A supporting device for planting garden flowers and trees

CN224597167UActive Publication Date: 2026-08-07KUNMING UNIVERSITY +1
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
KUNMING UNIVERSITY
Filing Date
2025-09-09
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

该装置通过自动调节支撑模块、防风模块、稳定基座、雨水收集模块以及控制模块的协同作用,解决了固定式支撑架难以适应植物生长变化、可调节式支撑架依赖人工频繁操作且稳定性不足的问题,同时提升了抗风能力和资源利用效率

Benefits of technology

该装置通过自动调节支撑模块,能够根据植物生长过程中的形态变化自动调整支撑力度,避免了固定式支撑架因无法适应植物生长而限制植物正常发育的问题,为植物提供了更合适的生长环境,无需人工频繁操作来调整支撑力度,降低了人工成本和劳动强度,防风模块能够有效增强支撑装置的抗风能力,降低在强风天气中倒塌的风险,稳定基座为整个支撑装置提供了稳定的支撑基础,增强了支撑装置在各种环境条件下的稳定性,雨水收集模块固定在稳定基座的一侧,能够收集雨水并进行储存和利用,不仅节约了水资源,还可以为植物提供额外的水分供应,有利于植物的生长和发育,控制模块与自动调节支撑模块和雨水收集模块电性连接,可实现对整个装置的智能化控制。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224597167U_ABST
    Figure CN224597167U_ABST
Patent Text Reader

Abstract

The utility model relates to a kind of support device for garden flowers and trees planting, belong to flowers and trees planting technical field. Mainly including automatic adjusting support module, windproof module, stable pedestal, rainwater collection module and control module. Automatic adjusting support module is in real time monitoring plant growth state by sensing unit and adjusts supporting intensity;Windproof module reduces wind force influence using windproof net;Stable pedestal enhances stability by weight block and fixing device;Rainwater collection module stores rainwater for irrigation;Control module realizes intelligent management, the device solves the problem that fixed support frame is difficult to adapt to plant growth change and adjustable support frame relies on manual operation, improves wind resistance and resource utilization efficiency, with higher practicality and reliability.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model belongs to the field of flower and tree planting technology, specifically relating to a support device for planting garden flowers and trees. Background Technology

[0002] For garden and shrub cultivation, support devices are essential tools for ensuring healthy plant growth. Existing support devices mainly fall into two categories: fixed support frames and adjustable support frames. While fixed support frames have a simple structure, they are difficult to adapt to changes in plant morphology during growth, potentially limiting normal plant development. Adjustable support frames, although able to adjust the support strength to some extent, rely on frequent manual operation, increasing maintenance costs, and the adjustment process can easily cause mechanical damage to the plants. Furthermore, fixed support frames have weak wind resistance and are prone to collapse in strong winds; adjustable support frames lack stability, especially performing poorly in windy environments. These limitations affect the practicality and reliability of the support devices. Utility Model Content

[0003] To overcome the shortcomings of existing support devices for planting garden plants, this utility model provides a support device for garden plants. This device, through the coordinated action of an automatic adjustment support module, a windproof module, a stable base, a rainwater collection module, and a control module, solves the problems of fixed support frames being unable to adapt to changes in plant growth, and adjustable support frames relying on frequent manual operation and lacking stability. It also improves wind resistance and resource utilization efficiency.

