A paper tube production wastewater treatment device and a treatment method thereof
By combining a gear transmission system and a vibratory scraping mechanism, the problem of sludge expansion in paper tube production wastewater treatment equipment is solved, achieving efficient sludge settling and foam cleaning, simplifying the cleaning process, and improving the efficiency of equipment use.
Patent Information
- Application Number
- CN202411638463.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-29
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2044-05-29
AI Technical Summary
Existing wastewater treatment equipment for paper tube production is prone to causing sludge expansion during mixing, which affects the sludge settling effect.
A gear transmission system drives the mixing frame to fully agitate the liquid, and a vibration and scraping mechanism is used to remove foam. The opening and closing of the filter frame enables automatic discharge of impurities, reducing the agitation of sludge and ensuring settling speed.
It improves sludge settling speed, reduces foam contamination of the inner wall of the cylinder, simplifies subsequent cleaning steps, and increases the effective volume of the equipment.
Smart Images

Figure CN119240829B_ABST
Abstract
Description
[0001] The present application is a divisional application of the application with application number 202410677540.7, filed on May 29, 2024, and entitled "Wastewater treatment device for paper tube production and treatment method thereof". TECHNICAL FIELD
[0002] The present application relates to the technical field of paper tube production wastewater treatment, in particular to a wastewater treatment device for paper tube production and a treatment method thereof. BACKGROUND
[0003] Paper tube is a tubular object made of paper. Most paper tubes are spiral paper tubes and seamless paper tubes. During the production of paper tubes, a large amount of raw materials is used, and the dependence on water resources is also high. Therefore, a large amount of wastewater is discharged during the production process. If not treated in time, not only water resources will be wasted, but also the environment will be polluted.
[0004] According to the search, the authorized patent number CN217677100U discloses a yarn tube paper wastewater treatment device. The device includes a reaction box, a motor fixedly connected to the top middle through hole of the reaction box, a rotating rod fixedly connected to the bottom driving end of the motor, a plurality of stirring blades fixedly connected to the outer wall of the rotating rod, a scraper fixedly connected to the other end of the stirring blade, a discharge hopper groove fixedly connected to the bottom end of the reaction box, a discharge pipe fixedly connected to the bottom end of the discharge hopper groove, a one-way valve arranged in the discharge pipe, a filter box fixedly connected to the other end of the discharge pipe, and square sliding grooves arranged on the inner walls of the left and right sides of the filter box. In the device, the liquid in the reaction box is stirred by the stirring blades under the drive of the motor to accelerate the reaction rate. The inner wall of the reaction box is cleaned by the scraper. The installation and disassembly of the filter screen are realized by the cooperation of the clamping block and the clamping groove.
[0005] However, the existing technology has the following disadvantages:
[0006] When the existing wastewater treatment device for paper tube production is used, the wastewater to be treated is poured into the treatment cylinder, and then the medicine is injected to make the wastewater and the medicine fully react to precipitate the impurities in the wastewater. However, the sludge that settles the wastewater is prone to swelling during stirring, which affects the settling effect of the sludge. SUMMARY
[0007] The purpose of the present application is to solve the existing problems and provide a wastewater treatment device for paper tube production and a treatment method thereof.
[0008] To achieve the above-mentioned purpose, the present application provides the following technical scheme:
[0009] The present application is a wastewater treatment device for paper tube production, which includes the following steps:
[0010] A barrel mechanism, comprising a barrel;
[0011] A rotating mechanism, comprising a motor fixedly connected to the top of the barrel, a first gear sleeved on the outer wall of the output end of the motor in the inner cavity of the barrel, and two second gears symmetrically engaged with the outer wall of the first gear;
[0012] A switching mechanism, comprising a filter frame fixedly connected to the inner wall of the barrel below the inner ring gear;
[0013] A vibrating mechanism, comprising a driven frame movably connected to the inner wall of the barrel at the bottom of the filter frame;
[0014] A discharging mechanism, comprising a discharging pipe fixedly connected to the outer wall of the barrel above the filter frame.
