Foundation pit dust falling device
By designing atomizing nozzle with swing function and providing continuous and intermittent atomization device, the problem of the limited atomization range of the existing foundation pit dust reduction device is solved, and the purpose of a larger range of dust reduction effects and cost reduction is achieved.
Patent Information
- Application Number
- CN202510600586.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-12
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2045-05-12
AI Technical Summary
The atomization range of the nozzles of existing foundation pit dust reduction devices is relatively limited, and the need to use multiple nozzles leads to an increase in the cost of dust reduction.
A foundation pit dust reduction device is designed, adopting water-driven components, including an atomizing nozzle, an intermittent water outlet mechanism and a nozzle swing mechanism. Through the design of the nozzle swing mechanism, the atomizing nozzle can swing and expand the atomization range; the intermittent water outlet mechanism provides two atomization methods: continuous and intermittent atomization methods, adapting to different construction volumes.
The atomization range is effectively expanded, the use of nozzles is reduced, the cost of dust reduction is reduced, and water resources are saved through intermittent atomization.
Smart Images

Figure CN120114927A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of foundation pit dust reduction, and specifically relates to a foundation pit dust reduction device. Background Technique
[0002] A foundation pit is an earth pit excavated at the foundation design position according to the base elevation and the foundation plan dimensions. Before excavation, the excavation plan should be determined based on geological and hydrographic data, combined with the situation of nearby buildings on site, and waterproof and drainage work should be done well. For those with shallow excavation, the method of setting a slope can be used to make the soil slope stable, and the slope size is determined according to relevant construction regulations. For those with deeper excavation and adjacent buildings, methods such as foundation pit wall support, shotcrete retaining wall method, and even diaphragm wall and column - type bored cast - in - place pile interlocking methods can be used for large - scale foundation pits to prevent the outer soil layer from collapsing; A large amount of dust will be generated when excavating a foundation pit. When excavating a foundation pit in the city, these dusts will affect the air environment and people's lives. Therefore, dust reduction treatment is required during excavation. The existing dust reduction method is to atomize water through a nozzle, but the spraying range of the nozzle is relatively limited. Therefore, multiple nozzles need to be used, resulting in an increase in dust reduction costs. Summary of the Invention
[0003] The present invention provides a foundation pit dust reduction device, which solves the problems raised in the above - mentioned background technique.
[0004] The present invention provides the following technical solution: A foundation pit dust reduction device includes a water - driven component, an atomizing nozzle is arranged on the outer wall of the water - driven component, and the water - driven component is connected to the atomizing nozzle through a connecting pipe; The water - driven component includes a water pipe connection housing, an installation housing is fixedly assembled on the outer wall of the water pipe connection housing, an intermittent water outlet mechanism is arranged in the inner cavity of the installation housing, and a nozzle swing mechanism is installed at the bottom of the intermittent water outlet mechanism; The intermittent water outlet mechanism includes a top driving wheel, a top connecting block is fixedly assembled at the bottom of the top driving wheel, a piston moving column is fixedly assembled at the bottom of the top connecting block, an adjusting S - column is fixedly assembled at the bottom of the piston moving column, a central column is fixedly assembled at the bottom of the adjusting S - column, a bottom connecting block is fixedly assembled at the bottom of the central column, a connecting piece is movably sleeved on the outer edge of the central column, a long strip connecting block is fixedly assembled on the outer wall of the connecting piece, a connecting joint is movably connected to one end of the long strip connecting block away from the central column, a piston block is fixedly assembled on the outer wall of the connecting joint, a water outlet nozzle is movably sleeved on the outer wall of the piston block, and the water outlet nozzle is fixedly assembled on the installation housing.
[0005] As a preferred technical solution of the present invention, a bottom connection block is fixedly assembled at the bottom of the central column, a bottom driving wheel is fixedly assembled at the bottom of the bottom connection block, the connecting pipe is fixedly sleeved on the inner wall of the water outlet nozzle, and the connecting pipe is made of a rubber hose.
