CN220406630U - Soil normal position restoration integration equipment - Google Patents

Soil normal position restoration integration equipment Download PDF

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Publication number
CN220406630U
CN220406630U CN202321760099.6U CN202321760099U CN220406630U CN 220406630 U CN220406630 U CN 220406630U CN 202321760099 U CN202321760099 U CN 202321760099U CN 220406630 U CN220406630 U CN 220406630U
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China
Prior art keywords
stirring
conveying belt
tank
stirring tank
soil
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CN202321760099.6U
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Chinese (zh)
Inventor
张语情
彭城
任文涛
曹筱越
姚佳斌
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Shandong Hangtai Engineering Technology Co ltd
Shanghai Shenghang Taijia Environmental Technology Co ltd
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Shandong Hangtai Engineering Technology Co ltd
Shanghai Shenghang Taijia Environmental Technology Co ltd
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Abstract

The utility model discloses an integrated equipment for in-situ soil restoration, which relates to the technical field of soil restoration, and comprises: the support frame is provided with an upper conveying belt and a lower conveying belt from top to bottom in sequence, and the upper conveying belt and the lower conveying belt are connected through a first belt transmission; the stirring tank is communicated with the front side and the rear side of the stirring tank and is provided with an activating agent tank and a preparation treatment reagent, and the stirring tank can intensively stir and mix the activating agent and the preparation treatment reagent entering the stirring tank; the fluid supplementing and stirring combined assembly is movably arranged at the upper end part of the stirring tank; the driving assembly is fixedly arranged on the supporting frame and is an acting force source of the fluid supplementing and stirring combined assembly, the upper conveying belt and the lower conveying belt. The whole process of this application adopts single motor drive, and the linkage is good, has effectively reduced the cost of soil normal position restoration integration equipment.