[0015] The motor provides power to the first gear, which drives the second gear to rotate;
[0016] As a further scheme of the present application, the bottom of the barrel is fixedly connected with a discharging barrel, the outer wall of the discharging barrel is sleeved with a sleeve frame, four supporting legs are welded around the circumference of the bottom of the sleeve frame, the outer wall of the top of the barrel is sleeved with a supporting frame, a fixed rod is welded around the top of the supporting frame, the fixed rod is sleeved on the outer wall of the motor, and a liquid inlet barrel is welded to the top of the barrel.
[0017] The treated liquid is discharged through the discharging barrel, the entire device is supported through the sleeve frame, the sleeve frame is supported through the supporting legs, the fixed rod is supported through the supporting frame, the motor is supported through the fixed rod, and the barrel is input with the liquid to be treated and the liquid medicine through the liquid inlet barrel.
[0018] As a further scheme of the present application, the inner wall of the barrel is fixedly connected with an inner ring gear engaged with the second gear, the bottom of the first gear on one side is movably connected with a first telescopic barrel, and the bottom of the second gear is movably connected with a second telescopic barrel.
[0019] The inner ring gear enables the second gear to revolve, and the first telescopic barrel and the second telescopic barrel drive the first connecting shaft and the driving shaft to move up and down.
[0020] As a further scheme of the present application, the outer wall of the first telescopic barrel and the second telescopic barrel is movably connected with a connecting frame, the bottom of the first telescopic barrel is movably connected with a first connecting shaft, and the outer wall of the first connecting shaft is welded with a stirring frame.
[0021] The connecting frame enables the first telescopic barrel and the second telescopic barrel to move synchronously, the second gear drives the first telescopic barrel to rotate, the first telescopic barrel drives the first connecting shaft to rotate, and the first connecting shaft drives the stirring frame to stir the barrel.
[0022] As a further scheme of the present application: the first gear on the other side of the circumferential wall through the top of the cylinder is movably connected with the meshing sleeve, the inner wall of the meshing sleeve is threadedly connected with the first screw rod fixedly connected with the top of the cylinder, and the bottom of the second telescopic cylinder is movably connected with the driving shaft.
[0023] When the second gear rotates, the meshing sleeve rotates, the meshing sleeve moves up and down along the first screw rod, and the first gear drives the driving shaft to rotate.
[0024] As a further scheme of the present application: the bottom of the filter frame is rotatably connected with the spacing rack, the circumferential inner wall of the spacing rack is equally meshed with four meshing teeth, the end of the meshing tooth is welded with the rotating frame, the inner wall of the rotating frame is rotatably connected with the rotating shaft rotatably connected with the bottom of the filter frame, the top of the spacing rack is movably connected with the meshing cylinder penetrating the filter frame, and the meshing cylinder is meshed with the circumferential outer wall of the driving shaft.
[0025] The driving shaft drives the meshing cylinder to rotate, the meshing cylinder drives the spacing rack to rotate, the spacing rack drives the meshing tooth to rotate, the meshing tooth drives the rotating frame to rotate along the rotating shaft, and the filter frame is opened or closed.
[0026] As a further scheme of the present application: the bottom of the driven frame is welded with the driving frame, the bottom of the driving frame is movably connected with the driven shaft, the end of the driven shaft is movably connected with the scraping rod, the bottom of the driven frame is movably connected with the second connecting shaft outside the outer wall of the driving frame, and the circumferential inner wall of the discharge cylinder is fixedly connected with the upper connecting frame, and the second connecting shaft is movably connected with the movable frame penetrating the upper connecting frame.
[0027] The first connecting shaft drives the connecting cylinder to rotate, the connecting cylinder drives the driven frame to rotate, the driven frame drives the driving frame to rotate, the driving frame drives the driven shaft to rotate, the driven shaft drives the scraping rod to rotate, the second connecting shaft is supported by the driven frame, and the movable frame is slidingly supported by the upper connecting.
[0028] As a further scheme of the present application: the upper connecting frame is slidingly connected with the movable block, the movable block is movably connected with the second screw rod, the upper connecting frame is connected with the sliding rail corresponding to the movable block, the top of the movable block is fixedly connected with the base, the top of the base is rotatably connected with the ball, the top of the ball is rotatably connected with the connecting rod rotatably connected with the driven frame, the movable frame is movably connected with the supporting rod penetrating the upper connecting frame, and the top of the supporting rod is fixedly connected with the vibrating frame.
