CN114586569A - Considerable type seedling growing device of agricultural of high survival - Google Patents

Considerable type seedling growing device of agricultural of high survival Download PDF

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Publication number
CN114586569A
CN114586569A CN202210312068.8A CN202210312068A CN114586569A CN 114586569 A CN114586569 A CN 114586569A CN 202210312068 A CN202210312068 A CN 202210312068A CN 114586569 A CN114586569 A CN 114586569A
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China
Prior art keywords
plate
seedling raising
seedling
rod
supporting
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CN202210312068.8A
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Chinese (zh)
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CN114586569B (en
Inventor
杨皓天
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Baicheng Normal University
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Baicheng Normal University
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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G9/00Cultivation in receptacles, forcing-frames or greenhouses; Edging for beds, lawn or the like
    • A01G9/02Receptacles, e.g. flower-pots or boxes; Glasses for cultivating flowers
    • A01G9/022Pots for vertical horticulture
    • A01G9/023Multi-tiered planters
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01CPLANTING; SOWING; FERTILISING
    • A01C23/00Distributing devices specially adapted for liquid manure or other fertilising liquid, including ammonia, e.g. transport tanks or sprinkling wagons
    • A01C23/04Distributing under pressure; Distributing mud; Adaptation of watering systems for fertilising-liquids
    • A01C23/042Adding fertiliser to watering systems
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G27/00Self-acting watering devices, e.g. for flower-pots
    • A01G27/003Controls for self-acting watering devices
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G27/00Self-acting watering devices, e.g. for flower-pots
    • A01G27/04Self-acting watering devices, e.g. for flower-pots using wicks or the like
    • A01G27/06Self-acting watering devices, e.g. for flower-pots using wicks or the like having a water reservoir, the main part thereof being located wholly around or directly beside the growth substrate
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G7/00Botany in general
    • A01G7/04Electric or magnetic or acoustic treatment of plants for promoting growth
    • A01G7/045Electric or magnetic or acoustic treatment of plants for promoting growth with electric lighting
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G9/00Cultivation in receptacles, forcing-frames or greenhouses; Edging for beds, lawn or the like
    • A01G9/02Receptacles, e.g. flower-pots or boxes; Glasses for cultivating flowers
    • A01G9/022Pots for vertical horticulture
    • A01G9/025Containers and elements for greening walls
    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A40/00Adaptation technologies in agriculture, forestry, livestock or agroalimentary production
    • Y02A40/10Adaptation technologies in agriculture, forestry, livestock or agroalimentary production in agriculture
    • Y02A40/25Greenhouse technology, e.g. cooling systems therefor

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  • Life Sciences & Earth Sciences (AREA)
  • Environmental Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Water Supply & Treatment (AREA)
  • Soil Sciences (AREA)
  • Biodiversity & Conservation Biology (AREA)
  • Botany (AREA)
  • Ecology (AREA)
  • Forests & Forestry (AREA)
  • Cultivation Receptacles Or Flower-Pots, Or Pots For Seedlings (AREA)

Abstract

The invention discloses a high-survival agricultural observable seedling device, which comprises a seedling rack base, wherein the top end of the seedling rack base is symmetrically and fixedly connected with seedling racks through bolts, a vertical rotary seedling mechanism is arranged between the two seedling racks, a supporting chain wheel drives a fixing buckle, a bearing connecting plate and a seedling supporting plate to vertically rotate through a traction chain, so that seedlings can be irradiated by a seedling light supplement lamp, the high-survival agricultural observable seedling device is scientific and reasonable in structure, safe and convenient to use, is provided with the vertical rotary seedling mechanism, plants the seedlings through the seedling supporting plate, absorbs and retains water through a water absorption cotton plate in the irrigation process, ensures the humidity of soil above the seedling supporting plate, prevents the soil on the seedling supporting plate from being excessively humid when the water absorbed by the water absorption cotton plate reaches the upper absorption limit, and reduces the occurrence of seedling soaking and rotting, in addition, the soil can be prevented from flowing away when water is drained.

Description

Considerable type seedling growing device of agricultural of high survival
Technical Field
The invention relates to the technical field of seedling culture, in particular to a high-survival agricultural considerable seedling culture device.
Background
The seedling raising means the raising of seedlings, which means that the seedlings are raised in a nursery garden, a hotbed or a greenhouse for transplanting to the ground for planting, or the stage that various organisms can survive independently after manual protection in a fine state, namely that the seedlings are strong and half-harvested, and the seedling raising is a work with high labor intensity, time consumption and high technical performance;
however, in the existing seedling raising device, seedlings cannot be sufficiently irradiated in the process of cultivation, the growth effect of the seedlings is affected, the survival rate is reduced, and meanwhile, in the process of irrigation, resource waste is easy to occur, so for these situations, in order to avoid the technical problems, it is necessary to provide a high-survival agricultural considerable seedling raising device to overcome the defects in the prior art.
Disclosure of Invention
The invention provides a high-survival agricultural considerable seedling raising device, which can effectively solve the problems that seedlings cannot be sufficiently irradiated in the background art, the growth effect of the seedlings is influenced, the survival rate is reduced, and meanwhile, resources are easily wasted in the irrigation process.
In order to achieve the purpose, the invention provides the following technical scheme: a high-survival agricultural observable seedling device comprises a seedling frame base, wherein seedling frames are symmetrically and fixedly connected to the top end of the seedling frame base through bolts, and a vertical rotary seedling mechanism is arranged between the two seedling frames;
the supporting chain wheel drives the fixing buckle, the bearing connecting plate and the seedling raising supporting plate to vertically rotate through the traction chain, so that seedlings can be irradiated by the seedling raising light supplement lamp, the seedling raising supporting plate is limited together through the matching of the limiting slide rail and the limiting idler wheel when vertically moving, the seedling raising supporting plate is prevented from being deviated, and the supporting rotating rod and the seedling raising supporting plate are driven to synchronously rotate in the reverse time through the matching of the central gear, the second transmission gear and the first transmission gear when the traction chain rotates in the same time, so that the seedling raising supporting plate is ensured to be horizontal;
an automatic irrigation and water supplementing mechanism is arranged at the top of the inner wall of the seedling raising support;
when the seedling raising supporting plate rotates to the highest point, the limiting idler wheel pushes the arc-shaped plate, the electric push rod and the lifting push plate to slide along the limiting plate, and the transverse pressing plate, the connecting rod and the water plugging plug are driven to move through the matching of the ejector rod, so that the sealing of the conical pipe is relieved, the change of the water level in the water storage tank drives the floating ball to move, the water level display rod and the base plate are pulled to move, the base plate is attached to the touch switch, and the water pump is controlled;
the two ends of the seedling culture bracket are provided with a sealing protection and heat preservation mechanism;
the movable protection frame and the fixed protection frame are used for sealing and protecting the seedling raising support and preserving heat, the seedlings on the seedling raising support plate are observed and recorded through observation glass, the driving motor drives the transmission worm to rotate, and the transmission worm is driven to rotate through the cooperation of the turbine, so that the adjusting rod, the connecting block and the movable protection frame are pushed to slide.