Description

Soil normal position restoration integration equipment
Technical Field
The utility model relates to the technical field of soil remediation, in particular to an in-situ soil remediation integrated device.
Background
According to the characteristics and differences of deep and shallow pollution restoration of soil, integrated soil in-situ restoration equipment with special structures for deep soil restoration and shallow soil restoration needs to be designed. The existing in-situ soil restoration equipment is not specially structurally designed, and a deep soil restoration mode is adopted when deep soil restoration and shallow soil restoration are required at the same time. When the deep soil is specifically restored, the injection well needs to be tunneled first, and then the medicament is injected into the injection well. Due to the fact that the injection well is driven, the working procedures are numerous, the repairing cost is high, the repairing process is not rapid and convenient, the repairing efficiency is low, and the integrated efficient repairing cannot be achieved.
When the soil is restored, the restoration effect can be obtained by preparing a liquid mixed medicament from solid medicinal powder and a liquid medicament. And if part of the solid medicine powder is placed in the liquid medicine for a long time, the physical and chemical properties of the medicine powder can be easily changed, so that the using effect is reduced. Therefore, it is necessary to prepare the solid powder and the liquid medicine. In the publication No. CN113020240B, a plurality of power devices are arranged, so that energy consumption is reduced, and the cost of soil remediation is increased. In order to solve the problem, an integrated device for in-situ soil remediation is provided.
Disclosure of Invention
The utility model aims to provide an in-situ soil remediation integrated device, which solves the problems that the existing soil remediation device provided in the background art is provided with a plurality of power devices, so that energy is consumed and the soil remediation cost is increased.
In order to achieve the above purpose, the present utility model provides the following technical solutions: soil normal position restoration integration equipment, restore integration equipment including: the device comprises a supporting frame, wherein an upper conveying belt and a lower conveying belt are sequentially arranged on the supporting frame from top to bottom, cavities for storing medicaments are formed on the outer sides of the upper conveying belt and the lower conveying belt, adjacent cavities are arranged at equal intervals, the upper conveying belt and the lower conveying belt are connected through a first belt transmission, and poking teeth are arranged on the outer sides of the lower conveying belt at intervals; the stirring tank is communicated with the front side and the rear side of the stirring tank and is provided with an activator tank and a preparation treatment reagent tank, and the stirring tank can intensively stir and mix the activator and the preparation treatment reagent entering the stirring tank; the fluid infusion stirring combination assembly is movably arranged at the upper end part of the stirring tank, and can convert driving force into stirring driving force of the stirring tank and fluid infusion adsorption driving force; the driving assembly is fixedly arranged on the supporting frame and is an acting force source of the fluid infusion stirring combined assembly, the upper conveying belt and the lower conveying belt.
Preferably, the liquid supplementing and stirring combined assembly comprises a push plate, one end part of the push plate, far away from the support frame, is connected with an adapter sleeve through a bearing, a closed spiral groove is formed in the adapter sleeve, a rotating shaft is arranged in the adapter sleeve, stirring teeth are arranged below the rotating shaft, guide rods are arranged on the left side and the right side of the rotating shaft, the guide rods are fixedly arranged on the push plate, a piston plate is fixedly arranged at the lower end part of the guide rods, the piston plate is movably inserted into the stirring tank, conical holes are formed in the piston plate in an annular mode, filter screens are arranged at the upper end part and the lower end part of the conical holes, and blocking balls are arranged in the conical holes.
Preferably, the driving assembly comprises a double-shaft motor, the lower end part of the double-shaft motor is provided with a switching shaft at intervals, the switching shaft is rotationally connected to the supporting frame, the double-shaft motor is connected with the switching shaft through a gear set, and the switching shaft is connected with the upper conveying belt driving shaft through a second belt transmission.
Preferably, a sliding block is fixedly installed on the rotating shaft and is in sliding connection with the inside of the spiral groove.
Preferably, the output shaft of the double-shaft motor is connected with the push plate through threads.
Preferably, the guide rod passes through the stirring tank to be connected with the piston plate, and the center lines of the guide rod and the adapter sleeve are parallel to each other.
