CN214430419U - Plant planting combination basin - Google Patents

Plant planting combination basin Download PDF

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Publication number
CN214430419U
CN214430419U CN202022860454.XU CN202022860454U CN214430419U CN 214430419 U CN214430419 U CN 214430419U CN 202022860454 U CN202022860454 U CN 202022860454U CN 214430419 U CN214430419 U CN 214430419U
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planting
disc
center
tray
nutrient solution
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CN202022860454.XU
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Chinese (zh)
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赵志军
陈吉生
赵福山
赵娜
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    • 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
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P60/00Technologies relating to agriculture, livestock or agroalimentary industries
    • Y02P60/20Reduction of greenhouse gas [GHG] emissions in agriculture, e.g. CO2
    • Y02P60/21Dinitrogen oxide [N2O], e.g. using aquaponics, hydroponics or efficiency measures

Abstract

The utility model relates to a plant species plants combination basin belongs to plant species and plants technical field. The technical scheme is as follows: the planting outer disc (3) is arranged on the planting bottom tray (4), a planting disc center cylinder (6) is arranged in the center of the planting outer disc (3), a planting area is formed between the outer wall of the planting disc center cylinder (6) and the inner wall of the planting outer disc (3), and a planting disc center cover (5) is arranged on the planting disc center cylinder (6); the planting outer tray (3), the planting bottom tray (4), the planting tray center cover (5) and the planting tray center cylinder are arranged concentrically to form a planting combined basin. The utility model has the advantages that: the nutrient solution is suitable for family cultivation, is more suitable for large-scale cultivation and production, is convenient to irrigate and is beneficial to the growth of plants; the structure is stable and elegant.

