CN219906198U - Dangerous waste sludge treatment unloader - Google Patents

Dangerous waste sludge treatment unloader Download PDF

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Publication number
CN219906198U
CN219906198U CN202321680153.6U CN202321680153U CN219906198U CN 219906198 U CN219906198 U CN 219906198U CN 202321680153 U CN202321680153 U CN 202321680153U CN 219906198 U CN219906198 U CN 219906198U
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China
Prior art keywords
belt wheel
assembly
conveying
double
sludge
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CN202321680153.6U
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Chinese (zh)
Inventor
张青锋
于宏强
黄庆林
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Chongqing Yaohui Environmental Protection Co ltd
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Chongqing Yaohui Environmental Protection Co ltd
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Priority to CN202321680153.6U priority Critical patent/CN219906198U/en
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Publication of CN219906198U publication Critical patent/CN219906198U/en
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Abstract

The utility model belongs to the technical field of hazardous waste sludge treatment devices, and particularly relates to a hazardous waste sludge treatment discharging device, which comprises a mixing bucket and three conveying pipes, wherein an outlet of the mixing bucket is in butt joint with an inlet of each conveying pipe, and a spiral conveying shaft is rotatably arranged in each conveying pipe through a driving assembly; the outlet ends of the conveying pipes are provided with assembling tables together, the outlets of the conveying pipes penetrate through the assembling tables, the bottoms of the assembling tables are provided with screen baskets through sliding rails, one sides of the screen baskets are provided with fixing plates, and one sides of the fixing plates and one side of the assembling tables are provided with springs; the screen basket is connected with the driving assembly in a combined way through the linkage assembly and the stirring assembly, and is used for solving the problem that in the process of extruding the sludge by the extruding device and falling on the conveying device, the sludge falling on the conveying device is easy to be accumulated, the sludge cannot be spread on the conveying device in a dispersed way, and then the follow-up sludge conveying and drying are affected to some extent.

