A planting device for improving the survival rate of shrubs
By designing a shrub planting device including a mobile vehicle body, a solution configuration device, a pit digging device and a cylindrical shrub insertion device, the problems of low shrub planting efficiency and difficult to guarantee survival rate in the prior art are solved, and efficient and rapid improvement of shrub planting and survival rate are achieved.
Patent Information
- Application Number
- CN202211549421.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-05
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2042-12-05
AI Technical Summary
The existing shrub planting equipment is inefficient and the survival rate is difficult to guarantee, resulting in waste of manpower and financial resources.
A planting device including a mobile vehicle body, a solution configuration device, a pit digging device and a cylindrical shrub insertion device is designed. The device drives the curved plate and clamping mechanism through a hydraulic push rod to achieve rapid and accurate shrub insertion and pump nutrient solution into the soil pit through a water pump.
It improves the survival rate of shrubs, reduces labor costs, realizes rapid and efficient shrub planting, reduces the area of soil excavated from the soil pit, and facilitates subsequent gathering.
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Figure CN115708467B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the field of shrub planting, and specifically relates to a planting device for improving the survival rate of shrubs. Background Art
[0002] In order to improve the planting efficiency and survival rate of shrubs, reduce labor costs, and achieve large-scale planting of shrubs with high survival rates, mechanical planting methods are being widely used. However, the current planting devices mainly rely on manual labor supplemented by machinery, and the planting efficiency is not high, and the survival rate cannot be guaranteed, resulting in a waste of labor and financial losses.
[0003] In view of this, the present invention is specifically proposed. Summary of the Invention
[0004] The technical problem to be solved by the present invention is to overcome the deficiencies of the prior art and provide a planting device for improving the survival rate of shrubs.
[0005] To solve the above technical problem, the basic concept of the technical solution adopted by the present invention is as follows:
[0006] A planting device for improving the survival rate of shrubs, including a moving vehicle body. The moving vehicle body is of a shell structure, and a solution preparation device for preparing shrub nutrient solution, a pit digging device for digging soil pits, and a cylindrical shrub insertion device for inserting cylindrical shrubs into the soil pits are sequentially arranged on the moving vehicle body.
[0007] The cylindrical shrub insertion device includes an opening hole provided on the upper side of the moving vehicle body, a first arc-shaped plate vertically slidably fitted in the opening hole, two first hydraulic push rods connected to the inner wall of the upper part of the moving vehicle body for driving the first arc-shaped plate to slide, a clamping mechanism for clamping cylindrical shrubs arranged inside the first arc-shaped plate, a support plate horizontally slidably fitted in the opening hole for supporting the cylindrical shrubs, and a driving mechanism installed on the inner wall of the side part of the moving vehicle body for driving the support plate to horizontally slide. The support plate is located below the first arc-shaped plate.
[0008] Two connecting blocks are symmetrically installed on the outer side of the first arc-shaped plate. The connecting blocks are fixed to the output ends of the first hydraulic push rods. The clamping mechanism includes a plurality of second hydraulic push rods circumferentially arrayed inside the first arc-shaped plate, and clamping plates provided at the output ends of the second hydraulic push rods. The driving mechanism includes guiding support bars fixed inside the opposite sides of the moving vehicle body, third hydraulic push rods fixed to the guiding support bars, two support bars symmetrically fixed to the support disc, and the two support bars are respectively slidably fitted on the two guiding support bars. The two support bars are respectively fixed to the two third hydraulic push rods. A limiting mounting plate is provided on the upper side of the guiding support bar, and the third hydraulic push rod is fixed to the limiting mounting plate. A second arc-shaped plate is rotatably fitted in the opening hole. The upper end of the second arc-shaped plate is provided with an outer turning edge that fits against the inner wall of the lower part of the moving vehicle body, the lower end is fixed with an external gear ring, a plurality of fourth hydraulic push rods are circumferentially arrayed inside the second arc-shaped plate, and a soil pushing plate is fixed to the output end of the fourth hydraulic push rod. An opening is provided on the side of the external gear ring. The arcs of the first arc-shaped plate and the second arc-shaped plate are both major arcs.
[0009] Optionally, two first servo motors are symmetrically fixed to the inner wall of the lower part of the moving vehicle body. One end of the output shaft of the first servo motor extending out of the moving vehicle body is fixed with a gear, and both gears are engaged with the external gear ring.
