Automatic batching and processing device for soil stabilizer
By designing an automatic batching and processing device for soil stabilizers, precise control of material usage was achieved, solving the problem of substandard performance caused by operator errors in manual addition, and ensuring the strength and stability of the soil stabilizer.
Patent Information
- Application Number
- CN202422711757.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-07
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-11-07
AI Technical Summary
In existing soil stabilizer processing equipment, errors occur when operators manually add inorganic mineral materials, affecting the performance of the soil stabilizer and causing the strength and stability indicators to fail to meet the standards.
Design an automatic batching and processing device for soil stabilizer, comprising a receiving tank, a feeding component, a mixing component, a screening component, a discharge component, and a support component. The device precisely controls the amount of material used through a quantitative batching and mixing structure, and automatically mixes and stirs the material to the optimal ratio.
This reduces material addition errors, ensures the performance of soil stabilizers, and guarantees that strength and stability indicators meet standards.
Smart Images

Figure CN223587082U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to soil processing technical field especially relates to a soil solidifying agent automatic batching processing device. BACKGROUND
[0002] Soil solidifying agent is a kind of solidifying material that can significantly improve soil engineering performance, it occurs physical and (or) chemical reaction after being mixed with soil and water, enhances the strength and stability of soil.
[0003] Now, curing agent processing device when using, operating personnel need according to experience or pre-set formula, manually various inorganic mineral materials are added to processing device according to proportion, different operating personnel when measuring material can exist certain error, this can influence the performance of soil solidifying agent, so that the strength, stability and other indexes of soil are not up to standard.
[0004] Therefore, according to the curing agent processing device described above when using, operating personnel need according to experience or pre-set formula, manually various inorganic mineral materials are added to processing device according to proportion, different operating personnel when measuring material can exist certain error, this can influence the performance of soil solidifying agent, so that the strength, stability and other indexes of soil are not up to standard, a processing device that can automatically control the amount of batching can be designed, by setting quantitative batching mixing structure, the amount of material can be accurately controlled, automatically mixed and stirred to the best ratio, reduce error, and ensure the performance of soil solidifying agent. SUMMARY
[0005] In order to overcome the curing agent processing device in the prior art when using, operating personnel need according to experience or pre-set formula, manually various inorganic mineral materials are added to processing device according to proportion, different operating personnel when measuring material can exist certain error, this can influence the performance of soil solidifying agent, so that the strength, stability and other indexes of soil are not up to standard.
[0006] The technical scheme of the utility model is as follows: a soil solidifying agent automatic batching processing device, including accommodating jar, discharge assembly, mixing assembly, screening assembly, discharge assembly, support assembly, mounting sheet, connecting sheet, fixed sheet, batching hopper, batching pipe, flow valve, control pipe, control motor and drip tube, the top surface of accommodating jar is provided with discharge assembly, the middle part of discharge assembly is provided with mixing assembly, the bottom of mixing assembly is provided with screening assembly, the bottom of screening assembly is provided with discharge assembly, the outer periphery of accommodating jar is provided with support assembly, the top of mixing assembly is provided with mounting sheet, the outer periphery of mounting sheet is provided with connecting sheet, the top of connecting sheet is provided with fixed sheet, one side of fixed sheet is provided with batching hopper, the bottom of batching hopper is provided with batching pipe, one end of batching pipe is provided with flow valve.
[0007] Preferably, the catalyst solution to be mixed is accommodated in the accommodating tank, the solution is poured into the accommodating tank through the discharging assembly, and is sealed, the solution is stirred through the mixing assembly, the particulate matter in the catalyst solution is adsorbed and removed through the screening assembly, the catalyst solution is led out through the discharging assembly, the overall device is supported through the supporting assembly to avoid tilting during operation, the connecting plate is connected to the rotating motor through the mounting plate, the fixing plate is mounted and fixed through the connecting plate, the ingredient hopper is mounted on the top of the accommodating tank through the fixing plate, the solution to be configured is put into the ingredient hopper, the solution is introduced into the tank body through the ingredient pipe, the flow rate and the amount of the solution are controlled through the flow valve, the flow valve is connected to the control motor through the control pipe, the control motor is controlled through the control circuit, and the solution is dropped into the tank body through the dropping pipe.
[0008] Preferably, the discharging assembly comprises a cover plate, a feeding port and a feeding pipe, the top surface of the accommodating tank is provided with the cover plate, the top surface of the cover plate is provided with the feeding port, and the outer portion of the feeding port is provided with the feeding pipe.
[0009] Preferably, the mixing assembly comprises a rotating motor, a rotating shaft, connecting columns, stirring columns and a fixing block, the top surface of the cover plate is provided with the rotating motor, the bottom end of the rotating motor is connected with the rotating shaft, the outer periphery of the rotating shaft is provided with a plurality of groups of the connecting columns, one end of the connecting column is connected with the stirring column, and the bottom portion of the rotating shaft is provided with the fixing block.
