A waste water discharge pond for fishery aquaculture
By designing a fishery aquaculture wastewater drainage pool with rotating drainage and automatic cleaning, the problems of easy blockage and uneven use of filter devices in the prior art are solved, and higher automation and lower maintenance costs are achieved.
Patent Information
- Application Number
- CN202311011961.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-11
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2043-08-11
AI Technical Summary
The existing fishery aquaculture water wastewater discharge tank is prone to frequent replacement and cleaning due to impurities blockage during the use of the filter device, and the uneven filtration of the surface of the filter device leads to incomplete use, which increases the cost.
A fishery aquaculture water wastewater discharge tank including a dispersion mechanism and a cleaning mechanism is designed. The wastewater is rotated and drained through the rotation of the impeller, and the water-through holes are used to achieve uniform drop to the filter plate, reducing the problem of uneven use of the filter plate, and the cleaning scraper is driven to move and clean on the surface of the filter plate through the reciprocating mechanism, concentrating impurities near the sewage discharge pipe.
It reduces the cumbersomeness of manual operation, increases the degree of automation of the discharge tank, improves the uniformity of water filtration, reduces long-term wear in the same area of the filter device, extends the service life of the equipment and reduces maintenance costs.
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Figure CN116746541B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of viscose fiber processing, and particularly relates to a wastewater discharge pond for fishery breeding water. Background Art
[0002] Fishery breeding refers to the production process in which aquatic products grow, develop, and reproduce under artificial interference, breeding fish or various seafood for consumption and being regularly harvested. According to the different breeding water qualities, it can be divided into three categories: freshwater breeding, saltwater breeding, and sea surface breeding, which are most densely distributed along the southwestern coast and rank second in output value among offshore fisheries. Common ones include the breeding of milkfish, oysters, and eels. In fishery breeding, breeding wastewater is often generated. When treating the wastewater, a wastewater discharge pond for fishery breeding is needed to store the wastewater first and then discharge and treat it centrally.
[0003] Currently, a Chinese invention with the publication number CN110240297A discloses an industrial wastewater discharge pond for environmental protection, including a sedimentation tank and a control box. An inlet is opened at the top of the sedimentation tank, a filter screen is arranged inside the inlet, a solenoid valve a is arranged below the inlet, an alarm is arranged on the right side of the inlet, a filtering device is arranged below the alarm, a water level gauge is arranged below the filtering device, a main switch is arranged on the left side of the sedimentation tank, a control box is arranged below the main switch, a controller is arranged on the left side inside the control box, a water pump a switch is arranged below the controller, a water pump b switch is arranged on the right side of the water pump a switch, a water pump a is arranged below the water level gauge, a water pipe is arranged on the right side of the water pump a, a disinfection tank is arranged on the right side of the water pipe, a disinfection device is arranged inside the disinfection tank, a sewage detector is arranged below the disinfection device, a solenoid valve b is arranged on the right side of the disinfection tank, and a water pump b is arranged on the right side of the solenoid valve; an industrial wastewater discharge pond for environmental protection detects wastewater through a sewage detector, monitors the water volume through a water level gauge, and controls the entire device through a controller, which is more intelligent.
[0004] The existing technology has the following disadvantages in precipitating and disinfecting wastewater:
[0005] 1. In the sedimentation tank and the disinfection tank, when using the filtering device, it will face blockage caused by impurities in the wastewater. Since the discharge of wastewater is a long-term cyclic matter for fishery breeding, it will be necessary to frequently replace and clean the blocked filter plates, resulting in frequent manual operations, which brings inconvenience to its use.
[0006] 2. The wastewater of this device enters the sedimentation tank from the inlet, and then is filtered by the filtering device. Its water body naturally sinks to the surface of the filtering device by gravity, resulting in uneven filtration on the surface of the filtering device. Using the same area on the surface of the filtering device for a long time increases the usage burden on the same area of the filtering device, and in the replacement of the filtering device due to wear, its use is incomplete, increasing the cost. Summary of the Invention
[0007] The object of the present invention is to provide a waste water discharge pool for fishery breeding, which has the advantages of reducing the tediousness of frequent manual operations, increasing the automation of the discharge pool, increasing the water body uniformity, and reducing the long-term wear of the same area during the use of the filtering device.
[0008] The above technical object of the present invention is achieved by the following technical solutions: a waste water discharge pool for fishery breeding, including a discharge pool body, an inlet is connected to the top of the discharge pool body, a sewage pipe and an outlet are sequentially connected to one side of the discharge pool body, a viewing window is fixedly installed on the surface of the discharge pool body, a dispersion mechanism is fixedly installed inside the discharge pool body, a cleaning mechanism is arranged at the bottom of the dispersion mechanism, a filter plate fixedly connected to the inside of the discharge pool body is arranged at the bottom of the cleaning mechanism, a reciprocating mechanism fixedly connected to the inside of the discharge pool body is arranged at the rear of the cleaning mechanism, a box body is fixedly installed at the rear of the discharge pool body, a driving motor is fixedly installed inside the box body, the dispersion mechanism includes an impeller, a connection component and a rotation component, there is a fixing plate two at the bottom of the impeller, a water passing hole is opened inside the fixing plate two, a fixing plate one is arranged at the top of the impeller, a water inlet opening is connected to the top of the fixing plate one, the impeller is fixedly installed with a shaft body, the cleaning mechanism includes a cleaning blade, a disassembly component, a limiting component and a guiding component one, a moving part is arranged at the top of the cleaning blade, the bottom of the moving part is rotatably connected with an adjusting block through a rotating shaft, the reciprocating mechanism includes a linkage block and a guiding component two, the rear side of the linkage block is rotatably connected with an adjusting plate one through a rotating shaft, a support rod one is fixedly installed inside one end of the adjusting plate one, a runner one is fixedly installed at one end of the support rod one, an adjusting plate two is rotatably sleeved on the surface of the support rod one, a support rod two is fixedly installed inside one end of the adjusting plate two, one end of the support rod two is rotatably connected with a runner two through a bearing, the runner two is fixedly connected with the discharge pool body, a synchronous belt sleeved on the surface of the runner two and sleeved on the surface of the runner one is arranged, a driving component is fixedly installed at the rear of the runner two, the adjusting plate one and the adjusting plate two have the same length, and an adjusting mechanism is rotatably connected to one end of the driving component.
