Device for cleaning and discharging lime in finished lime warehouse
By combining ash hoppers, dust suppression components, and cleaning dust reduction components, the problem of uneven and wasteful manual dust reduction is solved, achieving uniform dust reduction and water recycling, thus reducing dust pollution and resource waste.
Patent Information
- Application Number
- CN202511536008.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-27
- Publication Date
- 2026-02-13
AI Technical Summary
Artificial dust suppression is ineffective and uneven, and after dust suppression, lime and water are spilled onto the ground, causing pollution and waste.
The device employs a combination of ash discharge hopper, dust suppression components, dust suppression water storage tank, and cleaning dust suppression components. It discharges lime in batches and sprays water to suppress dust, using filters and vibrating motors to prevent clogging, thus achieving water recycling and dust collection.
It effectively reduces dust pollution, achieves uniform dust drop, avoids lime waste, and improves resource utilization efficiency.
Smart Images

Figure CN121516601A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of lime handling technology, and particularly relates to a device for cleaning and discharging ash of a lime finished product bin. BACKGROUND
[0002] Lime is a hard inorganic cementing material with calcium oxide as the main component, which is obtained by calcining raw materials such as limestone, dolomite or chalk. Lime is hard, earthy and lustrous, and is opaque. Lime includes quicklime and slaked lime. Lime is widely used in civil engineering due to its wide distribution of raw materials, simple production process and low cost.
[0003] In the process of discharging ash into the lime finished product bin, a large amount of dust is raised, the dust diffuses everywhere, the surrounding environment is affected, the line of sight of the staff is blocked and the health of the staff is harmed. At present, artificial water spraying is mostly used to reduce the phenomenon of dust raising. Artificial dust reduction not only has poor dust reduction effect, but also has uneven dust reduction. After dust reduction, lime and water fall to the ground, causing pollution and waste. SUMMARY
[0004] The present application discloses a device for cleaning and discharging ash of a lime finished product bin, which aims to solve the technical problem that artificial dust reduction not only has poor dust reduction effect, but also has uneven dust reduction. After dust reduction, lime and water fall to the ground, causing pollution and waste.
[0005] In order to achieve the above-mentioned purpose, the present application adopts the following technical scheme:
[0006] The device for cleaning and discharging ash of a lime finished product bin comprises a discharging hopper, a dust suppression assembly is arranged on the discharging hopper, a supporting frame is fixedly connected to the bottom surface of the discharging hopper, a dust suppression sleeve is fixedly connected to the bottom surface of the supporting frame, dust suppression sleeves are fixedly connected to the two sides of the dust suppression sleeve, two dust suppression water storage tanks are symmetrically arranged about the dust suppression sleeve, a lime finished product bin is fixedly connected to the bottom surface of the dust suppression sleeve, a dust inlet is formed in the top surface of the lime finished product bin, and the dust inlet is in communication with the dust suppression sleeve, a cleaning dust reduction assembly is arranged in the dust suppression water storage tank, a collection tank is fixedly connected to the outer sidewall of the cleaning dust reduction assembly, the collection tank is fixedly connected to the top surface of the lime finished product bin on both sides, and the dust suppression water storage tank and the collection tank are in communication.
[0007] Through being provided with the ash discharging hopper, dust suppression assembly, dust suppression cover, dust suppression water tank, lime finished product bin, cleaning dust suppression assembly and collection tank, the lime entering the ash discharging hopper is discharged in batches through the dust suppression assembly, so that the ash discharging hopper is prevented from being blocked by a large amount of lime, dust generated in the ash discharging process is effectively reduced, the dust raised is dropped after contacting water through the cleaning dust suppression assembly spraying water between the ash discharging hopper and the dust suppression cover, and then enters the collection tank for storage after treatment, so that the dust raised in the ash discharging process is effectively reduced, the dust suppression effect is good, uniform dust suppression can be realized, the water used for dust suppression is recycled, and the lime dust can be collected and utilized.
