A restoration device for mine ecological protection and a method of using the same
By using lifting vehicles and linear conveying components in mine ecological restoration equipment, combined with mud delivery pipes and water storage pipes, the problem of water loss in sandy soil was solved, and a high plant survival rate and ecological restoration effect were achieved.
Patent Information
- Application Number
- CN202510098232.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-22
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2045-01-22
AI Technical Summary
For sandy soil, the existing slope drilling greening technology will cause water to evaporate and lose quickly, and the water cannot penetrate laterally into the mud, resulting in a low plant survival rate.
A restoration equipment for mine ecological protection was designed, including a lifting vehicle and a linear conveying assembly. Through the combination of a mud delivery pipe and a water storage pipe, the mud delivery pipe is inserted obliquely downward into the greening hole to pump in mud containing plant seeds. The water storage pipe is provided with a through hole to slowly infiltrate water, and artificial irrigation can be used during drought.
It effectively improves the survival rate and growth environment of plants, ensures long-term storage and infiltration of water, reduces the loss of water resources, and adapts to different climatic conditions.
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Figure CN119769247B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of mine ecological restoration, and more particularly, to a restoration device for mine ecological protection and a method of using the same. Background Art
[0002] Mine restoration refers to the comprehensive management and ecological restoration of damaged mine environments through engineering and technical means, aiming to improve the ecological environment quality and maintain biodiversity in mining areas. Currently, the most commonly used mine greening technologies in mine geological environmental management include soil covering and greening, retaining wall and slope greening, excavation platform greening, and slope drilling greening.
[0003] For slopes with a gradient between 70° and 90°, existing technology uses slope drilling technology. This involves horizontally drilling holes into the steep slope, then filling the holes with a prepared slurry filled with climbing plant seeds. The slurry primarily consists of water, planting soil, a binder, a water-retaining agent, fertilizer, and plant seeds.
[0004] For sandy soil, its ability to retain and hold water is weak. Even if the prepared mud is injected into the greening hole, if there is a long period of drought, the water in the mud will quickly evaporate and be lost. For slopes with a large slope range, especially 90° slopes, even with artificial sprinkler irrigation, water will be lost quickly, and water cannot penetrate into the mud laterally. Therefore, it causes low plant survival rate and poor effect of artificial intervention. Summary of the Invention
[0005] The present invention provides a restoration device for mine ecological protection and a method of use thereof, which aims to solve the problem that, for sandy soil, water in the existing slope drilling greening technology will evaporate and be lost quickly, and water cannot penetrate laterally into the mud, resulting in a low plant survival rate.
[0006] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: a restoration device for mine ecological protection, comprising a lifting vehicle, a lifting end of the lifting vehicle is equipped with a base plate, a linear conveying assembly is fixedly mounted on the base plate, an output end of the linear conveying assembly is fixedly mounted with a movable plate, a mud delivery pipe is fixedly mounted on the movable plate, the lifting vehicle is used to drive the linear conveying assembly to lift and lower, the linear conveying assembly is used to drive the mud delivery pipe to move, so that the mud delivery pipe is inserted obliquely downward into the greening hole on the slope; a mud delivery pipe is fixedly mounted on the rear end of the mud delivery pipe, the mud delivery pipe is connected to a mud pump, and the mud pump pumps the mud with plant seeds into the interior of the greening hole through the mud delivery pipe and the mud delivery pipe in turn; a pipeline conveying assembly is also fixedly mounted on the movable plate, the pipeline conveying assembly is used to convey a water storage pipe, so that the water storage pipe passes through the interior of the mud delivery pipe and is inserted into the mud inside the greening hole, and a plurality of through holes are opened on the side wall of the water storage pipe.
[0007] In a preferred embodiment, the linear conveying assembly includes a mounting frame, which is fixedly mounted on a base plate, with sprockets rotatably connected to both ends of the mounting frame, a chain being transmission-connected between the two sprockets, a motor 1 being fixedly mounted on one side of the mounting frame, the output end of the motor 1 being transmission-connected to one of the sprockets, and the movable plate being fixedly mounted on the chain.
