An apparatus support device for a planting soil
By combining the fixing structure of the insertion part, the side fixing part and the discharge part, the insertion part is inserted into the soil, the side fixing part squeezes the side of the soil, and the discharge part discharges cement-based slurry that adheres to and solidifies with the soil. This solves the problem of the existing support device being not firmly fixed and having poor adaptability under different soil conditions, and improves the stability of the support under soft soil and wind.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- FUZHOU LEYI ECOLOGICAL TECH CO LTD
- Filing Date
- 2026-04-30
- Publication Date
- 2026-07-24
AI Technical Summary
Existing support devices are not securely fixed under different soil conditions, have poor adaptability, and are insufficient in reinforcement. They are especially prone to tilting, falling, and displacement under soft soil and wind conditions.
The system employs a combination of a fixing part, a side fixing part, and a discharge part. The fixing part is inserted into the soil, the side fixing part compresses the side of the soil, and the discharge part discharges cement-based slurry that adheres to and solidifies with the soil, thus achieving multi-layer reinforcement.
It improves the stability of the support structure in various soil environments, has strong adaptability, is easy to operate, and can resist the effects of wind and soil changes, significantly improving the stability of equipment deployment.
Smart Images

Figure CN122129627B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of mechanical support equipment technology, and specifically to a support device for planting soil. Background Technology
[0002] With urban development, deploying various outdoor equipment in planting soil environments has become an important management method. The usual support device usually uses a bracket structure to fix the camera above the soil surface to monitor the green area. Alternatively, staff can disassemble the camera as needed and fix other equipment that needs to be set up in the green planting soil for long-term outdoor operation on the support device.
[0003] However, most outdoor supports typically rely solely on their own weight or simple ground stakes for fixation, resulting in a limited range of methods. This makes them prone to tilting, falling, and shifting in soft soil, under wind conditions, or from external impacts, affecting the stability of the equipment deployment. The effectiveness of this fixation varies significantly, especially in different soil types such as sandy or loose soil. Currently, there is a lack of universal outdoor support supports that can adapt to various soil types, have a multi-layered reinforcement structure, and provide a secure and stable fixation. Summary of the Invention
[0004] This invention provides a support device for planting soil to solve the problems of existing support devices being unstable, having poor adaptability, and insufficient reinforcement effect under different soil conditions.
[0005] To solve the above-mentioned technical problems, the technical solution of the present invention is as follows: In a first aspect, a support device for planting soil includes a base frame and a support cover fixed to the base frame. The base frame has symmetrically arranged fixed plates on its outer side. A support column is vertically arranged on the support cover, and the column is hollow inside. A secondary rod is vertically connected to the inner side of the support column, and the secondary rod extends through the upper end of the support column. A support plate is connected to the secondary rod. A support plate is connected to the support plate via a fixing component. A camera is detachably mounted on the support plate via the fixing component. The device also includes: The insertion part, the lifting through support cover and the support column are arranged, which includes a pressure adjusting component located below the auxiliary rod and a lifting through support cover located inside the base frame for inserting into the soil to reinforce the support device; The side fixing part is movably disposed through the insertion fixing part. It includes a squeezing plug that is translatably disposed in the insertion part for side squeezing of the soil, and a connecting pusher that is connected to the pressure regulating member ring for pushing and triggering the squeezing plug. The connecting pusher cooperates with the squeezing plug to side squeeze the soil for reinforcement and fixation after the insertion fixing part is inserted into the soil. The discharge section has a through-insertion fastener and cooperates with the connecting pusher. It includes a storage part for storing cement-based slurry and a discharge part that cooperates with the connecting pusher to squeeze out the cement-based slurry, so as to discharge the cement-based slurry into the soil and reinforce the fastener after it has solidified.
[0006] Furthermore, it includes: a motor fixed on the base frame, a threaded groove opened through the lower end of the auxiliary rod, a lead screw connected to the drive end of the motor, and the lead screw moving through the support column and threadedly connected to the threaded groove.
