Mobile vegetation cement soil screening, feeding and spray-seeding intelligent integrated device

The mobile integrated intelligent device for screening, feeding, and spraying vegetated cement-soil has solved the clogging problem in the process of filling and discharging vegetated cement-soil in slope ecological protection, achieving efficient screening and feeding, and improving construction efficiency and safety.

CN223943200UActive Publication Date: 2026-02-27CHINA THREE GORGES UNIV
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Patent Information

Application Number
CN202520116035.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-17
Publication Date
2026-02-27
Estimated Expiration
2035-01-17

AI Technical Summary

Technical Problem

In slope ecological protection, the filling and feeding process of vegetated cement soil can easily lead to pipe blockage, pump overload or idling, and the vegetated cement soil after on-site mixing is prone to solidified soil clods and impurities, affecting the spraying efficiency.

Method used

Design a mobile intelligent integrated device for screening, feeding, and spraying vegetated cement soil, including a feeding system, a vibrating screen, and a conveyor belt. The rotation speed of the vibrating screen and the conveyor belt is controlled by a motor system to achieve screening and feeding of vegetated cement soil. A filler spraying system is provided to prevent clogging and improve construction efficiency.

Benefits of technology

It effectively removes solidified soil clods from vegetated cement soil, controls the conveying rate, reduces energy consumption, increases construction speed, reduces manpower input, prevents pump backflow, and improves construction progress.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223943200U_ABST
Patent Text Reader

Abstract

The utility model discloses a movable vegetation cement soil screening, feeding and spray-seeding intelligent integrated device which comprises a discharging system, and the discharging system is composed of a discharging hopper and a conveying belt. A conveying belt is arranged below the front end of the conveying belt and is in rolling connection with a rolling shaft, and the rolling shaft is driven by a motor system and a belt to rotate; a vibrating screen is arranged between the conveying belts, one end of each conveying belt is connected with a discharging groove, the other end of each conveying belt is connected with a baffle, and the discharging grooves face the lower filler spray-seeding system. The discharging system, the vibrating screen and the conveying belt are all connected to the surface of the iron stand. The bottom of the vibrating screen is matched with the vibrating system; one side of the iron stand is connected with a traction hook, and the bottom of the iron stand is connected with moving wheels. The utility model aims to solve the problems that an appliance is easily damaged and a user is easily injured to cause danger when the existing cutting ring is used for sampling soil, and has the characteristics of reducing the soil sampling difficulty and avoiding the risk of hurting the user.
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Description

TECHNICAL FIELD

[0001] The utility model relates to mechanical device technical field especially relates to a mobile type planting growth cement soil screening, loading and intelligent integrated device of spraying. BACKGROUND

[0002] In the process of slope ecological protection, the operating personnel usually adopts the spraying technology to spray the planting growth cement soil, plant seed and other materials to the slope surface, uses its planting growth performance or the strength of the material itself to reach the purpose of ecological protection to the slope surface.

[0003] Before spraying, there are still many deficiencies in the filling, discharging and pumping of the planting growth cement soil. First, in the filling process, too much filling is easy to cause pipeline blockage and pump overload, and insufficient filling is easy to cause the pump to idle, causing energy loss. Secondly, in the discharging aspect, due to the diversity of the planting growth cement soil ingredients, the planting growth cement soil stirred by the mixer on site is easy to appear solidified soil block or impurities due to the on-site environment and the properties of the material itself, etc., causing the blockage of the pumping and spraying process, affecting the progress of the entire ecological slope protection. Therefore, a mobile type planting growth cement soil screening, loading and intelligent integrated device of spraying is needed to solve the above problems. SUMMARY

[0004] The utility model wants to solve the technical problem to provide a mobile type planting growth cement soil screening, loading and intelligent integrated device of spraying.

