CN111011039A - Indoor greening facility - Google Patents

Indoor greening facility Download PDF

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Publication number
CN111011039A
CN111011039A CN201911195867.6A CN201911195867A CN111011039A CN 111011039 A CN111011039 A CN 111011039A CN 201911195867 A CN201911195867 A CN 201911195867A CN 111011039 A CN111011039 A CN 111011039A
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CN
China
Prior art keywords
hollow
planting pot
partition plate
upright
hollow upright
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
CN201911195867.6A
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Chinese (zh)
Inventor
不公告发明人
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Chengdu Qingmiao Creative Design Co Ltd
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Chengdu Qingmiao Creative Design Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Chengdu Qingmiao Creative Design Co Ltd filed Critical Chengdu Qingmiao Creative Design Co Ltd
Priority to CN201911195867.6A priority Critical patent/CN111011039A/en
Publication of CN111011039A publication Critical patent/CN111011039A/en
Withdrawn legal-status Critical Current

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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
    • 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
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47GHOUSEHOLD OR TABLE EQUIPMENT
    • A47G7/00Flower holders or the like
    • A47G7/02Devices for supporting flower-pots or cut flowers
    • A47G7/04Flower tables; Stands or hangers, e.g. baskets, for flowers
    • A47G7/041Flower tables or stands

Abstract

The invention provides an indoor greening facility, which belongs to the field of greening facilities and comprises a frame body, wherein the frame body comprises a first hollow upright post, a second hollow upright post, a first partition plate and a second partition plate, the first partition plate comprises a first hollow pipe, a first planting pot and a second planting pot are arranged on the first partition plate, and the first planting pot and the second planting pot are communicated with the first hollow pipe; the second baffle comprises a second hollow pipe, a third planting pot and a fourth planting pot are arranged on the second baffle, and the third planting pot and the fourth planting pot are communicated with the second hollow pipe. The greening facility can be placed indoors to bear the potted plant, the potted plant can be placed on the greening facility to be combined with the greening facility into a whole, the greening facility is very convenient and fast to maintain, interestingness can be increased, and the greening facility can be widely applied to families or offices.