[0008] In a preferred embodiment, the dust suppression assembly comprises a fixed plate one fixedly connected to the outer sidewall of the ash discharging hopper, and the top surface of the fixed plate one is fixedly connected with a driving motor, the power output end of the driving motor is drivingly connected with a driving gear through a shaft coupling, the surface of the driving gear is engaged with an annular gear rack, and the annular gear rack is rotatably connected to the top surface of the ash discharging hopper; the surface of the annular gear rack is engaged with a driven gear, the driving gear and the driven gear are symmetrically arranged about the ash discharging hopper, the bottom surface of the driven gear is fixedly connected with a positioning rod, a fixed plate two is fixedly connected to the outer sidewall of the ash discharging hopper, the top surface of the fixed plate two is fixedly connected with a positioning bearing, and the positioning rod is rotatably connected in the positioning bearing; the bottom surface of the annular gear rack is fixedly connected with a plurality of support vertical rods arranged in a circumferential array, the bottom surface of the support vertical rod is fixedly connected with a discharging table, and the support vertical rod is arranged along the top surface end of the discharging table; a discharging port is formed in the outer sidewall of the discharging table; a positioning rotating hole is formed in the middle of the discharging port, a fixed rod is fixedly connected to the inner sidewall of the ash discharging hopper, the top surface of the fixed rod is fixedly connected with a connecting rod arranged in the positioning rotating hole, and the top surface of the connecting rod is fixedly connected with a feeding plate arranged close to the top surface of the discharging table.
[0009] Through being provided with the dust suppression assembly, the lime entering the ash discharging hopper falls on the discharging table, the feeding plate pushes the lime on the surface of the discharging table, and finally the lime is pushed into the discharging port for discharge, so that the lime is discharged in batches, the ash discharging hopper is prevented from being blocked by a large amount of lime, the dust raised by a large amount of lime directly rushing in is reduced, and the pollution to the surrounding environment is reduced.
[0010] In a preferred embodiment, the cleaning dustfall assembly comprises a dustfall sleeve, the support frame is fixedly connected to the inner side wall of the dustfall sleeve, two symmetrically arranged exhaust ports are arranged on the bottom surface of the dustfall sleeve, the bottom surface of the dustfall sleeve is downwardly inclined from the middle part to the side of the exhaust port, an exhaust pipe is fixedly connected to the exhaust port, the bottom surface of the exhaust pipe is fixedly connected to the top surface of the dustfall water storage tank, and the exhaust pipe is in communication with the interior of the dustfall water storage tank; a water outlet is arranged on the side wall of the dustfall water storage tank, and the water outlet is fixedly connected with a circulating pump through a pipeline, the output end of the circulating pump is fixedly connected with a connecting water pipe, the end of the connecting water pipe away from the circulating pump is fixedly connected with a shunt pipe, the end of the shunt pipe away from the connecting water pipe is fixedly connected with a manifold pipe, the manifold pipe is arranged on the outer side of the upper end of the ash discharging hopper, the bottom surface of the manifold pipe is fixedly connected with a plurality of circumferentially arranged spray heads, and the plurality of spray heads are arranged on the upper end of the dustfall sleeve; a vibration sleeve frame is arranged in the interior of the dustfall water storage tank, the outer side wall of the vibration sleeve frame is fixedly connected with a fixed plate three, the inner side wall of the dustfall water storage tank is fixedly connected with a fixed plate four, the bottom surface of the fixed plate three and the top surface of the fixed plate four are fixedly connected with a vibration spring one, the top surface of the fixed plate three is fixedly connected with a vibration motor, and a water storage space is left between the bottom surface of the vibration sleeve frame and the bottom surface of the dustfall water storage tank; the inner side walls of the vibration sleeve frame are fixedly connected with a fixed plate five, the top surface of the fixed plate five is fixedly connected with a vibration spring two, the top end of the vibration spring two is fixedly connected with a lower filter screen frame, the vibration spring two is fixedly connected at the bottom surface of the four corners of the lower filter screen frame, the top surface of the fixed plate five is fixedly connected with a connecting support rod, the top surface of the connecting support rod is fixedly connected with an upper filter screen frame, the inner side walls of the lower filter screen frame and the upper filter screen frame are fixedly connected with a filter screen, the filter screen is flush with the top surface of the lower filter screen frame and the upper filter screen frame, the filter screen is downwardly inclined from the dustfall sleeve to the side of the dustfall water storage tank, and the bottom surface of the exhaust pipe is arranged on the upper end of the highest part of the upper filter screen of the upper filter screen frame.