[0007] Furthermore, the pressure regulating component includes: The opening is a passageway that runs through the pillars; The pressure ring is located on the inner side of the support column, on the outer side of the lead screw, and below the auxiliary rod; The connecting rods are symmetrically arranged on the outside of the pressure ring, and have movable tube openings; The adjusting parts are located at the end of the connecting rod.
[0008] Furthermore, the adjusting component includes: The screw threadedly connects the retaining plate and the connecting rod. The rotating disc is fixed at the end of the screw away from the connecting rod. The baffle is fixed to the end of the connecting rod away from the pressure ring.
[0009] Furthermore, the fitting includes: Guide rods, symmetrically arranged through the movable support cover; The groove is shifted, and the guide rod is opened through it; The screw moves through the transfer groove; The insert is fixed to the lower end of the guide rod, located inside the support cover, and extends to the inside of the base frame.
[0010] Furthermore, the connecting pusher includes: A collar, which is fitted around the outside of the screw and located within the groove; The electric rod is connected to the lower end of the collar and moves through the lower end of the guide rod. The arc plate is fixed to the lower end of the electric pole and is movably set inside the insertion cone.
[0011] Furthermore, the extrusion plug includes: Connecting plate, fixed inside the insert cone; The rotating plate is inclinedly set inside the insert cone and is rotatably connected to the connecting plate. It is located outside the arc disk so that it can be pushed to rotate when the arc disk moves upward. The pusher head is fixed on the side of the rotary plate away from the arc plate; The side pressure plate is a horizontally sliding through-cone setting, located on the direction away from the arc plate of the rotating plate; The insert rod is movable and passes through the side pressure plate, and contacts the rotating plate; The positioning component is elastically set through the insertion cone and extends to the upper end of the rotating plate.
[0012] Furthermore, the positioning component includes: The movable groove is symmetrically opened at the upper end of the insertion cone; A spring is connected to the inner top wall of the movable groove; A bent rod is located at the lower end of the spring and is movably inserted through the movable slot; A baffle is fixed to the lower end of the bent rod and extends to the upper end of the inclined rotating plate; The pull ring is fixed to the upper end of the bent rod.
[0013] Furthermore, the reserve component includes: The storage tank is located inside the cone and below the arc plate; The filling port is located on one side of the cone and is connected to the storage tank; Rubber gasket, used to block the filling port; The fixing plate is fixed to one side of the rubber pad and connected to the cone through the fixing component, and is aligned with the outer surface of the cone.
[0014] Furthermore, the extrusion component includes: Drainage channels are symmetrically arranged at the lower end of the storage tank; A one-way valve is connected to the lower end of the drain channel and passes through a cone; The connecting plate is fixed to the lower end of the arc plate; The piston is fixed to the lower end of the connecting plate and located inside the storage tank.
[0015] The above-described solution of the present invention has at least the following beneficial effects: By combining a fixing structure with insertion, side-fixing, and discharge sections, a multi-layered and flexibly adjustable reinforcement effect is achieved. The insertion section uses inserts into the soil for foundation fixation, while the side-fixing section's extrusion inserts compress the soil laterally, enhancing lateral fixation strength and preventing overall tilting and displacement of the support. Simultaneously, the discharge section's extrusion components squeeze out cement-based grout, allowing the grout to adhere to and solidify with the soil for long-term anchoring reinforcement. This support system allows for flexible selection of fixing methods and adjustment of fixing depth according to different soil conditions, exhibiting strong adaptability, ease of operation, and excellent synergy among its components. It effectively resists the effects of wind, external disturbances, and soil changes, significantly improving the stability of outdoor supports deployed in various soil environments. Attached Figure Description
[0016] Figure 1 This is an overall perspective view of the soil support device provided in an embodiment of the present invention; Figure 2 A perspective view of the support plate provided in an embodiment of the present invention; Figure 3A cross-sectional plan view of the soil support device provided in an embodiment of the present invention; Figure 4 A perspective view of the cone and guide rod assembly provided in an embodiment of the present invention; Figure 5 A perspective view of the linkage, electric rod, and pressure ring assembly provided in an embodiment of the present invention; Figure 6 This is a sectional plan view of the insertion cone provided in an embodiment of the present invention; Figure 7 A perspective view of a bent rod provided in an embodiment of the present invention; Figure 8 A perspective view of the piston and arc disk assembly provided in an embodiment of the present invention; Figure 9 Provided for embodiments of the present invention Figure 6 Schematic diagram of the structure at point A in the diagram; Figure 10 Provided for embodiments of the present invention Figure 6 The structural diagram at point B in the diagram.
