Landscape and garden auxiliary planting equipment
By integrating functions such as digging holes, planting, watering, and backfilling, garden auxiliary planting equipment has solved the problems of mismatched pit sizes and insufficient nutrients in seedling planting, realizing automated planting, improving efficiency and survival rate, and adapting to various terrains and soil conditions.
Patent Information
- Application Number
- CN202511320368.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-16
- Publication Date
- 2025-11-14
Smart Images

Figure CN120937599A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of landscape planting technology, and in particular to a landscape and garden auxiliary planting device. Background Technology
[0002] To reduce the levels of harmful gases and particulate matter in urban air and improve air quality, the current common practice is to increase the area of municipal green spaces. Municipal greening methods include planting grass, planting trees, and cultivating flower nurseries. Among these, planting trees is the most common method, which involves planting cultivated seedlings in professional nurseries into the gardens that need greening.
[0003] Currently, in the process of planting saplings, it is usually necessary to first dig a pit for planting the saplings, then put the saplings into the pits and backfill the soil. This can lead to a mismatch between the size of the pit and the root ball. If the pit is too small, it needs to be enlarged again. If the pit is too large, it increases the amount of backfilling work and reduces efficiency. In addition, the survival rate of saplings is low due to their fragility and insufficient nutrition. They need to be sprayed with nutrient solution, but the existing equipment cannot spray and deliver nutrient solution to the saplings, so manual spraying is required, which increases the workload. Summary of the Invention
[0004] In view of the problems existing in the above-mentioned landscape and garden auxiliary planting equipment, the present invention is proposed.
[0005] Therefore, this invention provides a landscape and garden auxiliary planting device, the purpose of which is to solve the problem that during the seedling planting process, the size of the planting pit often does not match the root ball, resulting in the pit being too small and needing to be enlarged, or the pit being too large, increasing the amount of backfilling work and reducing work efficiency. At the same time, seedlings have a low survival rate due to their fragility and insufficient nutrition, requiring the spraying of nutrient solution, but existing devices cannot deliver nutrient solution to the roots, requiring manual spraying, which further increases the workload.
[0006] To solve the above-mentioned technical problems, the present invention provides the following technical solution: a support unit, including a frame and a drive component disposed inside the frame;
[0007] The planting unit includes a feeding assembly disposed on the top of the frame, a punching assembly slidably disposed on the frame, an extension assembly disposed at the bottom of the punching assembly, and a guide assembly disposed at the other end of the extension assembly, wherein the top of the guide assembly is connected to the punching assembly.
[0008] The auxiliary unit includes a watering assembly located on the top of the frame, and the watering assembly cooperates with the drilling assembly.
[0009] As a preferred embodiment of the landscape and garden auxiliary planting equipment of the present invention, the material feeding assembly includes a fixed plate disposed on the top of the frame, a rotating plate rotatably disposed on the top of the fixed plate, a placement part disposed on the top of the rotating plate, a drive rod disposed on the bottom of the rotating plate, and a limit groove provided on one side of the outer diameter of the drive rod, and the drive rod is rotatably connected to the fixed plate through it.
[0010] As a preferred embodiment of the landscape and garden auxiliary planting equipment of the present invention, the drilling component includes an electric push rod mounted on the frame, a fixing block mounted on the output end of the electric push rod, a motor mounted inside the fixing block, and a drilling component mounted on the output end of the motor.
[0011] As a preferred embodiment of the landscape and garden auxiliary planting equipment of the present invention, a movable plate is provided on the top of the fixed block, and the movable plate is slidably connected to the frame.
[0012] As a preferred embodiment of the landscape and garden auxiliary planting equipment of the present invention, the top of the motor passes through the moving plate and is provided with a moving clip, and the moving clip and the limiting groove on the drive rod are slidably connected.
[0013] As a preferred embodiment of the landscape and garden auxiliary planting equipment of the present invention, the bottom of the fixed block is provided with an extension, the bottom of the extension is provided with a soil guide, and the soil guide cooperates with the drilling part.
