Cleaning device for ore transportation

By designing a cleaning device for ore transportation including a water mist ejection mechanism and a cleaning mechanism, the problems of complex structure and low cleanliness of belt cleaning devices in the prior art are solved, and efficient belt cleaning under multi-weather conditions are achieved, and transportation efficiency and air quality are improved.

CN222974237UActive Publication Date: 2025-06-13四川金顶(集团)股份有限公司 +1
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Patent Information

Application Number
CN202421770394.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-25
Publication Date
2025-06-13
Estimated Expiration
2034-07-25

AI Technical Summary

Technical Problem

The existing belt cleaning device has a complex structure, is inconvenient to make, and has a low cleanliness of belts on belt conveyors.

Method used

A cleaning device for ore transportation is designed, including a water mist ejection mechanism and a cleaning mechanism. The water mist ejection mechanism is used to capture stone powder in the belt corridor. The cleaning mechanism includes a cleaning box and a water transfer mechanism. The cleaning box is divided into multiple cleaning chambers, and efficient cleaning of the belt is achieved through the water transfer mechanism, a sludge scraping and brushing mechanism.

Benefits of technology

It realizes efficient cleaning in various weather conditions, improves the air quality in the belt corridor and the transportation efficiency of belt conveyors, improves the cleanliness of belts on belt conveyors, and has a simple structure and is easy to make.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a cleaning device for ore transportation, which solves the technical problems that the quality of air in a belt corridor is poor due to the influence of stone powder, and an existing belt cleaning device is complex in structure, inconvenient to manufacture and low in cleanliness of a belt on a belt conveyor, and comprises a belt corridor and the belt conveyor arranged in the belt corridor, the water mist spraying mechanism is arranged on the belt corridor, and the cleaning mechanism is arranged in the belt corridor. When the weather is dry, the water mist spraying mechanism is used for spraying water mist to capture and remove stone powder diffused in the belt gallery, the content of the stone powder in air in the belt gallery is reduced, and the air quality in the belt gallery is improved; according to the belt cleaning device, the first cleaning cavity, the second cleaning cavity and the filtering cavity which are divided in the cleaning box are used for cleaning the belt on the belt conveyor in sequence, and the cleanliness of the belt on the belt conveyor is improved; the cleaning box is simple in structure and convenient to manufacture.
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Description

Technical Field

[0001] The utility model belongs to the technical field of ore transportation, and particularly relates to a cleaning device for ore transportation. Background Art

[0002] There is a long distance between the mine and the ore processing plant. Usually, a belt conveyor is used to transport ore from the mine to the ore processing plant. During the process of transporting ore with the belt conveyor placed outdoors, the belt conveyor may be affected by the weather or damaged by humans. Usually, a special belt corridor is set up. The belt corridor creates a safe transportation passage for the belt conveyor. Placing the belt conveyor in the belt corridor can avoid the belt conveyor being affected by the weather or damaged by humans. When the weather is dry, workers blast the mountain body at the mine. During the blasting process, the ore is impacted and broken and separated, and some structures on the surface of the ore are broken into stone powder after being impacted. During the process of the belt conveyor transporting ore, some of the stone powder carried on the ore will spread into the internal space of the belt corridor, deteriorating the air quality inside the belt corridor and generating a smell of stone powder, which is not conducive to personnel to repair the belt conveyor inside the belt corridor. When the weather is wet, the ore mined from the mine is adhered with mud. During the process of the belt conveyor transporting ore, the mud scatters and adheres to the belt, which will affect the transportation efficiency of the belt conveyor.

[0003] Currently, a belt cleaning device is usually used to clean the belt on the belt conveyor. However, the existing belt cleaning device has a relatively complex structure, is not easy to manufacture, and has a low cleaning degree for the belt on the belt conveyor. Content of the Utility Model

[0004] The technical problem to be solved by the utility model is: to provide a cleaning device for ore transportation to solve at least some of the above technical problems.

[0005] To achieve the above purpose, the technical scheme adopted by the utility model is as follows:

[0006] A cleaning device for ore transportation includes a belt corridor, a belt conveyor arranged in the belt corridor, a water mist spraying mechanism arranged on the belt corridor for dust removal inside the belt corridor, and a cleaning mechanism arranged in the belt corridor for cleaning the belt on the belt conveyor; the cleaning mechanism includes a cleaning box arranged in the belt corridor and below the belt conveyor, and a water supply mechanism communicated with the cleaning box.

