CN209484395U - Air-cooled self-clean type double tube fluorescent lamp - Google Patents

Air-cooled self-clean type double tube fluorescent lamp Download PDF

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Publication number
CN209484395U
CN209484395U CN201920534576.4U CN201920534576U CN209484395U CN 209484395 U CN209484395 U CN 209484395U CN 201920534576 U CN201920534576 U CN 201920534576U CN 209484395 U CN209484395 U CN 209484395U
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CN
China
Prior art keywords
air
shell
fixedly connected
double tube
fluorescent lamp
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Expired - Fee Related
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CN201920534576.4U
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Chinese (zh)
Inventor
王毅
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Ningbo China Label Lighting Technology Co Ltd
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Ningbo China Label Lighting Technology Co Ltd
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Priority to CN201920534576.4U priority Critical patent/CN209484395U/en
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Abstract

The utility model discloses a kind of air-cooled self-clean type double tube fluorescent lamps, are related to double tube fluorescent lamp technical field.The utility model includes shell, and housing bottom surface is fixedly connected with reflector;One opposite inner face of shell has been respectively fixedly connected with two first lamp bases and two second lamp bases;Fluorescent tube is connected between first lamp base and the second lamp base apparent surface;One medial surface of shell is fixedly connected with power controling machine structure;Case top setting is fluted;One surface of groove has been respectively fixedly connected with small air pump and time switch.The utility model enables the fluorescent lamp to accelerate the radiating efficiency of fluorescent tube by force ventilated mode by the way that small-sized gas, ventilation duct, the first air nozzle and the second air nozzle is arranged;Simultaneously by setting time switch and temperature inductor, periodical ventilation and intelligent aeration heat dissipation both of which are had both, the purpose to inner walls and surface of the light tube heat dissipation, automatically cleaning and expelling parasite is played.