Description

Dangerous waste sludge treatment unloader
Technical Field
The utility model belongs to the technical field of hazardous waste sludge treatment devices, and particularly relates to a hazardous waste sludge treatment discharging device.
Background
The hazardous waste sludge is soil containing some hazardous waste, the hazardous waste comprises surface treated waste and nonferrous metal waste, the hazardous waste sludge is firstly mixed in proportion, and then is conveyed into a hopper for stirring and crushing, and then is extruded onto a conveying device by an extrusion device, and the conveying device is used for conveying and drying;
however, in the process of extruding the sludge by using the extruding device and falling on the conveying device, the sludge falling on the conveying device is easy to accumulate, and the sludge cannot be spread on the conveying device in a dispersing way, so that a certain influence is caused on the follow-up sludge conveying and drying.
Disclosure of Invention
Based on the problems mentioned in the background art, the utility model provides a dangerous waste sludge treatment blanking device, which is used for solving the problems that sludge falling on a conveying device is easy to accumulate and cannot be spread on the conveying device in a dispersing way in the process of extruding the sludge by an extruding device after mixing the sludge, and further, the follow-up sludge conveying and drying are affected to a certain extent.
The technical scheme adopted by the utility model is as follows:
the dangerous waste sludge treatment blanking device comprises a mixing hopper and three conveying pipes, wherein an outlet of the mixing hopper is in butt joint with an inlet of each conveying pipe, and a spiral conveying shaft is rotatably arranged in each conveying pipe through a driving assembly; the outlet end of each conveying pipe is provided with an assembling table, the outlet of each conveying pipe penetrates through the assembling table, the bottom of each assembling table is provided with a screen basket through a sliding rail, one side of each screen basket is provided with a fixing plate, and one side of each fixing plate and one side of each assembling table are provided with springs;
the screen basket is connected with the driving assembly in a combined way through the linkage assembly and the poking assembly.
On the basis of the technical scheme, the utility model also improves the following steps:
further, the driving assembly comprises a motor, a first belt wheel, a first double-groove belt wheel and a second double-groove belt wheel, the motor is arranged on a fixed table on one side of the conveying pipe far away from the assembly table, the first belt wheel is arranged on a motor driving shaft, and the motor driving shaft is connected with one of the spiral conveying shafts;
the first double-groove belt wheel and the second double-groove belt wheel are respectively arranged at the end parts of the other two spiral conveying shafts, the first belt wheel is connected with the first double-groove belt wheel through a first belt, and the first double-groove belt wheel is connected with the second double-groove belt wheel through a second belt.
Further, the linkage assembly comprises a transmission shaft, the transmission shaft is arranged on one side of the assembly table through a support, a linkage belt wheel is arranged on the transmission shaft, and the linkage belt wheel is connected with the second double-groove belt wheel through a linkage belt.
Further, stir the subassembly and include third band pulley, installation axle and rack, the third band pulley sets up on the transmission shaft, the installation axle passes through the stores pylon setting on the assembly table, the installation axle both ends are provided with fourth band pulley and incomplete gear, be connected through the third belt between third band pulley and the fourth band pulley, the rack sets up in screen basket one side, rack and incomplete gear engagement.
Further, one side of the assembly table is provided with a material guide plate, and the bottom of the material guide plate is provided with a magnetic plate through an adjusting component; the adjusting component comprises two L-shaped blocks, the two L-shaped blocks are arranged at the bottom of the guide plate, the two L-shaped blocks are internally provided with stabilizing columns in a clamping manner, the top ends of the stabilizing columns are connected with the magnetic plate, a connecting plate is arranged between the bottom ends of the stabilizing columns, and reset springs are arranged on columns, located between the bottom of the magnetic plate and the hook parts of the L-shaped blocks, of the stabilizing columns.
The utility model has the beneficial effects that:
1. through the combination of the arranged screen basket, the driving assembly, the linkage assembly, the stirring assembly and the spring, when sludge is stranded out by the spiral conveying shaft and falls on the screen basket, the driving assembly can drive the stirring assembly to operate after being driven by the linkage assembly, and when the stirring assembly operates, the screen basket can be driven to realize unidirectional movement, the spring is stretched, and the screen basket can realize reciprocating movement by combining with the pull-back action of the spring, so that the sludge falling on the screen basket is scattered and sieved on the conveying device, and the sludge is prevented from being accumulated on the conveying device;