[0005] In order to solve the above technical problems, the utility model adopts the technical scheme: a mobile type planting growth cement soil screening, loading and intelligent integrated device of spraying, which comprises a discharging system composed of a discharging hopper and a conveyor belt; a conveyor belt is arranged below the front end of the conveyor belt, the conveyor belt is rollingly connected with a rolling shaft, and the rolling shaft is driven to rotate by a motor system and a belt; a vibrating screen is arranged between the conveyor belt and the conveyor belt, one end of the conveyor belt is connected with a discharging chute, the other end is connected with a baffle, and the discharging chute faces a filling and spraying system below; the discharging system, the vibrating screen and the conveyor belt are connected to the surface of an iron stand; the bottom of the vibrating screen is matched with a vibrating system; a traction hook is connected to one side of the iron stand, and a moving wheel is connected to the bottom of the iron stand.

[0006] Further, the surface of the motor system is provided with a speed control panel, a switch and a power supply, and is connected with a rotating shaft core, the rotating shaft core is provided with threads, the end head is convenient for dismounting to meet different functional requirements, the speed control switch can control the speed of low, medium and high levels, and the power supply is arranged on the surface of the motor, which is convenient for field mobile operation; the three rotating speeds of the motor can be controlled, and the rotating speed and the joint use of the switch are realized through computer programming.

[0007] Further, the conveyor belt is provided with a baffle plate at both ends and the right end, and the lower part of the baffle plate at the right end is a fiber brush, which prevents the growth of cement soil from falling while not affecting the conveying of the conveyor belt.

[0008] Further, the discharging chute is divided into two radial outlets and is arranged above the filler spraying system.

[0009] Preferably, the vibrating screen comprises a U-shaped frame structure composed of a first screen eave and a fixed support, and a wire mesh is connected to the upper surface of the frame structure; the fixed support is fixed to the iron stand by a ring.

[0010] Preferably, the vibrating system comprises a first motor, and a rod-shaped structure is connected to the output end of the first motor to strike the bottom of the vibrating screen at a fixed frequency.

[0011] Preferably, the rod-shaped structure comprises a Z-shaped shaft, one end of the Z-shaped shaft is connected to the output end of the first motor, and the other end is connected to a sleeve; the outer surface of the Z-shaped shaft is connected to one end of a support arm through a bolt, and the other end of the support arm is in contact with the bottom of the wire mesh.

[0012] Further, the force arm of the Z-shaped shaft is used to realize the operation of the entire vibrating screen system, and the length of the force arm of the Z-shaped shaft determines the vibration amplitude, and the vibration achieves the purpose of screening the solidified soil blocks in the growth of cement soil.

[0013] A conveyor belt is arranged below the vibrating screen system and is welded to the iron stand, the conveyor belt is driven to rotate by a belt-driven rolling shaft, the belt is connected to the motor system, and the motor system controls the running speed of the conveyor belt to achieve controllability of the feeding rate of the growth of cement soil.

[0014] Further, the left end of the conveyor belt is provided with two discharging chutes with separate radial flows, which guide the growth of cement soil and further improve the optimization of the next process, that is, when the engineering progress requirement is high, two filler spraying systems can be arranged below to speed up the engineering progress.

[0015] Further, the filler spraying system comprises a cylinder screen, a screen eave, a handle, a spring, a vibrating table, a power supply, a switch, a blocking layer, a reserved hole, a limiting arm, a rotating drum, a discharge port, a filler hopper, a filler cylinder, a one-way plate, a Y-shaped connecting piece, a material spraying pipe, and a pump, the screen surface is made of iron wire crisscrossing and is fixed inside the screen eave, and the screen eave is reserved to a certain height to prevent the growth of cement soil from falling during the up-down vibration.

[0016] Further, the screen surface is pre-provided with a handle, and the two handles are connected through a spring as a medium, so that the entire vibrating table can work normally, the vibrating table is connected to a power supply on the right side, the surface switch is opened, the screen surface is driven to complete the up-down vibration, the falling growth of cement soil is screened again, and the effect of subdividing the growth of cement soil is achieved.