Description

Plant planting combination basin
Technical Field
The utility model relates to a plant species plants combination basin belongs to plant species and plants technical field.
Background
The common planting modes of plants comprise soil planting, water planting, soilless culture and the like, and no matter what planting mode is, nutrients required by plant growth must be provided, the growth of hydroponic plants depends on roots to absorb the nutrients of culture solution, the roots of hydroponic plants also need to absorb sufficient air to effectively promote the growth of hydroponic plants, in addition, the temperature is also an important factor of plant growth, and the layered planting containers are effective methods for improving the space utilization efficiency. The prior art has the problems that: the structure is unreasonable, the cultivation method is not suitable for family cultivation and large-scale cultivation, and the nutrient solution is inconvenient to irrigate and is not beneficial to the growth of plants; in addition, potted flowers cultivated by garden flowers and trees in the prior art cannot adapt to different environments, the combination between flower discs is unstable, the flower discs can be fallen down and broken by slight collision or vibration, and the flower discs are not attractive.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a plant planting combined pot which is not only suitable for family planting, but also suitable for large-scale cultivation and production, is convenient for irrigating nutrient solution and is beneficial to the growth of plants; the structure is stable and elegant, and the problems in the prior art are solved.
The technical scheme of the utility model is that:
a plant planting combined pot comprises a planting outer plate, a planting bottom tray, a planting plate center cover and a planting plate center cylinder; the planting outer disc is arranged on the planting bottom tray, a planting disc center cylinder is arranged in the center of the planting outer disc, a planting area is formed between the outer wall of the planting disc center cylinder and the inner wall of the planting outer disc, and a planting disc center cover is arranged on the planting disc center cylinder; the planting outer tray, the planting bottom tray, the planting tray center cover and the planting tray center cylinder are arranged concentrically to form the planting combined basin.
A plurality of planting cups are placed in the planting area, and plants are planted in the planting cups.
The center of planting combination basin is equipped with the through-hole, and well core rod passes the through-hole, and a plurality of planting combination basins are passed to same root well core rod, separate through respective support cover between the adjacent planting combination basin and support, and the support ways is outside well core rod, and a plurality of planting combination basins separate through supporting the cover on well core rod, wholly constitute multilayer combination basin.
The top of the central rod is provided with a hanging ring, and the multilayer combined basin elevated frame is hung and arranged.
The bottom of the central rod is provided with a bottom support, the bottom support and the central rod are fixed together, the lowest layer of planting combined pot is supported, and the multilayer combined pot is placed on the ground or a platform.
The inner wall of the planting outer disc is formed by combining a plurality of semicircular outer arcs, a boss is arranged in the center of the planting outer disc, a planting disc center hole is formed in the boss, and a plurality of leakage holes are formed in the periphery of the planting disc center hole; the bottom of the central cylinder of the planting plate is provided with a plurality of notches; the planting plate center cover is covered on the planting plate center cylinder, a plurality of semicircular inner arcs are arranged on the outer circle of the planting plate center cover, the number of the semicircular inner arcs is the same as that of the semicircular outer arcs of the planting outer plate, the positions of the semicircular inner arcs are matched, a semicircular inner arc and a semicircular outer arc form a circular hole together, and a planting cup is placed in the circular hole; the center of planting the end tray is equipped with a supporting cylinder, supports the bottom of planting the outer dish, is equipped with under a plurality of nutrient solutions the small opening on planting the end tray, and the back of planting the end tray is equipped with a plurality of nutrient solution pipe joints, and every kind plants the small opening under the cup corresponds intercommunication nutrient solution, and the quantity of the small opening equals under nutrient solution pipe joint and the nutrient solution, equalling in the quantity of planting the cup.
The cup cover is buckled on the planting cup and is provided with a nutrient solution hole and a plant growing hole; planting soil is placed in the planting cup, and the growing plants extend out of the plant growing holes to grow; the upper part of the central rod is provided with a nutrient solution main pipe which is connected with a plurality of nutrient solution pipes, and each nutrient solution pipe is communicated with a nutrient solution hole on the cup cover to provide nutrients for plants in the planting cup; the planting cups, the cup covers and the nutrition liquid tubes are the same in number.
Nutrient solution between the adjacent planting combination basin passes through the nutrient solution house steward and connects in the multilayer combination basin, and the nutrient solution hole on this layer of bowl cover is connected to the planting combination basin nutrient solution pipe one end of next floor, and the nutrient solution union coupling of upper story planting combination basin is connected to the other end, wholly constitutes a fertilization water supply system who communicates each layer planting combination basin.
The central rod is of a hollow structure, an electric heating rod is arranged in the central rod, temperature is supplemented for plant growth, and the planting heating system of the multilayer planting combined pot is integrally formed.
The bottom of the planting cup is provided with a cup bottom hole.
The inner wall of the central cylinder of the planting plate is connected with the central hole of the central cylinder through a reinforcing rib.
The center cover of the planting plate is provided with a plurality of drain holes.
The utility model discloses a use method: planting soil is placed in the planting cups and plants are planted, the planting combined basin is suspended in an elevated manner through a hanging ring at the top of the central rod, nutrient solution is distributed to each nutrient solution pipe of the uppermost layer of the planting combined basin through the nutrient solution main pipe, respectively enters the respective planting cup and seeps into the planting outer tray through a cup bottom hole at the bottom of the planting cup; the nutrient solution of the uppermost layer of planting combined basin flows into the planting bottom tray through the leakage hole at the bottom of the planting outer tray, then enters the nutrient solution pipe corresponding to the next layer of planting combined basin through the nutrient solution lower leakage hole on the planting bottom tray and the nutrient solution pipe joint, and the nutrient solution flows from the first layer to the lowermost layer automatically and gradually.
The planted plants grow outwards through the plant growing holes in the cup cover.
When the plant growth temperature needs to be increased, the electric heating rod in the central rod is electrified to supplement heat for plant growth.
The utility model discloses a fertilization water supply system is equipped with the circulating pump, behind the planting combination basin of the bottom layer of nutrient solution outflow including water and fertile, collect, squeeze into the nutrient solution house steward through the circulating pump, used repeatedly forms a closed loop rich water circulation system.
The utility model is suitable for a plant cultivation of various modes, including soil cultivation and soilless culture.
The utility model is suitable for cultivating various plants, including fruits, vegetables, flowers and the like.
The utility model discloses be particularly suitable for and plant strawberry class plant, the root of strawberry is located planting the cup, and the strawberry stem passes the vegetation hole on the bowl cover, and the strawberry fruit is hung outside.
The utility model has the advantages that: the nutrient solution is suitable for family cultivation, is more suitable for large-scale cultivation and production, is convenient to irrigate and is beneficial to the growth of plants; the structure is stable and elegant.
Drawings
