CN110915639A - Seed culture hotbed - Google Patents
Seed culture hotbed Download PDFInfo
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- CN110915639A CN110915639A CN201911287692.1A CN201911287692A CN110915639A CN 110915639 A CN110915639 A CN 110915639A CN 201911287692 A CN201911287692 A CN 201911287692A CN 110915639 A CN110915639 A CN 110915639A
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- rod
- sliding
- clamping
- outer frame
- filtering
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01G—HORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
- A01G31/00—Soilless cultivation, e.g. hydroponics
- A01G31/02—Special apparatus therefor
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P60/00—Technologies relating to agriculture, livestock or agroalimentary industries
- Y02P60/20—Reduction of greenhouse gas [GHG] emissions in agriculture, e.g. CO2
- Y02P60/21—Dinitrogen oxide [N2O], e.g. using aquaponics, hydroponics or efficiency measures
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- Hydroponics (AREA)
Abstract
The invention relates to the field of breeding, in particular to a seed culture hotbed. The seedlings to be cultivated can be fixed; the effect of fixing the seedlings can be adjusted according to the actual situation; the distance between the seedlings and the culture medium can be adjusted according to actual conditions, so that the amount of the seedlings soaked in the culture solution can be conveniently adjusted; the nutrient solution can be sprayed manually; and the effect of spraying the nutrient solution can be adjusted according to the actual conditions. Including elevating gear, seedling fixing device, spray set, the culture medium, can adjust the flow of spun nutrient solution according to actual conditions, manual upper sideslip middle end fixed frame one, simultaneously through the cooperation connection of the inner boss on the fixed frame of middle-end to the ka tai slide bar, it slides along filtering frame one to drive the ka tai slide bar, simultaneously compression ka tai slide bar pushes away the spring, drive through ka tai slide bar, and then make the inner ka tai move to inner simultaneously, block out the area of filtering frame internal diameter through the inner ka tai.
Description
Technical Field
The invention relates to the field of breeding, in particular to a seed culture hotbed.
Background
A seed culture hotbed is a common device in the breeding field, but the function of the general breeding field is single.
Disclosure of Invention
The invention aims to provide a seed culture hotbed which can fix seedlings to be cultured; the effect of fixing the seedlings can be adjusted according to the actual situation; the distance between the seedlings and the culture medium can be adjusted according to actual conditions, so that the amount of the seedlings soaked in the culture solution can be conveniently adjusted; the nutrient solution can be sprayed manually; and the effect of spraying the nutrient solution can be adjusted according to the actual conditions.
The purpose of the invention is realized by the following technical scheme:
the utility model provides a seed culture hotbed, includes elevating gear, seedling fixing device, spray set, culture medium, its characterized in that: the lifting device is connected with the seedling fixing device, the spraying device is connected with the culture medium, and the lifting device is connected with the culture medium.
As a further optimization of the technical scheme, the invention relates to a seed culture hotbed, which comprises a first rectangular inner frame, a first middle-end sliding column, a first rectangular sliding groove, a first rectangular clamping groove, a lifting plate, a sealing cover, a sliding column sleeve, a first rectangular groove, a first clamping rod, a first shifting rod, a first clamping rod pushing spring, a second shifting rod, a second clamping rod and a second clamping rod pushing spring, wherein the first middle-end sliding column is fixedly connected with the first rectangular inner frame, the first rectangular sliding groove is arranged on the first middle-end sliding column, the first middle-end sliding column is arranged on the first middle-end sliding column, the sliding column sleeve is fixedly connected with the lifting plate, the sealing cover is fixedly connected with the sliding column sleeve, the first rectangular groove is arranged on the lifting plate, the first clamping rod is connected with the first rectangular clamping groove, the first clamping rod is slidably connected with the sliding column sleeve, the first clamping rod pushing spring is connected with the first clamping rod in a sleeved mode, the second clamping rod is connected with the first rectangular clamping groove, the second clamping rod is slidably connected with the sliding column sleeve, the second shifting rod is fixedly connected with the first clamping rod, and the first shifting rod is fixedly connected with the second clamping rod.
As a further optimization of the technical scheme, the invention relates to a seed culture hotbed, wherein a seedling fixing device comprises a seedling outer frame, a middle-end sliding rod I, a middle-end sliding rod II, a wedge-shaped rod, a seedling clamping rod II, a seedling clamping rod I, an inner end push spring II, an inner end push spring III and an inner end push spring IV, wherein the middle-end sliding rod I and the middle-end sliding rod II are both connected with the seedling outer frame in a sliding way, the wedge-shaped rod is connected with the middle-end sliding rod I and the middle-end sliding rod II in a matching way, the seedling clamping rod II and the seedling clamping rod I are respectively connected with the middle-end sliding rod I and the middle-end sliding rod II in a sliding way, the inner end push spring II is arranged between the seedling clamping rod I and the middle-end sliding rod II, the inner end push spring III is arranged between the middle-end sliding rod I and the seedling outer, the seedling outer frame is fixedly connected in the rectangular groove I.