[0006] As a preferred technical solution of the present invention, a water inlet groove is formed on the outer wall of the piston block, a water outlet hole is formed in the inner cavity of the water inlet groove, and the water outlet hole communicates with the water inlet groove.
[0007] As a preferred technical solution of the present invention, the central point of the central column, the central points of the bottom connection block and the bottom driving wheel are on the same vertical line.
[0008] As a preferred technical solution of the present invention, the central point of the piston moving column, the central points of the top connection block and the top driving wheel are not on the same vertical line, and the piston moving column is located outside the top connection block.
[0009] As a preferred technical solution of the present invention, a lifting rod is fixedly assembled at the top of the top driving wheel, a limiting shell is slidably connected to the outer edge of the lifting rod, a support frame is fixedly assembled at the bottom of the limiting shell, and the support frame is fixedly assembled on the installation shell.
[0010] As a preferred technical solution of the present invention, a horizontal hole is formed in the inner cavity of the limiting shell, a limiting steel ball and a support spring are arranged in the inner cavity of the horizontal hole, the support spring is located in the inner cavity of the horizontal hole and is in contact with the limiting steel ball, a continuous water outlet groove and an intermittent water outlet groove are formed on the outer edge of the lifting rod, and the intermittent water outlet groove is located above the continuous water outlet groove.
[0011] As a preferred technical solution of the present invention, sealing rings are slidably connected to the inner wall and the bottom wall of the top of the installation shell, and the lifting rod and the vertical rod are movably connected to the sealing rings.
[0012] As a preferred technical solution of the present invention, the nozzle swing mechanism includes a rotating piece, the rotating piece is fixedly sleeved on the inner wall of the vertical rod, a movable column is movably sleeved on the inner wall of the rotating piece away from one end of the vertical rod, a transverse sleeve is fixedly assembled at the bottom of the movable column, a sliding rod is slidably sleeved on the inner wall of the transverse sleeve, a vertical sleeve is fixedly assembled at the end of the sliding rod away from the transverse sleeve, and a rotating rod is slidably sleeved on the inner wall of the vertical sleeve.
[0013] As a preferred technical solution of the present invention, a swing bracket is fixedly assembled at the top of the rotating rod, a fixed bracket is movably connected to the outer wall of the swing bracket, the fixed bracket is fixedly assembled on the installation shell, the central point of the rotating rod, the rotation central points of the swing bracket and the fixed bracket are on the same vertical line, and the atomizing nozzle is fixedly assembled on the swing bracket.
[0014] The present invention has the following beneficial effects: 1. For this foundation pit dust suppression device, the rotation of the vertical rod drives the rotation of the rotating piece, the rotation of the rotating piece drives the movable column and the transverse sleeve to rotate around the vertical center line of the vertical rod, the sliding rod slides in the transverse sleeve, the movable column moves on the rotating piece, and the rotation of the transverse sleeve drives the end of the sliding rod close to the movable column to swing. When the sliding rod swings, it will drive the rotating rod, the swinging bracket and the atomizing nozzle to swing, thus solving the problem that the atomization range of the existing nozzles is relatively limited and the dust suppression cost increases due to the need to use multiple nozzles. The swinging of the atomizing nozzle can also increase the range of atomization dust removal.
[0015] 2. For this foundation pit dust suppression device, through the settings of the central column, the adjusting S column and the piston moving column, when the connecting piece is located on the central column, the piston block cannot move reciprocally. At this time, water can continuously enter the atomizing nozzle for atomization. When the connecting piece is located on the piston moving column, the piston block moves reciprocally, so that the piston block intermittently blocks the water outlet nozzle, and the atomizing nozzle intermittently enters water for atomization. This device has two atomization methods. Continuous atomization dust suppression can be used when the construction volume is large, and intermittent atomization can be used when the construction volume is small.