FIG. 1 is a general schematic diagram of an embodiment of the present invention;
FIG. 2 is a schematic front view of an embodiment of the present invention;
fig. 3 is a schematic view of a rotary planting outer disc according to an embodiment of the present invention;
FIG. 4 is a schematic view of a planting bottom tray according to an embodiment of the present invention;
fig. 5 is a schematic view of a center cover of a planting tray according to an embodiment of the present invention;
FIG. 6 is a schematic view of a central cylinder of a planting tray according to an embodiment of the present invention;
FIG. 7 is a schematic view of an embodiment of a mandrel of the present invention;
FIG. 8 is a schematic view of a support sleeve according to an embodiment of the present invention;
FIG. 9 is a schematic view of a fertilization water supply system according to an embodiment of the present invention;
FIG. 10 is a schematic view of a planting cup according to an embodiment of the present invention;
fig. 11 is a schematic top view of a planting cup according to an embodiment of the present invention;
FIG. 12 is a schematic view of the internal structure of the combined embodiment of the present invention;
in the figure: the device comprises a central rod 1, a bottom support 2, a planting outer disc 3, a planting bottom tray 4, a planting disc central cover 5, a planting disc central cylinder 6, a support sleeve 7, a semicircular outer arc 8, a planting disc central hole 9, a nutrient solution pipe connector 10, a support cylinder 11, a reinforcing rib 12, a central cylinder central hole 13, a notch 14, a semicircular inner arc 15, a central mounting hole 16, a hanging ring 17, a cup cover 18, a nutrient solution hole 19, a nutrient solution pipe 20, a nutrient solution main pipe 21, a plant growth hole 22, a nutrient solution lower leakage hole 23, a leakage hole 24, a drainage hole 25, an electric heating rod 26, a planting cup 27 and a cup bottom hole 28.
Detailed Description
The present invention will be further explained by way of examples with reference to the accompanying drawings.
A plant planting combined pot comprises a planting outer plate 3, a planting bottom tray 4, a planting plate center cover 5 and a planting plate center cylinder 6; the planting outer disc 3 is arranged on the planting bottom tray 4, a planting disc center cylinder 6 is arranged in the center of the planting outer disc 3, a planting area is formed between the outer wall of the planting disc center cylinder 6 and the inner wall of the planting outer disc 3, and a planting disc center cover 5 is arranged on the planting disc center cylinder 6; the planting outer tray 3, the planting bottom tray 4, the planting tray center cover 5 and the planting tray center cylinder are concentrically arranged to form a planting combined basin.
A plurality of planting cups 27 are placed in the planting area, and plants are planted in the planting cups 27.
The center of planting combination basin is equipped with the through-hole, and well core rod 1 passes the through-hole, and same root core rod 1 passes a plurality of planting combination basins, separates through respective support cover 7 between the adjacent planting combination basin and supports, and support cover 7 covers outside well core rod 1, and a plurality of planting combination basins separate through supporting cover 7 on well core rod 1, wholly constitute multilayer combination basin.
The top of the central rod 1 is provided with a hanging ring 17 for hanging the multi-layer combined basin elevated frame.
The bottom of the central rod 1 is provided with a bottom support 2, the bottom support 2 is fixed with the central rod 1, the lowest layer of planting combined basin is supported, and the multiple layers of combined basins are placed on the ground or a platform.
The inner wall of the planting outer disc 3 is formed by combining a plurality of semicircular outer arcs 8, a boss is arranged in the center of the planting outer disc, a planting disc center hole 9 is formed in the boss, and a plurality of leakage holes 24 are formed in the periphery of the planting disc center hole 9; the bottom of the central cylinder 6 of the planting plate is provided with a plurality of notches 14; the planting plate central cover 5 is covered on the planting plate central cylinder 6, a plurality of semicircular inner arcs 15 are arranged on the outer circle of the planting plate central cover 5, the number of the semicircular inner arcs 15 is the same as that of the semicircular outer arcs 8 of the planting outer plate 3, the positions of the semicircular inner arcs 15 are matched with those of the semicircular outer arcs 8, a circular hole is formed by the semicircular inner arcs 15 and the semicircular outer arcs 8, and a planting cup 27 is placed in the circular hole; the center of planting end tray 4 is equipped with a support section of thick bamboo 11, supports the bottom of planting outer dish 3, is equipped with under a plurality of nutrient solutions small opening 23 on planting end tray 4, and the back of planting end tray 4 is equipped with a plurality of nutrient solution pipe joints 10, and the small opening 23 under every kind of planting cup 27 correspondence intercommunication nutrient solution, the nutrient solution pipe joint 10 equals with the quantity of small opening 23 under the nutrient solution, equalling in the quantity of planting cup 27.
The cup cover 18 is buckled on the planting cup 27, and the cup cover 18 is provided with a nutrient solution hole 19 and a plant growing hole 22; planting soil is placed in the planting cup 27, and the growing plants extend out of the plant growing holes 22 to grow; a nutrient solution main pipe 21 is arranged at the upper part of the central rod 1, the nutrient solution main pipe 21 is connected with a plurality of nutrient solution pipes 20, and each nutrient solution pipe 20 is communicated with a nutrient solution hole 19 on the cup cover 18 to provide nutrients for plants in the planting cup 27; the planting cups 27, the cup covers 18 and the nutrient solution tubes 20 are the same in number.
Nutrient solution between the adjacent planting combination basin passes through the nutrient solution house steward and connects in the multilayer combination basin, and the nutrient solution hole on this layer of bowl cover is connected to the planting combination basin nutrient solution pipe one end of next floor, and the nutrient solution union coupling of upper story planting combination basin is connected to the other end, wholly constitutes a fertilization water supply system who communicates each layer planting combination basin.
The central rod 1 is of a hollow structure, an electric heating rod 26 is arranged in the central rod to supplement temperature for plant growth, and the integral central rod forms a planting heating system of the multilayer planting combined pot.
The bottom of the planting cup 27 is provided with a cup bottom hole 28.
The inner wall of the central cylinder 6 of the planting plate is connected with a central cylinder central hole 13 through a reinforcing rib 12.
A plurality of drain holes 25 are arranged on the central cover 5 of the planting plate.
The utility model discloses a use method: planting soil and plants (such as strawberries) are placed in the planting cups 27, the planting combined pots are hung in an elevated mode (such as being hung in a greenhouse, indoors, on a balcony and the like) through the hanging rings 17 at the tops of the central rods 1, nutrient solution is distributed to the nutrient solution pipes 20 of the uppermost layer of the planting combined pots through the nutrient solution main pipes 21, enters the planting cups 27 respectively, and seeps into the planting outer tray 3 through the cup bottom holes 28 at the bottoms of the planting cups 27; the nutrient solution of the uppermost layer of planting combined basin flows into the planting bottom tray 4 through the leakage hole 24 at the bottom of the planting outer tray 3, and then enters the nutrient solution pipe corresponding to the next layer of planting combined basin through the nutrient solution lower leakage hole 23 on the planting bottom tray 4 and the nutrient solution pipe connector 10, and the nutrient solution flows from the first layer to the lowermost layer automatically and gradually.
The planted plants grow outwards through the plant growth holes 22 on the cup cover.
When the plant growth temperature needs to be increased, the electric heating rod 26 in the central rod 1 is electrified to supplement heat for plant growth.
The embodiment is planting the strawberry, the root of the strawberry is positioned in the planting cup 27, the stem of the strawberry passes through the plant growth hole 22 on the cup cover, and the strawberry is hung outside. Nine planting cups 27 are uniformly distributed in the circumference of the planting outer disc 3, and form a nine-seed lotus shape integrally, so that the planting cup is attractive and elegant.