According to the technical scheme, the vertical rotary seedling raising mechanism comprises a transmission cavity, a supporting chain wheel, a traction chain, a fixing buckle, an extension plate, a supporting rotating rod, a first transmission gear, a second transmission gear, a fixing rod, a central gear, a rotating motor, a bearing connecting plate, a seedling raising supporting plate, a water storage box, a water absorption cotton plate, a limiting sliding rail, a limiting roller wheel, a transparent glass frame, a partition plate and a seedling raising light supplement lamp;
the seedling culture support is characterized in that transmission cavities are symmetrically formed in the seedling culture support, supporting chain wheels are rotatably connected at the top and bottom positions of the inner wall of each transmission cavity, a traction chain is sleeved on the outer side of each supporting chain wheel, fixing buckles are fixedly connected to the outer sides of the traction chains at equal intervals through bolts, an extension plate is fixedly connected to the position, corresponding to the inner position of each transmission cavity, of one end of each fixing buckle through a bolt, a supporting rotating rod is rotatably connected to the inner wall of each fixing buckle, a first transmission gear is fixedly sleeved at the position, corresponding to one side of each extension plate, of the outer side of each supporting rotating rod, and a second transmission gear is rotatably connected to the position, corresponding to one side of each first transmission gear, of one end of each extension plate;
fixing rods are clamped on the inner wall of the transmission cavity at equal intervals corresponding to the outer side of the rotating shaft of the supporting chain wheel, a central gear is clamped at the other end of each fixing rod corresponding to the outer side of the rotating shaft of the supporting chain wheel, and rotating motors are clamped at two ends of the seedling raising support corresponding to one side of the supporting chain wheel;
a bearing connecting plate is movably sleeved at the position, corresponding to the inner part of the seedling raising support, of the outer side of the supporting rotating rod, the top end of the bearing connecting plate is fixedly connected with a seedling raising supporting plate through bolts, the bottom end of the seedling raising supporting plate is clamped with a water storage box, the bottom end of the inner part of the water storage box is clamped with a water absorbent cotton plate, limiting sliding rails are clamped at the positions of two sides of one adjacent end of the two seedling raising supports, and limiting idler wheels are symmetrically and rotatably connected at the positions, corresponding to one sides of the limiting sliding rails, of the two ends of the seedling raising supporting plate;
the inner wall of the seedling raising support is fixedly connected with a transparent glass frame through bolts at the position corresponding to the inner side of the traction chain, the inner walls of the transparent glass frames are symmetrically clamped with partition plates, and seedling raising light supplement lamps are clamped between the opposite ends of the two partition plates and the inner wall of the transparent glass frame.
Compared with the prior art, the invention has the beneficial effects that: the invention has scientific and reasonable structure and safe and convenient use:
1. the vertical rotary seedling raising mechanism is arranged, seedlings are planted through the seedling raising supporting plate, meanwhile, in the irrigation process, water is absorbed and reserved through the water absorbing cotton plate, the moisture of soil above the seedling raising supporting plate is guaranteed, when the water absorbed by the water absorbing cotton plate reaches the upper absorption limit, the excessive water seeps out through the bottom end of the water storage box, the soil on the seedling raising supporting plate is prevented from being excessively wet, the phenomenon that the seedlings are soaked and rotten is reduced, in addition, the soil can be prevented from flowing away during drainage, and the adaptability of the seedling raising supporting plate is improved;
the light and temperature are simulated through the seedling light supplement lamp to meet the requirement for seedling growth, the supporting chain wheel and the supporting chain wheel are driven to rotate through the rotating motor, and the bearing connecting plate and the seedling raising supporting plates are driven to vertically rotate through the cooperation of the fixing buckles, so that seedlings on each seedling raising supporting plate can be illuminated, and the growth of the seedlings is guaranteed;
through spacing slide rail and spacing gyro wheel cooperation, carry on spacingly to the layer board of growing seedlings, prevent that the layer board of growing seedlings from appearing the skew when vertical migration, when traction chain takes fixed knot and extension board rotatory, force the rotation of second drive gear through sun gear, it is rotatory to make second drive gear drive first drive gear, thereby when traction chain is rotatory in the same time, it is rotatory in the same time with the layer board of growing seedlings to drive the support bull stick, make the layer board of growing seedlings guarantee the level, reduce the phenomenon of seedling landing from the layer board of growing seedlings.
2. An automatic irrigation and water replenishing mechanism is arranged, the seedling raising supporting plate is driven to move to the highest point through a traction chain, the limiting idler wheel is forced to push the arc plate, the electric push rod and the lifting push plate to slide along the limiting plate, the transverse pressing plate, the connecting rod and the water plugging plug are driven to move through the matching of the ejector rod, the sealing of the conical pipe is relieved, the fertilizer water in the water storage tank is conveniently sprayed out through the spray header, the seedlings on the seedling raising supporting plate at the top end are irrigated, after the seedling raising supporting plate rotates from the highest point, the lifting push plate, the ejector rod, the transverse pressing plate, the connecting rod and the water plugging plug are driven to reset through the telescopic characteristic of the supporting spring, the conical pipe is sealed again, the irrigation is stopped, and the waste of water resources is prevented,
the electric push rod pushes the arc-shaped plate to move, so that the distance between the arc-shaped plate and the lifting push plate is changed, the distance that the ejector rod pushes the transverse pressing plate to move is adjusted, the moving distance between the connecting rod and the water plugging plug and the conical pipe is further adjusted, and the water yield of irrigation is changed;
through recovery tank to the water that leaks down retrieve, be convenient for carry out cyclic utilization, practiced thrift the cost, when the inside water level of storage water tank changes, the floater removes along with the change of water level, and pulling water level display pole and backing plate remove, force the inside touch switch laminating of backing plate and control frame, the control water pump is convenient for supply water, stop, prevent that the inside water of storage water tank from appearing too little, too much phenomenon, guaranteed the convenience of water storage, watering.