[0009] With the above technical solution, when using the waste water discharge pool for fishery aquaculture, water is introduced into the interior of the discharge pool body through the water inlet. Subsequently, the rotation of the driving motor will drive the rotation assembly to rotate, thereby realizing the rotation of the impeller. Through the rotation of the impeller, the waste water entering the water inlet opening from the water inlet is drained in a rotating manner, and part of the waste water falls onto the surface of the filter plate through the water passing holes. This link will enable the waste water to fall evenly onto the surface of the filter plate through the rotation and the setting of the water passing holes, avoiding repeated filtration consumption at the same position on the surface of the filter plate, which may lead to uneven use of the filter plate and waste of other parts, increasing the use effect of the filter plate. At the same time, through the setting of the connection assembly, it is convenient to clean the impeller under long-term use. Moreover, under the long-term use of the filter plate, through the adjustment setting of the adjustment mechanism, it drives the rotation of the third rotation gear, and through the drive assembly, drives the third connecting rod to make the reciprocating mechanism perform reciprocating motion. During the operation of the reciprocating mechanism, the second guiding assembly cooperates with the linkage block to ensure the movement stability and guiding property. The reciprocating mechanism drives the cleaning mechanism to move, and the first guiding assembly further increases the guiding property and stability of the moving part, so that the cleaning blade moves and cleans on the surface of the filter plate. And through the setting of the limiting assembly, the impurities cleaned are concentrated near the sewage pipe, which is more convenient for later sewage treatment. At the same time, during the long-term use of the cleaning blade, through the setting of the disassembly assembly, the disassembly of the cleaning blade can be realized, and during its installation, rapid installation can also be achieved, increasing the convenience of replacement.
[0010] The present invention is further configured as: The connection assembly includes mounting bolts and connecting support rods. The connecting support rods are fixedly connected to the surface of the second fixed disk. The other end of the connecting support rod is fixedly connected to the interior of the discharge pool body. One end of the mounting bolt penetrates through the first fixed disk to the bottom of the second fixed disk, and mounting holes for cooperating with the mounting bolts for installation are provided inside both the first fixed disk and the second fixed disk.
[0011] With the above technical solution, through the setting of the connection assembly, the second fixed disk is supported and fixed by the connecting support rods. When it is necessary to disassemble and clean the impeller, the mounting bolts can be unscrewed to disengage them from the interior of the mounting holes, and then the first fixed disk can be removed, thereby realizing the convenience of cleaning the impeller.
[0012] The present invention is further configured as: The rotation assembly includes a first connecting rod. One end of the first connecting rod is fixedly installed with a second bevel gear. The surface of the second bevel gear meshes with a first bevel gear fixedly connected to the bottom of the shaft body. One end of the first connecting rod penetrates through the discharge pool body to the interior of the box body and is fixedly sleeved with a first rotation gear. The surface of the first rotation gear meshes with a second rotation gear. The interior of the second rotation gear is fixedly sleeved with a second connecting rod. The output end of the driving motor is fixedly sleeved with the second connecting rod.
[0013] By adopting the above technical solution and setting the rotating assembly, when the connecting rod 2 rotates, the rotating gear 2 will be driven to rotate synchronously, so that the meshing rotating gear 1 drives the connecting rod 1 and the bevel gear 2 to rotate, and through the meshing, the bevel gear 1 drives the shaft and the impeller to rotate, thereby realizing the rotation of the rotating assembly.
[0014] The present invention is further configured as follows: the disassembly assembly includes an insert block, the insert block is fixedly connected to the top of the cleaning scraper blade, the bottom of the adjustment block is provided with a slot for matching the insert block, and one end of the insert block is provided with a limit rod that penetrates the insert block to the inside of the adjustment block.
[0015] By adopting the above technical solution and setting the disassembly component, when the cleaning scraper blade needs to be disassembled, the limit rod is pulled to one side to make it disengage from the plug block and the inside of the adjustment block, and then the plug block is pulled out of the slot, thereby realizing the disassembly of the cleaning scraper blade, and during its installation, it can also be installed quickly, increasing the convenience of replacement.
[0016] The present invention is further configured as follows: the limit assembly includes a limit block, the limit block is an inverted U-shaped design, the limit block is fixedly connected to one side of the moving part, and one end of the limit block is fixedly adhered to a contact block that contacts the cleaning scraper.