Claims (3)

1. A plant planting combination basin which is characterized in that: comprises a planting outer disc (3), a planting bottom tray (4), a planting disc center cover (5) and a planting disc center cylinder (6); the planting outer disc (3) is arranged on the planting bottom tray (4), a planting disc center cylinder (6) is arranged in the center of the planting outer disc (3), a planting area is formed between the outer wall of the planting disc center cylinder (6) and the inner wall of the planting outer disc (3), and a planting disc center cover (5) is arranged on the planting disc center cylinder (6); the planting outer tray (3), the planting bottom tray (4), the planting tray center cover (5) and the planting tray center cylinder are arranged concentrically to form a planting combined basin.
2. The plant cultivation combination pot of claim 1, wherein: a plurality of planting cups (27) are placed in the planting area, and plants are planted in the planting cups (27).
3. A plant-growing combined pot according to claim 1 or 2, wherein: the inner wall of the planting outer disc (3) is formed by combining a plurality of semicircular outer arcs (8), a boss is arranged in the center of the planting outer disc, a planting disc center hole (9) is formed in the boss, and a plurality of leakage holes (24) are formed in the periphery of the planting disc center hole (9); the bottom of the central cylinder (6) of the planting plate is provided with a plurality of gaps (14); the planting plate center cover (5) covers the planting plate center cylinder (6), a plurality of semicircular inner arcs (15) are arranged on the outer circle of the planting plate center cover (5), the number of the semicircular inner arcs (15) is the same as that of the semicircular outer arcs (8) of the planting outer plate (3), the positions of the semicircular inner arcs are matched, one semicircular inner arc (15) and one semicircular outer arc (8) form a circular hole together, and a planting cup (27) is placed in the circular hole; the center of planting end tray (4) is equipped with a support section of thick bamboo (11), supports the bottom of planting outer dish (3), is equipped with under a plurality of nutrient solutions small opening (23) on planting end tray (4), and the back of planting end tray (4) is equipped with a plurality of nutrient solution pipe joints (10), and every kind cup (27) corresponds under a nutrient solution small opening (23) of intercommunication, and the quantity of small opening (23) equals under nutrient solution pipe joint (10) and the nutrient solution, equallies in the quantity of planting cup (27).
CN202022860454.XU 2020-12-03 2020-12-03 Plant planting combination basin Active CN214430419U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022860454.XU CN214430419U (en) 2020-12-03 2020-12-03 Plant planting combination basin

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022860454.XU CN214430419U (en) 2020-12-03 2020-12-03 Plant planting combination basin

Publications (1)

Publication Number Publication Date
CN214430419U true CN214430419U (en) 2021-10-22

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022860454.XU Active CN214430419U (en) 2020-12-03 2020-12-03 Plant planting combination basin

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CN (1) CN214430419U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112544277A (en) * 2020-12-03 2021-03-26 赵志军 Plant planting combined pot and using method

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112544277A (en) * 2020-12-03 2021-03-26 赵志军 Plant planting combined pot and using method

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