3. The seedling raising support is provided with a sealing protection and heat preservation mechanism, the movable protection frame is matched with the fixed protection frame to carry out sealing protection and heat preservation on the seedling raising support, the influence of external factors on seedlings is reduced, the survival rate of the seedlings is improved, the seedlings on the seedling raising support plate are observed through observation glass, the growth condition of the seedlings is recorded, meanwhile, the seedlings on each seedling raising support plate can be observed and recorded due to the fact that the traction chain drives the seedling raising support plate to rotate vertically, and the quantity of fertilization and irrigation can be adjusted conveniently according to the growth condition of the seedlings as required;
it is rotatory to drive the transmission scroll bar through driving motor, and the cooperation through the turbine, it is rotatory to drive the regulation rotary drum, promote to adjust pole and connecting block and remove, simultaneously through the cooperation of supporting wheel and supporting shoe, support the activity protection frame, force the activity protection frame steady slip, open the support of growing seedlings, be convenient for take out fashioned seedling, the convenience has been improved, and when closing, through the flexible characteristic of tensioning spring, make the dog push away and press from both sides tight slide bar and seal splint and remove, force seal splint and activity protection frame closely laminate, sealed effect has been improved.
Synthesize, through the cooperation of vertical rotation mechanism of growing seedlings and automatic watering and moisturizing mechanism, carry out the in-process that fully shines to the seedling, water fixed point to the seedling, when having guaranteed the seedling growth effect, the waste of resource has been reduced, the cost is saved, in addition through sealed protection and heat preservation mechanism reduction seedling by external factor influence the probability, the survival rate of seedling has been improved, simultaneously with the cooperation of vertical rotation mechanism of growing seedlings, be convenient for observe the record to the growth situation of seedling, the flow of in time adjusting the watering, the growth effect of seedling has been increased.
Drawings
The accompanying drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the principles of the invention and not to limit the invention.
In the drawings:
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic structural view of the vertical rotary seedling raising mechanism of the present invention;
FIG. 3 is a schematic view of the mounting arrangement of the present invention for the drag chain;
FIG. 4 is a schematic view of the mounting structure of the holder buckle of the present invention;
FIG. 5 is a schematic view of the mounting structure of the extension panel of the present invention;
FIG. 6 is a schematic view of the installation structure of the absorbent cotton plate of the present invention;
FIG. 7 is a schematic view of the installation structure of the light supplement lamp for seedling growing of the present invention;
FIG. 8 is a schematic view of the mounting structure of the sealing jaw of the present invention;
FIG. 9 is a schematic view of the automatic watering and water replenishing mechanism of the present invention;
FIG. 10 is a schematic structural view of the seal protection and heat preservation mechanism of the present invention;
reference numbers in the figures: 1. a seedling rack base; 2. a seedling raising bracket;
3. vertically rotating the seedling raising mechanism; 301. a transmission cavity; 302. a support sprocket; 303. a drag chain; 304. a fixing buckle; 305. an extension plate; 306. supporting the rotating rod; 307. a first drive gear; 308. a second transmission gear; 309. fixing the rod; 310. a sun gear; 311. a rotating electric machine; 312. a load-bearing connecting plate; 313. seedling raising supporting plates; 314. a water storage box; 315. a water absorbent cotton board; 316. a limiting slide rail; 317. limiting the idler wheel; 318. a transparent glass frame; 319. a partition plate; 320. a seedling growing light supplement lamp;
4. an automatic irrigation and water supplement mechanism; 401. a water storage tank; 402. a tapered tube; 403. a shower head; 404. a limiting plate; 405. lifting the push plate; 406. an electric push rod; 407. an arc-shaped plate; 408. a top rod; 409. a support spring; 410. a transverse pressing plate; 411. a connecting rod; 412. water plugging; 413. a water inlet pipe; 414. a water pump; 415. a water level display rod; 416. a floating ball; 417. a control frame; 418. a touch switch; 419. a base plate; 420. a recovery water tank;
5. a sealing protection and heat preservation mechanism; 501. a limiting vertical plate; 502. clamping the sliding rod; 503. sealing the clamping plate; 504. a stopper; 505. tensioning the spring; 506. fixing a protective frame; 507. a movable protection frame; 508. a groove; 509. a drive scroll bar; 510. a drive motor; 511. adjusting the rotating cylinder; 512. a turbine; 513. adjusting a rod; 514. connecting blocks; 515. a support block; 516. a support wheel; 517. a limiting rod; 518. the glass was observed.
Detailed Description
The preferred embodiments of the present invention will be described in conjunction with the accompanying drawings, and it will be understood that they are described herein for the purpose of illustration and explanation and not limitation.