Preferably, the stirring tank is connected with the activator tank and the preparation treatment reagent tank through communicating pipes, and the communicating pipes are provided with one-way valves.
Compared with the prior art, the utility model has the beneficial effects that:
this soil normal position restoration integration equipment, through setting up drive assembly, fluid infusion stirring and unite subassembly and last conveyer belt and lower conveyer belt, whole process adopts single motor drive, and the linkage nature is good, has effectively reduced the cost of soil normal position restoration integration equipment.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic front view of the present utility model;
FIG. 3 is a schematic top view of the present utility model;
FIG. 4 is a schematic partial cross-sectional view of the present utility model;
FIG. 5 is an enlarged view of FIG. 4 at M in accordance with the present utility model;
fig. 6 is a schematic diagram of the connection between the rotary shaft and the adapter sleeve according to the present utility model.
In the figure: 1. a support frame; 2. an upper conveyor belt; 3. a lower conveyor belt; 31. tooth shifting; 4. a first belt drive; 5. a second belt drive; 6. a drive assembly; 61. a biaxial motor; 62. a transfer shaft; 63. a gear set; 7. a fluid supplementing and stirring combined component; 71. a push plate; 72. an adapter sleeve; 721. a spiral groove; 73. a guide rod; 731. a piston plate; 732. a tapered bore; 733. a filter screen; 734. blocking balls; 74. a rotating shaft; 741. a slide block; 75. stirring teeth; 8. preparing a treatment reagent tank; 9. an activator tank; 10. a stirring tank.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Examples: referring to fig. 1-6, the present utility model provides a technical solution: soil normal position restoration integration equipment, restoration integration equipment is including: the support frame 1 is square below support frame 1 and distributes there is the truckle, and the truckle can be convenient for this integration equipment to remove, and the truckle is the wheel of stopping in area.
Further, install in proper order from top to bottom at support frame 1 and go up conveyer belt 2 and lower conveyer belt 3, go up conveyer belt 2 and lower conveyer belt 3 lateral surface and all be equipped with the cavity of depositing the medicament, adjacent cavity equidistant setting is gone up and is connected through first belt drive 4 between conveyer belt 2 and the lower conveyer belt 3, and wherein, first belt drive 4 includes first band pulley, second band pulley and drive belt, and the drive belt is located first band pulley and second band pulley outside, so can be convenient for realize the transmission of power. The outer side surface of the lower conveying belt 3 is provided with shifting teeth 31 at intervals, and the shifting teeth 31 can realize shifting operation on soil in the moving process of the lower conveying belt 3;
the stirring tank 10, the lower outlet of the stirring tank 10 is provided with a valve, and the mixture in the stirring tank 10 can be conveyed to the upper conveying belt 2 by the timing opening of the valve. The front side and the rear side of the stirring tank 10 are communicated with an activator tank 9 and a preparation treatment reagent tank 8, wherein the inside of the activator tank 9 and the preparation treatment reagent tank 8 is respectively provided with an activator and a preparation treatment reagent, and the preparation treatment reagent can be some oxidation reagents or stabilizing reagents. The stirring tank 10 is connected with the activator tank 9 and the preparation treatment reagent tank 8 through communicating pipes, and the communicating pipes are provided with one-way valves. The stirring tank 10 and the activator tank 9 are communicated, so that the treatment reagent tank 8 can be prepared for automatically supplementing liquid in the stirring tank 10; the stirring tank 10 can intensively stir and mix the activator and the preparation treatment agent entering the stirring tank;
referring to fig. 1, 2 and 4, the fluid-replenishing stirring combination assembly 7 is movably mounted at the upper end of the stirring tank 10, and the driving force can be converted into stirring driving force of the stirring tank 10 and fluid-replenishing adsorption driving force through the fluid-replenishing stirring combination assembly 7;
further, the fluid infusion stirring combination assembly 7 comprises a push plate 71, an adapter sleeve 72 is connected to one end of the push plate 71 far away from the support frame 1 through a bearing, a closed spiral groove 721 is formed in the adapter sleeve 72, a rotating shaft 74 is arranged in the adapter sleeve 72, a sliding block 741 is fixedly mounted on the rotating shaft 74, and the sliding block 741 is slidably connected in the spiral groove 721. After the push plate 71 is provided with the driving force of the upward or downward movement, since the slider 741 always slides inside the spiral groove 721, the rotation shaft 74 can be rotated during the up-and-down movement of the adapter sleeve 72. The stirring teeth 75 are provided below the rotation shaft 74, and the rotation of the rotation shaft 74 can mix the solid and liquid in the stirring tank 10 by the stirring teeth 75.