[0017] By adopting the above technical scheme, the limit block is set to cooperate with the contact block to contact one side of the cleaning scraper blade, so that the rotation angle of the cleaning scraper blade is limited. During the movement of the cleaning scraper blade, the limit block and the contact block cooperate to limit the rotation adjustment between the moving parts. During the movement of the cleaning scraper blade toward the end of the sewage pipe, the limit block limits the position, thereby limiting the angle of the cleaning scraper blade and increasing the cleaning force of the cleaning scraper blade on the surface of the filter plate. During the movement of the cleaning scraper blade in the opposite direction to the sewage pipe, the cleaning scraper blade is rotated between the adjusting block and the moving part, and the effect of cleaning the surface of the filter plate is lost. The limit assembly concentrates the cleaned impurities near the sewage pipe, which is more convenient for subsequent sewage treatment.
[0018] The present invention is further configured as follows: the guide assembly 1 includes a guide rod, the guide rod is fixedly connected to the inside of the discharge tank body, the guide rod penetrates into the inside of the moving part, and a guide hole for the guide rod to penetrate is opened inside the moving part.
[0019] By adopting the above technical solution and setting the guide rod, the guiding property and stability of the moving part can be increased through the cooperation between the guide rod and the guide hole during the movement of the moving part.
[0020] The present invention is further configured such that: the second guiding component includes a first guiding plate and a second guiding plate. The first guiding plate and the second guiding plate are respectively located at both ends of the linkage block. Sliders are fixedly installed at both ends of the linkage block. Sliding grooves for the sliders to slide are formed inside the first guiding plate and the second guiding plate.
[0021] With the above technical solution, through the arrangement of the first guiding plate and the second guiding plate, in cooperation with the sliders and the sliding grooves, during the movement of the linkage block, lateral guiding can be carried out, increasing its movement stability and guiding property.
[0022] The present invention is further configured such that: the driving component includes a third connecting rod. One end of the third connecting rod penetrates through the discharge tank body into the interior of the box body and is rotatably connected to each other through bearings. A rotating gear four is fixedly sleeved on the surface of the third connecting rod. A rotating gear three is meshed with the surface of the rotating gear four. The rotating gear three is rotatably sleeved on the surface of the second connecting rod through a bearing.
[0023] With the above technical solution, driven by the driving motor, the second connecting rod will drive the rotating gear three on its surface to rotate synchronously through the adjustment of the adjustment mechanism, so that the meshed rotating gear four drives the third connecting rod to rotate, thereby sequentially realizing the driving operation of the reciprocating mechanism.
[0024] The present invention is further configured such that: the adjustment mechanism includes an internal gear. The internal gear is fixedly connected to one side of the rotating gear three. A meshing gear meshing with the internal gear is sleeved on the surface of the second connecting rod. An adjustment ring is fixedly installed on one side of the meshing gear. A sliding block is fixedly installed on the surface of the second connecting rod. A sliding groove for the sliding block to slide is formed inside the adjustment ring. A connecting ring is rotatably connected to the surface of the adjustment ring through a bearing. A rack is fixedly installed at one end of the connecting ring. An adjustment gear is meshed with the top of the rack. A knob penetrating through the surface of the box body is fixedly sleeved inside the adjustment gear.
[0025] With the above technical solution, by rotating the knob, it first drives the adjustment gear to rotate. Through meshing, the rack drives the connecting ring and the adjustment ring to move horizontally on the surface of the second connecting rod. The sliding groove and the sliding block cooperate with the adjustment ring to move. During its movement, the meshing gear will be driven to approach the internal gear end, so that the two are meshed. Through the clamping cooperation between the sliding groove and the sliding block, the second connecting rod can drive the adjustment ring to move and rotate at the same time. The rotating gear three will rotate synchronously with the second connecting rod through the meshing between the internal gear and the meshing gear. This adjustment mechanism realizes the rotational adjustment of the rotating gear three, enabling it to either rotate synchronously with the second connecting rod or rotate independently of the second connecting rod.
[0026] In summary, the present invention has the following beneficial effects:
[0027] 1. Water is introduced into the interior of the discharge tank through the water inlet. Subsequently, the rotation of the drive motor drives the rotation assembly to rotate, thereby realizing the rotation of the impeller. Through the rotation of the impeller, the wastewater entering the water inlet opening is drained in a rotating manner, and part of the wastewater falls onto the surface of the filter plate through the water passing holes. This step enables the wastewater to be evenly dropped onto the surface of the filter plate through the rotation and the water passing holes, avoiding repeated filtration consumption at the same position on the surface of the filter plate, resulting in uneven use of the filter plate and waste of other parts, increasing the use effect of the filter plate. At the same time, through the setting of the connection assembly, it is convenient to clean the impeller under long-term use;
[0028] 2. Through the adjustment setting of the adjustment mechanism, it drives the rotation of the third rotating gear, and through the drive assembly, drives the third connecting rod to make the reciprocating mechanism perform reciprocating motion. During the operation of the reciprocating mechanism, the second guiding assembly cooperates with the linkage block to ensure the movement stability and guiding property. The reciprocating mechanism drives the cleaning mechanism to move, and the first guiding assembly further increases the guiding property and stability of the moving part, so that the cleaning blade moves and cleans on the surface of the filter plate. And through the setting of the limiting component, the impurities cleaned are concentrated near the sewage pipe, which is more convenient for subsequent sewage treatment and reduces the tediousness of manually replacing and cleaning the filter plate frequently. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] Figure 1 is the three-dimensional structure schematic diagram of the present invention;
[0030] Figure 2 is the three-dimensional sectional schematic diagram of the present invention;
[0031] Figure 3 is the enlarged three-dimensional schematic diagram of the dispersion mechanism of the present invention;
[0032] Figure 4 is the side sectional view schematic diagram of the impeller and the box body of the present invention;
[0033] Figure 5 is the three-dimensional schematic diagram of the box body of the present invention;
[0034] Figure 6 is the enlarged side view schematic diagram of the adjustment ring of the present invention;
[0035] Figure 7 is of the present invention Figure 2 enlarged schematic diagram at A in;
[0036] Figure 8 is the enlarged schematic diagram of the cleaning blade and the insertion block of the present invention;
[0037] Figure 9 is the enlarged schematic diagram of the limiting structure of the present invention;
[0038] Figure 10 is an enlarged schematic diagram of the reciprocating structure of the present invention;
[0039] Figure 11 is an enlarged schematic diagram of the cooperation of the first runner, the second runner and the synchronous belt of the present invention.