[0017] Explanation of reference numerals in the attached figures: In the diagram: 1. Base frame; 2. Fixed plate; 3. Support cover; 4. Column; 5. Sub-rod; 6. Support plate; 7. Support plate; 8. Bracket; 9. Camera; 10. Motor; 11. Threaded groove; 12. Lead screw; 13. Through port; 14. Pressure ring; 15. Connecting rod; 16. Baffle plate; 17. Screw; 18. Turning plate; 19. Guide rod; 20. Moving groove; 21. Inserting cone; 22. Inner cavity; 23. Perforation; 24. Electric rod; 25. Sleeve 26. Ring; 27. Arc plate; 28. Connecting plate; 29. Piston; 30. Side channel; 31. Connecting plate; 32. Rotary plate; 33. Push head; 34. T-slot; 35. T-plate; 36. Side pressure plate; 37. Insert rod; 38. Movable groove; 39. Through channel; 40. Spring; 41. Bent rod; 42. Baffle; 43. Pull ring; 44. Storage tank; 45. Drain channel; 46. One-way valve; 47. Filling port; 48. Rubber gasket; 49. Fixing plate. Detailed Implementation
[0018] Exemplary embodiments of the invention will now be described in more detail with reference to the accompanying drawings. While exemplary embodiments of the invention are shown in the drawings, it should be understood that the invention may be implemented in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided so that this invention will be thorough and complete, and will fully convey the scope of the invention to those skilled in the art.
[0019] like Figures 1 to 10As shown, an embodiment of the present invention provides a support device for planting soil, including a base frame 1 and a support cover 3 fixed on the base frame 1. A fixed plate 2 is symmetrically arranged on the outer side of the base frame 1. A support column 4 is vertically arranged on the support cover 3, and the support column 4 is hollow inside. A secondary rod 5 is vertically connected to the inner side of the support column 4, and the secondary rod 5 passes through the upper end of the support column 4. A support plate 6 is connected to the secondary rod 5. A support plate 7 is connected to the support plate 6 through a fixing component. A camera 9 is detachably installed on the support plate 7 through a fixing component. The device also includes: The insertion part, the lifting through support cover 3 and the support column 4 are provided, which includes a pressure adjusting component that is movable through the support column 4 and located below the auxiliary rod 5, and an insertion part that is lifted through the support cover 3 and located inside the base frame 1 for inserting into the soil to reinforce the support device. The side fixing part is movably configured through the insertion fixing part. It includes a squeezing plug that is translatably configured in the insertion part for side squeezing of the soil, and a connecting pusher that is connected to the pressure regulating member ring for pushing and triggering the squeezing plug. The connecting pusher cooperates with the squeezing plug to side squeeze the soil for reinforcement and fixation after the insertion fixing part is inserted into the soil. The discharge section has a through-insertion fastener and cooperates with the connecting pusher. It includes a storage part for storing cement-based slurry and a discharge part that cooperates with the connecting pusher to squeeze out the cement-based slurry, so as to discharge the cement-based slurry into the soil and reinforce the fastener after it has solidified.
[0020] Specifically, a bracket 8 is mounted on the support plate 7 via a fixing component. The bracket 8 is connected to the camera 9. The base frame 1 provides stable support for the support cover 3. The fixing plate 2 can be used with bolts to fix the base frame 1. The support cover 3 provides support for the support column 4. The support column 4 provides support and movement guidance for the auxiliary rod 5. The support column 4 and the auxiliary rod 5 have a square structure, which can prevent the auxiliary rod 5 from rotating. The auxiliary rod 5 provides stable support for the support plate 6. The support plate 7 is connected to the support plate 6 via a fixing component, so that the support plate 6 can provide stable support for the bracket 8 through the support plate 7. The bracket 8 provides support for the camera 9, and the support angle provided by the bracket 8 can be adjusted by the operator.