Example (b): as shown in fig. 1-10, the invention provides a technical scheme, a high survival agricultural observable seedling device, which comprises a seedling frame base 1, wherein seedling frames 2 are symmetrically and fixedly connected to the top end of the seedling frame base 1 through bolts, and a vertical rotating seedling mechanism 3 is arranged between the two seedling frames 2;
the supporting chain wheel 302 drives the fixing buckle 304, the bearing connecting plate 312 and the seedling raising supporting plate 313 to vertically rotate through the traction chain 303, so that seedlings can be irradiated by the seedling raising light supplementing lamp 320, when the seedling raising light supplementing lamp vertically moves, the seedling raising supporting plate 313 is limited through the matching of the limiting sliding rail 316 and the limiting roller 317, the deviation of the seedling raising supporting plate 313 is prevented, and through the matching of the central gear 310, the second transmission gear 308 and the first transmission gear 307, when the traction chain 303 rotates clockwise, the supporting rotating rod 306 and the seedling raising supporting plate 313 are driven to synchronously rotate anticlockwise, so that the seedling raising supporting plate 313 is ensured to be horizontal;
an automatic irrigation and water supplementing mechanism 4 is arranged at the top of the inner wall of the seedling raising bracket 2;
when the seedling raising supporting plate 313 rotates to the highest point, the limiting idler wheel 317 pushes the arc-shaped plate 407, the electric push rod 406 and the lifting push plate 405 to slide along the limiting plate 404, and the transverse pressing plate 410, the connecting rod 411 and the water blocking plug 412 are driven to move by the cooperation of the ejector rod 408, so that the sealing of the conical pipe 402 is released, the change of the water level in the water storage tank 401 drives the floating ball 416 to move, the water level display rod 415 and the base plate 419 are pulled to move, the base plate 419 is attached to the touch switch 418, and the water pump 414 is controlled;
the two ends of the seedling raising bracket 2 are both provided with a sealing protection and heat preservation mechanism 5;
the movable protection frame 507 and the fixed protection frame 506 carry out sealing protection and heat preservation on the seedling raising support 2, meanwhile, seedlings on the seedling raising supporting plate 313 are observed and recorded through the observation glass 518, the driving motor 510 drives the transmission scroll bar 509 to rotate and drives the adjusting rotary drum 511 to rotate through the cooperation of the turbine 512, and therefore the adjusting rod 513, the connecting block 514 and the movable protection frame 507 are pushed to slide;
the vertical rotary seedling raising mechanism 3 comprises a transmission cavity 301, a supporting chain wheel 302, a traction chain 303, a fixing buckle 304, an extension plate 305, a supporting rotating rod 306, a first transmission gear 307, a second transmission gear 308, a fixing rod 309, a central gear 310, a rotary motor 311, a bearing connecting plate 312, a seedling raising supporting plate 313, a water storage box 314, a water absorption cotton plate 315, a limiting slide rail 316, a limiting roller 317, a transparent glass frame 318, a separating plate 319 and a seedling raising light supplement lamp 320;
the seedling raising support 2 is internally and symmetrically provided with a transmission cavity 301, the top and bottom positions of the inner wall of the transmission cavity 301 are rotatably connected with a support chain wheel 302, the outer side of the support chain wheel 302 is sleeved with a traction chain 303, the outer side of the traction chain 303 is fixedly connected with fixing buckles 304 at equal intervals through bolts, one end of each fixing buckle 304 is fixedly connected with an extension plate 305 through a bolt corresponding to the inner position of the transmission cavity 301, the inner wall of each fixing buckle 304 is rotatably connected with a support rotating rod 306, a first transmission gear 307 is fixedly connected to the position, corresponding to one side of the extension plate 305, of the outer side of the support rotating rod 306, and one end of each extension plate 305 is rotatably connected with a second transmission gear 308 corresponding to the position of one side of the first transmission gear 307;
fixing rods 309 are clamped on the inner wall of the transmission cavity 301 at equal intervals corresponding to the outer side of the rotating shaft of the supporting chain wheel 302, a central gear 310 is clamped on the other end of each fixing rod 309 corresponding to the outer side of the rotating shaft of the supporting chain wheel 302, and rotating motors 311 are clamped on the two ends of the seedling raising support 2 corresponding to one side of the supporting chain wheel 302;
the outer side of the supporting rotating rod 306 is movably sleeved with a bearing connecting plate 312 corresponding to the inner position of the seedling raising bracket 2, the top end of the bearing connecting plate 312 is fixedly connected with a seedling raising supporting plate 313 through bolts, the bottom end of the seedling raising supporting plate 313 is clamped with a water storage box 314, the bottom end of the inner part of the water storage box 314 is clamped with a water absorbent cotton plate 315, two adjacent ends of the two seedling raising brackets 2 are clamped with a limit slide rail 316, and the two ends of the seedling raising supporting plate 313 are symmetrically and rotatably connected with limiting rollers 317 at positions corresponding to one side of the limiting slide rail 316, in order to ensure the stability of the seedling raising supporting plate 313, the rotating shaft of the supporting chain wheel 302 is clamped with the output shaft of the rotating motor 311, the first transmission gear 307 is meshed with the second transmission gear 308, the second transmission gear 308 is meshed with the central gear 310, the first transmission gear 307, the second transmission gear 308 and the central gear 310 have the same diameter and the same tooth number, and one end of the supporting rotating rod 306 penetrates through one end of the extension plate 305;
the inner wall of the seedling raising support 2 is fixedly connected with a transparent glass frame 318 through bolts at the position corresponding to the inner side of the traction chain 303, partition plates 319 are symmetrically clamped on the inner wall of the transparent glass frame 318, seedling raising light supplement lamps 320 are clamped between the opposite ends of the two partition plates 319 and the inner wall of the transparent glass frame 318, in order to ensure the irradiation effect, a grating bushing is clamped at the position of the bottom of the inner wall of the seedling raising support plate 313, a gap is reserved between the top end of the water absorbing cotton plate 315 and the top end of the water storage box 314, the outer side of the limiting roller 317 is attached to the inner wall of the limiting sliding rail 316, arc-shaped inlets are formed in the top end and the bottom end of the limiting sliding rail 316, and the seedling raising light supplement lamps 320 and the rotating motor 311 are powered through an external power supply;