[0010] Optionally, the pit-digging device includes a through hole provided on the upper side of the moving vehicle body, a U-shaped bracket installed on the upper side of the moving vehicle body, a fifth hydraulic push rod fixed to the U-shaped bracket, a motor box fixed to the output end of the fifth hydraulic push rod, a second servo motor provided in the motor box, and a drill bit provided at the output end of the second servo motor. A bearing is embedded in the bottom surface of the motor box. The upper end of the drill bit is fixed with a rotating shaft, and the rotating shaft is fixed in the bearing. The drill bit is fixedly connected to the output end of the second servo motor through the rotating shaft.
[0011] Optionally, a retaining ring with one end extending out of the through hole is slidably fitted to the lower part of the moving vehicle body. Two sixth hydraulic push rods fixedly connected to the retaining ring are provided on the inner wall of the upper part of the moving vehicle body. The cross-section of the retaining ring is an L-shaped structure.
[0012] Optionally, the solution preparation device includes a mixing barrel provided inside the moving vehicle body, a third servo motor installed at the bottom end of the mixing barrel, and a stirring shaft fixed to one end of the output shaft of the third servo motor extending into the mixing barrel. A water pump is connected to the lower part of the mixing barrel. The upper end of the mixing barrel extends out of the upper end of the moving vehicle body. A waterproof bearing is embedded in the bottom end of the mixing barrel. The output end of the third servo motor is fixed in the waterproof bearing. A heightening column is installed at the lower part of the mixing barrel.
[0013] Optionally, a plug is provided on the upper side of the mixing barrel, a handle is provided on the plug, and four wheels are provided on the body of the mobile cart.
[0014] After adopting the above technical solution, the present invention has the following beneficial effects compared with the prior art. Of course, any product implementing the present invention does not necessarily need to achieve all the advantages described below at the same time:
[0015] Open the fifth hydraulic push rod and the sixth hydraulic push rod to drive the lower end of the retaining ring to slide out of the through hole, and then cover the opening with the retaining ring, thereby reducing the problem that the soil excavated from the soil pit is scattered over a large area and is inconvenient to gather later;
[0016] By opening the second servo motor, the second servo motor drives the drill bit to rotate through the rotating shaft, and the fifth hydraulic push rod drives the motor box, the second servo motor, and the drill bit to slide down, facilitating the fifth hydraulic push rod to assist the drill bit to drill into the soil. The soil drilled by the drill bit is inside the retaining ring. After the soil pit is drilled, then the fifth hydraulic push rod and the sixth hydraulic push rod drive the drill bit to pull out of the soil pit, and then the second servo motor drives the drill bit to reverse, so that the soil on the drill bit is scraped off by the scraper, facilitating the quick cleaning of the drill bit and facilitating the quick excavation of the soil pit;
[0017] Move the digging device to the soil pit through the movement of the body of the mobile cart, and then turn on the water pump to pump the solution in the mixing barrel into the soil pit; then place the cylindrical shrub on the support plate, and then turn on the second hydraulic push rod and the clamping plate, and then quickly clamp the cylindrical shrub through a plurality of clamping plates;
[0018] By opening the third hydraulic push rod, the support plate is driven by the support bar to slide horizontally and away from below the cylindrical shrub, and then by opening the first hydraulic push rod, the first arc-shaped plate and the clamping mechanism are driven by the connecting block to slide down synchronously, thereby driving the cylindrical shrub to be inserted into the soil pit, facilitating the quick insertion of the cylindrical shrub into the soil pit. Then turn on the fourth hydraulic push rod to drive the soil pushing plate to slide, facilitating the pushing of the soil into the soil pit. Then turn on the first servo motor to drive the gear to drive the external gear ring, the second arc-shaped plate, the fourth hydraulic push rod, and the soil pushing plate to rotate synchronously, thereby driving the fourth hydraulic push rod and the soil pushing plate to switch positions, facilitating the fourth hydraulic push rod to drive the soil pushing plate to push the soil around the soil pit into the soil pit and around the shrub.