[0016] 3. For this foundation pit dust suppression device, through the setting of the adjusting S column, when the piston moving column, the adjusting S column and the central column move downward, the position of the connecting piece will change, so that the vertical center line of the connecting piece coincides with the vertical center line of the piston moving column, making the adjustment structure of continuous atomization and intermittent atomization of this device simple. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is a front three-dimensional structure schematic diagram of the present invention; Figure 2 is a bottom three-dimensional structure schematic diagram of the present invention; Figure 3 is a schematic diagram of the internal structure of the water pipe connection housing of the present invention; Figure 4 is a sectional structure schematic diagram of the present invention; Figure 5 is the present invention Figure 4 an enlarged structure schematic diagram of part A in; Figure 6 is the present invention Figure 4 an enlarged structure schematic diagram of part B in; Figure 7 is the present invention Figure 4 an enlarged structure schematic diagram of part C in; Figure 8 is a schematic diagram of the structure of the top driving wheel and the bottom driving wheel of the present invention; Figure 9 is a schematic diagram of the structure of the piston block and the adjusting S column of the present invention; Figure 10 This is a schematic structural diagram of the nozzle swing mechanism of the present invention.
[0018] In the figure: 1. Water drive assembly; 2. Atomizing nozzle; 3. Connecting pipe; 11. Water pipe connection housing; 12. Installation housing; 13. Intermittent water outlet mechanism; 14. Nozzle swing mechanism; 1301. Top drive wheel; 1302. Top connecting block; 1303. Piston moving column; 1304. Adjusting S column; 1305. Central column; 1306. Connecting piece; 1307. Long strip connecting block; 1308. Connecting joint; 1309. Piston block; 1310. Water inlet groove; 1311. Water outlet hole; 1312. Water outlet nozzle; 1313. Bottom connecting block; 1314. Bottom drive wheel; 1315. Vertical rod; 1316. Lifting rod; 1317. Continuous water outlet groove; 1318. Intermittent water outlet groove; 1319. Limit housing; 1320. Horizontal hole; 1321. Limit steel ball; 1322. Support spring; 1323. Support frame; 1324. Sealing ring; 1401. Rotating piece; 1402. Movable column; 1403. Horizontal sleeve; 1404. Slide bar; 1405. Vertical sleeve; 1406. Rotating rod; 1407. Swing bracket; 1408. Fixed bracket. Specific embodiments
[0019] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0020] Please refer to Figures 1-10 , a foundation pit dust suppression device, including a water drive assembly 1, an atomizing nozzle 2 is provided on the outer wall of the water drive assembly 1, and the water drive assembly 1 is connected to the atomizing nozzle 2 through a connecting pipe 3; In the above structure, water enters the water drive assembly 1, and then the water in the water drive assembly 1 enters the atomizing nozzle 2 through the connecting pipe 3, and the water is atomized by the atomizing nozzle 2.
[0021] The water drive assembly 1 includes a water pipe connection housing 11, an installation housing 12 is fixedly assembled on the outer wall of the water pipe connection housing 11, an intermittent water outlet mechanism 13 is provided in the inner cavity of the installation housing 12, and a nozzle swing mechanism 14 is installed at the bottom of the intermittent water outlet mechanism 13; In the above structure, through the setting of the water pipe connecting housing 11, both ends of the water pipe connecting housing 11 can be connected to water pipes. The installation housing 12 is connected and communicated with the water pipe connecting housing 11, and water can enter the installation housing 12. The intermittent water outlet mechanism 13 is installed on the installation housing 12. When the water in the water pipe connecting housing 11 flows, it can drive the intermittent water outlet mechanism 13 to operate. When the intermittent water outlet mechanism 13 operates, it can drive the nozzle swing mechanism 14 to move. When the nozzle swing mechanism 14 moves, it can drive the atomizing nozzle 2 to swing. When the atomizing nozzle 2 swings, it can expand the atomization range, making the dust reduction range larger. At the same distance, the usage amount of this nozzle is less than that of the existing nozzles.