Description

Indoor greening facility
Technical Field
The invention relates to the field of greening facilities, in particular to an indoor greening facility.
Background
Present family or office attach more and more importance to the setting of afforestation facility when fitment, and the traditional facility structure that is used for placing green cultivated in a pot is comparatively simple, and green cultivated in a pot is simply placed on it, and this facility can not provide more functions for cultivated in a pot, and it is convenient inadequately to use.
Disclosure of Invention
In view of the above, the present invention provides an indoor greening facility to solve the problems of the prior art.
The invention is realized by the following steps:
an indoor greening facility comprises a frame body, wherein the frame body comprises a first hollow upright post, a second hollow upright post, a first partition plate and a second partition plate, the first hollow upright post and the second hollow upright post are arranged in parallel, two ends of the first partition plate and the second partition plate are connected to the first hollow upright post and the second hollow upright post, and the first partition plate is positioned above the second partition plate; the first partition plate comprises a first empty pipe, a first planting pot and a second planting pot are arranged on the first partition plate, and the first planting pot and the second planting pot are communicated with the first empty pipe; the second partition plate comprises a second hollow pipe, a third planting pot and a fourth planting pot are arranged on the second partition plate, and the third planting pot and the fourth planting pot are communicated with the second hollow pipe; the top of the first hollow upright post is provided with an opening, one end of the first hollow pipe is communicated with the first hollow upright post, the other end of the first hollow pipe is communicated with the second hollow upright post, and one end of the second hollow pipe is communicated with the second hollow upright post.
Preferably, the frame body further comprises a first solid upright and a second solid upright, the first hollow upright and the second hollow upright are vertically arranged, the first solid upright is obliquely connected to the first hollow upright, and the second solid upright is obliquely connected to the second hollow upright; the first partition plate and the second partition plate are also connected with the first solid upright post and the second solid upright post, and the width of the first partition plate is smaller than that of the second partition plate.
Preferably, the first planting pot comprises a conical outer shell and a conical inner shell, a water storage cavity is formed between the outer shell and the inner shell, the top of the outer shell is hermetically connected with the top of the inner shell, a branch pipe is connected to the side of the first hollow pipe, and the end of the branch pipe is connected to the side of the outer shell and is communicated with the water storage cavity;
the first planting pot is of a sinking structure, the water storage cavity is lower than the first partition plate, the bottom of the inner shell is a bottom plate, at least two through holes are formed in the bottom plate, a connecting ring extending downwards is arranged at the bottom of each through hole, and internal threads are arranged on the inner wall of each connecting ring; each all be connected with water absorption device on the through-hole, water absorption device includes spliced pole and water absorption stick, the outside of spliced pole is provided with the external screw thread, the spliced pole spiro union in the clamping ring, water absorption stick passes the spliced pole makes water absorption stick's top be located the top of bottom plate, water absorption stick's bottom is located the water storage cavity.
Preferably, a first spacer is arranged inside the first hollow upright, the first spacer is positioned below the first partition board and above the second partition board, a second spacer is arranged inside the second hollow upright, and the second spacer is positioned below the second partition board.
Preferably, a third spacer is further arranged inside the second hollow upright, and the third spacer is located above the first partition plate.
Preferably, the first planting pot and the second planting pot are identical in structure and size, the third planting pot and the fourth planting pot are identical in structure and size, and the diameter and the depth of the third planting pot are larger than those of the first planting pot.
Preferably, one end of the second hollow pipe, which is close to the first hollow upright post, is provided with a water storage box, the water storage box is of a transparent structure, the bottom of the water storage box is provided with a water outlet, and the depth of the water storage box is greater than the diameter of the second hollow pipe, so that one part of the water storage box is positioned below the second hollow pipe.
Preferably, two cross rods are further connected between the first hollow upright and the second hollow upright, the top end of the first solid upright is hinged to the outer side of the first hollow upright, and the top end of the second solid upright is hinged to the outer side of the second hollow upright.
The indoor greening facility provided by the invention can be placed indoors to bear potted plants, the potted plants can be placed on the greening facility and can be combined with the greening facility into a whole, the indoor greening facility is very convenient and quick to maintain, the interestingness can be increased, and the indoor greening facility can be widely applied to families or offices.
Drawings
The description includes the following figures, the contents shown are respectively:
fig. 1 is a schematic front view of an indoor greening facility provided by an embodiment of the present invention;
FIG. 2 is a schematic side view of an indoor greening facility provided by an embodiment of the present invention;
FIG. 3 is a schematic top view of a first partition in an indoor greening facility according to an embodiment of the present invention;