Further, guide rods 73 are arranged on the left side and the right side of the rotating shaft 74, the guide rods 73 are fixedly arranged on the push plate 71, piston plates 731 are fixedly arranged at the lower end parts of the guide rods 73, the piston plates 731 are movably inserted into the stirring tank 10, the guide rods 73 penetrate through the stirring tank 10 to be connected with the piston plates 731, and the center lines of the guide rods 73 and the adapter sleeve 72 are parallel to each other. At this time, the piston plate 731 can be moved upward or downward inside the agitator tank 10 by the fixing action of the guide rod 73 with the push plate 71 when the push plate 71 moves upward or downward.
Specifically, a conical hole 732 is formed in the piston plate 731 in a ring shape, a filter screen 733 is disposed at the upper and lower ends of the conical hole 732, and a blocking ball 734 is disposed in the conical hole 732. When the piston plate 731 moves upward, at this time, the blocking ball 734 moves downward from the upper outlet of the tapered hole 732 so that the mixed liquid above the piston plate 731 can enter below the piston plate 731; in contrast, when the piston plate 731 moves downward, at this time, the check valve on the communicating pipe is opened, so that the activator and the preparation processing reagent can be extracted from the activator tank 9 and the preparation processing reagent tank 8, respectively, and the same driving assembly is used for stirring and fluid infusion, thereby effectively reducing the use cost of the integrated equipment.
Referring to fig. 1, a driving assembly 6 is shown, the driving assembly 6 is fixedly mounted on the supporting frame 1, and the driving assembly 6 is a source of force of the fluid-supplying stirring combination assembly 7, the upper conveyor belt 2 and the lower conveyor belt 3. The driving assembly 6 comprises a double-shaft motor 61, a switching shaft 62 is arranged at the lower end part of the double-shaft motor 61 at intervals, the switching shaft 62 is rotatably connected to the supporting frame 1, the double-shaft motor 61 is connected with the switching shaft 62 through a gear set 63, the gear set 63 comprises a first bevel gear and a second bevel gear, and the first bevel gear is meshed with the second bevel gear. The transfer shaft 62 is connected to the drive shaft of the upper conveyor belt 2 via the second belt drive 5. The output shaft of the biaxial motor 61 is screwed with the push plate 71. Wherein, biax motor 61 passes through the wire and is connected with control switch, opens the back at biax motor 61, and output shaft and lower output shaft rotate simultaneously on biax motor 61, through the setting up effect of gear train 63, can transmit the effort of biax motor 61 to on the changeover axle 62, and through the effect of second belt drive 5, with the drive effort transmission on the upper conveyor belt 2. In the whole process, single motor driving is adopted, the linkage is good, and the cost of the soil in-situ remediation integrated equipment is effectively reduced.
This kind of soil normal position restoration integration equipment, during operation: the upper output shaft and the lower output shaft of the double-shaft motor 61 can be simultaneously rotated by opening the double-shaft motor 61, the acting force of the double-shaft motor 61 can be transmitted to the adapter shaft 62 by the arrangement function of the gear set 63, and the driving acting force is transmitted to the upper conveying belt 2 by the action of the second belt transmission 5; the acting force can be transmitted to the lower conveying belt 3 through the connection function of the first belt transmission 4, in the process of the movement of the upper conveying belt 2, the mixture stirred by the stirring tank 10 falls onto the upper conveying belt 2, and falls onto the lower conveying belt 3 through the transportation of the upper conveying belt 2, and after being stirred by the stirring teeth 31, the mixture can be uniformly placed in soil with a certain depth, so that the uniform treatment effect of the soil is realized; meanwhile, due to the threaded connection between the upper output shaft of the double-shaft motor 61 and the push plate 71, the slider 741 always slides in the spiral groove 721, so that the rotating shaft 74 can rotate during the up-and-down movement of the adapter sleeve 72; the stirring teeth 75 can mix the solid and liquid in the stirring tank 10 by rotating the rotating shaft 74; by the fixing action of the guide rod 73 and the push plate 71, at this time, the piston plate 731 can be moved upward or downward inside the agitation tank 10; when the piston plate 731 moves upward, at this time, the blocking ball 734 moves downward from the upper outlet of the tapered hole 732 so that the mixed liquid above the piston plate 731 can enter below the piston plate 731; in contrast, when the piston plate 731 moves downwards, at this time, the check valve on the communicating pipe is opened, so that the activator and the preparation treatment reagent can be extracted from the activator tank 9 and the preparation treatment reagent tank 8 respectively, and the whole process adopts single motor driving, so that the linkage is good, and the cost of the soil in-situ remediation integrated equipment is effectively reduced.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (7)