[0014] As a preferred embodiment of the landscape and garden auxiliary planting equipment of the present invention, the extension component includes an electric push rod II disposed at the bottom of the movable plate, and a connecting rod disposed at the output end of the electric push rod II, and one end of the connecting rod is connected to the extension component.
[0015] As a preferred embodiment of the landscape and garden auxiliary planting equipment of the present invention, the guide component includes a guide ring disposed on the top of the movable plate, a guide tube disposed at the bottom of the guide ring, and a sliding tube disposed on the outer diameter of the guide tube, wherein the sliding tube is connected to a connecting rod.
[0016] As a preferred embodiment of the landscape and garden auxiliary planting equipment of the present invention, the sliding tube has an installation groove on its inner wall, a return spring is provided inside the installation groove, a retaining plate is provided at the other end of the return spring, and the top of the retaining plate is rotatably connected to the sliding tube.
[0017] As a preferred embodiment of the landscape and garden auxiliary planting equipment of the present invention, the watering component includes a water tank mounted on a frame, a water inlet mounted on the top of the water tank, a nutrient solution tank mounted on the bottom of the water tank, a feeding port mounted on the nutrient solution tank, a first delivery pipe mounted on one end of the nutrient solution tank, a second delivery pipe mounted on one end of the water tank, and a gathering plate mounted on the bottom of the nutrient solution tank, wherein the gathering plate is fixedly connected to the driving component.
[0018] The beneficial effects of this invention are as follows: By integrating processes such as digging holes, planting, watering, adding nutrient solution, and backfilling, automated planting is achieved. Operators only need to place the sapling into the feeding component, and the subsequent work is completed automatically, saving manpower and time, and improving planting efficiency. The drilling component can be precisely adjusted to align the guide component with the feeding port, ensuring that the sapling falls accurately into the pit, avoiding secondary digging, enabling continuous operation, and further improving efficiency. The watering component precisely sprays nutrient solution and water, helping the sapling quickly adapt to the new environment, improving the survival rate, and reducing sapling damage during the planting process, thus reducing labor intensity and difficulty. At the same time, the frame design allows it to adapt to various terrains and soil conditions, meeting different planting needs, and solving the problem that the size of the planting pit often does not match the root ball during the sapling planting process, resulting in a pit that is too small and needs to be enlarged, or a pit that is too large, increasing the amount of backfilling work and reducing work efficiency. Attached Figure Description
[0019] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0020] Figure 1 This is a schematic diagram of the overall structure of the landscape and garden auxiliary planting equipment of the present invention.
[0021] Figure 2 This is a bottom view structural diagram of the landscape and garden auxiliary planting equipment of the present invention.
[0022] Figure 3 This is a schematic diagram of the internal structure of the landscape and garden auxiliary planting equipment of the present invention.
[0023] Figure 4 This invention relates to a landscape and garden auxiliary planting device. Figure 3 Enlarged view of the structure at point A.
[0024] Figure 5 This is a cross-sectional structural diagram of the landscape and garden auxiliary planting equipment of the present invention.
[0025] Figure 6 This invention relates to a landscape and garden auxiliary planting device. Figure 5 A magnified structural diagram at point B.
[0026] Figure 7 This invention relates to a landscape and garden auxiliary planting device. Figure 5 A magnified structural diagram at point C.
[0027] Figure 8 This is a cross-sectional structural diagram of the landscape and garden auxiliary planting equipment of the present invention.
[0028] Figure 9 This invention relates to a landscape and garden auxiliary planting device. Figure 8 A magnified structural diagram at point D.
[0029] Figure 10 This invention relates to a landscape and garden auxiliary planting device. Figure 8 Enlarged structural diagram at point E.