[0008] In a preferred embodiment, the pipeline conveying assembly includes a bracket 1 fixedly mounted on a movable plate, one side of the bracket 1 is rotatably connected to two conveying wheels, one side of the bracket 1 is fixedly connected to a motor 2, the output end of the motor 2 is transmission-connected to one of the conveying wheels, both sides of the two conveying wheels are fixedly connected to fixed sleeves, and the water storage pipe passes through the two fixed sleeves and passes between the two conveying wheels.
[0009] In a preferred embodiment, a cutting assembly is provided at the front end of the base plate, and the cutting assembly includes a bracket 2, the upper end of the bracket 2 is rotatably connected to a rotating shaft, the front end of the rotating shaft is fixedly connected to a shell, a motor 3 is fixedly mounted on the shell, a saw blade is fixedly mounted on the output end of the motor 3, a motor 4 is mounted on the bracket 2, and the output end of the motor 4 is transmission-connected to the rotating shaft.
[0010] In a preferred embodiment, a sealing assembly is installed on the rotating shaft, and the sealing assembly includes a swing frame fixedly connected to the rotating shaft, and a foaming gun and a linear drive component are fixedly installed at the front end of the swing frame. The output end of the linear drive component is used to push the trigger of the foaming gun, so that the foaming gun sprays foaming agent toward the end of the water storage pipe, thereby blocking the end of the water storage pipe.
[0011] In a preferred embodiment, the foaming gun includes a gun body, a storage tank, a nozzle and a trigger, the storage tank is connected to the input end of the gun body, the trigger is used to open and close the foaming gun, and the nozzle is used to spray the foaming agent.
[0012] In a preferred embodiment, fixed blocks are fixedly connected to the upper positions of both ends of the mud delivery pipe, and multiple guide rods are fixedly installed on the two fixed blocks. The water storage pipe passes through the multiple guide rods, so that the water storage pipe is maintained between the multiple guide rods.
[0013] In a preferred embodiment, a notch is provided at the lower side of the front end of the mud delivery pipe, a tightening block is fixedly connected at the position of the notch, a steel wire rope is passed through the upper end of the movable plate, the end of one side of the steel wire rope passes through the side wall of the mud delivery pipe and is fixedly connected to the tightening block, and the other end of the steel wire rope is provided with a spring, which is used to reset the steel wire rope in a direction away from the tightening block.
[0014] In a preferred embodiment, the bottom of the base plate is hinged to the upper end of the lifting end of the lifting vehicle, and the upper end of the lifting end of the lifting vehicle is provided with a hydraulic cylinder, and the two ends of the hydraulic cylinder are respectively hinged to the lifting end of the lifting vehicle and the bottom of the base plate.
[0015] The present invention also provides a method for using a mine ecological protection restoration device, comprising the following steps:
[0016] Step 1: Use a lifting vehicle to lift the linear conveying assembly to the location of the greening hole, so that the front end of the mud delivery pipe is aligned with the greening hole;
[0017] Step 2: Use the linear conveying assembly to move the mud delivery pipe so that the mud delivery pipe is inserted into the greening hole;
[0018] Step 3: Use the linear conveying component to drive the mud delivery pipe to gradually move out of the greening hole. During this process, the mud pump pumps the mud with plant seeds into the greening hole through the mud delivery pipe and the mud delivery pipe in sequence. The pipeline conveying component conveys the water storage pipe, so that the water storage pipe passes through the interior of the mud delivery pipe and is inserted into the mud inside the greening hole. The moving speed of the mud delivery pipe is consistent with the conveying speed of the water storage pipe.
[0019] Step 4: After the mud pumping is completed, use the cutting assembly to cut off the water storage pipe from the front end of the mud delivery pipe.