FIG. 4 is a schematic top view of a second partition in an indoor greening system according to an embodiment of the present invention;
FIG. 5 is a schematic cross-sectional view of a first plant pot in an indoor greening facility according to an embodiment of the present invention;
FIG. 6 is a schematic view of a connection structure of a water absorption device in an indoor greening facility according to an embodiment of the present invention;
FIG. 7 is a schematic cross-sectional view illustrating the connection between the first hollow upright and the first partition in the indoor greening facility according to the embodiment of the present invention;
FIG. 8 is a schematic cross-sectional view of the connection between the second hollow upright and the first and second partitions in the indoor greening facility according to the embodiment of the present invention;
fig. 9 is a schematic view of water flowing in an indoor greening facility according to an embodiment of the present invention.
Labeled as: the water-saving planting pot comprises a frame body 11, a first hollow upright post 12, a second hollow upright post 13, a first partition plate 14, a second partition plate 15, a first solid upright post 16, a second solid upright post 17, a first hollow pipe 18, a second hollow pipe 19, a first planting pot 20, a second planting pot 21, a third planting pot 22, a fourth planting pot 23, an outer shell 24, an inner shell 25, a water storage cavity 26, a branch pipe 27, a bottom plate 28, a through hole 29, a connecting ring 30, a water absorbing device 31, a connecting post 32, a water absorbing rod 33, a first partition 34, a second partition 35, a third partition 36, a water storage box 37, a water outlet 38, a cross rod 39, a connecting pipe 40, a connecting piece 41 and a groove 42.
Detailed Description
The following detailed description of the embodiments of the present invention will be given with reference to the accompanying drawings for a purpose of helping those skilled in the art to more fully, accurately and deeply understand the concept and technical solution of the present invention and to facilitate its implementation.
This embodiment provides an indoor afforestation facility, can place and be used for bearing cultivated in a pot indoor, it can combine as an organic wholely with afforestation facility to place cultivated in a pot on afforestation facility, very convenient and fast when maintaining to can increase the interest, but wide application in family or office.
As shown in fig. 1 to 9, the indoor greening facility includes a frame 11, the frame 11 includes a first hollow upright 12, a second hollow upright 13, a first partition 14 and a second partition 15, the first hollow upright 12 and the second hollow upright 13 are disposed in parallel, two ends of the first partition 14 and the second partition 15 are connected to the first hollow upright 12 and the second hollow upright 13, and the first partition 14 is located above the second partition 15; the first partition plate 14 comprises a first hollow pipe 18, a first planting pot 20 and a second planting pot 21 are arranged on the first partition plate 14, and the first planting pot 20 and the second planting pot 21 are communicated with the first hollow pipe 18; the second clapboard 15 comprises a second hollow pipe 19, a third planting pot 22 and a fourth planting pot 23 are arranged on the second clapboard 15, and the third planting pot 22 and the fourth planting pot 23 are communicated with the second hollow pipe 19; the top of the first hollow upright post 12 is provided with an opening, one end of a first hollow pipe 18 is communicated with the first hollow upright post 12, the other end of the first hollow pipe 18 is communicated with the second hollow upright post 13, and one end of a second hollow pipe 19 is communicated with the second hollow upright post 13.
The greening facilities are of a shelf structure, can be produced in batches in factories, can be randomly placed at any indoor position, and can be placed in families or offices.
The first hollow column 12 and the second hollow column 13 are basic supporting parts of the frame body 11, and are hollow structures, and the top of the first hollow column 12 is provided with an opening communicated with the inside of the first hollow column, so that water can be poured into the inside of the first hollow column 12 from the top thereof. First baffle 14 and second baffle 15 all have two planting basins for bearing green cultivated in a pot's part of planting on first baffle 14 and the second baffle 15, can plant green planting in the planting basin.
The first hollow pipe 18 is a member connected to the first partition 14, and the first hollow pipe 18 is hollow, and both ends thereof are connected to the first hollow column 12 and the second hollow column 13, so that water can flow from the first hollow column 12 into the first hollow pipe 18 and into the second hollow column 13. And the first hollow pipe 18 is communicated with the first planting pot 20 and the second planting pot 21, and water flow can flow into the first planting pot 20 and the second planting pot 21 when flowing through the first hollow pipe 18, so that water flow is injected into the first planting pot 20 and the second planting pot 21. Similarly, the water flowing into the second hollow pipe 19 from the second hollow column 13 can also flow into the third planting pot 22 and the fourth planting pot 23, so that the water is stored in each planting pot.
When the planting pot is used, a pot plant is placed in each planting pot, or soil is filled in each planting pot, and green plants are planted in the planting pots. When watering is needed, water is injected to the top of the first hollow upright post 12 by a kettle, as shown in fig. 9, water flows through the first hollow upright post 12, enters the first hollow pipe 18, continues to flow to the second hollow upright post 13 and the second hollow pipe 19, water in the first hollow pipe 18 can flow into the first planting pot 20 and the second planting pot 21, and water in the second hollow pipe 19 flows into the third planting pot 22 and the fourth planting pot 23, so that green plants in the planting pots can obtain moisture. The watering is not needed to be carried out in each planting pot independently, so that the watering is very convenient and fast, and compared with the traditional watering mode, the watering device can bring more novel experience, has good playability, and is different from the traditional greening facilities in essence.