[0030] Explanation of reference numerals in the attached drawings: 1. Electric push rod motor one; 2. Electric push rod motor two; 100. Support unit; 101. Frame; 102. Drive component; 200. Planting unit; 201. Feeding assembly; 2011. Fixing plate; 2012. Rotating plate; 2013. Placement part; 2014. Drive rod; 2015. Limiting groove; 202. Drilling assembly; 2021. Electric push rod one; 2022. Fixing block; 2023. Motor; 2024. Moving plate; 2025. Drilling component; 2026. Extension component; 2027. Soil guide component. ; 2028, Moving Card; 203, Extension Component; 2031, Electric Push Rod II; 2032, Connecting Rod; 204, Guide Component; 2041, Guide Ring; 2042, Guide Tube; 2043, Sliding Tube; 2044, Mounting Slot; 2045, Return Spring; 2046, Card Plate; 300, Auxiliary Unit; 301, Watering Component; 3011, Water Tank; 3012, Water Inlet; 3013, Nutrient Solution Tank; 3014, Feeding Inlet; 3015, Conveying Pipe I; 3016, Conveying Pipe II; 3017, Gathering Plate. Detailed Implementation
[0031] To make the above-mentioned objects, features and advantages of the present invention more apparent and understandable, the specific embodiments of the present invention will be described in detail below with reference to the accompanying drawings.
[0032] Example 1, referring to Figure 1 - Figure 4 The first embodiment of the present invention provides a landscape and garden auxiliary planting device, which includes a support unit 100, a planting unit 200, and an auxiliary unit 300.
[0033] The support unit 100 includes a frame 101 and a drive unit 102 disposed inside the frame 101.
[0034] The planting unit 200 includes a feeding assembly 201 disposed on the top of the frame 101, a punching assembly 202 slidably disposed on the frame 101, an extension assembly 203 disposed at the bottom of the punching assembly 202, and a guide assembly 204 disposed at the other end of the extension assembly 203, wherein the top of the guide assembly 204 is connected to the punching assembly 202.
[0035] The auxiliary unit 300 includes a watering component 301 mounted on the top of the frame 101. The watering component 301 cooperates with the drilling component 202. During landscaping planting, operators place the saplings to be planted into the material feeding component 201. The drilling component 202 then rotates, and with the assistance of the extension component 203, it begins drilling into the ground. After the ground excavation is complete, the electric push rod 2021 (driven by the electric push rod motor 1) begins to move and adjust the position of the fixing block 2022, allowing the guide component 204 to move to the bottom of the material feeding component 201. Simultaneously, the drilling component 202 engages with the rotating shaft of the material feeding component 201. The rotation of the drilling component 202 causes the material feeding component 201 to rotate as well, allowing the saplings inside the material feeding component 201 to be planted. The seedling falls inside the guide component 204. Simultaneously, with the extension component 203 extending both the drilling component 202 and the guide component 204, the seedling inside the guide component 204 falls into the pit dug by the drilling component 202. Meanwhile, the drilling component 202 continues to dig new pits. After the seedling inside the guide component 204 falls into the pit, the watering component 301 begins to spray nutrient solution and water onto the seedling in the pit. Then, the drive component 102 begins to move forward, allowing the watering component 301 to backfill the soil drilled by the drilling component 202. This completes a series of planting processes: digging, planting, watering, fertilizing, and backfilling. Furthermore, with the cooperation of the extension component 203, the drilling component 202 and the guide component 204 can move together to achieve uninterrupted planting, saving manpower and time and improving planting efficiency.
[0036] During use, when planting in a landscape garden, the operator places the saplings to be planted into the material feeding component 201. Then, the drilling component 202 is driven to rotate and, with the assistance of the extension component 203, begins drilling into the ground. After the ground excavation is completed, the electric push rod 2021 (driven by the electric push rod motor 1) begins to move and adjust the position of the fixing block 2022, thereby allowing the guide component 204 to move to the bottom of the material feeding component 201. Meanwhile, the punching component 202 engages with the rotating shaft of the feeding component 201. When the punching component 202 rotates, the feeding component 201 also rotates, allowing the sapling inside the feeding component 201 to fall into the guide component 204. Simultaneously, with the extension of the extension component 203, the punching component 202 and the guide component 204 cause the sapling inside the guide component 204 to fall into the pit dug by the punching component 202. At the same time, the punching component 202 continues to dig new pits. After the sapling inside the guide component 204 falls into the pit, the punching component 202 continues to dig new pits.