[0040] Reference numerals: 1, discharge tank body; 2, water inlet; 3, water outlet; 4, viewing window; 5, dispersion mechanism; 501, impeller; 502, connection assembly; 5021, mounting bolt; 5022, connection support rod; 5023, mounting hole; 503, rotation assembly; 5031, connecting rod one; 5032, bevel gear one; 5033, bevel gear two; 5034, rotation gear one; 5035, rotation gear two; 5036, connecting rod two; 504, fixed disk two; 505, water passing hole; 506, fixed disk one; 507, water inlet opening; 508, shaft body; 6, cleaning mechanism; 601, cleaning blade; 602, disassembly assembly; 6021, insertion block; 6022, insertion slot; 6023, limiting rod; 603, limiting assembly; 6031, limiting block; 6032, contact block; 604, guiding assembly one; 6041, guiding rod; 6042, guiding hole; 605, moving part; 606, adjusting block; 7, reciprocating mechanism; 701, linkage block; 702, guiding assembly two; 7021, guiding plate one; 7022, guiding plate two; 7023, slider; 7024, sliding groove; 703, adjusting plate one; 704, adjusting plate two; 705, first runner; 706, second runner; 707, synchronous belt; 708, first support rod; 709, second support rod; 8, box body; 9, driving motor; 10, driving assembly; 1001, connecting rod three; 1002, rotation gear four; 1003, rotation gear three; 11, adjusting mechanism; 1101, internal gear; 1102, meshing gear; 1103, adjusting ring; 1104, sliding block; 1105, sliding groove; 1106, connecting ring; 1107, rack; 1108, adjusting gear; 1109, knob; 12, sewage pipe; 13, filter plate. Detailed implementation manners
[0041] The present invention will be further described in detail below with reference to the accompanying drawings.
[0042] Example 1:
[0043] Reference Figure 1 、 Figure 2 、 Figure 3 、 Figure 4A fishery aquaculture wastewater discharge pool comprises a discharge pool body 1, the top of the discharge pool body 1 is connected with a water inlet 2, one side of the discharge pool body 1 is connected with a sewage pipe 12 and a water outlet 3 in sequence, a visual window 4 is fixedly installed on the surface of the discharge pool body 1, a dispersion mechanism 5 is fixedly installed inside the discharge pool body 1, the dispersion mechanism 5 comprises an impeller 501, a connecting component 502 and a rotating component 503, a fixed disk 2 504 is provided at the bottom of the impeller 501, a water hole 505 is opened inside the fixed disk 2 504, a fixed disk 1 506 is provided at the top of the impeller 501, a water inlet opening 507 is connected to the top of the fixed disk 1 506, a shaft 508 is fixedly installed on the impeller 501, a box 8 is fixedly installed on the rear side of the discharge pool body 1, a driving motor 9 is fixedly installed inside the box 8, in the fishery aquaculture wastewater discharge pool, a water inlet opening 507 is connected to the water inlet opening 507, a shaft 508 is fixedly installed on the impeller 501, a box 8 is fixedly installed on the rear side of the discharge pool body 1, a driving motor 9 is fixedly installed inside the box 8, and a water inlet opening 507 is connected to the water inlet opening 507. When in use, water is introduced into the discharge tank body 1 through the water inlet 2, and then the rotation of the driving motor 9 will drive the rotating component 503 to rotate, thereby realizing the rotation of the impeller 501. Through the rotation of the impeller 501, the wastewater entering the water inlet opening 507 from the water inlet 2 is rotated and discharged, and part of the wastewater is allowed to fall onto the surface of the filter plate 13 through the water holes 505. This link will enable the wastewater to fall evenly onto the surface of the filter plate 13 through rotation and the setting of the water holes 505, thereby avoiding repeated filtration and consumption at the same position on the surface of the filter plate 13, which will lead to uneven use of the filter plate 13, causing waste of other parts, and increasing the use effect of the filter plate 13. At the same time, the connection component 502 can be set to facilitate the cleaning of the impeller 501 under long-term use.
[0044] refer to Figure 2 , Figure 3 The connecting component 502 includes a mounting bolt 5021 and a connecting rod 5022. The connecting rod 5022 is fixedly connected to the surface of the fixed plate 504. The other end of the connecting rod 5022 is fixedly connected to the inside of the discharge tank body 1. One end of the mounting bolt 5021 passes through the fixed plate 1 506 to the bottom of the fixed plate 2 504. The insides of the fixed plates 1 506 to the fixed plate 2 504 are provided with mounting holes 5023 for mounting with the mounting bolt 5021. Through the setting of the connecting component 502, the fixed plate 2 504 is supported and fixed by the connecting rod 5022. When the impeller 501 needs to be disassembled and cleaned, the mounting bolt 5021 can be unscrewed to make it detached from the inside of the mounting hole 5023, and then the fixed plate 1 506 can be removed, so that the impeller 501 can be easily cleaned.