As a further optimization of the technical scheme, the invention relates to a seed culture hotbed, wherein a spraying device comprises a first middle-end fixing frame, a first filtering outer frame, a boosting outer frame, a single outer frame, a boosting rod, a driving slide rod, a slide rod waist groove, a first middle-end support rod, a hinged connecting rod, a driving rod, a manual rod, a second middle-end support rod, a spraying pipe, an arc-shaped clamping groove, a filtering inner frame, a middle-end filter plate, a filtering slide column pushing spring, a first filtering hole, a second filtering hole, a first inner end clamping platform, a first slide rod, a nozzle, a vibrator pushing spring, a vibrator, a clamping platform slide rod, an inner end boss, a clamping platform slide rod pushing spring, a spherical clamping rod pushing spring, a communication hole, an air inlet hole, an inner end slide ball, a slide ball slide rod, a slide ball pushing spring, a communication cavity and a through hole, wherein the first filtering outer frame is in sliding connection with the first middle-end, the single outer frame is fixedly connected in the communicating hole and communicated with the communicating hole, the pressure increasing rod is connected with the single outer frame in a sliding way, the middle end bracket rod I is fixedly connected with the pressure increasing outer frame, the sliding rod waist groove is arranged on the middle end bracket rod I, the driving sliding rod is fixedly connected with the pressure increasing rod, the driving sliding rod is connected with the sliding rod waist groove in a sliding way, the hinged connecting rod is hinged with the driving sliding rod, the hinged connecting rod is hinged with the driving rod, the driving rod is rotatably connected with the middle end bracket rod II, the hand lever is fixedly connected with the driving rod, the middle end bracket rod II is fixedly connected with the middle end fixing frame I, the spray pipe is fixedly connected with and communicated with the filtering outer frame I, the arc-shaped clamping groove is arranged on the filtering outer frame I, the filtering inner frame is fixedly connected with the filtering outer frame I, the filtering slide column is fixedly connected with the filtering inner frame, the middle end filter plate is, the filtering holes II are formed in the middle-end filtering plate, the clamping table sliding rod is connected with the filtering frame I in a sliding mode, the inner clamping table is fixedly connected with the clamping table sliding rod, the clamping table sliding rod push spring is connected with the clamping table sliding rod in a sleeved mode, the clamping table sliding rod push spring is arranged at the outer end of the filtering frame I, the inner end boss is fixedly connected with the middle-end fixing frame I, the clamping table sliding rod is connected with the inner end boss in a matched mode, the spherical clamping rod is connected with the middle-end fixing frame I in a sliding mode, the spherical clamping rod push spring is connected with the spherical clamping rod in a sleeved mode, the spherical clamping rod is connected with the arc-shaped clamping groove in a matched mode, the air inlet hole is formed in the single frame, the sliding ball sliding rod is fixedly connected with the single frame, the sliding ball push spring is connected with the sliding ball sliding rod in a.
As a further optimization of the technical scheme, the seed culture hotbed comprises a culture medium outer frame, an inner cavity and a support, wherein the inner cavity is formed in the inner end of the culture medium outer frame, the support is fixedly connected with the culture medium outer frame, a middle-end fixing frame I is fixedly connected with the culture medium outer frame, and a rectangular inner frame I is fixedly connected with the culture medium outer frame.
As a further optimization of the technical scheme, the seed culture hotbed is characterized in that the pressurizing outer frame is provided with a liquid inlet, and the distance of the waist groove of the sliding rod is equal to the difference value of the distance between the highest point and the lowest point of the motion track of the driving rod.
The seed culture hotbed has the beneficial effects that:
the seed culture hotbed can adjust the flow of nutrient solution which can be sprayed according to actual conditions, a first middle fixing frame is manually slid upwards, meanwhile, a first clamping table sliding rod is driven to slide along a first filtering outer frame through the matching connection of a boss at the inner end of the first middle fixing frame to the first clamping table sliding rod, a pushing spring of the first clamping table sliding rod is compressed, the inner clamping table is driven to move towards the inner end simultaneously through the driving of the first clamping table sliding rod, the area of the inner diameter of the first filtering outer frame is shielded through the inner clamping table, and the amount of the nutrient solution passing through the inner diameter of the first filtering outer frame in unit time is further adjusted.
Drawings
The invention is described in further detail below with reference to the accompanying drawings and specific embodiments.
FIG. 1 is a first general structural diagram of the present invention;
FIG. 2 is a second overall structural schematic of the present invention;
FIG. 3 is a third schematic view of the overall structure of the present invention;
FIG. 4 is a first schematic structural diagram of the lifting device of the present invention;
FIG. 5 is a second schematic structural view of the lifting device of the present invention;
FIG. 6 is a third schematic structural view of the lifting device of the present invention;
FIG. 7 is a first schematic view of the seedling fixing device of the present invention;
FIG. 8 is a second schematic view of the seedling fixing device according to the present invention;
FIG. 9 is a third schematic view of the seedling fixing device of the present invention;
FIG. 10 is a first schematic view of the spraying device of the present invention;
FIG. 11 is a second schematic structural view of a spraying device according to the present invention;
FIG. 12 is a third schematic structural view of a spray system of the present invention;
FIG. 13 is a fourth schematic structural view of the spray apparatus of the present invention;
FIG. 14 is a fifth schematic structural view of the spray apparatus of the present invention;
FIG. 15 is a schematic view of the structure of the medium of the present invention.