[0020] The technical effects and advantages of the present invention are as follows:
[0021] The present invention allows the mud delivery pipe to be inserted obliquely downward into the greening hole, and mud with seeds is pumped into the greening hole. When plants grow, the purpose of greening and ecological restoration can be achieved. In addition, a water storage pipe with a through hole can be inserted into the pumped mud. The water storage pipe has the function of storing water for a long time. The water in the water storage pipe can slowly seep into the greening hole from the through hole to ensure the normal growth of the plants.
[0022] By extending the front end of the water storage pipe out of the greening hole, the present invention can store a portion of rainwater when it rains and prevent soil sliding down the slope from entering the water storage pipe. In addition, during droughts, artificial irrigation can be carried out, such as using a drone to inject water into the interior of the water storage pipe, without worrying about water not being able to penetrate into the soil in the greening hole. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 It is a schematic diagram of the overall structure of the present invention.
[0024] Figure 2 It is a schematic diagram of the local structure of the present invention Figure 1 .
[0025] Figure 3 It is a schematic diagram of the local structure of the present invention Figure 2 .
[0026] Figure 4 This is a top view of the installation of the cutting assembly and the blocking assembly of the present invention.
[0027] Figure 5 It is a structural schematic diagram of the pipeline transportation component of the present invention.
[0028] Figure 6 It is a schematic diagram of the local structure of the present invention Figure 3 .
[0029] Figure 7 For the present invention Figure 2 A magnified view of the local structure at point A.
[0030] Figure 8 It is a schematic diagram after the construction of the present invention is completed.
[0031] Figure 9 This is a flow chart of the method for using the mine ecological protection restoration equipment of the present invention.
[0032] The accompanying drawings are marked as follows: 1. Lifting vehicle; 11. Hydraulic cylinder; 2. Bottom plate; 3. Linear conveying assembly; 31. Mounting frame; 32. Sprocket; 33. Chain; 34. Motor 1; 4. Moving plate; 5. Mud delivery pipe; 51. Notch; 6. Mud delivery pipe; 7. Pipeline conveying assembly; 71. Bracket 1; 72. Conveying wheel; 73. Motor 2; 74. Fixed sleeve; 8. Cutting assembly; 81. Bracket 2; 811. Avoidance; 82. Rotating shaft; 83. External Shell; 84, motor three; 85, saw blade; 86, motor four; 9, blocking assembly; 91, swing frame; 92, foaming gun; 921, gun body; 922, storage tank; 923, nozzle; 924, trigger; 93, linear drive component; 100, fixed block; 101, guide rod; 110, tightening soft block; 111, wire rope; 112, spring; 120, water storage pipe; 121, through hole; 130, slope; 140, greening hole. DETAILED DESCRIPTION
[0033] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0034] Refer to the instruction manual Figures 1-9 A restoration equipment for mine ecological protection includes a lifting vehicle 1, a lifting end of the lifting vehicle 1 is equipped with a base plate 2, a linear conveying component 3 is fixedly installed on the base plate 2, the output end of the linear conveying component 3 is fixedly installed with a movable plate 4, and a mud delivery pipe 5 is fixedly installed on the movable plate 4. The lifting vehicle 1 is used to drive the linear conveying component 3 to rise and fall, and the linear conveying component 3 is used to drive the mud delivery pipe 5 to move, so that the mud delivery pipe 5 is inserted obliquely downward into the greening hole 140 on the slope 130.
[0035] Furthermore, if Figure 1 As shown, the bottom of the base plate 2 is hinged to the upper end of the lifting end of the lifting vehicle 1, and a hydraulic cylinder 11 is provided at the upper end of the lifting end of the lifting vehicle 1. The two ends of the hydraulic cylinder 11 are hinged to the lifting end of the lifting vehicle 1 and the bottom of the base plate 2 respectively.