[0007] Further, two partitions are embedded in the cleaning box to divide the interior of the cleaning box into a first cleaning chamber, a second cleaning chamber and a third cleaning chamber, and a diaphragm is arranged in the third cleaning chamber to divide the third cleaning chamber into a filtering chamber and a containing chamber.

[0008] Further, the water delivery mechanism includes a first water storage tank disposed outside the belt corridor, a first water pump connected to the first water storage tank, a first water delivery pipe connected to the first water pump, a second water delivery pipe connected to the first water delivery pipe, and a third water delivery pipe and a fourth water delivery pipe connected to the second water delivery pipe; the third water delivery pipe is connected to the second cleaning chamber, the fourth water delivery pipe is connected to the filtering chamber, a first sewage outlet is formed in the side wall of the second cleaning chamber, and a second sewage outlet is formed in the side wall of the accommodating chamber.

[0009] Further, an installation rack is disposed in the accommodating chamber, an installation groove and a water permeable groove which are communicated with each other are formed on the installation rack, and a water removing cloth strip is installed in the installation groove; a dehumidifying fan is disposed outside the cleaning box.

[0010] Further, a first embedding groove is formed in the first cleaning chamber, and a first sludge scraping mechanism is embedded in the first embedding groove; the first sludge scraping mechanism includes a first embedding plate embedded in the first embedding groove, a first connecting plate disposed at the top of the first embedding plate, a first extension plate disposed at the top of the first connecting plate, and a scraping head disposed at the top of the first extension plate.

[0011] Further, a second embedding groove is formed in the second cleaning chamber, and a second sludge scraping mechanism is embedded in the second embedding groove; the second sludge scraping mechanism includes a second embedding plate embedded in the second embedding groove, a second connecting plate disposed on the second embedding plate, and a scraping plate disposed on the second connecting plate; the water delivery mechanism is communicated with the second cleaning chamber and corresponds to the scraping plate.

[0012] Further, a third embedding groove is formed in the filtering chamber, and a brushing mechanism is embedded in the third embedding groove; the brushing mechanism includes a third embedding plate embedded in the third embedding groove, a third connecting plate disposed at the top of the third embedding plate, a third extension plate disposed at the top of the third connecting plate, and bristles disposed at the top of the third extension plate; the water delivery mechanism is communicated with the filtering chamber and corresponds to the bristles.

[0013] Further, the water mist spraying mechanism includes a second water storage tank disposed outside the belt corridor, a second water pump connected to the second water storage tank, a fifth water delivery pipe connected to the second water pump, a plurality of sixth water delivery pipes respectively connected to the fifth water delivery pipe and spaced apart from each other on the outer side wall of the belt corridor, a plurality of seventh water delivery pipes disposed on the outer wall of the top of the belt corridor and in one-to-one correspondence and communication with the sixth water delivery pipes, and a plurality of water mist nozzles connected to the seventh water delivery pipes and located inside the belt corridor.

[0014] Compared with the prior art, the utility model has the following beneficial effects:

[0015] The utility model has a simple structure, is scientifically and reasonably designed, and is convenient to use. The utility model can be used in various weather conditions. When the weather is dry, it can clean the air in the belt corridor, that is, use the water mist spraying mechanism to spray water mist to capture and remove the stone powder diffused in the belt corridor, reduce the stone powder content in the air in the belt corridor, and improve the air quality in the belt corridor. When the weather is humid, it can clean the belt on the belt conveyor to remove the soil adhered to the belt and improve the transportation efficiency of the belt conveyor; the utility model uses the first cleaning chamber, the second cleaning chamber and the filtering chamber separated in the cleaning box to clean the belt on the belt conveyor in sequence, improving the cleanliness of the belt on the belt conveyor; the cleaning box has a simple structure and is convenient to manufacture. Description of the Drawings

[0016] Figure 1 It is a front view schematic diagram of the distribution of the water mist spraying mechanism and the cleaning mechanism on the belt corridor.

[0017] Figure 2 It is a cross-sectional view of the cleaning box under the belt.

[0018] Figure 3 It is a cross-sectional view of the first embedding groove, the second embedding groove and the third embedding groove on the cleaning box.

[0019] Figure 4 It is a top view of the first embedding groove, the second embedding groove and the third embedding groove on the cleaning box.

[0020] Figure 5 It is a schematic diagram of the connection between the water delivery mechanism and the cleaning box.

