CN214046806U - Seedling growing flower stand for forestry seedling growing - Google Patents

Seedling growing flower stand for forestry seedling growing Download PDF

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Publication number
CN214046806U
CN214046806U CN202022725802.2U CN202022725802U CN214046806U CN 214046806 U CN214046806 U CN 214046806U CN 202022725802 U CN202022725802 U CN 202022725802U CN 214046806 U CN214046806 U CN 214046806U
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drainage
fixedly connected
seedling growing
flower
slide
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CN202022725802.2U
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全桂娟
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Abstract

The utility model relates to a pergola technical field of growing seedlings, especially a forestry is grown seedlings with pergola of growing seedlings, which comprises a supporting column, the bottom of one side support column is provided with flexible post, the top of support column is connected with the connecting rod through the turning block, one side of support column is provided with the sliding sleeve, be provided with the colored dish of taking the slide bar in the sliding sleeve, the bottom of colored dish is provided with breakwater and drainage auxiliary pipe, one side of colored dish is provided with the slide of taking the handle, the both ends of breakwater and drainage auxiliary pipe are provided with the drainage and are responsible for and the slide. The utility model has the advantages that: through setting up breakwater and drainage auxiliary pipe in the bottom of flower disc, remove the slide and make the drainage auxiliary pipe aim at the water drainage tank, abandonment nutrient solution just can discharge the external world through the outlet pipe, sets up flexible post through the bottom in support column one side, makes the support column of one side can change length to adjust the angle of flower disc, make the flower disc can aim at sunshine and receive more abundant illumination, thereby shorten cultivation cycle.