[0017] Further, the filler spraying system is internally provided with a blocking layer, which is fixedly inclined inside and leaves a gap on the right side, not completely closed, which ensures that the three rotating cylinders can be filled at the same time, facilitating the control of the speed of the vegetation cement soil filler.

[0018] Further, the filler spraying system is internally provided with a motor system, which is tightly wrapped by a limiting arm and welded and fixed, wherein the power replacement of the motor system is realized through the reserved hole on the surface, the motor system is connected with the rotating cylinder through the rotating disc, and the rotating cylinder is driven by the motor system to revolve around the rotating shaft, the rotating cylinder is wrapped by the external filler hopper, but is not affected by the rotation of the filler hopper.

[0019] Further, the filler hopper is provided with two discharge openings, which are arranged between the bottom of the rotating cylinder and the top of the filler cylinder, and the interval between the two holes is three times the distance of the filler hopper, facilitating the acceptance of the vegetation cement soil in the rotating cylinder.

[0020] Further, the two filler hoppers at the bottom of the filler spraying system are connected with the material spraying pipe and the pumping machine through a Y-shaped connecting piece, and a one-way plate is arranged at the interface, which is blocked at the bottom of the filler cylinder when the air pressure is backflushed, preventing the backflow of vegetation cement soil when the pumping machine pumps material.

[0021] Preferably, the filler spraying system is a cylindrical structure, the inner wall of the top of the cylindrical structure is provided with a cylinder screen, the outer side of the cylinder screen is connected with an annular second eave, the outer surface of the top of the cylindrical structure is connected with ear handles, and springs are arranged between the ear handles; the outer surface of the top of the cylindrical structure is connected with a vibrating table, a power supply and a switch.

[0022] Further, the vibrating table and the ear handle are arranged on the surface of the cylinder screen, the vibrating table is provided with a switch and a power supply, and the up-and-down vibration of the cylinder screen is realized through the vibrating table; the ear handle is divided into upper and lower parts, the lower ear handle is T-shaped, and the springs are arranged between the ear handles.

[0023] Preferably, the inner wall of the cylindrical structure is provided with an inclined blocking layer, one side of the blocking layer is provided with an opening for discharging; a reserved hole is formed in the side surface of the cylindrical structure; a filler hopper in the form of a groove is arranged at the bottom of the cylindrical structure, and two discharge openings are reserved at the bottom of the filler hopper for accepting the uniformly sieved vegetation cement soil.

[0024] Preferably, the side wall of the filler hopper is connected with a second motor through a limiting arm, the output end of the second motor is connected with a rotating shaft, and a plurality of movable rotating cylinders are circumferentially arranged on the inner wall of the filler hopper; the outer surface of the rotating shaft is connected with a rotating disc, which is connected with the outer surfaces of the plurality of rotating cylinders through buckling.

[0025] Further, the rotary drum is wrapped by the filler hopper, and the upper part is connected in an inner-outer wrapping form, that is, the inner diameter of the upper part is greater than the outer diameter of the lower part, and two discharge ports are reserved at the bottom of the filler hopper for receiving the sieved uniform vegetation cement soil.

[0026] Preferably, the rotary drum is open at both upper and lower ends, the top opening of the rotary drum is matched with the blocking layer for receiving materials, and the moving path of the bottom end of the rotary drum passes through the discharge port and is matched with the discharge port for discharging materials.

[0027] Preferably, the bottom of the discharge port is connected with a filler cylinder, the bottom of the filler cylinder is connected with a spraying pipe through a Y-shaped connector, one end of the spraying pipe is provided with a pumping machine, and a one-way plate is arranged at the bottom of the filler cylinder for controlling the air pressure to cause backflushing.

[0028] Compared with the prior art, the utility model has the beneficial effects that:

[0029] 1. The vibration screen of the utility model rotates through the motor system, drives the loaded Z-shaped shaft to realize left-right vibration, and controls the vibration amplitude through the force arm of the Z-shaped shaft, so that the purpose of screening the solidified soil blocks in the vegetation cement soil is achieved.