[0021] Figure 6 It is a top view of the connection between the third water delivery pipe and the fourth water delivery pipe and the second water delivery pipe respectively.

[0022] Figure 7 It is an external view schematic diagram of the distribution of the first sewage outlet and the second sewage outlet on the cleaning box.

[0023] Figure 8 It is a schematic diagram of the sedimentation tank being connected from the second sewage outlet and connected to the first water pump.

[0024] Figure 9 It is a cross-sectional view of the fourth embedding groove on the cleaning box.

[0025] Figure 10 It is a schematic diagram of the distribution of the embedding strips on the partition board.

[0026] Figure 11 It is a schematic diagram of the distribution of the sixth water delivery pipe and the seventh water delivery pipe on the outer wall of the belt corridor.

[0027] Figure 12 It is a front view schematic diagram of the first mud scraping mechanism.

[0028] Figure 13 It is the front view schematic diagram of the second sludge scraping mechanism.

[0029] Figure 14 It is the front view schematic diagram of the brushing mechanism.

[0030] Among them, the names corresponding to the reference numerals are:

[0031] 1 - Belt corridor, 2 - Belt conveyor, 3 - Cleaning box, 4 - First cleaning chamber, 5 - Second cleaning chamber, 6 - Third cleaning chamber, 7 - Partition board, 8 - Filter chamber, 9 - Accommodation chamber, 10 - Diaphragm, 11 - First embedded plate, 12 - First connecting plate, 13 - First extension plate, 14 - Scraping head, 15 - First embedded groove, 16 - Second embedded groove, 17 - Second embedded plate, 18 - Second connecting plate, 19 - Scraper, 20 - Third embedded groove, 21 - Third embedded plate, 22 - Third connecting plate, 23 - Third extension plate, 24 - Brush bristles, 25 - First water storage tank, 26 - First water pump, 27 - First water delivery pipe, 28 - Second water delivery pipe, 29 - Third water delivery pipe, 30 - Fourth water delivery pipe, 31 - First sewage outlet, 32 - Second sewage outlet, 33 - Mounting rack, 34 - Mounting groove, 35 - Water removal cloth strip, 36 - Water permeable groove, 37 - Dehumidifying fan, 38 - Second water storage tank, 39 - Second water pump, 40 - Fifth water delivery pipe, 41 - Sixth water delivery pipe, 42 - Seventh water delivery pipe, 43 - Water mist nozzle, 44 - Fourth embedded groove, 45 - Embedded strip, 46 - Second sewage pipe, 47 - Water delivery pump, 48 - Settling tank, 49 - Circulation pipe, 50 - Second valve, 51 - First spray pipe, 52 - Second spray irrigation, 53 - Second valve, 54 - Third valve, 55 - Belt. Specific implementation manners

[0032] In order to make the purpose, technical solutions and advantages of the present utility model clearer and more understandable, the present utility model will be further described in detail below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.

[0033] In the description of the present utility model, it should be noted that the orientation or positional relationship indicated by terms such as "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation or be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the present utility model. In addition, the terms "first", "second", "third" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance.

[0034] In the description of the present utility model, it should be noted that unless otherwise clearly specified and defined, the terms "installation", "connection", "connection" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; of course, it can also be a mechanical connection or an electrical connection; in addition, it can also be a direct connection or an indirect connection through an intermediate medium, or it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.

[0035] Embodiment 1

[0036] As Figures 1-14 shown, a cleaning device for ore transportation provided by the present utility model includes a belt gallery 1, a belt conveyor 2 disposed in the belt gallery 1, a water mist spraying mechanism disposed on the belt gallery 1 for dust removal inside the belt gallery 1, and a cleaning mechanism disposed in the belt gallery 1 for cleaning the belt on the belt conveyor 2; the cleaning mechanism includes a cleaning box 3 disposed in the belt gallery 1 and below the belt conveyor 2, and a water supply mechanism communicated with the cleaning box 3.

[0037] The structure of the present utility model is simple, scientifically reasonable in design, and convenient to use. The present utility model can be used in various weather conditions. When the weather is dry, the air inside the belt gallery can be cleaned, that is, the water mist spraying mechanism is used to spray water mist to capture and remove the stone powder diffused inside the belt gallery, reduce the stone powder content in the air inside the belt gallery, and improve the air quality inside the belt gallery. When the weather is humid, the belt on the belt conveyor can be cleaned to remove the soil adhered to the belt and improve the transportation efficiency of the belt conveyor; the present utility model uses the first cleaning chamber, the second cleaning chamber and the filtering chamber separated in the cleaning box to clean the belt on the belt conveyor in sequence, and uses the water removal cloth strip to wipe off the residual water droplets on the belt, and then uses the dehumidifying fan to dehumidify the belt, improving the cleanliness of the belt on the belt conveyor; the structure of the cleaning box is simple and convenient to manufacture.