the automatic irrigation and water supplement mechanism 4 comprises a water storage tank 401, a conical pipe 402, a spray header 403, a limiting plate 404, a lifting push plate 405, an electric push rod 406, an arc-shaped plate 407, a push rod 408, a supporting spring 409, a transverse pressing plate 410, a connecting rod 411, a water blocking plug 412, a water inlet pipe 413, a water pump 414, a water level display rod 415, a floating ball 416, a control frame 417, a touch switch 418, a base plate 419 and a recovery water tank 420;
a water storage tank 401 is clamped at the top of the inner wall of the seedling raising support 2, conical pipes 402 are clamped at the bottom of the water storage tank 401 at equal intervals, the bottom of each conical pipe 402 is connected with a spray head 403 through threads, limiting plates 404 are symmetrically and fixedly connected to the positions, corresponding to the bottom of the water storage tank 401, of the inner wall of the seedling raising support 2 through bolts, a lifting push plate 405 is movably connected between the two limiting plates 404, electric push rods 406 are symmetrically clamped at the bottom of the lifting push plate 405, and an arc-shaped plate 407 is clamped at the bottom of the electric push rods 406;
the top end of the lifting push plate 405 is symmetrically clamped with ejector rods 408, the top ends of the lifting push plate 405 and the bottom end of the water storage tank 401 are respectively clamped with a support spring 409 at a position corresponding to the outer side of the ejector rod 408, the top end of the ejector rod 408 is clamped with a transverse press plate 410 at a position corresponding to the inner part of the water storage tank 401, the bottom end of the transverse press plate 410 is clamped with a connecting rod 411 at an equal distance, the bottom end of the connecting rod 411 is clamped with a water plugging plug 412 at a position corresponding to the inner part of the conical tube 402, in order to limit the lifting push plate 405, the inner wall of the limiting plate 404 is provided with a sliding groove, the two ends of the lifting push plate 405 are respectively clamped with a sliding block at positions corresponding to the inner parts of the sliding grooves, the bottom end of the arc plate 407 is attached to the top end 317 of the limiting roller, and the joint of the outer side of the ejector rod 408 and the inner wall of the water storage tank 401 is filled with a waterproof rubber ring;
the two ends of the water storage tank 401 are respectively clamped with a water inlet pipe 413, the outer side of the water inlet pipe 413 is provided with a water pump 414, the top end of the water storage tank 401 corresponding to the positions of the two sides of the seedling raising bracket 2 is respectively connected with a water level display rod 415 in a sliding manner, the bottom end of the water level display rod 415 corresponding to the position inside the water storage tank 401 is fixedly connected with a floating ball 416, the top end of the water storage tank 401 corresponding to the position outside the water level display rod 415 is fixedly connected with a control frame 417 through a bolt, the top end and the bottom end inside the control frame 417 are respectively fixedly connected with a touch switch 418 through a bolt, the top end of the water level display rod 415 corresponding to the position inside the control frame 417 is clamped with a backing plate 419, the top end of the seedling raising frame base 1 corresponding to the position inside the seedling raising bracket 2 is clamped with a recovery water tank 420, in order to control the water pump 414, the electric push rod 406 and the touch switch 418 are both supplied with power through an external power supply, and the signal output end of the touch switch 418 is connected with the input end of the water pump 414, the top end of the water level display rod 415 penetrates through the top end of the water storage tank 401 and the bottom end of the control frame 417, and one end of the recovery water tank 420 is clamped with a drain pipe;
the sealing protection and heat preservation mechanism 5 comprises a limiting vertical plate 501, a clamping sliding rod 502, a sealing clamping plate 503, a stop block 504, a tensioning spring 505, a fixed protection frame 506, a movable protection frame 507, a groove 508, a transmission scroll bar 509, a driving motor 510, an adjusting rotary drum 511, a turbine 512, an adjusting rod 513, a connecting block 514, a supporting block 515, a supporting wheel 516, a limiting rod 517 and observation glass 518;
the two ends of the seedling culture support 2 are symmetrically clamped with limiting vertical plates 501, the inner walls of the limiting vertical plates 501 are movably connected with clamping slide bars 502 at equal intervals, sealing clamp plates 503 are clamped at positions, corresponding to the inner sides of the limiting vertical plates 501, of one ends of the clamping slide bars 502, stop blocks 504 are welded at positions, corresponding to the outer sides of the limiting vertical plates 501, of the other ends of the clamping slide bars 502, tensioning springs 505 are clamped at positions, corresponding to the outer sides of the clamping slide bars 502, between the stop blocks 504 and the limiting vertical plates 501, fixed protection frames 506 are clamped at positions, corresponding to the inner parts of the limiting vertical plates 501, of one ends of the seedling culture support 2, movable protection frames 507 are movably connected at positions, corresponding to the inner parts of the limiting vertical plates 501, of the other ends of the seedling culture support 2, and observation glass 518 is clamped on the inner walls of the movable protection frames 507 and the fixed protection frames 506;
the top end of the seedling raising bracket 2 is provided with a groove 508, the inner wall of the groove 508 is rotatably connected with a transmission scroll bar 509, one end of the seedling raising bracket 2 corresponding to one side of the transmission scroll bar 509 is fixedly connected with a driving motor 510 through a bolt, in order to ensure the heat preservation effect, one end of a sealing clamp plate 503 is attached to one end of a fixed protection frame 506, an observation glass 518 is hollow glass, the driving motor 510 is powered by an external power supply, an output shaft of the driving motor 510 is clamped with one end of the transmission scroll bar 509, the inner wall of the groove 508 corresponding to the top of the transmission scroll bar 509 is rotatably connected with an adjusting rotary drum 511 at an equal distance, a turbine 512 is fixedly sleeved at the outer side of the adjusting rotary drum 511 corresponding to the top of the transmission scroll bar 509, an adjusting rod 513 is connected inside the adjusting rotary drum 511 through a thread, a connecting block 514 is fixedly sleeved at the other end of the adjusting rotary drum 513 corresponding to the top of a movable protection frame 507, and a supporting block 515 is fixedly connected at the bottom of one end of the movable protection frame 507 through a bolt at an equal distance, and supporting shoe 515 both ends all rotate and are connected with supporting wheel 516, and supporting shoe 515 one end joint has gag lever post 517, and in order to transmit power, turbine 512 and transmission worm 509 intermeshing adjust rotary drum 511 one end and run through recess 508, gag lever post 517 one end and the swing joint of nursery sock base 1.