[0004] To achieve the above objectives, this utility model is implemented through the following technical solution: A support device for planting garden flowers and trees mainly includes an automatic adjustment support module, a windproof module, a stable base, a rainwater collection module, and a control module. The automatic adjustment support module is installed on the stable base, the windproof module is arranged around the automatic adjustment support module, the rainwater collection module is fixed to one side of the stable base, and the control module is installed on one side of the stable base and electrically connected to the automatic adjustment support module and the rainwater collection module. The automatic adjustment support module includes a sensing unit, an electric actuator, a support rod, an arc-shaped retaining ring, and a flexible bushing. The bottom of the electric actuator is connected to the stable base via a hinge, allowing the actuator to rotate within a certain angle range. The support rod is connected to the top of the electric actuator. The arc-shaped retaining ring is installed on the top of the support rod, and its inner wall has a groove for embedding the flexible bushing. The flexible bushing is made of highly elastic silicone material and has a cushioning effect. The sensing unit consists of a pressure sensor and a displacement sensor, respectively installed inside the arc-shaped retaining ring. The pressure sensor detects pressure changes on the plant stem, and the displacement sensor monitors the relative displacement between the arc-shaped retaining ring and the plant. The windproof module includes a windproof net, which is installed around the support rod. The windproof net can balance the wind resistance performance and ensure that it can effectively block the impact of wind in strong winds, while not affecting the air circulation required for plant photosynthesis. The stabilizing base includes a base body, weights, and a fixing device. The base body has a hollow structure with multiple partitions inside, dividing the base body into several independent weighting spaces. Each weighting space has an opening for easy placement and removal of the weights. The weights are made of concrete or metal, and their weight can be adjusted according to actual needs. The fixing device includes ground anchor bolts and anti-slip pads. The ground anchor bolts penetrate the bottom of the base body and are screwed into the ground. The anti-slip pads are made of rubber and are fixed between the ground anchor bolts and the base body, increasing friction and preventing the bolts from loosening. The rainwater harvesting module includes a collection trough, a guide pipe, and a storage tank. The collection trough is fixed to one side of the base body and installed on top of the storage tank. A filter screen is installed on the top of the collection trough to intercept leaves and impurities. The guide pipe is installed at the bottom of the storage tank and has an outlet valve. The outlet valve is a manual ball valve structure, which allows the user to control the water flow.

[0005] The control module includes a data processing unit, a wireless transmission unit, and a power supply unit. The data processing unit receives pressure and displacement signals from the sensing unit, analyzes them, and generates drive signals. These drive signals are transmitted via cable to the electric actuator, causing it to extend or retract to adjust the support force. The wireless transmission unit uploads the data from the sensing unit to a remote monitoring device via Wi-Fi or Bluetooth, allowing users to view the device's operating status in real time via mobile phone or computer. The power supply unit includes a solar panel and an energy storage battery. The solar panel is mounted on one side of the base body via a bracket, and the energy storage battery is mounted at the bottom of the solar panel. Both are connected to the data processing unit and the electric actuator via wires, providing power to the entire device. The automatic adjustment support module monitors the plant's growth status in real time through a sensing unit. When the plant stem diameter increases or the wind intensifies, the sensing unit transmits a signal to the data processing unit. The data processing unit calculates the required adjustment in support force and drives the electric push rod to extend or retract, thereby changing the height and angle of the support rod. The windproof module reduces the impact of wind on the plant through a windproof net while maintaining adequate ventilation. The stabilizing base enhances the overall stability of the device through weights and fixing devices to prevent tipping. The rainwater harvesting module stores rainwater through a collection trough and storage tank for plant irrigation, conserving water resources. The control module achieves intelligent management through the data processing unit and wireless transmission unit, reducing the frequency of manual intervention. The beneficial effects of this utility model are: This device, through its automatic adjustment support module, can automatically adjust the support strength according to the morphological changes during plant growth. This avoids the problem of fixed support frames restricting normal plant development due to their inability to adapt to plant growth, providing a more suitable growth environment for plants. It eliminates the need for frequent manual adjustments, reducing labor costs and intensity. The windproof module effectively enhances the wind resistance of the support device, reducing the risk of collapse in strong winds. The stable base provides a stable foundation for the entire support device, enhancing its stability under various environmental conditions. The rainwater collection module, fixed to one side of the stable base, collects, stores, and utilizes rainwater, saving water resources and providing additional moisture for the plants, which is beneficial to their growth and development. The control module is electrically connected to the automatic adjustment support module and the rainwater collection module, enabling intelligent control of the entire device. Attached Figure Description

[0006] Figure 1 This is a schematic diagram of the main structure of this utility model.

[0007] Figure 2 This is a schematic diagram of the rear view structure of this utility model.