[0029] The driven frame drives the connecting rod to rotate, the connecting rod drives the ball to rotate along the base, the ball drives the movable block to reciprocate along the second screw rod, the movable block reciprocates to drive the movable frame to vibrate along the second connecting shaft, the movable frame drives the supporting rod to vibrate, and the supporting rod drives the vibrating frame to vibrate to clean the foam.
[0030] As a further scheme of the present application: the outlet end of the discharge pipe is movably connected with a movable cover, the movable cover and the outer wall of the discharge pipe are fixedly connected with fixed blocks, springs are movably connected between the two fixed blocks, a sliding groove is formed in the inner wall of the cylinder, the filter frame penetrates through the driven frame and is movably connected with a connecting cylinder, a sliding rod is slidably connected in the sliding groove, and the circumferential outer wall of the engaging cylinder is sleeved with a cleaning rod.
[0031] The cleaning rod is driven by the engaging cylinder to clean the filter frame, the sliding rod is driven to slide along the sliding groove after the first connecting shaft moves downward to contact the sliding rod, and the accumulated impurities are pushed away from the movable cover when the cleaning rod contacts the sliding rod when the sliding rod slides to the end of the sliding groove.
[0032] The present application is a kind of paper tube production wastewater treatment method, comprising the following steps:
[0033] S1, the liquid to be treated enters the cylinder from the liquid inlet cylinder, the motor drives the first gear to rotate and then drives the second gear to rotate around the inner race, the second gear drives the engaging sleeve to move up and down along the first lead screw, the engaging sleeve drives the first telescopic cylinder and the second telescopic cylinder to expand and contract, driving the driving shaft and the first connecting shaft to move up and down, the driving shaft moves downward into the engaging cylinder to drive the interval gear to rotate, the interval gear drives the engaging teeth to rotate along the rotating shaft to make the rotating frames move away from each other, and the filter frame is opened for filtering;
[0034] S2, the liquid filtered through the filter frame contains a large amount of foam, the first connecting shaft enters the connecting cylinder to drive the driven frame and the driving frame to rotate, the driving frame drives the driven shaft to rotate, the driven shaft drives the scraping rod to scrape the foam to achieve preliminary cleaning of the filtered liquid, the rotation of the driven frame drives the connecting rod to rotate, the connecting rod drives the ball to rotate on the base, the ball drives the movable block to reciprocate along the second lead screw, the reciprocating movement of the movable block drives the movable frame to vibrate along the second connecting shaft, the movable frame drives the support rod to vibrate, thereby driving the vibrating frame to vibrate to clean the foam;
[0035] S3, when the driving shaft moves downward to drive the engaging cylinder to rotate, the cleaning rod cleans the flocculation filtered on the filter frame, the engaging sleeve moves downward to make the first connecting shaft move downward and contact the sliding rod, the first connecting shaft rotates along the inner race to drive the sliding rod to rotate along the sliding groove, and when the sliding rod rotates to the end of the sliding groove, the cleaning rod rotates to contact the sliding rod to accumulate the cleaned sludge at the end of the sliding groove;
[0036] S4, the accumulated impurities push the movable cover to open, so that the impurities are discharged from the discharge pipe, when the impelling force of the impurities is smaller than the spring rebound force, the spring makes the movable cover return to the original position, the discharge pipe is closed, and when the filter frame does not need to be cleaned, the outlet of the discharge pipe is fixedly closed by the cover, and the treated liquid is discharged from the discharge cylinder.
[0037] Compared with the prior art, the present application has the following advantages:
[0038] The first gear is driven to rotate by the motor, the first gear drives the second gear to rotate and revolve along the inner gear ring, the rotation of the second gear drives the meshing sleeve to rotate and move up and down along the first screw rod, the meshing sleeve drives the first and second telescopic cylinders to extend and retract, thereby driving the driving shaft and the first connecting shaft to move up and down, the up-and-down movement and rotation of the driving shaft drive the stirring frame to fully stir and react the liquid and the medicine solution in the cylinder, the downward movement of the driving shaft into the meshing cylinder drives the interval gear to rotate, the interval gear drives the meshing teeth to rotate along the rotating shaft to make the rotating frames move away from each other, and the filter frame is opened, so that the liquid after stirring and reaction is filtered, the stirring frame can first stir the upper liquid, the stirring frame slowly moves downward to make the medicine solution fully react with the sewage, until the driving shaft contacts and opens the filter frame, the sludge which has not been stirred a lot is filtered by the filter frame, the stirring of the sludge deposited in the lower layer is reduced, and the settling speed of the sludge is ensured.