In the figure: a lifting device 1; 1-1 of a rectangular inner frame; 1-2 of a middle sliding column; 1-3 of a rectangular chute; 1-4 rectangular clamping grooves; 1-5 of a lifting plate; 1-6 parts of a sealing cover; 1-7 of a slider sleeve; 1-8 rectangular grooves; 1-9 of a clamping rod I; 1-10 parts of a driving lever I; a clamping rod push spring 1-11; 1-12 parts of a second driving lever; 1-13 parts of a second clamping rod; a clamping rod pushing spring II 1-14; a seedling fixing device 2; 2-1 of a seedling outer frame; 2-2 parts of a middle slide bar; 2-3 of a middle slide bar II; 2-4 of a wedge-shaped rod; seedling clamping rods 2-6; seedling clamping rods 2-7; the inner end of the push spring I is 2-8; the inner end pushes a second spring 2-9; the inner end pushes a spring III 2-10; the inner end pushes the spring four 2-11; a spraying device 3; a middle fixing frame I3-1; filtering the outer frame I3-2; 3-3 of a pressurizing outer frame; 3-4 parts of a single outer frame; 3-5 of a pressure increasing rod; driving the slide bar 3-6; 3-7 of a sliding rod waist groove; 3-8 parts of a middle support rod I; 3-9 of hinged connecting rod; 3-10 parts of a driving rod; 3-11 parts of a manual lever; 3-12 parts of a middle-end support rod II; 3-13 parts of a spray pipe; 3-14 of arc-shaped clamping grooves; 3-15 parts of a filtering inner frame; 3-16 parts of a middle-end filter plate; 3-17 parts of a filtering slide column; 3-18 parts of a filter sliding column push spring; 3-19 parts of a first filter hole; 3-20 parts of a second filter hole; inner end clamping tables 3-21; a first sliding rod 3-22; 3-23 parts of nozzle; 3-24 vibrator push springs; 3-25 vibrators; 3-27 of a clamping table slide bar; inner end bosses 3-28; 3-29 parts of a clamping table sliding rod push spring; 3-30 parts of a spherical clamping rod; 3-31 parts of a spherical clamping rod push spring; communication holes 3-32; 3-33 of air inlet holes; inner end sliding balls 3-34; 3-35 of a sliding ball slide bar; 3-36 parts of sliding ball pushing spring; a communication cavity 3-37; 3-38 of through hole; a culture medium 4; 4-1 of culture medium outer frame; 4-2 of inner cavity; 4-3 of a bracket.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
The fixed connection in the device is realized by welding; fixing by means of thread fixing and the like, and using different fixing modes by combining different use environments; the rotary connection means that the bearing is arranged on the shaft in a drying mode, a spring retainer ring groove is formed in the shaft or the shaft hole, and the elastic retainer ring is clamped in the retainer ring groove to achieve axial fixation of the bearing and achieve rotation; the sliding connection refers to the connection through the sliding of the sliding block in the sliding groove or the guide rail, and the sliding groove or the guide rail is generally in a step shape, so that the sliding block is prevented from falling off in the sliding groove or the guide rail; the hinge is formed by a hinge; the pin shaft, the short shaft and other connecting parts are movably connected; the required sealing positions are sealed by sealing rings or O-shaped rings.
The first embodiment is as follows:
the seed culture hotbed of the present embodiment is described below with reference to fig. 1 to 15, and comprises a lifting device 1, a seedling fixing device 2, a spraying device 3, and a culture medium 4, and is characterized in that: the lifting device 1 is connected with the seedling fixing device 2, the spraying device 3 is connected with the culture medium 4, and the lifting device 1 is connected with the culture medium 4.
The second embodiment is as follows:
the embodiment is described below with reference to fig. 1 to 15, and the embodiment will be further described, wherein the lifting device 1 includes a rectangular inner frame 1-1, a middle end sliding column 1-2, a rectangular sliding chute 1-3, a rectangular clamping groove 1-4, a lifting plate 1-5, a sealing cover 1-6, a sliding sleeve 1-7, a rectangular groove 1-8, a clamping rod 1-9, a driving rod 1-10, a clamping rod pushing spring 1-11, a driving rod two 1-12, a clamping rod two 1-13, a clamping rod pushing spring 1-14, the middle end sliding column 1-2 is fixedly connected with the rectangular first 1-1, the rectangular sliding chute 1-3 is arranged on the middle end sliding column 1-2, and the rectangular sliding chute 1-3 is slidably connected with the sliding sleeve 1-7, the limiting device has the advantages that the limiting function is achieved on the slider sleeve 1-7, the middle-end slider 1-2 is arranged on the middle-end slider 1-2, the slider sleeve 1-7 is fixedly connected with the lifting plate 1-5, the sealing cover 1-6 is fixedly connected with the slider sleeve 1-7, the rectangular groove 1-8 is arranged on the lifting plate 1-5, the clamp rod 1-9 is connected with the rectangular clamp groove 1-4, the clamp rod 1-9 is slidably connected with the slider sleeve 1-7, the clamp rod push spring 1-11 is in sleeved connection with the clamp rod 1-9, the clamp rod II 1-13 is connected with the rectangular clamp groove 1-4, the clamp rod II 1-13 is slidably connected with the slider sleeve 1-7, the clamp rod push spring II 1-14 is in sleeved connection with the clamp rod II 1-13, the shift lever II 1-12 is fixedly connected with the clamp rod I1-9, the first driving lever 1-10 is fixedly connected with the second clamping lever 1-13.