[0011] By setting up the cleaning dustfall assembly, in the process of unloading ash, the circulating pump is started, water is sprayed out through the spray head, dust and water fall in the inside of the dustfall sleeve, the filter screen filters the water, the vibration motor is started, the vibration motor drives the vibration sleeve frame to vibrate, avoids that the lime dust causes the blockage of the filter screen, the sliding seat reciprocatingly moves on the slide rail, scrapes off the lime dust accumulated on the filter screen, makes the lime dust enter into the collecting box to be collected, avoids the waste of lime, simultaneously avoids the pollution to the surrounding environment, effectively reduces the dust raised in the process of unloading ash, the dustfall effect is good, and the uniform dustfall can be realized, the water used for dustfall is recycled, and the resource utilization efficiency is high.
[0012] From the above, the device for cleaning and unloading ash of the finished lime bin has the technical effects that the waste of lime is avoided, the dust raised in the process of unloading ash is effectively reduced, the dustfall effect is good, the uniform dustfall can be realized, the water used for dustfall is recycled, and the resource utilization efficiency is high. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 The overall structure schematic view of the device for cleaning and unloading ash of the finished lime bin is provided.
[0014] Figure 2 The overall structure top view of the device for cleaning and unloading ash of the finished lime bin is provided.
[0015] Figure 3 The dustfall assembly side structure sectional view of the device for cleaning and unloading ash of the finished lime bin is provided.
[0016] Figure 4 The unloading hopper side structure sectional view of the device for cleaning and unloading ash of the finished lime bin is provided.
[0017] Figure 5 The dustfall water storage tank side structure sectional view of the device for cleaning and unloading ash of the finished lime bin is provided.
[0018] Figure 6 The vibration sleeve frame side structure sectional view of the device for cleaning and unloading ash of the finished lime bin is provided.
[0019] Figure 7 The upper pushing ash plate structure side view of the device for cleaning and unloading ash of the finished lime bin is provided.
[0020] In the figure: 1, ash bucket; 2, dust suppression assembly; 201, fixed plate one; 202, driving motor; 203, driving gear; 204, ring gear; 205, driven gear; 206, positioning bearing; 207, fixed plate two; 208, support stand; 209, discharging table; 210, discharging port; 211, fixed rod; 212, feeding plate; 3, support frame; 4, dust suppression sleeve; 5, dust suppression water tank; 6, lime finished product bin; 7, cleaning dust suppression assembly; 701, dust suppression sleeve; 702, circulating pump; 703, connecting water pipe; 704, shunt pipe; 705, manifold pipe; 706, spray head; 707, vibration sleeve frame; 708, fixed plate three; 709, fixed plate four; 710, vibration spring one; 711, vibration motor; 712, fixed plate five; 713, vibration spring two; 714, lower filter screen frame; 715, connecting support rod; 716, upper filter screen frame; 717, filter screen; 718, slide rail; 719, slide seat; 720, upper support frame; 721, upper ash pushing plate; 722, lower support frame; 723, lower ash pushing plate; 8, collection box. DETAILED DESCRIPTION
[0021] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, not all.
[0022] The device for cleaning and discharging ash of a lime finished product bin disclosed in the present application is mainly applied to the scene where manual dust reduction has poor dust reduction effect, uneven dust reduction, and lime and water falling to the ground after dust reduction, causing pollution and waste.
