CN221771734U - A device for filtering and treating wastewater containing antimony metal - Google Patents
A device for filtering and treating wastewater containing antimony metal Download PDFInfo
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- CN221771734U CN221771734U CN202422067030.6U CN202422067030U CN221771734U CN 221771734 U CN221771734 U CN 221771734U CN 202422067030 U CN202422067030 U CN 202422067030U CN 221771734 U CN221771734 U CN 221771734U
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P10/00—Technologies related to metal processing
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Abstract
The utility model provides an antimony-containing metal wastewater filtering treatment device, which relates to the technical field of antimony-containing metal wastewater treatment and comprises a bottom plate, wherein a filter tank and a collecting tank are fixed on the top surface of the bottom plate, the filter tank is positioned on the right side of the collecting tank, a filter frame is arranged in the filter tank, a turnover mechanism driving the filter frame to rotate is arranged on the upper surface of the bottom plate, the turnover mechanism comprises a first motor fixed on the upper surface of the bottom plate and a square tube fixed on the top surface of the left side of the filter frame, a square rod is fixed at the output end of the first motor, and one end of the square rod far away from the first motor is sleeved in the square tube in a sliding manner. This contain antimonial waste water filtration processing apparatus, it can carry out automatic clearance to the sediment that remains in the filter frame, can also make the filter frame shake from top to bottom when controlling the motion, is favorable to shaking the sediment that blocks up on the filter plate of filter frame to the collecting vat in to can effectively clear away the sediment that blocks up on the filter plate, guarantee its filter effect.
Description
Technical Field
The utility model relates to a wastewater filtering treatment device, in particular to an antimony-containing metal wastewater filtering treatment device, and belongs to the technical field of antimony metal wastewater treatment.
Background
The antimony pollution is the pollution of antimony and its compound to the environment, when antimony and antimony-containing metal are smelted or mined in coal mine, and when antimony or its compound is applied in other processes, waste gas, waste water and waste residue containing antimony element or its compound can be produced to pollute the environment, and during the mineral combustion or smelting process, the antimony enters the atmosphere in the form of steam or dust.
A filtering mechanism and a filtering treatment device for the waste water containing antimony are disclosed in Chinese patent publication No. CN 219117237U. According to the utility model, the coagulant is poured into the wastewater through the cooperation of the supporting piece and the dosing piece, the stirring assembly is started, the mixing of the coagulant and the antimony metal is facilitated to be accelerated, the wastewater flushes the precipitate into the filtering piece, the possibility that the precipitate can be discharged along with the wastewater is reduced, and the lifting piece drives the filtering piece to move upwards through the cooperation of the lifting piece and the filtering piece, so that the precipitate in the filtering piece is facilitated to be cleaned.
In the scheme of the patent, although the sediment in the filter element can be cleaned, the wastewater filtering treatment device in the patent still needs to clean the sediment manually after the filter element is driven to move upwards by the lifting element, and the filter plate does not have the function of automatic cleaning. Therefore, the device for filtering and treating the antimony-containing metal wastewater solves the problems.
Disclosure of utility model
The utility model provides a filtering treatment device for antimony-containing metal wastewater, which can automatically clean sediment remained in a filtering frame, can vibrate the filtering frame up and down when the filtering frame moves left and right, and is beneficial to shaking off the sediment blocked on a filter plate of the filtering frame into a collecting tank, so that the sediment blocked on the filter plate can be effectively removed, and the subsequent filtering effect is ensured.
The utility model is realized by the following technical scheme: the utility model provides a contain antimony metal waste water filtration treatment device, includes the bottom plate, the top surface of bottom plate is fixed with filtering ponds and collecting vat, and the filtering ponds are located the right side of collecting vat, the inside of filtering ponds is equipped with the filter frame, the upper surface of bottom plate is provided with the tilting mechanism that drives the filter frame rotation.
The turnover mechanism comprises a first motor fixed on the upper surface of a bottom plate and a square tube fixed on the left top surface of the filtering frame, a square rod is fixed at the output end of the first motor, one end of the square rod, far away from the first motor, is slidably sleeved in the square tube, a set of equidistantly distributed sliding blocks are fixed on the bottom surface of the square rod, a set of equidistantly distributed positioning shafts are fixed on the inner wall of the square tube, the positioning shafts are distributed with the sliding blocks at intervals, a rotary tube is rotatably sleeved outside each positioning shaft, and the rotary tube is located below the square rod.