[0030] 2. The conveying rate of the vegetation cement soil is controlled through the motor system, so as to prevent the entire feeding process from being overloaded, blocked, and insufficiently supplied to cause the motor to idle and consume energy.

[0031] 3. When the construction progress is chased on site, the transportation speed of the vegetation cement soil can be improved, the vegetation cement soil is divided and arranged through the discharge chute, an additional filler spraying system is arranged at the discharge chute to work cooperatively, and the entire construction rate is improved.

[0032] 4. Only one operator is needed to turn on and off each device during the operation of the utility model, and the operator does not need to supervise the operation of the device throughout the process, so that the input cost of the operator is greatly reduced.

[0033] 5. The one-way plate is used to realize the final discharging, and the air pressure backflushing caused by the pumping of the pumping machine is prevented to prevent the device from being damaged. BRIEF DESCRIPTION OF DRAWINGS

[0034] Fig. 1 is a schematic diagram of the overall structure of the utility model.

[0035] Fig. 2 is a schematic diagram of the detailed structure of each vibration screen of the utility model.

[0036] Fig. 3 is a schematic diagram of each component of the filler spraying system of the utility model.

[0037] Fig. 4 is a schematic diagram of the cross section at 1-1 of the utility model.

[0038] Figure 5 Fig. 5 is a schematic diagram of the position and connection of the utility model.

[0039] In the figure: the blanking system 1, the vibrating screen 2, the wire mesh 2.1, the first screen eave 2.2, the fixed support 2.3, the support arm 2.4, the sleeve 2.5, the bolt 2.6, the Z-shaped shaft 2.7, the ring hoop 2.8, the motor system 3, the rotating shaft 3.4, the rolling shaft 4, the conveyor belt 5, the blanking groove 6, the filler spraying system 7, the screen cylinder 7.1, the second screen eave 7.2, the ear handle 7.3, the spring 7.4, the vibrating table 7.5, the power supply 7.6, the switch 7.7, the blocking layer 7.8, the reserved hole 7.9, the limiting arm 7.10, the rotating drum 7.11, the discharge port 7.12, the filler hopper 7.13, the filler cylinder 7.14, the one-way plate 7.15, the Y-shaped connector 7.16, the spraying pipe 7.17, the pumping machine 7.18, the belt 8, the iron stand 9, the rotating disc 10, the second motor 11, the first motor 12, the traction hook 13, the moving wheel 14, the baffle 15. DETAILED DESCRIPTION

[0040] Example one:

[0041] As Figures 1-5 shown, a mobile vegetation cement soil screening, feeding and spraying intelligent integrated device, comprising a blanking system 1, the blanking system 1 is composed of a blanking hopper and a conveyor belt; the front end of the conveyor belt is provided with a conveyor belt 5, the conveyor belt 5 is in rolling connection with the rolling shaft 4, the rolling shaft 4 is driven to rotate by the motor system 3 and the belt 8; a vibrating screen 2 is arranged between the conveyor belt and the conveyor belt 5, one end of the conveyor belt 5 is connected with a blanking groove 6, the other end is connected with a baffle 15. The blanking groove 6 faces the filler spraying system 7 below; the blanking system 1, the vibrating screen 2 and the conveyor belt 5 are all connected to the surface of the iron stand 9; the bottom of the vibrating screen 2 cooperates with the vibrating system; one side of the iron stand 9 is connected with a traction hook 13, and the bottom of the iron stand 9 is connected with a moving wheel 14.

[0042] Further, the motor system 3 is provided with a speed control panel, a switch 7.7 and a power supply 7.6, and is connected with a rotating shaft core, the rotating shaft core is provided with threads, which is convenient for disassembling the end to meet different functional requirements, the speed control switch 7.7 can control the low, medium and high three levels of speed matching, the power supply 7.6 is placed on the surface of the motor, which is convenient for field mobile operation; the three rotating speeds of the motor can be controlled, and the rotating speed and the joint use of the switch 7.7 are realized by computer programming.