[0038] Embodiment 2

[0039] As Figures 1-14As shown in the figure, a cleaning device for ore transportation provided by the present utility model includes a belt corridor 1, a belt conveyor 2 disposed within the belt corridor 1, a water mist spraying mechanism disposed on the belt corridor 1 for dust removal inside the belt corridor 1, and a cleaning mechanism disposed within the belt corridor 1 for cleaning the belt 55 on the belt conveyor 2; the cleaning mechanism includes a cleaning box 3 disposed within the belt corridor 1 and below the belt conveyor 2, and a water conveyance mechanism connected to the cleaning box 3.

[0040] Two partition plates 7 are embedded in the cleaning box 3 to divide the interior of the cleaning box 3 into a first cleaning chamber 4, a second cleaning chamber 5, and a third cleaning chamber 6. A diaphragm 10 is disposed within the third cleaning chamber 6 to divide the third cleaning chamber 6 into a filtration chamber 8 and a storage chamber 9.

[0041] In Embodiment 2, the first cleaning chamber 4 is used to remove larger mud blocks adhered to the belt 55. On the basis of the cleaning in the first cleaning chamber 4, within the second cleaning chamber 5, the belt is wetted by the water conveyance mechanism, so that the remaining soil on the belt becomes mud. The second cleaning chamber 5 scrapes the mud on the belt. On the basis of the cleaning in the second cleaning chamber, within the filtration chamber 8, the belt is flushed by the water conveyance mechanism, and the filtration chamber 8 simultaneously brushes the belt to remove the remaining mud stains on the belt. After the belt is brushed in the filtration chamber 8, sewage is formed. The sewage flows into the storage chamber 9 after being filtered by the diaphragm 10, and the mud residues in the sewage remain in the filtration chamber 8. The water in the storage chamber is discharged through the second sewage outlet 32. The sewage in the second cleaning chamber 5 is discharged through the first sewage outlet 31.

[0042] The partition plate 7 is embedded in the cleaning box 3. A U-shaped fourth embedding groove 44 is formed on the inner wall of the cleaning box 3. An embedding strip 45 in a U shape and adapted to the fourth embedding groove 44 is provided on the outer edge of the partition plate 7, and the embedding strip 45 is embedded in the fourth embedding groove 44. The partition plate 7 is detachable on the cleaning box 3. In this way, it is convenient to remove the mud blocks in the first cleaning chamber 4 and the mud residues adhered to the inner walls of the second cleaning chamber 5 and the filtration chamber 8.

[0043] Embodiment 3

[0044] As Figures 1-14 As shown in the figure, a cleaning device for ore transportation provided by the present utility model includes a belt corridor 1, a belt conveyor 2 disposed within the belt corridor 1, a water mist spraying mechanism disposed on the belt corridor 1 for dust removal inside the belt corridor 1, and a cleaning mechanism disposed within the belt corridor 1 for cleaning the belt 55 on the belt conveyor 2; the cleaning mechanism includes a cleaning box 3 disposed within the belt corridor 1 and below the belt conveyor 2, and a water conveyance mechanism connected to the cleaning box 3.

[0045] The cleaning box 3 is internally embedded with two partition plates 7 that divide the interior of the cleaning box 3 into a first cleaning chamber 4, a second cleaning chamber 5, and a third cleaning chamber 6. A diaphragm 10 is provided in the third cleaning chamber 6 to divide the third cleaning chamber 6 into a filtering chamber 8 and a containing chamber 9.

[0046] The water delivery mechanism includes a first water storage tank 25 provided outside the belt corridor 1, a first water pump 26 connected to the first water storage tank 25, a first water delivery pipe 27 connected to the first water pump 26, a second water delivery pipe 28 connected to the first water delivery pipe 27, and a third water delivery pipe 29 and a fourth water delivery pipe 30 connected to the second water delivery pipe 28; the third water delivery pipe 29 is connected to the second cleaning chamber 5, the fourth water delivery pipe 30 is connected to the filtering chamber 8, a first sewage discharge port 31 is provided on the side wall of the second cleaning chamber 5, and a second sewage discharge port 32 is provided on the side wall of the containing chamber 9.