[0036] It should be noted that the lifting vehicle 1 drives the base plate 2 and the linear conveying assembly 3 to rise and fall, so that the linear conveying assembly 3 is lifted and lowered to the height of the greening hole 140, and then the hydraulic cylinder 11 is extended and retracted to drive the base plate 2 to swing, so as to achieve the purpose of adjusting the inclination angle of the mud delivery pipe 5, so that the mud delivery pipe 5 can face the greening hole 140, making it convenient for the mud delivery pipe 5 to be inserted into the interior of the greening hole 140.
[0037] In the above technical solution, if Figure 2 and Figure 3 As shown, the linear conveying assembly 3 includes a mounting frame 31, which is fixedly mounted on the base plate 2. Both ends of the mounting frame 31 are rotatably connected to sprockets 32, and a chain 33 is transmission-connected between the two sprockets 32. A motor 34 is fixedly mounted on one side of the mounting frame 31, and the output end of the motor 34 is transmission-connected to one of the sprockets 32. The movable plate 4 is fixedly mounted on the chain 33.
[0038] It should be noted that the motor 34 drives the sprocket 32 to rotate, thereby transmitting the chain 33, and driving the movable plate 4 to move through the chain 33, so that the mud delivery pipe 5 installed on the movable plate 4 moves together, so that the mud delivery pipe 5 can be inserted into the greening hole 140 on the slope 130.
[0039] In the embodiment, the rear end of the mud feeding pipe 5 is fixedly provided with a mud conveying pipe 6, and the mud conveying pipe 6 is connected with a mud pump. The mud pump pumps the mud with plant seeds into the inside of the greening hole 140 through the mud conveying pipe 6 and the mud feeding pipe 5 in sequence.
[0040] It should be noted that the mud pump is communicated with a mud storage tank, and the mud storage tank is filled with the mixed mud. The main components of the mud include water, planting soil, adhesive, water-retaining agent, fertilizer, plant seeds, and the like. Preferably, the plant seeds are the seeds of climbing plants.
[0041] In the embodiment, the moving plate 4 is further fixedly provided with a pipe conveying assembly 7. The pipe conveying assembly 7 is used for conveying the water storage pipe 120, so that the water storage pipe 120 passes through the inside of the mud feeding pipe 5 and is inserted into the mud in the inside of the greening hole 140. A plurality of through holes 121 are formed in the side wall of the water storage pipe 120.
[0042] In the above technical solution, as shown in Figure 5 the pipe conveying assembly 7 comprises a support one 71 fixedly provided on the moving plate 4. One side of the support one 71 is rotatably connected with two conveying wheels 72. One side of the support one 71 is fixedly connected with a motor two 73. The output end of the motor two 73 is drivingly connected with one of the conveying wheels 72. The two conveying wheels 72 are fixedly connected with two fixed sleeves 74 on the two sides. The water storage pipe 120 passes through the two fixed sleeves 74 and passes between the two conveying wheels 72.
[0043] It should be noted that the motor two 73 drives one of the conveying wheels 72 to rotate. The water storage pipe 120 is located between the two conveying wheels 72, so that the two conveying wheels 72 can convey the water storage pipe 120 forward. Further, the two conveying wheels 72 can be drivingly connected by two gears.
[0044] Further, as shown in Figure 2-Figure 4 the front end of the bottom plate 2 is provided with a cutting assembly 8. The cutting assembly 8 comprises a support two 81. The upper end of the support two 81 is rotatably connected with a rotating shaft 82. The front end of the rotating shaft 82 is fixedly connected with a housing 83. The housing 83 is fixedly provided with a motor three 84. The output end of the motor three 84 is fixedly provided with a saw blade 85. The support two 81 is provided with a motor four 86. The output end of the motor four 86 is drivingly connected with the rotating shaft 82.
[0045] It should be noted that the cutting assembly 8 is used for cutting the water storage pipe 120. Specifically, when cutting is needed, the motor three 84 drives the saw blade 85 to rotate. Then, the motor four 86 drives the rotating shaft 82, the housing 83, the motor three 84 and the housing 83 to swing, so that the saw blade 85 contacts the water storage pipe 120 and cuts the water storage pipe 120.