[0043] Further, the conveyor belt 5 is provided with a baffle 15 at both ends and the right end.

[0044] Further, the blanking groove 6 has two radial outlets, which is placed above the filler spraying system 7.

[0045] Preferably, the vibrating screen 2 comprises a U-shaped frame structure composed of a first screen eave 2.2 and a fixed support 2.3, and the upper surface of the frame structure is connected with a wire mesh 2.1; the fixed support 2.3 is fixed on the iron stand 9 through a hoop 2.8.

[0046] Preferably, the vibrating system comprises a first motor 12, and a rod-shaped structure is connected to the output end of the first motor 12 to strike the bottom of the vibrating screen 2 at a fixed frequency.

[0047] Preferably, the rod-shaped structure comprises a Z-shaped shaft 2.7, one end of which is connected to the output end of the first motor 12, and the other end is connected to a sleeve 2.5; the outer surface of the Z-shaped shaft 2.7 is connected to one end of a support arm 2.4 through a bolt 2.6, and the other end of the support arm 2.4 is in contact with the bottom of the wire mesh 2.1.

[0048] Further, the Z-shaped shaft 2.7 realizes the operation of the entire vibrating screen 2 system, and the length of the Z-shaped shaft 2.7 determines the vibration amplitude, and the vibration achieves the purpose of screening the solidified soil in the vegetation cement soil.

[0049] A conveyor belt 5 is arranged below the vibrating screen 2 system and is welded to the iron stand 9, the conveyor belt 5 is driven to roll by a rolling shaft 4 through a belt 8, the belt 8 is connected with the motor system 3, and the motor system 3 controls the running speed of the conveyor belt 5 to achieve the controllability of the feeding speed of the vegetation cement soil.

[0050] Further, the left end of the conveyor belt 5 is provided with two discharging grooves 6 for different flows, which guide the vegetation cement soil and further improve the optimization of the next process, that is, when the engineering progress requirement is higher, two filling and spraying systems 7 can be arranged below respectively to speed up the engineering progress.

[0051] Further, the filling and spraying system 7 is composed of a cylinder screen, a screen eave, a handle 7.3, a spring 7.4, a vibrating table 7.5, a power supply 7.6, a switch 7.7, a blocking layer 7.8, a reserved hole 7.9, a limiting arm 7.10, a rotating drum 7.11, a discharge port 7.12, a filling hopper 7.13, a filling cylinder 7.14, a one-way plate 7.15, a Y-shaped connecting piece, a spraying pipe 7.17 and a pumping machine 7.18, the screen surface is made of iron wire crisscrossing, and is fixed in the screen eave, the screen eave is reserved to a certain height to prevent the vegetation cement soil from falling during the up-down vibration.

[0052] Further, the screen surface is pre-installed with ear handles 7.3, and is connected by spring 7.4 as medium between the two ear handles 7.3, so that the whole vibrating table 7.5 can work normally, the vibrating table 7.5 is connected with power supply 7.6 on the right side, and the surface switch 7.7 is opened, so as to drive the screen to complete the up-down vibration, and the falling plant-growing cement soil is secondarily screened, so as to achieve the effect of subdividing the plant-growing cement soil.

[0053] Further, the filler spraying system 7 is internally provided with a blocking layer 7.8, the blocking layer is obliquely fixed internally, and a certain gap is left on the right side, which is not completely closed, and the gap ensures that the three rotating drums 7.11 can be filled at the same time, so as to facilitate the control of the plant-growing cement soil filling speed.

[0054] Further, the filler spraying system 7 is internally provided with a motor system 3, which is tightly wrapped by a limiting arm 7.10 and is welded and fixed, wherein the power supply 7.6 of the motor system 3 is replaced through the reserved hole 7.9 on the surface, the motor system is buckled connected with the rotating drum through the rotating disc, and the rotating drum is revolved around the rotating shaft driven by the motor system; the rotating drum 7.11 is wrapped by the external filler hopper 7.13, but is not affected by the rotation of the filler hopper 7.13.