[0023] REFERENCE Figures 1-7 A device for cleaning and discharging ash of a lime finished product bin, comprising an ash bucket 1, wherein a dust suppression assembly 2 is arranged on the ash bucket 1, the bottom surface of the ash bucket 1 is fixedly connected with a support frame 3, the bottom surface of the support frame 3 is fixedly connected with a dust suppression sleeve 4, the two sides of the dust suppression sleeve 4 are fixedly connected with dust suppression water tanks 5, the two dust suppression water tanks 5 are symmetrically arranged about the dust suppression sleeve 4, the bottom surface of the dust suppression sleeve 4 is fixedly connected with a lime finished product bin 6, the top surface of the lime finished product bin 6 is provided with an ash inlet, and the ash inlet is in communication with the dust suppression sleeve 4, the inside of the dust suppression water tank 5 is provided with a cleaning dust suppression assembly 7, the outer sidewall of the cleaning dust suppression assembly 7 is fixedly connected with a collection box 8, the collection box 8 is fixedly connected to the top surface of the lime finished product bin 6 on both sides, and the dust suppression water tank 5 and the collection box 8 are in communication.
[0024] Specifically, in the process of discharging lime into the lime finished product bin 6 through the lime discharging hopper 1, the lime entering the lime discharging hopper 1 is guided out in batches through the dust suppression assembly 2, so as to avoid the blockage caused by a large amount of lime entering the lime discharging hopper 1, and effectively reduce the dust generated in the discharging process. After the lime is discharged through the lime discharging hopper 1, dust will be generated between the lime discharging hopper 1 and the lime finished product bin 6. The cleaning dust suppression assembly 7 sprays water between the lime discharging hopper 1 and the dust suppression sleeve 4. The raised dust falls after contacting with the water, and is stored in the collection box 8 after treatment, effectively reducing the dust raised in the discharging process, and achieving good dust suppression effect. The dust suppression effect is good, and uniform dust suppression can be achieved. The water used for dust suppression is recycled, and the lime dust can be collected and utilized.
[0025] Referring to Figure 1 、 Figure 2 、 Figure 3 and Figure 4 , in a preferred embodiment, the dust suppression assembly 2 comprises a fixed plate one 201 fixedly connected to the outer side wall of the lime discharging hopper 1, and the top surface of the fixed plate one 201 is fixedly connected with a driving motor 202. The power output end of the driving motor 202 is drivingly connected with a driving gear 203 through a shaft coupling. The surface of the driving gear 203 is engaged with an annular rack 204 which is rotationally connected to the top surface of the lime discharging hopper 1. The surface of the annular rack 204 is engaged with a driven gear 205, and the driving gear 203 and the driven gear 205 are symmetrically arranged about the lime discharging hopper 1. The bottom surface of the driven gear 205 is fixedly connected with a positioning rod, and the outer side wall of the lime discharging hopper 1 is fixedly connected with a fixed plate two 207. The top surface of the fixed plate two 207 is fixedly connected with a positioning bearing 206, and the positioning rod is rotationally connected in the positioning bearing 206. The bottom surface of the annular rack 204 is fixedly connected with a plurality of support vertical rods 208 arranged in a circumferential array. The bottom surface of the support vertical rod 208 is fixedly connected with a discharging table 209, and the support vertical rod 208 is arranged along the top end of the discharging table 209. The outer side wall of the discharging table 209 is provided with a discharging port 210. The middle part of the discharging port 210 is provided with a positioning rotating hole. The inner side wall of the lime discharging hopper 1 is fixedly connected with a fixed rod 211, and the top surface of the fixed rod 211 is fixedly connected with a connecting rod arranged in the positioning rotating hole. The top surface of the connecting rod is fixedly connected with a feeding plate 212 arranged close to the top surface of the discharging table 209.
