Transfer equipment for slag waste treatment

By designing the transfer equipment of the ring track and transportation trolley, the integrated processing of slag waste is realized, and the problem of inclusive treatment of slag waste in the existing technology is solved, the treatment efficiency is improved and labor costs are reduced.

CN223046563UActive Publication Date: 2025-07-01WUHAN SURVEYING GEOTECHN RES INST OF MCC
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Patent Information

Application Number
CN202422072885.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-23
Publication Date
2025-07-01
Estimated Expiration
2034-08-23

AI Technical Summary

Technical Problem

In the prior art, there is incompatibility in crushing, cleaning and transport during the treatment of slag waste, resulting in low processing efficiency and high labor costs.

Method used

A transfer equipment including an annular track and a transport trolley was designed to realize the integrated processing of slag waste crushing, cleaning and drying. Through the cooperation of an annular track and a transport trolley, automatic transfer and cleaning are achieved.

Benefits of technology

It improves the efficiency of slag waste treatment, reduces labor costs, and makes the entire processing process smoother and more automated.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a transfer device for slag waste treatment. The transfer equipment comprises a first annular track, a second annular track and transport trolleys installed on the first annular track and the second annular track, a discharging conveying mechanism, a first cleaning pool and a second cleaning pool are arranged below the first track and the second track, and each cleaning pool is arranged in an annular area of the corresponding track and is adjacent to the inner side annular edge of the corresponding track. A waste discharge pipeline is arranged at the bottom of each cleaning pool, and discharge ports of the two waste discharge pipelines extend to the discharge conveying mechanism; the transportation trolley comprises a base with a walking mechanism and a storage hopper, and the storage hopper is connected with the base through a turnover mechanism; slag waste crushing devices are erected above the positions, corresponding to the starting positions of the conveying trolleys, of the two rails respectively, the two conveying trolleys move on the corresponding rails through walking mechanisms, crushed slag waste is transferred to the first cleaning pool and the second cleaning pool, and rapid transfer in the slag waste treatment process can be achieved.
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Description

Technical Field

[0001] The utility model mainly relates to the field of slag waste treatment and transportation, and particularly relates to a transfer device for slag waste treatment. Background Technique

[0002] With the development of the economy, the demand for ore mining in China is increasing, especially for the mining of iron ore. After the ore is mined, it is necessary to extract the ore, extract the useful ore, and screen and decompose the slag that cannot be directly used. This kind of slag is one of the bulk solid wastes. The random disposal of this part of the slag not only wastes resources but also pollutes the environment. In order to achieve the maximum effective utilization of materials, the slag can be decomposed again and effective products can be produced according to other formulas, such as bricks in the construction field; in reality, a large amount of slag waste is generally piled up in an open space. Piling up in this open space will not only affect the air but also have an impact on the local soil quality, plants and other natural environments, occupying land resources and polluting the environment. Therefore, it is generally necessary to quickly process these waste residues.

[0003] Ore waste is different from ordinary solid waste. Ore waste does not need to be classified. Its treatment process generally requires crushing and washing to make it reusable. There is no special equipment for treating ore waste in the prior art; generally, it is crushed separately and then transported to a washing pool for washing, and it also needs to be dried separately after washing; due to the large amount of ore waste to be treated and the relatively heavy ore waste, there are great difficulties in transporting the ore waste in the treatment process of different steps, resulting in low treatment efficiency of slag waste, high labor cost, and being time-consuming and laborious. Content of the Utility Model

[0004] In view of the above problems, the utility model needs to provide a transfer device for slag waste treatment. This treatment system can quickly transfer ore waste, enabling the integration of processes such as crushing, water washing, and drying of slag waste, and improving the treatment efficiency of ore slag solid waste.

[0005] To achieve the above technical objectives, the present utility model provides a transfer device for treating slag waste. The transfer device includes a first track, a second track, and transport trolleys installed on each track. Both the first track and the second track are circular tracks, vertically erected at different heights. An outlet conveying mechanism is provided below the first track and the second track. A first cleaning pool and a second cleaning pool are respectively provided below the first track and the second track. Each cleaning pool is arranged within the circular area of the corresponding track and adjacent to the inner ring edge of the corresponding track. A waste discharge pipe is provided at the bottom of each cleaning pool, and the discharge ports of the two waste discharge pipes both extend to the outlet conveying mechanism. The transport trolley includes a base with a traveling mechanism and a storage hopper. The storage hopper is connected to the base through a flipping mechanism. Above the first track and the second track, a slag waste crushing device is respectively erected through a support frame. The slag waste crushing device is erected at the starting positions of the two transport trolleys. The two transport trolleys move on the corresponding tracks through the traveling mechanism and transfer the slag waste crushed by the two groups of slag waste crushing devices to the first cleaning pool and the second cleaning pool.