The working principle and the using process of the invention are as follows: firstly, the supporting rotating rod 306 is fixedly installed on the outer side of the traction chain 303 through the fixing buckle 304, the seedling raising supporting plates 313 are sleeved inside the supporting rotating rod 306 one by one through the matching of the bearing connecting plates 312, the number of seedlings planted inside the seedling raising support 2 is increased, the cultivation efficiency is increased, in the cultivation process, the illumination and the temperature are simulated through the seedling raising light supplementing lamps 320 to meet the requirements of seedling growth, in addition, the supporting chain wheel 302 is driven to rotate through the rotating motor 311, the supporting chain wheel 302 drives the traction chain 303 to rotate, and further the bearing connecting plates 312 and the seedling raising supporting plates 313 are driven to rotate vertically, so that seedlings on each seedling raising supporting plate 313 can be illuminated, and the growth of the seedlings is ensured;
then when the traction chain 303 drives the fixing buckle 304, the bearing connecting plate 312, the supporting rotating rod 306 and the seedling raising supporting plate 313 to vertically lift, the seedling raising supporting plate 313 is limited by the matching of the limiting slide rail 316 and the limiting idler wheel 317, so that the seedling raising supporting plate 313 is prevented from deviating, and when the traction chain 303 drives the fixing buckle 304, the bearing connecting plate 312, the supporting rotating rod 306 and the seedling raising supporting plate 313 to rotate, the central gear 310 drives the second transmission gear 308 to rotate, so that the second transmission gear 308 drives the first transmission gear 307 to rotate, and further when the traction chain 303 rotates clockwise, the supporting rotating rod 306 and the seedling raising supporting plate 313 are driven to synchronously rotate anticlockwise, so that the seedling raising supporting plate 313 is ensured to be horizontal, and the phenomenon that seedlings fall off the seedling raising supporting plate 313 is reduced;
then, when the traction chain 303 drives the seedling raising support plate 313 to move to the highest point in the seedling raising support 2, the arc-shaped plate 407, the electric push rod 406 and the lifting push plate 405 are pushed by the limiting roller 317 to slide along the limiting plate 404, so that the push rod 408 is pushed to ascend, the push rod 408 drives the transverse press plate 410 to ascend in the water storage tank 401, then the water blocking plug 412 is pulled by the matching of the connecting rod 411 to remove the sealing of the conical pipe 402, so that the fertilizer water in the water storage tank 401 can be conveniently sprayed out through the spray head 403 to be irrigated with the seedlings on the seedling raising support plate 313 at the top end, after the seedling raising support plate 313 rotates down from the highest point, the lifting push plate 405 is driven to reset through the telescopic characteristic of the supporting spring 409, the lifting push plate 405 pulls the push rod 408, the transverse press plate 410, the connecting rod 411 and the water blocking plug 412 to reset, the conical pipe 402 is sealed again, the irrigation is stopped, and the water resource waste is prevented, in addition, the electric push rod 406 pushes the arc-shaped plate 407 to move, the distance between the arc-shaped plate 407 and the lifting push plate 405 is changed, the distance that the ejector rod 408 pushes the transverse press plate 410 to move is adjusted, the distance between the connecting rod 411 and the water blocking plug 412 and the conical pipe 402 is further adjusted, and the water yield of irrigation is changed;
then, in the irrigation process, water on the seedling raising supporting plate 313 seeps into the water storage box 314, and the water is absorbed and retained through the cooperation of the water absorbing cotton plate 315, so that the soil above the seedling raising supporting plate 313 is ensured to be wet, when the water absorbed by the water absorbing cotton plate 315 reaches the upper absorption limit, the excess water seeps out through the bottom end of the water storage box 314, the soil on the seedling raising supporting plate 313 is prevented from being excessively wet, the seedling soaking and rotting phenomenon is reduced, in addition, the soil can be prevented from flowing and scattering during drainage, and the adaptability of the seedling raising supporting plate 313 is improved;
then, the drained water is recycled through the recycling water tank 420, recycling is facilitated, cost is saved, when the water level of the rich water in the water storage tank 401 is too low, the floating ball 416 descends, the water level display rod 415 and the cushion plate 419 are pulled to descend, the cushion plate 419 is forced to be attached to the touch switch 418 at the bottom end of the control frame 417, the water pump 414 is started, the rich water is sent into the water storage tank 401 through the water inlet pipe 413, the floating ball 416 ascends along with the rise of the water level in the water storage tank 401, the water level display rod 415 and the cushion plate 419 are pushed to ascend, the cushion plate 419 is forced to be attached to the touch switch 418 at the top end of the control frame 417, power supply to the water pump 414 is cut off, water supplement is stopped, excessive water in the water storage tank 401 is prevented, and convenience of water storage and irrigation is guaranteed;
then, the movable protection frame 507 is matched with the fixed protection frame 506, the seedling raising support 2 is sealed, protected and insulated, the influence of external factors on seedlings is reduced, the survival rate of the seedlings is improved, meanwhile, the seedlings on the seedling raising support plates 313 are observed through the observation glass 518, the growth conditions of the seedlings are recorded, in addition, the seedlings on each seedling raising support plate 313 can be observed and recorded due to the fact that the traction chain 303 drives the seedling raising support plates 313 to rotate vertically, the fertilizing and irrigating quantity can be adjusted conveniently according to the growth conditions of the seedlings as required, and the survival rate of the seedlings is improved to the maximum extent;
finally, the driving worm 509 is driven to rotate by the driving motor 510, the driving worm 509 is matched with the turbine 512, the adjusting rotary drum 511 is driven to rotate, the adjusting rod 513 and the connecting block 514 are pushed to move, meanwhile, the movable protective frame 507 is forced to slide by the matching of the supporting wheel 516 and the supporting block 515, the seedling raising support 2 is further opened, formed seedlings are taken out conveniently, convenience is improved, in addition, when the seedling raising support is closed, the stop block 504 is pulled by the stretching characteristic of the tensioning spring 505, the stop block 504 pushes the clamping slide rod 502 and the sealing clamp plate 503 to move, the sealing clamp plate 503 is tightly attached to the movable protective frame 507, and the sealing effect is improved.
