracket 40, which is used for heat dissipation or provides additional airflow effect. In addition, since the main airflow is heated by the heating bracket 50, the heat energy can be effectively utilized, and the energy efficiency of the whole system is improved. In addition, the design of the mounting bracket 40 makes all components compactly installed together, reduces the space occupation, and improves the overall integration and aesthetics.

[0043] In embodiment one and embodiment two, the rear end of the lamp cup 30 is sequentially connected with a lamp bracket 110 and a lamp plate 120, the light emitting member 80 is connected to the lamp bracket 110, and the front end of the light emitting member 80 extends into the cup cavity 31, and the rear end of the light emitting member 80 extends out of the lamp bracket 110 and is connected to the lamp plate 120.

[0044] Specifically, the lamp cup 30 is a container-like structure with an opening, the front end of which is usually used for light transmission, while the rear end is used for connecting other components. The rear end of the lamp cup 30 is connected with the lamp holder 110, and the connection can be a direct threaded connection, a buckle connection or other forms of fixed connection, which ensures that the lamp holder 110 is stably installed on the lamp cup 30. The rear end of the lamp holder 110 is further connected with the lamp plate 120, which is usually a circuit board with circuits and connection points corresponding to the light emitting element 80. The connection between the lamp plate 120 and the lamp holder 110 can be achieved by screws, buckles, welding or other fixing methods, which ensures that the lamp plate 120 can stably support the light emitting element 80 and provide electrical connection. The light emitting element 80 is connected to the lamp holder 110, and the front end of the light emitting element 80 extends into the cup cavity 31 of the lamp cup 30 for emitting light and transmitting light through the front end of the lamp cup 30. The rear end of the light emitting element 80 is usually provided with guide pins (or pins), which extend from the lamp holder 110 and are connected to the corresponding circuit connection points on the lamp plate 120. The connection between the guide pins and the lamp plate 120 can be achieved by welding, plugging or other electrical connection methods, which ensures that the light emitting element 80 can work normally.

[0045] More specifically, by connecting the lamp holder 110 and the lamp plate 120 to the rear end of the lamp cup 30 in sequence, the structure of the entire lamp is more compact, reducing the space occupation. This structure makes the installation and disassembly of the light emitting element 80 more convenient, facilitating maintenance and replacement. In addition, the guide pins of the light emitting element 80 and the circuit connection points on the lamp plate 120 are electrically connected by a stable connection method (such as welding), which ensures the electrical performance and stability of the lamp.

[0046] Preferably, the light emitting element 80 is a halogen lamp. The halogen lamp can inject halogen gas such as iodine or bromine into the bulb, form a stable tungsten wire regeneration cycle through chemical reaction, and significantly enhance the durability and brightness of the bulb. In addition, due to the effect of halogen cycle, the halogen lamp can avoid premature breakage of the tungsten wire, thereby prolonging the service life of the bulb.

[0047] In embodiment one and embodiment two, the front end of the cup cavity 31 is further provided with a lens element 130, and the light generated by the light emitting element 80 passes through the lens element 130 and is emitted.

[0048] Specifically, the design of the lens piece 130 enables the light generated by the light-emitting piece 80 to be focused or directionally adjusted before being emitted, which means that the light is no longer scattered in a chaotic manner, but is propagated in a specific direction or angle. This focusing and directional control helps to improve the utilization efficiency of the light. In addition, the lens piece 130 acts as a barrier between the light-emitting piece 80 and the external environment, effectively preventing dust, moisture and other impurities from entering the cup cavity 31, thereby protecting the light-emitting piece 80 from damage. This protection not only prolongs the service life of the light-emitting piece 80, but also ensures the stability and reliability of the product. Among them, the lens piece 130 has the characteristics of blocking strong light but not blocking heat energy, so as to avoid shining the eyes during use.

[0049] In embodiment one and embodiment two, the front end of the lamp cup 30 is also provided with an air outlet filter screen 140.

[0050] Specifically, the main function of the air outlet filter screen 140 is to prevent dust and other small particles from entering the inside of the lamp cup 30. By preventing dust and other impurities from entering the inside of the lamp cup 30, the air outlet filter screen 140 helps to reduce internal wear and corrosion, thereby prolonging the overall life of the product.

[0051] In embodiment one and embodiment two, the rear cover 70 is also connected with an air inlet filter screen 150.

[0052] Specifically, the air inlet filter screen 150 can be embedded, buckled, magnetically attracted or threaded to the rear cover 70. The main function of the air inlet filter screen 150 is to filter the airflow entering the main body 10, removing dust, hair and other impurities, ensuring that the airflow entering the main body 10 is cleaner. In addition, by filtering the air inlet, the air inlet filter screen 150 can effectively prevent dust and other impurities from entering the main body 10, thereby protecting the internal electronic components, heat frame 50 and other components from pollution and damage, prolonging the service life of the product. In addition, clean airflow helps the normal operation of internal components, reduces performance degradation or failure caused by dust accumulation, thereby improving the overall performance of the product. In addition, the air inlet filter screen 150 can also reduce the noise generated when the airflow passes through, thereby improving the noise reduction performance. In addition, the air inlet filter screen 150 can usually be easily disassembled and cleaned, thereby ensuring that it can maintain good filtering effect during long-term use and reduce maintenance costs.