[0021] In practical application, workers can move the support plate 6, support plate 7, and camera 9 (or other long-term outdoor work equipment) to a suitable working position in the greening planting soil using the base frame 1, supported by the support cover 3, support column 4, and auxiliary rod 5. Then, workers need to use fixing components to fix the fixing plate 2 to the soil surface and adjust the working angle of the camera 9 or other work equipment as needed.
[0022] In a preferred embodiment of the present invention, a motor 10 is fixed on the base frame 1, and a threaded groove 11 is opened through the lower end of the auxiliary rod 5. The drive end of the motor 10 is connected to a lead screw 12, and the lead screw 12 moves through the support column 4 and is threadedly connected to the threaded groove 11.
[0023] Specifically, the base frame 1 can provide stable support for the motor 10, the motor 10 can provide support for the lead screw 12, the auxiliary rod 5 can provide space for the threaded groove 11, and the lead screw 12 can use the threaded action with the threaded groove 11 to push the auxiliary rod 5 to rise and fall under the guidance of the support column 4 according to the direction of rotation during rotation.
[0024] In practical application, the operator can control the motor 10 to run according to the actual needs. The motor 10 drives the lead screw 12 to rotate, and the lead screw 12 uses rotational power to move up or down according to the rotation direction and the thread groove 11 to adjust the height of the auxiliary rod 5. The auxiliary rod 5 can drive the support plate 7 to move up or down together through the support plate 6, and the support plate 7 can drive the bracket 8 and the camera 9 to adjust their height up or down together.
[0025] In a preferred embodiment of the present invention, the pressure regulating component includes: 13 openings were made, with 4 pillars running through them; The pressure ring 14 is located inside the support column 4, outside the lead screw 12, and below the auxiliary rod 5; The connecting rod 15 is symmetrically arranged on the outside of the pressure ring 14, and the movable tube opening 13; The adjusting part is located at the end of the connecting rod 15.
[0026] Specifically, the support column 4 provides opening space for the through port 13, the through port 13 provides space for the connecting rod 15 to move up and down, the support column 4 provides space for the pressure ring 14 to move up and down and provides guidance, and the pressure ring 14 provides a through channel for the lead screw 12.
[0027] Adjustment parts include: Screw 17, through the retaining plate 16, is threadedly connected to connecting rod 15; The rotating disk 18 is fixed at the end of the screw 17 away from the connecting rod 15; The baffle 16 is fixed to the end of the connecting rod 15 away from the pressure ring 14.
[0028] Specifically, the connecting rod 15 can provide support and connection for the screw 17 by means of the thread, and can also make the screw 17 adjustable in lateral position by means of the thread. The screw 17 can also provide support for the turntable 18, and the connecting rod 15 can also provide support for the baffle 16.
[0029] The firmware includes: Guide rod 19, symmetrical through support cover 3 movable setting; The shift groove 20 and the through guide rod 19 are opened; Screw 17 moves through the sliding groove 20; The insert cone 21 is fixed to the lower end of the guide rod 19 and is located inside the support cover 3, extending to the inside of the base frame 1.
[0030] Specifically, the guide rod 19 can provide a blocking function for the baffle 16 and the rotary table 18, and can provide space for the shifting groove 20. The shifting groove 20 can provide space for the screw 17 to move and rotate. The guide rod 19 can provide support for the insertion cone 21. The insertion cone 21 has a conical structure with a sharp lower end, which can be easily inserted into the soil under the action of external force.