The upper surface of bottom plate is provided with the vibration mechanism that is used for making the filtration frame after the upset rock, vibration mechanism is including fixing the backup pad at the collecting vat left surface and fixing two link at the bottom plate upper surface, and two link are located the front and back both sides of collecting vat respectively, the upper surface sliding connection of backup pad has two connecting rods, every the one end that the connecting rod kept away from each other all is fixed with the slide shaft, two the one end that the connecting rod was kept away from to the slide shaft slides respectively and runs through two link and be fixed with splint, the surface width of filtration frame is less than the distance between two splint, can block into between two splint when the filtration frame overturns to the collecting vat top.
The vibrating mechanism further comprises a second motor fixed on the upper surface of the supporting plate and a vibrating frame which is connected to the top surface of the supporting plate in a sliding mode, an eccentric wheel is arranged in the vibrating frame and fixedly installed at the output end of the second motor, and one ends, close to each other, of the two connecting rods are respectively fixed on the side face of the vibrating frame.
Further, the upper surface of bottom plate is fixed with two support frames, every the top of support frame is all rotated and is connected with the connecting block, and two the connecting block is fixed respectively cup joints at the both ends of square pole.
Further, the top of collecting vat is provided with a plurality of elastic support mechanisms that support the filter frame, elastic support mechanism is including seting up the removal groove at the collecting vat top surface, the inside sliding connection of removal groove has the slide bar, the top of slide bar is fixed with the supporting shoe, be fixed with the pressure spring between the top surface of supporting shoe and collecting vat.
Wherein, the outside cover of pressure spring is equipped with the protective sleeve, and the protective sleeve is fixed at the top of collecting vat.
The utility model provides a filtering treatment device for antimony-containing metal wastewater, which has the following beneficial effects:
1. This contain antimonial waste water filtration processing apparatus utilizes the filter frame to filter containing antimonial waste water, and the residual precipitate after the filtration is piled up on the filter plate of filter frame bottom. After the filtration is finished, the square rod is driven to turn 180 degrees through the first motor, the square tube and the filter frame are simultaneously rotated by 180 degrees, the filter frame is turned over to the upper side of the collecting tank, residual sediment in the filter frame can be poured into the collecting tank, and then the vibration mechanism is utilized, so that the vibration frame, the connecting rod, the sliding shaft and the clamping plate can move left and right, the filter frame can be driven to move left and right, the vibration effect of the filter frame is achieved, the residual sediment in the filter frame can be poured into the collecting tank, and automatic cleaning of the residual sediment in the filter frame can be achieved.
2. This contain antimonic metal waste water filtration processing apparatus utilizes vibration mechanism to make the filter frame move side by side, and square pipe and its inside a set of commentaries on classics pipe also move side by side, and a plurality of commentaries on classics pipe are on square pole and a plurality of slider side by side, because the effect of slider can make square pipe and filter frame and shake from top to bottom when controlling the motion, be favorable to shaking the precipitate that blocks up on the filter plate of filter frame to the collecting vat in to can effectively clear away the precipitate that blocks up on the filter plate, guarantee its filter effect.
Drawings
FIG. 1 is a schematic perspective view of the present utility model;
FIG. 2 is a schematic view of a partial structure of the present utility model;
FIG. 3 is a sectional view showing the structure of the inside of a square tube according to the present utility model;
FIG. 4 is a schematic perspective view of a vibration mechanism according to the present utility model;
FIG. 5 is a schematic view of the elastic supporting mechanism according to the present utility model;
Fig. 6 is a schematic view showing a state in which the square bar, the square tube and the filter frame are turned 180 degrees.
Description of the reference numerals
1. A bottom plate; 2. a filtering tank;
3. An elastic supporting mechanism; 31. a moving groove; 32. a protective sleeve; 33. a slide bar; 34. a pressure spring; 35. a support block;
4. A support frame; 5. a connecting block; 6. a filter frame;
7. A turnover mechanism; 70. a first motor; 71. square rods; 72. square tubes; 73. positioning a shaft; 74. a rotary pipe; 75. a slide block;
8. A collection tank;
9. a vibration mechanism; 91. a connecting frame; 92. a slide shaft; 93. a second motor; 94. an eccentric wheel; 95. a vibration frame; 96. a connecting rod; 97. a clamping plate; 90. and a support plate.
