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CN-121971900-A - Online continuous cleaning device for grid filter element

CN121971900ACN 121971900 ACN121971900 ACN 121971900ACN-121971900-A

Abstract

The invention relates to the technical field of grating cleaning treatment, in particular to an online continuous cleaning device for a grating filter element, which comprises a collecting device, a deslagging device and a cleaning device, wherein the collecting device can collect grating residues generated after stripping cleaning; the slag removing device is arranged at the top surface of the rear end of the collecting device and is close to the right corner, the slag removing device can clamp and drive the grid filter element to be cleaned so as to realize station transfer and pre-stripping of filter residues, and the cleaning device is arranged at the center of the top surface of the rear end of the collecting device. The invention solves the problems that the traditional cleaning mode needs to stop offline operation, cleaning and production cannot be synchronized in the industry pain point, the normal operation of the original filtering system is not required to be interrupted in the cleaning process, the long-term continuous online cleaning requirement of the grid element in various industrial scenes can be adapted, and the operation efficiency of the cleaning operation and the whole production line is obviously improved.

Inventors

  • YANG CHENGHAN

Assignees

  • 江苏金茂成兴环保科技有限公司

Dates

Publication Date
20260505
Application Date
20260407

Claims (8)

  1. 1. An in-line continuous cleaning apparatus for a grille filter element, comprising: a collecting device (1) capable of collecting the gate slag generated after the stripping cleaning; The deslagging device (2) is arranged at the top surface of the rear end of the collecting device (1) and is close to the right corner, and the deslagging device (2) can clamp and drive a grid filter element to be cleaned so as to realize station transfer and pre-stripping of filter residues; the cleaning device (3) is arranged in the center of the top surface of the rear end of the collecting device (1), and the cleaning device (3) can be matched with the deslagging device (2) for deep extrusion cleaning of the grating filter element transferred to the cleaning station, stripping of attached filter residues on the grating filter element and extrusion dehydration of the stripped filter residues.
  2. 2. An in-line continuous cleaning device for grille filter elements according to claim 1, characterized in that said collecting device (1) comprises: a first load-bearing platform (11) for supporting the top surface connection member; the sewage tank (12) is arranged at the front end of the top surface of the first bearing platform (11); The second bearing platform (13) is arranged at the front side of the outer wall of the first bearing platform (11) and is close to the right end; the first electric push rod (14) is arranged at the front end of the top surface of the second bearing platform (13); A second electric push rod (15) arranged at the pushing end of the first electric push rod (14); the connecting plate (16) is arranged at the pushing end of the second electric push rod (15); the electric sliding tables (17) are arranged at two ends of the rear side of the outer wall of the connecting plate (16); and the collecting groove plate (18) is arranged on the movable output end of the electric sliding table (17).
  3. 3. An in-line continuous cleaning device for grille filter elements according to claim 2, characterized in that said deslagging device (2) comprises: the supporting plate (21) is arranged at the rear end of the top surface of the first bearing platform (11) and is close to the right corner; A first driving assembly (22) arranged at the front top end of the outer wall of the supporting plate (21); The rectangular supporting rod (23) is arranged at the output end of the first driving assembly (22); the rectangular electric push rods (24) are four in number and are respectively arranged on four sides of the outer wall of the front end of the rectangular supporting rod (23); The four transmission plates (25) are respectively arranged at the pushing ends of the four rectangular electric push rods (24), and the four transmission plates (25) are uniformly distributed circumferentially; The number of the L-shaped gratings (26) is four, the L-shaped gratings are respectively arranged on the front sides of the outer walls of the four transmission plates (25), the four L-shaped gratings (26) are uniformly distributed circumferentially, and one L-shaped grating (26) is embedded into the sewage tank (12) through one rectangular electric push rod (24).
  4. 4. An in-line continuous cleaning apparatus for grille filter elements as claimed in claim 3, wherein the first drive assembly (22) comprises: An active dial (221) provided on the front top of the outer wall of the support plate (21) through a first bearing; The brake motor (222) is arranged at the top end of the rear side of the outer wall of the supporting plate (21), and the output end of the brake motor (222) is fixedly connected with the center of the rear side of the outer wall of the driving dial (221); A shift lever (223) provided on the outer wall of the drive plate (221); a support rod (224) arranged on the front side of the outer wall of the support plate (21) and close to the center; the driven grooved pulley (225) is sleeved at the front end of the supporting rod (224) through a second bearing, the deflector rods (223) can be inserted into four grooves formed in the driven grooved pulley (225), and the center of the front side of the outer wall of the driven grooved pulley (225) is fixedly connected with the rear end of the rectangular supporting rod (23); The miniature electric push rod (226) is arranged in the center of the right end of the front side of the outer wall of the supporting plate (21); The clamping blocks (227) are arranged at the pushing ends of the miniature electric push rods (226), and the clamping blocks (227) can be clamped in four grooves formed in the driven grooved wheels (225).
  5. 5. The on-line continuous cleaning device for grating filter element according to claim 4, wherein the brake motor (222) rotates to drive the driving plate (221) to rotate, and the driving plate (221) drives the deflector rod (223) to be inserted into a groove in the driven grooved wheel (225), and the deflector rod (223) is driven by the brake motor (222) to rotate along the axial direction of the motor to one circle, so that the deflector rod (223) is driven by the deflector rod (225) to rotate 90 degrees, and the four L-shaped gratings (26) are driven by the motor to rotate 90 degrees.
  6. 6. An in-line continuous cleaning device for grille filter elements according to claim 5, characterized in that said cleaning device (3) comprises: The L-shaped supporting plate (31) is arranged in the center of the rear end of the top surface of the first bearing platform (11); the third electric push rod (32) is arranged at the front end of the top surface of the inner wall of the L-shaped supporting plate (31); an L-shaped bearing plate (33) arranged at the pushing end of the third electric push rod (32); the second driving assembly (34) is arranged at the center of one side of the inner wall of the L-shaped bearing plate (33); and the comb-tooth type extrusion cleaning plate (35) is arranged at the movable output end of the second driving assembly (34), and the comb-tooth type extrusion cleaning plate (35) is matched with the four L-shaped grids (26).
  7. 7. An in-line continuous cleaning apparatus for grille filter elements of claim 6, wherein the second drive assembly (34) comprises: a flat brake motor (341) provided in the center of one side of the inner wall of the L-shaped carrier plate (33); an eccentric circular plate (342) provided at the output end of the flat brake motor (341); A circular insert (343) provided at the eccentric end of the eccentric disc (342); the hollow long block (344) is sleeved on the outer wall of the round insertion block (343); A reciprocating push rod (345) arranged at the center of the bottom surface of the hollow long block (344); The limiting rod (346) is arranged at the center of the single side bottom end of the inner wall of the L-shaped bearing plate (33), a through moving groove (347) is formed in the right end of the top surface of the limiting rod (346), the bottom end of the reciprocating push rod (345) is sleeved in the moving groove (347), the reciprocating push rod (345) can move in a limiting mode along the inner wall of the moving groove (347), and the bottom end of the reciprocating push rod (345) is fixedly connected with the center of the top surface of the comb-tooth-type extrusion cleaning plate (35).
  8. 8. The on-line continuous cleaning device for grille filter elements according to claim 7, wherein the flat brake motor (341) can drive the eccentric circular plate (342) to rotate, so that the eccentric circular plate (342) drives the circular insert block (343) to move in a limited manner in the hollow long block (344), and the reciprocating push rod (345) is limited by the moving groove (347), so that the reciprocating push rod (345) drives the comb-tooth-type extrusion cleaning plate (35) to move in a limited manner in a linear manner.

