Plastic waste incineration slag resource utilization device
By designing a screening and mixing structure, the problem of brick stratification caused by insufficiently mixed slag was solved, improving brick quality and processing efficiency, ensuring slurry uniformity, reducing brick scrap, and enhancing slag processing efficiency.
Patent Information
- Application Number
- CN202511617681.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-06
- Publication Date
- 2026-02-03
AI Technical Summary
When the crushed slag is mixed with water, some of the insufficiently mixed slag will be incorporated into the slurry, causing the internal structure of the brick blank to separate, affecting the processing quality, increasing the scrap rate, and reducing the processing efficiency.
A device for the resource utilization of plastic waste incineration slag was designed, including a screening structure, a mixing structure, and a guiding structure. By using the vibration of the screening structure and the coordination of the guiding structure, the slag that is not fully mixed is blocked, ensuring the uniformity of the slurry. The mixing structure accelerates the mixing speed of the slag and water.
It improved the processing quality of brick blanks, reduced scrap due to quality problems, and enhanced the overall efficiency of slag treatment and the uniformity of slurry.
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Figure CN121447746A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of garbage utilization, in particular to a plastic garbage incineration slag resource utilization device. BACKGROUND
[0002] The slag produced after the plastic garbage is incinerated needs to be screened first, and the unburned organic residues, metals, incineration reaction products and other unusable components in the slag are screened out, and the remaining usable slag is put into a brick making machine. After the slag is broken, the slag of appropriate particle size will pass through the filter screen into the slag treatment chamber. Water is added to the slag treatment chamber to mix the slag with water into a slurry of a certain concentration. The mixed slurry can flow from the slurry outlet to the mold plate. The press plate is pressed to form a green brick.
[0003] For example, the publication number CN108995027A discloses a garbage incineration power plant slag brick making device. The side of the slag brick making machine body is fixedly installed with a feeding mechanism. The top of the slag brick making machine body is installed with a water supply tank, a material conveying channel and a hydraulic machine. The crushing roller and the breaking hammer in the material conveying channel can crush the slag multiple times. The slag below a certain volume will pass through the primary filter screen at the bottom into the slag treatment chamber. The slag is mixed with water into a slurry of a certain concentration. After a certain period of sedimentation, the flashboard will open to allow the slurry to flow from the slurry outlet to the mold plate on one side. After the mold is formed, the green brick can be transferred out by controlling the green brick transfer bottom plate. The water produced during the sedimentation process will enter the waste liquid separation tank through the drainage pipe on one side for separation and can be reused through the backflow pipe. This slag brick making machine is convenient to use, consumes less resources, and can greatly reduce the pollution caused by garbage incineration.
[0004] However, the crushed slag will continue to enter the treatment chamber and mix with water. When the slurry is discharged, part of the slag that has just entered the treatment chamber will flow out with the mixed slurry, causing the internal structure of the pressed green brick to be layered, affecting the processing quality of the green brick, and causing a large amount of green brick to be scrapped and reworked, affecting the processing efficiency of the slag. SUMMARY
[0005] Therefore, the present application provides a plastic garbage incineration slag resource utilization device, which can block the newly screened slag outside the mixing area when the slurry is discharged, prevent the insufficiently mixed slag from mixing into the finished slurry, ensure the uniformity of the slurry composition, prevent the internal structure of the pressed green brick from being layered, significantly improve the processing quality of the green brick, reduce the scrapping and reworking caused by the quality problem of the green brick, improve the overall processing efficiency of the slag, and at the same time, the moving mixed slurry can move in the slag treatment tank, accelerate the mixing speed of the slag and water, ensure the uniformity of the slurry mixing, and further improve the processing quality of the green brick.