[0046] In this embodiment, the specific implementation method is as follows: when greening the slope 130 with a slope range of 70°-90°, it is necessary to first use a drilling machine to drill holes on the slope 130, such as Figure 8 As shown, a greening hole 140 is drilled, and the angle between the axis of the greening hole 140 and the horizontal direction is in the range of 12°-20°. Then use this equipment for construction. Specifically, the mixed mud needs to be loaded into the mud storage tank before construction. During construction, first, use the lifting vehicle 1 to lift the linear conveying component 3 to the position of the greening hole 140, and cooperate with the extension and contraction of the hydraulic cylinder 11 to adjust the inclination angle of the mud delivery pipe 5 so that the mud delivery pipe 5 can face the greening hole 140. Then, use the linear conveying component 3 to drive the mud delivery pipe 5 to move so that the mud delivery pipe 5 is inserted into the interior of the greening hole 140. At this time, the front end of the water storage pipe 120 is also inserted into the bottom of the greening hole 140. Secondly, the linear conveying assembly 3 is used to drive the mud delivery pipe 5 to gradually move out of the greening hole 140. During this process, the mud pump pumps the mud containing plant seeds into the interior of the greening hole 140 through the mud delivery pipe 6 and the mud delivery pipe 5 in sequence. In addition, the pipeline conveying assembly 7 conveys the water storage pipe 120. The movement speed of the mud delivery pipe 5 is consistent with the speed at which the water storage pipe 120 is conveyed to ensure that the relative position of the water storage pipe 120 and the greening hole 140 remains unchanged. Finally, when the mud pumping is completed, that is, when the mud delivery pipe 5 moves out of the greening hole 140, the mud pumping is stopped and the cutting assembly 8 is used to cut the water storage pipe 120 from the front end of the mud delivery pipe 5. At this point, the greening repair construction of one greening hole 140 is completed.
[0047] It should be noted that the water storage pipe 120 is made of degradable plastic to reduce pollution to the environment.
[0048] In the above technical solution, the greening hole 140 is set to be inclined, and the mud delivery pipe 5 is inserted obliquely downward into the greening hole 140. Mud with seeds is pumped into the greening hole 140. When plants grow, it can achieve the purpose of greening and ecological restoration. In addition, a water storage pipe 120 with a through hole 121 can be inserted into the pumped mud. The water storage pipe 120 has the function of storing water for a long time. The water in the water storage pipe 120 can slowly seep into the greening hole 140 from the through hole 121 to ensure the normal growth of plants. The front end of the water storage pipe 120 is extended out of the greening hole 140. When it rains, it can store some rainwater and prevent the soil sliding down the slope 130 from entering the water storage pipe 120. In addition, during droughts, artificial irrigation can be carried out, such as using a drone to inject water into the water storage pipe 120. There is no need to worry about water not being able to seep into the soil in the greening hole 140.
[0049] Refer to the instruction manual Figure 2-Figure 4After a period of time, the mud in the greening hole 140 forms soil with high moisture content. The water storage pipe 120 is inserted into the soil in the greening hole 140. Although water-retaining agent is added to the mud to improve the water-retaining capacity of the soil, the bottom of the water storage pipe 120 is also inserted into the soil. The water in the water storage pipe 120 can seep from the bottom of the water storage pipe 120. Since the opening at the bottom of the water storage pipe 120 is large, the water seepage speed is much faster than the seepage speed from the water storage pipe 120. Therefore, it is best to block the bottom of the water storage pipe 120. Therefore, a sealing component 9 is designed.