[0037] The watering component 301 begins spraying nutrient solution and water onto the saplings in the pit. Then, the drive component 102 moves forward, allowing the watering component 301 to backfill the soil drilled by the drilling component 202. This completes a series of planting processes, including digging, planting, watering, fertilizing, and backfilling. With the cooperation of the drilling component 202, the guide component 204, and the extension component 203, the drive component 102 can move the drilling component 202 and the guide component 204 to perform uninterrupted planting, saving manpower and time and improving planting efficiency. The drilling component 202 can be precisely adjusted to align the guide component with the feed inlet, ensuring that the saplings fall accurately into the pit, avoiding secondary digging, and enabling continuous operation, further improving efficiency. The watering component 301 precisely sprays nutrient solution and water, helping the saplings quickly adapt to the new environment, improving the survival rate, and reducing damage to the saplings during the planting process, thus reducing labor intensity and difficulty.
[0038] Example 2, refer to Figure 1 - Figure 8This is the second embodiment of the present invention, which differs from the first embodiment in that: the unloading assembly 201 includes a fixed plate 2011 disposed on the top of the frame 101, a rotating plate 2012 rotatably disposed on the top of the fixed plate 2011, a placement part 2013 disposed on the top of the rotating plate 2012, a drive rod 2014 disposed on the bottom of the rotating plate 2012, and a limit groove 2015 provided on one side of the outer diameter of the drive rod 2014, and the drive rod 2014 passes through and is rotatably connected to the fixed plate 2011; the drilling assembly 202 includes an electric push rod 2021 disposed on the frame 101, a fixing block 2022 disposed at the output end of the electric push rod 2021, and a motor 2023 disposed inside the fixing block 2022. 23, and a drilling component 2025 is provided at the output end of the motor 2023. A movable plate 2024 is provided on the top of the fixing block 2022, and the movable plate 2024 is slidably connected to the frame 101. The top of the motor 2023 passes through the movable plate 2024 and is provided with a movable locking component 2028. The movable locking component 2028 is slidably connected to the limiting groove 2015 on the drive rod 2014. An extension component 2026 is provided at the bottom of the fixing block 2022. A soil guide component 2027 is provided at the bottom of the extension component 2026, and the soil guide component 2027 cooperates with the drilling component 2025. When planting in the garden, the operator places the seedling inside the placement part 2013, so that the seedling is locked on the top of the fixing plate 2011, and then the fixing block 2022... The motor 2023 inside 022 operates, causing the drilling component 2025 to rotate. With the cooperation of the extension assembly 203, the extension assembly 2026 extends downwards along with the drilling component 2025 to begin drilling into the ground. During drilling, soil is transported to the soil guide component 2027, where it is intercepted and falls to both sides of the ground. After the drilling component 2025 completes its excavation, the electric push rod 2021 retracts, moving the fixed block 2022 and the moving plate 2024 along the inner wall of the frame 101. During the movement of the moving plate 2024, the extension assembly 203 and the guide assembly 204 also move along with the moving plate 2022. 4. Move together, causing the guide assembly 204 to move to the bottom of the fixed disk 2011, so that the guide assembly 204 is perpendicular to the groove on the fixed disk 2011. At the same time, the movement of the fixed block 2022 causes the motor 2023 inside the fixed block 2022 to move as well, so that the moving clip 2028 on the top of the motor 2023 engages with the limiting groove 2015 on the outer diameter of the drive rod 2014 for locking and fixing. Thus, when the motor 2023 drives the drilling part 2025 to rotate, it can also drive the rotating disk 2012 to rotate. The motor 2023 drives the drive rod 2014 to rotate the rotating disk 2012, so that the placement part 2013 on the top of the rotating disk 2012 rotates to the groove of the fixed disk 2011.The seedling inside the placement section 2013 falls into the guide assembly 204, thus completing the planting preparation.