[0006] The application provides a plastic garbage incineration slag resource utilization device, which specifically comprises a support installation box, a slag treatment box, a screening structure, a mixing structure, a guide structure, a fixed inclined plate, a sliding inclined plate, a sliding push plate and a material blocking electric push rod; the slag treatment box is bolted to the upper portion of the support installation box; the screening structure is arranged on the left side of the support installation box; the fixed inclined plate is bolted to the upper portion of the slag treatment box; the sliding inclined plate is slidably connected to the upper portion of the slag treatment box; the sliding push plate is slidably connected to the middle portion of the slag treatment box; the material blocking electric push rod is provided with a plurality of material blocking electric push rods, which are evenly distributed and bolted to the left side of the slag treatment box, and the piston rods of the plurality of material blocking electric push rods are fixedly connected to the sliding inclined plate after penetrating through the slag treatment box; the mixing structure is arranged on the inner side of the slag treatment box; and the guide structure is arranged on the lower portion of the sliding inclined plate.
[0007] Further, the screening structure comprises a slag feeding hopper and slag crushing rollers; the slag feeding hopper is fixedly connected to the upper portion of the support installation box; and the slag crushing rollers are provided with two slag crushing rollers, which are rotatably connected to the left and right sides of the slag feeding hopper respectively.
[0008] Further, the screening structure further comprises a crushed material driving member and a power transmission gear; the crushed material driving member is bolted to the rear side of the slag feeding hopper, the output shaft of the crushed material driving member is coaxially fixedly connected to the right-side slag crushing roller, and the crushed material driving member is a reciprocating self-locking driving member; the power transmission gear is provided with two power transmission gears, which are fixedly connected to the front sides of the two slag crushing rollers respectively, and the two power transmission gears are meshed with each other.
[0009] Further, the screening structure further comprises a limiting installation bracket, a slag screening mesh and a sealing rubber sheet; the limiting installation bracket is bolted to the lower portion of the slag feeding hopper; the sealing rubber sheet is bonded to the upper end face of the limiting installation bracket; and the slag screening mesh is bonded to the upper end face of the sealing rubber sheet.
[0010] Further, the screening structure further comprises a vibration motor, a guide connecting rod and a damping elastic member; the vibration motor is provided with a plurality of vibration motors, which are evenly distributed and bolted to the lower portion of the slag screening mesh; the guide connecting rod is provided with two guide connecting rods, which are fixedly connected to the front and rear sides of the slag screening mesh respectively; the two guide connecting rods are slidably connected to the limiting installation bracket; and the damping elastic member is provided with two damping elastic members, and the two guide connecting rods are elastically connected to the limiting installation bracket through the two damping elastic members.
[0011] Further, the screening structure further comprises a limiting electric push rod and a water storage tank; the limiting electric push rod is bolted on the left side of the support installation box, the piston rod of the limiting electric push rod is fixedly connected with the sliding push material plate after penetrating through the support installation box; the water storage tank is bolted on the lower part of the support installation box, the inner side of the water storage tank is bolted with a water pump, the output end of the water pump is fixedly connected with a water inlet pipe, and the water inlet pipe is communicated with the slag treatment box.
[0012] Further, the guiding structure comprises a discharge port baffle and a plugging electric push rod; the discharge port baffle is slidably connected to the lower part of the slag treatment box; the plugging electric push rod is provided with a plurality of plugging electric push rods, and the plurality of plugging electric push rods are evenly distributed and bolted on the right side of the slag treatment box, and the piston rods of the plurality of plugging electric push rods are fixedly connected with the discharge port baffle.
[0013] Further, the guiding structure further comprises a slurry guide pipe and a guide installation box; the slurry guide pipe is fixedly connected to the right side of the slag treatment box; the guide installation box is fixedly connected to the lower part of the sliding inclined plate; the right side of the support installation box is bolted with a mounting bracket, the upper part of the mounting bracket is bolted with a pressing air cylinder, the lower part of the piston rod of the pressing air cylinder is bolted with a pressing mold plate, the lower part of the mounting bracket is bolted with a limiting air cylinder, the upper part of the piston rod of the limiting air cylinder is bolted with a mold, and the left side of the mounting bracket is provided with an air station.
