CN210168563U - Vegetable seedling cultivation device - Google Patents

Vegetable seedling cultivation device Download PDF

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Publication number
CN210168563U
CN210168563U CN201921063893.9U CN201921063893U CN210168563U CN 210168563 U CN210168563 U CN 210168563U CN 201921063893 U CN201921063893 U CN 201921063893U CN 210168563 U CN210168563 U CN 210168563U
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seedling
limiting
side wall
groove
placing groove
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CN201921063893.9U
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Inventor
Lifeng Xie
谢立峰
Ye Li
李烨
Tingting Zhao
赵婷婷
Jingbin Jiang
姜景彬
Xiangyang Xu
许向阳
Bihao Cao
曹必好
Baijie Chen
陈柏杰
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Harbin Academy of Agricultural Sciences
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Harbin Academy of Agricultural Sciences
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Abstract

The utility model provides a vegetables seedling culture apparatus, belongs to agricultural seedling growing technical field, the utility model discloses a solve the extravagant serious, damage, the rupture of seedling and white pollution's problem of water. A vegetable seedling cultivating device comprises a placing groove, a positioning device, a partition plate, a heating resistance wire and a seedling cultivating plate; two positioning devices are arranged on the left side wall and the right side wall of the placing groove, the positioning devices are symmetrically arranged in parallel, sliding grooves are formed in the front side wall and the rear side wall of the placing groove, the sliding grooves are symmetrically arranged in parallel, a partition plate is arranged in the placing groove and is positioned below the positioning devices, heating resistance wires are symmetrically arranged on the lower end face of the partition plate, and a seedling raising tray is arranged on the positioning devices; the seedling raising tray comprises a strip-shaped placing frame, a seedling raising barrel and a limiting rod; a plurality of bar rack parallel arrangement, the both ends of bar rack lean on with two adjusting position devices on the standing groove lateral wall respectively. The utility model discloses can solve the extravagant serious, the damage of seedling, rupture and white pollution's of water problem to reach water economy resource, protection seedling and less white pollution's effect.

Description

Vegetable seedling cultivation device
Technical Field
The utility model belongs to the technical field of the agricultural is grown seedlings, concretely relates to vegetables seedling culture apparatus.
Background
In most vegetable cultivation, seedling culture is an important link, the growth and development state of the seedling stage often affects the early stage and even the whole growth cycle, the existing vegetable seedling culture mainly comprises a seedling culture cylinder, vegetable seeds are cultivated in a greenhouse, transplanting is carried out after the development of the vegetable seedlings is finished, the existing irrigation mode mainly utilizes a spraying device to water a seedling cultivation cylinder, the irrigation water flow speed is higher than the penetration speed of water in the seedling cultivation cylinder in soil, a large amount of water resource waste is caused, meanwhile, the wasted water resource can be sprinkled on the soil on the ground, which causes serious water in the ground area in the greenhouse, the transplanting method mostly adopts the way of transplanting the seedling growing cylinder into a container, transplant a seedling section of thick bamboo to planting place in following the big-arch shelter through holding the household utensils, cause the seedling to damage, break easily, a seedling section of thick bamboo is mostly disposable plastics simultaneously, pollutes seriously.
SUMMERY OF THE UTILITY MODEL
The utility model overcomes above-mentioned prior art is not enough, provides a vegetable seedling cultivation ware, the utility model discloses a standing groove, adjusting device, baffle, heating resistor silk and educate seedling tray fully combine to have reached water economy resource, protection seedling and less white pollution's effect. In view of this, the utility model provides a simple structure, reasonable in design can realize passing through to solve the extravagant serious, seedling damage, rupture and the white problem of polluting of water at least.