[0022] The intermittent water outlet mechanism 13 includes a top driving wheel 1301. A top connecting block 1302 is fixedly assembled at the bottom of the top driving wheel 1301. A piston moving column 1303 is fixedly assembled at the bottom of the top connecting block 1302. An adjusting S column 1304 is fixedly assembled at the bottom of the piston moving column 1303. A central column 1305 is fixedly assembled at the bottom of the adjusting S column 1304. A bottom connecting block 1313 is fixedly assembled at the bottom of the central column 1305. A connecting piece 1306 is movably sleeved on the outer edge of the central column 1305. A long strip connecting block 1307 is fixedly assembled on the outer wall of the connecting piece 1306. One end of the long strip connecting block 1307 away from the central column 1305 is movably connected to a connecting joint 1308. A piston block 1309 is fixedly assembled on the outer wall of the connecting joint 1308. A water outlet nozzle 1312 is movably sleeved on the outer wall of the piston block 1309. The water outlet nozzle 1312 is fixedly assembled on the installation housing 12; In the above structure, the flow of water in the housing 11 connected by the water pipe drives the top driving wheel 1301 and the bottom driving wheel 1314 to rotate, so that when the bottom driving wheel 1314 and the top driving wheel 1301 rotate, they can drive the bottom connecting block 1313, the central column 1305, the adjusting S column 1304, the piston moving column 1303 and the top connecting block 1302 to rotate. When the connecting piece 1306 is located at the central column 1305, at this time, the long connecting block 1307, the connecting joint 1308 and the piston block 1309 are in a static state, and water can enter the atomizing nozzle 2 through the water outlet nozzle 1312 and the connecting pipe 3 and be atomized and sprayed out. When the connecting piece 1306 is located in the piston moving column 1303, the piston moving column 1303 will drive the long connecting block 1307 and the piston block 1309 to move horizontally when rotating, so that the piston block 1309 performs a piston movement at the water outlet nozzle 1312. When the piston moving column 1303 moves away from the water outlet nozzle 1312, at this time, the piston block 1309 does not block the water outlet nozzle 1312, and at this time, water can pass through the water outlet nozzle 1312. When the piston moving column 1303 is closest to the water outlet nozzle 1312, at this time, the piston block 1309 blocks the water outlet nozzle 1312, and at this time, water cannot pass through the water outlet nozzle 1312, so that the device has the functions of continuous water outlet and intermittent water outlet, and intermittent water outlet can save water.
[0023] In a preferred embodiment: the bottom of the central column 1305 is fixedly assembled with a bottom connecting block 1313, the bottom of the bottom connecting block 1313 is fixedly assembled with a bottom driving wheel 1314, the connecting pipe 3 is fixedly sleeved on the inner wall of the water outlet nozzle 1312, and the connecting pipe 3 is made of a rubber hose; In the above structure, through the settings of the bottom driving wheel 1314 and the top driving wheel 1301, when the atomizing nozzle 2 continuously atomizes, the bottom driving wheel 1314 is located in the lower middle of the water pipe connecting housing 11, so that the water flowing in the water pipe connecting housing 11 can fully drive the bottom driving wheel 1314 to rotate. When the atomizing nozzle 2 atomizes intermittently, the top driving wheel 1301 is located in the upper middle of the water pipe connecting housing 11, so that the water flowing in the water pipe connecting housing 11 can fully drive the top driving wheel 1301 to rotate, so that the bottom driving wheel 1314 and the top driving wheel 1301 can rotate stably, improving the stability of the device. Using the characteristic that the rubber hose has a softer material, the atomizing nozzle 2 can swing. The length of the connecting pipe 3 is longer than the length between the atomizing nozzle 2 and the water outlet nozzle 1312, so that the connecting pipe 3 will not break away from the atomizing nozzle 2 and the water outlet nozzle 1312 when the atomizing nozzle 2 swings, improving the stability of the connecting pipe 3.