[0014] Further, the mixing structure comprises a mixing drive and a transmission reciprocating screw; the mixing drive is bolted on the rear side of the guide installation box; the transmission reciprocating screw is rotatably connected to the middle part of the guide installation box, the transmission reciprocating screw is coaxially fixedly connected with the output shaft of the mixing drive, and the mixing drive is a reciprocating self-locking drive.
[0015] Further, the mixing structure further comprises a sliding installation seat and a moving mixing slurry; the sliding installation seat is slidably connected to the inner side of the guide installation box, and the sliding installation seat is threadedly connected with the transmission reciprocating screw through a reciprocating thread pair; the moving mixing slurry is rotatably connected to the lower part of the sliding installation seat. Beneficial effects
[0016] The present application can fully crush and accurately screen the plastic waste incinerator slag after screening out unusable components, ensure that the slag particle size entering the subsequent treatment link is uniform, guarantee the preparation quality of the subsequent slurry, avoid the situation that large particles of slag enter the slag treatment box to affect the production quality of the green brick, improve the screening efficiency of the slag through the vibration of the slag screening net, and reduce the blocking probability of the slag screening net, improve the screening efficiency of the slag, guide and limit the vibration of the slag screening net through the cooperation of the limiting mounting frame, the guide connecting rod and the damping elastic piece, and reset the slag screening net quickly after the vibration stops, the sealing rubber sheet can effectively prevent the slag powder from accumulating between the limiting mounting frame and the slag screening net, ensure the normal work of the slag screening net, when the slurry is discharged, the sliding inclined plate and the fixed inclined plate are in close contact, which blocks the newly screened slag outside the mixing area, avoids the mixing of insufficiently mixed slag into the finished slurry, ensures the uniformity of the slurry composition, and further prevents the internal structure of the pressed green brick from being layered, significantly improves the processing quality of the green brick, reduces the scrap and rework caused by the quality problem of the green brick, improves the overall treatment efficiency of the slag, meanwhile, the moving mixed slurry can move in the slag treatment box, speed up the mixing speed of the slag and water, ensure the uniformity of the slurry mixing, and further improve the processing quality of the green brick. BRIEF DESCRIPTION OF DRAWINGS
[0017] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings of the embodiments will be briefly introduced below.
[0018] The drawings described in the following description only relate to some embodiments of the present application, and are not a limitation of the present application.
[0019] In the drawings: Figure 1 is a schematic diagram of the overall structure of the present application.
[0020] Figure 2 is a schematic diagram of the position relationship of the supporting installation box, the slag treatment box and the sliding push plate of the present application.
[0021] Figure 3 is a schematic diagram of the position relationship of the slag crushing roller, the crushed material driving member and the power transmission gear of the present application.
[0022] Figure 4 is a schematic diagram of the split structure of the limiting mounting frame and the slag screening net of the present application.
[0023] Figure 5 is a schematic diagram of the position relationship of the slag treatment box, the fixed inclined plate, the sliding inclined plate and the sliding push plate of the present application.
[0024] Figure 6 is a schematic diagram of the position relationship of the slag treatment box, the discharge port baffle and the plugging electric push rod of the present application.
[0025] Figure 7 Figure 1 is a schematic view of the position relationship of the sliding inclined plate, the guide mounting box and the material blocking electric push rod of the present application.
[0026] Figure 8 Figure 2 is a schematic view of the position relationship of the mixed driving member, the transmission reciprocating screw, the sliding mounting seat and the moving mixed pulp of the present application.
