Sprinkling device for sandstone material stacking warehouse
Patent Information
- Application Number
- CN202520329301.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-27
- Publication Date
- 2026-03-20
- Estimated Expiration
- 2035-02-27
AI Technical Summary
The existing water spraying system in sand and gravel storage warehouses has poor dust suppression effect because the nozzles are installed on both sides of the warehouse's inner wall.
A water spraying device was designed, comprising a first dust suppression mechanism, a connecting component, a connecting component, a second dust suppression mechanism, and a collection mechanism. The device sprays water at the center of the warehouse and on both sides of the inner wall through multiple nozzles, and achieves efficient dust suppression and water resource reuse by combining the collection and water replenishment mechanisms.
It improves the water spraying effect, quickly reduces dust diffusion, and enables the reuse of water resources, thus enhancing the practicality and environmental friendliness of the device.
Smart Images

Figure CN224009372U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to sand and gravel stockpile dust falling technology field, concretely is for sand and gravel stockpiling warehouse's watering device. BACKGROUND
[0002] Sand and gravel refers to the loose mixture of sand and gravel, usually stacked in fixed warehouse, in the warehouse through artificial or mechanical loading process of sand and gravel is very easy to cause dust, for this need watering device to sprinkle water and reduce dust.
[0003] At present, watering device is usually installed in the two sides of the inner wall of the warehouse, the water flow is sprayed to the ground by the spray head on the watering device, that is, the dust generated by the sand and gravel stockpile can be treated by dust falling, since the spray head is installed on the two sides of the inner wall of the warehouse, and the dust of the sand and gravel stockpile usually spreads from the center, the effect of the single two-sided spray head spraying to the center is not good, thereby reducing the effect of watering and dust falling, therefore, we propose a watering device for sand and gravel stockpiling warehouse CONTENT OF THE UTILITY MODEL
[0004] Based on the deficiencies of the prior art mentioned in the above background technology, the watering device for sand and gravel stockpiling warehouse is provided.
[0005] The utility model overcomes the above technical problems by adopting the following technical scheme, specifically:
[0006] The watering device for sand and gravel stockpiling warehouse comprises a warehouse, a first dust falling mechanism arranged on the top of the warehouse and extending into the interior of the warehouse, two connection assemblies arranged on the top of the warehouse and engaged with the first dust falling mechanism, a connecting assembly arranged on each of the two sides of the inner wall of the warehouse and extending to the top of the warehouse and abutting with the two connection assemblies, a second dust falling mechanism arranged on each of the two sides of the inner wall of the warehouse and engaged with the two connecting assemblies, a collecting mechanism arranged on the top of the warehouse and extending into the interior of the warehouse and connected with the first dust falling mechanism and the two second dust falling mechanisms, a water supplementing mechanism arranged on one side of the warehouse and extending to the top of the warehouse and connected with the collecting mechanism.
[0007] As a further scheme of the utility model: the first dust falling mechanism includes mounting bracket, reversible motor, connecting shaft, first gear, water storage box and multiple first spray heads, the mounting bracket is connected at the top of warehouse, the reversible motor is connected at the top of mounting bracket, and one end of reversible motor output shaft extends to the top of mounting bracket inner wall, the connecting shaft is rotatably connected at the top of warehouse, and the top end of connecting shaft is connected with one end of reversible motor output shaft, the bottom end of connecting shaft extends to the inside of warehouse, the first gear is connected at the outer surface of connecting shaft, the water storage box is connected at the bottom end of connecting shaft, multiple first spray heads are respectively connected at the outer surface of water storage box and the bottom of water storage box.
[0008] As a further scheme of the utility model: the connecting assembly includes hollow sleeve and first rack, the hollow sleeve is fixedly connected at the top of warehouse, the first rack slides in the inside of hollow sleeve, and both ends of first rack extend to both sides of hollow sleeve.
[0009] As a further scheme of the utility model: the connecting assembly includes fixed plate, second rack and spring telescopic rod, the fixed plate is connected at one side of warehouse inner wall, the second rack is slidably connected at the top of warehouse, and the bottom end of second rack extends to the inside of warehouse, the top end of second rack is attached with one end of first rack, the spring telescopic rod is connected between the top of fixed plate and the bottom of second rack.
[0010] As a further scheme of the utility model: the second dust falling mechanism includes two connecting frames, water storage pipe, second gear and multiple second spray heads, two connecting frames are connected at one side of warehouse inner wall, the water storage pipe is rotatably connected between two connecting frames, the second gear is connected at the outer surface of water storage pipe, and the second gear is engaged with second rack, multiple second spray heads are equidistantly connected at the outer surface of water storage pipe.