[0039] Compared to Embodiment 1, the extension component 203 further includes an electric push rod 2031 disposed at the bottom of the movable plate 2024, and a connecting rod 2032 disposed at the output end of the electric push rod 2031, with one end of the connecting rod 2032 connected to the extension member 2026. The guide component 204 includes a guide ring 2041 disposed at the top of the movable plate 2024, a guide tube 2042 disposed at the bottom of the guide ring 2041, and a sliding tube 2043 disposed on the outer diameter of the guide tube 2042. The tube 2043 is connected to the connecting rod 2032. An installation groove 2044 is provided on the inner wall of the sliding tube 2043. A return spring 2045 is installed inside the installation groove 2044. A retaining plate 2046 is provided at the other end of the return spring 2045, and the top of the retaining plate 2046 is rotatably connected to the sliding tube 2043. After the sapling inside the feeding assembly 201 falls into the guide tube 2042, it is limited by the retaining plate 2046 inside the sliding tube 2043, thus confining the sapling inside the guide tube 2042. Then, the drive... Part 102 moves, causing the bottom of the guide tube 2042 to move to the pit excavated by the drilling part 2025. Electric push rod 2031 (driven by electric push rod motor 2) drives connecting rod 2032, causing sliding tube 2043 to move downwards. This causes the retaining plate 2046 inside sliding tube 2043 to be squeezed and retracted by guide tube 2042, allowing the sapling inside guide tube 2042 to fall into the pit, thus completing the pre-planting. Simultaneously, electric push rod 2031 drives connecting rod 2032... As the extension component 2026 and the drilling component 2025 move, they also begin to dig new pits. When the sapling falls into the pit inside the guide tube 2042, the rotating disk 2012 also rotates to allow the new sapling to fall into the guide tube 2042. Thus, as long as the drive component 102 moves, the drilling component 2025, the sliding tube 2043, and the rotating disk 2012 complete the entire process of digging, feeding, guiding, and planting under the drive of the electric push rod 2031 and the motor 2023, and achieve uninterrupted planting.
[0040] During use, when planting trees in a garden, the operator places the sapling inside the placement part 2013, securing it to the top of the fixing plate 2011. Then, the motor 2023 inside the fixing block 2022 operates, causing the drilling component 2025 to rotate. With the cooperation of the extension component 203, the extension component 2026 extends downwards along with the drilling component 2025 to begin drilling into the ground. During drilling, soil is transported to the soil guide component 2027, where it is intercepted and falls to both sides of the ground. After the drilling component 2025 completes its work, the electric push rod 2021 retracts, moving the fixing block 2022 and the moving plate 2024 along the inner wall of the frame 101. During the movement of the moving plate 2024, the extension component 203 and the guide component 2026... Component 204 also moves along with the moving plate 2024, causing the guide component 204 to move to the bottom of the fixed plate 2011, so that the guide component 204 is perpendicular to the groove on the fixed plate 2011. At the same time, the movement of the fixed block 2022 causes the motor 2023 inside the fixed block 2022 to move as well, so that the moving clip 2028 on the top of the motor 2023 engages with the limiting groove 2015 on the outer diameter of the drive rod 2014 for locking and fixing. Thus, when the motor 2023 drives the drilling part 2025 to rotate, it can also drive the rotating plate 2012 to rotate. The motor 2023 drives the drive rod 2014 to rotate the rotating plate 2012, so that the placement part 2013 on the top of the rotating plate 2012 rotates to the groove of the fixed plate 2011, so that the seedling inside the placement part 2013 falls into the guide component 204, thereby completing the planting preparation.