[0006] A preferred technical solution of the present utility model: Both the first track and the second track are rounded rectangular ring tracks. The first track and the second track are fixedly installed on the ground by support columns, and the two tracks are vertically arranged, with the first track higher than the second track. The positions of the first track and the second track close to the outlet conveying mechanism intersect. The first cleaning pool is arranged on one side of the circular area of the first track far from the outlet conveying mechanism, and the first cleaning pool is close to one of the width-direction sides of the first track. The second cleaning pool is arranged on one side of the circular area of the second track far from the outlet conveying mechanism, and the second cleaning pool is close to one of the width-direction sides of the second track. The first cleaning pool and the first track are fixedly connected by a bracket, and the second cleaning pool and the second track are fixedly connected by a bracket.

[0007] Further technical solution of the utility model: The base of the transport trolley includes a trolley bottom plate and an angle plate located above the trolley bottom plate. Rollers and a power system are provided on the trolley bottom plate. A radian plate is fixedly installed on the trolley bottom plate. The angle plate is rotatably connected to the radian plate. Four angle cylinders are provided between the trolley bottom plate and the angle plate. The movable end of the angle cylinder is rotatably connected to the trolley bottom plate. The other end of the trolley bottom plate is rotatably installed on the angle plate. Two high supports and two low supports are fixedly installed on the angle plate. The two high supports are arranged on the same side, and the two low supports are arranged on the same side. Two chute plates are also fixedly installed on the angle plate. Two front hopper rods are symmetrically and fixedly installed on the storage hopper. The front hopper rods are rotatably installed on the high supports. Two rear hopper rods are symmetrically and fixedly installed on the storage hopper. The rear hopper rods are in contact with the low supports, and the low supports play a supporting role for the rear hopper rods; A turning cylinder is also fixedly installed on the angle plate. The movable end of the turning cylinder is fixedly installed with a turning slide rod. The turning slide rod is slidably installed on the chute plate. The chute plate is connected to the top shelf by a scissor support. A top rod is fixedly installed on the top shelf. The top rod is slidably connected to the hopper chute. The hopper chute is arranged on the storage hopper.

[0008] Relatively preferred technical solution of the utility model: Each group of slag waste crushing devices includes a slag crushing mechanism, a slag conveying mechanism and a discharging mechanism. The support frame is fixed on the bottom surface, and its horizontal support plate extends above the corresponding track. The slag conveying mechanism is fixedly installed on the horizontal support plate, and its conveying direction is consistent with the extending direction of the horizontal support plate. And the discharging end of the slag conveying mechanism is located directly above the corresponding track. The slag crushing mechanism is erected above the slag conveying mechanism, and its discharging port is directly opposite to the feeding end of the slag conveying mechanism. The discharging mechanism is installed at the discharging port of the slag crushing mechanism, and the discharging port of the discharging mechanism faces downward and is directly opposite to the starting position of the transport trolley on the first track or the second track.

[0009] Further technical solution of the utility model: The waste discharge pipe includes a waste water discharge pipe and a slag conveying pipe. The waste water discharge pipe and the slag conveying pipe are vertically arranged, and the waste water discharge pipe is vertically downward. Its upper end inlet is connected to the sewage discharge port of the corresponding cleaning pool, and a drainage pump is provided at the lower end outlet. The water outlet of the drainage pump can be connected to an additionally provided water treatment device through a pipe; A conveying spiral roller is rotatably installed in the slag conveying pipe. A conveying motor is fixedly installed at the end of the slag conveying pipe. The output shaft of the conveying motor is fixedly connected to the conveying spiral roller. An outlet is provided at the end of the slag conveying pipe far from the waste water discharge pipe, and the outlet is opened downward and is located above the discharging and conveying mechanism.

[0010] Relatively preferred technical solution of the utility model: A heating and drying plate is provided above the feeding end of the discharging and conveying mechanism. The heating and drying plate is a perforated heating plate. The discharging ports of the two waste discharge pipes both extend above the heating and drying plate.

[0011] Further technical solutions of the utility model: the first cleaning pool and the second cleaning pool are both circular pool bodies, each of which is rotatably installed with a cleaning stirring blade, and the cleaning stirring blade in each pool body is driven by a group of power components; the power component structure includes a cleaning top plate fixed on the top of the corresponding cleaning pool and a cleaning motor installed on the cleaning top plate, the central rotating shaft of the cleaning stirring blade is rotatably installed on the cleaning top plate, the output shaft of the cleaning motor is transmission-connected with the central rotating shaft of the cleaning stirring blade, and controls the cleaning stirring blade to rotate in the corresponding cleaning pool; the first cleaning pool and the second cleaning pool are both connected to a water inlet device; the waste discharge pipes on the first cleaning pool and the second cleaning pool are arranged perpendicular to each other.

