An apparatus and method for arranging plants at any angle in a flower exhibition
Through the device connecting the retractable hollow anchor rod and the magnetic block, the problem that plants cannot be placed at any angle in the flower exhibition is solved, and flexible space utilization and nutrient replenishment are achieved to meet the needs of diverse shaping.
Patent Information
- Application Number
- CN202310657160.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-05
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2043-06-05
AI Technical Summary
In the existing flower exhibition, plants cannot be placed at any angle, which wastes space and lacks flexibility, is inconvenient for nutrient replenishment, and is single in the flower arrangement, making it difficult to adapt to the diverse modeling needs.
A device is used to connect the retractable hollow anchor rod and the magnetic block to fix the plants by magnetic adsorption. The nutrients are transported by the retractable hollow anchor rod. The magnetic block tray stores nutrients in partitions, the flower tube increases the contact area, the iron powder and the magnetic block tray attract fixed soil, and the magnetic wire mesh compaction is adjusted to realize any angle placement.
It realizes the placement of plants at any angle, enhances the flexibility of vegetation placement and space utilization, simplifies nutrient replenishment, reduces material costs, and adapts to diverse modeling needs.
Smart Images

Figure CN116784080B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of flower exhibition, and in particular to a device and method for arranging plants at any angle in a flower exhibition. Background Art
[0002] With the rapid development of my country's economy, people have an increasingly strong demand for the advancement of greening technology and the construction of ecological cities. To this end, it is necessary to make full use of the space for placing the grid, ensure that the plants can be placed at any angle, and realize the diversification of the display flower shapes.
[0003] At present, there are more and more flower exhibition shapes, such as stepped and vertical displays. These methods can achieve relatively good exhibition effects, but they also have certain defects:
[0004] (1) Flowers cannot be placed at any angle, which wastes the space of the steel frame and is not suitable for displaying some novel shapes;
[0005] (2) For long-term or short-term flower exhibitions, there is no simple and convenient way to supply nutrients, resulting in high maintenance costs in the later stages;
[0006] (3) The arrangement of flowers is too simple and lacks the flexibility to accommodate the arrangement of vegetation (16) in different shapes. Summary of the invention
[0007] The purpose of the present invention is to provide a device and method for arranging plants at any angle in a flower exhibition. This device can effectively solve the problem of upside-down storage of plants and increase the flexibility of vegetation placement.
[0008] In order to achieve the above-mentioned technical features, the purpose of the present invention is achieved as follows: a device for arranging plants at any angle in a flower exhibition, which includes multiple magnetic blocks, which are connected to retractable hollow anchor rods by nuts, the other end of the retractable hollow anchor rods is connected to the inside of the tray, the support and the magnetic block tray are connected together by nuts, and the end of the retractable hollow anchor rod that cooperates with the magnetic block is provided with a nutrient injection end, nutrients are injected from the nutrient injection end and output at the nutrient output end through the retractable hollow anchor rod, and the nutrient output end is connected to multiple nutrient storage spaces inside the magnetic block tray; a pressure pump is fixed on the lower side of the magnetic block tray and is used to apply pressure to the nutrient storage space to facilitate the discharge of nutrients through the flower tubes to reach various parts of the soil.
[0009] The retractable hollow anchor rod is used as a bracket connected to the magnetic block and fixed at the position where adsorption is required. The extension distance of the retractable hollow anchor rod can be adjusted according to the space requirements for placement.
[0010] A retractable hollow anchor rod is used as a support and connected to different nutrient storage spaces inside the magnetic block tray device. Nutrients are transported to various parts inside the device through the retractable hollow anchor rod to achieve the reuse of the device.
[0011] The magnetic block uses iron slag as the main material. The iron slag is obtained from industrial production waste, and a magnetizing machine is used to magnetize the material to make it a recyclable material. The magnetic block serves as the connection hub between the vegetation and the skeleton. According to the weight of the vegetation that the magnetic block tray can carry and the size of the contact surface between the vegetation and the device, the required magnetic force of the magnetic block and the size of the magnetic block are determined.
[0012] Nutrients are transported from the outside through the retractable hollow anchor rod. The retractable hollow anchor rod is connected to the magnetic block by a thread, and nutrients are injected through this connection port. When the device is installed inside the vegetation, drugs can be directly injected from the outside without removing the device from the soil, avoiding damage to the vegetation.