[0041] After the sapling inside the feeding assembly 201 falls into the guide tube 2042, it is limited by the clamping plate 2046 inside the sliding tube 2043, thus confining the sapling inside the guide tube 2042. Then, the driving component 102 moves, causing the bottom of the guide tube 2042 to move to the pit dug by the drilling component 2025. The electric push rod 2031 drives the connecting rod 2032 to move the sliding tube 2043 downward, thereby causing the clamping plate 2046 inside the sliding tube 2043 to be squeezed and retracted by the guide tube 2042. The sapling inside the guide tube 2042 falls into the pit, thus completing the pre-planting. At the same time, the electric... As the second push rod 2031 drives the connecting rod 2032 to move, the extension part 2026 and the drilling part 2025 also move to start digging a new pit. When the sapling falls into the pit inside the guide tube 2042, the rotating disk 2012 also rotates to make the new sapling fall into the guide tube 2042. Thus, as long as the driving part 102 moves, the drilling part 2025, the sliding tube 2043 and the rotating disk 2012 complete the entire process of digging, feeding, guiding and planting under the drive of the second push rod 2031 and the motor 2023, and realize uninterrupted planting, saving manpower and time and improving planting efficiency.
[0042] The remaining structure is the same as that in Example 1.
[0043] Example 3, referring to Figure 1 - Figure 10 This is the third embodiment of the present invention, which differs from the second embodiment in that: the watering assembly 301 includes a water tank 3011 mounted on the frame 101, a water inlet 3012 mounted on the top of the water tank 3011, a nutrient solution tank 3013 mounted on the bottom of the water tank 3011, a feeding port 3014 mounted on the nutrient solution tank 3013, a first delivery pipe 3015 mounted on one end of the nutrient solution tank 3013, a second delivery pipe 3016 mounted on one end of the water tank 3011, and a gathering plate 3017 mounted on the bottom of the nutrient solution tank 3013. The gathering plate 3017 is fixedly connected to the drive member 102 and guides... After component 204 lowers the sapling into the planting pit, water from water tank 3011 is transported to the planting pit through delivery pipe 2 3016. At the same time, nutrient solution from nutrient solution tank 3013 is also transported to the planting pit through delivery pipe 1 3015, completing the addition of nutrient solution and water. As the nutrient solution tank 3013 moves forward through drive component 102, the gathering plates 3017 on both sides of the bottom of the nutrient solution tank 3013 gather the soil excavated by drilling component 202 and backfill it into the planting pit, completing the backfilling. This allows it to work in conjunction with drilling component 202 and guide component 204 to complete excavation, planting, and backfilling, thus accelerating the efficiency of garden planting.
[0044] During use, after the guide component 204 lowers the sapling into the planting pit, water from the water tank 3011 is transported to the planting pit through the second delivery pipe 3016. Simultaneously, nutrient solution from the nutrient solution tank 3013 is also transported to the planting pit through the first delivery pipe 3015, completing the addition of nutrient solution and water. As the drive component 102 moves forward, the gathering plates 3017 on both sides of the bottom of the nutrient solution tank 3013 gather the soil excavated by the drilling component 202 and backfill it into the planting pit, completing the backfilling process. This allows the sapling to work in conjunction with the drilling component 202 and the guide component 204 to complete the excavation, planting, and backfilling processes. This system accelerates the efficiency of landscaping planting and achieves automated planting by integrating processes such as digging holes, planting, watering, adding nutrient solution, and backfilling. Operators only need to place the sapling into the feeding component 201, and the subsequent work is completed automatically, saving manpower and time and improving planting efficiency. The drilling component 202 can be precisely adjusted to align the guide component 204 with the feeding port, ensuring that the sapling falls accurately into the pit, avoiding secondary digging and enabling continuous operation, further improving efficiency. The watering component precisely sprays nutrient solution and water to help the sapling quickly adapt to the new environment, improve the survival rate, and reduce sapling damage during the planting process, thus reducing labor intensity and difficulty.
[0045] The remaining structure is the same as that in Example 2.
[0046] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit it. Although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention, and all such modifications or substitutions should be covered within the scope of the claims of the present invention.