As shown in fig. 2, the frame body 11 further includes a first solid upright 16 and a second solid upright 17, the first hollow upright 12 and the second hollow upright 13 are vertically disposed, the first solid upright 16 is obliquely connected to the first hollow upright 12, and the second solid upright 17 is obliquely connected to the second hollow upright 13; the first partition 14 and the second partition 15 are also connected to a first solid upright 16 and a second solid upright 17, the width of the first partition 14 being smaller than the width of the second partition 15.
The first solid upright 16 and the second solid upright 17 are also support members of the frame body 11, and are matched with the first hollow upright 12 and the second hollow upright 13, so that the frame body 11 is stably placed on the ground. Two vertical settings of hollow stand, two solid stand slope settings make support body 11 structure very pleasing to the eye, and its lateral part is triangle-shaped, and triangle-shaped is a very stable shape for support body 11's structure is very stable, also is difficult for rocking after long-time the use. The structure of support body 11 is followed the top and is become wide gradually to low, consequently sets up the width that is greater than first baffle 14 with the width of second baffle 15, makes two baffle homoenergetic stable, and support body 11 is more pleasing to the eye.
As shown in fig. 3 and 4, the first planting pot 20 includes a conical outer shell 24 and a conical inner shell 25, a water storage cavity 26 is formed between the outer shell 24 and the inner shell 25, the top of the outer shell 24 is hermetically connected with the top of the inner shell 25, a branch pipe 27 is connected to the side of the first hollow pipe 18, the end of the branch pipe 27 is connected to the side of the outer shell 24, and the branch pipe 27 is communicated with the water storage cavity 26;
the first planting pot 20 is of a sinking structure, so that the water storage cavity 26 is lower than the first partition plate 14, the bottom of the inner shell 25 is a bottom plate 28, at least two through holes 29 are formed in the bottom plate 28, a connecting ring 30 extending downwards is arranged at the bottom of each through hole 29, and internal threads are arranged on the inner wall of each connecting ring 30; all be connected with water absorption device 31 on each through-hole 29, water absorption device 31 includes spliced pole 32 and water absorption stick 33, and the outside of spliced pole 32 is provided with the external screw thread, and spliced pole 32 spiro union is in clamping ring 30, and water absorption stick 33 passes spliced pole 32, makes the top of water absorption stick 33 be located the top of bottom plate 28, and the bottom of water absorption stick 33 is located water storage cavity 26.
Through the structure, water flow can smoothly flow into each planting pot in the watering process, the water quantity can be controlled more easily during watering, the condition of excessive watering can not occur, and the condition of insufficient watering can not occur easily. The structures of the respective planting pots are the same, and only the structure of the first planting pot 20 is described for convenience of description.
Whole first planting basin 20 is the toper structure, makes its top diameter great, and the bottom diameter is less, and first planting basin 20 is hollow structure, and it has conical outer shell 24 and conical inner shell 25, and outer shell 24 and inner shell 25 sealing connection form water storage chamber 26 between outer shell 24 and the inner shell 25, and water storage chamber 26 passes through branch pipe 27 and connects first hollow tube 18, and the water in the branch pipe 27 can flow into in the water storage chamber 26. The first planting pot 20 is a sinking type mounting structure, so that the first planting pot 20 is at a lower position, the branch pipe 27 is connected to a higher position at the side part of the first planting pot 20, and water flowing out of the branch pipe 27 flows to the bottom of the water storage cavity 26. Due to the structural arrangement, the water storage cavity 26 is located at a lower position, more water in the first branch pipe 27 can flow into the water storage cavity 26, more water can be stored in the water storage cavity 26, and the water flowing into the water storage cavity 26 can not flow into the first hollow pipe 18 through the branch pipe 27.
The bottom plate 28 is a structural member at the bottom of the inner casing 25, and the water absorption device 31 is disposed on the bottom plate 28, so that green plants in the inner casing 25 can absorb water from the water storage cavity 26. The bottom plate 28 is provided with a plurality of through holes 29, and a water absorption device 31 is arranged at each through hole 29. The water absorbing device 31 has a connection post 32, the connection post 32 is connected with the connection ring 30 by screw thread, and water cannot seep between the connection post 32 and the connection ring. The rod 33 that absorbs water passes the spliced pole 32, and the rod 33 that absorbs water is also connected comparatively closely with spliced pole 32 for water absorption device 31 not only has the function of absorbing water, also has certain sealed function, makes the water in the water storage chamber 26 can not become a thigh fast and flow into inside the inner shell 25, only can permeate the inner shell 25 slowly through the absorption of soil in, ensures that more hydroenergy can be saved in the water storage chamber 26, and the root of plant can not submerged.
