Novel light supplementing and illuminating device for greenhouse
Technical Field
The utility model relates to the field of greenhouses, in particular to a novel supplementary lighting device for a greenhouse.
Background
The greenhouse, also called greenhouse, can transmit light, keep warm (or heat), is used for cultivating plants, can provide greenhouse growth period and increase yield in the season unsuitable for plant growth, is widely used for cultivating or raising seedlings of plants such as vegetables, flowers, trees and the like in low-temperature seasons, has various types, can be divided into various types according to different roof truss materials, daylighting materials, appearance, heating conditions and the like, has simple plastic film and skeleton structure, has few internal facilities and does not have high greenhouse requirements, so that the greenhouse has higher requirements than greenhouse equipment strictly, and can be strictly controlled by using more advanced instruments. When the greenhouse is used, a plurality of lighting devices are required to be arranged inside the greenhouse and used for irradiating vegetables to ensure the normal growth of the vegetables, but when the lighting devices in the greenhouse are used, a large amount of flies can be attracted by the emitted light of the lighting devices, the flies are easy to attach to the surfaces of the lamp covers and the bulbs to influence the illumination, and meanwhile the flies can also influence the growth of the vegetables.
According to the novel light supplementing and illuminating device of the greenhouse disclosed by the patent 202223059290.6, the novel light supplementing and illuminating device comprises a lamp shade, wherein the top of the lamp shade is fixedly connected with a connecting body, both sides of the connecting body are provided with insect capturing devices for capturing insects, the outer sides of the insect capturing devices are connected with the lamp shade, bulbs are arranged at the bottoms of the lamp shade, the insect capturing devices comprise insect capturing frames, motors and fan blades, the bottoms of the insect capturing frames are fixedly connected with storage frames, the bottoms of the storage frames are fixedly connected with spiral sleeves, the inner sides of the spiral sleeves are spirally connected with guide cylinders, and the outer sides of the guide cylinders are fixedly connected with the lamp shade; in the utility model, the motor, the fan blades, the guide cylinder and the storage frame are arranged on two sides of the bulb, when the bulb is illuminated, the motor is started to drive the fan blades to rotate, the sliding disc is sucked upwards, the vent holes are exposed, air enters the storage frame through the guide cylinder, the fly can be actively sucked into the storage frame for processing, normal illumination work of the bulb is ensured, a certain deinsectization effect can be achieved, in the process of realizing the utility model, the inventor finds that at least the following problems are not solved in the prior art, although the motor, the fan blades, the guide cylinder and the storage frame are arranged on two sides of the bulb, when the bulb is illuminated, the motor is started to drive the fan blades to rotate, at the moment, the sliding disc can be sucked upwards, the vent holes are exposed, at the moment, the air enters the storage frame through the guide cylinder, the fly can be actively sucked into the storage frame for processing, normal illumination work of the bulb is ensured, a certain deinsectization effect can be achieved, the problem that when the lighting device in the existing greenhouse emits light, a large amount of fly can be attracted when the light, the fly is not easily attached to the bulb and the surface of the bulb is not influenced by illumination, meanwhile, flies can also influence the growth of vegetables, but in the using process, the traditional novel light supplementing and illuminating device for the greenhouse drives air to flow through fan blades, so that flies are collected and treated, the collecting mode can only collect and treat flies nearby air flow, when the flies are not close to the air flow, the effect of collecting the flies is poor, and in addition, the surface of the traditional light supplementing lamp body is easy to attach a large amount of dust in the using process, and cleaning treatment is required by workers, so that the light supplementing lamp is not very convenient. For this reason, new solutions need to be designed to solve.
Disclosure of utility model
The utility model aims to overcome the defects of the prior art, adapt to the actual needs, and provide a novel light supplementing and illuminating device for a greenhouse, so as to solve the technical problems that the current traditional novel light supplementing and illuminating device for the greenhouse only drives air to flow through fan blades, so that flies and insects are collected and treated, the collecting mode can only collect and treat flies and insects near air flow, when the flies and insects are not close to the air flow, the effect of collecting the flies and insects is poor, and a large amount of dust is easy to adhere to the surface of the traditional light supplementing lamp body in the use process, and workers are required to clean and treat the flies and insects, which is not very convenient.
In order to achieve the aim of the utility model, the technical scheme adopted by the utility model is that the novel complementary light illuminating device for the greenhouse is designed and comprises a device plate body and further comprises:
The power grid is arranged at the top of the device plate body;
The deinsectization mechanism is arranged at the top of the power grid and comprises a double-shaft motor, the power grid is arranged at the bottom of the double-shaft motor, the top of the double-shaft motor is connected with a first motor shaft, and the top of the first motor shaft is provided with a fan blade;
The bottom of the double-shaft motor is connected with a second motor shaft, and a blowing fan blade is installed at the bottom of the second motor shaft through a power grid.