[0027] List of reference signs 1, support mounting box; 101, slag feeding hopper; 102, slag crushing roller; 103, crushed material driving member; 104, power transmission gear; 105, limiting mounting frame; 106, slag screening net; 107, sealing rubber sheet; 108, vibration motor; 109, guide connecting rod; 110, damping elastic member; 111, limiting electric push rod; 112, water storage tank; 2, slag treatment box; 201, discharge port baffle; 202, pulp guide pipe; 203, plugging electric push rod; 3, fixed inclined plate; 4, sliding inclined plate; 401, guide mounting box; 402, mixed driving member; 403, transmission reciprocating screw; 404, sliding mounting seat; 405, moving mixed pulp; 5, sliding push material plate; 6, material blocking electric push rod. DETAILED DESCRIPTION EMBODIMENT
[0028] Please refer to Figures 1 to 4 shown in the figure: The present application provides a kind of plastic garbage incineration slag resource utilization device, including support mounting box 1, slag treatment box 2, screening structure, fixed inclined plate 3, sliding inclined plate 4, sliding push material plate 5 and material blocking electric push rod 6;Slag treatment box 2 bolt connection is in the upper portion of support mounting box 1;Screening structure is set in the left side of support mounting box 1;Fixed inclined plate 3 bolt connection is in the upper portion of slag treatment box 2;Sliding inclined plate 4 is slidably connected in the upper portion of slag treatment box 2;Sliding push material plate 5 is slidably connected in the middle portion of slag treatment box 2;Material blocking electric push rod 6 is provided with multiple, multiple material blocking electric push rod 6 evenly distributed bolt connection is in the left side of slag treatment box 2, the piston rod of multiple material blocking electric push rod 6 passes through slag treatment box 2 and is fixedly connected with sliding inclined plate 4.
[0029] Among them, screening structure includes slag feeding hopper 101 and slag crushing roller 102;Slag feeding hopper 101 fixedly connected in the upper portion of support mounting box 1;Slag crushing roller 102 is provided with two, two slag crushing roller 102 is respectively rotatably connected in the left and right sides of slag feeding hopper 101.
[0030] The screening structure further comprises a crushed material driving member 103 and a power transmission gear 104; the crushed material driving member 103 is bolted at the rear side of the slag feeding hopper 101, the output shaft of the crushed material driving member 103 is coaxially fixedly connected with the right slag crushing roller 102, and the crushed material driving member 103 is a reciprocating self-locking driving member; the power transmission gear 104 is provided with two, and the two power transmission gears 104 are fixedly connected at the front sides of the two slag crushing rollers 102, and the two power transmission gears 104 are in mesh with each other.
[0031] The screening structure further comprises a limiting mounting frame 105, a slag screening net 106 and a sealing rubber sheet 107; the limiting mounting frame 105 is bolted at the lower part of the slag feeding hopper 101; the sealing rubber sheet 107 is bonded at the upper end face of the limiting mounting frame 105; and the slag screening net 106 is bonded at the upper end face of the sealing rubber sheet 107.
[0032] The screening structure further comprises a vibration motor 108, a guide connecting rod 109 and a damping elastic member 110; the vibration motor 108 is provided with a plurality of, and the plurality of vibration motors 108 are uniformly distributed and bolted at the lower part of the slag screening net 106; the guide connecting rod 109 is provided with two, and the two guide connecting rods 109 are fixedly connected at the front and rear sides of the slag screening net 106; the two guide connecting rods 109 are in sliding connection with the limiting mounting frame 105 in an up-down mode; and the damping elastic member 110 is provided with two, and the two guide connecting rods 109 are elastically connected with the limiting mounting frame 105 through the two damping elastic members 110.
[0033] The screening structure further comprises a limiting electric push rod 111 and a water storage tank 112; the limiting electric push rod 111 is bolted at the left side of the supporting mounting box 1, the piston rod of the limiting electric push rod 111 is fixedly connected with the sliding push plate 5 after penetrating through the supporting mounting box 1; the water storage tank 112 is bolted at the lower part of the supporting mounting box 1, the inner side of the water storage tank 112 is bolted with a water pump, the output end of the water pump is fixedly connected with a water inlet pipe, and the water inlet pipe is in communication with the slag treatment box 2.