The technical scheme of the utility model:
a vegetable seedling cultivating device comprises a placing groove, a positioning device, a partition plate, a heating resistance wire and a seedling cultivating plate; two positioning devices are arranged on the left side wall and the right side wall of the placing groove, the positioning devices are symmetrically arranged in parallel, sliding grooves are formed in the front side wall and the rear side wall of the placing groove, the sliding grooves are symmetrically arranged in parallel, a partition plate is arranged in the placing groove and is positioned below the positioning devices, heating resistance wires are symmetrically arranged on the lower end face of the partition plate, and a seedling raising tray is arranged on the positioning devices;
the seedling raising tray comprises a strip-shaped placing frame, a seedling raising barrel and a limiting rod; a plurality of bar rack parallel arrangement, the both ends of bar rack offset respectively with two positioning device on the standing groove lateral wall and lean on, the array is provided with a seedling raising section of thick bamboo in the bar rack, and the diapire of bar rack is provided with the gag lever post through the spacing ring, and two gag lever posts symmetry set up the both ends at a seedling raising section of thick bamboo to offset with the lateral wall of a seedling raising section of thick bamboo and lean on, gag lever post and bar rack mutually perpendicular.
Preferably, the seedling growing cylinder comprises a connecting nut, a sleeve sheet, a semicircular sheet and a water storage sponge; the inner wall of the connecting nut is provided with an internal thread, the sleeve pieces are semi-circular pipes, external threads are arranged on the outer wall of the upper end of each sleeve piece, the inner wall of the lower end of each sleeve piece is provided with a semi-circular piece, the two sleeve pieces and the two semi-circular pieces form a cylinder with a bottom, the upper end of the cylinder is fixedly provided with the connecting nut through threads, the inner wall of each sleeve piece is provided with an arc-shaped groove, water storage sponges are arranged in the arc-shaped grooves, the side wall of each arc-shaped groove and the corresponding semi-circular piece are provided with water inlet holes, and water enters soil between the two sleeve pieces from the water inlet holes of.
Preferably, the positioning device comprises a box body, a manual rotating disc, a ratchet wheel, a driving gear, a rotating rod, driven gears, a cam, a limiting plate strip and a limiting member, wherein the box body is symmetrically arranged on the outer side wall of the placing groove, the manual rotating disc, the ratchet wheel and the driving gear are rotatably arranged on the box body through the rotating rod, the manual rotating disc is rotatably arranged outside the box body, the ratchet wheel and the driving gear are rotatably arranged in the box body, a plurality of driven gears are arranged in the box body and are connected with the cam in the placing groove through a rotating shaft, the cam is abutted against the bottom wall of the limiting plate strip, the upper wall of the limiting plate strip is abutted against the strip-shaped placing frame, the limiting plate strip is movably arranged in the sliding groove, the driving gear is meshed with the adjacent driven gears, the adjacent driven gears are mutually meshed, the limiting member.
Preferably, the limiting component comprises a fixed block, a connecting rod, a pressure spring, a baffle and a limiting block; the fixed block is opened there is first recess, and open first recess upper end has the through-hole, and the connecting rod slides and sets up in the through-hole, and the other end of connecting rod passes pressure spring and separation blade in the first recess and links to each other with the stopper, and the stopper cooperatees with the ratchet, and pressure spring's both ends are connected with first recess upper wall and separation blade respectively.
Preferably, a groove is formed between the two sliding grooves of the front side wall of the placing groove.
The utility model has the advantages that:
1) the utility model discloses insert the gag lever post in proper order in the spacing ring, can place a section of thick bamboo of growing seedlings in proper order in spacingly according to the interval between the reasonable adjustment bar rack of seed seedling size after growing seedlings to lean on, the stability of a multiplicable section of thick bamboo of growing seedlings with two gag lever posts offsets in the spacing ring.
2) Traditional mode of watering utilizes sprinkler to water a section of thick bamboo of growing seedlings, the water velocity who has the watering is greater than the osmotic velocity of cover piece water-logging in soil, cause a large amount of water waste, waste water resource can be sprinkled on the soil on ground simultaneously, it is serious to cause the ground area water in the big-arch shelter, when this device waters a section of thick bamboo of growing seedlings, part of water gets into the inside of cover piece from coupling nut, when the water velocity of watering is greater than the osmotic velocity of cover piece water-logging in soil, unnecessary water gets into in the standing groove, and store up the upper end at the baffle, adopt seal welding between the outer wall edge of baffle 4 and the inner wall of standing groove, can guarantee that water can not get into the standing groove of the lower extreme of baffle from the upper end of baffle in, both satisfy a required moisture of a section of thick bamboo of growing seedlings, unnecessary moisture can be stored up simultaneously, can not cause the.