1. An integrated equipment is restoreed to soil normal position, its characterized in that: the repair integrated equipment comprises: the drug storage device comprises a support frame (1), wherein an upper conveying belt (2) and a lower conveying belt (3) are sequentially arranged on the support frame (1) from top to bottom, cavities for storing drugs are formed in the outer side surfaces of the upper conveying belt (2) and the lower conveying belt (3), adjacent cavities are arranged at equal intervals, the upper conveying belt (2) and the lower conveying belt (3) are connected through a first belt transmission (4), and poking teeth (31) are arranged on the outer side surfaces of the lower conveying belt (3) at intervals; the stirring tank (10) is communicated with the front side and the rear side of the stirring tank (10) and is provided with an activator tank (9) and a preparation treatment reagent tank (8), and the stirring tank (10) can intensively stir and mix the activator and the preparation treatment reagent entering the stirring tank; the fluid infusion stirring combination assembly (7), the fluid infusion stirring combination assembly (7) is movably arranged at the upper end part of the stirring tank (10), and the driving force can be converted into stirring driving force of the stirring tank (10) and fluid infusion adsorption driving force through the fluid infusion stirring combination assembly (7); the driving assembly (6), driving assembly (6) fixed mounting is on support frame (1), driving assembly (6) are the effort source of fluid infusion stirring combination subassembly (7), last conveyer belt (2) and lower conveyer belt (3).
2. The integrated soil in-situ remediation device of claim 1, wherein: the liquid supplementing and stirring combined assembly (7) comprises a push plate (71), one end part of the push plate (71) far away from a supporting frame (1) is connected with an adapter sleeve (72) through a bearing, a closed spiral groove (721) is formed in the adapter sleeve (72), a rotating shaft (74) is arranged in the adapter sleeve (72), stirring teeth (75) are arranged below the rotating shaft (74), guide rods (73) are arranged on the left side and the right side of the rotating shaft (74), the guide rods (73) are fixedly arranged on the push plate (71), piston plates (731) are fixedly arranged at the lower end parts of the guide rods (73), the piston plates (731) are movably inserted into a stirring tank (10), conical holes (732) are formed in the piston plates (731) in a ring shape, filter screens (733) are arranged at the upper end parts and the lower end parts of the conical holes (732), and blocking balls (734) are arranged in the conical holes (732).
3. An integrated soil in situ remediation device according to claim 2 wherein: the driving assembly (6) comprises a double-shaft motor (61), a transfer shaft (62) is arranged at the lower end part of the double-shaft motor (61) at intervals, the transfer shaft (62) is rotationally connected to the supporting frame (1), the double-shaft motor (61) is connected with the transfer shaft (62) through a gear set (63), and the transfer shaft (62) is connected with a driving shaft of the upper conveying belt (2) through a second belt transmission (5).
4. A soil in situ remediation integrated apparatus according to claim 3 wherein: and a sliding block (741) is fixedly arranged on the rotating shaft (74), and the sliding block (741) is connected inside the spiral groove (721) in a sliding way.
5. The integrated soil in-situ remediation device of claim 4, wherein: the output shaft of the double-shaft motor (61) is connected with the push plate (71) through threads.
6. The integrated soil in-situ remediation device of claim 5, wherein: the guide rod (73) penetrates through the stirring tank (10) to be connected with the piston plate (731), and the center lines of the guide rod (73) and the adapter sleeve (72) are parallel to each other.
7. The integrated soil in-situ remediation device of claim 6, wherein: the stirring tank (10) is connected with the activator tank (9) and the preparation treatment reagent tank (8) through communicating pipes, and the communicating pipes are provided with one-way valves.
CN202321760099.6U 2023-07-06 2023-07-06 Soil normal position restoration integration equipment Active CN220406630U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321760099.6U CN220406630U (en) 2023-07-06 2023-07-06 Soil normal position restoration integration equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321760099.6U CN220406630U (en) 2023-07-06 2023-07-06 Soil normal position restoration integration equipment

Publications (1)

Publication Number Publication Date
CN220406630U true CN220406630U (en) 2024-01-30

Family

ID=89647425

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321760099.6U Active CN220406630U (en) 2023-07-06 2023-07-06 Soil normal position restoration integration equipment

Country Status (1)

Country Link
CN (1) CN220406630U (en)

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