[0012] The better technical solution of the utility model is as follows: the scissor-type bracket includes a flip bottom sliding link, one end of the flip bottom sliding link is rotatably connected to the flip sliding link, and the other end is rotatably connected to the flip top sliding link, the flip top sliding link is slidably installed on the top shelf, one end of the flip bottom rotating link is rotatably connected to the slide groove plate, and the other end is rotatably connected to the flip top rotating link, and the flip top rotating link is rotatably connected to the top shelf; the flip bottom sliding link and the flip bottom rotating link are cross-hinged at the center position, and the flip top sliding link and the flip top rotating link are cross-hinged at the center position.

[0013] The better technical solution of the utility model is as follows: the heating drying plate and the discharging conveying mechanism are both fixedly mounted on the ground, and the discharging conveying mechanism is a belt conveying mechanism; power distribution devices are mounted under the two groups of slag waste crushing devices through brackets, and the two groups of power distribution devices are respectively mounted on corresponding support frames, and respectively supply power to the mechanical structures on the corresponding support frames.

[0014] The better technical solution of the utility model is as follows: the support frame is an L-shaped support frame, the waste slag conveying mechanism directly adopts a conveyor belt, which is installed on the horizontal support frame of the corresponding support frame, and the discharging mechanism is also installed on the horizontal support frame of the corresponding support frame; the transport trolley automatically moves on the first track and the second track, and the two transport trolleys are initially placed on the track directly below the discharge ports of the two groups of discharging mechanisms, and the storage hoppers are directly opposite to the discharge ports of the discharging mechanisms; the two transport trolleys respectively collect the slag waste crushed by the two groups of slag waste crushing devices, and move along the first track and the second track to the vicinity of the first cleaning tank and the second cleaning tank respectively, and dump the slag waste in the storage hoppers of the transport trolleys into the corresponding cleaning tanks through the flipping mechanism.

[0015] Beneficial effects of the utility model:

[0016] The utility model can facilitate the transfer of ore waste residues, realize the integrated treatment of processes such as slag waste crushing, transportation, cleaning, and drying, make the whole treatment process continuous in sequence, greatly improve the treatment efficiency of ore waste residues, and reduce the labor cost; make the whole work process smoother and more automated; the transport trolley of the utility model, when used in conjunction with two tracks, can automatically transport slag, and the transport trolley can also adjust the balance to prevent the waste residues from spilling during transportation and can automatically pour out the slag, with automated operation. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0018] Figure 2 It is a schematic diagram of the overall structure of the utility model from another angle;

[0019] Figure 3 It is a front view of the utility model;

[0020] Figure 4 It is a schematic diagram of the specific structure of the slag conveying pipe of the utility model;

[0021] Figure 5 It is a schematic diagram of the structure of the cleaning tank in the utility model;

[0022] Figure 6 It is a schematic diagram of the structure of the discharging mechanism in the utility model;

[0023] Figure 7 It is a schematic diagram of the bottom plate structure of the transport trolley in the utility model;

[0024] Figure 8 It is a schematic diagram of the structure of the transport trolley in the utility model;

[0025] Figure 9 It is a schematic diagram of the structure of the transport trolley in the discharging state in the utility model;

[0026] Figure 10 It is a schematic diagram of the position where the hopper chute is arranged in the utility model.

[0027] Reference numerals in the drawings: 1 - first track; 2 - second track; 3 - transport trolley; 300 - storage hopper; 301 - trolley bottom plate; 302 - arc plate; 303 - angle plate; 304 - angle cylinder; 305 - high support; 306 - low support; 307 - chute plate; 308 - front rod of the hopper; 309 - rear rod of the hopper; 310 - tilting cylinder; 311 - tilting slide bar; 312 - tilting bottom rotating link; 313 - tilting bottom sliding link; 314 - tilting top rotating link; 315 - tilting top sliding link; 316 - top shelf; 317 - top rod; 318 - hopper chute; 4 - discharge conveying mechanism; 5 - heating and drying plate; 6 - first cleaning tank; 7 - second cleaning tank; 8 - cleaning stirring blade; 9 - cleaning top plate; 10 - cleaning motor; 11 - waste discharge pipe; 1100 - waste water discharge pipe; 1101 - slag conveying pipe; 1102 - drainage pump; 1103 - conveying motor; 1104 - conveying screw roller; 12 - support frame; 13 - waste residue crushing mechanism; 14 - waste residue conveying mechanism; 15 - discharge mechanism; 1500 - discharging hopper; 1501 - first baffle; 1502 - second baffle; 1503 - intermediate first gear; 1504 - driven gear; 1505 - driving gear; 1506 - driving motor; 1507 - intermediate second gear; 1508 - side gear; 16 - power distribution device. Detailed implementation manners

[0028] The present utility model will be further described below in conjunction with specific embodiments. Here, the present utility model is explained by means of schematic embodiments of the present utility model, but it is not intended to limit the present utility model.