3) The anti-clockwise rotation of the manual rotating disc can be manually rotated, the manual rotating disc drives the driving gear and the driven gear to rotate, the rotation of the driven gear drives the cam to rotate, the cam is enabled to be changed from being abutted against a limit lath from a highest point to being abutted against a cam lowest point to be abutted against the limit lath, the limit lath descends along the sliding chute along the height change of the cam, the strip-shaped placing frame descends along the limit lath, the lower end of the seedling cultivation cylinder is contacted with water accumulated on the partition plate and stops acting for 20 minutes, water enters the water storage sponge along the water inlet hole in the outer wall of the sleeve piece, the manual rotating disc is continuously rotated anticlockwise, when the seedling cultivation cylinder ascends to the highest point, the manual rotating disc is stopped, the lower end of the seedling cultivation cylinder is separated from the accumulated water, the water accumulated in the water storage sponge can permeate through the soil in the sleeve piece along the water inlet hole, the, can adopt sprinkler to water to a section of thick bamboo of growing seedlings, guarantee in the baffle reasonable water yield can, can effectively save the water resource.
4) When the seedlings need to be planted, the limiting rods are pulled out from the limiting rings, the seedling raising cylinders 6-2 are moved out of the placing grooves through the strip-shaped placing racks and moved to the planting field, the seedlings can be damaged and broken in the moving process, the connecting nuts are screwed off from the upper ends of the sleeve pieces, the sleeve pieces are manually separated, the seedlings with soil are taken out, white pollution caused by the traditional disposable plastic seedling raising cylinders is overcome, the environment is protected, and meanwhile, the working efficiency is greatly improved.
Drawings
FIG. 1 is a schematic view of a sectional structure of a vegetable seedling cultivation device according to the present invention;
FIG. 2 is a front view of a vegetable seedling culturing device according to the present invention;
FIG. 3 is a front view of a partial structure of a vegetable seedling culturing device according to the present invention;
FIG. 4 is a front view of a partial structure of a vegetable seedling culturing device according to the present invention;
FIG. 5 is a top view of the nozzle and the stopper rod of the strip-shaped placing frame;
FIG. 6 is a sectional view of the sleeve and the coupling nut;
FIG. 7 is a schematic view of the combination of the coupling nut, the nest plate, and the semicircular plate;
FIG. 8 is a schematic view of the cam rotating to the highest point;
FIG. 9 is a schematic view of the cam bottoming out;
fig. 10 is a schematic view of the structure of the stop member.
In the figure: 1-a placement groove, 2-a position adjusting device, 2-1-a box body, 2-2-a manual rotating disc, 2-3-a ratchet wheel, 2-4-a driving gear, 2-5-a rotating rod, 2-6-a driven gear, 2-7-a cam, 2-8-a limiting lath, 2-9-a limiting member, 2-9-1-a fixed block, 2-9-2-a first groove, 2-9-3-a connecting rod, 2-9-4-a pressure spring, 2-9-5-a blocking sheet, 2-9-6-a limiting block, 3-a sliding groove, 4-a clapboard, 5-a heating resistance wire, 6-a seedling raising disc, 6-1-a strip-shaped placing rack, 2-3-a ratchet wheel, 2-9-a limiting member, 6-2-seedling raising cylinder, 6-2-1-connecting nut, 6-2-2-nest plate, 6-2-3-semicircular plate, 6-2-4-water storage sponge and 6-3 limiting rod.
Detailed Description
Preferred embodiments of the present invention will be described in detail below with reference to the accompanying drawings.