[0031] In practical application, after the base frame 1 is fixed on the soil surface, the operator can move the screw 17 upward along the shifting groove 20 and the opening 13. This causes the screw 17 to drive the pressure ring 14 upward along the inside of the support column 4 to its limit via the connecting rod 15. Then, the operator needs to rotate the rotating disk 18, causing the rotating disk 18 to rotate the screw 17. Utilizing the threaded action between the screw 17 and the connecting rod 15, the rotating disk 18 moves towards the baffle 16. This allows the baffle 16 and the rotating disk 18 to clamp onto the outside of the guide rod 19, thus enabling the baffle 16 and the rotating disk 18 to act as a support for the connecting rod 15 and the pressure ring 14 under the support of the guide rod 19. 4. Provide support, then control the motor 10 to run, so that the motor 10 drives the auxiliary rod 5 to move downward to its limit using the lead screw 12, so that the auxiliary rod 5 can contact the pressure ring 14 during the downward movement and squeeze the pressure ring 14 during the downward movement. Under the action of external force, the pressure ring 14 pushes the baffle 16 downward through the connecting rod 15, so that the baffle 16 and the rotating plate 18 use clamping action to push the guide rod 19 downward, so that the guide rod 19 can move downward through the support cover 3 under the action of external force, and drive the insertion cone 21 to insert into the soil. After the insertion cone 21 is inserted into the soil, it can cooperate with the support cover 3 and the base frame 1 to stabilize the support device and play a reinforcing role.
[0032] As needed, after the first downward push of the cone 21 into the soil, the staff can first control the motor 10 to run, so that the motor 10 uses the thread action of the lead screw 12 and the threaded groove 11 to push the auxiliary rod 5 upward to the top of the opening 13. Then, the above operation can be performed once or multiple times, so that the cone 21 can be inserted into the soil deeper. This allows the staff to easily increase the insertion depth of the cone 21 into the soil according to the needs of different soil types, thereby improving the reinforcement effect.
[0033] As a preferred embodiment of the present invention, the connecting pusher includes: The collar 25 is fitted around the outside of the screw 17 and is located inside the transfer groove 20; The electric rod 24 is connected to the lower end of the collar 25 and moves through the lower end of the guide rod 19; Arc plate 26 is fixed to the lower end of electric rod 24 and is movably disposed inside insert cone 21.
[0034] Specifically, the cone 21 has an inner cavity 22, the arc disk 26 is located inside the inner cavity 22, the lower end of the guide rod 19 has a through hole 23, and the through hole 23 communicates with the shifting groove 20. The electric rod 24 is located outside the through hole 23. The inner cavity 22 can provide moving space for the electric rod 24 and the arc disk 26. The electric rod 24 moves through the upper end of the cone 21. The through hole 23 can provide moving space for the electric rod 24. The screw 17 can provide support for the collar 25. The collar 25 can provide rotation and moving space for the screw 17. The collar 25 can provide support for the electric rod 24. The electric rod 24 can provide support for the arc disk 26. The electric rod 24 can be extended and retracted by the operator. The arc disk 26 has an arc. When the screw 17 moves along the shifting groove 20, it can drive the collar 25 to move upward together, so that the collar 25 drives the electric rod 24 to move together. The electric rod 24 will then drive the arc disk 26 to move together.
[0035] Extrusion plugs include: Connecting plate 30 is fixed inside the insert cone 21; The rotating plate 31 is inclinedly disposed inside the insert cone 21 and is rotatably connected to the connecting plate 30. It is located outside the arc disk 26 so as to be pushed to rotate when the arc disk 26 moves upward. The pusher 32 is fixed on the side of the rotary plate 31 away from the arc plate 26; The side pressure plate 35 is positioned with a transverse through-hole cone 21, located in the direction away from the arc plate 26 of the rotating plate 31. The insertion rod 36 is movably connected through the side pressure plate 35 and contacts the rotating plate 31; The positioning component is elastically set through the insertion cone 21 and extends to the upper end of the rotating plate 31.
[0036] Specifically, the insert cone 21 has symmetrically arranged side channels 29 on both sides, and the side channels 29 are connected to the inner cavity 22. The connecting plate 30 is located inside the side channel 29 and connected to the inner bottom wall of the side channel 29. The connecting plate 30 can provide rotational support for the rotating plate 31 under the support of the insert cone 21. The arc plate 26 can provide a blocking and limiting function for the rotating plate 31, and can provide tilt support for the rotating plate 31. The arc plate 26 can push the rotating plate 31 away from the center line of the insert cone 21 during the upward movement, so as to be supported by the connecting plate 30. The side channel 29 rotates downwards towards the side pressure plate 35, providing a moving channel for the side pressure plate 35. The inner top wall of the side channel 29 is provided with a T-groove 33, and a T-plate 34 is guided in the T-groove 33. The lower end of the T-plate 34 is connected to the side pressure plate 35, thereby providing a moving guide for the side pressure plate 35. The side pressure plate 35 provides a through channel and moving guide for the insertion rod 36. The rotating plate 31 provides support for the push head 32, which can push the side pressure plate 35 to move under the action of external force.
