Modern agriculture breeding device
Technical Field
The utility model relates to the field of agricultural technology, specifically a modern agriculture breeding device.
Background
The agricultural is the growth and development law that utilizes the animal and plant, obtains the industry of product through artificial cultivation, through the magnanimity retrieval, finds among the prior art as publication number CN107278426A, including heating device, shower nozzle and gyro wheel in a multi-functional agricultural incubator, the incubator of being convenient for of setting up of gyro wheel removes, and convenient to use is swift, and heating device's setting can heat up the incubator, ensures that the seed normally sprouts, and the setting of shower nozzle can be sprinkled water to it and handle, ensures that seed seedling normally grows.
In summary, the conventional agricultural cultivation device does not treat the impurities of the sprayed water, nor recycle the waste water, which causes waste of water resources, and the agricultural cultivation device directly uses electric energy, which cannot save energy.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a modern agriculture breeding device to the current agriculture breeding device who proposes in solving above-mentioned background art is not handling its impurity spraying the water after using, does not also carry out waste water recovery and recycles, has caused the waste of water resource, and agriculture breeding device directly uses the electric energy source, can not play the problem of energy-conserving effect.
In order to achieve the above object, the utility model provides a following technical scheme: a modern agricultural cultivation device comprises a cultivation box shell, a first water delivery pipe, a first drainage pipe and a control box,
the energy-saving device comprises an incubator shell, an energy-saving assembly and a water tank, wherein the upper side of the incubator shell is fixed with the energy-saving assembly, and the lower side of the incubator shell is fixed with the water tank;
one end of the first water delivery pipe is communicated with the water tank, the other end of the first water delivery pipe is communicated with the second water delivery pipe, a pressure pump is fixed on the upper side of the first water delivery pipe, the second water delivery pipe is fixed on the upper side inside the cultivation room, an atomizing spray head penetrates through the lower side of the second water delivery pipe, and cultivation components are fixed on the left inner wall and the right inner wall of the cultivation room;
first drain pipe, first drain pipe one end is linked together with the room of growing up, and the first drain pipe other end has filter assembly through hollow threaded connection spare threaded connection, and the filter assembly downside has the second drain pipe through hollow threaded connection spare threaded connection simultaneously, the second drain pipe is linked together with the water tank, incubator shell rear side runs through there is the subassembly of taking a breath, be fixed with temperature sensor on the room right side inner wall of growing up.
The energy-saving component comprises an electric telescopic rod, a first fixing block, a universal shaft, a second fixing block, a photovoltaic plate, an intelligent control tracker and a storage battery, wherein the first fixing block is fixed on the upper side of the electric telescopic rod, the upper side of the first fixing block is rotatably connected with the second fixing block through the universal shaft, the photovoltaic plate is fixed on the upper side of the second fixing block, the intelligent control tracker is fixed on the lower side of the photovoltaic plate, the intelligent control tracker is positioned on the upper side of the storage battery, the cultivating component comprises a slide way, a cultivating plate and a first filter screen, the slide way is connected with the cultivating plate in a sliding manner, the lower side of the cultivating plate is fixed with the first filter screen, the filtering component comprises a water inlet pipe, a filtering box sealing cover, a filtering box, a convex block, the second filter screen and a water outlet, the water inlet pipe, be fixed with the lug on the rose box inner wall, and the second filter screen has been placed to the lug upside, and the rose box downside runs through there is the outlet simultaneously, the subassembly of taking a breath includes air-supply line, exhaust fan and exhaust pipe, the air-supply line internal fixation has the exhaust fan, and the air-supply line is located the right side of exhaust pipe, the control box is fixed on incubator shell right side outer wall.
Compared with the prior art, the beneficial effects of the utility model are that: the modern agricultural cultivation device is provided with a plurality of cultivation devices,
(1) the solar energy can be converted into electric energy under the auxiliary action of a photovoltaic panel in the energy-saving assembly, and the electric energy is finally stored in the storage battery, the storage battery provides an electric energy source for the whole device, so that the energy-saving effect is achieved, natural wind can enter the cultivation room under the auxiliary action of the exhaust fan, the circular line in the cultivation room can be ventilated, and the phenomenon that the normal development of seedlings is influenced due to overhigh temperature in the cultivation room is avoided;
(2) be provided with filtering component, the waste water after the use can be filtered in the setting of two-layer second filter screen in the filtering component, and the waste water after the filtration passes through the second drain pipe storage in the water tank, just so can carry out recycle to waste water, avoids the waste of water resource.