[0010] Preferably, the screening assembly comprises a screening plate, screen holes and mounting blocks, the bottom surface of the rotating shaft is provided with the screening plate, the surface of the screening plate is provided with a plurality of screen holes at equal intervals, and the side surface of the screening plate is provided with the mounting blocks at equal intervals around the periphery, and the bottom surface of the mounting block is provided with the fixing bolt at the connecting position of the accommodating tank.
[0011] Preferably, the discharging assembly comprises a discharging hopper, a connecting pipe, a discharge pipe and a control valve, the bottom portion of the accommodating tank is provided with the discharging hopper, the bottom surface of the discharging hopper is provided with the connecting pipe, the inner portion of the connecting pipe is connected with the discharge pipe, and the inner portion of the discharge pipe is provided with the control valve.
[0012] Preferably, the supporting assembly comprises a fixing ring, connecting plates, supporting columns and reinforcing columns, the outer periphery of the accommodating tank is provided with the fixing ring, the outer periphery of the fixing ring is provided with a plurality of connecting plates at equal intervals, one side of the connecting plate is provided with the supporting column, and one side of the supporting column is provided with the reinforcing column.
[0013] Preferably, one side of the flow valve is provided with the control pipe, one end of the control pipe is provided with the control motor, and the bottom portion of the flow valve is provided with the dropping pipe.
[0014] The utility model discloses beneficial effects:
[0015] 1. Compared to traditional solidifying agent processing equipment, which requires operators to manually add various inorganic mineral materials to the equipment according to experience or a pre-set formula, this processing equipment, by setting a quantitative batching and mixing structure, can accurately control the amount of materials used and automatically mix and stir to the optimal ratio, reducing errors and ensuring the performance of the soil solidifying agent. Attached Figure Description
[0016] Figure 1 The diagram shown is a first three-dimensional structural schematic of an automatic batching and processing device for soil stabilizer according to this utility model.
[0017] Figure 2 The diagram shown is a second three-dimensional structural schematic of an automatic batching and processing device for soil stabilizer according to this utility model.
[0018] Figure 3 The diagram shown is a side-view perspective of the three-dimensional structure of an automatic batching and processing device for soil stabilizer according to this utility model.
[0019] Figure 4 The diagram shown is a partial three-dimensional structural schematic of an automatic batching and processing device for soil stabilizer according to this utility model.
[0020] Explanation of reference numerals in the attached drawings: 1. Container tank; 201. Cover plate; 202. Feed inlet; 203. Feed pipe; 301. Rotary motor; 302. Rotating shaft; 303. Connecting column; 304. Stirring column; 305. Fixing block; 401. Screening plate; 402. Screen hole; 403. Mounting block; 404. Fixing bolt; 501. Discharge hopper; 502. Connecting pipe; 503. Discharge pipe; 504. Control valve; 601. Fixing ring; 602. Connecting plate; 603. Support column; 604. Reinforcing column; 701. Mounting piece; 702. Connecting piece; 703. Fixing piece; 704. Batching hopper; 705. Batching pipe; 706. Flow valve; 707. Control pipe; 708. Control motor; 709. Drip pipe. Detailed Implementation
[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0022] Please see Figure 1The utility model provides a kind of embodiment: a kind of soil stabilizer automatic batching processing device, including containing jar 1, discharge assembly, mixing assembly, screening assembly, discharge assembly, support assembly, mounting piece 701, connecting piece 702, fixed sheet 703, batching hopper 704, batching pipe 705, flow valve 706, control pipe 707, control motor 708 and drip tube 709, containing jar 1 top is provided with discharge assembly, the middle part of discharge assembly is provided with mixing assembly, the bottom of mixing assembly is provided with screening assembly, the bottom of screening assembly is provided with discharge assembly, the outer periphery of containing jar 1 is provided with support assembly, the top of mixing assembly is provided with mounting piece 701, the outer periphery of mounting piece 701 is provided with connecting piece 702, the top of connecting piece 702 is provided with fixed sheet 703, one side of fixed sheet 703 is provided with batching hopper 704, the bottom of batching hopper 704 is provided with batching pipe 705, one end of batching pipe 705 is provided with flow valve 706.