Most of plants bought in the market are contained in plastic pots, a plurality of holes are formed in the bottoms of the plastic pots, and when the plastic pots are placed in the first planting pots 20, the water absorbing devices 31 penetrate through the holes in the bottoms of the plastic pots and extend into soil, so that the soil can absorb water through the water absorbing devices 31. Or the plastic pot is removed, and soil is directly filled in the inner shell 25 for planting.
Scales can be marked outside the planting pots, for example, the maximum water storage capacity of the water storage cavities 26 of the first planting pot 20 and the second planting pot 21 is 100 ml, and the maximum water storage capacity of the water storage cavities 26 of the third planting pot 22 and the fourth planting pot 23 is 150 ml, so that the proper water storage capacity of the whole greening facility is 500 ml, 500 ml of water can be quickly injected by using the measuring cup during watering, and the water can uniformly flow into each planting pot and cannot be accumulated in the hollow upright post or the hollow pipe. Through this kind of mode make to water can control very conveniently, and water and can be more swift, the user can water for the plant fast before going out to work in the morning or after going back to work evening, can not consume more time.
As shown in fig. 7 and 8, the first hollow column 12 is provided with a first spacer 34 therein, the first spacer 34 is positioned below the first separator 14 and above the second separator 15, the second hollow column 13 is provided with a second spacer 35 therein, and the second spacer 35 is positioned below the second separator 15. A third spacer 36 is further disposed inside the second hollow upright 13, and the third spacer 36 is located above the first partition 14.
The first spacer 34 is arranged in the first hollow upright post 12, so that after watering, the inside of the first hollow upright post 12 does not store much water, and water flow can completely flow into the first hollow pipe 18 as much as possible. The same effect is achieved by the two spacers arranged inside the second hollow upright 13.
As shown in fig. 3 and 4, the first planting pot 20 and the second planting pot 21 have the same structure and size, the third planting pot 22 and the fourth planting pot 23 have the same structure and size, and the third planting pot 22 has a larger diameter and a larger depth than the first planting pot 20. The arrangement enables larger plants to be planted on the second partition plate 15, smaller plants to be planted on the first partition plate 14, and plants of different types are matched, so that greening facilities are more attractive.
As shown in fig. 2 and 4, one end of the second hollow pipe 19 close to the first hollow upright 12 is provided with a water storage box 37, the water storage box 37 is of a transparent structure, a water outlet 38 is arranged at the bottom of the water storage box 37, and the depth of the water storage box 37 is larger than the diameter of the second hollow pipe 19, so that a part of the water storage box 37 is positioned below the second hollow pipe 19.
The end of the second hollow pipe 19 close to the first hollow upright post 12 is the rearmost end of the whole water circulation, redundant water in the hollow upright post and the hollow pipe can flow into the water storage box 37 for storage, the water storage box 37 is transparent, so that a user can clearly see the stored water in the water storage box, and the bottom of the water storage box 37 is provided with a water outlet 38, so that the stored water in the water storage box 37 can be discharged when excessive water is stored in the water storage box 37. The water storage box 37 has a large depth, so that it can store more water therein,
one part of the water storage box 37 is flush with the second hollow pipe 19, one part of the water storage box 37 is positioned at a position lower than the second hollow pipe 19, when the accumulated water in the water storage box 37 is less, the water in the water storage box 37 cannot flow back to the second hollow pipe 19, and when the accumulated water is more, the accumulated water also flows into one part of the second hollow pipe 19, so that the whole system can be filled with more accumulated water, and more sufficient drainage time is provided for a user.
In the greening facility, the connection among all pipelines is sealed connection, so that water cannot seep out. A groove 42 is formed in the second partition 15 close to the second hollow pipe 19, and the groove 42 facilitates installation of the water storage box 37, so that a part of the water storage box 37 is accommodated in the groove 42.
As shown in fig. 3, a connecting pipe 40 with a diameter smaller than that of the first hollow pipe 18 is disposed at an end of the first hollow pipe 18, the connecting pipe 40 plays a role in connection, the connecting pipe 40 extends into the first hollow column 12 and the second hollow column 13, two connecting pieces 41 are disposed at an end of the first partition 14, and the connecting pipe 40 passes through the connecting pieces 41 to connect the first hollow pipe 18 and the first partition 14.
As shown in fig. 1, two cross bars 39 are connected between the first hollow upright 12 and the second hollow upright 13, the top end of the first solid upright 16 is hinged on the outer side of the first hollow upright 12, and the top end of the second solid upright 17 is hinged on the outer side of the second hollow upright 13. The cross bar 39 serves a stabilizing function. The solid stand is located the hollow stand outside, and the two is articulated relation, makes the solid stand can overturn to parallel with the hollow stand, can connect the two when leaving the factory, makes the user reduce the installation step, and it is more convenient to install.
The present embodiment provides only one possible structure, and when the specific design is performed, the number of the partition plates is not limited to two, and the number of the planting pots on each partition plate is also not limited to two, for example, there may be three partition plates, and each partition plate is provided with three planting pots.
The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of the invention. Thus, the present invention is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims (8)