[0011] As a further scheme of the utility model: the collecting mechanism includes water storage tank, filter screen, water guide, first water pump, multiple section pipes and three hoses, the water storage tank is connected at the top of warehouse, the filter screen is connected at the top of water storage tank, the water guide is connected at the top of filter screen, the first water pump is connected at the front of water storage tank, and the input end of first water pump extends to the inside of water storage tank, the multiple section pipes are connected with the output end of first water pump, and extend to the inside of warehouse, three hoses are all connected with multiple section pipes, and one end of one of hoses is connected with water storage pipe, and one end of another hose is connected with the top of water storage box.
[0012] As a further scheme of the utility model: the water supplement mechanism comprises a second water pump and a connecting pipe, the second water pump is connected to one side of the warehouse, the connecting pipe is connected to one side of the water storage tank, and one end of the connecting pipe extends to the lower part of one side of the warehouse and is connected with the output end of the second water pump.
[0013] After the above structure, the utility model has the following advantages compared with the prior art:
[0014] 1. In the utility model, under the action of the first dust falling mechanism, the two connecting assemblies, the two connecting assemblies, the two second dust falling mechanisms and the collecting mechanism, the water sprayed can not only be sprayed around the center of the warehouse, but also be sprayed inward on both sides of the inner wall of the warehouse, so that the speed of dust diffusion is quickly reduced, the effect of water spraying is improved, and the effect of high-efficiency dust falling of dust is realized.
[0015] 2. In the utility model, under the action of the collecting mechanism and the water supplement mechanism, rainwater can be collected, the effective reuse of water resources is realized, environmental protection and resource saving are realized, the water source in the collecting mechanism can be conveyed, the subsequent water spraying of the collecting mechanism to the inside of the warehouse is facilitated, and therefore the practicability of the device is improved. BRIEF DESCRIPTION OF DRAWINGS
[0016] Fig. 1 It is the whole structure schematic view of the utility model;
[0017] Fig. 2 It is the back structure schematic view of the utility model;
[0018] Fig. 3 It is the structure schematic view of the first dust falling mechanism and the connecting assembly of the utility model;
[0019] Fig. 4 It is the structure schematic view of the connecting assembly and the second dust falling mechanism of the utility model;
[0020] Fig. 5 It is the structure schematic view of the collecting mechanism and the water supplement mechanism of the utility model.
[0021] In the figure: 1, warehouse; 2, first dust falling mechanism; 201, mounting frame; 202, forward and reverse motor; 203, connecting shaft; 204, first gear; 205, water storage box; 206, first spray head; 3, connecting assembly; 301, hollow sleeve; 302, first rack; 4, connecting assembly; 401, fixed plate; 402, second rack; 403, spring telescopic rod; 5, second dust falling mechanism; 501, connecting frame; 502, water storage pipe; 503, second gear; 504, second spray head; 6, collecting mechanism; 601, water storage tank; 602, filter screen; 603, water guide; 604, first water pump; 605, multi-section pipe; 606, hose; 7, water replenishing mechanism; 701, second water pump; 702, connecting pipe. DETAILED DESCRIPTION
[0022] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0023] Embodiment 1
[0024] Please refer to Figs. 1-5 In the embodiments of the utility model, the water sprinkling device for sand and gravel storage warehouse comprises a warehouse 1, the top of the warehouse 1 is provided with a first dust falling mechanism 2, the first dust falling mechanism 2 extends to the inside of the warehouse 1, the top of the warehouse 1 is provided with two connecting assemblies 3, the two connecting assemblies 3 are engaged with the first dust falling mechanism 2, the two sides of the inner wall of the warehouse 1 are provided with connecting assemblies 4, the two connecting assemblies 4 extend to the top of the warehouse 1 and are attached to the two connecting assemblies 3, the two sides of the inner wall of the warehouse 1 are provided with second dust falling mechanisms 5, the two second dust falling mechanisms 5 are engaged with the two connecting assemblies 4 respectively, the top of the warehouse 1 is provided with a collecting mechanism 6, the collecting mechanism 6 extends to the inside of the warehouse 1 and is connected with the first dust falling mechanism 2 and the two second dust falling mechanisms 5, one side of the warehouse 1 is provided with a water replenishing mechanism 7, the water replenishing mechanism 7 extends to the top of the warehouse 1 and is connected with the collecting mechanism 6,
[0025] Specifically, by starting the first dust falling mechanism 2, the two connecting assemblies 3 can be driven to move to the two sides of the top of the warehouse 1 respectively, so that the two connecting assemblies 4 can be squeezed to move downward, and the two connecting assemblies 4 move downward at the same time to drive the two second dust falling mechanisms 5 to swing. Reverse starting the first dust falling mechanism 2 will drive the two connecting assemblies 3 to move reversely, so as not to squeeze the two connecting assemblies 4. At this time, the two connecting assemblies 4 will be reset to rise and drive the two second dust falling mechanisms 5 to swing reversely. Finally, starting the collecting mechanism 6 to deliver water to the first dust falling mechanism 2 and the two second dust falling mechanisms 5 respectively, so that the first dust falling mechanism 2 sprays water around the center inside the warehouse 1, and the two second dust falling mechanisms 5 repeatedly swing to the center of the warehouse 1 to spray water, thereby improving the effect of spraying water and reducing the rapid spread of dust. By connecting the water supplement mechanism 7 to an external water source and starting the water supplement mechanism 7, water can be delivered to the inside of the collecting mechanism 6 to supplement water.