2. through the combination of the arranged guide plate and the magnetic plate, the guide plate can guide the sludge reeled out by the spiral conveying shaft into the screen basket, the magnetic plate can enable the bottom of the guide plate to generate magnetic force, and when the sludge falls on the guide plate to move, fine metal particles in the sludge can be magnetically attached on the guide plate, so that the fine metal particles in the sludge are removed.
Drawings
The utility model can be further illustrated by means of non-limiting examples given in the accompanying drawings;
FIG. 1 is a block diagram of a hazardous waste sludge treatment blanking device of the present utility model;
FIG. 2 is a block diagram of a portion of the components of the hazardous waste sludge treatment blanking device of the present utility model;
FIG. 3 is a partial cross-sectional view of a hazardous waste sludge treatment blanking device of the present utility model.
The drawings are noted as follows:
1. a mixing hopper; 201. a delivery tube; 202. an assembly table; 203. a hanging rack; 204. a sliding rail; 205. a screw conveying shaft; 3. a drive assembly; 301. a motor; 302. a first pulley; 303. a first double-groove pulley; 304. a second double-groove pulley; 305. a first belt; 306. a second belt; 4. assembling plates; 401. extruding the hole area; 502. a rotating shaft; 503. a transmission belt wheel; 504. a driven pulley; 505. a transmission belt; 506. cutting off the rod; 6. a linkage assembly; 601. a transmission shaft; 602. a linkage belt wheel; 603. a linkage belt; 604. a drive bevel gear; 605. a driven bevel gear; 7. the assembly is stirred; 701. a third pulley; 702. a third belt; 703. a mounting shaft; 704. a fourth pulley; 705. an incomplete gear; 706. a rack; 8. a screen basket; 801. a fixing plate; 9. a spring; 10. a material guide plate; 11. a magnetic plate; 12. an adjustment assembly; 1201. an L-shaped block; 1202. a stabilizing column; 1203. a return spring; 1204. a connecting plate; 13. and (5) a support.
Detailed Description
As shown in fig. 1 to 3, a hazardous waste sludge treatment blanking device comprises a mixing bucket 1 and three conveying pipes 201, wherein the outlet of the mixing bucket 1 is in butt joint with the inlet of each conveying pipe 201, and a spiral conveying shaft 205 is rotatably arranged in each conveying pipe 201 through a driving component 3; the driving assembly 3 comprises a motor 301, a first pulley 302, a first double-grooved pulley 303 and a second double-grooved pulley 304, wherein the motor 301 is arranged on a fixed table on the side of the conveying pipe 201 away from the assembly table 202, the first pulley 302 is arranged on a driving shaft of the motor 301, and the driving shaft of the motor 301 is connected with one of the screw conveying shafts 205; the first double-groove belt pulley 303 and the second double-groove belt pulley 304 are respectively arranged at the end parts of the other two spiral conveying shafts 205, the first belt pulley 302 is connected with the first double-groove belt pulley 303 through a first belt 305, and the first double-groove belt pulley 303 is connected with the second double-groove belt pulley 304 through a second belt 306; when the motor 301 is started, one of the screw conveying shafts 205 can be directly driven to rotate and the first belt wheel 302 can be directly driven to rotate, after the first belt 305 and the first double-groove belt wheel 303, the second belt 306 and the second double-groove belt wheel 304 are driven, the other two screw conveying shafts 205 can be driven to rotate, and then the three screw conveying shafts 205 are finally driven to rotate, and when the three screw conveying shafts 205 rotate, the sludge in the mixing hopper 1 can be stranded out to the outlet end of the conveying pipe 201; when the sludge in the mixing hopper 1 is stranded to the outlet end of the conveying pipes 201, the sludge in each conveying pipe 201 can pass through the corresponding holes of the extrusion hole areas 401 on the assembly plate 4, so that the sludge can be extruded into a strip shape with consistent thickness;
referring to fig. 1 and 2, an assembling table 202 is commonly arranged at the outlet end of each conveying pipe 201, the outlet of each conveying pipe 201 penetrates through the assembling table 202, a screen basket 8 is arranged at the bottom of the assembling table 202 through a sliding rail 204, the screen basket 8 is connected with a driving assembly 3 in a combined way through a linkage assembly 6 and a stirring assembly 7, the linkage assembly 6 comprises a transmission shaft 601, the transmission shaft 601 is arranged at one side of the assembling table 202 through a support 13, a linkage belt wheel 602 is arranged on the transmission shaft 601, and the linkage belt wheel 602 is connected with a second double-groove belt wheel 304 through a linkage belt 603; when the second double-groove belt pulley 304 rotates, the transmission shaft 601 can be driven to rotate after the transmission belt 603 and the linkage belt pulley 602 are driven, the transmission bevel gear 604 can be driven to rotate when the transmission shaft 601 rotates, the driven bevel gear 605 can be driven to rotate after the transmission