[0023] Please refer to Figures 2-4 In the embodiment, the discharge assembly includes a cover plate 201, a feed inlet 202 and a feed pipe 203. The top of the containing jar 1 is provided with the cover plate 201. The top of the cover plate 201 is provided with the feed inlet 202. The outside of the feed inlet 202 is provided with the feed pipe 203. In use, the containing jar 1 is sealed by the cover plate 201 to prevent liquid from splashing. The catalyst to be removed and filtered is put into the containing jar 1 through the feed inlet 202. The discharge structure is connected through the feed pipe 203. The stirring assembly includes a rotating motor 301, a rotating shaft 302, connecting columns 303, stirring columns 304 and fixing blocks 305. The top of the cover plate 201 is provided with the rotating motor 301. The bottom of the rotating motor 301 is connected with the rotating shaft 302. The outer periphery of the rotating shaft 302 is provided with a plurality of groups of connecting columns 303. One end of the connecting column 303 is connected with the stirring column 304. The bottom of the rotating shaft 302 is provided with the fixing block 305. In use, the rotating shaft 302 is rotated by the rotating motor 301. The connecting column 303 is rotated to stir the solution by the rotating shaft 302. The stirring column 304 is installed on the surface of the rotating shaft 302 by the connecting column 303. The solution is fully mixed by the stirring column 304. The rotating shaft 302 is fixed in the middle of the containing jar 1 by the fixing block 305. The screening assembly includes a screening plate 401, screening holes 402 and mounting blocks 403. The bottom of the rotating shaft 302 is provided with the screening plate 401. A plurality of screening holes 402 are provided on the surface of the screening plate 401. The side of the screening plate 401 is provided with a plurality of mounting blocks 403 around. The bottom of the mounting block 403 is provided with a fixing bolt 404 at the connecting position with the containing jar 1. In use, the screening holes 402 of the screening plate 401 are installed on the bottom of the rotating shaft 302. The larger objects in the solution are screened out by the screening holes 402. The screening plate 401 is installed in the containing jar 1 by the mounting block 403. The screening plate 401 is disassembled and cleaned by the fixing bolt 404.
[0024] The discharge assembly comprises a discharge hopper 501, a connecting pipe 502, a discharge pipe 503 and a control valve 504, the bottom of the containing tank 1 is provided with the discharge hopper 501, the bottom surface of the discharge hopper 501 is provided with the connecting pipe 502, the inside of the connecting pipe 502 is connected with the discharge pipe 503, the inside of the discharge pipe 503 is provided with the control valve 504, in use, the mixed solution is introduced into the connecting pipe 502 through the discharge hopper 501, the discharge pipe 503 is connected with the discharge hopper 501 through the connecting pipe 502, the solution is discharged through the discharge pipe 503, the liquid discharge is controlled through the control valve 504, the support assembly comprises a fixing ring 601, a connecting plate 602, a support column 603 and a reinforcing column 604, the outer periphery of the containing tank 1 is sleeved with the fixing ring 601, the outer periphery of the fixing ring 601 is provided with a plurality of connecting plates 602 at equal intervals, one side of the connecting plate 602 is provided with the support column 603, one side of the support column 603 is provided with the reinforcing column 604, in use, the containing tank 1 and the connecting plate 602 are fixedly connected through the fixing ring 601, the support column 603 is connected through the connecting plate 602, the whole device is supported through the support column 603 and the reinforcing column 604, so as to avoid tilting, one side of the flow valve 706 is provided with a control pipe 707, one end of the control pipe 707 is provided with a control motor 708, the bottom of the flow valve 706 is provided with a drip pipe 709.
[0025] In use, first, the containing tank 1 is closed through the cover plate 201 to prevent liquid splashing, the catalyst to be removed and filtered is put in through the feed port 202, the discharge structure is connected through the feed pipe 203, the rotating shaft 302 is driven to rotate through the rotating motor 301, the connecting column 303 is driven to rotate and stir the solution through the rotating shaft 302, the stirring column 304 is installed on the surface of the rotating shaft 302 through the connecting column 303, the solution is fully mixed through the stirring column 304, the rotating shaft 302 is fixed in the middle of the containing tank 1 through the fixing block 305, the sieve plate 401 is installed in the inside of the containing tank 1 through the mounting block 403, the larger objects in the solution are sieved out through the sieve hole 402, the sieve plate 401 is installed in the inside of the containing tank 1 through the mounting block 403, the sieve plate 401 is disassembled and cleaned through the fixing bolt 404;
[0026] Then, the mixed solution is introduced into the connecting pipe 502 through the discharge hopper 501, the discharge pipe 503 is connected with the discharge hopper 501 through the connecting pipe 502, the solution is discharged through the discharge pipe 503, the liquid discharge is controlled through the control valve 504, the containing tank 1 is fixedly connected with the connecting plate 602 through the fixing ring 601, the supporting column 603 is connected through the connecting plate 602, the overall device is supported through the supporting column 603 and the reinforcing column 604, and the overturning is avoided, one side of the flow valve 706 is provided with the control pipe 707, one end of the control pipe 707 is provided with the control motor 708, and the bottom of the flow valve 706 is provided with the dropping pipe 709.