Description

Online continuous cleaning device for grid filter element Technical Field The invention relates to the technical field of grating cleaning treatment, in particular to an online continuous cleaning device for a grating filter element. Background The grille is used as a universal filtering or intercepting element and is widely applied to material separation procedures of industries such as automatic cleaning robot matched filtering, sewage treatment, industrial circulating water, food processing and the like. During use, the surface and pores of the grille inevitably adhere to and accumulate various dirt (such as fibers, particles, sticky matters and the like), and must be cleaned periodically to restore the permeability. However, existing cleaning techniques for gratings suffer from the following core drawbacks: 1. The continuity of the cleaning operation is poor, the existing cleaning mode mostly adopts manual off-line cleaning or single-group grid shutdown cleaning, and the normal use of the grids must be interrupted in the cleaning process, so that the cleaning efficiency is low, and the production and cleaning synchronization cannot be realized; 2. The cleaning thoroughness is poor, the existing method such as high-pressure water flushing and simple scraping can only remove scum on the surface of the grille, stubborn attachments embedded in the apertures of the grille cannot be stripped, the residue rate after cleaning is high, and the grille needs to be frequently rewashed; 3. The cleaning process is easy to cause secondary pollution, the lack of a synchronous treatment structure for stripping dirt, the cleaned high-water-content filter residues are easy to fall back into the working environment, the environmental pollution of a cleaning site is caused, and the subsequent treatment cost of wet residues is high; 4. The cleaning executing mechanism has poor stability, low station switching precision, lack of self-locking limit, easy collision between the cleaning component and the grille and low equipment reliability. Disclosure of Invention The present invention is directed to an on-line continuous cleaning device for grille filter elements, which solves the above-mentioned problems. The online continuous cleaning device for the grid filter element comprises a collecting device, a deslagging device and a cleaning device, wherein the collecting device can collect grid slag generated after stripping cleaning, the deslagging device is arranged on the top surface of the rear end of the collecting device and close to the right corner, the deslagging device can clamp and drive the grid filter element to be cleaned so as to realize station transfer and pre-stripping of the slag, the cleaning device is arranged in the center of the top surface of the rear end of the collecting device and can be matched with the deslagging device, and the cleaning device can be used for deep extrusion cleaning of the grid filter element transferred to a cleaning station, stripping attached slag on the grid filter element and extrusion dehydration of the stripped slag. The collecting device comprises a first bearing platform, a sewage tank, a second bearing platform, a first electric push rod, a second electric push rod, a connecting plate, an electric sliding table and a collecting groove plate, wherein the first bearing platform is used for supporting a top surface connecting component, the sewage tank is arranged at the front end of the top surface of the first bearing platform, the second bearing platform is arranged at the front side of the outer wall of the first bearing platform and is close to the right end, the first electric push rod is arranged at the front end of the top surface of the second bearing platform, the second electric push rod is arranged at the pushing end of the first electric push rod, the connecting plate is arranged at the pushing end of the second electric push rod, the electric sliding table is arranged at the two ends of the rear side of the outer wall of the connecting plate, and the collecting groove plate is arranged at the moving output end of the electric sliding table. The deslagging device comprises a supporting plate, a first driving assembly, four rectangular supporting rods, four rectangular electric push rods, transmission plates and L-shaped gratings, wherein the supporting plate is arranged at the rear end of the top surface of a first bearing platform and is close to the right corner, the first driving assembly is arranged at the top end of the front side of the outer wall of the supporting plate, the rectangular supporting rods are arranged at the output end of the first driving assembly, the number of the rectangular electric push rods is four and are respectively arranged at the four sides of the outer wall of the front end of the rectangular supporting rods, the number of the transmission plates is four and are respectively arranged at the pushing ends of the four rectangular elect