The third concrete implementation mode:
the first embodiment is further described with reference to fig. 1-15, wherein the seedling fixing device 2 comprises a seedling outer frame 2-1, a middle slide bar 2-2, a middle slide bar 2-3, a wedge bar 2-4, a seedling clamping bar 2-6, a seedling clamping bar 2-7, an inner end push spring 2-8, an inner end push spring 2-9, an inner end push spring three 2-10 and an inner end push spring four 2-11, the middle slide bar 2-2 and the middle slide bar two 2-3 are slidably connected with the seedling outer frame 2-1, the wedge bar 2-4 is cooperatively connected with the middle slide bar 2-2 and the middle slide bar 2-3, the seedling clamping bar two 2-6, The first seedling clamping rod 2-7 is respectively connected with the first middle-end sliding rod 2-2 and the second middle-end sliding rod 2-3 in a sliding mode, the first inner-end pushing spring 2-8 is arranged between the second seedling clamping rod 2-6 and the first middle-end sliding rod 2-2, the second inner-end pushing spring 2-9 is arranged between the first seedling clamping rod 2-7 and the second middle-end sliding rod 2-3, the third inner-end pushing spring 2-10 is arranged between the first middle-end sliding rod 2-2 and the outer seedling frame 2-1, the fourth inner-end pushing spring 2-11 is arranged between the second middle-end sliding rod 2-3 and the outer seedling frame 2-1, and the outer seedling frame 2-1 is fixedly connected in the first rectangular groove 1-8.
The fourth concrete implementation mode:
the first embodiment is further described with reference to fig. 1-15, and the spray device 3 includes a first middle fixing frame 3-1, a first filtering outer frame 3-2, a second pressurizing outer frame 3-3, a single outer frame 3-4, a pressurizing rod 3-5, a driving slide rod 3-6, a slide rod waist groove 3-7, a first middle support rod 3-8, a hinged connecting rod 3-9, a driving rod 3-10, a manual rod 3-11, a second middle support rod 3-12, a spray pipe 3-13, an arc clamping groove 3-14, a first filtering inner frame 3-15, a middle filter plate 3-16, a filtering slide column 3-17, a filtering slide column push spring 3-18, a first filter hole 3-19, a second filter hole 3-20, an inner end clamping table 3-21, a second filter plate 3-16, a filtering slide column push spring 3-17, a filtering, 3-22 parts of a first sliding rod, 3-23 parts of a nozzle, 3-24 parts of a vibrator push spring, 3-25 parts of a vibrator, 3-27 parts of a clamping table sliding rod, 3-28 parts of an inner end boss, 3-29 parts of a clamping table sliding rod push spring, 3-30 parts of a spherical clamping rod, 3-31 parts of a spherical clamping rod push spring, 3-32 parts of a communication hole, 3-33 parts of an air inlet hole, 3-34 parts of an inner end sliding ball, 3-35 parts of a sliding ball sliding rod, 3-36 parts of a sliding ball push spring, 3-37 parts of a communication cavity and 3-38 parts of a through hole, 3-2 parts of a filtering outer frame are in sliding connection with a middle end fixing frame I3-1 part, 3-3 parts of a pressurizing outer frame I3-2 part is fixedly connected with the filtering outer frame I3-2 part, 3-32 parts of the communication hole are arranged on the pressurizing outer frame 3, a middle end bracket rod I3-8 is fixedly connected with a supercharging outer frame I3-3, a slide rod waist groove 3-7 is arranged on the middle end bracket rod I3-8, a driving slide rod 3-6 is fixedly connected with the supercharging rod 3-5, a driving slide rod 3-6 is slidably connected with the slide rod waist groove 3-7, a hinged connecting rod 3-9 is hinged with the driving slide rod 3-6, a hinged connecting rod 3-9 is hinged with a driving rod 3-10, the driving rod 3-10 is rotatably connected with a middle end bracket rod II 3-12, a hand lever 3-11 is fixedly connected with the driving rod 3-10, a middle end bracket rod II 3-12 is fixedly connected with a middle end fixing frame I3-1, a spray pipe 3-13 is fixedly connected and communicated with a filtering outer frame I3-2, an arc clamping groove 3-14 is arranged on the filtering outer frame I3-2, the filtering inner frame 3-15 is fixedly connected with the filtering outer frame I3-2, the filtering sliding column 3-17 is fixedly connected with the filtering inner frame 3-15, the middle end filtering plate 3-16 is slidably connected with the filtering sliding column 3-17, the filtering sliding column push spring 3-18 is connected with the filtering sliding column 3-17 in a sleeved mode, the filtering hole I3-19 is arranged on the filtering inner frame 3-15, the filtering hole II 3-20 is arranged on the middle end filtering plate 3-16, the clamping platform sliding rod 3-27 is slidably connected with the filtering outer frame I3-2, the inner end clamping platform 