Description

Seedling growing flower stand for forestry seedling growing
Technical Field
The utility model relates to a pergola technical field, especially a forestry is grown seedlings with pergola of growing seedlings.
Background
The flower shelf is a garden facility which is formed by a grid frame with a certain shape made of rigid materials and used for climbing plants, and is also called a shed frame or a green corridor. The flower shelf can be used for shading and resting, and can decorate the landscape. The design of flower stand needs to know the origin and growth habit of the configured plants so as to create the requirements of conditions and shapes suitable for the growth of plants. The flower shelf has two functions. On one hand, people can rest on feet and enjoy scenery; on the one hand, the condition for the growth of the climbing plants is created. Therefore, the flower shelf is the smallest garden product close to nature, and the application of the flower shelf in the seedling field is very wide.
The current forestry is grown seedlings with the shortcoming of pergola of growing seedlings:
1. the conventional flower stand for culturing seedlings by using the culture solution can be used for discharging the waste nutrient solution, and the waste nutrient solution can be discharged only once and can not be selected, or one culture tank is required for discharging water in sequence, so that the efficiency is low;
2. the existing flower stand occupies a large space and is inconvenient to store.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to overcome prior art's shortcoming, provide a forestry is grown seedlings with pergola of growing seedlings, effectively solved prior art's not enough.
The purpose of the utility model is realized through the following technical scheme: a seedling growing flower stand for seedling growing in forestry comprises four supporting columns, wherein telescopic columns are sleeved at the bottoms of two supporting columns, a plurality of clamping grooves are formed in one sides of the telescopic columns, a spring clamping block is movably connected inside the two telescopic columns, a rotating block is fixedly connected to the top of each supporting column, a connecting rod is fixedly connected to one side of each rotating block, the two supporting columns are movably connected through the connecting rods, two sliding sleeves are fixedly connected to one side of the two supporting columns on the same side, sliding rods are slidably connected in the sliding sleeves, two sliding sleeves on different sides are slidably connected with a flower disc through the sliding rods, two sides of the flower disc are fixedly connected with the sliding rods, a plurality of culture grooves are formed in the top of the flower disc, drainage grooves are formed in the bottoms of the culture grooves, sliding plates are slidably connected to two sides of the flower disc, and a plurality of water baffle plates are fixedly connected to the bottoms of the two sliding plates, the bottom of breakwater has seted up a plurality of outlet, the equal fixedly connected with drainage auxiliary pipe in one side of breakwater, the equal fixedly connected with drainage main pipe in one end of drainage auxiliary pipe, the drainage main pipe is located the bottom of slide, the one end fixedly connected with outlet pipe that the drainage was responsible for, one side fixedly connected with handle of slide.
Optionally, the inner diameter of the telescopic column is matched with the outer diameter of the support column, and the shape and size of the clamping block are matched with the shape and size of the clamping groove.
By adopting the scheme, the telescopic column can slide relative to the supporting column, so that more light can be received by adjusting the height of one side of the flower stand.
Optionally, the inner diameter of the sliding sleeve is matched with the outer diameter of the sliding rod, and one side of the sliding sleeve is provided with a notch.
By adopting the scheme, the opening at one side of the sliding sleeve facilitates the rotation of the sliding rod in the sliding sleeve.
Optionally, the length of the water baffle is matched with that of the flower disc, and the width of the water baffle is matched with that of the drainage groove.
By adopting the scheme, the drainage groove 11 is blocked by the water baffle, and the water baffle can be moved by moving the sliding plate to drain water.
Optionally, the width of the auxiliary drainage pipe is matched with the width of the drainage groove, and the top of the auxiliary drainage pipe is open.
By adopting the scheme, when the water baffle moves, the drainage auxiliary pipe moves to the bottom of the drainage groove, the waste nutrient solution enters the drainage main pipe through the drainage auxiliary pipe, and then is discharged through the water outlet pipe.
Optionally, the number of the water outlets is equal to that of the culture tanks, the water outlets are located below each water drainage tank, and the bottom of each water outlet is in threaded connection with an end cover.
By adopting the scheme, when only the nutrient solution of a single culture tank needs to be cleaned, the drainage work of the single culture tank can be carried out through the drainage port below the corresponding drainage tank.
The utility model has the advantages of it is following:
1. this forestry is grown seedlings with pergola of growing seedlings, bottom through at the flower disc sets up breakwater and drainage auxiliary pipe, and connect it through the slide, when needs carry out whole flower disc nutrient solution and discharge, can remove the slide and make the drainage auxiliary pipe aim at the water drainage tank, abandonment nutrient solution just can get into the drainage through the drainage auxiliary pipe and be responsible for and discharge the external world from the outlet pipe again, bottom through at the breakwater sets up a plurality of outlets, and the bottom threaded connection end cover at the outlet, when needs discharge the nutrition person who singly cultivates the groove, can directly play the end cover of the win outlet can.
2. This forestry is grown seedlings with pergola of growing seedlings, set up the slide bar through the both sides at the flower disc, both sides at the support column set up the sliding sleeve, make the flower disc can the horizontal slip on the pergola, thereby can fully accept illumination with the flower disc horizontal slip when sunshine is sufficient, can save space at the pergola inside with the flower disc shrink when the space is nervous, set up flexible post through the bottom in support column one side, the support column that makes one side can change length, thereby adjust the angle of flower disc, make the flower disc can aim at sunshine and receive more abundant illumination, thereby shorten cultivation cycle.