[0019] The following further describes in detail the specific embodiments of the present invention with reference to the accompanying drawings. Description of the Drawings
[0020] The following drawings in the description are only some embodiments. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts. In the drawings:
[0021] Figure 1 It is a three-dimensional structural schematic diagram of an embodiment of the present invention;
[0022] Figure 2 Cross-sectional view of the solution preparation device according to an embodiment of the present invention;
[0023] Figure 3 Cross-sectional view of the pit-digging device according to an embodiment of the present invention;
[0024] Figure 4 Cross-sectional view of the cylindrical shrub insertion device according to an embodiment of the present invention;
[0025] Figure 5 Schematic diagram of the structure of the water pump according to an embodiment of the present invention;
[0026] Figure 6 Schematic perspective view of the cylindrical shrub insertion device according to an embodiment of the present invention;
[0027] Figure 7 Schematic perspective view of the pit-digging device according to an embodiment of the present invention;
[0028] Figure 8 Schematic perspective view of the solution preparation device according to an embodiment of the present invention;
[0029] In the drawings, the list of components represented by each reference numeral is as follows:
[0030] Moving vehicle body 1, opening hole 2, first arc-shaped plate 3, first hydraulic push rod 4, support disk 5, connecting block 6, second hydraulic push rod 7, clamping plate 8, guiding support bar 9, third hydraulic push rod 10, support bar 11, limit mounting plate 12, second arc-shaped plate 13, external gear ring 14, fourth hydraulic push rod 15, earth-pushing plate 16, first servo motor 17, gear 18, through hole 19, U-shaped bracket 20, fifth hydraulic push rod 21, motor box 22, second servo motor 23, drill bit 24, bearing 25, rotating shaft 26, soil retaining ring 27, sixth hydraulic push rod 28, mixing barrel 29, third servo motor 30, stirring shaft 31, waterproof bearing 32, heightening column 33, plug 34, handle 35, wheel 36, water pump 37.
[0031] It should be noted that these drawings and textual descriptions are not intended to limit the scope of the concept of the present invention in any way, but to illustrate the concept of the present invention to those skilled in the art by referring to specific embodiments. Detailed Description of the Invention
[0032] The present invention will now be further described in detail with reference to the accompanying drawings.
[0033] Please refer to Figure 1-8As shown in the figure, in this embodiment, a planting device for improving the survival rate of shrubs is provided, which includes a moving vehicle body 1. The moving vehicle body 1 is of a shell structure. A solution preparation device for preparing shrub nutrient solution, a pit digging device for digging soil pits, and a cylindrical shrub insertion device for inserting cylindrical shrubs into the soil pits are successively arranged on the moving vehicle body 1. The cylindrical shrub insertion device includes an opening hole 2 provided on the upper side of the moving vehicle body 1, a first arc-shaped plate 3 vertically slidably fitted in the opening hole 2, two first hydraulic push rods 4 connected to the inner wall of the upper part of the moving vehicle body 1 for driving the first arc-shaped plate 3 to slide, a clamping mechanism for clamping the cylindrical shrub arranged in the first arc-shaped plate 3, a support plate 5 horizontally slidably fitted in the opening hole 2 for supporting the cylindrical shrub, and a driving mechanism installed on the inner wall of the side part of the moving vehicle body 1 for driving the support plate 5 to slide horizontally. The support plate 5 is located below the first arc-shaped plate 3. By setting the pit digging device, it is convenient to quickly dig out the soil pit. By setting the solution preparation device, it is convenient to prepare the nutrient solution and pump it into the soil pit, which is convenient to improve the survival rate of shrubs. Place the cylindrical shrub on the support plate 5, and then start the clamping mechanism to quickly clamp the cylindrical shrub. Then start the third hydraulic push rod 10 to drive the support plate 5 to slide horizontally and away from below the cylindrical shrub through the support bar 11. Then start the first hydraulic push rod 4 to drive the first arc-shaped plate 3 and the clamping mechanism to slide down synchronously, thereby driving the cylindrical shrub to be inserted into the soil pit, which is convenient to quickly insert the cylindrical shrub into the soil pit and thus convenient to quickly complete the planting of the shrub.On the outer side of the first arc-shaped plate 3, two connecting blocks 6 are symmetrically installed. The connecting blocks 6 are fixed at the output end of the first hydraulic push rod 4, which facilitates the first hydraulic push rod 4 to drive the first arc-shaped plate 3 and the clamping