3-21 is fixedly connected with the clamping platform sliding rod 3-27, the clamping platform sliding rod push spring 3-29 is connected with the clamping platform sliding rod 3-27 in a sleeved mode, the clamping platform sliding rod push spring 3-29 is arranged at the outer end of the filtering outer frame I3-2, the inner end boss 3-28 is fixedly connected with the middle end fixing frame I, the clamping table sliding rod 3-27 is connected with the inner end boss 3-28 in a matching mode, the spherical clamping rod 3-30 is connected with the middle end fixing frame I3-1 in a sliding mode, the spherical clamping rod push spring 3-31 is connected with the spherical clamping rod 3-30 in a sleeved mode, the spherical clamping rod 3-30 is connected with the arc-shaped clamping groove 3-14 in a matching mode, the air inlet hole 3-33 is formed in the single outer frame 3-4, the sliding ball sliding rod 3-35 is fixedly connected with the single outer frame 3-4, the sliding ball push spring 3-36 is connected with the sliding ball sliding rod 3-35 in a sleeved mode, the inner end sliding ball 3-34 is connected with the sliding ball sliding rod 3-35 in a sliding mode, the through hole 3-38 is formed in the single outer frame 3-4, and the single outer frame 3-4;
nutrient solution is added into the supercharging outer frame 3-3 through a solution inlet on the supercharging outer frame 3-3, meanwhile, the manual lever 3-11 is manually rotated to drive the driving rod 3-10 to rotate, further, the driving slide rod 3-6 is driven through the hinged connecting rod 3-9, the driving slide rod 3-6 is driven to move along the slide rod waist groove 3-7, the supercharging rod 3-5 is driven to slide along the supercharging outer frame 3-3 through the driving of the driving slide rod 3-6, when the supercharging rod 3-5 moves downwards, the supercharging rod 3-5 pushes the air in the supercharging outer frame 3-3, and pushes the nutrient solution in the supercharging outer frame 3-3 to flow into the filtering outer frame 3-2 through the air in the inner part, when the nutrient solution flows through the filtering inner frame 3-15 and the middle end filtering plate 3-16, the nutrient solution is filtered through the filtering inner frame 3-15, the first filtering holes 3-19 and the second filtering holes 3-20 on the middle-end filtering plate 3-16, impurities in the nutrient solution are prevented from blocking the spraying device 3, the nutrient solution passes through the spraying pipes 3-13 and contacts with the vibrators 3-25 through fluid of the nutrient solution, so that the vibrators 3-25 are scattered, and the nutrient solution is sprayed out through the nozzles 3-23 under the action of pressure in the pressurizing outer frame 3-3 and then sprayed onto seedlings in the seedling outer frame 2-1; the flow of the nutrient solution which can be sprayed can be adjusted according to actual conditions, the middle end fixing frame I3-1 is manually slid upwards, meanwhile, the clamping table slide bars 3-27 are driven to slide along the filtering outer frame I3-2 through the matched connection of the inner end bosses 3-28 on the middle end fixing frame I3-1 to the clamping table slide bars 3-27, meanwhile, the clamping table slide bars 3-27 are compressed to push springs 3-29, the inner end clamping tables 3-21 are driven to move towards the inner ends at the same time through the clamping table slide bars 3-27, the area of the inner diameter of the filtering outer frame I3-2 is shielded through the inner end clamping tables 3-21, further, the amount of the nutrient solution of the inner diameter of the filtering outer frame I3-2 is passed through in unit time, and the adjustment of the flow of the nutrient solution which can be.
The fifth concrete implementation mode:
the embodiment is described below with reference to fig. 1-15, and the embodiment further describes an embodiment one, wherein the culture medium 4 includes a culture medium outer frame 4-1, an inner cavity 4-2, and a support 4-3, the inner cavity 4-2 is disposed at the inner end of the culture medium outer frame 4-1, the support 4-3 is fixedly connected with the culture medium outer frame 4-1, a middle end fixing frame one 3-1 is fixedly connected with the culture medium outer frame 4-1, and a rectangular inner frame one 1-1 is fixedly connected with the culture medium outer frame 4-1.
The sixth specific implementation mode:
the embodiment is described below with reference to fig. 1 to 15, and the embodiment further describes the first embodiment, a liquid inlet is arranged on the pressurizing outer frame 3-3, and the distance of the sliding rod waist groove 3-7 is equal to the difference between the highest point and the lowest point of the motion track of the driving rod 3-10.