[0034] The specific use and role of the embodiment are as follows: after the slag produced after the incineration of plastic garbage is screened, the slag is put into the slag feeding hopper 101, at this time, the broken material driving member 103 is started, the output shaft of the broken material driving member 103 drives the right slag crushing roller 102 to rotate, the right slag crushing roller 102 rotates and drives the left slag crushing roller 102 to rotate through the power transmission gear 104, the slag is crushed through the rotation of the two slag crushing rollers 102, the crushed slag falls above the slag screening net 106, the slag with appropriate particle size falls into the slag treatment box 2 through the slag screening net 106, and the slag with large particle size remains above the slag screening net 106 for further crushing. In the process of screening the slag, the vibration motor 108 continuously vibrates the slag screening net 106, reduces the blocking of the slag screening net 106, and improves the screening efficiency of the slag. The limiting mounting frame 105 and the guide connecting rod 109 can guide and limit the vibration of the slag screening net 106, the damping elastic member 110 can reset the slag screening net 106 after stopping vibrating, the sealing rubber sheet 107 can block the slag to prevent the slag powder from accumulating between the limiting mounting frame 105 and the slag screening net 106. After the slag enters the slag treatment box 2, the water pump in the water storage tank 112 is actuated to make water enter the slag treatment box 2 through the water inlet pipe to mix with the slag to form slurry. After mixing, the limiting electric push rod 111 pushes the sliding push plate 5 to move to push the slurry out of the slag treatment box 2. Embodiment
[0035] As Figures 3 to 8 shown: On the basis of embodiment one, the mixing structure and the guide structure are further included. The mixing structure is arranged on the inner side of the slag treatment box 2, and the guide structure is arranged on the lower part of the sliding inclined plate 4.
[0036] The guide structure includes the discharge port baffle 201 and the blocking electric push rod 203. The discharge port baffle 201 is slidably connected to the lower part of the slag treatment box 2. The blocking electric push rod 203 is provided with a plurality of blocking electric push rods 203 which are uniformly distributed and bolted to the right side of the slag treatment box 2. The piston rods of the plurality of blocking electric push rods 203 are fixedly connected to the discharge port baffle 201.
[0037] The guide structure further includes the slurry guide pipe 202 and the guide mounting box 401. The slurry guide pipe 202 is fixedly connected to the right side of the slag treatment box 2. The guide mounting box 401 is fixedly connected to the lower part of the sliding inclined plate 4. The right side of the supporting mounting box 1 is bolted with a mounting frame, the upper part of the mounting frame is bolted with a pressing air cylinder, the lower part of the piston rod of the pressing air cylinder is bolted with a pressing mold plate, the lower part of the mounting frame is bolted with a limiting air cylinder, the upper part of the piston rod of the limiting air cylinder is bolted with a mold, and the left side of the mounting frame is provided with an air station.
[0038] The mixing structure comprises a hybrid driving member 402 and a transmission reciprocating screw rod 403. The hybrid driving member 402 is bolted to the rear side of the guide mounting box 401. The transmission reciprocating screw rod 403 is rotationally connected to the middle part of the guide mounting box 401. The transmission reciprocating screw rod 403 is coaxially fixedly connected with the output shaft of the hybrid driving member 402. The hybrid driving member 402 is a reciprocating self-locking driving member.
[0039] The mixing structure further comprises a sliding mounting seat 404 and a moving mixing pulp 405. The sliding mounting seat 404 is slidingly connected to the inner side of the guide mounting box 401. The sliding mounting seat 404 is threadedly connected with the transmission reciprocating screw rod 403 through a reciprocating threaded pair. The moving mixing pulp 405 is rotationally connected to the lower part of the sliding mounting seat 404.