[0039] Based on beneficial effect one, the liquid filtered through the filter frame contains a large amount of foam, the first connecting shaft enters the connecting cylinder to drive the driven frame and the driving frame to rotate, the driving frame drives the driven shaft to rotate, the driven shaft drives the scraping rod to scrape the foam to realize preliminary cleaning of the filtered liquid, the rotation of the driven frame drives the connecting rod to rotate, the connecting rod drives the ball to rotate on the base, the ball drives the movable block to reciprocate along the second screw rod, the reciprocating movement of the movable block drives the movable frame to vibrate along the second connecting shaft, the movable frame drives the supporting rod to vibrate, thereby driving the vibrating frame to vibrate to clean the foam, which can reduce the pollution of the foam to the inner wall of the cylinder, and can increase the effective volume of the cylinder and the discharge cylinder.
[0040] Based on beneficial effect two, when the driving shaft moves downward to drive the meshing cylinder to rotate, the meshing cylinder drives the cleaning rod to rotate, the cleaning rod cleans the flocculating material filtered on the filter frame, the meshing sleeve continues to move downward to make the first connecting shaft move downward, the downward movement of the first connecting shaft contacts the sliding rod, the rotation of the first connecting shaft along the inner gear ring drives the sliding rod to rotate along the sliding groove, when the sliding rod rotates to the end of the sliding groove, the cleaning rod rotates to contact the sliding rod to make the cleaned sludge accumulate on the sliding rod, the accumulated impurities push the movable cover to open, and the impurities are discharged from the discharge pipe, when the impelling force of the impurities is less than the spring rebound force, the spring rebound makes the movable cover reset, and the discharge pipe is closed, when the filter frame is cleaned, the impurities cleaned are discharged, and the subsequent cleaning steps in the cylinder are reduced. BRIEF DESCRIPTION OF DRAWINGS
[0041] Figure 1 It is an appearance structure schematic view of the present application;
[0042] Figure 2 It is a stirring mechanism schematic view of the present application;
[0043] Figure 3 This is a schematic diagram of the switching mechanism of the present invention;
[0044] Figure 4 This is a cross-sectional view of the overall structure of the present invention;
[0045] Figure 5 This is a schematic diagram of the vibration mechanism of the present invention;
[0046] Figure 6 This is a schematic diagram of the internal structure of the cylindrical body of the present invention;
[0047] Figure 7 For the purposes of this invention, Figure 1 A magnified view as shown in Figure A.
[0048] In the diagram: 1. Cylinder mechanism; 101. Support leg; 102. Sleeve; 103. Cylinder; 104. Discharge cylinder; 105. Support frame; 106. Fixed rod; 107. Liquid inlet cylinder; 2. Rotating mechanism; 201. Motor; 202. First gear; 203. Second gear; 204. Internal gear ring; 205. Connecting frame; 206. First telescopic cylinder; 207. First connecting shaft; 208. Stirring frame; 209. Engaging sleeve; 210. First lead screw; 211. Second telescopic cylinder; 212. Drive shaft; 3. Switching mechanism; 301. Filter frame; 302. Spacer gear frame; 303. Rotating shaft; 304. 305. Meshing teeth; 306. Rotating frame; 307. Meshing cylinder; 4. Vibration mechanism; 401. Driven frame; 402. Drive frame; 403. Driven shaft; 404. Scraping rod; 405. Second connecting shaft; 406. Upper connecting frame; 407. Movable block; 408. Base; 409. Ball; 410. Connecting rod; 411. Second lead screw; 412. Movable frame; 413. Support rod; 414. Vibration frame; 5. Discharge mechanism; 501. Slide groove; 502. Cleaning rod; 503. Connecting cylinder; 504. Sliding rod; 505. Discharge pipe; 506. Movable cover; 507. Fixed block; 508. Spring. Detailed Implementation
[0049] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0050] In the description of the present application, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application. In addition, the terms "first", "second", "third" are only for the purpose of description, and cannot be understood as indicating or implying relative importance. In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connecting", "arranging" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium, or it can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances. The embodiments will be described below according to the overall structure of the present application.