[0029] An example of a transfer device for treating slag waste materials provided by the embodiment is as Figures 1 - 10As shown, the transfer device includes a first track 1, a second track 2, and transport trolleys 3 that move on each track respectively. The first track 1 and the second track 2 are both circular tracks and are installed at different heights. It also includes a slag waste transfer device, a slag waste crushing device, a first cleaning pool 6, a second cleaning pool 7, a discharge conveying mechanism 4, and a heating and drying plate 5. The heating and drying plate 5 is fixedly installed below the first track 1 and the second track 2. The discharge conveying mechanism 4 is placed below the heating and drying plate 5, and both the heating and drying plate 5 and the discharge conveying mechanism 4 are fixedly installed on the ground. The heating and drying plate 5 is a perforated heating plate. Using the prior art, after the heating resistance wire is energized, it is attached to the perforated metal plate, and heat is conducted through the metal. The holes on the heating and drying plate 5 match the particle size of the dried slag waste. The slag waste particles that enter the heating and drying plate 5 for drying fall from the holes onto the discharge conveying mechanism 4 under the action of gravity. The discharge conveying mechanism 4 specifically consists of a conveyor belt and two conveyor rollers. The two conveyor rollers are rotatably installed on a bracket. The bracket is fixedly installed on the ground. A motor is fixedly installed on the bracket. The conveyor belt is sleeved on the two conveyor rollers, and one of the two conveyor rollers is fixedly connected to the output shaft of the motor.

[0030] In the embodiment, as Figures 1 to 3 shown, both the first track 1 and the second track 2 are rounded rectangular circular tracks. The first track 1 and the second track 2 are fixedly installed on the ground using support columns, and the two tracks are vertically arranged. The first track 1 is higher than the second track 2, and the positions of the first track 1 and the second track 2 close to the discharge conveying mechanism 4 intersect. The first cleaning pool 6 is arranged on one side of the circular area of the first track 1 away from the discharge conveying mechanism 4, and the first cleaning pool 6 is close to one of the width sides of the first track 1, which is convenient for the transport trolley 3 to pour the slag waste into the first cleaning pool 6 at this position. The second cleaning pool 7 is arranged on one side of the circular area of the second track 2 away from the discharge conveying mechanism 4, and the second cleaning pool 7 is close to one of the width sides of the second track 2, which is convenient for the transport trolley 3 to pour the slag waste into the second cleaning pool 7 at this position. The first cleaning pool 6 and the first track 1 are fixedly connected using a support frame, and there are also support rods to assist in supporting the first cleaning pool 6. The second cleaning pool 7 and the second track 2 are fixedly connected using a support frame, and there are also support rods to assist in supporting the second cleaning pool 7.

[0031] As Figure 1 、 Figure 2 and Figure 5As shown, a waste discharge pipe 11 is provided on each of the first cleaning tank 6 and the second cleaning tank 7 in the embodiment. The two waste discharge pipes 11 are arranged perpendicular to each other, and the discharge ports of the two waste discharge pipes 11 extend above the heating and drying plate 5. The first cleaning tank 6 and the second cleaning tank 7 are both circular tank bodies. A cleaning stirring blade 8 is rotatably installed in each tank body. Each cleaning stirring blade 8 is driven by a set of power components. After the solid waste is cleaned, it is processed by the waste discharge pipe. Each set of power components has the same structure and includes a cleaning top plate 9. A cleaning motor 10 is fixedly installed on the cleaning top plate 9. The cleaning stirring blade 8 is rotatably installed on the cleaning top plate 9. A pulley is fixedly installed on the output shaft of the cleaning motor 10, and another pulley is fixedly installed on the cleaning stirring blade 8. A belt is sleeved on the two pulleys. The cleaning top plate 9 is fixedly installed above the corresponding cleaning tank opening. An inlet device is provided in either the second cleaning tank 7 or the first cleaning tank 6, through which water required for cleaning can be introduced. As Figure 4 As shown, the waste discharge pipe 11 includes a waste water discharge pipe 1100 and a slag conveying pipe 1101. The waste water discharge pipe 1100 and the slag conveying pipe 1101 are arranged perpendicular to each other, and the waste water discharge pipe 1100 is arranged vertically downward. Its upper end inlet is connected to the sewage outlet of the corresponding cleaning tank, and a drainage pump 1102 is arranged at the lower end outlet. The water outlet of the drainage pump 1102 can be connected to a separately provided water treatment device through a pipe. A conveying screw roller 1104 is rotatably installed in the slag conveying pipe 1101. A conveying motor 1103 is fixedly installed at the end of the slag conveying pipe 1101. The output shaft of the conveying motor 1103 is fixedly connected to the conveying screw roller 1104. An outlet is provided at one end of the slag conveying pipe 1101 away from the waste water discharge pipe 1100, and the outlet is opened downward and is located above the heating and drying plate 5.