Preferably, a round hole is formed in the bottom of the device plate body, a separation net is installed in the round hole, and a light supplementing illuminating lamp body is installed at the bottom of the separation net.
Preferably, the L-shaped connecting plates are fixed on two sides of one end of the second motor shaft, which is positioned in the power grid.
Preferably, a rubber brush is fixed at the top of the L-shaped connecting plate, and the outer wall of the rubber brush is attached to the inner wall of the power grid.
Preferably, the insect attracting shell is installed on both sides of the top of the device plate body, the top of the insect attracting shell is of an open structure, and the ultrasonic atomization sheet is installed at the bottom end inside the insect attracting shell.
Preferably, the power grid is characterized in that mounting plate bodies are fixed on two sides of the top of the power grid, and fixing bolts penetrate through the mounting plate bodies.
Compared with the prior art, the utility model has the beneficial effects that:
1. According to the utility model, through the combination of the double-shaft motor, the power grid and the blowing fan blades, the power grid can be utilized to kill flies close to the device, the double-shaft motor drives the blowing fan blades to suck flies above the outside into the surface of the power grid for active killing, meanwhile, the double-shaft motor also drives the blowing fan blades at the bottom to rotate, the blowing fan blades blow towards the bottom light supplementing illuminating lamp body to form a wind film around the light supplementing illuminating lamp body, dust can be prevented from adhering to the surface of the light supplementing illuminating lamp body, the same driving device is adopted with the extracting mechanism, a plurality of driving devices are not needed, energy sources are saved, the novel light supplementing illuminating device for the greenhouse is solved, only air is driven to flow through the fan blades, so that flies are collected and treated.
2. According to the utility model, through the combination of the L-shaped connecting plate, the rubber brush and the insect attracting shell, the L-shaped connecting plate and the rubber brush are driven to rotate in the process that the double-shaft motor drives the air suction fan blade and the air blowing fan blade to rotate, the electric network is cleaned by the rubber brush, and fly bodies blocked in the net holes of the electric network are brushed out, so that the fly bodies are prevented from being blocked on the surface of the electric network, the insect killing effect is influenced, and the ultrasonic atomizing sheet is arranged in the insect attracting shell, so that insect attracting liquid in the insect attracting shell can be atomized to attract external flies, and meanwhile, the atomized insect attracting liquid is blown to the upper and lower positions by the air blowing fan blade and the air suction fan blade, so that the atomized insect attracting liquid is diffused, and the insect attracting range is promoted.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present utility model;
FIG. 2 is a schematic diagram of the internal structure of the power grid according to the present utility model;
Fig. 3 is a schematic view of the bottom structure of the plate body of the device of the present utility model.
In the figure, 1, a device plate body, 101, a power grid, 102, a mounting plate body, 103, a fixing bolt, 104, a light supplementing lighting lamp body, 2, a double-shaft motor, 201, a first motor shaft, 202, an exhaust fan blade, 203, a second motor shaft, 204, an L-shaped connecting plate, 205, a rubber brush, 206, an insect attracting shell, 207, an ultrasonic atomization sheet, 3, a blowing fan blade, 301, a round hole, 302 and a separation net.
Detailed Description
The utility model is further illustrated by the following examples in conjunction with the accompanying drawings:
The embodiment 1 relates to a novel light supplementing and illuminating device for a greenhouse, which is shown in fig. 1 to 3, and comprises a device plate body 1, a power grid 101, a light source and a light source, wherein the power grid 101 is arranged at the top of the device plate body 1; the system comprises an insect disinfestation mechanism, an insect disinfestation mechanism and an insect disinfestation mechanism, wherein the insect disinfestation mechanism is arranged at the top of a power grid 101 and comprises a double-shaft motor 2, the power grid 101 is arranged at the bottom of the double-shaft motor 2, a first motor shaft 201 is connected to the top of the double-shaft motor 2, a fan blade 202 is arranged at the top of the double-shaft motor 2, a second motor shaft 203 is connected to the bottom of the double-shaft motor shaft 201, a fan blade 3 is arranged at the top of the first motor shaft 201, a fan blade 3 is arranged at the bottom of the second motor shaft 203, a plurality of driving devices are arranged at the bottom of the second motor shaft 203 and penetrates through the power grid 101 to be installed on the surface of the lamp 104 when insect disinfestation is needed, the double-shaft motor 2 and the electric power grid 101 are opened, the double-shaft motor 2 drives the first motor shaft 201, the fan blade 202 is driven by the first motor shaft 201, flies above the outside are pumped into the surface of the power grid 101, active killing is carried out, meanwhile, the double-shaft motor 2 also drives the second motor shaft 203, the fan blade 3 at the bottom is driven to rotate, the fan blade 3 is blown towards the bottom of the lamp 104 through the fan blade 3, and forms a fan film around the lamp 104, dust adheres to the lamp 104, and adopts the surface of the lamp body, and does not need to the fan device, and a plurality of driving devices, and the fan device. Not very convenient technical problems.