[0008] Figure 3 This is a top view of the structure of this utility model.

[0009] Figure 4 This is a partial cross-sectional view of the present invention.

[0010] In the attached diagram, the following are the reference numerals: 1. Automatic adjustment support module; 2. Windproof module; 3. Stabilizing base; 4. Rainwater collection module; 5. Control module; 11. Sensing unit; 12. Electric push rod; 13. Support rod; 14. Arc-shaped retaining ring; 15. Flexible bushing; 21. Windproof net; 31. Base body; 311. Partition plate; 312. Weighting space; 32. Weight block; 33. Fixing device; 331. Ground anchor bolt; 332. Anti-slip pad; 41. Water collection tank; 411. Filter screen; 42. Guide pipe; 43. Water storage tank; 432. Water outlet valve; 51. Data processing unit; 52. Wireless transmission unit; 53. Power supply unit; 531. Solar panel; 532. Energy storage battery. Detailed Implementation

[0011] To make the objectives, technical solutions, and beneficial effects of this utility model clearer, the preferred embodiments of this utility model will be described in detail below with reference to the accompanying drawings, so as to facilitate the understanding of those skilled in the art.

[0012] This utility model discloses a support device for planting garden flowers and trees. The support device mainly includes an automatic adjustment support module 1, a windproof module 2, a stable base 3, a rainwater collection module 4, and a control module 5. The automatic adjustment support module 1 is installed on the stable base 3, and the two are connected by a hinge, allowing an electric push rod 12 to rotate within a certain angle range. The top of the electric push rod 12 is connected to a support rod 13. An arc-shaped retaining ring 14 is installed on the top of the support rod 13. The inner wall of the arc-shaped retaining ring 14 has a groove, and a flexible bushing 15 is embedded in the groove and fixed with adhesive. The flexible bushing 15 is made of high-elasticity silicone, with a thickness of 5 mm, and has a cushioning effect, adapting to changes in the shape of the plant stem. The sensing unit 11 includes a pressure sensor and a displacement sensor, which are installed inside the arc-shaped retaining ring 14. Both are connected to the data processing unit 51 in the control module 5 via wires. like Figure 2 As shown, the windproof module 2 is arranged around the automatic adjustment support module 1, and the windproof net 21 is installed on the outside of the support rod 13 to ensure that it can effectively block the impact of wind in strong winds, while maintaining a certain degree of ventilation. like Figure 2 , Figure 3 As shown, the stabilizing base 3 includes a base body 31, a weight block 32, and a fixing device 33. The base body 31 has a hollow structure with an internal partition 311. The partition 311 divides the base body 31 into an independent weighting space 312, facilitating the placement and removal of the weight block 32. The weight block 32 is made of concrete. The fixing device 33 includes a ground anchor bolt 331 and an anti-slip pad 332. The ground anchor bolt 331 passes through the bottom of the base body 31 and is screwed into the ground. The anti-slip pad 332 is made of rubber and is fixed between the ground anchor bolt 331 and the base body 31, increasing friction while preventing the bolt from loosening. like Figure 2 , Figure 3 , Figure 4 As shown, the rainwater collection module 4 is fixed to one side of the stable base 3. The rainwater collection trough 41, the guide pipe 42, and the water storage tank 43 are all included. The water storage tank 43 is fixed to one side of the base body 31. The rainwater collection trough 41 is installed on the top of the water storage tank 43. A filter screen 411 is provided on the top of the rainwater collection trough 41 to intercept leaves and impurities. The guide pipe 42 is installed at the bottom of the water storage tank 43. A water outlet valve 432 is installed on the guide pipe 42 to facilitate user control of the water flow. like Figure 2 , Figure 4As shown, the control module 5 is installed on one side of the stable base 3. The data processing unit 51 is connected to the sensing unit 11 and the electric push rod 12 via cables. The wireless transmission unit 52 communicates with the remote monitoring equipment via Wi-Fi. The power supply unit 53 includes a solar panel 531 and an energy storage battery 532. The solar panel 531 is installed on one side of the base body 31 via a bracket. The energy storage battery 532 is installed at the bottom of the solar panel 531 and is connected to the data processing unit 51 and the electric push rod 12 via wires. The energy storage battery 532 provides power to the entire device. During operation, the sensing unit 11 monitors the plant's growth status in real time, the pressure sensor detects pressure changes in the plant stem, and the displacement sensor monitors the relative displacement between the arc-shaped retaining ring 14 and the plant. When the plant stem diameter increases or the wind intensifies, the sensing unit 11 transmits a signal to the data processing unit 51. The data processing unit 51 analyzes the received signal and generates a drive signal, which is transmitted via cable to the electric push rod 12, causing it to extend and retract to adjust the height and angle of the support rod 13. The windproof module 2 reduces the impact of wind on the plant through the windproof net 21 while maintaining a certain level of ventilation. The stabilizing base 3 enhances the overall stability of the device through the weight block 32 and the fixing device 33, preventing tipping. The rainwater collection module 4 stores rainwater through the water collection trough 41 and the water storage tank 43 for plant irrigation, saving water resources. The control module 5 achieves intelligent management through the data processing unit 51 and the wireless transmission unit 52, reducing the frequency of manual intervention. Work process: In the context of garden and shrub planting, this support device for garden and shrub planting is put into use. First, the staff will place the stable base 3 in a suitable position at the planting site. Depending on the actual situation, the staff can place weight blocks 32 into the weighting space 312 through the opening to increase the weight of the base. Then, the fixing device 33 is used to further stabilize the base. The ground anchor bolt 331 is inserted through the bottom of the base body 31 and screwed into the ground. At the same time, the anti-slip pad 332 is fixed between the ground anchor bolt 331 and the base body 31 to prevent loosening.