As shown in fig. 1 to 10, the vegetable seedling culturing device of the present invention comprises a placing groove 1, a positioning device 2, a partition plate 4, a heating resistance wire 5 and a seedling raising tray 6; two positioning devices 2 are arranged on the left side wall and the right side wall of the placing groove 1, the positioning devices 2 are symmetrically arranged in parallel, sliding grooves 3 are formed in the front side wall and the rear side wall of the placing groove 1, the sliding grooves 3 are symmetrically arranged in parallel, a partition plate 4 is arranged in the placing groove 1, the partition plate 4 is positioned below the positioning devices 2, heating resistance wires 5 are symmetrically arranged on the lower end face of the partition plate 4, and seedling raising trays 6 are arranged on the positioning devices 2;
the seedling raising plate 6 comprises a strip-shaped placing frame 6-1, a seedling raising barrel 6-2 and a limiting rod 6-3; the multiple strip-shaped placing racks 6-1 are arranged in parallel, two ends of each strip-shaped placing rack 6-1 are abutted against the two positioning devices 2 on the side wall of the placing groove 1 respectively, seedling growing barrels 6-2 are arranged in the strip-shaped placing racks 6-1 in an array mode, limiting rods 6-3 are arranged on the bottom walls of the strip-shaped placing racks 6-1 through limiting rings, the two limiting rods 6-3 are symmetrically arranged at two ends of the seedling growing barrels 6-2 and are abutted against the side walls of the seedling growing barrels 6-2, and the limiting rods 6-3 are perpendicular to the strip-shaped placing racks 6-1.
Further, the seedling raising cylinder 6-2 comprises a connecting nut 6-2-1, a nest plate 6-2-2, a semicircular plate 6-2-3 and a water storage sponge 6-2-4; the inner wall of the connecting nut 6-2-1 is provided with internal threads, the sleeve sheet 6-2-2 is in a semicircular tube shape, the outer wall of the upper end of the sleeve sheet 6-2-2 is provided with external threads, the inner wall of the lower end of the sleeve sheet 6-2-2 is provided with a semicircular sheet 6-2-3, the two sleeve sheets 6-2-2 and the two semicircular sheets 6-2-3 are combined into a cylinder with a bottom, the connecting nut 6-2-1 is fixed at the upper end of the cylinder through threads, the inner wall of the sleeve sheet 6-2-2 is provided with an arc-shaped groove, a water storage sponge 6-2-4 is arranged in the arc-shaped groove, the side wall of the arc-shaped groove and the semicircular sheet 6-2-3 are both provided with water inlet holes, and water enters the space between the two sleeve sheets 6-2-2 through the water inlet holes of the semicircular sheet 6-2-3 and in the soil.
Furthermore, the position adjusting device 2 comprises a box body 2-1, a manual rotating disk 2-2, a ratchet wheel 2-3, a driving gear 2-4, a rotating rod 2-5, a driven gear 2-6, a cam 2-7, a limiting lath 2-8 and a limiting member 2-9, wherein the box body 2-1 is symmetrically arranged on the outer side wall of the placing groove 1, the manual rotating disk 2-2, the ratchet wheel 2-3 and the driving gear 2-4 are rotatably arranged on the box body 2-1 through the rotating rod 2-5, the manual rotating disk 2-2 is rotatably arranged outside the box body 2-1, the ratchet wheel 2-3 and the driving gear 2-4 are rotatably arranged in the box body 2-1, a plurality of driven gears 2-6 are arranged in the box body 2-1 and are connected with the cam 2-7 in the placing groove 1 through rotating shafts, the cam 2-7 abuts against the bottom wall of the limiting lath 2-8, the upper wall of the limiting lath 2-8 abuts against the strip-shaped placing frame 6-1, the limiting lath 2-8 is movably arranged in the chute 3, the driving gear 2-4 is meshed with the adjacent driven gear 2-6, the adjacent driven gears 2-6 are meshed with each other, the upper side wall of the box body 2-1 is provided with a limiting component 2-9, and the limiting component 2-9 is matched with the ratchet 2-3.