mechanism to slide down synchronously through the connecting blocks 6, thereby driving the cylindrical shrub to be inserted into the soil pit. The clamping mechanism includes a plurality of second hydraulic push rods 7 circumferentially arranged inside the first arc-shaped plate 3 and clamping plates 8 provided at the output ends of the second hydraulic push rods 7, which facilitates the opening of the second hydraulic push rods 7 and the clamping plates 8, and then quickly clamping the cylindrical shrub through the plurality of clamping plates 8. The driving mechanism includes guiding and supporting strips 9 fixed inside the opposite sides of the mobile vehicle body 1, third hydraulic push rods 10 fixed on the guiding and supporting strips 9, and two supporting strips 11 symmetrically fixed on the supporting disc 5, which facilitates the guiding and supporting strips 9 to support the supporting strips 11 and the supporting disc 5 to slide stably. Moreover, the two supporting strips 11 are respectively slidably fitted on the two guiding and supporting strips 9, and the two supporting strips 11 are respectively fixed on the two third hydraulic push rods 10. A limiting mounting plate 12 is provided on the upper side of the guiding and supporting strip 9, which facilitates the installation of the third hydraulic push rod 10 on the limiting mounting plate 12, and the third hydraulic push rod 10 is fixed on the limiting mounting plate 12, which facilitates the horizontal sliding of the supporting disc 5 from below the cylindrical shrub and sliding away by driving the third hydraulic push rod 10 through the supporting strip 11 after opening. A second arc-shaped plate 13 is rotatably fitted in the opening hole 2. The upper end of the second arc-shaped plate 13 is provided with an outward-turning edge that fits the inner wall of the lower part of the mobile vehicle body 1, the lower end is fixed with an external tooth ring 14, a plurality of fourth hydraulic push rods 15 are circumferentially arranged inside the second arc-shaped plate 13, and a soil pushing plate 16 is fixed at the output end of the fourth hydraulic push rod 15. An opening is provided on the side of the external tooth ring 14. The arcs of the first arc-shaped plate 3 and the second arc-shaped plate 13 are both major arcs. By providing the opening, it is convenient for the device to be removed after planting.
[0034] In this embodiment, the distance between the soil pushing plate 16 and the inner wall of the second arc-shaped plate 13 gradually decreases from the upper end to the lower end. Two first servo motors 17 are symmetrically fixed on the inner wall of the lower part of the mobile vehicle body 1. One end of the output shaft of the first servo motor 17 extending out of the mobile vehicle body 1 is fixed with a gear 18, and both gears 18 are engaged with the external tooth ring 14, which facilitates the fourth hydraulic push rod 15 to drive the soil pushing plate 16 to push the soil dug out of the soil pit into the soil pit and pile it in a frustum shape around the shrub.
[0035] The pit-digging device of this embodiment includes a through hole 19 provided on the upper side of the mobile vehicle body 1, a U-shaped bracket 20 installed on the upper side of the mobile vehicle body 1, a fifth hydraulic push rod 21 fixed to the U-shaped bracket 20, a motor box 22 fixed to the output end of the fifth hydraulic push rod 21, a second servo motor 23 provided in the motor box 22, and a drill bit 24 provided at the output end of the second servo motor 23. A bearing 25 is embedded in the bottom surface of the motor box 22, and a rotating shaft 26 is fixed to the upper end of the drill bit 24. The rotating shaft 26 is fixed in the bearing 25, which is convenient for improving the rotation stability of the drill bit 24. The drill bit 24 is fixedly connected to the output end of the second servo motor 23 through the rotating shaft 26, which is convenient for the fifth hydraulic push rod 21 to assist the drill bit 24 to drill into the soil. The soil drilled by the drill bit 24 is within the retaining ring 27. After the soil pit is drilled, then the fifth hydraulic push rod 21 and the sixth hydraulic push rod 28 drive the drill bit 24 to pull out of the soil pit.
[0036] In this embodiment, a retaining ring 27 with one end extending out of the through hole 19 is slidably fitted to the lower part of the mobile vehicle body 1. Two sixth hydraulic push rods 28 fixedly connected to the retaining ring 27 are provided on the inner wall of the upper part of the mobile vehicle body 1. The vertical cross-section of the retaining ring 27 is an L-shaped structure. A scraper 38 is provided in the retaining ring 27, and a spiral hole corresponding to the drill bit 24 is provided on the scraper 38, which is convenient for the second servo motor 23 to drive the drill bit 24 to rotate in reverse, so that the soil on the drill bit 24 can be scraped off by the scraper 38, which is convenient for quickly cleaning the drill bit 24 and at the same time convenient for quickly digging out the soil pit.