[0047] In the third embodiment, the first water pump 26 delivers the clear water in the first water storage tank 25 to the third water delivery pipe 29 and the fourth water delivery pipe 30 through the first water delivery pipe 27 and the second water delivery pipe 28. On the basis of cleaning in the first cleaning chamber 4, in the second cleaning chamber 5, the water output from the third water delivery pipe 29 wets the surface of the belt, and the remaining soil on the belt becomes mud. The second cleaning chamber 5 scrapes the mud on the belt. On the basis of cleaning in the second cleaning chamber, in the filtering chamber 8, the water output from the fourth water delivery pipe 30 flushes the belt, and the filtering chamber 8 simultaneously brushes the belt to remove the remaining mud stains on the belt. The sewage in the filtering chamber 8 flows into the containing chamber 9 after being filtered by the diaphragm 10.

[0048] A first spray pipe 51 is connected to the third water delivery pipe 29, and a second spray pipe 52 is connected to the fourth water delivery pipe 30. The water in the third water delivery pipe 29 is sprayed onto the surface of the belt through the first spray pipe 51 to wet the surface of the belt, and the water in the fourth water delivery pipe 30 is sprayed onto the surface of the belt through the second spray pipe 52 to flush the surface of the belt.

[0049] A second sewage discharge pipe 46 is connected to the second sewage discharge port 32. A water delivery pump 47 is connected to the second sewage discharge pipe 46. A sedimentation tank 48 is connected to the water delivery pump 47. A circulation pipe 49 is connected to the sedimentation tank 48. The circulation pipe 49 is connected to the second water pump 26, and a second valve 50 is provided on the circulation pipe 49.

[0050] The second sewage discharge pipe 46 passes through the wall of the belt corridor 1 and extends outside the belt corridor 1. The water delivery pump 47, the sedimentation tank 48, and the circulation pipe 49 are all located outside the belt corridor 1.

[0051] The water delivery pump 47 pumps the water in the containing chamber 9 into the sedimentation tank 48 through the second sewage discharge pipe 46 for sedimentation. The upper layer of clear water after sedimentation in the sedimentation tank 48 can be used again for belt cleaning under the action of the second water pump 26.

[0052] A second valve 53 is provided on the fourth water delivery pipe 30, and a third valve 54 is provided on the first water delivery pipe 27. When the water pump 47 pumps the upper-layer clear water settled in the sedimentation tank 48, the second valve 53 and the third valve 54 are closed, and the upper-layer clear water settled in the sedimentation tank 48 is used in the second cleaning chamber 5 to moisten the soil on the belt.

[0053] When the water pump 47 pumps the clear water in the first water storage tank 25, the second valve 53 and the third valve 54 are opened, and the water in the first water storage tank 25 is used in the second cleaning chamber 5 to moisten the belt and in the filtering chamber 8 to wash the belt.

[0054] A first sewage discharge pipe is externally connected to the first sewage outlet 31. The first sewage discharge pipe passes through the wall of the belt corridor 1 and extends outside the belt corridor 1, and the first sewage discharge pipe discharges the sewage in the second cleaning chamber 5 to the outside.

[0055] Embodiment 4

[0056] As Figures 1-14 shown, a cleaning device for ore transportation provided by the present utility model includes a belt corridor 1, a belt conveyor 2 provided in the belt corridor 1, and further includes a water mist spraying mechanism provided on the belt corridor 1 for dust removal inside the belt corridor 1, and a cleaning mechanism provided in the belt corridor 1 for cleaning the belt on the belt conveyor 2; the cleaning mechanism includes a cleaning box 3 provided in the belt corridor 1 and located below the belt conveyor 2, and a water delivery mechanism connected to the cleaning box 3.

[0057] Two partition plates 7 are embedded in the cleaning box 3 to divide the interior of the cleaning box 3 into a first cleaning chamber 4, a second cleaning chamber 5 and a third cleaning chamber 6. A diaphragm 10 is provided in the third cleaning chamber 6 to divide the third cleaning chamber 6 into a filtering chamber 8 and a containing chamber 9.

[0058] An installation frame 33 is provided in the containing chamber 9. An installation groove 34 and a water permeable groove 36 that are communicated with each other are provided on the installation frame 33. A water removing cloth strip 35 is installed in the installation groove 34; a dehumidifying fan 37 is provided outside the cleaning box 3.