[0032] A transfer device for treating slag waste provided in the embodiment, such as Figures 1 to 3As shown in the figure, there are two sets of slag waste crushing devices. The two sets of slag waste crushing devices are respectively erected above the first track 1 and the second track 2 through the 7-shaped support frame 12. Since the first track 1 is higher than the second track 2, the support frame 12 erected on the first track 1 is higher than the support frame above the second track 2; each set of slag waste crushing devices includes a waste residue crushing mechanism 13, a waste residue conveying mechanism 14 and a discharging mechanism 15. The support frame 12 is fixed on the bottom surface, and its horizontal support plate extends above the corresponding track. The waste residue conveying mechanism 14 is fixedly installed on the horizontal support plate, and its conveying direction is consistent with the extending direction of the horizontal support plate. Moreover, the discharging end of the waste residue conveying mechanism 14 is located directly above the corresponding track. The waste residue crushing mechanism 13 is erected above the waste residue conveying mechanism 14, and its discharging port is directly opposite to the feeding end of the waste residue conveying mechanism 14. The discharging mechanism 15 is installed at the discharging port of the waste residue crushing mechanism 13, and the discharging port of the discharging mechanism 15 faces downward and is directly opposite to the storage hopper of the transport trolley 3 placed on the track. A power distribution device 16 is erected below the two sets of slag waste crushing devices through brackets. The two power distribution devices 16 are respectively installed on the corresponding support frames 12 and supply power to the mechanical structures on the corresponding support frames respectively.

[0033] A transfer device for slag waste treatment provided in the embodiment, such as Figures 7 to 10As shown in the figure, the transport trolley 3 includes a base and a storage hopper 300. The base includes a trolley bottom plate 301 and an angle plate 303 located above the trolley bottom plate 301. Rollers and a power system are provided on the trolley bottom plate 301, which can drive the trolley bottom plate 301 to move forward, driven by remote control or a set program. A radian plate 302 is fixedly installed on the trolley bottom plate 301. The angle plate 303 is rotatably connected to the radian plate 302. Four angle cylinders 304 are provided between the trolley bottom plate 301 and the angle plate 303. The movable end of the angle cylinder 304 is rotatably connected to the trolley bottom plate 301. The other end of the trolley bottom plate 301 is rotatably installed on the angle plate 303. Two high supports 305 and two low supports 306 are fixedly installed on the angle plate 303. The two high supports 305 are arranged on the same side, and the two low supports 306 are arranged on the same side. Two chute plates 307 are also fixedly installed on the angle plate 303. Two hopper front rods 308 are symmetrically and fixedly installed on the storage hopper 300. The hopper front rods 308 are rotatably installed on the high supports 305. Two hopper rear rods 309 are symmetrically and fixedly installed on the storage hopper 300. The hopper rear rods 309 are in contact with the low supports 306, and the low supports 306 play a supporting role for the hopper rear rods 309. A turning cylinder 310 is also fixedly installed on the angle plate 303. The movable end of the turning cylinder 310 is fixedly installed with a turning slide rod 311. The turning slide rod 311 is slidably installed on the chute plate 307. The chute plate 307 is connected to the top shelf 316 by a scissor bracket. A top rod 317 is fixedly installed on the top shelf 316. The top rod 317 is slidably connected to the hopper chute 318. The hopper chute 318 is provided on the storage hopper 300. As Figure 9 shown, the scissor bracket includes a turning bottom sliding link 313. One end of the turning bottom sliding link 313 is rotatably connected to the turning slide rod 311, and the other end is rotatably connected to the turning top sliding link 315. The turning top sliding link 315 is slidably installed on the top shelf 316. One end of the turning bottom connecting rod 312 is rotatably connected to the chute plate 307, and the other end is rotatably connected to the turning top connecting rod 314. The turning top connecting rod 314 is rotatably connected to the top shelf 316. The central positions of the turning bottom sliding link 313 and the turning bottom connecting rod 312 are cross-hinged. The central positions of the turning top sliding link 315 and the turning top connecting rod 314 are cross-hinged.

[0034] In the embodiment, the waste residue crushing mechanism 13 includes a crushing bin and a crushing frame. The crushing frame is fixedly installed above the feeding end of the waste residue conveying mechanism 14. The crushing bin is fixedly installed on the crushing frame. There is a feeding hopper above the crushing bin and a discharge port below it. A filter sieve plate is installed at the discharge port. The filter sieve plate is installed on the crushing frame and is higher than the waste residue conveying mechanism 14. The crushed slag waste enters the waste residue conveying mechanism 14 after passing through the filter sieve plate. The crushing frame is fixedly installed on the corresponding support frame 12. A crushing motor is fixedly installed on the crushing bin. There are two groups of crushing rollers in the crushing bin, and the slag waste is crushed by the crushing rollers.