[0045] refer to Figure 1 , Figure 2 , Figure 3The rotating assembly 503 includes a connecting rod 1 5031, one end of which is fixedly mounted with a bevel gear 2 5033, the surface of which is meshed with a bevel gear 1 5032 fixedly connected to the bottom of the shaft 508, one end of the connecting rod 1 5031 passes through the discharge tank body 1 to the inside of the box body 8, and is fixedly sleeved with a rotating gear 1 5034, the surface of the rotating gear 1 5034 is meshed with a rotating gear 2 5035, and the interior of the rotating gear 2 5035 is fixedly sleeved with a connecting rod The output end of the driving motor 9 and the connecting rod 5036 are fixedly connected with each other. Through the setting of the rotating component 503, when the connecting rod 5036 rotates, the rotating gear 5035 will be driven to rotate synchronously, so that the meshing rotating gear 1 5034 drives the connecting rod 1 5031 and the bevel gear 2 5033 to rotate, and the meshing makes the bevel gear 1 5032 drive the shaft 508 and the impeller 501 to rotate, thereby realizing the rotation of the rotating component 503.
[0046] Brief description of the use process: When the fishery aquaculture wastewater discharge pool is used, water is introduced into the discharge pool body 1 through the water inlet 2, and then the driving motor 9 is rotated to drive the connecting rod 2 5036 to rotate, thereby synchronously driving the rotating gear 2 5035 to rotate, so that the meshing rotating gear 1 5034 drives the connecting rod 1 5031 and the bevel gear 2 5033 to rotate, and the meshing bevel gear 1 5032 drives the shaft 508 and the impeller 501 to rotate, thereby realizing the rotation of the impeller 501, and the impeller 501 is rotated, and the water entering the water inlet opening from the water inlet 2 is The waste water of 507 is drained by rotation, and part of the waste water falls onto the surface of the filter plate 13 through the water holes 505. This link will enable the waste water to evenly fall onto the surface of the filter plate 13 through the rotation and the setting of the water holes 505, and through the setting of the connecting component 502, the fixed plate 2 504 is supported and fixed by the connecting support rod 5022. When the impeller 501 needs to be disassembled and cleaned, the mounting bolt 5021 can be unscrewed to make it detached from the inside of the mounting hole 5023, and then the fixed plate 1 506 can be removed, so that the impeller 501 can be easily cleaned.
[0047] Embodiment 2:
[0048] refer to Figure 1 , Figure 2 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 , Figure 9 , Figure 10 , Figure 11, A waste water discharge pool for fishery farming, comprising a discharge pool body 1. A cleaning mechanism 6 is provided at the bottom of a dispersion mechanism 5. A filter plate 13 fixedly connected to the inside of the discharge pool body 1 is provided at the bottom of the cleaning mechanism 6. A reciprocating mechanism 7 fixedly connected to the inside of the discharge pool body 1 is provided at the rear side of the cleaning mechanism 6. The cleaning mechanism 6 includes a cleaning blade 601, a disassembly component 602, a limiting component 603 and a first guiding component 604. A moving part 605 is provided at the top of the cleaning blade 601. An adjusting block 606 is rotatably connected to the bottom of the moving part 605 through a rotating shaft. The reciprocating mechanism 7 includes a linkage block 701 and a second guiding component 702. An adjusting plate 703 is rotatably connected to the rear side of the linkage block 701 through a rotating shaft. A first support rod 708 is fixedly installed inside one end of the adjusting plate 703. A first runner 705 is fixedly installed at one end of the first support rod 708. The adjusting plate 704 is rotatably sleeved on the surface of the first support rod 708. A second support rod 709 is fixedly installed inside one end of the adjusting plate 704. A second runner 706 is rotatably connected to one end of the second support rod 709 through a bearing. The second runner 706 is fixedly connected to the discharge pool body 1. A synchronous belt 707 sleeved on the surface of the second runner 706 is sleeved on the surface of the first runner 705. A driving component 10 is fixedly installed at the rear side of the second runner 706. The adjusting plate 703 and the adjusting plate 704 have the same length. An adjusting mechanism 11 is rotatably connected to one end of the driving component 10. Through the adjustment setting of the adjusting mechanism 11, the rotating gear three 1003 is driven to rotate, and through the driving component 10, the connecting rod three 1001 is driven to make the reciprocating mechanism 7 perform a reciprocating motion. During the operation of the reciprocating mechanism 7, the second guiding component 702 cooperates with the linkage block 701 to ensure the moving stability and guiding property. The reciprocating mechanism 7 will drive the cleaning mechanism 6 to move. The first guiding component 604 further increases the guiding property and stability of the moving part 605, so that the cleaning blade 601 moves and cleans on the surface of the filter plate 13. And through the setting of the limiting component 603, the impurities cleaned are concentrated near the sewage pipe 12, which is more convenient for the later sewage treatment and reduces the tediousness of manually replacing and cleaning the filter plate 13 frequently.