[0024] In a preferred embodiment: a water inlet groove 1310 is formed on the outer wall of the piston block 1309, and a water outlet hole 1311 is formed in the inner cavity of the water inlet groove 1310. The water outlet hole 1311 communicates with the water inlet groove 1310; In the above structure, through the arrangement of the water inlet groove 1310 and the water outlet hole 1311, when the head of the piston block 1309 does not block the water outlet nozzle 1312, water can enter the water outlet nozzle 1312 through the water inlet groove 1310 and the water outlet hole 1311 at this time. When the head of the piston block 1309 blocks the water outlet nozzle 1312, water cannot enter the water outlet nozzle 1312 through the water inlet groove 1310 and the water outlet hole 1311.
[0025] In a preferred embodiment: the center point of the central column 1305 is on the same vertical line as the center points of the bottom connecting block 1313 and the bottom driving wheel 1314; In the above structure, by setting the center point of the central column 1305 on the same vertical line as the center point of the bottom connecting block 1313, the central column 1305 rotates on the same center line as the bottom driving wheel 1314 and the top driving wheel 1301, so that the central column 1305 will not drive the connecting piece 1306, the long connecting block 1307 and the piston block 1309 to move when rotating, so that the atomizing nozzle 2 can continuously atomize.
[0026] In a preferred embodiment: the center point of the piston moving column 1303 is not on the same vertical line as the center points of the top connecting block 1302 and the top driving wheel 1301, and the piston moving column 1303 is located outside the top connecting block 1302; In the above structure, by arranging the piston moving column 1303 outside the top connecting block 1302, the top connecting block 1302 rotates on the same vertical line as the bottom driving wheel 1314 and the top driving wheel 1301. When the top connecting block 1302 rotates, the piston moving column 1303 rotates around the vertical center line of the top connecting block 1302 at this time. At this time, when the piston moving column 1303 rotates, it can drive the piston block 1309 to move in the water outlet nozzle 1312, so that the water outlet nozzle 1312 intermittently blocks the water outlet nozzle 1312, so that the device can perform intermittent atomization.
[0027] In a preferred embodiment: a lifting rod 1316 is fixedly assembled on the top of the top driving wheel 1301. A limiting shell 1319 is slidably connected to the outer edge of the lifting rod 1316. A support frame 1323 is fixedly assembled at the bottom of the limiting shell 1319. The support frame 1323 is fixedly assembled on the installation shell 12; In the above structure, by moving the lifting rod 1316 downward, the lifting rod 1316 drives the top driving wheel 1301, the top connecting block 1302, the piston moving column 1303, the adjusting S column 1304, the central column 1305, the bottom connecting block 1313, the bottom driving wheel 1314 and the vertical rod 1315 to move downward. At this time, the adjusting S column 1304 slides in the connecting piece 1306, and the adjusting S column 1304 can change the position of the connecting piece 1306, so that the vertical center line of the connecting piece 1306 coincides with the vertical center line of the piston moving column 1303, and the spray head changes from the continuous atomization state to the intermittent atomization state.
[0028] In a preferred embodiment: a horizontal hole 1320 is provided in the inner cavity of the limit housing 1319, a limit steel ball 1321 and a support spring 1322 are provided in the inner cavity of the horizontal hole 1320, the support spring 1322 is located in the inner cavity of the horizontal hole 1320, and the support spring 1322 is in contact with the limit steel ball 1321. A continuous water outlet groove 1317 and an intermittent water outlet groove 1318 are provided on the outer edge of the lifting rod 1316, and the intermittent water outlet groove 1318 is located above the continuous water outlet groove 1317; In the above structure, the support spring 1322 supports the limit steel ball 1321, so that the lifting rod 1316 can be positioned. At this time, the lifting rod 1316 cannot move downward and needs to be forced to move downward. When the lifting rod 1316 is in contact with the limit steel ball 1321, it is in the continuous atomization state. When the intermittent water outlet groove 1318 is in contact with the limit steel ball 1321, it is in the intermittent atomization state.