[0037] The solution preparation device of this embodiment includes a mixing barrel 29 provided in the mobile vehicle body 1, a third servo motor 30 installed at the bottom end of the mixing barrel 29, and a stirring shaft 31 fixed to one end of the output shaft of the third servo motor 30 extending into the mixing barrel 29. A water pump 37 is connected to the lower part of the mixing barrel 29, and the water outlet end of the water pump 37 is located between the support plate 5 and the second arc-shaped plate 13. The upper end of the mixing barrel 29 extends out of the upper end of the mobile vehicle body 1. A waterproof bearing 32 is embedded in the bottom end of the mixing barrel 29, and the output end of the third servo motor 30 is fixed in the waterproof bearing 32. A heightening column 33 is installed at the lower part of the mixing barrel 29, which is convenient for driving the stirring shaft 31 by the third servo motor 30 to stir the solution in the mixing barrel 29 and convenient for turning on the water pump 37 to pump the solution in the mixing barrel 29 into the soil pit.
[0038] A plug 34 is provided on the upper side of the mixing barrel 29 of this embodiment, and a handle 35 is provided on the plug 34. Four wheels 36 are provided on the mobile vehicle body 1, which is convenient for the device to move through the provided wheels 36. By providing a handle 35 on the plug 34, it is convenient to quickly open or cover the mixing barrel 29.
[0039] Working principle: Considering that plants must rely on sufficient nutrients and energy to survive and grow in the initial stage of planting, the present invention proposes a planting device for improving the survival rate of shrubs. Planting shrubs with tubes can reduce external damage to seedlings and collect some rainwater for growth, and the fertilization steps such as nutrient solution and solid fertilizer are integrated into the planting process, which can greatly optimize the rooting and germination environment of shrubs, thereby improving the survival rate. In this way, a shrub planting device that reduces labor and cost is realized. Move the mobile vehicle body 1 to the place where cylindrical shrubs need to be planted, and then turn on the fifth hydraulic push rod 21 and the sixth hydraulic push rod 28 to drive the lower end of the retaining ring 27 to slide out through the through hole 19, and then cover the opening through the retaining ring 27, thereby reducing the problem that the soil dug out of the soil pit is scattered over a large area and is inconvenient to gather later; then turn on the second servo motor 23, and the second servo motor 23 drives the drill bit 24 to rotate through the rotating shaft 26. The fifth hydraulic push rod 21 drives the motor box 22, the second servo motor 23, and the drill bit 24 to slide down, which is convenient for the fifth hydraulic push rod 21 to assist the drill bit 24 to drill into the soil. The soil drilled by the drill bit 24 is inside the retaining ring 27. When the soil pit is drilled, then the fifth hydraulic push rod 21 and the sixth hydraulic push rod 28 drive the drill bit 24 to pull out of the soil pit, and then the second servo motor 23 drives the drill bit 24 to reverse, so that the soil on the drill bit 24 is scraped off by the scraper 38, which is convenient for quickly cleaning the drill bit 24 and at the same time convenient for quickly digging out the soil pit; then the mobile vehicle body 1 moves to move the digging device to the soil pit, and then turn on the water pump 37 to pump the solution in the mixing bucket 29 into the soil pit; then place the cylindrical shrub on the support plate 5, and then turn on the second hydraulic push rod 7 and the clamping plates 8, and then quickly clamp the cylindrical shrub through a plurality of clamping plates 8; then turn on the third hydraulic push rod 10 to drive the support plate 5 to slide horizontally and away from below the cylindrical shrub through the support bar 11, and then turn on the first hydraulic push rod 4 to drive the first arc plate 3 and the clamping mechanism to slide down synchronously through the connecting block 6, thereby driving the cylindrical shrub to be inserted into the soil pit, which is convenient for quickly inserting the cylindrical shrub into the soil pit. Then turn on the fourth hydraulic push rod 15 to drive the soil pushing plate 16 to slide, which is convenient for pushing the soil into the soil pit. Then turn on the first servo motor 17 to drive the gear 18 to drive the external tooth ring 14, the second arc plate 13, the fourth hydraulic push rod 15, and the soil pushing plate 16 to rotate synchronously, thereby driving the fourth hydraulic push rod 15 and the soil pushing plate 16 to switch positions, which is convenient for the fourth hydraulic push rod 15 to drive the soil pushing plate 16 to push the soil around the soil pit into the soil pit and around the shrub.
[0040] The present invention is not limited to the above embodiments. Anyone should know that structural changes made under the inspiration of the present invention, as long as they have the same or similar technical solutions as the present invention, all fall within the protection scope of the present invention. The technologies, shapes, and structures not described in detail in the present invention are all well-known technologies.