[0026] Specifically, after the lime enters the ash discharging hopper 1, it falls on the discharging table 209. The driving motor 202 is driven to rotate the driving gear 203. The driving gear 203 is engaged with the annular rack 204, and the annular rack 204 is engaged with the driven gear 205. The rotation of the annular rack 204 is caused, and the annular rack 204 is fixed between the discharging table 209 through the support vertical rod 208. The discharging table 209 rotates together with the annular rack 204. During the rotation of the discharging table 209, the lime on the surface of the discharging table 209 is pushed by the feeding plate 212, and finally pushed into the discharging port 210 for discharge. Such a cycle is repeated to realize the batch entering of the lime, which can effectively avoid the blockage of the ash discharging hopper 1 caused by the lime, and reduce the dust raised by the direct influx of a large amount of lime, thereby reducing the pollution to the surrounding environment.
[0027] With reference to Figure 1 , Figure 2 , Figure 5 , Figure 6 and Figure 7In a preferred embodiment, the cleaning dustfall assembly 7 comprises a dustfall sleeve 701, the support frame 3 is fixedly connected to the inner side wall of the dustfall sleeve 701, two symmetrically arranged exhaust ports are arranged on the bottom surface of the dustfall sleeve 701, the bottom surface of the dustfall sleeve 701 is downwardly inclined from the middle part to the side of the exhaust port, an exhaust pipe is fixedly connected to the exhaust port, the bottom surface of the exhaust pipe is fixedly connected to the top surface of the dustfall water storage tank 5, and the exhaust pipe is in communication with the interior of the dustfall water storage tank 5; a water outlet is arranged on the side wall of the dustfall water storage tank 5, and the water outlet is fixedly connected with a circulating pump 702 through a pipeline, the output end of the circulating pump 702 is fixedly connected with a connecting water pipe 703, one end of the connecting water pipe 703 away from the circulating pump 702 is fixedly connected with a shunt pipe 704, one end of the shunt pipe 704 away from the connecting water pipe 703 is fixedly connected with a converging coil pipe 705, the converging coil pipe 705 is arranged on the outer side of the upper end of the ash discharging hopper 1, the bottom surface of the converging coil pipe 705 is fixedly connected with a plurality of circumferentially arranged spray heads 706, and the plurality of spray heads 706 are arranged on the upper end of the dustfall sleeve 701; a vibration sleeve frame 707 is arranged in the dustfall water storage tank 5, the outer side walls of the vibration sleeve frame 707 are fixedly connected with fixed plates three 708, the inner side walls of the dustfall water storage tank 5 are fixedly connected with fixed plates four 709, the bottom surface of the fixed plate three 708 and the top surface of the fixed plate four 709 are fixedly connected with a vibration spring one 710, the top surface of the fixed plate three 708 is fixedly connected with a vibration motor 711, and a water storage space is left between the bottom surface of the vibration sleeve frame 707 and the bottom surface of the dustfall water storage tank 5; the inner side walls of the vibration sleeve frame 707 are fixedly connected with fixed plates five 712, the top surface of the fixed plate five 712 is fixedly connected with a vibration spring two 713, the top end of the vibration spring two 713 is fixedly connected with a lower filter screen frame 714, the vibration spring two 713 is fixedly connected to the bottom surface of the lower filter screen frame 714 at four corners, the top surface of the lower filter screen frame 714 is fixedly connected with connecting support rods 715, the top surface of the connecting support rods 715 is fixedly connected with an upper filter screen frame 716, the inner side walls of the lower filter screen frame 714 and the upper filter screen frame 716 are fixedly connected with filter screens 717, the filter screens 717 are flush with the top surfaces of the lower filter screen frame 714 and the upper filter screen frame 716, the filter screens 717 are downwardly inclined from the dustfall sleeve 4 to the side of the dustfall water storage tank 5, and the bottom surface of the exhaust pipe is arranged on the uppermost end of the upper filter screen frame 716.The outer wall of two sides of the upper filter screen frame 716 is fixedly connected with a sliding rail 718, the sliding rail 718 is slidably connected with a sliding seat 719, the top surface of the sliding seat 719 is fixedly connected with an upper support 720, the outer wall of one side of the two upper supports 720 close to each other is fixedly connected with an upper dust pushing plate 721, the upper dust pushing plate 721 slides along the top surface of the upper filter screen 717 of the upper filter screen frame 716, the bottom surface of the upper support 720 is fixedly connected with a lower support 722, the outer wall of one side of the two lower supports 722 close to each other is fixedly connected with a lower dust pushing plate 723, the lower dust pushing plate 723 slides along the top surface of the upper filter screen 717 of the lower filter screen frame 714, and part of the filter screen 717 away from the dust-settling tank 5 is arranged in the collecting box 8.