[0050] Specifically, a sealing assembly 9 is installed on the rotating shaft 82, and the sealing assembly 9 includes a swing frame 91 fixedly connected to the rotating shaft 82. A foaming gun 92 and a linear drive component 93 are fixedly installed at the front end of the swing frame 91. The output end of the linear drive component 93 is used to push the trigger 924 of the foaming gun 92, so that the foaming gun 92 sprays foaming agent toward the end of the water storage pipe 120, thereby blocking the end of the water storage pipe 120.
[0051] In the above technical solution, the foaming gun 92 uses the existing foaming gun 92, the purpose of which is to save manufacturing costs. Specifically, the foaming gun 92 includes a gun body 921, a storage tank 922, a nozzle 923 and a trigger 924. The storage tank 922 is connected to the input end of the gun body 921, the trigger 924 is used to open and close the foaming gun 92, and the nozzle 923 is used to spray the foaming agent.
[0052] It should be noted that the blocking assembly 9 is arranged on one side of the cutting assembly 8. The motor 4 86 drives the rotating shaft 82 to rotate, thereby causing the saw blade 85 to swing and cut the water storage pipe 120. The lifting vehicle 1 then lifts the linear conveying assembly 3 to the position of another greening hole 140. The motor 4 86 then continues to drive the rotating shaft 82 to rotate, which simultaneously drives the blocking assembly 9 to swing. The foaming gun 92 follows the saw blade 85. When the nozzle 923 swings to align with the end of the water storage pipe 120, the linear drive component 93 pushes the trigger 924 to move the foaming gun 92, thereby spraying the foaming agent stored in the storage tank 922 into the water storage pipe 120, sealing the end of the water storage pipe 120 and preventing water leakage. After completing this step, the motor 4 86 drives the saw blade 85 and the blocking assembly 9 to reset. The linear drive component 93 is an electric push rod.
[0053] Refer to the instruction manual Figure 3 、 Figure 6 and Figure 7 The upper sides of both ends of the mud delivery pipe 5 are fixedly connected with fixed blocks 100, and multiple guide rods 101 are fixedly installed on the two fixed blocks 100. The water storage pipe 120 passes through the multiple guide rods 101, so that the water storage pipe 120 is maintained between the multiple guide rods 101.
[0054] It should be noted that the water storage pipe 120 is transported forward by the pipe transport assembly 7, passes through the mud delivery pipe 6 and enters the interior of the mud delivery pipe 5. Since the mud delivery pipe 5 has a certain length, in order to improve the stability of the water storage pipe 120 in the mud delivery pipe 5, a fixing block 100 and a guide rod 101 are designed. Figure 6 As shown, three guide rods 101 are provided, and the water storage pipe 120 is located in the middle of the three guide rods 101 .
[0055] Refer to the instruction manual Figure 2-Figure 3 and Figure 6-Figure 7 A notch 51 is provided at the lower side of the front end of the mud delivery pipe 5, and a tightening soft block 110 is fixedly connected to the position of the notch 51. A steel wire rope 111 is passed through the upper end of the movable plate 4, and the end of one side of the steel wire rope 111 passes through the side wall of the mud delivery pipe 5 and is fixedly connected to the tightening soft block 110. The other end of the steel wire rope 111 is provided with a spring 112, which is used to reset the steel wire rope 111 in a direction away from the tightening soft block 110.
[0056] It should be noted that the tightening soft block 110 is made of elastic rubber material, such as Figure 6 As shown, the wire rope 111 is a Y-shaped structure, with both ends connected to the tightening block 110. When mud is not being pumped, the spring 112 pushes the wire rope 111 away from the tightening block 110, causing the wire rope 111 to pull the tightening block 110, causing the tightening block 110 to deform upward. This is to reduce the size of the mud outlet at the end of the mud delivery pipe 5 and prevent a large amount of mud from flowing out when mud is not being pumped. However, when mud is being pumped, the mud will push the tightening block 110 away.
[0057] It should also be noted that if Figure 7 As shown, a avoidance opening 811 is provided at the position of the second bracket 81 located on the upper side of the mud delivery pipe 5 , and the steel wire rope 111 can pass through the avoidance opening 811 when the mud delivery pipe 5 moves.