[0059] In this Embodiment 4, after the first cleaning chamber 4, the second cleaning chamber 5 and the filtering chamber 8 sequentially clean the belt on the belt conveyor 2, the water removing cloth strip 35 wipes off the remaining water droplets on the belt, and the dehumidifying fan 37 dehumidifies the belt from which the water droplets have been wiped off.

[0060] Embodiment 5

[0061] As Figures 1-14As shown in the figure, a cleaning device for ore transportation provided by the present utility model includes a belt gallery 1, a belt conveyor 2 disposed inside the belt gallery 1, a water mist spraying mechanism disposed on the belt gallery 1 for dust removal inside the belt gallery 1, and a cleaning mechanism disposed inside the belt gallery 1 for cleaning the belt on the belt conveyor 2; the cleaning mechanism includes a cleaning box 3 disposed inside the belt gallery 1 and below the belt conveyor 2, and a water supply mechanism connected to the cleaning box 3.

[0062] Two partition plates 7 are embedded in the cleaning box 3 to divide the interior of the cleaning box 3 into a first cleaning chamber 4, a second cleaning chamber 5, and a third cleaning chamber 6. A diaphragm 10 is disposed in the third cleaning chamber 6 to divide the third cleaning chamber 6 into a filtering chamber 8 and a containing chamber 9.

[0063] A first embedding groove 15 is provided in the first cleaning chamber 4, and a first mud scraping mechanism is embedded in the first embedding groove 15; the first mud scraping mechanism includes a first embedding plate 11 embedded in the first embedding groove 15, a first connecting plate 12 disposed at the top of the first embedding plate 11, a first extension plate 13 disposed at the top of the first connecting plate 12, and a scraping head 14 disposed at the top of the first extension plate 13.

[0064] In this embodiment 5, the first connecting plate 12, the first extension plate 13, and the scraping head 14 are integrally connected. The principle of the first cleaning chamber 4 for removing mud blocks on the belt is as follows: during the movement of the belt, the scraping head 14 scrapes the mud blocks on the belt. The scraping head 14 is in an arc shape, and the scraping head 14 is bent to form a groove. Thus, during the process of the scraping head 14 scraping the mud blocks, it is beneficial for the mud blocks to fall into the first cleaning chamber 4 along the groove, and it can prevent the mud blocks from accumulating on the top of the scraping head 14 and affecting the mud block scraping efficiency.

[0065] The first mud scraping mechanism is detachable in the first cleaning chamber 4, so that it is convenient to remove the mud blocks that have fallen into the first cleaning chamber 4.

[0066] Embodiment 6

[0067] As Figures 1-14 As shown in the figure, a cleaning device for ore transportation provided by the present utility model includes a belt gallery 1, a belt conveyor 2 disposed inside the belt gallery 1, a water mist spraying mechanism disposed on the belt gallery 1 for dust removal inside the belt gallery 1, and a cleaning mechanism disposed inside the belt gallery 1 for cleaning the belt on the belt conveyor 2; the cleaning mechanism includes a cleaning box 3 disposed inside the belt gallery 1 and below the belt conveyor 2, and a water supply mechanism connected to the cleaning box 3.

[0068] Two partition plates 7 are embedded in the cleaning box 3 to divide the interior of the cleaning box 3 into a first cleaning chamber 4, a second cleaning chamber 5, and a third cleaning chamber 6. A diaphragm 10 is disposed in the third cleaning chamber 6 to divide the third cleaning chamber 6 into a filtering chamber 8 and a containing chamber 9.

[0069] A second cleaning chamber 5 is provided with a second fitting groove 16, and a second mud scraping mechanism is fitted in the second fitting groove 16; the second mud scraping mechanism includes a second fitting plate 17 fitted in the second fitting groove 16, a second connecting plate 18 provided on the second fitting plate 17, and a scraping plate 19 provided on the second connecting plate 18; the water delivery mechanism is communicated with the second cleaning chamber 5 and corresponds to the scraping plate 19.

[0070] In this embodiment 6, the principle of the second cleaning chamber 5 for cleaning the soil on the belt is as follows: on the basis of the cleaning in the first cleaning chamber 4, in the second cleaning chamber 5, the water output by the third water delivery pipe 29 wets the surface of the belt, and the remaining soil on the belt becomes mud, and the scraping plate 19 scrapes the mud on the belt.