[0049] Reference Figure 2 , Figure 7 , Figure 8The disassembly component 602 includes an insert block 6021, which is fixedly connected to the top of the cleaning scraper 601, and a slot 6022 for plugging with the insert block 6021 is provided at the bottom of the adjustment block 606. One end of the insert block 6021 is provided with a limit rod 6023 that penetrates the insert block 6021 to the inside of the adjustment block 606. Through the setting of the disassembly component 602, when the cleaning scraper 601 needs to be disassembled, the limit rod 6023 is pulled out to one side to make it detach from the insert block 6021 and the inside of the adjustment block 606, and then the insert block 6021 is pulled out of the slot 6022, thereby realizing the disassembly of the cleaning scraper 601, and during its installation, it can also be quickly installed, which increases the convenience of replacement.
[0050] refer to Figure 2 , Figure 7 The limit assembly 603 includes a limit block 6031, which is an inverted U-shaped design. The limit block 6031 is fixedly connected to one side of the moving member 605. One end of the limit block 6031 is fixedly adhered with a contact block 6032 that contacts the cleaning blade 601. Through the setting of the limit block 6031, the contact block 6032 contacts one side of the cleaning blade 601, so that the rotation angle of the cleaning blade 601 is limited. When the cleaning blade 601 moves, the limit block 6031 and the contact block 6032 cooperate to move between the moving member 605. The rotation adjustment is restricted. When the cleaning scraper 601 moves toward the end of the sewage pipe 12, the limit block 6031 limits the cleaning scraper 601, thereby limiting the angle of the cleaning scraper 601 and increasing the cleaning force of the cleaning scraper 601 on the surface of the filter plate 13. When the cleaning scraper 601 moves in the opposite direction to the sewage pipe 12, the cleaning scraper 601 is rotated between the adjustment block 606 and the movable part 605, and the effect of cleaning the surface of the filter plate 13 is lost. The limit component 603 concentrates the cleaned impurities near the sewage pipe 12, which is more convenient for subsequent sewage treatment.
[0051] refer to Figure 2 , Figure 7 The guide assembly 604 includes a guide rod 6041, which is fixedly connected to the inside of the discharge tank body 1. The guide rod 6041 penetrates into the inside of the moving part 605. The inside of the moving part 605 is provided with a guide hole 6042 for the guide rod 6041 to penetrate. Through the setting of the guide rod 6041, the guiding property and stability of the moving part 605 can be increased through the cooperation between the guide rod 6041 and the guide hole 6042 during the movement of the moving part 605.
[0052] refer to Figure 2 , Figure 9, the guiding component two 702 includes a first guiding plate 7021 and a second guiding plate 7022. The first guiding plate 7021 and the second guiding plate 7022 are respectively located at both ends of the linkage block 701. Sliders 7023 are fixedly installed at both ends of the linkage block 701. Chutes 7024 for the sliders 7023 to slide are formed inside the first guiding plate 7021 and the second guiding plate 7022. Through the arrangement of the first guiding plate 7021 and the second guiding plate 7022, the sliders 7023 and the chutes 7024 are matched, so that during the movement of the linkage block 701, lateral guiding can be carried out, increasing its movement stability and guiding property.
[0053] Reference Figure 4 , the driving component 10 includes a third connecting rod 1001. One end of the third connecting rod 1001 penetrates through the discharge tank body 1 into the box body 8 and is rotatably connected to each other through bearings. A fourth rotating gear 1002 is fixedly sleeved on the surface of the third connecting rod 1001. A third rotating gear 1003 is meshed with the surface of the fourth rotating gear 1002. The third rotating gear 1003 is rotatably sleeved on the surface of the second connecting rod 5036 through a bearing. Driven by the driving motor 9, the second connecting rod 5036 can drive the third rotating gear 1003 on its surface to rotate synchronously through the adjustment of the adjustment mechanism 11, so that the meshed fourth rotating gear 1002 drives the third connecting rod 1001 to rotate, and sequentially realizes the driving operation of the reciprocating mechanism 7.
[0054] Reference Figure 4, the adjusting mechanism 11 includes an internal gear 1101, the internal gear 1101 is fixedly connected to one side of the third rotating gear 1003, a meshing gear 1102 meshing with the internal gear 1101 is sleeved on the surface of the second connecting rod 5036, an adjusting ring 1103 is fixedly installed on one side of the meshing gear 1102, a sliding block 1104 is fixedly installed on the surface of the second connecting rod 5036, a sliding groove 1105 for the sliding block 1104 to slide is formed inside the adjusting ring 1103, a connecting ring 1106 is rotatably connected to the surface of the adjusting ring 1103 through a bearing, a rack 1107 is fixedly installed at one end of the connecting ring 1106, an adjusting gear 1108 meshes with the top of the rack 1107, and a knob 1109 penetrating through the surface of the box body 8 is fixedly sleeved inside the adjusting gear 1108. By rotating the knob 1109, it first drives the adjusting gear 1108 to rotate. Through meshing, the rack 1107 drives the connecting ring 1106 and the adjusting ring 1103 to move horizontally on the surface of the second connecting rod 5036. The sliding groove 1105 and the sliding block 1104 cooperate with the adjusting ring 1103 to move. During the movement, the meshing gear 1102 is driven to approach the internal gear 1101 end, so that the two are meshed with each other. Through the clamping cooperation between the sliding groove 1105 and the sliding block 1104, the second connecting rod 5036 can drive the adjusting ring 1103 to move and rotate at the same time. The third rotating gear 1003 will rotate synchronously with the second connecting rod 5036 through the meshing between the internal gear 1101 and the meshing gear 1102. The adjusting mechanism 11 realizes the rotational adjustment of the third rotating gear 1003, enabling it to either rotate synchronously with the second connecting rod 5036 or rotate independently of the second connecting rod 5036.