[0026] Embodiment 2:
[0027] Please refer to Figs. 3-4The utility model discloses a water spraying device for sand and gravel storage warehouse, first dust fall mechanism 2 includes mounting bracket 201, positive and negative motor 202, connecting shaft 203, first gear 204, water storage box 205 and a plurality of first shower head 206, and mounting bracket 201 is connected at the top of warehouse 1, and positive and negative motor 202 is connected at the top of mounting bracket 201, and one end of positive and negative motor 202 output shaft extends to the top of mounting bracket 201 inner wall, and connecting shaft 203 is rotatably connected at the top of warehouse 1, and the top of connecting shaft 203 is connected with one end of positive and negative motor 202 output shaft, and the bottom of connecting shaft 203 extends to the inside of warehouse 1, and first gear 204 is connected at the outer surface of connecting shaft 203, and water storage box 205 is connected at the bottom of connecting shaft 203, and a plurality of first shower head 206 are respectively equidistantly connected at the outer surface of water storage box 205 and the bottom of water storage box 205, and link assembly 3 includes hollow sleeve 301 and first rack 302, and hollow sleeve 301 is fixedly connected at the top of warehouse 1, and first rack 302 slides in the inside of hollow sleeve 301, and the both ends of first rack 302 extend to the both sides of hollow sleeve 301 respectively, and connecting assembly 4 includes fixed plate 401, second rack 402 and spring telescopic rod 403, and fixed plate 401 is connected at one side of warehouse 1 inner wall, and second rack 402 is slidably connected at the top of warehouse 1, and the bottom of second rack 402 extends to the inside of warehouse 1, and the top of second rack 402 is attached with one end of first rack 302, and spring telescopic rod 403 is connected between the top of fixed plate 401 and the bottom of second rack 402, and second dust fall mechanism 5 includes two link frames 501, water storage pipe 502, second gear 503 and a plurality of second shower head 504, and two link frames 501 are all connected at one side of warehouse 1 inner wall, and water storage pipe 502 is rotatably connected between two link frames 501, and second gear 503 is connected at the outer surface of water storage pipe 502, and second gear 503 is engaged with second rack 402, and a plurality of second shower head 504 are equidistantly connected at the outer surface of water storage pipe 502, and collecting mechanism 6 includes water storage tank 601, filter screen 602, water guide 603, first water pump 604, multi-section pipe 605 and three hoses 606, and water storage tank 601 is connected at the top of warehouse 1, and filter screen 602 is connected at the top of water storage tank 601, and water guide 603 is connected at the top of filter screen 602, and first water pump 604 is connected at the front of water storage tank 601, and the input end of first water pump 604 extends to the inside of water storage tank 601, and multi-section pipe 605 is connected with the output end of first water pump 604, and multi-section pipe 605 extends to the inside of warehouse 1, and three hoses 606 are all connected with multi-section pipe 605, and one end of one of three hoses 606 is connected with water storage pipe 502, and one end of another hose 606 is connected with the top of water storage box 205, and water replenishing mechanism 7 includes second water pump 701 and link pipe 702, and second water pump 701 is connected at one side of warehouse 1, and link pipe 702 is connected at one side of water storage tank 601,And one end of the adapter pipe 702 extends to the lower part of the warehouse 1 on one side and is connected with the output end of the second water pump 701.