The invention relates to a seed culture hotbed, which has the working principle that:
when in use, seedlings to be cultured are placed between the first middle-end sliding rod 2-2 and the second middle-end sliding rod 2-3, the wedge-shaped rods 2-4 are pushed manually at the same time, the first middle-end sliding rod 2-2 and the second middle-end sliding rod 2-3 move towards two sides simultaneously under the action of the wedge-shaped rods 2-4, the first middle-end sliding rod 2-2 and the second middle-end sliding rod 2-3, the seedlings are fixed between the second seedling clamping rod 2-6 and the first seedling clamping rod 2-7, the second seedling clamping rod 2-6 and the first seedling clamping rod 2-7 are clamped and fixed by the pushing of the first inner-end push spring 2-8 and the second inner-push spring 2-9, and the first middle-end sliding rod 2-2 and the second middle-end sliding rod 2-3 are pushed by the third inner-push spring 2-10 and the fourth inner-push spring 2-11, thereby improving the stability of fixing the rice seedlings; the first driving lever 1-10 and the second driving lever 1-12 are pushed inwards manually and are driven by the first driving lever 1-10 and the second driving lever 1-12 to move the first clamping rod 1-9 and the second clamping rod 1-13 outwards simultaneously, so that the first clamping rod 1-9 and the second clamping rod 1-13 are separated from the first rectangular clamping groove 1-4 simultaneously, the slider sleeve 1-7 is slid downwards manually, the lifting plate 1-5 is driven by the slider sleeve 1-7 to change the distance from the lifting plate 1-5 to the first rectangular inner frame 1-1, the outer seedling frame 2-1 is driven by the lifting plate 1-5 to slide along the first sliding column 1-2 at the middle end simultaneously, and the outer seedling frame 2-1 can be contacted with the culture solution in the outer culture medium frame 4-1 conveniently, and the seedlings in the seedling outer frame 2-1 are nourished by the culture solution in the culture medium outer frame 4-1; meanwhile, the clamping rod I1-9 and the clamping rod II 1-13 are connected in a rectangular clamping groove I1-4 in a matched manner through the actions of the clamping rod I1-11 and the clamping rod II 1-14 on the clamping rod I1-9 and the clamping rod II 1-13, so that the positioning of the slider sleeve 1-7 is realized, and the positioning of the outer frame 2-1 of the seedling is further realized; nutrient solution is added into the supercharging outer frame 3-3 through a solution inlet on the supercharging outer frame 3-3, meanwhile, the manual lever 3-11 is manually rotated to drive the driving rod 3-10 to rotate, further, the driving slide rod 3-6 is driven through the hinged connecting rod 3-9, the driving slide rod 3-6 is driven to move along the slide rod waist groove 3-7, the supercharging rod 3-5 is driven to slide along the supercharging outer frame 3-3 through the driving of the driving slide rod 3-6, when the supercharging rod 3-5 moves downwards, the supercharging rod 3-5 pushes the air in the supercharging outer frame 3-3, and pushes the nutrient solution in the supercharging outer frame 3-3 to flow into the filtering outer frame 3-2 through the air in the inner part, when the nutrient solution flows through the filtering inner frame 3-15 and the middle end filtering plate 3-16, the nutrient solution is filtered through the filtering inner frame 3-15, the first filtering holes 3-19 and the second filtering holes 3-20 on the middle-end filtering plate 3-16, impurities in the nutrient solution are prevented from blocking the spraying device 3, the nutrient solution passes through the spraying pipes 3-13 and contacts with the vibrators 3-25 through fluid of the nutrient solution, so that the vibrators 3-25 are scattered, and the nutrient solution is sprayed out through the nozzles 3-23 under the action of pressure in the pressurizing outer frame 3-3 and then sprayed onto seedlings in the seedling outer frame 2-1; the flow of the nutrient solution which can be sprayed can be adjusted according to actual conditions, the middle end fixing frame I3-1 is manually slid upwards, meanwhile, the clamping table slide bars 3-27 are driven to slide along the filtering outer frame I3-2 through the matched connection of the inner end bosses 3-28 on the middle end fixing frame I3-1 to the clamping table slide bars 3-27, meanwhile, the clamping table slide bars 3-27 are compressed to push springs 3-29, the inner end clamping tables 3-21 are driven to move towards the inner ends at the same time through the clamping table slide bars 3-27, the area of the inner diameter of the filtering outer frame I3-2 is shielded through the inner end clamping tables 3-21, further, the amount of the nutrient solution of the inner diameter of the filtering outer frame I3-2 is passed through in unit time, and the adjustment of the flow of the nutrient solution which can be.
Of course, the above description is not intended to limit the present invention, and the present invention is not limited to the above examples, and variations can be made by those skilled in the art within the spirit and scope of the present invention; modifying; and the addition or the replacement also belongs to the protection scope of the invention.
Claims (6)
1. The utility model provides a seed culture hotbed, includes elevating gear (1), seedling fixing device (2), spray set (3), culture medium (4), its characterized in that: the lifting device (1) is connected with the seedling fixing device (2), the spraying device (3) is connected with the culture medium (4), and the lifting device (1) is connected with the culture medium (4).