Claims
1. A landscape and garden auxiliary planting device, characterized in that: include: The support unit (100) includes a frame (101) and a drive unit (102) disposed inside the frame (101). The planting unit (200) includes a feeding assembly (201) disposed on the top of the frame (101), a punching assembly (202) slidably disposed on the frame (101), an extension assembly (203) disposed at the bottom of the punching assembly (202), and a guide assembly (204) disposed at the other end of the extension assembly (203), wherein the top of the guide assembly (204) is connected to the punching assembly (202); The auxiliary unit (300) includes a watering assembly (301) disposed on the top of the frame (101), and the watering assembly (301) cooperates with the drilling assembly (202).
2. The landscape and garden auxiliary planting equipment according to claim 1, characterized in that: The unloading assembly (201) includes a fixed plate (2011) disposed on the top of the frame (101), a rotating plate (2012) rotatably disposed on the top of the fixed plate (2011), a placement part (2013) disposed on the top of the rotating plate (2012), a drive rod (2014) disposed on the bottom of the rotating plate (2012), and a limit groove (2015) is provided on one side of the outer diameter of the drive rod (2014), and the drive rod (2014) and the fixed plate (2011) pass through and are rotatably connected.
3. The landscape and garden auxiliary planting equipment according to claim 2, characterized in that: The drilling assembly (202) includes an electric push rod (2021) mounted on the frame (101), a fixing block (2022) mounted on the output end of the electric push rod (2021), a motor (2023) mounted inside the fixing block (2022), and a drilling component (2025) mounted on the output end of the motor (2023).
4. The landscape and garden auxiliary planting equipment according to claim 3, characterized in that: The top of the fixed block (2022) is provided with a movable plate (2024), and the movable plate (2024) is slidably connected to the frame (101).
5. The landscape and garden auxiliary planting equipment according to claim 4, characterized in that: The top of the motor (2023) passes through the movable plate (2024) and is provided with a movable clip (2028), and the movable clip (2028) and the limiting groove (2015) on the drive rod (2014) are slidably connected.
6. The landscape and garden auxiliary planting equipment according to claim 5, characterized in that: The bottom of the fixing block (2022) is provided with an extension (2026), the bottom of the extension (2026) is provided with a soil guide (2027), and the soil guide (2027) cooperates with the drilling part (2025).
7. The landscape and garden auxiliary planting equipment according to claim 6, characterized in that: The extension assembly (203) includes an electric push rod two (2031) disposed at the bottom of the movable plate (2024) and a connecting rod (2032) disposed at the output end of the electric push rod two (2031), and one end of the connecting rod (2032) is connected to the extension member (2026).
8. The landscape and garden auxiliary planting equipment according to claim 7, characterized in that: The guide assembly (204) includes a guide ring (2041) disposed on the top of the movable plate (2024), a guide tube (2042) disposed on the bottom of the guide ring (2041), and a sliding tube (2043) disposed on the outer diameter of the guide tube (2042), and the sliding tube (2043) is connected to the connecting rod (2032).
9. The landscape and garden auxiliary planting equipment according to claim 8, characterized in that: An installation groove (2044) is provided on the inner wall of the sliding tube (2043). A return spring (2045) is provided inside the installation groove (2044). A retaining plate (2046) is provided at the other end of the return spring (2045), and the top of the retaining plate (2046) is rotatably connected to the sliding tube (2043).
10. The landscape and garden auxiliary planting equipment according to claim 9, characterized in that: The watering assembly (301) includes a water tank (3011) mounted on the frame (101), a water inlet (3012) mounted on the top of the water tank (3011), a nutrient solution tank (3013) mounted on the bottom of the water tank (3011), a feeding port (3014) mounted on the nutrient solution tank (3013), a first delivery pipe (3015) mounted on one end of the nutrient solution tank (3013), a second delivery pipe (3016) mounted on one end of the water tank (3011), and a gathering plate (3017) mounted on the bottom of the nutrient solution tank (3013), and the gathering plate (3017) is fixedly connected to the drive unit (102).