[0051] Please refer to Figures 1 to 3 In the embodiments of the present application, a paper tube production wastewater treatment equipment and a treatment method thereof, comprising:
[0052] The cylinder mechanism 1 comprises a cylinder 103;
[0053] The rotating mechanism 2 comprises a motor 201 fixedly connected to the top of the cylinder 103, and a first gear 202 sleeved on the outer wall of the output end of the motor 201 in the inner cavity of the cylinder 103, and two second gears 203 symmetrically engaged on the outer wall of the first gear 202;
[0054] The switch mechanism 3 comprises a filter frame 301 fixedly connected to the inner wall of the cylinder 103 below the inner ring gear 204;
[0055] The vibration mechanism 4 comprises a driven frame 401 movably connected to the inner wall of the cylinder 103 below the filter frame 301;
[0056] The discharge mechanism 5 comprises a discharge pipe 505 fixedly connected to the outer wall of the cylinder 103 above the filter frame 301;
[0057] The bottom of the barrel 103 is fixedly connected with a discharging barrel 104, the circumferential outer wall of the discharging barrel 104 is sleeved with a sleeve frame 102, the bottom of the sleeve frame 102 is circumferentially welded with four supporting feet 101, the top circumferential outer wall of the barrel 103 is sleeved with a supporting frame 105, the top of the supporting frame 105 is circumferentially welded with a fixed rod 106, the fixed rod 106 is sleeved on the circumferential outer wall of the motor 201, and the top of the barrel 103 is welded with a liquid inlet barrel 107
[0058] The circumferential inner wall of the barrel 103 is fixedly connected with an inner gear ring 204 engaged with the second gear 203, the bottom of the first gear 202 on one side is movably connected with a first telescopic barrel 206, and the bottom of the second gear 203 is movably connected with a second telescopic barrel 211.
[0059] The circumferential outer walls of the first telescopic barrel 206 and the second telescopic barrel 211 are movably connected with a connecting frame 205, the bottom of the first telescopic barrel 206 is movably connected with a first connecting shaft 207, and the circumferential outer wall of the first connecting shaft 207 is welded with a stirring frame 208.
[0060] The top of the barrel 103 is movably connected with an engagement sleeve 209 through the circumferential inner wall of the first gear 202 on the other side, the inner wall of the engagement sleeve 209 is threadedly connected with a first lead screw 210 fixedly connected with the top of the barrel 103, and the bottom of the second telescopic barrel 211 is movably connected with a driving shaft 212.
[0061] The bottom of the filter frame 301 is rotatably connected with a spacing tooth frame 302, the circumferential inner wall of the spacing tooth frame 302 is equally meshed with four meshing teeth 304, the distal end of the meshing tooth 304 is welded with a rotating frame 305, the inner wall of the rotating frame 305 is rotatably connected with a rotating shaft 303 rotatably connected with the bottom of the filter frame 301, the top of the spacing tooth frame 302 is movably connected with a meshing barrel 306 penetrating the filter frame 301, and the meshing barrel 306 is circumferentially engaged with the outer wall of the driving shaft 212.
[0062] In the embodiment, the liquid to be treated is introduced into the cylinder 103 through the liquid inlet cylinder 107, and then the medicine liquid is added. The motor 201 drives the first gear 202 to rotate, and the first gear 202 drives the second gear 203 to rotate and revolve along the inner gear ring 204. The second gear 203 drives the meshing sleeve 209 to rotate and move up and down along the first screw rod 210. The meshing sleeve 209 drives the first telescopic cylinder 206 and the second telescopic cylinder 211 to extend and retract, thereby driving the driving shaft 212 and the first connecting shaft 207 to move up and down. The driving shaft 212 moves up and down and rotates, and drives the stirring frame 208 to fully stir and react the liquid and the medicine liquid in the cylinder 103. The driving shaft 212 moves downward into the meshing cylinder 306, drives the interval toothed frame 302 to rotate, and drives the meshing teeth 304 to rotate along the rotating shaft 303 to make the rotating frames 305 move away from each other, thereby opening the filter frame 301, and filtering the liquid after stirring and reaction. The stirring frame 208 can first stir the upper liquid, and slowly moves downward to make the medicine liquid fully react with the sewage, until the driving shaft 212 contacts and opens the filter frame 301, so that the sludge which has not been stirred a lot is filtered by the filter frame 301, the stirring of the sludge deposited in the lower layer is reduced, and the settling speed of the sludge is ensured.