bevel gear 604 is meshed with the driven bevel gear 605, the rotating shaft 502 is driven to rotate so as to drive the two transmission belt pulleys 503 to synchronously rotate, the corresponding driven belt pulleys 504 can be driven to rotate after the corresponding transmission belt 505 is driven to rotate when the two transmission belt pulleys 503 rotate, the two transmission belt 505 can further move, when the transmission belt pulley 503 rotates clockwise, the cutting rod 506 on the inner belt of the transmission belt 505 close to the assembly plate 4 can move along the top to the bottom of the assembly plate 4, and the strip-shaped sludge extruded from the extrusion hole area 401 can be cut into equal-length segments in the continuous moving process of each cutting rod 506, so that the cut-off and thinning of the twisted sludge can be performed;
referring to fig. 1 and 3, a guide plate 10 is arranged at one side of an assembly table 202, and a magnetic plate 11 is arranged at the bottom of the guide plate 10 through an adjusting component 12; the adjusting assembly 12 comprises two L-shaped blocks 1201, the two L-shaped blocks 1201 are arranged at the bottom of the material guiding plate 10, stabilizing columns 1202 are clamped in the two L-shaped blocks 1201, the top ends of the stabilizing columns 1202 are connected with the magnetic plate 11, connecting plates 1204 are arranged between the bottom ends of the two stabilizing columns 1202, return springs 1203 are arranged on columns of the stabilizing columns 1202 between the bottom of the magnetic plate 11 and the hook parts of the L-shaped blocks 1201, the arranged magnetic plate 11 can be attached to the bottom of the material guiding plate 10 under the action of the return springs 1203, the bottom of the material guiding plate 10 is promoted to generate magnetic force, and the arranged material guiding plate 10 can be used for carrying out holding and guiding of segmented sludge extruded from the extrusion hole areas 401 into the sieve basket 8; when the segmented sludge falls on the material guiding plate 10 from the extrusion hole area 401 and slides into the screen basket 8, fine metal particles in the sludge can be magnetically attached to the inner bottom of the material guiding plate 10, so that the fine metal particles in the sludge are removed; when the fine metal particles magnetically attached to the inner bottom of the material guiding plate 10 need to be cleaned, the connecting plate 1204 can be pulled downwards to enable the reset spring 1203 to shrink, so that the magnetic plate 11 is driven to move downwards to be separated from the adhesion with the outer bottom of the material guiding plate 10, at the moment, the bottom of the material guiding plate 10 loses magnetic force, after the bottom of the material guiding plate 10 loses magnetic force, the fine metal particles on the inner bottom of the material guiding plate 10 can slide along the inclined bottom of the material guiding plate 10, and therefore the fine metal particles on the material guiding plate 10 can be cleaned rapidly;
referring to fig. 1 and 2, the toggle assembly 7 includes a third pulley 701, a mounting shaft 703 and a rack 706, wherein the third pulley 701 is arranged on the transmission shaft 601, the mounting shaft 703 is arranged on the assembly table 202 through the hanger 203, a fourth pulley 704 and an incomplete gear 705 are arranged at two ends of the mounting shaft 703, the third pulley 701 is connected with the fourth pulley 704 through a third belt 702, the rack 706 is arranged at one side of the screen basket 8, and the rack 706 is meshed with the incomplete gear 705; in the rotation process of the transmission shaft 601, after being transmitted by the third belt pulley 701, the third belt 702 and the fourth belt pulley 704, the installation shaft 703 can be driven to rotate, then the incomplete gear 705 is driven to rotate, when the incomplete gear 705 rotates, teeth on the incomplete gear 705 are meshed with the racks 706, the screen basket 8 can be driven to realize unidirectional movement, a fixing plate 801 is arranged on one side of the screen basket 8, a spring 9 is arranged on one side of the fixing plate 801 and one side of the assembly table 202, the spring 9 can be stretched in the unidirectional movement process of the screen basket 8, after the teeth on the incomplete gear 705 are disengaged from the racks 706, the spring 9 is retracted, the screen basket 8 can be pulled back, further the screen basket 8 can be driven to move back, the continuous operation of the movement can enable the screen basket 8 to realize reciprocating movement, the sludge section falling into the screen basket 8 can be dispersed on the conveying device, and the subsequent drying effect of the sludge section is prevented from being accumulated on the conveying device.
The present utility model has been described in detail above. The description of the specific embodiments is only intended to aid in understanding the method of the present utility model and its core ideas. It should be noted that it will be apparent to those skilled in the art that various modifications and adaptations of the utility model can be made without departing from the principles of the utility model and these modifications and adaptations are intended to be within the scope of the utility model as defined in the following claims.