[0037] Positioning components include: The movable groove 37 is symmetrically opened at the upper end of the through-hole cone 21; Spring 39 is connected to the inner top wall of movable groove 37; The bent rod 40 is located at the lower end of the spring 39 and is movably connected through the movable slot 37; The baffle 41 is fixed to the lower end of the bent rod 40 and extends to the upper end of the inclined rotating plate 31; Pull ring 42 is fixed to the upper end of the bent rod 40.
[0038] Specifically, the insert cone 21 provides space for the movable slot 37 and supports the spring 39. The movable slot 37 provides space for the spring 39. The spring 39 is elastic and can support the bent rod 40, so that the bent rod 40 can support the baffle 41 and the pull ring 42. The upper end of the inclined rotating plate 31 can provide a blocking support for the baffle 41, so that the baffle 41 can squeeze the spring 39 through the bent rod 40, so that the spring 39 is in a contracted state. The baffle 41 can provide a blocking effect for the rotating plate 31 after the rotating plate 31 rotates towards the side pressure plate 35.
[0039] In practical application, after the cone 21 is inserted into the soil, the worker can rotate the rotating disk 18 as needed. This allows the rotating disk 18 to rotate away from the baffle 16 using the threaded action of the screw 17, thus releasing the clamping connection with the guide rod 19. The worker then needs to lift the rotating disk 18 upwards, causing it to move upwards along the sliding groove 20 via the screw 17 and connecting rod 15. Simultaneously, the screw 17 will move upwards via the collar 25, causing the electric rod 24 to move upwards along the perforation 23, thus moving the arc disk 26 upwards within the inner cavity 22. During this upward movement, the arc disk 26 gradually pushes... Supported by the connecting plate 30, the rotating plate 31 rotates away from the center line of the cone 21, thereby driving the push head 32 to rotate together during the rotation. The push head 32 pushes the side pressure plate 35 to move away from the center line of the cone 21. At the same time, the rotating plate 31 pushes the insertion rod 36 to move away from the center line of the cone 21, so that the insertion rod 36 can penetrate the side pressure plate 35 and insert itself laterally into the soil with its sharp end. The side pressure plate 35, which moves away from the center line of the cone 21, will laterally squeeze the soil and work with the insertion rod 36 to reinforce the cone 21, thereby improving the longitudinal stability of the cone 21 in the soil to adapt to different soil conditions.
[0040] During the rotation of the rotating plate 31 away from the center line of the insertion cone 21, the upper end of the rotating plate 31 will continuously contact and move with the lower end of the baffle 41. After the rotating plate 31 has moved, it will separate from the baffle 41. At this time, the resisting force on the baffle 41 will disappear. The spring 39 will use its rebound force to push the bent rod 40 downward under the support of the insertion cone 21, so that the bent rod 40 will drive the baffle 41 to move downward to one side of the rotating plate 31, thereby providing a resisting effect for the rotating plate 31 and preventing the rotating plate 31 from rotating towards the center line of the insertion cone 21. Thus, under the resistance of the baffle 41, the rotating plate 31 can provide a resisting effect for the side pressure plate 35 through the push head 32, and also provide a resisting effect for the insertion rod 36.
[0041] The staff can pull the pull ring 42 upward as needed, so that the pull ring 42 drives the bent rod 40 to move upward in the movable groove 37. This causes the bent rod 40 to compress the spring 39 and move the baffle 41 upward, thereby releasing the obstruction of the rotating plate 31. This allows the rotating plate 31 to rotate towards the center line of the insertion cone 21, thus releasing the obstruction and positioning of the side pressure plate 35 and the insertion rod 36.