Specifically, referring to fig. 3, a circular hole 301 is formed in the bottom of the device plate body 1, a separation net 302 is installed in the circular hole 301, and a light-supplementing illumination lamp body 104 is installed at the bottom of the separation net 302.
Further, referring to fig. 2, an L-shaped connection plate 204 is fixed to both sides of one end of the second motor shaft 203 located in the power grid 101.
It should be noted that, referring to fig. 2, a rubber brush 205 is fixed at the top of the L-shaped connecting plate 204, the outer wall of the rubber brush 205 is attached to the inner wall of the power grid 101, and in the process that the double-shaft motor 2 drives the second motor shaft 203 to rotate, the second motor shaft 203 also drives the L-shaped connecting plate 204 and the rubber brush 205 to rotate, the power grid 101 is cleaned by using the rubber brush 205, and fly bodies blocked in meshes of the power grid 101 are brushed out, so that the fly bodies blocked on the surface of the power grid 101 are prevented from affecting the deinsectization effect.
Notably, referring to fig. 2, the two sides of the top of the device plate body 1 are provided with the insect attracting shell 206, the top of the insect attracting shell 206 is of an open structure, the bottom of the inside of the insect attracting shell 206 is provided with the ultrasonic atomization sheet 207, the insect attracting liquid in the insect attracting shell 206 can be atomized to attract external flies, and meanwhile the atomized insect attracting liquid is blown to the upper and lower positions through the blowing fan blade 3 and the air exhausting fan blade 202, so that the atomized insect attracting liquid is diffused, and the range of insect attracting is promoted.
It should be noted that, referring to fig. 1, the two sides of the top of the power grid 101 are fixed with a mounting plate body 102, and a fixing bolt 103 penetrates through the mounting plate body 102.
When using novel moisturizing lighting device of warmhouse booth, open biax motor 2 and electric wire netting 101, biax motor 2 drives first motor shaft 201, first motor shaft 201 drives the fan blade 202, draw in the electric wire netting 101 surface with the fly of outside top, carry out active kill, simultaneously, biax motor 2 still can drive second motor shaft 203, second motor shaft 203 drives the rotation of the fan blade 3 of blowing of bottom, the moisturizing lighting lamp body 104 of through blowing fan blade 3 towards the bottom is bloied, form the wind membrane around moisturizing lighting lamp body 104, can avoid the dust adhesion at the surface of moisturizing lighting lamp body 104, adopt same actuating device with extraction mechanism, need not to set up a plurality of actuating device, the energy has been practiced thrift, in the rotatory in-process of biax motor 2 drive second motor shaft 203, second motor shaft 203 still can drive L type connecting plate 204 and rubber brush 205 rotation, utilize rubber brush 205 to clean electric wire netting 101 mesh in the inside blocking up the insect body of electric wire netting 101, thereby the insect body of the blocking of electric wire netting 101 is avoided, the effect that the insect body of blowing is influenced, the inside the atomizing of the fan blade 206 has been set up, the atomizing the inside the fan body 206 can be attracted the insect body of the atomizing of the fan body, the atomizing the insect-attracting device is attracted in the fan body is attracted the range of the atomizing insect-attracting fan body is attracted in the atomizing the fan body is 3, the atomizing insect-attracting the insect-attracting fan is attracted the insect-attracting position of the insect blade is realized, and the insect-attracting device is attracted the insect blade in the atomizing the fan is more than the atomizing the insect blade in the air, and the insect-attracting the insect blade is attracted the insect.
In addition, the components designed by the utility model are all universal standard components or components known by the person skilled in the art, the structures and principles of the components are all known by the person skilled in the art through technical manuals or known by routine experimental methods, and the utility model can be completely realized by the person skilled in the art.
The embodiments of the present utility model are disclosed as preferred embodiments, but not limited thereto, and those skilled in the art will readily appreciate from the foregoing description that various modifications and variations can be made without departing from the spirit of the present utility model.