Drawings
FIG. 1 is a schematic front view of the present invention;
FIG. 2 is a right side view of the structure of the present invention;
FIG. 3 is a left side view of the structure of the present invention;
fig. 4 is a rear view structure diagram of the present invention;
FIG. 5 is an enlarged schematic view of the structure at A of FIG. 1 according to the present invention;
fig. 6 is a schematic structural view of the filter assembly of the present invention.
In the figure: 1. incubator shell, 2, energy-conserving subassembly, 201, electric telescopic handle, 202, first fixed block, 203, the cardan shaft, 204, the second fixed block, 205, photovoltaic board, 206, intelligent control tracker, 207, the battery, 3, the water tank, 4, first raceway, 5, the second raceway, 6, the atomizer, 7, the force (forcing) pump, 8, the cultivation room, 9, cultivate the subassembly, 901, the slide, 902, cultivate the board, 903, first filter screen, 10, first drain pipe, 11, hollow threaded connection spare, 12, filter assembly, 1201, inlet tube, 1202, the sealed lid of filter box, 1203, the filter box, 1204, the lug, 1205, the second filter screen, 1206, the outlet, 13, the second drain pipe, 14, the heater, 15, the subassembly of taking a breath, 1501, the air inlet pipe, 1502, exhaust fan, 1503, exhaust pipe, 16, temperature sensor, 17, control box.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-6, the present invention provides a technical solution: a modern agricultural cultivation device, an energy-saving component 2 is fixed on the upper side of a cultivation box shell 1, a water tank 3 is fixed on the lower side of the cultivation box shell 1, one end of a first water delivery pipe 4 is communicated with the water tank 3, the other end of the first water delivery pipe 4 is communicated with a second water delivery pipe 5, a pressure pump 7 is fixed on the upper side of the first water delivery pipe 4, the second water delivery pipe 5 is fixed on the upper side inside a cultivation room 8, an atomizing spray head 6 penetrates through the lower side of the second water delivery pipe 5, cultivation components 9 are fixed on the left inner wall and the right inner wall of the cultivation room 8, one end of a first drainage pipe 10 is communicated with the cultivation room 8, the other end of the first drainage pipe 10 is in threaded connection with a filter component 12 through a hollow threaded connection part 11, the lower side of the filter component 12 is in threaded connection with a second drainage pipe 13 through a hollow threaded connection part 11, the second drainage pipe 13 is communicated, a temperature sensor 16 is fixed on the right inner wall of the incubation chamber 8.
Specifically, the energy-saving assembly 2 comprises an electric telescopic rod 201, a first fixed block 202, a universal shaft 203, a second fixed block 204, a photovoltaic panel 205, an intelligent control tracker 206 and a storage battery 207, wherein the first fixed block 202 is fixed on the upper side of the electric telescopic rod 201, the second fixed block 204 is rotatably connected with the upper side of the first fixed block 202 through the universal shaft 203, the photovoltaic panel 205 is fixed on the upper side of the second fixed block 204, the intelligent control tracker 206 is fixed on the lower side of the photovoltaic panel 205, the intelligent control tracker 206 is positioned on the upper side of the storage battery 207, the position of the incubator shell 1 can be determined under the auxiliary action of the intelligent control tracker 206, the upper photovoltaic panel 205 can be driven to carry out angle adjustment under the auxiliary action of the electric telescopic rod 201 and the universal shaft 203, so that the sunlight utilization rate can be increased, the practicability of the incubator can be increased, the photovoltaic panel 205 converts solar energy, storage battery 207 converts the direct current to the alternating current through the dc-to-ac converter and provides the electric energy for whole device to play the effect of practicing thrift the electric energy source, incubator shell 1 upside both ends are fixed with the light, are convenient for look over the seed seedling night, increase its practicality.