[0058] Refer to the instruction manual Figure 8 This embodiment also provides a method for using a mine ecological protection restoration device, comprising the following steps:
[0059] Step 1: Use the lifting vehicle 1 to lift the linear conveying assembly 3 to the position of the greening hole 140, so that the front end of the mud delivery pipe 5 is aligned with the greening hole 140;
[0060] Step 2: Use the linear conveying assembly 3 to move the mud delivery pipe 5 so that the mud delivery pipe 5 is inserted into the greening hole 140;
[0061] Step 3: Use the linear conveying component 3 to drive the mud delivery pipe 5 to gradually move out of the greening hole 140. During this process, the mud pump pumps the mud with plant seeds into the greening hole 140 through the mud delivery pipe 6 and the mud delivery pipe 5 in sequence. The pipeline conveying component 7 conveys the water storage pipe 120, so that the water storage pipe 120 passes through the interior of the mud delivery pipe 5 and is inserted into the mud inside the greening hole 140. The moving speed of the mud delivery pipe 5 is consistent with the conveying speed of the water storage pipe 120.
[0062] Step 4: After the mud pumping is completed, the cutting assembly 8 is used to cut off the water storage pipe 120 from the front end of the mud delivery pipe 5.
[0063] Finally: The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A restoration device for mine ecological protection, characterized by: The invention comprises a lifting vehicle (1), wherein a bottom plate (2) is installed at the lifting end of the lifting vehicle (1), a linear conveying assembly (3) is fixedly installed on the bottom plate (2), a movable plate (4) is fixedly installed at the output end of the linear conveying assembly (3), a mud delivery pipe (5) is fixedly installed on the movable plate (4), the lifting vehicle (1) is used to drive the linear conveying assembly (3) to rise and fall, and the linear conveying assembly (3) is used to drive the mud delivery pipe (5) to move, so that the mud delivery pipe (5) is obliquely inserted downward into the greening hole (140) on the slope (130); A mud delivery pipe (6) is fixedly installed at the rear end of the mud delivery pipe (5), and the mud delivery pipe (6) is connected to a mud pump, and the mud pump sequentially pumps mud containing plant seeds through the mud delivery pipe (6) and the mud delivery pipe (5) into the interior of the greening hole (140); A pipe conveying assembly (7) is also fixedly mounted on the movable plate (4), and the pipe conveying assembly (7) is used to convey the water storage pipe (120), so that the water storage pipe (120) passes through the interior of the mud delivery pipe (5) and is inserted into the mud inside the greening hole (140). The side wall of the water storage pipe (120) is provided with a plurality of through holes (121); The pipeline conveying assembly (7) includes a bracket (71) fixedly mounted on the movable plate (4), one side of the bracket (71) is rotatably connected to two conveying wheels (72), one side of the bracket (71) is fixedly connected to a motor (73), an output end of the motor (73) is drivingly connected to one of the conveying wheels (72), both sides of the two conveying wheels (72) are fixedly connected to fixed sleeves (74), and the water storage pipe (120) passes through the two fixed sleeves (74) and passes between the two conveying wheels (72); A cutting assembly (8) is provided at the front end of the base plate (2), and the cutting assembly (8) includes a second bracket (81), the upper end of the second bracket (81) is rotatably connected to a rotating shaft (82), the front end of the rotating shaft (82) is fixedly connected to a housing (83), a third motor (84) is fixedly mounted on the housing (83), a saw blade (85) is fixedly mounted on the output end of the third motor (84), a fourth motor (86) is mounted on the second bracket (81), and the output end of the fourth motor (86) is transmission-connected to the rotating shaft (82).