[0013] The drug storage space is partitioned so that different types of nutrients can be stored in different spaces without affecting each other. Nutrients in different regions are supplemented through the retractable hollow anchor rod.
[0014] Uniformly distributed holes are provided on the contact surface between the magnetic block tray and the soil. A section of perforated pipe is connected to the holes and extends outward through the perforated pipe to increase the spatial contact between the device and the soil, increase the acting area during nutrient irrigation, and facilitate the diffusion of nutrients in the soil.
[0015] The magnetic block tray is connected to the bottom of the flowerpot or vegetation. The shape and size of the magnetic block tray are changed according to the size of the soil to make the soil in full contact with the magnetic block tray, ensuring that nutrients can be evenly injected into all parts of the soil during irrigation.
[0016] A certain amount of iron powder is stored inside the spherical ceramsite. The quantity of the iron powder can be adjusted according to the weight of the soil. The spherical ceramsite is clamped by two wire meshes and placed on the top of the soil. Through the attraction between the iron powder and the magnetic block tray, the soil is firmly placed inside the flowerpot, enabling the flowerpot to be placed at any angle without causing the soil to spill out, and thus used for the layout of flower and vegetation display racks of various shapes.
[0017] By adjusting the magnetic force of the magnetic block tray, the pressing force of the wire mesh on the soil is adjusted. When the magnetic force is increased, the wire mesh continuously compacts the soil to achieve the placement of the plant at any angle; when the magnetic force is decreased, the wire mesh relaxes, increasing the storage space of the soil and achieving the effect of loosening the soil.
[0018] A layout method for a device used in flower exhibitions to enable plants to be arranged at any angle includes the following steps:
[0019] Step 1: Place the magnetic block tray at the bottom layer inside the flowerpot, place the vegetation and soil body above the magnetic block tray. The upper surface of the magnetic block tray is distributed with uniform flower tubes, which is conducive to the delivery of drugs.
[0020] Step 2: According to the weight of the soil body and the size of the flowerpot, store a certain amount of iron powder in spherical ceramsite. Fix the spherical ceramsite with two wire meshes and place it at the topmost part of the soil body in the flowerpot.
[0021] Step 3: Due to the attraction between the iron powder and the magnetic block tray, ensure that the soil body and the vegetation can be firmly adsorbed on the bottom of the flowerpot, realizing the placement of the flowerpot at any angle.
[0022] Step 4: By adjusting the magnitude of the magnetic force of the magnetic block tray, change the compaction degree of the wire mesh on the soil body. Increase the magnetic force, and the wire mesh continuously compacts the soil body; decrease the magnetic force, the wire mesh relaxes, increasing the storage space of the soil body, achieving the purpose of loosening the soil.
[0023] Step 5: Connect the magnetic block tray and the support through nuts.
[0024] Step 6: Connect the telescopic hollow anchor rod and the magnet through nuts.
[0025] Step 7: The telescopic hollow anchor rod is internally connected to the magnetic block tray. Transport the nutrients to the inside of the magnetic block tray through the telescopic hollow anchor rod, and under the action of the pressure pump, make the drugs enter the soil body to provide necessary nutrients for the vegetation.
[0026] Step 8: Make various styles of support steel frames as needed, and place the vegetation together with the device at any position on the support steel frame. Since the device can be placed at any angle, the utilization space of the support steel frame is increased, which is conducive to the layout of various shapes.
[0027] The present invention has the following beneficial effects:
[0028] 1. The present invention innovatively adopts a telescopic support. According to different adsorption end areas, adjust the extension distance of the support, so that the device can be stably adsorbed on the skeleton to be placed, and at the same time, the plants can present different shapes hierarchically.
[0029] 2. The present invention innovatively adopts a telescopic hollow anchor rod as the support. The telescopic hollow anchor rod is connected to different spaces inside the device. Transport the nutrients to different storage spaces inside the device through the telescopic hollow anchor rod, which can be used for the exhibition of vegetation with a long activity cycle, ensure sufficient nutrients for the vegetation, realize the reuse of the device, save materials and protect the environment.