[0042] As a preferred embodiment of the present invention, the storage component includes: Storage tank 43 is located inside the insertion cone 21 and below the arc plate 26; The filling port 46 is located on one side of the insertion cone 21 and is connected to the storage tank 43; Rubber gasket 47, plugging the filling port 46 is set; The fixing plate 48 is fixed to one side of the rubber pad 47 and is connected to the insertion cone 21 through the fixing component, and is aligned with the outer surface of the insertion cone 21.
[0043] Specifically, the insert cone 21 has through-holes symmetrically arranged through-holes 38, which are located outside the bent rod 40 and communicate with the movable groove 37 and the inner cavity 22, providing lifting and moving space for the bent rod 40. The insert cone 21 provides opening space for the storage tank 43, which provides storage space for cement-based slurry. The filling port 46 provides a channel for cement-based slurry to be filled into the storage tank 43. The rubber gasket 47 is made of rubber and can block and seal the filling port 46. The fixing plate 48 can be threadedly connected to the insert cone 21 with screws, thereby squeezing and fixing the rubber gasket 47.
[0044] Extruded components include: Drainage channels 44 are symmetrically arranged at the lower end of storage tank 43; A one-way valve 45 is connected to the lower end of the drain channel 44 and passes through the insertion cone 21; Connecting plate 27 is fixed to the lower end of arc plate 26; Piston 28 is fixed to the lower end of connecting plate 27 and located inside storage tank 43.
[0045] Specifically, the drain channel 44 provides a discharge channel for the cement-based slurry in the storage tank 43, the cone 21 provides support for the one-way valve 45, which is a diaphragm type and can open the channel under pressure, thereby providing a channel for the cement-based slurry to be discharged into the soil, and the arc plate 26 provides support for the connecting plate 27, so that the connecting plate 27 can stably support the piston 28. The piston 28 can fit against the inner wall of the storage tank 43 and seal the upper opening of the storage tank 43 and push the cement-based slurry in the storage tank 43 as it moves downward along the inner wall of the storage tank 43, so that the cement-based slurry can be squeezed into the one-way valve 45.
[0046] In practical application, workers can unscrew the screws to release the fixing of the fixing plate 48, and pull the rubber gasket 47 away from the filling port 46 through the fixing plate 48, thereby opening the opening of the filling port 46. Then, the cement-based grout is injected into the storage tank 43 through the filling port 46. The rubber gasket 47 is then inserted back in, and the fixing plate 48 is connected with screws. After the cone 21 is inserted into the soil and positioned, the screw 17 can be loosened as needed to release the clamping of the guide rod 19 by the rotating plate 18 and the baffle plate 16. Then, the electric rod 24 is extended, and the electric rod 24 pushes the collar 25 upward with the support of the arc plate 26 using the telescopic end. The collar 25 drives the screw 17 to move upward along the shifting groove 20 to adjust the height. Afterward, the workers need to press the rotating plate 18 downward along the shifting groove 20, so that the rotating plate 18 drives the screw 17 to move along the shifting groove 20. The screw 17 moves downward, causing the collar 25 to move downward with external force. The collar 25 then drives the electric rod 24 to move downward along the through hole 23. At the same time, the electric rod 24 drives the arc plate 26 to move downward in the inner cavity 22. The arc plate 26 pushes the connecting plate 27 downward with external force. The connecting plate 27 can drive the piston 28 to move downward along the inner wall of the storage tank 43. During the movement, the piston 28 can squeeze the cement-based slurry stored in the storage tank 43. Under pressure, the cement-based slurry can pass through the drain channel 44 and enter the one-way valve 45, and then be discharged into the soil. This allows the cement-based slurry to be easily discharged between the cone 21 and the soil. After the cement-based slurry solidifies, it can make the cone 21 adhere to the soil, which can play a reinforcing role and improve the soil fixation adaptability and firmness of the support device.
[0047] The above description represents the preferred embodiments of the present invention. It should be noted that those skilled in the art can make various improvements and modifications without departing from the principles of the present invention, and these improvements and modifications should also be considered within the scope of protection of the present invention.