[0029] In a preferred embodiment: sealing rings 1324 are slidably connected to the inner walls of the top and bottom of the installation housing 12, and the lifting rod 1316 and the vertical rod 1315 are movably connected to the sealing rings 1324; In the above structure, through the arrangement of the sealing ring 1324, the sealing ring 1324 at the top can seal the gap between the lifting rod 1316 and the installation housing 12, and the sealing ring 1324 at the bottom can seal the gap between the vertical rod 1315 and the installation housing 12, so that water will not flow out between the lifting rod 1316 and the installation housing 12 and between the vertical rod 1315 and the installation housing 12.
[0030] In a preferred embodiment: The nozzle swing mechanism 14 includes a rotating plate 1401, which is fixedly sleeved on the inner wall of the vertical rod 1315. The inner wall of the end of the rotating plate 1401 away from the vertical rod 1315 is movably sleeved with a movable column 1402. The bottom of the movable column 1402 is fixedly assembled with a transverse sleeve 1403. The inner wall of the transverse sleeve 1403 is slidably sleeved with a sliding rod 1404. The end of the sliding rod 1404 away from the transverse sleeve 1403 is fixedly assembled with a vertical sleeve 1405. The inner wall of the vertical sleeve 1405 is slidably sleeved with a rotating rod 1406; In the above structure, when the bottom driving wheel 1314 rotates, it drives the vertical rod 1315 to rotate. When the vertical rod 1315 rotates, it drives the rotating plate 1401 to rotate. When the rotating plate 1401 rotates, it drives the movable column 1402 and the transverse sleeve 1403 to rotate around the vertical center line of the vertical rod 1315. At this time, the sliding rod 1404 slides in the transverse sleeve 1403, the movable column 1402 moves on the rotating plate 1401, and when the transverse sleeve 1403 rotates, it drives the end of the sliding rod 1404 close to the movable column 1402 to swing. When the sliding rod 1404 swings, it drives the rotating rod 1406, the swing bracket 1407 and the atomizing nozzle 2 to rotate reciprocally, so that the atomizing nozzle 2 can swing. Through the setting that the vertical sleeve 1405 is slidably connected with the rotating rod 1406, when the vertical rod 1315 moves downward, it drives the rotating plate 1401, the movable column 1402, the transverse sleeve 1403, the sliding rod 1404 and the vertical sleeve 1405 to move downward. The vertical sleeve 1405 slides on the rotating rod 1406. After the position of the vertical sleeve 1405 changes, it can also drive the rotating rod 1406 to swing.
[0031] In a preferred embodiment: A swing bracket 1407 is fixedly assembled on the top of the rotating rod 1406. The outer wall of the swing bracket 1407 is movably connected with a fixed bracket 1408. The fixed bracket 1408 is fixedly assembled on the installation housing 12. The center point of the rotating rod 1406 is on the same vertical line as the rotation center points of the swing bracket 1407 and the fixed bracket 1408. The atomizing nozzle 2 is fixedly assembled on the swing bracket 1407; In the above structure, through the setting of the fixed bracket 1408, the fixed bracket 1408 plays a role in limiting the swing bracket 1407, so that the swing bracket 1407 rotates on the fixed bracket 1408. The vertical center line of the rotating rod 1406 and the rotation center points of the swing bracket 1407 and the fixed bracket 1408 are on the same vertical line to achieve swinging, which improves the rationality of the device.