[0030] 3. The present invention innovatively uses magnetic blocks as the connection hubs between the vegetation and the framework. According to the weight of the vegetation carried by the device and the shape and size of the vegetation, the required magnetic force of the magnetic blocks and their shape and size are determined. At the same time, the position of the vegetation can be arbitrarily changed, which is convenient for movement.
[0031] 4. The present invention innovatively uses iron slag as the main material of the magnetic blocks. Since iron slag is industrial waste material, it has a low cost and can be easily obtained. The magnetic blocks are magnetized by a magnetizing machine, making them recyclable materials, saving resources and protecting the environment at the same time.
[0032] 5. The present invention innovatively transports nutrients from the outside through a telescopic hollow anchor rod. The anchor rod is connected to the magnetic block by threads, and nutrients are injected through this connection port. When the device is installed inside the vegetation, nutrients can be directly injected from the outside without taking the device out of the soil.
[0033] 6. The present invention innovatively partitions the storage part of the device, which can ensure that different nutrients are stored in different spaces at the same time. Nutrients are transported to different spaces respectively through the telescopic hollow anchor rod, enabling the device to be reused.
[0034] 7. The present invention innovatively sets evenly distributed holes on the contact surface between the device and the soil, and a section of perforated pipe is connected to each hole, increasing the contact area between the nutrients and the soil and facilitating the diffusion of nutrients in the soil.
[0035] 8. The present invention innovatively stores iron powder inside spherical ceramsite, and fixes the spherical ceramsite at the top of the soil through a wire mesh. Due to the attraction of the magnetic block tray, the soil is firmly stored inside the flowerpot, and the soil will not spill out due to the change of the angle, increasing the flexibility of the flowerpot placement, facilitating the arrangement of plant exhibitions in various shapes, saving space, and being practical and beautiful.
[0036] 9. The present invention innovatively adjusts the compaction degree of the soil by the wire mesh by controlling and adjusting the magnetic force of the magnetic block tray. When the magnetic force is increased, the wire mesh continuously compacts the soil, enabling the plants to be placed at any angle; when the magnetic force is decreased, the wire mesh relaxes, increasing the storage space of the soil and achieving the effect of loosening the soil. BRIEF DESCRIPTION OF THE DRAWINGS
[0037] The present invention will be further described below in conjunction with the drawings and embodiments.
[0038] Figure 1 It is a schematic diagram of the overall space of the device of the present invention.
[0039] Figure 2 It is a top view of the tray of the present invention.
[0040] Figure 3This is the front elevation view of the tray of the present invention.
[0041] Figure 4 This is the sectional view of the tray of the present invention.
[0042] Figure 5 This is the sectional view of the nutrient transportation pipeline of the present invention.
[0043] Figure 6 This is the schematic connection diagram of the magnetic block and the retractable hollow anchor rod of the present invention.
[0044] Figure 7 This is the schematic connection diagram of the support and the tray of the present invention.
[0045] Figure 8 This is the magnetic field distribution diagram of the wire mesh compressing the soil mass of the present invention.
[0046] Figure 9 This is the schematic working diagram of the device of the present invention.
[0047] In the figure: magnetic block 1, retractable hollow anchor rod 2, nutrient injection end 3, nutrient output end 4, magnetic block tray 5, nutrient storage space 6, perforated pipe 7, pressure pump 8, nut 9, support 10, flowerpot 11, soil mass 12, spherical ceramsite 13, wire mesh 14, iron powder 15, vegetation 16, support steel frame 17. Detailed implementation manners
[0048] The following further explains the implementation manners of the present invention with reference to the attached drawings.
[0049] Example 1:
[0050] Refer to Figures 1-9 , a device for arranging plants at any angle in a flower exhibition, which includes a plurality of magnetic blocks 1. The magnetic blocks 1 and the retractable hollow anchor rods 2 are connected together through nuts 9. The other end of the retractable hollow anchor rod 2 is connected to the inside of the tray 5. The support 10 and the magnetic block tray 5 are connected together through nuts 9. The end of the retractable hollow anchor rod 2 that cooperates with the magnetic block 1 is provided with a nutrient injection end 3. The nutrient is injected from the nutrient injection end 3 and output through the retractable hollow anchor rod 2 at the nutrient output end 4. The nutrient output end 4 communicates with a plurality of nutrient storage spaces 6 inside the magnetic block tray 5. The pressure pump 8 is fixed to the lower side of the magnetic block tray 5 and is used to apply pressure to the nutrient storage spaces 6 to facilitate the discharge of the nutrient through the perforated pipe 7 to reach various parts of the soil mass 12. By adopting the above device, the plants can be conveniently placed at any angle, and at the same time, various different styling designs are facilitated, effectively solving the problem of storing plants upside down and effectively improving the flexibility of vegetation placement.