[0063] Please refer to Figure 4 and Figure 5 :
[0064] The driving frame 402 is welded to the bottom of the driven frame 401, the driven shaft 403 is movably connected to the bottom of the driving frame 402, the scraping rod 404 is movably connected to the outer wall of the driving frame 402, the second connecting shaft 405 is movably connected to the outer wall of the driving frame 402, the upper connecting frame 406 is movably connected to the outer wall of the driving frame 402, and the second connecting shaft 405 is movably connected to the upper connecting frame 406.
[0065] The movable block 407 is movably connected to the middle of the upper connecting frame 406, the second screw rod 411 is movably connected to the movable block 407, the upper connecting frame 406 is movably connected to the slide rail and the movable block 407, the base 408 is movably connected to the top of the movable block 407, the ball 409 is movably connected to the top of the base 408, the connecting rod 410 is movably connected to the top of the ball 409, and the connecting rod 410 is movably connected to the driven frame 401.
[0066] In the embodiment, the liquid filtered by the filter frame 301 contains a large amount of foam, the first connecting shaft 207 enters the connecting cylinder 503 to drive the driven frame 401 and the driving frame 402 to rotate, the driving frame 402 drives the driven shaft 403 to rotate, the driven shaft 403 drives the scraping rod 404 to scrape the foam to achieve the preliminary cleaning of the filtered liquid, the driven frame 401 drives the connecting rod 410 to rotate, the connecting rod 410 drives the ball 409 to rotate on the base 408, the ball 409 drives the movable block 407 to reciprocate along the second screw rod 411, the reciprocation of the movable block 407 drives the movable frame 412 to vibrate along the second connecting shaft 405, the movable frame 412 drives the support rod 413 to vibrate, thereby driving the vibrating frame 414 to vibrate to clean the foam, which can reduce the pollution of the foam to the inner wall of the cylinder body 103 and can increase the effective volume in the cylinder body 103 and the discharge cylinder 104.
[0067] Please pay attention to Figure 2 and Figure 7 :
[0068] The outlet end of the discharge pipe 505 is movably connected with a movable cover 506, the movable cover 506 and the outer wall of the discharge pipe 505 are fixedly connected with fixed blocks 507, springs 508 are movably connected between the two fixed blocks 507, a sliding groove 501 is formed in the inner wall of the cylinder body 103, the filter frame 301 penetrates through the driven frame 401 and is movably connected with a connecting cylinder 503, a sliding rod 504 is slidably connected in the sliding groove 501, and the circumferential outer wall of the engagement cylinder 306 is sleeved with a cleaning rod 502.
[0069] In the embodiment, when the driving shaft 212 moves downward to drive the engagement cylinder 306 to rotate, the engagement cylinder 306 drives the cleaning rod 502 to rotate to clean the flocculation on the filter frame 301, the engagement sleeve 209 continues to move downward to move the first connecting shaft 207 downward, the first connecting shaft 207 contacts the sliding rod 504, the rotation of the first connecting shaft 207 along the inner gear ring 204 drives the sliding rod 504 to rotate along the sliding groove 501, when the sliding rod 504 rotates to the end of the sliding groove 501, the cleaning rod 502 rotates to contact the sliding rod 504 to accumulate the cleaned sludge at the sliding rod 504, the accumulated impurities push the movable cover 506 to open, so that the impurities are discharged from the discharge pipe 505, when the impurity pushing force is smaller than the spring 508 elastic force, the spring 508 elastically returns to reset the movable cover 506 to close the discharge pipe 505, and when the filter frame 301 does not need to be cleaned, the outlet of the discharge pipe 505 is fixedly closed by the cover, and the treated liquid is discharged through the discharge cylinder 104, which can discharge the cleaned impurities when the filter frame 301 is cleaned, thereby reducing the subsequent cleaning steps in the cylinder body 103.