2. A seed culture hotbed according to claim 1, wherein: the lifting device (1) comprises a rectangular inner frame I (1-1), a middle-end sliding column I (1-2), a rectangular sliding groove I (1-3), a rectangular clamping groove I (1-4), a lifting plate (1-5), a sealing cover (1-6), a sliding sleeve (1-7), a rectangular groove I (1-8), a clamping rod I (1-9), a driving rod I (1-10), a clamping rod pushing spring I (1-11), a driving rod II (1-12), a clamping rod II (1-13) and a clamping rod pushing spring II (1-14), wherein the middle-end sliding column I (1-2) is fixedly connected with the rectangular inner frame I (1-1), the rectangular sliding groove I (1-3) is arranged on the middle-end sliding column I (1-2), the middle-end sliding column I (1-2) is arranged on the middle-end sliding column I (1-2), the slider sleeve (1-7) is fixedly connected with the lifting plate (1-5), the sealing cover (1-6) is fixedly connected with the slider sleeve (1-7), the rectangular groove I (1-8) is arranged on the lifting plate (1-5), the clamping rod I (1-9) is connected with the rectangular clamping groove I (1-4), the clamping rod I (1-9) is slidably connected with the slider sleeve (1-7), the clamping rod push spring I (1-11) is connected with the clamping rod I (1-9) in a sleeved mode, the clamping rod II (1-13) is connected with the rectangular clamping groove I (1-4), the clamping rod II (1-13) is slidably connected with the slider sleeve (1-7), the clamping rod push spring II (1-14) is connected with the clamping rod II (1-13) in a sleeved mode, the deflector rod II (1-12) is fixedly connected with the clamping rod I (1-9), the first driving lever (1-10) is fixedly connected with the second clamping lever (1-13).
3. A seed culture hotbed according to claim 1, wherein: the seedling fixing device (2) comprises a seedling outer frame (2-1), a middle-end sliding rod I (2-2), a middle-end sliding rod II (2-3), a wedge-shaped rod (2-4), a seedling clamping rod II (2-6), a seedling clamping rod I (2-7), an inner-end push spring I (2-8), an inner-end push spring II (2-9), an inner-end push spring III (2-10) and an inner-end push spring IV (2-11), the middle-end sliding rod I (2-2) and the middle-end sliding rod II (2-3) are both in sliding connection with the seedling outer frame (2-1), the wedge-shaped rod (2-4) is in matching connection with the middle-end sliding rod I (2-2) and the middle-end sliding rod II (2-3), and the seedling clamping rod II (2-, The seedling clamping rod I (2-7) is respectively connected with the middle end sliding rod I (2-2) and the middle end sliding rod II (2-3) in a sliding mode, the inner end push spring I (2-8) is arranged between the seedling clamping rod II (2-6) and the middle end sliding rod I (2-2), the inner end push spring II (2-9) is arranged between the seedling clamping rod I (2-7) and the middle end sliding rod II (2-3), the inner end push spring III (2-10) is arranged between the middle end sliding rod I (2-2) and the seedling outer frame (2-1), the inner end push spring IV (2-11) is arranged between the middle end sliding rod II (2-3) and the seedling outer frame (2-1), and the seedling outer frame (2-1) is fixedly connected in the rectangular groove I (1-8).
4. A seed culture hotbed according to claim 1, wherein: the spraying device (3) comprises a middle-end fixing frame I (3-1), a filtering outer frame I (3-2), a pressurizing outer frame (3-3), a single outer frame (3-4), a pressurizing rod (3-5), a driving slide rod (3-6), a slide rod waist groove (3-7), a middle-end support rod I (3-8), a hinged connecting rod (3-9), a driving rod (3-10), a manual rod (3-11), a middle-end support rod II (3-12), a spraying pipe (3-13), an arc clamping groove (3-14), a filtering inner frame (3-15), a middle-end filtering plate (3-16), a filtering slide column (3-17), a filtering slide column push spring (3-18), a filtering hole I (3-19), a filtering hole II (3-20), an inner end clamping table (3-21), A first sliding rod (3-22), a nozzle (3-23), a vibrator push spring (3-24), a vibrator (3-25), a clamping table sliding rod (3-27), an inner end boss (3-28), a clamping table sliding rod push spring (3-29), a spherical clamping rod (3-30), a spherical clamping rod push spring (3-31), a communication hole (3-32), an air inlet hole (3-33), an inner end sliding ball (3-34), a sliding ball sliding rod (3-35), a sliding ball push spring (3-36), a communication cavity (3-37) and a through hole (3-38), wherein a first filtering outer frame (3-2) is in sliding connection with a first middle end fixing frame (3-1), a first pressurizing outer frame (3-3) is fixedly connected with the first filtering outer frame (3-2), and the communication hole (3-32) is arranged on the first pressurizing outer frame (3-3), the single outer frame (3-4) is fixedly connected in the communicating holes (3-32) and communicated with the communicating holes, the pressure increasing rod (3-5) is connected with the single outer frame (3-4) in a sliding way, the middle end bracket rod I (3-8) is fixedly connected with the pressure increasing outer frame (3-3), the sliding rod waist groove (3-7) is arranged on the middle end bracket rod I (3-8), the driving sliding rod (3-6) is fixedly connected with the pressure increasing rod (3-5), the driving sliding rod (3-6) is connected