[0051] Furthermore, the retractable hollow anchor rod 2 is used as a bracket and connected to the magnetic block 1, and fixed at the position to be adsorbed. The extension distance of the retractable hollow anchor rod 2 is adjusted according to the spatial requirements of the placement. Through the above-mentioned magnetic block 1, the entire device can be conveniently fixed on the flower display rack by magnetic adsorption. Through the retractable hollow anchor rod 2, the placement position of the entire device can be easily adjusted to achieve different placement shapes.
[0052] Furthermore, the retractable hollow anchor rod 2 is used as a bracket and connected to different nutrient storage spaces 6 inside the magnetic block tray 5 device. The nutrients are transported to various parts inside the device through the retractable hollow anchor rod 2 to achieve the reuse of the device. Through the above-mentioned storage space 6, it is convenient to store the nutrients required for the growth of vegetation during the exhibition, thus ensuring the normal growth of the vegetation.
[0053] Furthermore, the magnetic block 1 is mainly made of iron slag, which is obtained from industrial production waste, and the material is magnetized by a magnetizing machine to make it a recyclable material. The magnetic block 1 is used as the connection hub between the vegetation 16 and the skeleton. According to the weight of the vegetation 16 that the magnetic block tray 5 can carry and the size of the contact surface between the vegetation 16 and the device, the required magnetic force of the magnetic block 1 and the size of the magnetic block 1 are determined. Through the above-mentioned magnetic block 1, it is convenient to generate magnetic force, and then during the installation process of the device, it is used for magnetic adsorption on the support steel frame 17, thus facilitating its magnetic adsorption and fixation.
[0054] Furthermore, the nutrients are transported from the outside through the retractable hollow anchor rod 2. The retractable hollow anchor rod 2 is connected to the magnetic block 1 by threads, and the nutrients are injected through this connection port. When the device is installed inside the vegetation 16, the drug can be directly injected from the outside without taking the device out of the soil body, avoiding damage to the vegetation 16. Through the above-mentioned retractable hollow anchor rod 2, on the one hand, it is convenient to adjust the position of the flower pot connected to it later, and on the other hand, it serves as an injection channel for nutrients to facilitate the transportation of nutrients.
[0055] Furthermore, the drug storage space 6 is partitioned, and different types of nutrients can be stored in different spaces without affecting each other. The nutrients in different areas are replenished through the retractable hollow anchor rod 2. The supply of different types of nutrients can be realized through the nutrients in different areas.
[0056] Furthermore, evenly distributed holes are provided on the contact surface between the magnetic block tray 5 and the soil body 12, and a section of flower tube 7 is connected to the holes. The flower tube 7 extends outward to increase the spatial contact between the device and the soil body, increase the action area during nutrient irrigation, and facilitate the diffusion of nutrients in the soil body 12. Through the above-mentioned flower tube 7, it is convenient to supply nutrients later, thus ensuring the uniformity of the supply.
[0057] Furthermore, the magnetic block tray 5 is connected to the bottom of the flower pot 11 or the vegetation 16. The shape and size of the magnetic block tray 5 are changed according to the size of the soil mass 12, so that the soil mass 12 is in full contact with the magnetic block tray 5, ensuring that the nutrient solution can be evenly injected into all parts of the soil mass 12 during irrigation. By adopting the above-mentioned size matching, the reliable fixation of the flower pot 11 can be ensured.