[0071] Embodiment 7

[0072] As Figures 1-14 shown, a cleaning device for ore transportation provided by the present utility model includes a belt corridor 1, a belt conveyor 2 provided in the belt corridor 1, and further includes a water mist spraying mechanism provided on the belt corridor 1 for dust removal inside the belt corridor 1, and a cleaning mechanism provided in the belt corridor 1 for cleaning the belt on the belt conveyor 2; the cleaning mechanism includes a cleaning box 3 provided in the belt corridor 1 and located below the belt conveyor 2, and a water delivery mechanism communicated with the cleaning box 3.

[0073] Two partition plates 7 are fitted in the cleaning box 3 to divide the interior of the cleaning box 3 into a first cleaning chamber 4, a second cleaning chamber 5 and a third cleaning chamber 6. A diaphragm 10 is provided in the third cleaning chamber 6 to divide the third cleaning chamber 6 into a filtering chamber 8 and a containing chamber 9.

[0074] A third fitting groove 20 is provided in the filtering chamber 8, and a brushing mechanism is fitted in the third fitting groove 20; the brushing mechanism includes a third fitting plate 21 fitted in the third fitting groove 20, a third connecting plate 22 provided on the top of the third fitting plate 21, a third extension plate 23 provided on the top of the third connecting plate 22, and bristles 24 provided on the top of the third extension plate 23; the water delivery mechanism is communicated with the filtering chamber 8 and corresponds to the bristles 24.

[0075] In this embodiment 7, the principle of the filtering chamber 8 for cleaning the stains on the belt is as follows: on the basis of the cleaning in the second cleaning chamber 5, in the filtering chamber 8, the water output by the fourth water delivery pipe 30 flushes the belt, and the bristles 24 simultaneously brush the belt to remove the remaining stains on the belt.

[0076] Embodiment 8

[0077] As Figures 1-14As shown in the figure, a cleaning device for ore transportation provided by the utility model includes a belt corridor 1 and a belt conveyor 2 disposed in the belt corridor 1. It further includes a water mist spraying mechanism disposed on the belt corridor 1 for dust removal inside the belt corridor 1, and a cleaning mechanism disposed in the belt corridor 1 for cleaning the belt on the belt conveyor 2. The cleaning mechanism includes a cleaning box 3 disposed in the belt corridor 1 and below the belt conveyor 2, and a water supply mechanism communicated with the cleaning box 3.

[0078] The water mist spraying mechanism includes a second water storage tank 38 disposed outside the belt corridor 1, a second water pump 39 connected to the second water storage tank 38, a fifth water pipe 40 connected to the second water pump 39, several sixth water pipes 41 respectively connected to the fifth water pipe 40 and spacedly distributed on the outer side wall of the belt corridor 1, several seventh water pipes 42 disposed on the outer wall of the top of the belt corridor 1 and corresponding to and communicated with the sixth water pipes 41 one by one, and several water mist nozzles 43 connected to the seventh water pipes 42 and located inside the belt corridor 1.

[0079] In Embodiment 8, when the weather is dry and the air inside the belt corridor 1 needs to be cleaned, the second water pump 39 sends the water in the second water storage tank 38 into the sixth water pipe 41 through the fifth water pipe 40. The sixth water pipe 41 conveys the water into the seventh water pipe 42. The water mist nozzles 43 spray the water in the seventh water pipe 42 into the belt corridor 1 in the form of water mist. The water mist captures the stone powder in the belt corridor 1, reducing the content of stone powder in the air inside the belt corridor 1.

[0080] The belt conveyor 2, the first water pump 26, the dehumidifying fan 37, the second water pump 39, and the water transfer pump 47 used in the utility model are all existing known electrical devices and can be directly purchased and used in the market. The structures, circuits, and control principles of the belt conveyor 2, the first water pump 26, the dehumidifying fan 37, the second water pump 39, and the water transfer pump 47 are all existing known technologies. Therefore, the structures, circuits, and control principles of the belt conveyor 2, the first water pump 26, the dehumidifying fan 37, the second water pump 39, and the water transfer pump 47 will not be elaborated here.

[0081] Finally, it should be noted that the above embodiments are only preferred embodiments of the present utility model to illustrate the technical solutions of the present utility model, rather than limiting it, and certainly not limiting the patent scope of the present utility model; although the present utility model has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements on some or all of the technical features; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the various embodiments of the present utility model; that is to say, any meaningless modifications or polishing made on the main design concept and spirit of the present utility model, as long as the technical problems solved are still the same as those of the present utility model, should be included in the protection scope of the present utility model; in addition, directly or indirectly applying the technical solutions of the present utility model to other related technical fields shall similarly be included in the patent protection scope of the present utility model.