[0028] Specifically, the output end of the reversible motor 202 drives the water storage box 205 and the first gear 204 to rotate 90 degrees in the forward direction through the connecting shaft 203, the first gear 204 drives the first rack 302 to slide inside the hollow sleeve 301 and move towards the top end of the second rack 402, the first rack 302 will extrude the second rack 402, so that the second rack 402 slides downward at the top of the warehouse 1 and extrudes the spring telescopic rod 403 to contract, at the same time, the second rack 402 drives the second gear 503 to rotate, the second gear 503 drives the water storage pipe 502 to rotate in a semicircular arc, then the output shaft of the reversible motor 202 starts to reverse, the first gear 204 drives the water storage box 205 and the first gear 204 to rotate in the reverse direction, the first gear 204 drives the first rack 302 to slide reversely inside the hollow sleeve 301, so as not to extrude the second rack 402, at this time, the spring telescopic rod 403 will reset to drive the second rack 402 to move upward, and drive the second gear 503 to rotate, so that the water storage pipe 502 swings in an arc again, the first water pump 604 is started to deliver the water in the water storage tank 601 to the inside of the multi-section pipe 605, then the water flows into the inside of the repeatedly rotating water storage pipe 502 and the water storage box 205 through three hoses 606 respectively, and finally is sprayed out through a plurality of second spray heads 504 and a plurality of first spray heads 206, so that the plurality of first spray heads 206 can spray water at the position of the center inside the warehouse 1, and cooperate with the water storage pipe 502 to spray water from one side of the inner wall of the warehouse 1 to the center, thereby improving the water spraying effect. Through the action of the water guide 603, rainwater can be collected in the water storage tank 601 for use on rainy days, and by connecting an external water source through the adapter pipe 702 and starting the second water pump 701, the water source can be delivered to the inside of the water storage tank 601 through the adapter pipe 702, and the inside of the water storage tank 601 can be replenished with water.
[0029] The utility model discloses a working principle is: when rainy day, through the water guide bucket 603 to the drainage of rainwater, make rainwater after the filtration of filter screen 602, can flow into the inside collection of water storage tank 601, when needing to water the inside of the warehouse 1 of sand and stone material stack, through the staff and start the positive and negative motor 202, the output of positive and negative motor 202 passes through connecting shaft 203 and drives water storage box 205 and first gear 204 positive rotation ninety degrees, when first gear 204 rotates, will push first rack 302 in the inside sliding of hollow sleeve 301, after one end of first rack 302 will be close to the top end of second rack 402, simultaneously, first rack 302 will extrude second rack 402 and slide down on the top of warehouse 1, when second rack 402 slides down, will extrude spring telescopic rod 403 and contract, simultaneously, will drive second gear 503 and rotate, second gear 503 drives water storage pipe 502 and presents half arc line rotation, after the reverse start positive and negative motor 202, first gear 204 will drive water storage box 205 and first gear 204 and reverse, first gear 204 reversely push first rack 302 and slide reversely in the inside of hollow sleeve 301, so as not to extrude second rack 402, at this moment, spring telescopic rod 403 will reset and drive second rack 402 and move upwards, and drive second gear 503 and rotate, thereby drive water storage pipe 502 and swing again, start first water pump 604, the input of first water pump 604 sucks water from the inside of water storage tank 601, then water is transported to the inside of multi -section pipe 605 through the output of first water pump 604, then water flows into the inside of repeatedly rotating water storage pipe 502 and water storage box 205 through three hoses 606 respectively, finally, through a plurality of second spray head 504 and a plurality of first spray head 206, spray, make a plurality of first spray head 206 can spray in the inside center position of warehouse 1, and cooperate water storage pipe 502 and spray in the center of one side of the inner wall of warehouse 1, thereby improve the effect of watering, when needing to supplement the inside of water storage tank 601, connect second water pump 701 to external water source and start second water pump 701, can water source be transported to the inside of water storage tank 601 through the link pipe 702.
[0030] It is obvious for those skilled in the art that the utility model is not limited to the details of the above exemplary embodiments, and the utility model can be realized in other specific forms without departing from the spirit or basic features thereof.