[0040] The specific use and effect of the embodiment are as follows: when the sliding push material plate 5 pushes the pulp, the blocking electric push rod 203 is actuated, and the discharge port baffle 201 is pulled to move upward. At this time, the pulp can flow into the pulp guide pipe 202 and then flow into the mold along the pulp guide pipe 202. The pressure cylinder drives the pressure mold plate to move downward to extrude the pulp until the green brick is formed. At this time, the pressure cylinder drives the pressure mold plate to move upward, and the limiting cylinder pushes the mold to move upward, which facilitates the removal of the formed green brick. After the green brick is removed, the limiting cylinder drives the mold to reset, waiting for the next action. In the process of discharging the pulp, the blocking electric push rod 6 pushes the sliding inclined plate 4 to move upward, so that the sliding inclined plate 4 contacts the fixed inclined plate 3. At this time, the newly screened slag falls above the sliding inclined plate 4 and the fixed inclined plate 3 and does not fall into the mixed pulp. After the pulp is discharged, the blocking electric push rod 203 pushes the discharge port baffle 201 to move downward to block the discharge port. At this time, the blocking electric push rod 6 drives the sliding inclined plate 4 to return, and the slag enters the slag treatment box 2 along the inclined surface of the sliding inclined plate 4 and the fixed inclined plate 3 to mix with water. In the mixing process, the output shaft of the hybrid driving member 402 drives the transmission reciprocating screw rod 403 to rotate. When the transmission reciprocating screw rod 403 rotates, the sliding mounting seat 404 slides along the guide mounting box 401, and the moving mixing pulp 405 moves forward and backward in the slag treatment box 2, thereby accelerating the mixing efficiency of water and slag.
[0041] In this paper, the following points need to be noted: 1. The drawings of the embodiment only relate to the structures involved in the embodiment, and other structures can refer to the usual design.
[0042] 2. In the case of no conflict, the features in the embodiment and the embodiments can be combined with each other to obtain new embodiments.
[0043] The above merely illustrates the specific embodiments of the present application, but the protection scope of the present application is not limited thereto, any person skilled in the art can easily think of the changes or replacements within the technical range disclosed by the present application, which should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. A plastic waste incineration slag resource utilization device, comprising a support installation box, a slag treatment box, a screening structure, a mixing structure, a guide structure, a fixed inclined plate, a sliding inclined plate, a sliding push plate and a material blocking electric push rod; the slag treatment box is bolted on the upper part of the support installation box; characterized in that: The screening structure is arranged on the left side of the support mounting box; the fixed inclined plate is bolted to the upper portion of the slag treatment box; the sliding inclined plate is slidably connected to the upper portion of the slag treatment box; the sliding push plate is slidably connected to the middle portion of the slag treatment box; the material blocking electric push rod is provided in plurality, and the plurality of material blocking electric push rods are uniformly distributed and bolted to the left side of the slag treatment box, and the piston rods of the plurality of material blocking electric push rods are fixedly connected to the sliding inclined plate after penetrating through the slag treatment box; the mixing structure is arranged on the inner side of the slag treatment box; and the guide structure is arranged on the lower portion of the sliding inclined plate.
2. The plastic waste incineration slag resource utilization device according to claim 1, characterized in that: The screening structure comprises a slag feeding hopper and slag crushing rollers; the slag feeding hopper is fixedly connected to the upper portion of the support mounting box; and the slag crushing rollers are provided in two, and the two slag crushing rollers are respectively rotationally connected to the left and right sides of the slag feeding hopper.
3. The plastic waste incineration slag resource utilization device according to claim 2, characterized in that: The screening structure further comprises a crushed material driving member and a power transmission gear; the crushed material driving member is bolted to the rear side of the slag feeding hopper, the output shaft of the crushed material driving member is coaxially fixedly connected to the right-side slag crushing roller, and the crushed material driving member is a reciprocating self-locking driving member; and the power transmission gears are provided in two, and the two power transmission gears are respectively fixedly connected to the front sides of the two slag crushing rollers, and the two power transmission gears are in mesh with each other.