[0028] Specifically, in the process of unloading ash, the circulating pump 702 is started, water in the dust-settling tank 5 is pumped out through the circulating pump 702, the water in the dust-settling tank 5 enters the manifold pipe 705 through the connecting water pipe 703 and the shunt pipe 704, and finally is sprayed out through the spray head 706. After the sprayed water contacts the dust raised into the ash discharging hopper 1, the dust and the water fall into the dust-settling tank 701. The dust raised between the ash discharging hopper 1 and the dust suppression sleeve 4 also contacts the water and falls into the dust-settling tank 701. The dust and the water in the dust-settling tank 701 are discharged through the discharge pipe and fall on the filter screen 717. The water is filtered through the two filter screens 717. The filtered dust remains on the filter screen 717. In the filtering process, the vibration motor 711 is started, the vibration motor 711 drives the vibration sleeve frame 707 to vibrate, the vibration amplitude of the vibration sleeve frame 707, the shunt pipe 704 and the upper filter screen frame 716 is increased through the elastic effect of the vibration spring one 710 and the vibration spring two 713, the filter screen 717 is prevented from being blocked by the lime dust, the water can flow back to the bottom of the dust-settling tank 5 through the filter screen 717, the sliding seat 719 reciprocatingly moves on the sliding rail 718, the sliding seat 719 drives the upper support 720 and the lower support 722 to move, the upper dust pushing plate 721 and the lower dust pushing plate 723 move along the surfaces of the two filter screens 717, the lime dust accumulated on the filter screen 717 is scraped off, the lime dust enters the collecting box 8 for collection, the lime is prevented from being wasted and the surrounding environment is prevented from being polluted, the dust raised in the process of unloading ash is effectively reduced, the dust-settling effect is good, uniform dust settling can be realized, the water used for dust settling is recycled, and the resource utilization efficiency is high.
[0029] Working principle: After the lime enters the unloading hopper 1, it falls on the unloading table 209, the driving motor 202 is driven to rotate the driving gear 203, the driving gear 203 is engaged with the annular rack 204, the annular rack 204 is engaged with the driven gear 205, so that the annular rack 204 rotates, the annular rack 204 and the unloading table 209 are fixed through the support stand 208, the unloading table 209 rotates with the annular rack 204, in the rotating process of the unloading table 209, the lime on the surface of the unloading table 209 is pushed by the feeding plate 212, and finally the lime is pushed into the discharge port 210 and discharged, so as to realize the batch entering of the lime, effectively avoid the blockage of the unloading hopper 1 caused by the lime, reduce the dust raised by the large amount of lime directly poured, reduce the pollution to the surrounding environment, and start the circulating pump 702 in the unloading process, and the water in the dust setting tank 5 is pumped out through the circulating pump 702, the water in the dust setting tank 5 enters the manifold pipe 705 through the connecting water pipe 703 and the shunt pipe 704, and finally is sprayed out through the spray head 706, after the sprayed water contacts with the dust raised when entering the unloading hopper 1, the dust and the water fall in the dust setting cup 701, the dust raised between the unloading hopper 1 and the dust suppression sleeve 4 also contacts with the water and falls in the dust setting cup 701, the dust and the water in the dust setting cup 701 are discharged through the discharge pipe and fall on the filter screen 717, the water is filtered through the two filter screens 717, the filtered dust remains on the filter screen 717, in the filtering process, the vibration motor 711 is started, the vibration motor 711 drives the vibration sleeve frame 707 to vibrate, through the elastic action of the vibration spring one 710 and the vibration spring two 713, the vibration amplitude of the vibration sleeve frame 707, the shunt pipe 704 and the upper filter screen frame 716 is increased, the filter screen 717 is prevented from being blocked by the lime dust, the water can flow back to the bottom of the dust setting tank 5 through the filter screen 717, at the same time, the sliding seat 719 moves back and forth on the sliding rail 718, the sliding seat 719 drives the upper bracket 720 and the lower bracket 722 to move, the upper lime pushing plate 721 and the lower lime pushing plate 723 move along the surface of the two filter screens 717, the lime dust accumulated on the filter screen 717 is scraped off, the lime dust enters the collecting box 8 for collection, the lime is prevented from being wasted, the surrounding environment is prevented from being polluted, the dust raised in the unloading process is effectively reduced, the dust setting effect is good, uniform dust setting can be realized, the water used for dust setting is recycled, and the resource utilization efficiency is high.