[0055] Further, the filler hopper 7.13 is pre-installed with two discharge ports 7.12, the discharge ports 7.12 are arranged between the bottom of the rotating drum 7.11 and the top of the filler cylinder 7.14, and the interval between the two holes is three distances of the filler hopper 7.13, so as to facilitate the receiving of the plant-growing cement soil in the rotating drum 7.11.

[0056] Further, the two filler hoppers 7.13 at the bottom of the filler spraying system 7 are connected with the material spraying pipe 7.17 and the pumping machine 7.18 through Y-shaped connecting pieces, and a one-way plate 7.15 is arranged at the interface, the one-way plate 7.15 is blocked at the bottom of the filler cylinder 7.14 when the air pressure is backflushed, which is used for preventing the backflow phenomenon of the plant-growing cement soil when the pumping machine 7.18 pumps the material.

[0057] Preferably, the filler spraying system 7 is a cylindrical structure, the inner wall of the top of the cylindrical structure is provided with a cylinder screen, the cylinder screen is externally connected with an annular second eave 7.2, the top outer surface of the cylindrical structure is connected with ear handles 7.3, and the spring 7.4 is arranged between the ear handles 7.3; the top outer surface of the cylindrical structure is connected with a vibrating table 7.5, a power supply 7.6 and a switch 7.7.

[0058] Further, the cylinder screen surface is provided with the vibrating table 7.5 and the ear handle 7.3, the vibrating table 7.5 is provided with the switch 7.7 and the power supply 7.6, and the up-down vibration of the cylinder screen is realized through the vibrating table 7.5; the ear handle 7.3 is divided into upper and lower two parts, the lower ear handle 7.3 is T-shaped, and the spring 7.4 is arranged between the ear handles 7.3.

[0059] Preferably, the inner wall of the cylindrical structure is provided with an inclined blocking layer 7.8, one side of the blocking layer 7.8 is provided with an opening for discharging; the side surface of the cylindrical structure is provided with a reserved hole 7.9; the bottom of the cylindrical structure is provided with a slot-shaped filler hopper 7.13, and the bottom of the filler hopper 7.13 is provided with two discharge ports 7.12 for receiving uniformly sieved vegetation cement soil.

[0060] Preferably, the side wall of the filler hopper 7.13 is connected with a second motor 11 through a limiting arm 7.10, the output end of the second motor 11 is connected with a rotating shaft 3.4, and a plurality of movable rotating drums 7.11 are circumferentially arranged on the inner wall of the filler hopper 7.13; the outer surface of the rotating shaft 3.4 is connected with a rotating disc 10 which is clamped with the outer surfaces of the plurality of rotating drums 7.11 through buckles.

[0061] Further, the rotating drum 7.11 is wrapped by the filler hopper 7.13, and the upper part is connected in an inner-outer wrapping form, that is, the inner diameter of the upper part is greater than the outer diameter of the lower part, and two discharge ports 7.12 are reserved at the bottom of the filler hopper 7.13 for receiving uniformly sieved vegetation cement soil.

[0062] Preferably, the rotating drum 7.11 is open at both upper and lower ends, the top opening of the rotating drum 7.11 is matched with the blocking layer 7.8 for receiving materials, and the moving path of the bottom end of the rotating drum 7.11 passes through the discharge port 7.12 and is matched with the discharge port 7.12 for discharging materials.

[0063] Preferably, the bottom of the discharge port 7.12 is connected with a filler cylinder 7.14, the bottom of the filler cylinder 7.14 is connected with a spraying pipe 7.17 through a Y-shaped connector 7.16, and one end of the spraying pipe 7.17 is provided with a pumping machine 7.18; the bottom of the filler cylinder 7.14 is provided with a one-way plate 7.15 for controlling backflushing caused by air pressure.