Claims

1. A cleaning device for ore transportation, comprising a belt corridor (1), a belt conveyor (2) arranged in the belt corridor (1), characterized in that: It also comprises a water mist spraying mechanism arranged on the belt corridor (1) for removing dust from the interior of the belt corridor (1), and a cleaning mechanism arranged in the belt corridor (1) for cleaning the belt on the belt conveyor (2); the cleaning mechanism comprises a cleaning box (3) arranged in the belt corridor (1) and below the belt conveyor (2), and a water delivery mechanism connected to the cleaning box (3).

2. A cleaning device for ore transportation according to claim 1, characterized in that: Two partitions (7) are embedded in the cleaning box (3) to divide the interior of the cleaning box (3) into a first cleaning chamber (4), a second cleaning chamber (5) and a third cleaning chamber (6); a diaphragm (10) is provided in the third cleaning chamber (6) to divide the third cleaning chamber (6) into a filtering chamber (8) and a containing chamber (9).

3. A cleaning device for ore transportation according to claim 2, characterized in that: The water delivery mechanism comprises a first water storage tank (25) arranged outside the belt corridor (1), a first water pump (26) connected from the first water storage tank (25), a first water delivery pipe (27) connected from the first water pump (26), a second water delivery pipe (28) connected from the first water delivery pipe (27), and a third water delivery pipe (29) and a fourth water delivery pipe (30) connected from the second water delivery pipe (28); the third water delivery pipe (29) is connected to the second cleaning chamber (5), the fourth water delivery pipe (30) is connected to the filtering chamber (8), a first sewage outlet (31) is provided on a side wall of the second cleaning chamber (5), and a second sewage outlet (32) is provided on a side wall of the containing chamber (9).

4. A cleaning device for ore transportation according to claim 2, characterized in that: A mounting frame (33) is arranged in the containing chamber (9), and a mounting groove (34) and a water-permeable groove (36) are arranged on the mounting frame (33), and a water-removing cloth strip (35) is installed in the mounting groove (34); a dehumidifying fan (37) is arranged outside the cleaning box (3).

5. A cleaning device for ore transportation according to claim 2, characterized in that: A first embedding groove (15) is provided in the first cleaning chamber (4), and a first scraping mechanism is embedded in the first embedding groove (15); the first scraping mechanism comprises a first embedding plate (11) embedded in the first embedding groove (15), a first connecting plate (12) arranged on the top of the first embedding plate (11), a first extending plate (13) arranged on the top of the first connecting plate (12), and a scraping head (14) arranged on the top of the first extending plate (13).

6. A cleaning device for ore transportation according to claim 2, characterized in that: A second embedding groove (16) is provided in the second cleaning chamber (5), and a second scraping mechanism is embedded in the second embedding groove (16); the second scraping mechanism comprises a second embedding plate (17) embedded in the second embedding groove (16), a second connecting plate (18) provided on the second embedding plate (17), and a scraping plate (19) provided on the second connecting plate (18); and the water delivery mechanism is connected to the second cleaning chamber (5) and corresponds to the scraping plate (19).

7. A cleaning device for ore transportation according to claim 2, characterized in that: A third embedding groove (20) is provided in the filter cavity (8), and a brushing mechanism is embedded in the third embedding groove (20); the brushing mechanism comprises a third embedding plate (21) embedded in the third embedding groove (20), a third connecting plate (22) arranged on the top of the third embedding plate (21), a third extending plate (23) arranged on the top of the third connecting plate (22), and bristles (24) arranged on the top of the third extending plate (23); and the water delivery mechanism is connected to the filter cavity (8) and corresponds to the bristles (24).

8. The cleaning device for ore transportation according to claim 1, characterized in that: The water mist spraying mechanism comprises a second water storage tank (38) arranged outside the belt corridor (1), a second water pump (39) connected from the second water storage tank (38), a fifth water pipe (40) connected from the second water pump (39), a plurality of sixth water pipes (41) respectively connected from the fifth water pipe (40) and distributed at intervals on the outer wall of the belt corridor (1), a plurality of seventh water pipes (42) arranged on the outer wall of the top of the belt corridor (1) and connected to the sixth water pipes (41) in a one-to-one correspondence, and a plurality of water mist nozzles (43) connected from the seventh water pipe (42) and located in the belt corridor (1).