[0035] In the embodiment, the waste residue conveying mechanism 14 directly adopts a feeding belt, which is composed of a common conveyor belt structure, two conveyor rollers, and a conveyor belt. One of the two conveyor rollers is fixedly connected to the output shaft of the motor. Both conveyor rollers are rotatably installed on their corresponding support frames 12. The discharging mechanism 15 is also installed on the corresponding support frame 12. As Figure 6 shown, the discharging mechanism 15 includes a discharging hopper 1500. A first baffle 1501 and a second baffle 1502 are rotatably installed on the discharging hopper 1500. The first baffle 1501 and the second baffle 1502 control the opening and closing of the discharging hopper 1500. A driving motor 1506 is fixedly installed on the discharging hopper 1500. The output shaft of the driving motor 1506 is fixedly installed with a driving gear 1505. The driving gear 1505 meshes with a driven gear 1504. The driven gear 1504 is fixedly connected to the second baffle 1502. An intermediate first gear 1503 and an intermediate second gear 1507 are rotatably installed on the discharging hopper 1500. The intermediate first gear 1503 meshes with the intermediate second gear 1507. The intermediate first gear 1503 meshes with the driven gear 1504. The intermediate second gear 1507 meshes with a side gear 1508. The side gear 1508 is fixedly installed on the first baffle 1501.

[0036] Working principle of the utility model: First, pour the auxiliary machinery for bulk solid waste utilization into the crushing mechanism, and start the crushing motor to drive the crushing roller to decompose large slag waste into fine slag. The fine slag falls onto the filtering sieve plate to filter the fine slag, and the filtered fine slag falls onto the waste slag conveying mechanism 14 and is transported by the waste slag conveying mechanism 14 into the discharging hopper 1500; at this time, move the transport trolley to the position below the discharging hopper 1500 in advance. It can reach the specified position by manual remote control, or the program can be set in advance to set the mileage route and stop moving when reaching the specified route. Then start the driving motor 1506 to drive the driving gear 1505 and the driven gear 1504 to rotate. The driven gear 1504 meshes with the intermediate first gear 1503 and the intermediate second gear 1507. The intermediate second gear 1507 drives the side gear 1508 to rotate, and then rotates the first baffle 1501 and the second baffle 1502 to open the discharging hopper 1500 and pour the fine slag in the discharging hopper 1500 into the transport trolley. The rotation angles of the first baffle 1501 and the second baffle 1502 can be controlled according to the situation to control the amount of the poured fine slag and prevent spilling during discharging.

[0037] The fine slag enters the storage hopper 300 of the transport trolley 3 for storage, and then is transported by the transport trolley 3 to the position of the first cleaning tank 6. Another set of crushing components of the utility model works simultaneously, and another transport trolley also works simultaneously. Start the power system on the trolley bottom plate 301 to drive the trolley bottom plate 301 to move along the first track 1. During the movement, the angle cylinder 304 can be started to adjust the angle of the angle plate 303 to timely adjust the angle of the storage hopper 300 to keep the storage hopper 300 horizontal during transportation and prevent the fine slag in the storage hopper 300 from spilling.

[0038] When the transport trolley on the first track 1 reaches the position of the first cleaning tank 6, start the movable end of the flipping cylinder 310 to contract, driving the flipping slide bar 311 to slide. When the flipping slide bar 311 slides, under the action of the flipping bottom rotating link 312, the flipping bottom sliding link 313, and the flipping top rotating link 314, drive the flipping top sliding link 315 to slide in the top rack 316, and at the same time push the hopper front rod 308 to rotate in the high support 305. The storage hopper 300 will flip, and the top rod 317 will also slide in the hopper chute 318, and finally pour out the waste slag in the storage hopper 300 into the first cleaning tank 6. Another transport trolley also works simultaneously. Another transport trolley stops at the position of the second cleaning tank 7 for work. The first track 1 and the second track 2 intersect, but the transport trolleys on the two tracks will not interfere with each other.

[0039] After the waste residue is poured into the first cleaning tank 6, start the cleaning motor 10 to drive the cleaning stirring blade 8 to rotate. The first cleaning tank 6 and the second cleaning tank 7 are respectively connected with pipelines for inputting water to stir and clean the waste residue. After the cleaning is completed, start the drainage pump 1102 to pump the waste water into a specially prepared waste water storage tank in advance. For the solid waste residue, start the conveying motor 1103 to drive the conveying spiral roller 1104 to rotate, transport the waste residue to the heating and drying plate 5 for drying. The dried waste residue falls onto the discharge conveying mechanism 4 for subsequent processing work.