1. An indoor greening facility is characterized by comprising a frame body, wherein the frame body comprises a first hollow upright post, a second hollow upright post, a first partition plate and a second partition plate, the first hollow upright post and the second hollow upright post are arranged in parallel, two ends of the first partition plate and the second partition plate are connected to the first hollow upright post and the second hollow upright post, and the first partition plate is positioned above the second partition plate; the first partition plate comprises a first empty pipe, a first planting pot and a second planting pot are arranged on the first partition plate, and the first planting pot and the second planting pot are communicated with the first empty pipe; the second partition plate comprises a second hollow pipe, a third planting pot and a fourth planting pot are arranged on the second partition plate, and the third planting pot and the fourth planting pot are communicated with the second hollow pipe; the top of the first hollow upright post is provided with an opening, one end of the first hollow pipe is communicated with the first hollow upright post, the other end of the first hollow pipe is communicated with the second hollow upright post, and one end of the second hollow pipe is communicated with the second hollow upright post.
2. An indoor greening facility as claimed in claim 1, wherein the frame body further comprises a first solid upright and a second solid upright, the first hollow upright and the second hollow upright are vertically arranged, the first solid upright is obliquely connected to the first hollow upright, and the second solid upright is obliquely connected to the second hollow upright; the first partition plate and the second partition plate are also connected with the first solid upright post and the second solid upright post, and the width of the first partition plate is smaller than that of the second partition plate.
3. The indoor greening facility as claimed in claim 2, wherein the first planting pot comprises a conical outer shell and a conical inner shell, a water storage cavity is formed between the outer shell and the inner shell, the top of the outer shell is hermetically connected with the top of the inner shell, a branch pipe is connected to the side of the first hollow pipe, the end of the branch pipe is connected to the side of the outer shell, and the branch pipe is communicated with the water storage cavity;
the first planting pot is of a sinking structure, the water storage cavity is lower than the first partition plate, the bottom of the inner shell is a bottom plate, at least two through holes are formed in the bottom plate, a connecting ring extending downwards is arranged at the bottom of each through hole, and internal threads are arranged on the inner wall of each connecting ring; each all be connected with water absorption device on the through-hole, water absorption device includes spliced pole and water absorption stick, the outside of spliced pole is provided with the external screw thread, the spliced pole spiro union in the clamping ring, water absorption stick passes the spliced pole makes water absorption stick's top be located the top of bottom plate, water absorption stick's bottom is located the water storage cavity.
4. An indoor greening facility as claimed in claim 3, wherein the first hollow upright is internally provided with a first spacer below the first partition and above the second partition, and the second hollow upright is internally provided with a second spacer below the second partition.
5. An indoor greening facility as claimed in claim 4, wherein a third partition is further provided inside the second hollow upright, and the third partition is located above the first partition.
6. An indoor greening facility as claimed in claim 3, wherein the first and second planting pots are identical in structure and size, the third and fourth planting pots are identical in structure and size, and the third planting pot is larger in diameter and depth than the first planting pot.
7. An indoor greening facility as claimed in claim 6, wherein a water storage box is arranged at one end of the second hollow pipe close to the first hollow upright post, the water storage box is of a transparent structure, a water outlet is arranged at the bottom of the water storage box, and the depth of the water storage box is larger than the diameter of the second hollow pipe, so that a part of the water storage box is positioned below the second hollow pipe.
8. An indoor greening facility as claimed in claim 3, wherein two cross bars are connected between the first hollow upright and the second hollow upright, the top end of the first solid upright is hinged to the outside of the first hollow upright, and the top end of the second solid upright is hinged to the outside of the second hollow upright.
CN201911195867.6A 2019-11-29 2019-11-29 Indoor greening facility Withdrawn CN111011039A (en)

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CN201911195867.6A CN111011039A (en) 2019-11-29 2019-11-29 Indoor greening facility

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Application Number Priority Date Filing Date Title
CN201911195867.6A CN111011039A (en) 2019-11-29 2019-11-29 Indoor greening facility

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CN111011039A true CN111011039A (en) 2020-04-17

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