[0055] Brief description of the use process: When using the fishery aquaculture wastewater discharge pool, under long-term use of the filter plate 13, the knob 1109 can be turned to preferentially drive the adjusting gear 1108 to rotate, and the rack 1107 will drive the connecting ring 1106 and the adjusting ring 1103 to move laterally on the surface of the second connecting rod 5036 through meshing, and the sliding groove 1105 and the sliding block 1104 will cooperate with the adjusting ring 1103 to move, and during the movement, the meshing gear 1102 will be driven to approach the end of the inner gear 1101, so that the two will mesh, and the snap-fit cooperation between the sliding groove 1105 and the sliding block 1104 will enable the second connecting rod 5036 to drive the adjusting ring 1103 to move and rotate at the same time. , the rotating gear three 1003 will be rotated synchronously with the connecting rod two 5036 through the meshing between the internal gear 1101 and the meshing gear 1102, thereby realizing the rotation adjustment of the rotating gear three 1003, so that it can choose to rotate synchronously with the connecting rod two 5036, or it can choose that the rotation of the rotating gear three 1003 and the connecting rod two 5036 do not affect each other. After adjustment, the rotating gear three 1003 can be driven to rotate, so that the meshing rotating gear four 1002 can drive the connecting rod three 1001 to rotate, and drive the support rod two 709 to rotate. The runner two 706 is fixedly connected to the discharge tank body 1, and the rotation of the support rod two 709 will drive the adjustment plate two 704 to move radially, and then the runner one 709 at one end of the adjustment plate two 704 can be driven to rotate. 05 is affected, realizing the rotation of the rotating wheel 1 705 around the rotating wheel 2 706, and at the same time, the synchronous belt 707 is sleeved between the rotating wheel 1 705 and the rotating wheel 2 706, so that the rotating wheel 1 705 can realize self-rotation while moving, and the self-rotation of the rotating wheel 1 705 will drive the supporting rod 1 708 to rotate, and the adjusting plate 1 703 fixedly connected to the supporting rod 1 708 will also move, so that the linkage block 701 rotatably connected to one end of the adjusting plate 1 703 can realize linear reciprocating motion, and the rotation of the adjusting plate 2 704 and the adjusting plate 1 703 will drive the linkage block 701, the moving part 605, the adjusting block 606 and the cleaning scraper 601 to move, and the linkage block 701 increases its movement through the slider 7023 and the slide groove 7024. Stability and guidance. At the same time, during the movement of the cleaning scraper 601, the setting of the guide rod 6041 further increases the guidance and stability of the movement of the moving member 605, and through the setting of the limit block 6031, the contact block 6032 contacts one side of the cleaning scraper 601, so that the rotation angle of the cleaning scraper 601 is limited. During the movement of the cleaning scraper 601, it is convenient to concentrate the cleaned impurities near the sewage pipe 12, which is more convenient for the subsequent sewage treatment. And through the setting of the disassembly component 602, when the cleaning scraper 601 needs to be disassembled, the limit rod 6023 can be pulled out to one side to make it detach from the plug block 6021 and the inside of the adjustment block 606, and then the plug block 6021 is pulled out from the slot 6022.Thus, the disassembly of the cleaning blade 601 can be achieved, and during its installation, rapid installation can also be realized, increasing the convenience of replacement.
[0056] This specific embodiment is only an explanation of the present invention and is not a limitation thereof. After reading this specification, those skilled in the art can make modifications to this embodiment that do not contribute creatively as needed, but as long as they are within the scope of the claims of the present invention, they are protected by the patent law.
Claims
1. A wastewater discharge pool for fishery aquaculture, comprising a discharge pool body (1). It is characterized in that: An inlet (2) is connected to the top of the discharge pool body (1), a sewage pipe (12) and an outlet (3) are sequentially connected to one side of the discharge pool body (1), a viewing window (4) is fixedly installed on the surface of the discharge pool body (1), a dispersion mechanism (5) is fixedly installed inside the discharge pool body (1), the dispersion mechanism (5) includes an impeller (501), a connection component (502) and a rotation component (503), a second fixed disk (504) is provided at the bottom of the impeller (501), a water passing hole (505) is opened inside the second fixed disk (504), a first fixed disk (506) is provided at the top of the impeller (501), a water inlet opening (507) is connected to the top of the first fixed disk (506), a shaft body (508) is fixedly installed on the impeller (501), a box body (8) is fixedly installed at the rear side of the discharge pool body (1), a driving motor (9) is fixedly installed inside the box body (8), a cleaning mechanism (6) is provided at the bottom of the dispersion mechanism (5), a filter plate (13) fixedly connected to the inside of the discharge pool body (1) is provided at the bottom of the cleaning mechanism (6), a reciprocating mechanism (7) fixedly connected to the inside of the discharge pool body (1) is provided at the rear side of the cleaning mechanism (6), the cleaning mechanism (6) includes a cleaning blade (601), a disassembly component (602), a limiting component (603) and a first guiding component (604), a moving part (605) is provided at the top of the cleaning blade (601), an adjusting block (606) is rotatably connected to the bottom of the moving part (605) through a rotating shaft, the reciprocating mechanism (7) includes a linkage block (701) and a second guiding component (702), a first adjusting plate (703) is rotatably connected to the rear side of the linkage block (701) through a rotating shaft, a first support rod (708) is fixedly installed inside one end of the first adjusting plate (703), a first runner (705) is fixedly installed at one end of the first support rod (708), a second adjusting plate (704) is rotatably sleeved on the surface of the first support rod (708), a second support rod (709) is fixedly installed inside one end of the second adjusting plate (704), a second runner (706) is rotatably connected to one end of the second support rod (709) through a bearing, the second runner (706) is fixedly connected to the discharge pool body (1), a synchronous belt (707) sleeved on the surface of the second runner (706) and sleeved on the surface of the first runner (705) is provided, a driving component (10) is fixedly installed at the rear side of the second runner (706), the first adjusting plate (703) and the second adjusting plate (704) have the same length, and an adjusting mechanism (11) is rotatably connected to one end of the driving component (10).