[0030] The above is only a preferred specific embodiment of the present application, but the protection scope of the present application is not limited to this, any person skilled in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.
Claims
1. A device for cleaning and unloading lime finished product silos, comprising an ash unloading hopper (1), characterized in that, The ash hopper (1) is equipped with a dust suppression component (2), and a support frame (3) is fixedly connected to the bottom surface of the ash hopper (1). A dust suppression sleeve (4) is fixedly connected to the bottom surface of the support frame (3). Dust suppression water tanks (5) are fixedly connected to both sides of the dust suppression sleeve (4). The two dust suppression water tanks (5) are symmetrically arranged about the dust suppression sleeve (4). A lime finished product silo (6) is fixedly connected to the bottom surface of the dust suppression sleeve (4). An ash inlet is opened on the top surface of the lime finished product silo (6), and the ash inlet is connected to the dust suppression sleeve (4). A cleaning dust suppression component (7) is installed inside the dust suppression water tank (5), and a collection box (8) is fixedly connected to the outer side wall of the cleaning dust suppression component (7). The collection box (8) is fixedly connected to both sides of the top surface of the lime finished product silo (6). The dust suppression water tank (5) and the collection box (8) are connected in communication.
2. The device for cleaning and unloading lime finished product silos according to claim 1, characterized in that, The dust suppression component (2) includes a fixing plate (201), which is fixedly connected to the outer side wall of the ash discharge hopper (1). A drive motor (202) is fixedly connected to the top surface of the fixing plate (201). The power output end of the drive motor (202) is connected to a drive gear (203) via a coupling. A ring rack (204) meshes with the surface of the drive gear (203). The ring rack (204) is rotatably connected to the top surface of the ash discharge hopper (1).
3. The device for cleaning and unloading lime finished product silos according to claim 2, characterized in that, The surface of the ring rack (204) is meshed with a driven gear (205). The driving gear (203) and the driven gear (205) are symmetrically arranged about the ash hopper (1). A positioning rod is fixedly connected to the bottom surface of the driven gear (205). A fixing plate (207) is fixedly connected to the outer side wall of the ash hopper (1). A positioning bearing (206) is fixedly connected to the top surface of the fixing plate (207). The positioning rod is rotatably connected in the positioning bearing (206).
4. The device for cleaning and unloading lime finished product silos according to claim 3, characterized in that, The bottom surface of the annular rack (204) is fixedly connected to a number of support rods (208) arranged in a circular array. The bottom surface of the support rods (208) is fixedly connected to a discharge platform (209), and the support rods (208) are arranged along the top end of the discharge platform (209). The outer side wall of the discharge platform (209) is provided with a discharge port (210).
5. The device for cleaning and unloading lime finished product silos according to claim 4, characterized in that, The discharge port (210) has a positioning rotating hole in the middle. A fixing rod (211) is fixedly connected to the inner side wall of the ash hopper (1). A connecting rod is fixedly connected to the top surface of the fixing rod (211). The connecting rod is set in the positioning rotating hole. A feeding plate (212) is fixedly connected to the top surface of the connecting rod. The feeding plate (212) is set close to the top surface of the discharge table (209).