Detailed Description
Referring to fig. 1-6, an embodiment of the utility model provides an antimony-containing metal wastewater filtering treatment device, which comprises a bottom plate 1, wherein a filtering tank 2 and a collecting tank 8 are fixed on the top surface of the bottom plate 1, the filtering tank 2 is positioned on the right side of the collecting tank 8, a filtering frame 6 is arranged in the filtering tank 2, a filter plate is arranged at the bottom of the filtering frame 6, antimony-containing metal wastewater is filtered by the filtering frame 6, residual sediment after filtration is accumulated on the filter plate at the bottom of the filtering frame 6, and a turnover mechanism 7 for driving the filtering frame 6 to rotate is arranged on the upper surface of the bottom plate 1.
Referring to fig. 1, 2 and 3, the turnover mechanism 7 includes a first motor 70 fixed on the upper surface of the bottom plate 1 and a square tube 72 fixed on the top surface of the left side of the filter frame 6, wherein the output end of the first motor 70 is fixed with a square rod 71, one end of the square rod 71 far away from the first motor 70 is slidably sleeved in the square tube 72, the bottom surface of the square rod 71 is fixed with a set of equidistantly distributed sliding blocks 75, the inner wall of the square tube 72 is fixed with a set of equidistantly distributed positioning shafts 73, the positioning shafts 73 and the sliding blocks 75 are distributed at intervals, a rotating tube 74 is rotatably sleeved outside each positioning shaft 73, and the rotating tube 74 is located below the square rod 71.
Wherein, the upper surface of bottom plate 1 is fixed with two support frames 4, and the top of every support frame 4 all rotates and is connected with connecting block 5, and two connecting blocks 5 are fixed respectively cup joints at the both ends of square pole 71.
In the turnover mechanism 7, the square rod 71 is driven by the first motor 70 to turn 180 degrees, and the square tube 72 and the filter frame 6 are simultaneously rotated 180 degrees, so that the filter frame 6 is turned over the collecting tank 8, and the residual sediment in the filter frame 6 can be poured into the collecting tank 8.
After the filter frame 6 is turned 180 degrees, the slider 75 is turned over to follow the square bar 71 to above the square bar 71, the rotary pipe 74 is turned over to follow the square pipe 72 to above the inside of the square pipe 72, and the rotary pipe 74 is located above the square bar 71, and the rotary pipe 74 is in sliding contact with the surface of the square bar 71, as shown in fig. 6.
Referring to fig. 1 and 4, the upper surface of the bottom plate 1 is provided with a vibrating mechanism 9 for shaking the turned filter frame 6, the vibrating mechanism 9 includes a support plate 90 fixed on the left side of the collecting tank 8 and two connecting frames 91 fixed on the upper surface of the bottom plate 1, the two connecting frames 91 are respectively located on the front and rear sides of the collecting tank 8, the upper surface of the support plate 90 is slidably connected with two connecting rods 96, one end of each connecting rod 96, which is far away from each other, is fixed with a sliding shaft 92, one end of each connecting rod 96, which is far away from the two sliding shafts 92, respectively slides through the two connecting frames 91 and is fixed with a clamping plate 97, the width of the outer surface of the filter frame 6 is smaller than the distance between the two clamping plates 97, and when the filter frame 6 is turned over to the upper side of the collecting tank 8, the filter frame 6 can be clamped between the two clamping plates 97.
The vibration mechanism 9 further comprises a second motor 93 fixed on the upper surface of the supporting plate 90 and a vibration frame 95 slidably connected to the top surface of the supporting plate 90, an eccentric wheel 94 is arranged in the vibration frame 95, the eccentric wheel 94 is fixedly installed at the output end of the second motor 93, and one ends, close to each other, of two connecting rods 96 are respectively fixed on the side surface of the vibration frame 95.