Finally, it should be noted that: 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 changes may be made in the embodiments and/or equivalents thereof without departing from the spirit and scope of the invention. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (10)

1. The utility model provides a considerable type of agricultural seedling culture device of high survival, includes seedling frame base (1), its characterized in that: seedling raising brackets (2) are symmetrically and fixedly connected to the top end of the seedling raising frame base (1) through bolts, and a vertical rotary seedling raising mechanism (3) is arranged between the two seedling raising brackets (2);
the supporting chain wheel (302) drives the fixing buckle (304), the bearing connecting plate (312) and the seedling raising supporting plate (313) to vertically rotate through the traction chain (303), so that seedlings can be irradiated by the seedling raising light supplement lamp (320), when the seedling raising light supplement lamp vertically moves, the seedling raising supporting plate (313) is limited through the matching of the limiting sliding rail (316) and the limiting roller (317), the deviation of the seedling raising supporting plate (313) is prevented, and through the matching of the central gear (310), the second transmission gear (308) and the first transmission gear (307), when the traction chain (303) rotates clockwise, the supporting rotating rod (306) and the seedling raising supporting plate (313) are driven to synchronously rotate anticlockwise, so that the seedling raising supporting plate (313) is ensured to be horizontal;
an automatic irrigation and water supplementing mechanism (4) is arranged at the top of the inner wall of the seedling raising bracket (2);
when the seedling raising supporting plate (313) rotates to the highest point, the limiting idler wheel (317) pushes the arc-shaped plate (407), the electric push rod (406) and the lifting push plate (405) to slide along the limiting plate (404), and the transverse pressing plate (410), the connecting rod (411) and the water blocking plug (412) are driven to move through the matching of the ejector rod (408), so that the sealing of the conical pipe (402) is released, the change of the water level in the water storage tank (401) drives the floating ball (416) to move, the water level display rod (415) and the base plate (419) are pulled to move, the base plate (419) is attached to the touch switch (418), and the water pump (414) is controlled;
two ends of the seedling raising bracket (2) are respectively provided with a sealing protection and heat preservation mechanism (5);
the movable protection frame (507) and the fixed protection frame (506) are used for sealing protection and heat preservation of the seedling raising support (2), seedlings on the seedling raising supporting plate (313) are observed and recorded through observation glass (518), the driving motor (510) drives the transmission worm (509) to rotate, and the adjustment rotary drum (511) is driven to rotate through the cooperation of the turbine (512), so that the adjustment rod (513), the connection block (514) and the movable protection frame (507) are pushed to slide.
2. A high-survival agricultural-observable grow-seedling device as claimed in claim 1, wherein: the vertical rotary seedling raising mechanism (3) comprises a transmission cavity (301), a supporting chain wheel (302), a traction chain (303), a fixing buckle (304), an extension plate (305), a supporting rotating rod (306), a first transmission gear (307), a second transmission gear (308), a fixing rod (309), a central gear (310), a rotating motor (311), a bearing connecting plate (312), a seedling raising supporting plate (313), a water storage box (314), a water absorption cotton plate (315), a limiting sliding rail (316), a limiting roller (317), a transparent glass frame (318), a partition plate (319) and a seedling raising light supplementing lamp (320);
the seedling raising support (2) is internally and symmetrically provided with a transmission cavity (301), the top and bottom positions of the inner wall of the transmission cavity (301) are rotatably connected with a supporting chain wheel (302), the outer side of the supporting chain wheel (302) is sleeved with a traction chain (303), the outer side of the traction chain (303) is fixedly connected with a fixing buckle (304) through bolts at equal intervals, one end of the fixing buckle (304) corresponding to the inner position of the transmission cavity (301) is fixedly connected with an extension plate (305) through bolts, the inner wall of the fixing buckle (304) is rotatably connected with a supporting rotating rod (306), a first transmission gear (307) is fixedly sleeved at a position on one side of the extension plate (305) corresponding to the outer side of the supporting rotating rod (306), and one end of the extension plate (305) is rotatably connected with a second transmission gear (308) at a position on one side of the first transmission gear (307);
fixing rods (309) are clamped at positions, corresponding to the outer side of a rotating shaft of the supporting chain wheel (302), of the inner wall of the transmission cavity (301) at equal intervals, a central gear (310) is clamped at a position, corresponding to the outer side of the rotating shaft of the supporting chain wheel (302), of the other end of each fixing rod (309), and rotating motors (311) are clamped at positions, corresponding to one side of the supporting chain wheel (302), of two ends of the seedling culture support (2);
the outer side of the supporting rotating rod (306) is fixedly sleeved with a bearing connecting plate (312) corresponding to the inner position of the seedling raising support (2), the top end of the bearing connecting plate (312) is fixedly connected with a seedling raising supporting plate (313) through a bolt, the bottom end of the seedling raising supporting plate (313) is clamped with a water storage box (314), the bottom end of the inner part of the water storage box (314) is clamped with a water absorbent cotton plate (315), two adjacent ends of the two seedling raising supports (2) are respectively clamped with a limiting slide rail (316), and two ends of the seedling raising supporting plate (313) are respectively and symmetrically and rotatably connected with a limiting idler wheel (317) corresponding to one side of the limiting slide rail (316);
the seedling raising support is characterized in that the inner wall of the seedling raising support (2) corresponds to the inner side position of the traction chain (303) and is fixedly connected with a transparent glass frame (318) through bolts, partition plates (319) are symmetrically clamped on the inner wall of the transparent glass frame (318), and seedling raising light supplement lamps (320) are clamped between one ends, opposite to the two partition plates (319), of the two partition plates and the inner wall of the transparent glass frame (318).
3. A high-survival agricultural-observable grow-seedling device as claimed in claim 2, wherein: the rotating shaft of the supporting chain wheel (302) is connected with an output shaft of a rotating motor (311) in a clamping mode, the first transmission gear (307) is meshed with the second transmission gear (308), the second transmission gear (308) is meshed with the central gear (310), the first transmission gear (307), the second transmission gear (308) and the central gear (310) are identical in diameter and tooth number and the supporting rotating rod (306) penetrates through one end of the extending plate (305).
4. A high-survival agricultural-observable grow-seedling device as claimed in claim 2, wherein: the joint of seedling raising supporting plate (313) inner wall bottom position department has the grid bushing, leave the space between cotton board (315) top and water storage box (314) top absorbs water, the outside of spacing gyro wheel (317) is laminated with the inner wall of spacing slide rail (316) mutually, the arc entry has all been seted up to spacing slide rail (316) top and bottom, seedling raising light filling lamp (320) and rotating electrical machines (311) all supply power through external power source.