[0032] Working principle: When in use, connect the water pipe to the outer wall of the water pipe connection housing 11. Water flows in the water pipe connection housing 11, and the flow of water drives the bottom drive wheel 1314 to rotate. The rotation of the bottom drive wheel 1314 drives the vertical rod 1315 to rotate. When the vertical rod 1315 rotates, it drives the rotating piece 1401 to rotate. The rotation of the rotating piece 1401 drives the movable column 1402 and the transverse sleeve 1403 to rotate around the vertical center line of the vertical rod 1315. At this time, the sliding rod 1404 slides in the transverse sleeve 1403, the movable column 1402 moves on the rotating piece 1401, and the rotation of the transverse sleeve 1403 drives the end of the sliding rod 1404 close to the movable column 1402 to swing. When the sliding rod 1404 swings, it drives the rotating rod 1406, the swinging bracket 1407, and the atomizing nozzle 2, causing the atomizing nozzle 2 to swing. At this time, water reaches the atomizing nozzle 2 through the water outlet nozzle 1312 and the connecting pipe 3 and is atomized and sprayed out. The swinging of the atomizing nozzle 2 can make the atomizing range larger. When intermittent atomization is required, press the lifting rod 1316 downward so that the intermittent water outlet groove 1318 contacts the limit steel ball 1321. When the lifting rod 1316 moves downward, it drives the top drive wheel 1301, the top connecting block 1302, the piston moving column 1303, the adjusting S column 1304, the center column 1305, the bottom connecting block 1313, and the bottom drive wheel 1314 to move downward. The adjusting S column 1304 slides in the connecting piece 1306. When the adjusting S column 1304 moves downward, the position of the connecting piece 1306 changes, and the vertical center line of the connecting piece 1306 coincides with the vertical center line of the piston moving column 1303. At this time, the top drive wheel 1301 is located above the middle of the water pipe connection housing 11. When the water in the water pipe connection housing 11 flows, it drives the top drive wheel 1301 to rotate. At this time, the piston moving column 1303 rotates around the vertical center line of the top connecting block 1302. When the piston moving column 1303 is far from the water outlet nozzle 1312, the piston block 1309 does not block the water outlet nozzle 1312, and at this time, water can pass through the water outlet nozzle 1312. When the piston moving column 1303 is closest to the water outlet nozzle 1312, the piston block 1309 blocks the water outlet nozzle 1312, and at this time, water cannot pass through the water outlet nozzle 1312, causing intermittent water intake in the atomizing nozzle 2, greatly saving water resources.
[0033] It should be noted that in this text, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprising", "including" or any other variant thereof are intended to cover non-exclusive inclusion, such that a process, method, article or apparatus comprising a series of elements not only includes those elements but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or apparatus.
[0034] Although the embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A foundation pit dust suppression device, comprising a water-driven assembly (1), characterized in that: An atomizing nozzle (2) is provided on the outer wall of the water drive component (1), and the water drive component (1) is connected to the atomizing nozzle (2) via a connecting pipe (3); The water drive assembly (1) comprises a water pipe connection housing (11), the outer wall of the water pipe connection housing (11) is fixedly equipped with a mounting housing (12), the inner cavity of the mounting housing (12) is provided with an intermittent water outlet mechanism (13), and the bottom of the intermittent water outlet mechanism (13) is equipped with a nozzle swing mechanism (14); The intermittent water discharge mechanism (13) comprises a top driving wheel (1301), the bottom of the top driving wheel (1301) is fixedly equipped with a top connecting block (1302), the bottom of the top connecting block (1302) is fixedly equipped with a piston movement column (1303), the bottom of the piston movement column (1303) is fixedly equipped with an adjustment S column (1304), the bottom of the adjustment S column (1304) is fixedly equipped with a center column (1305), and the bottom of the center column (1305) is fixedly equipped with a bottom connecting block (1313). The outer edge of the central column (1305) is movably sleeved with a connecting piece (1306), the outer wall of the connecting piece (1306) is fixedly equipped with a long connecting block (1307), one end of the long connecting block (1307) away from the central column (1305) is movably connected with a connecting joint (1308), the outer wall of the connecting joint (1308) is fixedly equipped with a piston block (1309), the outer wall of the piston block (1309) is movably sleeved with a water outlet (1312), and the water outlet (1312) is fixedly equipped on the mounting shell (12).