Claims
1. A planting device for improving the survival rate of shrubs, characterized in that, Including: A mobile vehicle body (1), the mobile vehicle body (1) being of a shell structure, and a solution preparation device for configuring shrub nutrient solution, a pit digging device for digging soil pits, and a cylindrical shrub insertion device for inserting cylindrical shrubs into the soil pits are successively provided on the mobile vehicle body (1); The cylindrical shrub insertion device includes an opening hole (2) provided on the upper side of the mobile vehicle body (1), a first arc-shaped plate (3) vertically slidably fitted in the opening hole (2), two first hydraulic push rods (4) connected to the inner wall of the upper part of the mobile vehicle body (1) for driving the sliding of the first arc-shaped plate (3), a clamping mechanism for clamping the cylindrical shrub provided in the first arc-shaped plate (3), a support plate (5) horizontally slidably fitted in the opening hole (2) for supporting the cylindrical shrub, and a driving mechanism installed on the inner wall of the side part of the mobile vehicle body (1) for driving the horizontal sliding of the support plate (5); Two connecting blocks (6) are symmetrically installed on the outer side of the first arc-shaped plate (3), the connecting blocks (6) are fixed to the output ends of the first hydraulic push rods (4), the clamping mechanism includes a plurality of second hydraulic push rods (7) circumferentially arrayed in the first arc-shaped plate (3), and clamping plates (8) provided at the output ends of the second hydraulic push rods (7), the driving mechanism includes guiding support bars (9) fixed to opposite sides inside the mobile vehicle body (1), a third hydraulic push rod (10) fixed to the guiding support bars (9), two support bars (11) symmetrically fixed to the support plate (5), and the two support bars (11) are respectively slidably fitted on the two guiding support bars (9), the two support bars (11) are respectively fixed to the two third hydraulic push rods (10), a second arc-shaped plate (13) is rotatably fitted in the opening hole (2), the upper end of the second arc-shaped plate (13) is provided with an outward-turning edge that fits the inner wall of the lower part of the mobile vehicle body (1), the lower end is fixed with an external gear ring (14), a plurality of fourth hydraulic push rods (15) are circumferentially arrayed inside the second arc-shaped plate (13), a soil pushing plate (16) is fixed to the output end of the fourth hydraulic push rod (15), and an opening is provided on the side part of the external gear ring (14).
2. The planting device for improving the survival rate of shrubs according to claim 1, characterized in that, Two first servo motors (17) are symmetrically fixed to the inner wall of the lower part of the mobile vehicle body (1), a gear (18) is fixed to one end of the output shaft of the first servo motor (17) extending out of the mobile vehicle body (1), and the two gears (18) are both engaged with the external gear ring (14).
3. The planting device for improving the survival rate of shrubs according to claim 1, characterized in that, The pit digging device includes a through hole (19) provided on the upper side of the mobile vehicle body (1), a U-shaped bracket (20) installed on the upper side of the mobile vehicle body (1), a fifth hydraulic push rod (21) fixed to the U-shaped bracket (20), a motor box (22) fixed to the output end of the fifth hydraulic push rod (21), a second servo motor (23) provided in the motor box (22), and a drill bit (24) provided at the output end of the second servo motor (23).
4. The planting device for improving the survival rate of shrubs according to claim 3, characterized in that, A retaining ring (27) with one end extending out of the through hole (19) is slidably fitted to the lower part of the mobile vehicle body (1), and two sixth hydraulic push rods (28) fixedly connected to the retaining ring (27) are provided on the inner wall of the upper part of the mobile vehicle body (1).
5. The planting device for improving the survival rate of shrubs according to claim 1, characterized in that, The solution preparation device includes a mixing barrel (29) arranged in the mobile vehicle body (1), a third servo motor (30) installed at the bottom end of the mixing barrel (29), and a stirring shaft (31) fixed to one end of the output shaft of the third servo motor (30) extending into the mixing barrel (29). A water pump (37) is connected to the lower part of the mixing barrel (29), and the upper end of the mixing barrel (29) extends out of the upper end of the mobile vehicle body (1).
6. The planting device for improving the survival rate of shrubs according to claim 5, characterized in that, A plug (34) is provided on the upper side of the mixing barrel (29), a handle (35) is provided on the plug (34), and four wheels (36) are provided on the mobile vehicle body (1).
Citation Information
Patent Citations
Planting device for improving survival rate of shrubs
CN219108349U