[0064] The working principle of the utility model is as follows:

[0065] Normal operation:

[0066] Step one: in the use process of the utility model, first, the mixed vegetation cement soil is poured into the discharging device 1 through the shovel, the vegetation cement soil is rotated in the discharging hopper 1.1 following the conveying belt 1.2, and the vegetation cement soil is uniformly conveyed to the vibrating screen 2; at this time, a low speed is set in the motor system 3 speed control panel 3.3, and the switch 3.2 is turned on, so that the entire motor system 3 drives the Z-shaped shaft to rotate, the vibrating screen 3 is vibrated left and right above the conveying belt 5, the vegetation cement soil is sieved once, the solidified soil blocks and lump impurities in the vegetation cement soil are removed, and the conveying belt 5 is rotated following the belt 8 at the same time; at this time, the motor system 12 connected with the belt 8 should be set at a medium speed, the vegetation cement soil that has undergone primary sieving is conveyed to the discharging chute 6 at a constant speed, and the vegetation cement soil is guided to the filler spraying system 7 through the discharging chute 6.

[0067] Step two: when the primary screened bio-cement soil is transported to the filler spraying system 7, the drum screen 7.1 is controlled by the vibration table 7.5 to realize up and down oscillation, and the bio-cement soil is screened again, so that the substrate further removes impurities and soil blocks, and fully plays its bio-performance. The substrate screened twice is screened into the lower blocking layer 7.8, the blocking layer 7.8 controls the filling speed of the bio-cement soil, and parallel working control only simultaneously fills the three rotating drums 7.11, the motor system 11 connected with the rotating drum 7.11 should set the speed to a high speed, and control each rotating drum 7.11 to fill only 1 / 3, so as to prevent the bio-cement soil from being filled too much at one time to cause internal blockage, the rotating drum 7.11 is driven by the rotating disc 10 to rotate to the discharge port 7.12, and the substrate falls into the filler cylinder 7.14, the rotating drum 7.11 fills one filler cylinder 7.14 every three, when the first filler cylinder 7.14 is filled, the rotating drum 7.11 rotates to the next discharge port 7.12, and the above filling measures are repeated, two filler cylinders 7.14 work alternately, the filling of the bio-cement soil is maximized, and the bio-cement soil filling is not timely to avoid the idling of the pump 7.18.

[0068] Step three: after the filler cylinder 7.14 is filled, the one-way plate 7.15 is automatically opened to make the bio-cement soil fall to the Y-shaped connecting piece, and then the one-way plate 7.15 is closed, the pump 7.18 pressurizes and pumps the finally mixed bio-cement soil, when the current pumping is about to end, the one-way plate 7.15 at the bottom of the next filler cylinder 7.14 is opened to replace the work, and the above steps are repeated to realize the continuity of the bio-cement soil spraying, until the current spraying operation is completed.

[0069] Urgent operation (catch up with the progress of the project): the basic steps are the same as the normal operation described above, but in order to improve the working speed and catch up with the progress of the operation, the motor system 11 rotating with the belt 8 in step one is adjusted to a high speed, and the bio-cement soil is divided into the next device through the discharge chute 6, wherein a parallel spraying system 7 is additionally arranged in the next work, both filler spraying systems 7 should be set to a high speed as in the normal operation, so as to prevent the rotating drum 7.11 from rotating not in time, which causes the blocking layer 7.8 to be blocked.

Claims

1. A mobile intelligent integrated device for screening, feeding and spraying of the vegetation cement soil, characterized in that, The utility model provides a kind of filling system, including blanking system (1), blanking system (1) is by blanking hopper and conveying belt composition;Conveying belt front end below is provided with conveyor belt (5), conveyor belt (5) is rotatably connected with rolling shaft (4), rolling shaft (4) is rotated by motor system (12) and belt (8) drive;Vibrating screen (2) is arranged between conveying belt and conveyor belt (5), conveyor belt (5) one end is connected with blanking groove (6), other end is connected with baffle (15), blanking groove (6) is towards below's filling spray system (7);Blanking system (1), vibrating screen (2) and conveyor belt (5) are all connected in iron stand (9) surface;Vibrating screen (2) bottom is cooperated with vibration system;Iron stand (9) one side is connected with traction hook (13), and iron stand (9) bottom is connected with moving wheel (14).