with the sliding rod waist groove (3-7) in a sliding way, the hinged connecting rod (3-9) is hinged with the driving sliding rod (3-6), the hinged connecting rod (3-9) is hinged with the driving rod (3-10), the driving rod (3-10) is rotationally connected with the middle end bracket rod II (3-12), the manual rod (3-11) is fixedly connected with the driving rod (3-10), a middle end support rod II (3-12) is fixedly connected with a middle end fixing frame I (3-1), a spray pipe (3-13) is fixedly connected and communicated with a filtering outer frame I (3-2), an arc-shaped clamping groove (3-14) is arranged on the filtering outer frame I (3-2), a filtering inner frame (3-15) is fixedly connected with the filtering outer frame I (3-2), a filtering sliding column (3-17) is fixedly connected with the filtering inner frame (3-15), a middle end filter plate (3-16) is slidably connected with the filtering sliding column (3-17), a filtering sliding column push spring (3-18) is connected with the filtering sliding column (3-17) in a sleeved mode, a filter hole I (3-19) is arranged on the filtering inner frame (3-15), and a filter hole II (3-20) is arranged on the middle end filter plate (3-16), the clamping table sliding rod (3-27) is connected with the filtering outer frame I (3-2) in a sliding mode, the inner end clamping table (3-21) is fixedly connected with the clamping table sliding rod (3-27), the clamping table sliding rod push spring (3-29) is connected with the clamping table sliding rod (3-27) in a sleeved mode, the clamping table sliding rod push spring (3-29) is arranged at the outer end of the filtering outer frame I (3-2), the inner end boss (3-28) is fixedly connected with the middle end fixing frame I (3-1), the clamping table sliding rod (3-27) is connected with the inner end boss (3-28) in a matched mode, the spherical clamping rod (3-30) is connected with the middle end fixing frame I (3-1) in a sliding mode, the spherical clamping rod push spring (3-31) is connected with the spherical clamping rod (3-30) in a sleeved mode, the spherical clamping rod (3-30) is connected with the arc-shaped clamping groove (, the air inlet holes (3-33) are arranged on the single outer frame (3-4), the sliding ball sliding rods (3-35) are fixedly connected with the single outer frame (3-4), the sliding ball pushing springs (3-36) are connected with the sliding ball sliding rods (3-35) in a sleeved mode, the sliding balls (3-34) at the inner ends are connected with the sliding ball sliding rods (3-35) in a sliding mode, the through holes (3-38) are arranged on the single outer frame (3-4), and the single outer frame (3-4) is communicated with the communicating cavities (3-37).
5. A seed culture hotbed according to claim 1, wherein: the culture medium (4) comprises a culture medium outer frame (4-1), an inner cavity (4-2) and a support (4-3), wherein the inner cavity (4-2) is arranged at the inner end of the culture medium outer frame (4-1), the support (4-3) is fixedly connected with the culture medium outer frame (4-1), a middle-end fixing frame I (3-1) is fixedly connected with the culture medium outer frame (4-1), and a rectangular inner frame I (1-1) is fixedly connected with the culture medium outer frame (4-1).
6. A seed culture hotbed according to claim 3, wherein: a liquid inlet is formed in the pressurizing outer frame (3-3), and the distance between the sliding rod waist grooves (3-7) is equal to the difference value between the highest point and the lowest point of the motion track of the driving rod (3-10).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201911287692.1A CN110915639A (en) | 2019-12-15 | 2019-12-15 | Seed culture hotbed |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201911287692.1A CN110915639A (en) | 2019-12-15 | 2019-12-15 | Seed culture hotbed |
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CN110915639A true CN110915639A (en) | 2020-03-27 |
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Family Applications (1)
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CN201911287692.1A Withdrawn CN110915639A (en) | 2019-12-15 | 2019-12-15 | Seed culture hotbed |
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CN (1) | CN110915639A (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112400405A (en) * | 2020-11-30 | 2021-02-26 | 新疆农科星创科技有限公司 | Seed processing equipment for mixing |
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CN207543938U (en) * | 2017-12-13 | 2018-06-29 | 满朝军 | Agricultural cultivation cultivating seeds disk |
CN207604325U (en) * | 2017-11-08 | 2018-07-13 | 福建农林大学 | Simple lifting plant water-cultivation device |
CN208300580U (en) * | 2018-03-21 | 2019-01-01 | 南通科技职业学院 | A kind of seedling culture device |
CN209518049U (en) * | 2019-02-21 | 2019-10-22 | 解玉玲 | A kind of municipal administration gardens environmental protection nursery auxiliary device |
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KR101325537B1 (en) * | 2011-11-28 | 2013-11-07 | 김영도 | rotary multistage cultivation equipment |
CN104012328A (en) * | 2014-06-08 | 2014-09-03 | 高梅珍 | Lifting flowerpot with water spraying device |
CN107135917A (en) * | 2017-05-09 | 2017-09-08 | 宁波大叶园林工业有限公司 | Flow adjustable type timer |
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Application publication date: 20200327 |