[0070] Working principle:
[0071] S1, the liquid to be treated from the liquid inlet cylinder 107 into the cylinder 103, motor 201 drive first gear 202 rotation after the second gear 203 along the inner tooth ring 204 revolution and revolution, the second gear 203 drive meshing sleeve 209 along the first screw 210 up and down, meshing sleeve 209 drive first telescopic cylinder 206 and the second telescopic cylinder 211 telescopic drive shaft 212 and the first connecting shaft 207 up and down, drive shaft 212 into the meshing cylinder 306 inside drive gear 302 rotation, gear 302 drive meshing gear 304 along the rotation axis 303 rotation makes rotation frame 305 away from each other, open filter frame 301 for filtering;
[0072] S2, the liquid filtered by filter frame 301 contains a large number of foam, the first connecting shaft 207 into the connecting cylinder 503 drive driven frame 401 and drive frame 402 rotation, drive frame 402 drive scraping rod 404 to foam preliminary cleaning, driven frame 401 rotation makes connecting rod 410 drive ball 409 rotation, and drive movable block 407 along the second screw 411 back and forth, movable block 407 drive movable frame 412 along the second connecting shaft 405 vibration, thus drive vibration frame 414 to clean the foam;
[0073] S3, drive shaft 212 down drive meshing cylinder 306 rotation when drive cleaning rod 502 to filter frame 301 on the filter out of the floc cleaning, meshing sleeve 209 down to make the first connecting shaft 207 down and contact sliding rod 504, the first connecting shaft 207 along the inner tooth ring 204 rotation drive sliding rod 504 along the sliding slot 501 rotation, rotation to the end of the sliding slot 501, cleaning rod 502 rotation to contact with sliding rod 504 makes the cleaning of sludge accumulated in the end of the sliding slot 501;
[0074] S4, the accumulated impurities drive movable cover 506 open, so that the impurities from the discharge pipe 505 discharge, when the impurity thrust is less than the spring 508 rebound force, spring 508 makes movable cover 506 reset, close the discharge pipe 505, without cleaning the filter frame 301, through the cover to fix the outlet of the discharge pipe 505 closed, the liquid from the discharge cylinder 104 discharge.
[0075] The above, only for the preferred specific embodiments of the present application, but the scope of protection of the present application is not limited to this, any skilled in the art of the technical personnel in the technical range disclosed by the present application, according to the technical scheme of the present application and the invention concept of equivalent replacement or change, should be covered in the protection scope of the present application.
Claims
1. A wastewater treatment device for paper tube production, characterized in that, Include; The barrel mechanism (1) comprises a barrel (103); The rotating mechanism (2) comprises a motor (201) fixedly connected to the top of the barrel (103), the output end of the motor (201) is sleeved with a first gear (202) located in the inner cavity of the barrel (103), and the two sides of the circumferential outer wall of the first gear (202) are symmetrically engaged with two second gears (203); The circumferential inner wall of the barrel (103) is fixedly connected with an inner gear ring (204) engaged with the second gear (203), and the bottom of the first gear (202) on one side is movably connected with a first telescopic barrel (206), and the bottom of the second gear (203) is movably connected with a second telescopic barrel (211); The circumferential outer wall of the first telescopic barrel (206) and the second telescopic barrel (211) is movably connected with a connecting frame (205), the bottom of the first telescopic barrel (206) is movably connected with a first connecting shaft (207), and the circumferential outer wall of the first connecting shaft (207) is welded with a stirring frame (208); The circumferential inner wall of the first gear (202) on the other side penetrates through the top of the barrel (103) and is movably connected with an engagement sleeve (209), the inner wall of the engagement sleeve (209) is threadedly connected with a first lead screw (210) fixedly connected with the top of the barrel (103), and the bottom of the second telescopic barrel (211) is movably connected with a driving shaft (212); The switch mechanism (3) comprises a filter frame (301) fixedly connected to the circumferential inner wall of the barrel (103) located below the inner gear ring (204); The bottom of the filter frame (301) is rotatably connected with a spacing gear rack (302), the circumferential inner wall of the spacing gear rack (302) is equally engaged with four engagement teeth (304), the distal end of the