2. The mobile intelligent integrated device for screening, feeding and spraying of the vegetation cement soil according to claim 1, characterized in that, The vibrating screen (2) includes a U-shaped frame structure composed of a first screen eave (2.2) and a fixed support (2.3), and the upper surface of the frame structure is connected with a wire mesh (2.1); the fixed support (2.3) is fixed on the iron stand (9) by a ring (2.8). 3.The mobile intelligent integrated device for screening, feeding and spraying of the plant-growing cement-soil according to claim 2, characterized in that, The vibration system includes a first motor (3), and the output end of the first motor (3) is connected with a rod-shaped structure to strike the bottom of the vibrating screen (2) at a fixed frequency.

4. The mobile intelligent integrated device for screening, feeding and spraying of the plant-growing cement-soil according to claim 3, characterized in that, The rod-shaped structure includes a Z-shaped shaft (2.7), one end of the Z-shaped shaft (2.7) is connected with the output end of the first motor (3), and the other end is connected with a sleeve (2.5); the outer surface of the Z-shaped shaft (2.7) is connected with one end of a support arm (2.4) by a bolt (2.6), and the other end of the support arm (2.4) is in contact with the bottom of the wire mesh (2.1).

5. The mobile intelligent integrated device for screening, feeding and spraying of the vegetation cement-soil according to claim 1, characterized in that, The filling spray system (7) is a cylindrical structure, the inner wall of the top of the cylindrical structure is provided with a cylinder screen (7.1), the outer side of the cylinder screen (7.1) is connected with an annular second screen eave (7.2), the outer surface of the top of the cylindrical structure is connected with a handle (7.3), and the spring (7.4) is arranged between the handles (7.3); the top of the cylindrical structure is connected with a vibration table (7.5), a power supply (7.6), and a switch (7.7).

6. The mobile intelligent integrated device for screening, feeding and spraying of the plant-growing cement-soil according to claim 5, characterized in that, The inner wall of the cylindrical structure is provided with an inclined blocking layer (7.8), and the blocking layer (7.8) is provided with an opening for discharging on one side; the side surface of the cylindrical structure is provided with a reserved hole (7.9); the bottom of the cylindrical structure is provided with a slot-shaped filling hopper (7.13), and the bottom of the filling hopper (7.13) is provided with two discharge openings (7.12) for receiving uniformly sieved plant cement soil.

7. The mobile intelligent integrated device for screening, feeding and spraying of the plant-growing cement-soil according to claim 6, characterized in that, The side wall of the filling hopper (7.13) is connected with a second motor (11) through a limiting arm (7.10), the output end of the second motor (11) is connected with a rotating shaft (3.4), and a plurality of movable rotating cylinders (7.11) are arranged on the inner wall of the filling hopper (7.13); the outer surface of the rotating shaft (3.4) is connected with a rotating disc (10) which is connected with the outer surfaces of the plurality of rotating cylinders (7.11) through buckles. 8.The mobile intelligent integrated device for screening, feeding and spraying of the plant-growing cement-soil according to claim 7, characterized in that, The upper and lower ends of the rotating cylinder (7.11) are both open, the top opening of the rotating cylinder (7.11) is matched with the blocking layer (7.8) to receive materials, and the moving path of the bottom end of the rotating cylinder (7.11) passes through the discharge opening (7.12) to cooperate with the discharge opening (7.12) to discharge materials. 9.The mobile intelligent integrated device for screening, feeding and spraying of the plant-growing cement-soil according to claim 7, characterized in that, The bottom of the discharge port (7.12) is connected with a filling cylinder (7.14), the bottom of the filling cylinder (7.14) is connected with a spraying pipe (7.17) through a Y-shaped connector (7.16), and one end of the spraying pipe (7.17) is provided with a pumping machine (7.18); the bottom of the filling cylinder (7.14) is provided with a one-way plate (7.15).