6. The device for cleaning and unloading lime finished product silos according to claim 5, characterized in that, The cleaning and dust suppression component (7) includes a dust suppression sleeve (701), and a support frame (3) is fixedly connected to the inner side wall of the dust suppression sleeve (701). The bottom surface of the dust suppression sleeve (701) has two symmetrically arranged outlets. The bottom surface of the dust suppression sleeve (701) is inclined downward from the middle to the outlet side, and a discharge pipe is fixedly connected to the outlet. The bottom surface of the discharge pipe is fixedly connected to the top surface of the dust suppression water storage tank (5), and the discharge pipe is connected to the interior of the dust suppression water storage tank (5).
7. The device for cleaning and unloading lime finished product silos according to claim 6, characterized in that, The dust-suppressing water storage tank (5) has an outlet on its side wall, and the outlet is fixedly connected to a circulating pump (702) via a pipe. The output end of the circulating pump (702) is fixedly connected to a connecting water pipe (703). The end of the connecting water pipe (703) away from the circulating pump (702) is fixedly connected to a diversion pipe (704). The end of the diversion pipe (704) away from the connecting water pipe (703) is fixedly connected to a manifold coil (705). The manifold coil (705) is located on the upper outer side of the ash discharge hopper (1). The bottom surface of the manifold coil (705) is fixedly connected to several spray heads (706) arranged in a circular array. Several spray heads (706) are located on the upper end of the dust-suppressing sleeve (701).
8. The device for cleaning and unloading lime finished product silos according to claim 7, characterized in that, The dust-reducing water storage tank (5) is equipped with a vibration sleeve (707) inside. The outer side walls of the vibration sleeve (707) are fixedly connected with a fixing plate three (708). The inner side walls of the dust-reducing water storage tank (5) are fixedly connected with a fixing plate four (709). The bottom surface of the fixing plate three (708) and the top surface of the fixing plate four (709) are fixedly connected with a vibration spring one (710). The top surface of the fixing plate three (708) is fixedly connected with a vibration motor (711). A water storage space is left between the bottom surface of the vibration sleeve (707) and the bottom surface of the dust-reducing water storage tank (5).
9. The device for cleaning and unloading lime finished product silos according to claim 8, characterized in that, The inner two side walls of the vibration sleeve (707) are fixedly connected to a fixing plate five (712). The top surface of the fixing plate five (712) is fixedly connected to a vibration spring two (713). The top of the vibration spring two (713) is fixedly connected to a lower filter screen frame (714). The vibration spring two (713) is fixedly connected to the four corners of the bottom surface of the lower filter screen frame (714). The four corners of the top surface of the lower filter screen frame (714) are all fixedly connected to connecting rods (715). The top surface is fixedly connected to an upper filter screen frame (716), and the lower filter screen frame (714) and the inner sidewalls of the upper filter screen frame (716) are both fixedly connected to filter screens (717). The filter screens (717) are flush with the top surfaces of the lower filter screen frame (714) and the upper filter screen frame (716), and the filter screens (717) are inclined downward from the dust suppression sleeve (4) towards the dust storage tank (5). The bottom surface of the discharge pipe is located at the highest point of the filter screens (717) on the upper filter screen frame (716).
10. The device for cleaning and unloading lime finished product silos according to claim 9, characterized in that, The upper filter screen frame (716) is fixedly connected to slide rails (718) on both outer walls. Slide seats (719) are slidably connected to slide rails (718). Upper brackets (720) are fixedly connected to the top surface of slide seats (719). Upward-pushing ash plates (721) are fixedly connected to the outer walls of the two upper brackets (720) that are close to each other. Upward-pushing ash plates (721) slide along the top surface of the filter screen (717) on the upper filter screen frame (716). Lower brackets (722) are fixedly connected to the bottom surface of the upper brackets (720). Downward-pushing ash plates (723) are fixedly connected to the outer walls of the two lower brackets (722) that are close to each other. Downward-pushing ash plates (723) slide along the top surface of the filter screen (717) on the lower filter screen frame (714). A portion of the filter screen (717) away from the dust collection tank (5) is located inside the collection box (8).