[0058] Furthermore, a certain amount of iron powder 15 is stored inside the spherical ceramsite 13. The quantity of the iron powder 15 can be adjusted according to the weight of the soil mass. The spherical ceramsite 13 is clamped by two wire meshes 14 and placed on the top of the soil mass. Through the attraction between the iron powder 15 and the magnetic block tray 5, it is ensured that the soil mass 12 is firmly placed inside the flower pot 11, so that the flower pot 11 can be placed at any angle without causing the soil mass to spill out, and then it can be used for the display rack arrangement of various shaped flower plants 16. The spherical ceramsite 13 filled with the iron powder 15 facilitates fixing the soil mass 12 inside the flower pot 11 through the magnetic adsorption effect.
[0059] Furthermore, by adjusting the magnetic force of the magnetic block tray 5, the pressing force of the wire mesh 14 on the soil is adjusted. When the magnetic force is increased, the wire mesh 14 continuously compresses the soil mass, realizing the placement of the plant at any angle; when the magnetic force is decreased, the wire mesh 14 relaxes, increasing the storage space of the soil mass and achieving the effect of loosening the soil.
[0060] Embodiment 2:
[0061] An arrangement method of a device for arranging plants at any angle in a flower exhibition, comprising the following steps:
[0062] Step 1: Place the magnetic block tray 5 at the bottom layer inside the flower pot 11, place the vegetation 16 and the soil mass 12 above the magnetic block tray 5. Uniform flower tubes 7 are distributed on the upper surface of the magnetic block tray 5, which is conducive to the delivery of drugs;
[0063] Step 2: According to the weight of the soil mass and the size of the flower pot 11, store a certain amount of iron powder 15 in the spherical ceramsite 13, fix the spherical ceramsite 13 with two wire meshes 14, and place it on the top of the soil mass 12 inside the flower pot 11;
[0064] Step 3: Due to the attraction between the iron powder 15 and the magnetic block tray 5, ensure that the soil mass 12 and the vegetation 16 can be firmly adsorbed on the bottom of the flower pot 11, realizing the placement of the flower pot 11 at any angle;
[0065] Step 4: By adjusting the magnetic force of the magnetic block tray 5, change the degree of compaction of the wire mesh 14 on the soil mass 12. Increase the magnetic force, and the wire mesh 14 continuously compresses the soil mass; decrease the magnetic force, the wire mesh 14 relaxes, increasing the storage space of the soil mass 12 and achieving the purpose of loosening the soil;
[0066] Step 5: Connect the magnet tray 5 to the support 10 with a nut 9;
[0067] Step 6: Connect the extensible hollow anchor rod 2 to the magnet 1 with a nut 9;
[0068] Step 7: The extensible hollow anchor rod 2 is internally connected to the magnet tray 5. Nutrients are transported to the inside of the magnet tray 5 through the extensible hollow anchor rod 2. Under the action of the pressure pump 8, the drug enters the soil body to provide necessary nutrients for the vegetation 16;
[0069] Step 8: Manufacture various styles of support steel frames 17 as needed. Place the vegetation 16 and the entire device at any position on the support steel frame 17. Since the device can be placed at any angle, the utilization space of the support steel frame 17 is increased, which is conducive to the arrangement of various shapes.
[0070] Example 3:
[0071] Arrangement for flower exhibition activities with a long activity period:
[0072] Step 1: Place the magnet tray 5 at the bottom layer inside the flower pot 11. Place the vegetation 16 and the soil body 12 above the magnet tray 5. Uniform flower tubes 7 are distributed on the upper surface of the magnet tray 5, which is conducive to the delivery of drugs;
[0073] Step 2: According to the weight of the soil body and the size of the flower pot 11, store a certain amount of iron powder 15 in spherical ceramsite. Fix the spherical ceramsite with two pieces of wire mesh and place it at the top of the soil body inside the flower pot 11;
[0074] Step 3: Due to the attraction between the iron powder and the magnet tray, ensure that the soil body and the vegetation 16 can be firmly adsorbed on the bottom of the flower pot 11, realizing the placement of the flower pot 11 at any angle;
[0075] Step 4: Connect the magnet tray to the support with a nut;
[0076] Step 5: Connect the hollow anchor rod to the magnet with a nut;
[0077] Step 6: The hollow anchor rod is internally connected to the magnet tray. Drugs are transported to the inside of the tray through the hollow anchor rod. Under the action of the pressure pump, the drugs enter the soil body to provide necessary nutrients for the vegetation 16. Since the activity period is long, the survival of plants can be ensured for a long time;
[0078] Step 7: Manufacture various styles of support steel frames as needed. Place the vegetation 16 and the entire device at any position on the steel frame. Since the device can be placed at any angle, the utilization space of the support steel frame is increased, which is conducive to the arrangement of various shapes.