Description

Air-cooled self-clean type double tube fluorescent lamp
Technical field
The utility model belongs to double tube fluorescent lamp technical field, more particularly to a kind of air-cooled self-clean type double tube fluorescent lamp.
Background technique
Currently, double tube fluorescent lamp is gradually widely applied, and the restriction of double tube fluorescent lamp luminous characteristics, the heat dissipation of lamps and lanterns Effect is generally bad, and the heat dissipation problem of especially high power double tube fluorescent lamp is more taken seriously, if double tube fluorescent lamp used The waste heat generated in journey can not effectively shed, then will lead to the decaying of double tube fluorescent lamp luminous efficiency, directly to double tube fluorescent lamp Service life makes a big impact.
Currently, the radiator of LED daylight lamp on the market mainly uses semi-cylindrical aluminium radiator, entire fluorescent tube Half be exactly be made of aluminium radiator, its major defect is that weight is larger, higher cost;And emerging one kind can radiate LED daylight lamp, because be equipped with the thermal current delivery pipe that is communicated in fluorescent tube, together form a hot gas with fluorescent tube and circulate Road, can reduce the volume and weight of radiator, but there is a problem of one it is serious: thermal current passes through in fluorescent tube for a long time, A large amount of dust can be gathered in fluorescent tube, LED lamp is made to influence the effect of illumination because of the accumulation of dust.
Utility model content
The purpose of this utility model is to provide a kind of air-cooled self-clean type double tube fluorescent lamp, by small air pump, ventilation duct, The design of first jet and the second air nozzle, solves the problems, such as existing double tube fluorescent lamp weak heat-dissipating and cannot be self-cleaning.
In order to solve the above technical problems, the utility model is achieved through the following technical solutions:
The utility model is a kind of air-cooled self-clean type double tube fluorescent lamp, including shell, the housing bottom surface are fixedly connected with Reflector;One opposite inner face of shell has been respectively fixedly connected with two first lamp bases and two second lamp bases;First lamp base And second be connected with fluorescent tube between lamp base apparent surface;One medial surface of shell is fixedly connected with power controling machine structure;
The case top setting is fluted;One surface of groove has been respectively fixedly connected with small air pump and time control is opened It closes;The housing bottom surface has been respectively fixedly connected with point gas nozzle and temperature sensor;One end of described point of gas nozzle air inlet with it is small-sized Air pump connection;The both ends of described point of gas nozzle gas outlet are communicated with ventilation duct;Two described ventilation duct one end, which are fixed with shell, to be connected It connects;The ventilation duct week, side was respectively communicated with there are four the first air nozzle and four the second air nozzles.
Further, described that gas nozzle and temperature sensor is divided to be respectively positioned on housing central section;Two ventilation ducts are using shell middle line as axis It is symmetric.
Further, first air nozzle and the second air nozzle are symmetric using ventilation duct middle line as axis;Described The angle of plane is 45 ° where one air nozzle and the second air nozzle and ventilation duct middle line.
Further, four first air nozzles and four the second air nozzles are in the linear array in ventilation duct week side Distribution.
Further, one surface of power controling machine structure is provided with drawstring;The case top offers hanging hole.
Further, first air nozzle and the second air nozzle are between two fluorescent tubes.
The utility model has the following beneficial effects:
1, the utility model enables the fluorescent lamp by the way that small-sized gas, ventilation duct, the first air nozzle and the second air nozzle is arranged Enough radiating efficiencys for accelerating fluorescent tube by force ventilated mode;Simultaneously by setting time switch and temperature inductor, have both Periodical ventilation and intelligent aeration radiate both of which, play to inner walls and surface of the light tube heat dissipation, automatically cleaning and expelling parasite Purpose.
2, the utility model designed by 45 degree angles of the first air nozzle and the second air nozzle and two ventilation ducts it is symmetrical On the one hand design can efficiently use air-flow caused by small air pump, on the other hand can then improve the area coverage of outlet air, after And improve self-cleaning, heat dissipation and anthelminthic effect.
Certainly, any product for implementing the utility model does not necessarily require achieving all the advantages described above at the same time.
Detailed description of the invention
In order to illustrate more clearly of the technical solution of the utility model embodiment, make required for being described below to embodiment Attached drawing is briefly described, it should be apparent that, the drawings in the following description are merely some embodiments of the present invention, For those of ordinary skill in the art, without creative efforts, it can also be obtained according to these attached drawings Other attached drawings.
Fig. 1 is a kind of structural schematic diagram of air-cooled self-clean type double tube fluorescent lamp;
Fig. 2 is the schematic diagram of the section structure of Fig. 1;
Fig. 3 is the overlooking structure diagram of Fig. 1;
Fig. 4 is the structural schematic diagram of shell and temperature sensor;
Fig. 5 is the structural schematic diagram of groove;
In attached drawing, parts list represented by the reference numerals are as follows:
1- shell, 2- reflector, the first lamp base of 3-, the second lamp base of 4-, 5- fluorescent tube, 6- power controling machine structure, 7- groove, 8- Small air pump, 9- time switch, 10- divide gas nozzle, 11- temperature sensor, 12- ventilation duct, the first air nozzle of 13-, the spray of 14- second Gas nozzle.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole Embodiment.Based on the embodiments of the present invention, those of ordinary skill in the art are without creative efforts All other embodiment obtained, fall within the protection scope of the utility model.
Fig. 1-5 is please referred to, the utility model is a kind of air-cooled self-clean type double tube fluorescent lamp, including shell 1,1 bottom surface of shell It is fixedly connected with reflector 2;1 one opposite inner face of shell has been respectively fixedly connected with two first lamp bases 3 and two second lamp bases 4;The Fluorescent tube 5 is connected between 4 apparent surface of one lamp base 3 and the second lamp base;1 one medial surface of shell is fixedly connected with power controling machine structure 6;Power controling machine structure 6 includes ballast and controller;
Fluted 7 are arranged at the top of shell 1;7 one surface of groove has been respectively fixedly connected with small air pump 8 and time switch 9;When Control switch 9 is to realize that the time control of small air pump 8 is powered;The model RMD5-111 of time switch 9;Time switch 9 and power supply Control mechanism 6 is electrically connected;Controller and small air pump 8 are electrically connected simultaneously;Small air pump 8 is for providing high-pressure air source;Gas The high pressure range in source is in the force-applied range of fluorescent tube 5;The model XG-668A of small air pump 8;1 bottom surface of shell is fixed respectively to be connected It is connected to point gas nozzle 10 and temperature sensor 11;Dividing gas nozzle 10 is threeway form of tubes;Temperature sensor 11 is to real-time monitoring two The temperature data of fluorescent tube 5 and by temperature data real-time delivery to controller, the model DS18B20 of temperature sensor 11;Divide gas One end of 10 air inlet of mouth is connected to small air pump 8;The both ends of 10 gas outlet of gas nozzle are divided to be communicated with ventilation duct 12;Ventilation duct 12 For hollow tube open at one end;Two ventilation ducts, 12 one end is fixedly connected with shell 1;12 weeks sides of ventilation duct have been respectively communicated with four A first air nozzle 13 and four the second air nozzles 14.
Wherein as shown in Figs. 1-5, gas nozzle 10 and temperature sensor 11 is divided to be respectively positioned on 1 middle part of shell;Two 2 ventilation ducts 12 with 1 middle line of shell is symmetric for axis.
Wherein, the first air nozzle 13 and the second air nozzle 14 are symmetric using 12 middle line of ventilation duct as axis;First jet Mouth 13 and the second air nozzle 14 and the angle of plane where 12 middle line of ventilation duct are 45 °.
Wherein, four the first air nozzles 13 and four the second air nozzles 14 are in 12 weeks linear arrays in side point of ventilation duct Cloth.
Wherein, 6 one surface of power controling machine structure is provided with drawstring;Hanging hole is offered at the top of shell 1.
Wherein, the first air nozzle 13 and the second air nozzle 14 are between two fluorescent tubes 5.
One concrete application of the present embodiment are as follows: the fluorescent lamp is provided with small air pump 8, temperature sensor 11, time control are opened 9 and ventilation duct 12 are closed, the power supply of small air pump 8 is respectively by the controller control in time switch 9 and power controling machine structure 6 System, when fluorescent tube 5 is opened, controller and time switch 9 work, and are set by the preparatory timing working of time switch 9, small-sized gas Pump 8 can be after the unlatching of fluorescent tube 5, and periodical timing working passes through the strong of ventilation duct 12, the first air nozzle 13 and the second air nozzle 14 System ventilation carries out periodically self-cleaning, heat dissipation and expelling parasite to fluorescent tube 5;Meanwhile when temperature sensor 11 detects the temperature of fluorescent tube 5 When data are more than the threshold value set when factory, and small air pump 8 is when duty cycle, that is, small air pump 8 works, controller Intervention is powered to small air pump 8, carries out forced heat radiation until the detection data of temperature sensor 11 is lower than threshold value, and this is constantly Controlling switch 9, self-timing opens small air pump 8 to timing time automatic clear again when reaching the next period.
In the description of this specification, the description of reference term " one embodiment ", " example ", " specific example " etc. means Particular features, structures, materials, or characteristics described in conjunction with this embodiment or example are contained at least one of the utility model In embodiment or example.In the present specification, schematic expression of the above terms be not necessarily referring to identical embodiment or Example.Moreover, particular features, structures, materials, or characteristics described can be in any one or more embodiment or examples In can be combined in any suitable manner.
The preferred embodiment in the utility model disclosed above is only intended to help to illustrate the utility model.Preferred embodiment is simultaneously There is no the details that detailed descriptionthe is all, also not limiting the utility model is only the specific embodiment.Obviously, according to this theory The content of bright book can make many modifications and variations.These embodiments are chosen and specifically described to this specification, is in order to preferably The principles of the present invention and practical application are explained, so that skilled artisan be enable to better understand and utilize this Utility model.The utility model is limited only by the claims and their full scope and equivalents.