Claims
1. A support device for planting soil, comprising a base frame and a support cover fixed to the base frame, wherein fixed plates are symmetrically arranged on the outer side of the base frame, and a column is vertically arranged on the support cover, the column being hollow inside, a secondary rod is vertically connected to the inner side of the column, the secondary rod passing through the upper end of the column, a support plate is connected to the secondary rod, a support plate is connected to the support plate by a fixing component, and a camera is detachably mounted on the support plate by a fixing component, characterized in that... Also includes: The insertion part, the lifting through support cover and the support column are arranged, which includes a pressure adjusting component located below the auxiliary rod and a lifting through support cover located inside the base frame for inserting into the soil to reinforce the support device; The side fixing part is movably disposed through the insertion fixing part. It includes a squeezing plug that is translatably disposed in the insertion part for side squeezing of the soil, and a connecting pusher that is connected to the pressure regulating member ring for pushing and triggering the squeezing plug. The connecting pusher cooperates with the squeezing plug to side squeeze the soil for reinforcement and fixation after the insertion fixing part is inserted into the soil. The discharge section is provided with a through-insertion fastener and cooperates with the connecting pusher. It includes a storage part for storing cement-based slurry and a discharge part that cooperates with the connecting pusher to squeeze out the cement-based slurry, so as to discharge the cement-based slurry into the soil and reinforce the fastener after it adheres and solidifies. Includes: a motor is fixed on the base frame, a threaded groove is opened through the lower end of the auxiliary rod, the drive end of the motor is connected to a lead screw, and the lead screw moves through the support column and is threadedly connected to the threaded groove; The pressure regulating component includes: The opening is a passageway that runs through the pillars; The pressure ring is located on the inner side of the support column, on the outer side of the lead screw, and below the auxiliary rod; The connecting rod is symmetrically arranged on the outside of the pressure ring and moves through the opening; Adjustment parts are located at the end of the connecting rod; The adjusting component includes: The baffle is fixed to the end of the connecting rod away from the pressure ring; The screw threadedly connects the retaining plate and the connecting rod. The rotating disc is fixed at the end of the screw furthest from the connecting rod. The fitting includes: Guide rods, symmetrically arranged through the movable support cover; The groove is shifted, and the guide rod is opened through it; The screw moves through the transfer groove; The insert cone is fixed to the lower end of the guide rod, located inside the support cover, and extends to the inside of the base frame; The connecting pusher includes: A collar, which is fitted around the outside of the screw and located within the groove; The electric rod is connected to the lower end of the collar and moves through the lower end of the guide rod. The arc-shaped disc is fixed to the lower end of the electric pole and is movably mounted inside the cone. The extrusion plug includes: Connecting plate, fixed inside the insert cone; The rotating plate is inclinedly set inside the insert cone and is rotatably connected to the connecting plate. It is located outside the arc disk so that it can be pushed to rotate when the arc disk moves upward. The pusher head is fixed on the side of the rotary plate away from the arc plate; The side pressure plate is a horizontally sliding through-cone setting, located on the direction away from the arc plate of the rotating plate; The insert rod is movable and passes through the side pressure plate, and contacts the rotating plate; The positioning component is elastically set through the insertion cone and extends to the upper end of the rotating plate.
2. The equipment support device for planting soil according to claim 1, characterized in that, The positioning component includes: The movable groove is symmetrically opened at the upper end of the insertion cone; A spring is connected to the inner top wall of the movable groove; A bent rod is located at the lower end of the spring and is movably inserted through the movable slot; A baffle is fixed to the lower end of the bent rod and extends to the upper end of the inclined rotating plate; The pull ring is fixed to the upper end of the bent rod.
3. The equipment support device for planting soil according to claim 2, characterized in that, The reserve components include: The storage tank is located inside the cone and below the arc plate; The filling port is located on one side of the cone and is connected to the storage tank; Rubber gasket, used to block the filling port; The fixing plate is fixed to one side of the rubber pad and connected to the cone through the fixing component, and is aligned with the outer surface of the cone.
4. The equipment support device for planting soil according to claim 3, characterized in that, The extrusion component includes: Drainage channels are symmetrically arranged at the lower end of the storage tank; A one-way valve is connected to the lower end of the drain channel and passes through a cone; The connecting plate is fixed to the lower end of the arc plate; The piston is fixed to the lower end of the connecting plate and located inside the storage tank.
Citation Information
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