Claims
1. A water sprinkler system for sand and gravel storage warehouses, characterized in that, include: A warehouse (1) is provided with a first dust suppression mechanism (2) on its top, which extends into the interior of the warehouse (1). Two connecting components (3) are provided on the top of the warehouse (1), and both connecting components (3) engage with the first dust suppression mechanism (2). Connecting components (4) are provided on both sides of the inner wall of the warehouse (1), and both connecting components (4) extend into the top of the warehouse (1) and are attached to the two connecting components (3). Second dust suppression mechanisms (5) are provided on both sides of the inner wall of the warehouse (1), and the two second dust suppression mechanisms (5) engage with the two connecting components (4) respectively. A collection mechanism (6) is provided on the top of the warehouse (1), and the collection mechanism (6) extends into the interior of the warehouse (1) and is connected to the first dust suppression mechanism (2) and the two second dust suppression mechanisms (5). A water replenishment mechanism (7) is provided on one side of the warehouse (1), and the water replenishment mechanism (7) extends into the top of the warehouse (1) and is connected to the collection mechanism (6).
2. The water sprinkler system for sand and gravel storage warehouses according to claim 1, characterized in that, The first dust suppression mechanism (2) includes a mounting frame (201), a forward and reverse motor (202), a connecting shaft (203), a first gear (204), a water storage box (205), and multiple first nozzles (206). The mounting frame (201) is connected to the top of the warehouse (1), the forward and reverse motor (202) is connected to the top of the mounting frame (201), and one end of the output shaft of the forward and reverse motor (202) extends to the top of the inner wall of the mounting frame (201). The connecting shaft (203) rotates. The top of the connecting shaft (203) is connected to the top of the warehouse (1), and the top end of the connecting shaft (203) is connected to one end of the output shaft of the forward and reverse motor (202). The bottom end of the connecting shaft (203) extends into the interior of the warehouse (1). The first gear (204) is connected to the outer surface of the connecting shaft (203). The water storage box (205) is connected to the bottom end of the connecting shaft (203). A plurality of first nozzles (206) are connected at equal distances to the outer surface of the water storage box (205) and the bottom of the water storage box (205).
3. The water sprinkler system for sand and gravel storage warehouses according to claim 2, characterized in that, The connecting component (3) includes a hollow sleeve (301) and a first rack (302). The hollow sleeve (301) is fixedly connected to the top of the warehouse (1). The first rack (302) slides inside the hollow sleeve (301), and both ends of the first rack (302) extend to both sides of the hollow sleeve (301).
4. The water sprinkler system for sand and gravel storage warehouses according to claim 3, characterized in that, The connecting assembly (4) includes a fixing plate (401), a second rack (402), and a spring telescopic rod (403). The fixing plate (401) is connected to one side of the inner wall of the warehouse (1). The second rack (402) is slidably connected to the top of the warehouse (1), and the bottom end of the second rack (402) extends into the interior of the warehouse (1). The top end of the second rack (402) is in contact with one end of the first rack (302). The spring telescopic rod (403) is connected between the top of the fixing plate (401) and the bottom of the second rack (402).
5. The water sprinkler system for sand and gravel storage warehouses according to claim 4, characterized in that, The second dust suppression mechanism (5) includes two connecting frames (501), a water storage pipe (502), a second gear (503), and multiple second nozzles (504). The two connecting frames (501) are connected to one side of the inner wall of the warehouse (1). The water storage pipe (502) is rotatably connected between the two connecting frames (501). The second gear (503) is connected to the outer surface of the water storage pipe (502), and the second gear (503) meshes with the second rack (402). Multiple second nozzles (504) are connected at equal distances to the outer surface of the water storage pipe (502).
6. The water sprinkler system for sand and gravel storage warehouses according to claim 5, characterized in that, The collection mechanism (6) includes a water tank (601), a filter screen (602), a water guide hopper (603), a first water pump (604), a multi-section pipe (605), and three flexible hoses (606). The water tank (601) is connected to the top of the warehouse (1), the filter screen (602) is connected to the top of the water tank (601), the water guide hopper (603) is connected to the top of the filter screen (602), and the first water pump (604) is connected to the top of the water tank (601). On the front, the input end of the first water pump (604) extends into the interior of the water storage tank (601), the multi-section pipe (605) is connected to the output end of the first water pump (604), and the multi-section pipe (605) extends into the interior of the warehouse (1), the three hoses (606) are all connected to the multi-section pipe (605), one end of one hose (606) is connected to the water storage pipe (502), and one end of the other hose (606) is connected to the top of the water storage box (205).
7. The water sprinkler system for sand and gravel storage warehouses according to claim 6, characterized in that, The water replenishment mechanism (7) includes a second water pump (701) and a connecting pipe (702). The second water pump (701) is connected to one side of the warehouse (1), and the connecting pipe (702) is connected to one side of the water storage tank (601). One end of the connecting pipe (702) extends to the lower part of one side of the warehouse (1) and is connected to the output end of the second water pump (701).