[0013] Next, the automatic adjustment support module 1 is installed on the stable base 3. The bottom of the electric push rod 12 is connected to the stable base 3 via a hinge, and the top is connected to the support rod 13. An arc-shaped retaining ring 14 with a flexible bushing 15 is installed on the top of the support rod 13, allowing the arc-shaped retaining ring 14 to surround the plants. The flexible bushing 15 can prevent damage to the plants. Then, a windproof module 2 is set around the automatic adjustment support module 1, and a windproof net 21 is installed on the outside of the support rod 13. Next, the rainwater collection module 4 is fixed to one side of the stable base 3. The filter screen 411 on the top of the water collection tank 41 can prevent debris from entering. The bottom of the water collection tank 41 is connected to the guide pipe 42 via a threaded interface. The other end of the guide pipe 42 is connected to the water storage tank 43 installed on the other side of the base body 31 via a quick connector. Finally, the control module 5 is installed on one side of the stable base 3, and the circuits with the automatic adjustment support module 1 and the rainwater collection module 4 are connected.

[0014] After the device starts operating, the solar panel 531 in the power supply unit 53 absorbs solar energy and converts it into electrical energy, which is stored in the energy storage battery 532 to power the entire device. The sensing unit 11 of the automatic adjustment support module 1 starts working, and the pressure sensor and displacement sensor monitor the pressure of the flowers and trees on the arc-shaped retaining ring 14 and the displacement changes of the flowers and trees in real time. When the growth of the flowers and trees causes changes in pressure or position, the sensing unit 11 transmits the signal to the data processing unit 51 of the control module 5. The data processing unit 51 analyzes and processes the signal and generates a drive signal, which is transmitted to the electric push rod 12 through the cable. The electric push rod 12 extends and retracts according to the signal, driving the support rod 13 to move, thereby adjusting the position of the arc-shaped retaining ring 14 and the support force on the flowers and trees.

[0015] When encountering windy weather, the windproof net 21 plays a role in blocking part of the wind force and reducing the direct impact of strong winds on flowers and trees. The stable base 3, together with the windproof module 2, ensures the stability of the entire device with the weight block 32 and the fixing device 33, preventing the device and flowers and trees from falling over.