Furthermore, the limiting members 2-9 comprise fixing blocks 2-9-1, connecting rods 2-9-3, pressure springs 2-9-4, retaining pieces 2-9-5 and limiting blocks 2-9-6; the fixing block 2-9-1 is provided with a first groove 2-9-2, the upper end of the first groove 2-9-2 is provided with a through hole, the connecting rod 2-9-3 is arranged in the through hole in a sliding mode, the other end of the connecting rod 2-9-3 penetrates through a pressure spring 2-9-4 and a blocking piece 2-9-5 in the first groove 2-9-2 to be connected with a limiting block 2-9-6, the limiting block 2-9-6 is matched with a ratchet wheel 2-3, and two ends of the pressure spring 2-9-4 are respectively connected with the upper wall of the first groove 2-9-2 and the blocking piece 2-9-5.
Further, a groove is formed between the two sliding grooves 3 of the front side wall of the placing groove 1.
The working process of the device is as follows:
firstly, screening seeds to be cultivated, and selecting fresh seeds with full grains and consistent seed sizes;
screening the soil for seed seedling culture, and screening the soil to be fine so as to keep the soil soft and breathable;
thirdly, placing the bottom of a seedling raising cylinder 6-2-1 of the device on a plane, keeping the vertical placement of the seedling raising cylinder, then placing the screened fine soil into the seedling raising cylinder 6-2-1, controlling the amount of poured soil, slightly forcibly compacting the soil, placing seeds, placing the number of the seeds according to the regulation of related seeds, then placing the fine soil until the total filling amount reaches the volume of the seedling raising cylinder 6-2-1, and stopping adding;
fourthly, the strip-shaped placing rack 6-1 is placed on the limiting laths 2-8 which are symmetrically arranged in parallel, the limiting rods 6-3 are sequentially inserted into the limiting rings, the distance between the strip-shaped placing racks 6-1 can be reasonably adjusted according to the sizes of the seedlings after seedling cultivation, the seedling cultivation cylinders 6-2 are sequentially placed in the limiting rods 6-3 and are abutted against the two limiting rods 6-3 in the limiting rings, the stability of the seedling cultivation cylinders 6-2 can be increased,
fifthly, the traditional watering method is that a watering device is used for watering the seedling growing cylinder 6-2, the watering water flow speed is larger than the penetration speed of water in the sleeve 6-2-2 in soil, so that a large amount of water resource waste is caused, meanwhile, the wasted water resource can be sprinkled on the soil on the ground, and the area water in the greenhouse is serious, when the watering device waters the seedling growing cylinder 6-2, part of water enters the sleeve 6-2-2 from the connecting nut 6-2-1, when the watering water flow speed is larger than the penetration speed of the water in the soil of the sleeve 6-2-2, the surplus water enters the placing groove 1 and is stored at the upper end of the partition plate 4, the sealing welding is adopted between the edge of the outer wall of the partition plate 4 and the inner wall of the placing groove 1, so that the water can not enter the placing groove 1 at the lower end of the partition plate 4 from the upper end of the partition, the moisture required by the seedling raising cylinder 6-2 is met, and meanwhile, the excessive moisture can be accumulated, so that the serious water accumulation on the ground in the greenhouse can be avoided;
sixthly, the heating resistance wire 5 is electrified through a lead, the heating resistance wire 5 is heated through the partition plate 4, uniform heating is realized through redundant water stored in the partition plate 4, the temperature of the water on the upper end face of the partition plate 4 is measured and controlled through a thermometer by heating the heating resistance wire 5 to be 25-30 ℃, the temperature requirement of seed germination is ensured, and the seed germination is accelerated;
seventhly, when the seeds need to be irrigated again after germination, the cam 2-7 is at the highest point, the manual rotary disc 2-2 can be manually rotated to rotate anticlockwise, the manual rotary disc 2-2 drives the driving gear 2-4 and the driven gear 2-6 to rotate, the driven gear 2-6 rotates to drive the cam 2-7 to rotate, the cam 2-7 is enabled to be changed from being abutted against the limiting lath 2-8 from the highest point to being abutted against the limiting lath 2-8 from being abutted against the lowest point of the cam 2-7, the limiting lath 2-8 descends along the sliding chute 3 along with the height change of the cam 2-7, the strip-shaped placing frame 6-1 descends along with the limiting lath 2-8, the lower end of the seedling raising barrel 6-2 is in contact with the water accumulated on the partition plate 4 and stops acting for 20 minutes, and the water enters the water storage sponge 6-2 along the water