2. The restoration equipment for mine ecological protection according to claim 1, characterized in that: The linear conveying assembly (3) includes a mounting frame (31), the mounting frame (31) is fixedly mounted on the base plate (2), sprockets (32) are rotatably connected at both ends of the mounting frame (31), a chain (33) is transmission-connected between the two sprockets (32), a motor 1 (34) is fixedly mounted on one side of the mounting frame (31), an output end of the motor 1 (34) is transmission-connected to one of the sprockets (32), and the movable plate (4) is fixedly mounted on the chain (33).
3. The restoration equipment for mine ecological protection according to claim 1, characterized in that: A blocking assembly (9) is mounted on the rotating shaft (82), and the blocking assembly (9) comprises a swing frame (91) fixedly connected to the rotating shaft (82). A foaming gun (92) and a linear drive component (93) are fixedly mounted on the front end of the swing frame (91). The output end of the linear drive component (93) is used to push a trigger (924) of the foaming gun (92), causing the foaming gun (92) to spray a foaming agent toward the end of the water storage pipe (120), thereby blocking the end of the water storage pipe (120).
4. The restoration equipment for mine ecological protection according to claim 3, characterized in that: The foaming gun (92) comprises a gun body (921), a storage tank (922), a nozzle (923) and a trigger (924); the storage tank (922) is connected to the input end of the gun body (921); the trigger (924) is used to open and close the foaming gun (92); and the nozzle (923) is used to spray the foaming agent.
5. The restoration equipment for mine ecological protection according to claim 1, characterized in that: Fixed blocks (100) are fixedly connected to the upper positions of both ends of the interior of the mud delivery pipe (5), and a plurality of guide rods (101) are fixedly mounted on the two fixed blocks (100). The water storage pipe (120) passes through between the plurality of guide rods (101), thereby maintaining the water storage pipe (120) between the plurality of guide rods (101).
6. The restoration equipment for mine ecological protection according to claim 1, characterized in that: A notch (51) is provided at the lower side of the front end of the mud delivery pipe (5), and a tightening soft block (110) is fixedly connected to the position of the notch (51). A steel wire rope (111) is passed through the upper end of the movable plate (4), and one end of the steel wire rope (111) passes through the side wall of the mud delivery pipe (5) and is fixedly connected to the tightening soft block (110). The other end of the steel wire rope (111) is sleeved with a spring (112), and the spring (112) is used to reset the steel wire rope (111) in a direction away from the tightening soft block (110).
7. The restoration equipment for mine ecological protection according to claim 1, characterized in that: The bottom of the base plate (2) is hinged to the upper end of the lifting end of the lifting vehicle (1), and a hydraulic cylinder (11) is provided at the upper end of the lifting end of the lifting vehicle (1). The two ends of the hydraulic cylinder (11) are respectively hinged to the lifting end of the lifting vehicle (1) and the bottom of the base plate (2).
8. A method for using the mine ecological protection restoration equipment according to any one of claims 1 to 7, characterized in that: The following steps are involved: Step 1: Use a lifting vehicle (1) to lift the linear conveying assembly (3) to the position of the greening hole (140), so that the front end of the mud delivery pipe (5) is aligned with the greening hole (140); Step 2: Use the linear conveying component (3) to drive the mud delivery pipe (5) to move, so that the mud delivery pipe (5) is inserted into the interior of the greening hole (140); Step 3: Use the linear conveying component (3) to drive the mud delivery pipe (5) to gradually move out of the greening hole (140). During this process, the mud pump pumps the mud with plant seeds into the interior of the greening hole (140) through the mud delivery pipe (6) and the mud delivery pipe (5). The pipeline conveying component (7) conveys the water storage pipe (120), so that the water storage pipe (120) passes through the interior of the mud delivery pipe (5) and is inserted into the mud inside the greening hole (140). The moving speed of the mud delivery pipe (5) is consistent with the speed at which the water storage pipe (120) is conveyed. Step 4: After the mud pumping is completed, the water storage pipe (120) is cut off from the front end of the mud delivery pipe (5) using the cutting assembly (8).
Citation Information
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