Claims (5)

1. The utility model provides a danger waste sludge handles unloader, includes mixing bucket (1) and three conveyer pipe (201), the export of mixing bucket (1) is docked with the import of each conveyer pipe (201), and each conveyer pipe (201) is inside to be provided with screw conveying axle (205) through drive assembly (3) rotatablely jointly; the method is characterized in that: an assembling table (202) is arranged at the outlet end of each conveying pipe (201) together, the outlet of each conveying pipe (201) penetrates through the assembling table (202), a screen basket (8) is arranged at the bottom of the assembling table (202) through a sliding rail (204), a fixing plate (801) is arranged at one side of the screen basket (8), and springs (9) are arranged at one sides of the fixing plate (801) and the assembling table (202);
the screen basket (8) is connected with the driving assembly (3) in a combined way through the linkage assembly (6) and the stirring assembly (7).
2. The hazardous waste sludge treatment blanking device according to claim 1, wherein: the driving assembly (3) comprises a motor (301), a first belt wheel (302), a first double-groove belt wheel (303) and a second double-groove belt wheel (304), wherein the motor (301) is arranged on a fixed table on one side of the conveying pipe (201) far away from the assembly table (202), the first belt wheel (302) is arranged on a driving shaft of the motor (301), and the driving shaft of the motor (301) is connected with one spiral conveying shaft (205);
the first double-groove belt wheel (303) and the second double-groove belt wheel (304) are respectively arranged at the end parts of the other two spiral conveying shafts (205), the first belt wheel (302) is connected with the first double-groove belt wheel (303) through a first belt (305), and the first double-groove belt wheel (303) is connected with the second double-groove belt wheel (304) through a second belt (306).
3. The hazardous waste sludge treatment blanking device according to claim 2, wherein: the linkage assembly (6) comprises a transmission shaft (601), the transmission shaft (601) is arranged on one side of the assembly table (202) through a support (13), a linkage belt wheel (602) is arranged on the transmission shaft (601), and the linkage belt wheel (602) is connected with a second double-groove belt wheel (304) through a linkage belt (603).
4. A hazardous waste sludge treatment blanking device according to claim 3, characterized in that: the stirring assembly (7) comprises a third belt wheel (701), a mounting shaft (703) and a rack (706), wherein the third belt wheel (701) is arranged on a transmission shaft (601), the mounting shaft (703) is arranged on an assembly table (202) through a hanging frame (203), two ends of the mounting shaft (703) are provided with a fourth belt wheel (704) and an incomplete gear (705), the third belt wheel (701) is connected with the fourth belt wheel (704) through a third belt (702), the rack (706) is arranged on one side of a screen basket (8), and the rack (706) is meshed with the incomplete gear (705).
5. The hazardous waste sludge treatment blanking device according to claim 1, wherein: one side of the assembly table (202) is provided with a material guide plate (10), and the bottom of the material guide plate (10) is provided with a magnetic plate (11) through an adjusting component (12); the adjusting component (12) comprises two L-shaped blocks (1201), the two L-shaped blocks (1201) are arranged at the bottom of the guide plate (10), the two L-shaped blocks (1201) are internally provided with stabilizing columns (1202) in a clamping mode, the top ends of the stabilizing columns (1202) are connected with the magnetic plate (11), the connecting plates (1204) are arranged between the bottom ends of the stabilizing columns (1202), and the stabilizing columns (1202) are located on columns between the bottom of the magnetic plate (11) and the hook parts of the L-shaped blocks (1201) and are provided with reset springs (1203).
CN202321680153.6U 2023-06-29 2023-06-29 Dangerous waste sludge treatment unloader Active CN219906198U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321680153.6U CN219906198U (en) 2023-06-29 2023-06-29 Dangerous waste sludge treatment unloader

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321680153.6U CN219906198U (en) 2023-06-29 2023-06-29 Dangerous waste sludge treatment unloader

Publications (1)

Publication Number Publication Date
CN219906198U true CN219906198U (en) 2023-10-27

Family

ID=88431623

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321680153.6U Active CN219906198U (en) 2023-06-29 2023-06-29 Dangerous waste sludge treatment unloader

Country Status (1)

Country Link
CN (1) CN219906198U (en)

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