Specifically, the cultivating component 9 comprises a slideway 901, a cultivating plate 902 and a first filter screen 903, the slideway 901 is connected with the cultivating plate 902 in a sliding way, the lower side of the cultivating plate 902 is fixed with the first filter screen 903, the filter component 12 comprises a water inlet pipe 1201, a filter box sealing cover 1202, a filter box 1203, a lug 1204, a second filter screen 1205 and a water outlet 1206, the water inlet pipe 1201 penetrates through the upper side of the filter box sealing cover 1202, the lower side of the filter box sealing cover 1202 is connected with the filter box 1203 in a threaded way, the lug 1204 is fixed on the inner wall of the filter box 1203, the second filter screen 1205 is placed on the upper side of the lug 1204, the water outlet 1206 penetrates through the lower side of the filter box 1203, the lower side of the cultivating plate 902 is provided with the first filter screen 903, so that excessive water can be filtered to avoid excessive water from affecting normal seedling production of seeds, excessive water drops on the lower side inside the, the water after the last use gets into rose box 1203 inside through first drain pipe 10, the setting of second filter screen 1205 in rose box 1203 can carry out twice filtration to the impurity in the waste water, the operation can be more thorough with the impurity filtration in the waste water like this, the impurity storage after the filtration is inside water tank 3, the circulating water after handling under the supplementary action of force (forcing) pump 7 gets into atomizer 6 with first raceway 4 of accessible and second raceway 5, the circulating water just can spray seed or seedling once more through atomizer 6, avoid the waste of water resource.
Specifically, subassembly 15 of taking a breath includes air-supply line 1501, exhaust fan 1502 and exhaust duct 1503, is fixed with exhaust fan 1502 in the air-supply line 1501, and air-supply line 1501 is located the right side of exhaust duct 1503, and control box 17 is fixed on incubator shell 1 right side outer wall, and when the temperature was too high in the room 8 of growing, under the auxiliary action of exhaust fan 1502, natural wind just can carry out the processing of taking a breath to the room 8 of growing through air-supply line 1501, discharges through exhaust duct 1503 at last, just so can play the cooling effect, ensures that the seed normally grows.
The working principle is as follows: when the modern agricultural cultivation device is used, under the auxiliary action of the intelligent control tracker 206 at the lower side of the photovoltaic panel 205, the position of the incubator shell 1 can be positioned, under the auxiliary action of the universal shaft 203 between the electric telescopic rod 201 at the upper side of the incubator shell 1 and the first fixing block 202 and the second fixing block 204, the upper photovoltaic panel 205 can be driven to carry out angle adjustment, so that the incubator can be better contacted with sunlight, the sunlight utilization rate is increased, the photovoltaic panel 205 converts solar energy into electric energy to be stored in the storage battery 207, when seeds or seedlings in the cultivation room 8 need to be sprayed, the booster pump 7 is started under the auxiliary action of the control box 17, water in the water tank 3 enters the atomizing spray head 6 through the first water conveying pipe 4 and the second water conveying pipe 5, the seeds or the seedlings can be sprayed under the auxiliary action of the atomizing spray head 6, and after the surplus water after being sprayed is filtered through the first filter screen 903 at the lower side of the cultivation board 902, excessive water drops on the lower side of the interior of the cultivating chamber 8, the cultivating plate 902 is manually pulled, the cultivating plate 902 is separated from the slide 901, so seedlings on the cultivating plate 902 can be moved out and planted, used wastewater enters the interior of the filter box 1203 through the first water discharge pipe 10, the hollow threaded connecting piece 11 and the water inlet pipe 1201, impurities in the wastewater can be treated under the auxiliary action of the second filter screen 1205 on the upper side of the convex block 1204, the treated wastewater is stored in the water tank 3 for recycling through the water discharge port 1206 and the second water discharge pipe 13, the hollow threaded connecting piece 11 on the first water discharge pipe 10 and the water discharge port 1206 is manually rotated, so that the filter component 12 is separated from the first water discharge pipe 10 and the second water discharge pipe 13, the filter box sealing cover 1202 is manually rotated, the filter box sealing cover 1202 is separated from the filter box 1203, so that impurities on the second filter screen 1205 can be treated, and the operation is simple, conveniently, the temperature can be raised to the inside of the cultivation room 8 under the auxiliary action of the heater 14, the phenomenon that the temperature is too low and the normal germination of seeds is affected is avoided, if the temperature in the cultivation room 8 is too high, natural air can ventilate the cultivation room 8 through the air inlet pipe 1501 under the auxiliary action of the exhaust fan 1502, and finally the natural air is exhausted through the exhaust pipe 1503, so that the temperature can be lowered, the normal germination of the seeds and the normal growth of the seedlings are ensured, and the content which is not described in detail in the specification belongs to the prior art which is known by technicians in the field.
The terms "central," "longitudinal," "lateral," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," and the like are used in the orientation or positional relationship indicated in the drawings for ease of description, but are not intended to indicate or imply that the device or element so referred to must have a particular orientation, be constructed and operated in a particular orientation, and are not to be considered limiting of the scope of the invention.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments or portions thereof without departing from the spirit and scope of the invention.