[0053] In embodiment one and embodiment two, the rear cover 70 is also connected with an indicator lamp bracket 160, the front end of the indicator lamp bracket 160 is connected with an indicator lamp plate 170, and the rear end is connected with an indicator lamp lens 180.

[0054] Specifically, the indicator light plate 170 can intuitively display temperature, wind speed and other key information, and such display mode enables the user to quickly understand the use state of the product. In addition, the indicator light support 160 integrates the indicator light plate 170 and the indicator light lens 180 together and is connected with the rear cover 70, and such design not only makes the appearance of the product more neat and beautiful, but also improves the overall quality of the product. In addition, the indicator light lens 180 serves as a barrier between the indicator light plate 170 and the external environment, which can effectively prevent dust, moisture and other impurities from entering the inside of the indicator light plate 170, thereby protecting the indicator light plate 170 from damage.

[0055] In the first and second embodiments, the rear cover 70 and the indicator light support 160 are further provided with a filter screen 190.

[0056] Specifically, the main function of the filter screen 190 is to block dust, particles and other impurities in the external air. During the use of the product, these dust and impurities may enter the inside of the product through various gaps, which may interfere with the normal use of the product. The provision of the filter screen 190 can effectively prevent such situation from occurring, thereby protecting the electronic components and mechanical parts inside the product from the invasion of dust and impurities.

[0057] Specifically, the main body 10 is further provided with a control board 200, and the driving member 60, the heating frame 50, the lamp plate 120 and the indicator light plate 170 are electrically connected to the control board 200 to realize normal work. The specific structure of the main body 10 adopts the existing public technology, and will not be described in detail here.

[0058] The above embodiments are the preferred implementation scheme of the present application, and in addition, the present application can be realized in other ways, and any obvious replacement without departing from the technical scheme concept is within the protection scope of the present application.

Claims

1. A light energy wind tower structure with siphon effect, characterized by, The utility model relates to a lamp cup, install support, heating frame, drive part and rear cover, the front cover is installed to the main body front end, the rear cover is installed to the main body rear end, the main body downwardly extends the handle portion communicating the main body, drive part is installed to the handle portion, the lamp cup, install support and heating frame are installed to the main body inside in proper order from front to back, the lamp cup is equipped with a plurality of cup cavities, the cup cavity is installed with light emitting part, drive part work drives main airflow to enter the main body along the handle portion and blows out along install support and the front cover after heating along heating frame, wherein, because drive part work produces siphon effect, to make secondary airflow along the rear cover enters the main body and blows out along the cup cavity. The front end of the install support is provided with an installation cavity, the rear end is provided with a sleeve pipe communicated with the installation cavity, the lamp cup is installed in the installation cavity, and the heating frame is sleeved outside the sleeve pipe.

2. The light energy kiosk structure with siphon effect of claim 1, wherein, The rear end of the heating frame is further provided with an end head frame, the end head frame is connected to the install support, and the end head frame is communicated with the sleeve pipe and the rear cover.

3. The light energy kiosk structure with siphon effect of claim 2, wherein, The front end of the install support is provided with a sleeve head end, the rear end is provided with a containing cavity, and the lower end is provided with a guide pipe communicated with the containing cavity, the sleeve head end is communicated with the containing cavity, the drive part is installed in the guide pipe, the heating frame is installed in the containing cavity, the lamp cup is sleeved on the sleeve head end, and the rear end of the install support is further connected with an end cover for plugging the containing cavity.

4. The light energy kiosk structure with siphon effect of claim 1, wherein, The rear end of the lamp cup is connected with a lamp holder and a lamp plate in sequence, the light emitting part is connected to the lamp holder, and the front end of the light emitting part extends into the cup cavity, the rear end of the light emitting part extends out of the lamp holder and is connected to the lamp plate.

5. The light energy wind tower structure with siphon effect according to claim 2 or 4, characterized in that, The front end of the cup cavity is further provided with a lens part, and the light generated by the light emitting part passes through the lens part and is emitted.

6. The light energy kiosk structure with siphon effect of claim 5, wherein, The front end of the lamp cup is further provided with an air outlet filter screen.

7. The light energy kiosk structure with siphon effect of claim 5, wherein, The rear cover is further connected with an air inlet filter screen.

8. The light energy kiosk structure with siphon effect of claim 5, wherein, The rear cover is further connected with an indicator lamp support, the front end of the indicator lamp support is connected with an indicator lamp plate, and the rear end is connected with an indicator lamp lens.

9. The light energy kiosk structure with siphon effect of claim 5, wherein, The rear cover and the indicator lamp support are further provided with a filter screen part.

10. The light energy kiosk structure with siphon effect of claim 9, wherein, ​