engagement tooth (304) is welded with a rotating frame (305), the inner wall of the rotating frame (305) is rotatably connected with a rotating shaft (303) rotatably connected with the bottom of the filter frame (301), and the top of the spacing gear rack (302) penetrates through the filter frame (301) and is movably connected with an engagement barrel (306), which is engaged with the circumferential outer wall of the driving shaft (212); The liquid to be treated enters the barrel (103) from the liquid inlet barrel (107), the motor (201) drives the first gear (202) to rotate and then drives the second gear (203) to rotate and revolve along the inner gear ring (204), the second gear (203) drives the engagement sleeve (209) to move up and down along the first lead screw (210), the engagement sleeve (209) drives the first telescopic barrel (206) and the second telescopic barrel (211) to expand and contract, drives the driving shaft (212) and the first connecting shaft (207) to move up and down, the driving shaft (212) moves downward into the engagement barrel (306) and drives the spacing gear rack (302) to rotate, the spacing gear rack (302) drives the engagement tooth (304) to rotate along the rotating shaft (303) to make the rotating frame (305) away from each other, and the filter frame (301) is opened for filtering; It also includes a vibrating mechanism (4), the vibrating mechanism (4) includes a driven frame (401) movably connected to the circumferential inner wall of the barrel (103) at the bottom of the filter frame (301); The bottom of the barrel (103) is fixedly connected with a discharge barrel (104), the circumferential outer wall of the discharge barrel (104) is sleeved with a sleeve frame (102), the bottom of the sleeve frame (102) is circumferentially welded with four supporting legs (101), the circumferential outer wall of the top of the barrel (103) is sleeved with a supporting frame (105), the top of the supporting frame (105) is circumferentially welded with a fixed rod (106), the fixed rod (106) is sleeved on the circumferential outer wall of the motor (201), and the top of the barrel (103) is welded with a liquid inlet barrel (107); It also includes a discharging mechanism (5), the discharging mechanism (5) includes a discharge pipe (505) fixedly connected to the outer wall of the barrel (103) at the upper end of the filter frame (301), the outlet end of the discharge pipe (505) is movably connected with a movable cover (506), the movable cover (506) and the outer wall of the discharge pipe (505) are fixedly connected with a fixed block (507), the two fixed blocks (507) are movably connected with a spring (508), a sliding groove (501) is formed in the inner wall of the barrel (103), the filter frame (301) is movably connected with a connecting barrel (503) penetrating through the driven frame (401), and the sliding groove (501) is slidably connected with a sliding rod (504). The circumferential outer wall of the engaging barrel (306) is sleeved with a cleaning rod (502).
2. The paper tube production wastewater treatment apparatus according to claim 1, characterized by The bottom of the driven frame (401) is welded with a driving frame (402), the bottom of the driving frame (402) is movably connected with a driven shaft (403), the distal end of the driven shaft (403) is movably connected with a scraping rod (404), the bottom of the driven frame (401) is movably connected with a second connecting shaft (405) outside the outer wall of the driving frame (402), and the circumferential inner wall of the discharge barrel (104) is fixedly connected with an upper connecting frame (406). The second connecting shaft (405) is movably connected with a movable frame (412) penetrating through the upper connecting frame (406).
3. The paper tube production wastewater treatment apparatus according to claim 2, characterized by The middle of the upper connecting frame (406) is slidably connected with a movable block (407), the movable block (407) is movably connected with a second lead screw (411) penetrating through, the upper connecting frame (406) is connected with a sliding rail corresponding to the movable block (407), the top of the movable block (407) is fixedly connected with a base (408), the top of the base (408) is rotatably connected with a ball (409), the top of the ball (409) is rotatably connected with a connecting rod (410) rotatably connected with the driven frame (401), and the movable frame (412) is movably connected with a supporting rod (413) penetrating through the upper connecting frame (406). The top of the supporting rod (413) is fixedly connected with a vibrating frame (414).
Citation Information
Patent Citations
Wastewater treatment device for paper tube production and treatment method thereof
CN118458863A