inlet hole on the outer 4, continuing to rotate the manual rotating disc 2-2 anticlockwise, stopping manually rotating the manual rotating disc 2-2 when the seedling raising cylinder 6-2 rises to the highest point, separating the lower end of the seedling raising cylinder 6-2 from the stored water, enabling the water stored in the water storage sponge 6-2-4 to permeate along the soil in the water inlet hole sleeve sheet 6-2-2, ensuring the requirement on water, if the water stored on the partition plate 4 is too little in the irrigation process, watering the seedling raising cylinder 6-2 by adopting a spraying device, ensuring the reasonable water amount in the partition plate 4, effectively saving water resources, enabling the cam 2-7 to be at the highest point, enabling the limiting blocks 2-9-6 to be matched with the ratchet wheel 2-3 to keep the stability of the highest point, and enabling the limiting blocks 2-9-6 to prevent the ratchet wheel 2-3 from rotating clockwise, the ratchet 2-3 can not be prevented from rotating anticlockwise;
eighthly, when the seedlings need to be planted, the limiting rods 6-3 are pulled out from the limiting rings, the seedling raising cylinders 6-2 are moved out of the placing grooves 1 through the strip-shaped placing racks 6-1, the seedlings can be damaged and broken in the process of moving conveniently, the connecting nuts 6-2-1 are screwed down from the upper ends of the sleeve pieces 6-2-2, the sleeve pieces 6-2-2 are manually separated, the seedlings with soil are taken out, white pollution caused by the traditional disposable plastic seedling raising cylinders 6-2 is overcome, the environment is protected, and meanwhile, the working efficiency is greatly improved.
The above embodiments are merely illustrative of the present patent and do not limit the scope of the patent, and those skilled in the art can make modifications to the parts thereof without departing from the spirit and scope of the patent.

Claims (5)

1. A vegetable seedling culture device is characterized in that: comprises a placing groove (1), a position adjusting device (2), a clapboard (4), a heating resistance wire (5) and a seedling raising tray (6); two positioning devices (2) are arranged on the left side wall and the right side wall of the placing groove (1), the positioning devices (2) are symmetrically arranged in parallel, sliding grooves (3) are formed in the front side wall and the rear side wall of the placing groove (1), the sliding grooves (3) are symmetrically arranged in parallel, a partition plate (4) is arranged in the placing groove (1), the partition plate (4) is located below the positioning devices (2), heating resistance wires (5) are symmetrically arranged on the lower end face of the partition plate (4), and a seedling raising tray (6) is arranged on the positioning devices (2);
the seedling raising plate (6) comprises a strip-shaped placing frame (6-1), a seedling raising barrel (6-2) and a limiting rod (6-3); the seedling cultivation device is characterized in that a plurality of strip-shaped placing frames (6-1) are arranged in parallel, two ends of each strip-shaped placing frame (6-1) are abutted against two positioning devices (2) on the side wall of a placing groove (1) respectively, seedling cultivation barrels (6-2) are arranged in the strip-shaped placing frames (6-1) in an array mode, limiting rods (6-3) are arranged on the bottom walls of the strip-shaped placing frames (6-1) through limiting rings, the two limiting rods (6-3) are symmetrically arranged at two ends of each seedling cultivation barrel (6-2) and abutted against the side wall of each seedling cultivation barrel (6-2), and the limiting rods (6-3) are perpendicular to the strip-shaped placing frames (6-1).
2. A vegetable seedling incubator as set forth in claim 1, wherein: the seedling raising cylinder (6-2) comprises a connecting nut (6-2-1), a nest plate (6-2-2), a semicircular plate (6-2-3) and a water storage sponge (6-2-4); the inner wall of the connecting nut (6-2-1) is provided with internal threads, the sleeve sheet (6-2-2) is in a semicircular tube shape, the outer wall of the upper end of the sleeve sheet (6-2-2) is provided with external threads, the inner wall of the lower end of the sleeve sheet (6-2-2) is provided with a semicircular sheet (6-2-3), the two sleeve sheets (6-2-2) and the two semicircular sheets (6-2-3) are combined into a cylinder with a bottom, the upper end of the cylinder is fixedly provided with the connecting nut (6-2-1) through threads, the inner wall of the sleeve sheet (6-2-2) is provided with an arc groove, a water storage sponge (6-2-4) is arranged in the arc groove, the side wall of the arc groove and the semicircular sheet (6-2-3) are both provided with water inlet holes, and water flows from the water inlet holes of the semicircular sheet (6-2-3) and the ) The water inlet hole on the side wall enters the soil between the two sets of sheets (6-2-2).