Drawings
Fig. 1 is a schematic structural view of the present invention;
FIG. 2 is an enlarged schematic view of the structure of FIG. 1;
FIG. 3 is a schematic top view of the flower disc of the present invention;
FIG. 4 is a schematic view of the flower disc of the present invention;
fig. 5 is an enlarged schematic view of the structure at B in fig. 4 according to the present invention.
In the figure: 1-support column, 2-telescopic column, 3-clamping groove, 4-clamping block, 5-turning block, 6-connecting rod, 7-sliding sleeve, 8-sliding rod, 9-flower disc, 10-culture tank, 11-drainage tank, 12-sliding plate, 13-water baffle, 14-drainage port, 15-drainage auxiliary pipe, 16-drainage main pipe, 17-water outlet pipe and 18-handle.
Detailed Description
The invention will be further described with reference to the accompanying drawings, but the scope of the invention is not limited to the following description.
As shown in fig. 1 to 5, a seedling growing flower shelf for seedling growing in forestry, which comprises four supporting columns 1, telescopic columns 2 are sleeved at the bottoms of the two supporting columns 1, a plurality of clamping grooves 3 are formed in one sides of the telescopic columns 2, a spring clamping block 4 is movably connected inside the two telescopic columns 2, a rotating block 5 is fixedly connected at the top of each supporting column 1, a connecting rod 6 is fixedly connected at one side of each rotating block 5, the two supporting columns 1 are movably connected with each other through the connecting rod 6, two sliding sleeves 7 are fixedly connected at one side of the two supporting columns 1 at the same side, sliding rods 8 are respectively and slidably connected in the sliding sleeves 7, two sliding sleeves 7 at different sides are slidably connected with a flower disc 9 through the sliding rods 8, two sides of the flower disc 9 are fixedly connected with the sliding rods 8, the sliding rods 8 are arranged at two sides of the flower disc 9, the sliding sleeves are arranged at two sides of the supporting columns 1, so that the flower disc 9 can slide left and right on the flower shelf, when sunlight is sufficient, the flower disc can slide left and right to fully receive illumination, when the space is short, the flower disc 9 can be contracted in the flower stand to save space, the length of the support column 1 on one side can be changed by arranging the telescopic column 2 at the bottom of the support column 1, so that the angle of the flower disc can be adjusted, the flower disc can be aligned to the sunlight to receive more sufficient illumination, so that the cultivation period is shortened, a plurality of cultivation grooves 10 are formed in the top of the flower disc 9, drainage grooves 11 are formed in the bottoms of the cultivation grooves 10, sliding plates 12 are slidably connected to both sides of the flower disc 9, a plurality of water baffles 13 are fixedly connected to the bottoms of the two sliding plates 12, a plurality of drainage ports 14 are formed in the bottoms of the water baffles 13, auxiliary drainage pipes 15 are fixedly connected to one sides of the water baffles 13, main drainage pipes 16 are fixedly connected to one ends of the auxiliary drainage pipes 15, and the main drainage pipes 16 are positioned at the bottoms of the sliding plates 12, the one end fixedly connected with outlet pipe 17 of drainage main pipe 16, one side fixedly connected with handle 18 of slide 12, through setting up breakwater 13 and drainage auxiliary pipe 15 in the bottom of flower disc 9, and connect it through slide 12, when the whole flower disc 9 nutrient solution that needs to carry out discharges, can remove slide 12 and make drainage auxiliary pipe 15 aim at water drainage tank 11, abandonment nutrient solution just can get into drainage main pipe 16 through drainage auxiliary pipe 15 and discharge to the external world from outlet pipe 17 again, through setting up a plurality of outlet ports 14 in the bottom of breakwater 13, and at the bottom threaded connection end cover of outlet port 14, when needing to discharge to the nutrition person of single culture tank 10, can directly bet the end cover of outlet port 14.
As an optional technical solution of the utility model: the inner diameter of the telescopic column 2 is matched with the outer diameter of the support column 1, and the shape and the size of the clamping block 4 are matched with the shape and the size of the clamping groove 3.
When the scheme is implemented, the telescopic column 2 can slide relative to the support column 1, so that the height of one side of the flower stand is adjusted to receive more light.
As an optional technical solution of the utility model: the inner diameter of the sliding sleeve 7 is matched with the outer diameter of the sliding rod 8, and one side of the sliding sleeve 7 is provided with a notch.
When the scheme is implemented specifically, the opening on one side of the sliding sleeve 7 facilitates the rotation of the sliding rod 8 in the sliding sleeve 7.
As an optional technical solution of the utility model: the length of the water baffle 13 is matched with that of the flower disc 9, and the width of the water baffle 13 is matched with that of the drainage groove 11.
When the scheme is implemented, the water discharging groove 11 is blocked by the water baffle 13, and the water baffle 13 can be moved by moving the sliding plate 12 so as to discharge water.
As an optional technical solution of the utility model: the width of the auxiliary drainage pipe 15 is matched with that of the drainage groove 11, and the top of the auxiliary drainage pipe 15 is open.
When the scheme is implemented specifically, when the water baffle 13 moves, the auxiliary drainage pipe 15 moves to the bottom of the drainage groove 11, waste nutrient solution enters the main drainage pipe 16 through the auxiliary drainage pipe 15 and is discharged through the water outlet pipe.
As an optional technical solution of the utility model: the number of the water discharge ports 14 is equal to the number of the culture tanks 10, the water discharge ports 14 are located below each of the water discharge tanks 11, and the bottom of the water discharge ports 14 is screwed with an end cap.
In the specific implementation of the proposal, when only the nutrient solution of a single culture tank needs to be cleaned, the drainage work of the single culture tank can be carried out through the drainage port 14 below the corresponding drainage tank 11.