5. A high-survival agricultural-observable grow-seedling device as claimed in claim 2, wherein: the automatic watering and water supplementing mechanism (4) comprises a water storage tank (401), a conical pipe (402), a spray header (403), a limiting plate (404), a lifting push plate (405), an electric push rod (406), an arc plate (407), a push rod (408), a supporting spring (409), a transverse pressing plate (410), a connecting rod (411), a water blocking plug (412), a water inlet pipe (413), a water pump (414), a water level display rod (415), a floating ball (416), a control frame (417), a touch switch (418), a cushion plate (419) and a recovery water tank (420);
a water storage tank (401) is clamped at the top of the inner wall of the seedling culture support (2), conical pipes (402) are clamped at the bottom end of the water storage tank (401) at equal intervals, the bottom end of each conical pipe (402) is connected with a spray header (403) through threads, limiting plates (404) are symmetrically and fixedly connected to the inner wall of the seedling culture support (2) corresponding to the bottom of the water storage tank (401) through bolts, a lifting push plate (405) is movably connected between the two limiting plates (404), electric push rods (406) are symmetrically clamped at the bottom ends of the lifting push plates (405), and arc plates (407) are clamped at the bottom ends of the electric push rods (406);
ejector rods (408) are symmetrically clamped at the top end of the lifting push plate (405), supporting springs (409) are clamped at positions, corresponding to the outer sides of the ejector rods (408), of the top end of the lifting push plate (405) and the bottom end of the water storage tank (401), transverse pressing plates (410) are clamped at positions, corresponding to the inner parts of the water storage tank (401), of the top end of the ejector rods (408), connecting rods (411) are clamped at equal intervals at the bottom end of the transverse pressing plates (410), and water plugging plugs (412) are clamped at positions, corresponding to the inner parts of the tapered pipes (402), of the bottom ends of the connecting rods (411);
both ends of the water storage tank (401) are clamped with water inlet pipes (413), the outer sides of the water inlet pipes (413) are provided with water pumps (414), the positions of the top end of the water storage tank (401) corresponding to the two sides of the seedling raising bracket (2) are both connected with a water level display rod (415) in a sliding way, a floating ball (416) is fixedly sleeved at the bottom end of the water level display rod (415) corresponding to the inner position of the water storage tank (401), a control frame (417) is fixedly connected at the position of the top end of the water storage tank (401) corresponding to the outer side of the water level display rod (415) through bolts, the top end and the bottom end inside the control frame (417) are fixedly connected with a touch switch (418) through bolts, a backing plate (419) is clamped at the position of the top end of the water level display rod (415) corresponding to the inner part of the control frame (417), the top end of the seedling raising frame base (1) is clamped with a recovery water tank (420) corresponding to the inner position of the seedling raising bracket (2).
6. A high-survival agricultural-observable seedling raising device as claimed in claim 5, wherein: the spout has been seted up to limiting plate (404) inner wall, the equal joint in the corresponding spout internal position department in lift push pedal (405) both ends has the slider, the bottom and spacing gyro wheel (317) top of arc (407) laminate mutually, the junction packing of ejector pin (408) outside and storage water tank (401) inner wall has waterproof rubber circle.
7. A high-survival agricultural-appreciable seedling raising apparatus according to claim 5, characterized in that: electric putter (406) and touch switch (418) all supply power through external power source, the signal output part of touch switch (418) is connected with the input of water pump (414), the bottom that storage water tank (401) top and control frame (417) are run through to the top of water level display pole (415), recovery water tank (420) one end joint has the drain pipe.
8. A high-survival agricultural-observable grow-seedling device as claimed in claim 2, wherein: the sealing protection and heat preservation mechanism (5) comprises a limiting vertical plate (501), a clamping sliding rod (502), a sealing clamping plate (503), a stop block (504), a tensioning spring (505), a fixed protection frame (506), a movable protection frame (507), a groove (508), a transmission worm rod (509), a driving motor (510), an adjusting rotary drum (511), a turbine (512), an adjusting rod (513), a connecting block (514), a supporting block (515), a supporting wheel (516), a limiting rod (517) and observation glass (518);
the two ends of the seedling raising support (2) are symmetrically clamped with limiting vertical plates (501), the inner walls of the limiting vertical plates (501) are movably connected with clamping slide bars (502) at equal intervals, a sealing splint (503) is clamped at the position of one end of the clamping slide bar (502) corresponding to the inner side of the limiting vertical plate (501), a stop block (504) is welded at the position of the other end of the clamping slide bar (502) corresponding to the outer side of the limit vertical plate (501), a tension spring (505) is clamped between the stop block (504) and the limit vertical plate (501) at the position corresponding to the outer side of the clamping slide rod (502), a fixed protective frame (506) is clamped at the position corresponding to the inner part of the limiting vertical plate (501) at one end of the seedling culture support (2), the other end of the seedling raising bracket (2) is movably connected with a movable protective frame (507) through the position corresponding to the inner part of the limiting vertical plate (501), observation glass (518) is clamped on the inner walls of the movable protective frame (507) and the fixed protective frame (506);
the seedling raising support is characterized in that a groove (508) is formed in the top end of the seedling raising support (2), the inner wall of the groove (508) is rotatably connected with a transmission worm rod (509), one end of the seedling raising support (2) is fixedly connected with a driving motor (510) through a bolt at a position corresponding to one side of the transmission worm rod (509), the inner wall of the groove (508) is rotatably connected with an adjusting rotary drum (511) at an equal distance at a position corresponding to the top of the transmission worm rod (509), a turbine (512) is fixedly sleeved at a position corresponding to the top of the transmission worm rod (509) outside the adjusting rotary drum (511), an adjusting rod (513) is connected inside the adjusting rotary drum (511) through a thread, a connecting block (514) is fixedly sleeved at a position corresponding to the top of a movable protective frame (507) at the other end of the adjusting rod (513), supporting blocks (515) are fixedly connected at an equal distance at the bottom of one end of the movable protective frame (507) through bolts, and supporting wheels (516) are rotatably connected at two ends of the supporting blocks (515), one end of the supporting block (515) is clamped with a limiting rod (517).
9. A high-survival agricultural-observable grow-seedling device as claimed in claim 8, wherein: sealed splint (503) one end is laminated with fixed protection frame (506) one end mutually, it is cavity glass to observe glass (518), driving motor (510) supply power through external power source, and the output shaft and the transmission scroll bar (509) one end joint of driving motor (510).
10. The high-survival agricultural considerable seedling raising device according to claim 8, wherein: the turbine (512) is meshed with the transmission scroll bar (509), one end of the adjusting rotary drum (511) penetrates through the groove (508), and one end of the limiting rod (517) is movably connected with one end of the seedling rack base (1).
CN202210312068.8A 2022-03-28 2022-03-28 Considerable type seedling growing device of agricultural of high survival Active CN114586569B (en)

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