Claims (6)

1. a kind of air-cooled self-clean type double tube fluorescent lamp, including shell (1), shell (1) bottom surface is fixedly connected with reflector (2);(1) one opposite inner face of shell has been respectively fixedly connected with two first lamp bases (3) and two second lamp bases (4);Described Fluorescent tube (5) are connected between one lamp base (3) and the second lamp base (4) apparent surface;(1) one medial surface of shell is fixedly connected with Power controling machine structure (6);It is characterized by:
Fluted (7) are set at the top of the shell (1);(7) one surface of groove be respectively fixedly connected with small air pump (8) and Time switch (9);Shell (1) bottom surface has been respectively fixedly connected with a point gas nozzle (10) and temperature sensor (11);Described point of gas One end of mouth (10) air inlet is connected to small air pump (8);The both ends of described point of gas nozzle (10) gas outlet are communicated with ventilation duct (12);Two described ventilation duct (12) one end are fixedly connected with shell (1) bottom surface;The all sides of the ventilation duct (12) are respectively communicated with There are several first air nozzles (13) and several second air nozzles (14).
2. a kind of air-cooled self-clean type double tube fluorescent lamp according to claim 1, which is characterized in that it is described divide gas nozzle (10) and Temperature sensor (11) is respectively positioned in the middle part of shell (1);Two ventilation ducts (12) are symmetric using shell (1) middle line as axis.
3. a kind of air-cooled self-clean type double tube fluorescent lamp according to claim 1, which is characterized in that first air nozzle (13) it is symmetric with the second air nozzle (14) using ventilation duct (12) middle line as axis;First air nozzle (13) and the second spray The angle of plane is 45 ° where gas nozzle (14) and ventilation duct (12) middle line.
4. a kind of air-cooled self-clean type double tube fluorescent lamp according to claim 1, which is characterized in that several first jets Mouth (13) and several second air nozzles (14) are in all linear array distributions in side of ventilation duct (12).
5. a kind of air-cooled self-clean type double tube fluorescent lamp according to claim 1, which is characterized in that the power controling machine structure (6) one surfaces are provided with drawstring;Hanging hole is offered at the top of the shell (1).
6. a kind of air-cooled self-clean type double tube fluorescent lamp according to claim 1, which is characterized in that first air nozzle (13) and the second air nozzle (14) is between two fluorescent tubes (5).
CN201920534576.4U 2019-04-19 2019-04-19 Air-cooled self-clean type double tube fluorescent lamp Expired - Fee Related CN209484395U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920534576.4U CN209484395U (en) 2019-04-19 2019-04-19 Air-cooled self-clean type double tube fluorescent lamp

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920534576.4U CN209484395U (en) 2019-04-19 2019-04-19 Air-cooled self-clean type double tube fluorescent lamp

Publications (1)

Publication Number Publication Date
CN209484395U true CN209484395U (en) 2019-10-11

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Application Number Title Priority Date Filing Date
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112524583A (en) * 2020-12-09 2021-03-19 江西森通新材料科技有限公司 Heat radiation structure of LED fluorescent lamp

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112524583A (en) * 2020-12-09 2021-03-19 江西森通新材料科技有限公司 Heat radiation structure of LED fluorescent lamp
CN112524583B (en) * 2020-12-09 2022-07-22 深圳市将帅科技有限公司 Heat radiation structure of LED fluorescent lamp

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Granted publication date: 20191011