The working process of the utility model is as follows: when the user used, added the nutrient solution in culture tank 10 and carry out the sapling and cultivate, when the nutrient solution need discharge, slide plate 12 can wholly discharge the nutrient solution, also can open outlet 14 and carry out the emission of single culture tank, thereby can receive more abundant illumination through the angle of the altitude mixture control flower disc 9 of adjusting flexible post 2.
In summary, the following steps: according to the seedling culture flower stand for seedling growth in forestry, the water baffle 13 and the auxiliary drainage pipe 15 are arranged at the bottom of the flower disc 9 and are connected through the sliding plate 12, when nutrient solution of the whole flower disc 9 needs to be discharged, the sliding plate 12 can be moved to enable the auxiliary drainage pipe 15 to be aligned with the drainage groove 11, waste nutrient solution can enter the main drainage pipe 16 through the auxiliary drainage pipe 15 and then is discharged to the outside from the water outlet pipe 17, the water outlets 14 are arranged at the bottom of the water baffle 13, the bottom of each water outlet 14 is in threaded connection with the end cover, and when a nutriist in a single culture groove 10 needs to be discharged, the end cover of each water outlet 14 can be directly opened; set up slide bar 8 through the both sides at disc chuck 9, both sides at support column 1 set up the sliding sleeve, make disc chuck 9 can the horizontal slip on the pergola, thereby can fully accept illumination with disc chuck horizontal slip when sunshine is sufficient, can save space at pergola inside with disc chuck 9 shrink when the space is nervous, set up flexible post 2 through the bottom in support column 1 one side, make support column 1 of one side can change length, thereby adjust the angle of disc chuck, make the disc chuck can aim at sunshine and receive more abundant illumination, thereby shorten cultivation cycle.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. A seedling growing flower stand for forestry seedling growing is characterized in that: the flower disc support comprises four support columns (1), two telescopic columns (2) are sleeved at the bottoms of the two support columns (1), a plurality of clamping grooves (3) are formed in one side of each telescopic column (2), a spring clamping block (4) is movably connected in the two telescopic columns (2), a rotating block (5) is fixedly connected at the top of each support column (1), a connecting rod (6) is fixedly connected to one side of each rotating block (5), the two support columns (1) are movably connected through the connecting rod (6), two sliding sleeves (7) are fixedly connected to one side of the two support columns (1) at the same side, sliding rods (8) are slidably connected in the sliding sleeves (7), flower discs (9) are slidably connected to the two sliding sleeves (7) at different sides through the sliding rods (8), and two sides of each flower disc (9) are fixedly connected with the sliding rods (8), a plurality of culture tanks (10) have been seted up at the top of flower disc (9), water drainage tank (11) have all been seted up to the bottom of culture tank (10), the equal sliding connection in both sides of flower disc (9) has slide (12), two a plurality of breakwaters (13) of bottom fixedly connected with of slide (12), a plurality of outlet (14) have been seted up to the bottom of breakwater (13), the equal fixedly connected with drainage auxiliary pipe (15) in one side of breakwater (13), the equal fixedly connected with drainage of one end of drainage auxiliary pipe (15) is responsible for (16), drainage is responsible for (16) and is located the bottom of slide (12), the one end fixedly connected with outlet pipe (17) of drainage main pipe (16), one side fixedly connected with handle (18) of slide (12).
2. A seedling growing flower stand for raising seedlings in forestry according to claim 1, wherein: the inner diameter of the telescopic column (2) is matched with the outer diameter of the support column (1), and the shape and the size of the clamping block (4) are matched with the shape and the size of the clamping groove (3).
3. A seedling growing flower stand for raising seedlings in forestry according to claim 1, wherein: the inner diameter of the sliding sleeve (7) is matched with the outer diameter of the sliding rod (8), and one side of the sliding sleeve (7) is provided with a notch.
4. A seedling growing flower stand for raising seedlings in forestry according to claim 1, wherein: the length of the water baffle (13) is matched with that of the flower disc (9), and the width of the water baffle (13) is matched with that of the drainage groove (11).
5. A seedling growing flower stand for raising seedlings in forestry according to claim 1, wherein: the width of the auxiliary drainage pipe (15) is matched with the width of the drainage groove (11), and the top of the auxiliary drainage pipe (15) is open.
6. A seedling growing flower stand for raising seedlings in forestry according to claim 1, wherein: the number of the water outlets (14) is equal to that of the culture tanks (10), the water outlets (14) are positioned below each water drainage tank (11), and the bottom of each water outlet (14) is in threaded connection with an end cover.
CN202022725802.2U 2020-11-23 2020-11-23 Seedling growing flower stand for forestry seedling growing Active CN214046806U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022725802.2U CN214046806U (en) 2020-11-23 2020-11-23 Seedling growing flower stand for forestry seedling growing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022725802.2U CN214046806U (en) 2020-11-23 2020-11-23 Seedling growing flower stand for forestry seedling growing

Publications (1)

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CN214046806U true CN214046806U (en) 2021-08-27

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114467638A (en) * 2021-12-24 2022-05-13 贵州省生物研究所 Fungus mushroom of intelligent monitoring dynamic process, three-dimensional breeding device of nursery stock

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114467638A (en) * 2021-12-24 2022-05-13 贵州省生物研究所 Fungus mushroom of intelligent monitoring dynamic process, three-dimensional breeding device of nursery stock
CN114467638B (en) * 2021-12-24 2023-12-22 贵州省生物研究所 Fungus mushroom and seedling three-dimensional breeding device of intelligent monitoring dynamic process

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