4. The plastic waste incineration slag resource utilization device according to claim 3, characterized in that: The screening structure further comprises a limiting mounting bracket, a slag screening mesh and a sealing rubber sheet; the limiting mounting bracket is bolted to the lower portion of the slag feeding hopper; the sealing rubber sheet is bonded to the upper end face of the limiting mounting bracket; and the slag screening mesh is bonded to the upper end face of the sealing rubber sheet.
5. The plastic waste incineration slag resource utilization device according to claim 4, characterized in that: The screening structure further comprises a vibration motor, a guide connecting rod and a damping elastic member; the vibration motor is provided in plurality, and the plurality of vibration motors are uniformly distributed and bolted to the lower portion of the slag screening mesh; the guide connecting rods are provided in two, and the two guide connecting rods are respectively fixedly connected to the front and rear sides of the slag screening mesh; the two guide connecting rods are slidably connected to the limiting mounting bracket; and the damping elastic members are provided in two, and the two guide connecting rods are elastically connected to the limiting mounting bracket through the two damping elastic members.
6. The plastic waste incineration slag resource utilization device according to claim 5, characterized in that: The screening structure further comprises a limiting electric push rod and a water storage tank; the limiting electric push rod is bolted to the left side of the support mounting box, and the piston rod of the limiting electric push rod is fixedly connected to the sliding push plate after penetrating through the support mounting box; and the water storage tank is bolted to the lower portion of the support mounting box, the inner side of the water storage tank is bolted with a water pump, the output end of the water pump is fixedly connected with a water inlet pipe, and the water inlet pipe is in communication with the slag treatment box.
7. The plastic waste incineration slag resource utilization device according to claim 6, characterized in that: The guide structure comprises a discharge port baffle and a plugging electric push rod; the discharge port baffle is slidably connected to the lower portion of the slag treatment box; and the plugging electric push rod is provided in plurality, and the plurality of plugging electric push rods are uniformly distributed and bolted to the right side of the slag treatment box, and the piston rods of the plurality of plugging electric push rods are fixedly connected to the discharge port baffle.
8. The plastic waste incineration slag resource utilization device according to claim 7, characterized in that: The guiding structure further comprises a slurry guiding pipe and a guiding mounting box; the slurry guiding pipe is fixedly connected to the right side of the slag treatment box; the guiding mounting box is fixedly connected to the lower part of the sliding inclined plate; the right side of the support mounting box is boltedly connected with a mounting frame, the upper part of the mounting frame is boltedly connected with a pressing air cylinder, the lower part of the piston rod of the pressing air cylinder is boltedly connected with a pressing die plate, the lower part of the mounting frame is boltedly connected with a limiting air cylinder, the upper part of the piston rod of the limiting air cylinder is boltedly connected with a die, and the left side of the mounting frame is provided with an air station.
9. The plastic waste incinerator slag resource utilization device according to claim 8, characterized in that: The mixing structure comprises a mixing driving piece and a transmission reciprocating lead screw; the mixing driving piece is boltedly connected to the rear side of the guiding mounting box; the transmission reciprocating lead screw is rotationally connected to the middle part of the guiding mounting box, and the transmission reciprocating lead screw is coaxially fixedly connected with the output shaft of the mixing driving piece; and the mixing driving piece is a reciprocating self-locking driving piece.
10. The plastic waste incineration slag resource utilization device according to claim 9, characterized in that: The mixing structure further comprises a sliding mounting seat and a moving mixing slurry; the sliding mounting seat is front-rear slidingly connected to the inner side of the guiding mounting box, and the sliding mounting seat is threadedly connected with the transmission reciprocating lead screw through a reciprocating thread pair; and the moving mixing slurry is rotationally connected to the lower part of the sliding mounting seat.
Citation Information
Patent Citations
Slag brick-making device of waste incineration power plant
CN108995027A