2. A wastewater discharge pool for fishery aquaculture according to claim 1, It is characterized in that: The connection component (502) includes a mounting bolt (5021) and a connecting rod (5022). The connecting rod (5022) is fixedly connected to the surface of the second fixed disk (504). The other end of the connecting rod (5022) is fixedly connected to the inside of the discharge tank body (1). One end of the mounting bolt (5021) penetrates through the first fixed disk (506) to the bottom of the second fixed disk (504). Mounting holes (5023) for the mounting and use of the mounting bolt (5021) are provided inside both the first fixed disk (506) and the second fixed disk (504).
3. A wastewater discharge tank for fishery aquaculture water according to claim 1, characterized in that: The rotating component (503) includes a first connecting rod (5031). A second bevel gear (5033) is fixedly installed at one end of the first connecting rod (5031). A first bevel gear (5032) fixedly connected to the bottom of the shaft body (508) is engaged with the surface of the second bevel gear (5033). One end of the first connecting rod (5031) penetrates through the discharge tank body (1) to the inside of the box body (8), and a first rotating gear (5034) is fixedly sleeved thereon. A second rotating gear (5035) is engaged with the surface of the first rotating gear (5034). A second connecting rod (5036) is fixedly sleeved inside the second rotating gear (5035). The output end of the driving motor (9) is fixedly sleeved with the second connecting rod (5036).
4. A wastewater discharge tank for fishery aquaculture water according to claim 1, characterized in that: The disassembly component (602) includes an insertion block (6021). The insertion block (6021) is fixedly connected to the top of the cleaning blade (601). A slot (6022) for the insertion and use of the insertion block (6021) is provided at the bottom of the adjustment block (606). A limiting rod (6023) that penetrates through the insertion block (6021) to the inside of the adjustment block (606) is provided at one end of the insertion block (6021).
5. A wastewater discharge tank for fishery aquaculture water according to claim 1, characterized in that: The limiting component (603) includes a limiting block (6031). The limiting block (6031) is designed in an inverted U shape. The limiting block (6031) is fixedly connected to one side of the moving part (605). A contact block (6032) that contacts the cleaning blade (601) is fixedly adhered to one end of the limiting block (6031).
6. A wastewater discharge tank for fishery aquaculture water according to claim 1, characterized in that: The first guiding component (604) includes a guiding rod (6041). The guiding rod (6041) is fixedly connected to the inside of the discharge tank body (1). The guiding rod (6041) penetrates through to the inside of the moving part (605). A guiding hole (6042) for the guiding rod (6041) to penetrate through is provided inside the moving part (605).
7. A wastewater discharge tank for fishery aquaculture water according to claim 1, characterized in that: The guiding component two (702) includes a first guiding plate (7021) and a second guiding plate (7022). The first guiding plate (7021) and the second guiding plate (7022) are respectively located at two ends of the linkage block (701). Sliders (7023) are fixedly installed at both ends of the linkage block (701). Chutes (7024) for the sliders (7023) to slide are formed inside the first guiding plate (7021) and the second guiding plate (7022).
8. A wastewater discharge pond for fishery aquaculture water according to claim 3, characterized in that: The driving component (10) includes a third connecting rod (1001). One end of the third connecting rod (1001) penetrates through the discharge pond body (1) into the interior of the box body (8) and is rotatably connected to each other through bearings. A fourth rotating gear (1002) is fixedly sleeved on the surface of the third connecting rod (1001). A third rotating gear (1003) is meshed with the surface of the fourth rotating gear (1002). The third rotating gear (1003) is rotatably sleeved on the surface of the second connecting rod (5036) through a bearing.
9. A wastewater discharge pond for fishery aquaculture water according to claim 8, characterized in that: The adjusting mechanism (11) includes an internal gear (1101). The internal gear (1101) is fixedly connected to one side of the third rotating gear (1003). A meshing gear (1102) meshing with the internal gear (1101) is sleeved on the surface of the second connecting rod (5036). An adjusting ring (1103) is fixedly installed on one side of the meshing gear (1102). A sliding block (1104) is fixedly installed on the surface of the second connecting rod (5036). A sliding groove (1105) for the sliding block (1104) to slide is formed inside the adjusting ring (1103). A connecting ring (1106) is rotatably connected to the surface of the adjusting ring (1103) through a bearing. A rack (1107) is fixedly installed at one end of the connecting ring (1106). An adjusting gear (1108) is meshed with the top of the rack (1107). A knob (1109) penetrating through the surface of the box body (8) is fixedly sleeved inside the adjusting gear (1108).
Citation Information
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Industrial wastewater discharge pond for environmental protection
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