After the filter frame 6 rotates 180 degrees, the filter frame 6 is clamped between the two clamping plates 97, the first motor 70 is closed, the second motor 93 is started, the second motor 93 drives the eccentric wheel 94 to rotate, and the vibration frame 95, the connecting rod 96, the sliding shaft 92 and the clamping plates 97 can move left and right, so that the filter frame 6 can be driven to move left and right, the vibration effect of the filter frame 6 is achieved, the residual sediment in the filter frame 6 is facilitated to be poured into the collecting tank 8, and the residual sediment in the filter frame 6 is automatically cleaned.
Meanwhile, when the filter frame 6 moves left and right, the square tube 72 and a group of rotating tubes 74 inside the square tube also move left and right, and a plurality of rotating tubes 74 slide left and right on the square rod 71 and a plurality of sliding blocks 75, and due to the action of the sliding blocks 75, the square tube 72 and the filter frame 6 can vibrate up and down when moving left and right, so that the sediment blocked on the filter plate of the filter frame 6 can be shaken off into the collecting tank 8, the sediment blocked on the filter plate can be effectively removed, and the subsequent filtering effect can be ensured.
Further, please refer to fig. 5 with emphasis, the top of the collecting tank 8 is provided with a plurality of elastic supporting mechanisms 3 for supporting the filtering frame 6, the elastic supporting mechanisms 3 comprise a moving tank 31 arranged on the top surface of the collecting tank 8, a sliding rod 33 is slidably connected in the moving tank 31, a supporting block 35 is fixed on the top end of the sliding rod 33, and a compression spring 34 is fixed between the supporting block 35 and the top surface of the collecting tank 8.
The protecting sleeve 32 is sleeved outside the pressure spring 34, and the protecting sleeve 32 is fixed on the top of the collecting tank 8.
By the elastic supporting mechanism 3, after the filter frame 6 is turned 180 degrees, the elastic supporting mechanism 3 can be utilized to play an elastic supporting effect on the filter frame 6, and meanwhile, the filter frame 6 can be assisted to vibrate.
Working principle: according to the filtering treatment device for the antimony-containing metal wastewater, the filtering frame 6 is used for filtering the antimony-containing metal wastewater, and the sediment left after filtering is accumulated on a filter plate at the bottom of the filtering frame 6; after the filtration is finished, the square rod 71 is driven by the first motor 70 to turn over 180 degrees, the square tube 72 and the filter frame 6 are simultaneously rotated 180 degrees, so that the filter frame 6 is turned over the collecting tank 8, and the sediment remained in the filter frame 6 can be poured into the collecting tank 8;
After the filter frame 6 is turned 180 degrees, the sliding block 75 is turned over to the upper side of the square rod 71 along with the square rod 71, the rotary pipe 74 is turned over to the upper side of the inside of the square rod 72 along with the square pipe 72, the rotary pipe 74 is positioned above the square rod 71, the rotary pipe 74 is in sliding contact with the surface of the square rod 71 (as shown in fig. 6), at the moment, the filter frame 6 is clamped between the two clamping plates 97, then the first motor 70 is closed, the second motor 93 is started, the eccentric wheel 94 is driven by the second motor 93 to rotate, the vibration frame 95, the connecting rod 96, the sliding shaft 92 and the clamping plates 97 can be driven to move left and right, so that the filter frame 6 can be driven to move left and right, the vibration effect of the filter frame 6 is realized, and the sediment remained in the filter frame 6 is facilitated to be poured into the collecting tank 8, so that the sediment remained in the filter frame 6 is cleaned automatically;
Meanwhile, when the filter frame 6 moves left and right, the square tube 72 and a group of rotating tubes 74 inside the square tube also move left and right, and a plurality of rotating tubes 74 slide left and right on the square rod 71 and a plurality of sliding blocks 75, and due to the action of the sliding blocks 75, the square tube 72 and the filter frame 6 can vibrate up and down when moving left and right, so that the sediment blocked on the filter plate of the filter frame 6 can be shaken off into the collecting tank 8, the sediment blocked on the filter plate can be effectively removed, and the subsequent filtering effect can be ensured.
The foregoing has shown and described the basic principles and main features of the present utility model and the advantages of the present utility model. It will be understood by those skilled in the art that the present utility model is not limited to the embodiments described above, and that the above embodiments and descriptions are merely illustrative of the principles of the present utility model, and various changes and modifications may be made without departing from the spirit and scope of the utility model, which is defined in the appended claims. The scope of the utility model is defined by the appended claims and equivalents thereof.