[0016] When it rains, rainwater falls into the collection trough 41, is filtered by the filter screen 411, and then flows into the storage tank 43 through the guide pipe 42. When needed, the water outlet valve 432 at the bottom of the storage tank 43 can be opened to use the stored rainwater to irrigate the plants. At the same time, the wireless transmission unit 52 uploads the data monitored by the sensing unit 11 to the remote monitoring equipment via Wi-Fi or Bluetooth, allowing managers to understand the growth status of the plants and the working status of the device at any time.

[0017] Finally, it should be noted that the above preferred embodiments are only used to illustrate the technical solution of this utility model and are not intended to limit it. Although the utility model has been described in detail through the above preferred embodiments, those skilled in the art should understand that various changes can be made to it in form and detail without departing from the scope defined by the claims of this utility model.

Claims

1. A support device for planting garden flowers and trees, characterized in that: The aforementioned support device for planting garden flowers and trees includes an automatic adjustment support module (1), a windproof module (2), a stable base (3), a rainwater collection module (4), and a control module (5). The automatic adjustment support module (1) is installed on the stable base (3), the windproof module (2) is arranged around the automatic adjustment support module (1), the rainwater collection module (4) is fixed on one side of the stable base (3), and the control module (5) is installed on one side of the stable base (3) and electrically connected to the automatic adjustment support module (1) and the rainwater collection module (4).

2. The support device for planting garden flowers and trees as described in claim 1, characterized in that: The automatic adjustment support module (1) includes a sensing unit (11), an electric push rod (12), a support rod (13), an arc-shaped retaining ring (14), and a flexible bushing (15). The bottom of the electric push rod (12) is connected to the stable base (3) through a hinge. The support rod (13) is connected to the top of the electric push rod (12). The arc-shaped retaining ring (14) is installed on the top of the support rod (13). The flexible bushing (15) is embedded in the groove of the inner wall of the arc-shaped retaining ring (14). The sensing unit (11) consists of a pressure sensor and a displacement sensor, which are installed inside the arc-shaped retaining ring (14) respectively.

3. The support device for planting garden flowers and trees as described in claim 2, characterized in that: The windproof module (2) includes a windproof net (21), which is installed around the support rod (13).

4. The support device for planting garden flowers and trees as described in claim 3, characterized in that: The stable base (3) includes a base body (31), a weight block (32) and a fixing device (33). The base body (31) is a hollow structure with a partition (311) inside. The partition (311) divides the base body (31) into several independent weighting spaces (312). Each weighting space (312) has an opening. The weight block (32) is placed in the weighting space (312). The fixing device (33) includes a ground anchor bolt (331) and an anti-slip pad (332). The ground anchor bolt (331) passes through the bottom of the base body (31) and is screwed into the ground through a thread. The anti-slip pad (332) is fixed between the ground anchor bolt (331) and the base body (31).

5. The support device for planting garden flowers and trees as described in claim 1 or 2, characterized in that: The rainwater collection module (4) includes a water collection trough (41), a guide pipe (42) and a water storage tank (43). The water collection trough (41) is fixed on one side of the base body (31). The water collection trough (41) is installed on the top of the water storage tank (43). A filter screen (411) is provided on the top of the water collection trough (41). The guide pipe (42) is installed at the bottom of the water storage tank (43). A water outlet valve (432) is installed on the guide pipe (42).

6. The support device for planting garden flowers and trees as described in claim 1 or 2, characterized in that: The control module (5) includes a data processing unit (51), a wireless transmission unit (52), and a power supply unit (53). The data processing unit (51) receives pressure and displacement signals from the sensing unit (11) and generates a drive signal. The drive signal is transmitted to the electric push rod (12) via a cable. The wireless transmission unit (52) uploads the data of the sensing unit (11) to the remote monitoring device via Wi-Fi or Bluetooth. The power supply unit (53) includes a solar panel (531) and an energy storage battery (532). The solar panel (531) is mounted on one side of the base body (31) via a bracket, and the energy storage battery (532) is mounted on the bottom of the solar panel (531).