[0027] Through the above steps, the catalyst solution to be mixed is contained in the containing tank 1, the solution is poured into the containing tank 1 through the discharging assembly and is sealed, the solution is stirred through the mixing assembly, the particulate matters in the catalyst solution are adsorbed and removed through the screening assembly, the catalyst solution is led out through the discharging assembly, the overall device is supported through the supporting assembly, the overturning in the work is avoided, the connecting piece 702 is connected with the rotating motor 301 through the mounting piece 701, the fixed piece 703 is mounted through the connecting piece 702, the batching hopper 704 is mounted at the top of the containing tank 1 through the fixed piece 703, the solution to be configured is put in through the batching hopper 704, the solution is introduced into the tank body through the batching pipe 705, the flow rate and the dosage of the solution are controlled through the flow valve 706, the flow valve 706 is connected with the control motor 708 through the control pipe 707, the solution is dropped into the tank body through the dropping pipe 709 through the control circuit of the control motor 708.
[0028] The embodiments of the utility model are described in detail above in combination with the drawings, but the utility model is not limited to the above-mentioned embodiments, and various changes can be made within the knowledge range of the person skilled in the art without departing from the purpose of the utility model.
Claims
1. An automatic soil stabilizer batching processing device comprising a containing tank (1); characterized in that: The application further comprises a discharging assembly, a mixing assembly, a screening assembly, a discharging assembly, a supporting assembly, a mounting plate (701), a connecting plate (702), a fixing plate (703), a batching hopper (704), a batching pipe (705), a flow valve (706), a control pipe (707), a control motor (708), and a dripping pipe (709). The top surface of the containing tank (1) is provided with the discharging assembly, the middle part of the discharging assembly is provided with the mixing assembly, the bottom end of the mixing assembly is provided with the screening assembly, the bottom end of the screening assembly is provided with the discharging assembly, the outer periphery of the containing tank (1) is provided with the supporting assembly, the top of the mixing assembly is provided with the mounting plate (701), the outer periphery of the mounting plate (701) is provided with the connecting plate (702), the top of the connecting plate (702) is provided with the fixing plate (703), one side of the fixing plate (703) is provided with the batching hopper (704), the bottom of the batching hopper (704) is provided with the batching pipe (705), and one end of the batching pipe (705) is provided with the flow valve (706).
2. The automatic soil stabilizer batching processing device according to claim 1, characterized in that: The discharging assembly comprises a cover plate (201), a feeding port (202), and a feeding pipe (203). The top surface of the containing tank (1) is provided with the cover plate (201), one side of the top surface of the cover plate (201) is provided with the feeding port (202), and the outside of the feeding port (202) is provided with the feeding pipe (203).
3. A soil stabilizer automatic batching processing device according to claim 2, characterized in that: The stirring assembly comprises a rotating motor (301), a rotating shaft (302), a connecting column (303), a stirring column (304), and a fixing block (305). The top surface of the cover plate (201) is provided with the rotating motor (301), the bottom end of the rotating motor (301) is connected with the rotating shaft (302), the outer periphery of the rotating shaft (302) is provided with a plurality of groups of connecting columns (303) at equal intervals, one end of the connecting column (303) is connected with the stirring column (304), and the bottom of the rotating shaft (302) is provided with the fixing block (305).
4. The automatic soil stabilizer batching processing device according to claim 3, characterized in that: The screening assembly comprises a screening plate (401), a screen hole (402), and a mounting block (403). The bottom surface of the rotating shaft (302) is provided with the screening plate (401), a plurality of screen holes (402) are provided on the surface of the screening plate (401) at equal intervals, and the side surface of the screening plate (401) is provided with the mounting block (403) at equal intervals. The bottom surface of the mounting block (403) is provided with a fixing bolt (404) at the connecting position with the containing tank (1).
5. A soil stabilizer automatic batching processing device according to claim 4, characterized in that: The discharging assembly comprises a discharging hopper (501), a connecting pipe (502), a discharge pipe (503), and a control valve (504). The bottom of the containing tank (1) is provided with the discharging hopper (501), the bottom surface of the discharging hopper (501) is provided with the connecting pipe (502), the inside of the connecting pipe (502) is connected with the discharge pipe (503), and the inside of the discharge pipe (503) is provided with the control valve (504).
6. A soil stabilizer automatic batching processing device according to claim 4, characterized in that: The support assembly comprises a fixing ring (601), a connecting plate (602), a support column (603) and a reinforcing column (604), the outer periphery of the containing tank (1) is sleeved with the fixing ring (601), the outer periphery of the fixing ring (601) is equidistantly provided with a plurality of connecting plates (602), one side of the connecting plate (602) is provided with the support column (603), and one side of the support column (603) is provided with the reinforcing column (604).
7. A soil stabilizer automatic batching processing device according to claim 6, characterized in that: One side of the flow valve (706) is provided with a control pipe (707), one end of the control pipe (707) is provided with a control motor (708), and the bottom of the flow valve (706) is provided with a drop pipe (709).