3. A vegetable seedling incubator as set forth in claim 1, wherein: the position adjusting device (2) comprises a box body (2-1), a manual rotating disc (2-2), ratchet wheels (2-3), driving gears (2-4), rotating rods (2-5), driven gears (2-6), cams (2-7), limiting strips (2-8) and limiting members (2-9), wherein the box body (2-1) is symmetrically arranged on the outer side wall of the placing groove (1), the manual rotating disc (2-2), the ratchet wheels (2-3) and the driving gears (2-4) are rotatably arranged on the box body (2-1) through the rotating rods (2-5), the manual rotating disc (2-2) is rotatably arranged outside the box body (2-1), and the ratchet wheels (2-3) and the driving gears (2-4) are rotatably arranged in the box body (2-1), the driven gears (2-6) are arranged in the box body (2-1) and are connected with cams (2-7) in the placing groove (1) through rotating shafts, the cams (2-7) are abutted against the bottom wall of the limiting lath (2-8), the upper wall of the limiting lath (2-8) is abutted against the strip-shaped placing frame (6-1), the limiting lath (2-8) is movably arranged in the sliding groove (3), the driving gear (2-4) is meshed with the adjacent driven gear (2-6), the adjacent driven gears (2-6) are meshed with each other, the upper side wall of the box body (2-1) is provided with limiting members (2-9), and the limiting members (2-9) are matched with the ratchet wheels (2-3).
4. A vegetable seedling incubator as set forth in claim 3, wherein: the limiting component (2-9) comprises a fixed block (2-9-1), a connecting rod (2-9-3), a pressure spring (2-9-4), a baffle (2-9-5) and a limiting block (2-9-6); the fixing block (2-9-1) is provided with a first groove (2-9-2), the upper end of the first groove (2-9-2) is provided with a through hole, the connecting rod (2-9-3) is arranged in the through hole in a sliding mode, the other end of the connecting rod (2-9-3) penetrates through a pressure spring (2-9-4) and a blocking piece (2-9-5) in the first groove (2-9-2) to be connected with a limiting block (2-9-6), the limiting block (2-9-6) is matched with the ratchet wheel (2-3), and two ends of the pressure spring (2-9-4) are respectively connected with the upper wall of the first groove (2-9-2) and the blocking piece (2-9-5).
5. A vegetable seedling incubator as set forth in claim 1, wherein: a groove is formed between the two sliding grooves (3) on the front side wall of the placing groove (1).
CN201921063893.9U 2019-07-09 2019-07-09 Vegetable seedling cultivation device Active CN210168563U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112075251A (en) * 2020-09-09 2020-12-15 湖南大三湘苗木园艺有限责任公司 Special tray instrument is cultivated to tea-oil camellia seedling bare-rooted seedling
CN115428706A (en) * 2022-11-10 2022-12-06 山东省林业保护和发展服务中心 Transportation container for hibiscus syriacus planting and transplanting and use method thereof

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112075251A (en) * 2020-09-09 2020-12-15 湖南大三湘苗木园艺有限责任公司 Special tray instrument is cultivated to tea-oil camellia seedling bare-rooted seedling
CN112075251B (en) * 2020-09-09 2022-01-04 湖南大三湘苗木园艺有限责任公司 Special tray instrument is cultivated to tea-oil camellia seedling bare-rooted seedling
CN115428706A (en) * 2022-11-10 2022-12-06 山东省林业保护和发展服务中心 Transportation container for hibiscus syriacus planting and transplanting and use method thereof

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