[0040] As described above, this is only one embodiment of the present utility model, and its description is relatively specific and detailed. However, it should not be construed as a limitation on the scope of the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present utility model, several deformations and improvements can still be made, and these all belong to the protection scope of the present utility model. Therefore, the protection scope of the present utility model should be subject to the appended claims.

Claims

1. A transfer device for slag waste treatment, characterized in that: The transfer equipment comprises a first track (1), a second track (2) and a transport trolley (3) installed on each track. The first track (1) and the second track (2) are both annular tracks, which are vertically erected at different heights. A discharge conveying mechanism (4) is provided below the first track (1) and the second track (2). A first cleaning pool (6) and a second cleaning pool (7) are provided below the first track (1) and the second track (2), respectively. Each cleaning pool is arranged in an annular area of ​​the corresponding track and is adjacent to the inner ring edge of the corresponding track. A waste discharge pipe (11) is provided at the bottom of each cleaning pool. The two waste discharge pipes (11) The discharge ports of the two transport trolleys (3) extend to the discharge conveying mechanism (4); the transport trolley (3) comprises a base with a walking mechanism and a storage hopper (300), and the storage hopper (300) is connected to the base via a turning mechanism; slag waste crushing devices are respectively mounted above the first track (1) and the second track (2) via a support frame (12), and the slag waste crushing devices are mounted at the starting positions of the two transport trolleys (3). The two transport trolleys (3) move on the corresponding tracks via the walking mechanisms, and transfer the slag waste crushed by the two groups of slag waste crushing devices to the first cleaning tank (6) and the second cleaning tank (7).

2. The transfer equipment for slag waste treatment according to claim 1, characterized in that: The first track (1) and the second track (2) are both rectangular circular tracks with rounded corners. The first track (1) and the second track (2) are fixedly installed on the ground by means of support columns. The two tracks are arranged vertically. The first track (1) is higher than the second track (2). The first track (1) and the second track (2) intersect at a position close to the discharge conveying mechanism (4). The first cleaning pool (6) is arranged at a side of the circular area of ​​the first track (1) away from the discharge conveying mechanism (4), and the first cleaning pool (6) is close to one of the widthwise edges of the first track (1). The second cleaning pool (7) is arranged at a side of the circular area of ​​the second track (2) away from the discharge conveying mechanism (4), and the second cleaning pool (7) is close to one of the widthwise edges of the second track (2). The first cleaning pool (6) is fixedly connected to the first track (1) by means of a bracket, and the second cleaning pool (7) is fixedly connected to the second track (2) by means of a bracket.

3. A transfer device for slag waste treatment according to claim 1 or 2, characterized in that: The base of the transport trolley (3) comprises a trolley bottom plate (301) and an angle plate (303) located above the trolley bottom plate (301); rollers and a power system are provided on the trolley bottom plate (301); a radian plate (302) is fixedly mounted on the trolley bottom plate (301); the angle plate (303) is rotatably connected to the radian plate (302); four angle cylinders (304) are provided between the trolley bottom plate (301) and the angle plate (303); The movable end of the cylinder (304) is rotatably connected to the trolley bottom plate (301), and the other end of the trolley bottom plate (301) is rotatably mounted on the angle plate (303). Two high supports (305) and two low supports (306) are fixedly mounted on the angle plate (303). The two high supports (305) are arranged on the same side, and the two low supports (306) are arranged on the same side. Two chute plates (307) are also fixedly mounted on the angle plate (303). Two hopper front rods (308) are axially symmetrically fixedly installed on the hopper (300), and the hopper front rods (308) are rotatably installed on the high support (305). Two hopper rear rods (309) are axially symmetrically fixedly installed on the storage hopper (300), and the hopper rear rods (309) are in contact with the low support (306), and the low support (306) plays a supporting role for the hopper rear rods (309); the angle plate (303) is also fixedly installed with a turning cylinder (31 0), a flip slide bar (311) is fixedly mounted on the movable end of the flip cylinder (310), the flip slide bar (311) is slidably mounted on the chute plate (307), the chute plate (307) and the top frame (316) are connected by a scissor-type bracket, a top rod (317) is fixedly mounted on the top frame (316), the top rod (317) is slidably connected to the hopper chute (318), and the hopper chute (318) is arranged on the storage hopper (300).

4. A transfer device for slag waste treatment according to claim 1 or 2, characterized in that: Each group of slag waste crushing devices comprises a slag crushing mechanism (13), a slag conveying mechanism (14) and a discharge mechanism (15), wherein the support frame (12) is fixed to the bottom surface, and its horizontal support plate extends to above the corresponding track, the slag conveying mechanism (14) is fixedly mounted on the horizontal support plate, and its conveying direction is consistent with the extension direction of the horizontal support plate, and the discharge end of the slag conveying mechanism (14) is located directly above the corresponding track, the slag crushing mechanism (13) is mounted above the slag conveying mechanism (14), and its discharge port is directly opposite to the feed end of the slag conveying mechanism (14), and the discharge mechanism (15) is mounted at the discharge port of the slag crushing mechanism (13), and the discharge port of the discharge mechanism (15) faces downward and directly opposite to the starting position of the transport trolley on the first track (1) or the second track (2).