Claims (5)
1. The utility model provides a contain antimonial metal waste water filtration treatment device, includes bottom plate (1), its characterized in that: the top surface of the bottom plate (1) is fixedly provided with a filter tank (2) and a collecting tank (8), the filter tank (2) is positioned on the right side of the collecting tank (8), a filter frame (6) is arranged in the filter tank (2), and the upper surface of the bottom plate (1) is provided with a turnover mechanism (7) for driving the filter frame (6) to rotate;
The turnover mechanism (7) comprises a first motor (70) fixed on the upper surface of the bottom plate (1) and square tubes (72) fixed on the left side top surface of the filter frame (6), wherein the output end of the first motor (70) is fixedly provided with square rods (71), one ends of the square rods (71) far away from the first motor (70) are in sliding sleeve connection with the interiors of the square tubes (72), the bottom surfaces of the square rods (71) are fixedly provided with a group of sliding blocks (75) which are distributed at equal intervals, the inner walls of the square tubes (72) are fixedly provided with a group of positioning shafts (73) which are distributed at equal intervals, the exteriors of each positioning shaft (73) are rotatably sleeved with rotating tubes (74), and the rotating tubes (74) are positioned below the square rods (71);
The utility model discloses a filter frame, including filtering frame (6), including filtering frame (96), including fixing at the backup pad (90) of collecting vat (8) left surface and fixing at two link (91) of bottom plate (1) upper surface, and two link (91) are located the front and back both sides of collecting vat (8) respectively, the upper surface sliding connection of backup pad (90) has two connecting rods (96), every the one end that connecting rods (96) kept away from each other all is fixed with slide shaft (92), two slide shaft (92) keep away from the one end of connecting rod (96) and slide respectively and run through two link (91) and be fixed with splint (97), the surface width of filtering frame (6) is less than the distance between two splint (97), can block between two splint (97) when filtering frame (6) upset to collecting vat (8) top.
2. The antimony-containing metal wastewater filtering treatment device according to claim 1, wherein: the upper surface of bottom plate (1) is fixed with two support frames (4), every the top of support frame (4) all rotates and is connected with connecting block (5), and two connecting block (5) are fixed respectively cup joints in the both ends of square pole (71).
3. The antimony-containing metal wastewater filtering treatment device according to claim 1, wherein: the vibrating mechanism (9) further comprises a second motor (93) fixed on the upper surface of the supporting plate (90) and a vibrating frame (95) connected to the top surface of the supporting plate (90) in a sliding mode, an eccentric wheel (94) is arranged in the vibrating frame (95), the eccentric wheel (94) is fixedly installed at the output end of the second motor (93), and one ends, close to each other, of the two connecting rods (96) are respectively fixed on the side face of the vibrating frame (95).
4. The antimony-containing metal wastewater filtering treatment device according to claim 1, wherein: the top of collecting vat (8) is provided with a plurality of elastic support mechanism (3) that support filter frame (6), elastic support mechanism (3) are including seting up at the removal groove (31) of collecting vat (8) top surface, the inside sliding connection of removal groove (31) has slide bar (33), the top of slide bar (33) is fixed with supporting shoe (35), be fixed with pressure spring (34) between the top surface of supporting shoe (35) and collecting vat (8).
5. The antimony-containing metal wastewater filtering treatment device according to claim 4, wherein: the outside of pressure spring (34) is overlapped and is equipped with protective sleeve (32), and protective sleeve (32) are fixed at the top of collecting vat (8).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202422067030.6U CN221771734U (en) | 2024-08-26 | 2024-08-26 | A device for filtering and treating wastewater containing antimony metal |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202422067030.6U CN221771734U (en) | 2024-08-26 | 2024-08-26 | A device for filtering and treating wastewater containing antimony metal |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN221771734U true CN221771734U (en) | 2024-09-27 |
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ID=92835191
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202422067030.6U Active CN221771734U (en) | 2024-08-26 | 2024-08-26 | A device for filtering and treating wastewater containing antimony metal |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN221771734U (en) |
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2024
- 2024-08-26 CN CN202422067030.6U patent/CN221771734U/en active Active
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