2. A foundation pit dust suppression device according to claim 1, characterized in that: The bottom of the central column (1305) is fixedly equipped with a bottom connecting block (1313), the bottom of the bottom connecting block (1313) is fixedly equipped with a bottom driving wheel (1314), the connecting pipe (3) is fixedly sleeved on the inner wall of the water outlet nozzle (1312), and the connecting pipe (3) is a rubber hose.
3. A foundation pit dust suppression device according to claim 1, characterized in that: The outer wall of the piston block (1309) is provided with a water inlet groove (1310), the inner cavity of the water inlet groove (1310) is provided with a water outlet hole (1311), and the water outlet hole (1311) is connected to the water inlet groove (1310).
4. A foundation pit dust suppression device according to claim 1, characterized in that: The center point of the center column (1305) is on the same vertical line as the center points of the bottom connecting block (1313) and the bottom driving wheel (1314).
5. The foundation pit dust suppression device according to claim 1, characterized in that: The center point of the piston movement column (1303) is not on the same vertical line as the center points of the top connection block (1302) and the top driving wheel (1301), and the piston movement column (1303) is located on the periphery of the top connection block (1302).
6. A foundation pit dust suppression device according to claim 1, characterized in that: A lifting rod (1316) is fixedly mounted on the top of the top driving wheel (1301); the outer edge of the lifting rod (1316) is slidably connected to a limit housing (1319); a support frame (1323) is fixedly mounted on the bottom of the limit housing (1319); and the support frame (1323) is fixedly mounted on the mounting housing (12).
7. A foundation pit dust suppression device according to claim 6, characterized in that: The inner cavity of the limiting shell (1319) is provided with a transverse hole (1320), and the inner cavity of the transverse hole (1320) is provided with a limiting steel ball (1321) and a support spring (1322), and the support spring (1322) is located in the inner cavity of the transverse hole (1320), and the support spring (1322) is in contact with the limiting steel ball (1321), and the outer edge of the lifting rod (1316) is provided with a continuous water outlet groove (1317) and an intermittent water outlet groove (1318), and the intermittent water outlet groove (1318) is located at the top of the continuous water outlet groove (1317).
8. A foundation pit dust suppression device according to claim 6, characterized in that: The inner wall at the top and the inner wall at the bottom of the installation shell (12) are both slidably connected with a sealing ring (1324), and the lifting rod (1316) and the vertical rod (1315) are both movably connected to the sealing ring (1324).
9. A foundation pit dust suppression device according to claim 1, characterized in that: The nozzle swing mechanism (14) comprises a rotating plate (1401), wherein the rotating plate (1401) is fixedly sleeved on the inner wall of the vertical rod (1315), and the inner wall of the rotating plate (1401) at one end away from the vertical rod (1315) is movably sleeved with a movable column (1402), and the bottom of the movable column (1402) is fixedly equipped with a transverse sleeve (1403), and the inner wall of the transverse sleeve (1403) is slidably sleeved with a sliding rod (1404), and the end of the sliding rod (1404) away from the transverse sleeve (1403) is fixedly equipped with a vertical sleeve (1405), and the inner wall of the vertical sleeve (1405) is slidably sleeved with a rotating rod (1406).
10. A foundation pit dust suppression device according to claim 9, characterized in that: A swing bracket (1407) is fixedly mounted on the top of the rotating rod (1406); a fixed bracket (1408) is movably connected to the outer wall of the swing bracket (1407); the fixed bracket (1408) is fixedly mounted on the mounting shell (12); the center point of the rotating rod (1406) and the rotation center points of the swing bracket (1407) and the fixed bracket (1408) are on the same vertical line; and the atomizing nozzle (2) is fixedly mounted on the swing bracket (1407).
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