[0079] Example 4:
[0080] Arrangement of flower exhibition activities with a short activity cycle:
[0081] Step 1: Place the magnetic block tray at the bottom layer inside the flower pot 11, place the vegetation 16 and the soil body above the magnetic block tray. The upper surface of the magnetic block tray is distributed with uniform flower tubes, which is conducive to the delivery of drugs;
[0082] Step 2: According to the weight of the soil body and the size of the flower pot 11, store a certain amount of iron powder in the spherical ceramsite. Fix the spherical ceramsite with two wire meshes and place it at the top of the soil body in the flower pot 11;
[0083] Step 3: Due to the attraction between the iron powder and the magnetic block tray, ensure that the soil body and the vegetation 16 can be firmly adsorbed on the bottom of the flower pot 11, realizing the placement of the flower pot 11 at any angle;
[0084] Step 4: Since the activity cycle is short and the plants do not need nutrient supply in a short time, the hollow anchor rod is not connected and drug delivery is not required;
[0085] Step 5: Make various styles of support steel frames as needed. Place the vegetation 16 together with the device without a bracket at any position on the steel frame. Since the device can be placed at any angle, the utilization space of the support steel frame is increased, which is conducive to the arrangement of various shapes.
Claims
1. A layout method for a device that enables plants to be arranged at any angle in a flower exhibition. The device for enabling plants to be arranged at any angle in a flower exhibition includes a plurality of magnetic blocks (1). The magnetic blocks (1) and the telescopic hollow anchor rod (2) are connected together by nuts (9). The other end of the telescopic hollow anchor rod (2) is connected to the inside of the magnetic block tray (5). The support (10) and the magnetic block tray (5) are connected together by nuts (9). One end of the telescopic hollow anchor rod (2) that cooperates with the magnetic block (1) is provided with a nutrient injection end (3). Nutrients are injected from the nutrient injection end (3) and output through the telescopic hollow anchor rod (2) at the nutrient output end (4). The nutrient output end (4) communicates with a plurality of nutrient storage spaces (6) inside the magnetic block tray (5). A pressure pump (8) is fixed to the lower side of the magnetic block tray (5) and is used to apply pressure to the nutrient storage spaces (6) to facilitate the discharge of nutrients through the flower tubes (7) to reach various parts of the soil mass (12). It is characterized in that The layout method includes the following steps: Step 1: Place the magnetic block tray (5) at the bottom layer inside the flower pot (11). The vegetation (16) and the soil mass (12) are placed above the magnetic block tray (5). Uniform flower tubes (7) are distributed on the upper surface of the magnetic block tray (5), which is conducive to the delivery of drugs. Step 2: According to the weight of the soil mass and the size of the flower pot (11), store a certain amount of iron powder (15) in the spherical ceramsite (13). Fix the spherical ceramsite (13) with two wire meshes (14) and place it at the uppermost part of the soil mass (12) in the flower pot (11). Step 3: Due to the attraction between the iron powder (15) and the magnetic block tray (5), ensure that the soil mass (12) and the vegetation (16) can be firmly adsorbed on the bottom of the flower pot (11) to achieve the arbitrary angle placement of the flower pot (11). Step 4: By adjusting the magnitude of the magnetic force of the magnetic block tray (5), change the compaction degree of the wire mesh (14) on the soil mass (12). Increase the magnetic force, and the wire mesh (14) continuously compacts the soil mass. Decrease the magnetic force, and the wire mesh (14) relaxes to increase the storage space of the soil mass (12) to achieve the purpose of loosening the soil. Step 6: Connect the magnetic block tray (5) and the support (10) together by nuts (9). Step 7: Connect the telescopic hollow anchor rod (2) and the magnetic block (1) together by nuts (9). Step 8: The telescopic hollow anchor rod (2) communicates with the inside of the magnetic block tray (5). Transport nutrients to the inside of the magnetic block tray (5) through the telescopic hollow anchor rod (2). Under the action of the pressure pump (8), the drugs enter the soil mass to provide necessary nutrients for the vegetation (16). Step 9: Make various styles of support steel frames (17) as needed. Place the vegetation (16) together with the device as a whole at any position on the support steel frame (17). Since the device can be placed at any angle, the utilization space of the support steel frame (17) is increased, which is conducive to the layout of various shapes.