5. A transfer device for slag waste treatment according to claim 1 or 2, characterized in that: The waste discharge pipeline (11) comprises a wastewater discharge pipe (1100) and a slag conveying pipe (1101). The wastewater discharge pipe (1100) and the slag conveying pipe (1101) are arranged vertically, and the wastewater discharge pipe (1100) is arranged vertically downward. The upper inlet of the wastewater discharge pipe is connected to the sewage outlet of the corresponding cleaning pool, and the lower outlet is provided with a drainage pump (1102). The water outlet of the drainage pump (1102) can be connected to a separately arranged water treatment device through a pipeline. A conveying spiral roller (1104) is rotatably installed in the slag conveying pipe (1101), and a conveying motor (1103) is fixedly installed at the end of the slag conveying pipe (1101). The output shaft of the conveying motor (1103) is fixedly connected to the conveying spiral roller (1104). A discharge port is provided at one end of the slag conveying pipe (1101) away from the wastewater discharge pipe (1100), and the discharge port is opened downward and is located above the discharge conveying mechanism (4).

6. A transfer device for slag waste treatment according to claim 1 or 2, characterized in that: A heating and drying plate (5) is provided above the feeding end of the discharge conveying mechanism (4), wherein the heating and drying plate (5) is a heating plate with holes, and the discharge ports of the two waste discharge pipes (11) both extend above the heating and drying plate (5).

7. A transfer device for slag waste treatment according to claim 1 or 2, characterized in that: The first cleaning tank (6) and the second cleaning tank (7) are both circular tank bodies, each of which is rotatably mounted with a cleaning stirring blade (8), and the cleaning stirring blade (8) in each tank body is driven by a group of power components; the power components include a cleaning top plate (9) fixed to the top of the corresponding cleaning tank and a cleaning motor (10) mounted on the cleaning top plate (9); the central rotating shaft of the cleaning stirring blade (8) is rotatably mounted on the cleaning top plate (9); the output shaft of the cleaning motor (10) is transmission-connected to the central rotating shaft of the cleaning stirring blade (8), and controls the cleaning stirring blade (8) to rotate in the corresponding cleaning tank; the first cleaning tank (6) and the second cleaning tank (7) are both connected to a water inlet device; and the waste discharge pipes (11) on the first cleaning tank (6) and the second cleaning tank (7) are arranged perpendicular to each other.

8. The transfer equipment for slag waste treatment according to claim 3, characterized in that: The scissor-type bracket comprises a flip bottom sliding link (313), one end of the flip bottom sliding link (313) is rotatably connected to the flip slide bar (311), and the other end is rotatably connected to the flip top sliding link (315), the flip top sliding link (315) is slidably mounted on the top frame (316), one end of the flip bottom rotating link (312) is rotatably connected to the slide slot plate (307), and the other end is rotatably connected to the flip top rotating link (314), and the flip top rotating link (314) is rotatably connected to the top frame (316); the flip bottom sliding link (313) and the flip bottom rotating link (312) are cross-hinged at their center positions, and the flip top sliding link (315) and the flip top rotating link (314) are cross-hinged at their center positions.

9. The transfer equipment for slag waste treatment according to claim 4, characterized in that: The support frame (12) is an L-shaped support frame. The waste slag conveying mechanism (14) directly adopts a conveyor belt and is installed on the horizontal support frame of the corresponding support frame (12). The discharge mechanism (15) is also installed on the horizontal support frame of the corresponding support frame (12). The transport trolley (3) automatically moves on the first track (1) and the second track (2). The two transport trolleys are initially placed on the track directly below the discharge ports of the two groups of discharge mechanisms (15), and the storage hopper (300) is directly opposite to the discharge port of the discharge mechanism (15). The two transport trolleys (3) respectively collect the slag waste crushed by the two groups of slag waste crushing devices, and move along the first track (1) and the second track (2) to the vicinity of the first cleaning pool (6) and the second cleaning pool (7) respectively, and dump the slag waste in the storage hopper (300) of the transport trolley into the corresponding cleaning pool through the turning mechanism.

10. The transfer equipment for slag waste treatment according to claim 6, characterized in that: The heating and drying plate (5) and the discharging conveying mechanism (4) are both fixedly mounted on the ground, and the discharging conveying mechanism (4) is a belt conveying mechanism; a power distribution device (16) is mounted below the two groups of slag waste crushing devices through a bracket, and the two groups of power distribution devices (16) are respectively mounted on corresponding support frames (12) and respectively supply power to the mechanical structures on the corresponding support frames.