2. The arrangement method of a device for arranging plants at any angle in a flower exhibition according to claim 1, characterized in that: The adopted telescopic hollow anchor rod (2) is connected to the magnetic block (1) as a support and fixed at the position to be adsorbed. Adjust the extension distance of the telescopic hollow anchor rod (2) according to the spatial requirements of the placement.
3. The arrangement method of a device for arranging plants at any angle in a flower exhibition according to claim 1, characterized in that: Use a telescopic hollow anchor rod (2) as a support, which is connected to different nutrient storage spaces (6) inside the magnetic block tray (5) device. The nutrients are transported to various parts inside the device through the telescopic hollow anchor rod (2) to achieve the reuse of the device.
4. The arrangement method of a device for arranging plants at any angle in a flower exhibition according to claim 1, characterized in that: The magnetic block (1) uses iron slag as the main material. The iron slag is obtained from industrial production waste, and the material is magnetized by a magnetization machine to make it a recyclable material. The magnetic block (1) serves as the connection hub between the vegetation (16) and the skeleton. According to the weight of the vegetation (16) that the magnetic block tray (5) can carry and the size of the contact surface between the vegetation (16) and the device, the required magnetic force and the size of the magnetic block (1) are determined.
5. The arrangement method of a device for arranging plants at any angle in a flower exhibition according to claim 1, characterized in that: The nutrients are transported from the outside through the telescopic hollow anchor rod (2). The telescopic hollow anchor rod (2) is connected to the magnetic block (1) by a thread, and the nutrients are injected through this connection port. When the device is installed inside the vegetation (16), the drug can be directly injected from the outside without removing the device from the soil, avoiding damage to the vegetation (16).
6. The arrangement method of a device for arbitrarily arranging plants in a flower exhibition according to claim 1, characterized in that: The nutrient storage space (6) is partitioned, and different types of nutrients can be stored in different spaces without affecting each other. The nutrients in different regions are replenished through the telescopic hollow anchor rod (2).
7. The arrangement method of a device for arranging plants at any angle in a flower exhibition according to claim 1, characterized in that: The contact surface between the magnetic block tray (5) and the soil body (12) is provided with evenly distributed holes, and a section of perforated pipe (7) is connected to the holes. The perforated pipe (7) extends outward to increase the spatial contact between the device and the soil body, increasing the action area during nutrient irrigation and facilitating the diffusion of nutrients in the soil body (12). The magnetic block tray (5) is connected to the bottom of the flowerpot (11) or the vegetation (16). The shape and size of the magnetic block tray (5) are changed according to the size of the soil body (12) to make the soil body (12) in full contact with the magnetic block tray (5), ensuring that the nutrients can be evenly injected into all parts of the soil body (12) during irrigation.
8. The arrangement method of a device for arbitrarily arranging plants in a flower exhibition according to claim 1, characterized in that: A certain amount of iron powder (15) is stored inside the spherical ceramsite (13). The quantity of the iron powder (15) can be adjusted according to the weight of the soil body. The spherical ceramsite (13) is clamped by two wire meshes (14) and placed on the top of the soil body. Through the attraction between the iron powder (15) and the magnetic block tray (5), the soil body (12) is firmly placed inside the flowerpot (11), enabling the flowerpot (11) to be placed at any angle without causing the soil to spill out, and thus used for the display layout of various-shaped flower and plant vegetation (16).
9. The arrangement method of a device for arranging plants at any angle in a flower exhibition according to claim 8, characterized in that: By adjusting the magnetic force of the magnetic block tray (5), the pressing force of the wire mesh (14) on the soil is adjusted. When the magnetic force is increased, the wire mesh (14) continuously compresses the soil body to achieve the arbitrary angle placement of the plant; when the magnetic force is reduced, the wire mesh (14) relaxes, increasing the storage space of the soil body and achieving the effect of loosening the soil.
Citation Information
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