Defluorination and arsenic removal integrated device
By designing the anti-contact, positioning, locking, and buffering mechanisms of the integrated fluoride and arsenic removal device, the problems of cumbersome filter box replacement and easy damage in traditional devices are solved, achieving convenient replacement and water flow protection, and improving device efficiency and filter box life.
Patent Information
- Application Number
- CN202520941386.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-14
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-05-14
AI Technical Summary
Traditional fluoride and arsenic removal devices require cumbersome disassembly when replacing filter boxes, leading to device downtime, reduced work efficiency, and filter boxes are prone to clogging and damage.
An integrated device for fluoride and arsenic removal was designed, employing a contact, positioning, locking, and buffering mechanism to facilitate the installation and disassembly of the filter box and buffer water flow, thus avoiding downtime.
It improves filter box replacement efficiency, extends filter box life, reduces downtime, enhances water flow buffer protection, and improves the operating efficiency of the device.
Smart Images

Figure CN223906568U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of arsenic and fluorine removal water treatment device, specifically to a fluorine and arsenic removal integrated device. BACKGROUND
[0002] In drinking water sources, excessive fluoride ions and arsenic ions are relatively common problems, long-term drinking of water with excessive fluoride content can cause dental fluorosis, skeletal fluorosis and other health problems; and excessive arsenic can cause damage to multiple organs of the human body, and even cause cancer. In some areas of China, especially in the central and western inland areas, the fluoride and arsenic content in groundwater is high, and it is of great practical significance to remove fluoride and arsenic when developing and utilizing groundwater, so a fluorine and arsenic removal integrated device is needed to filter water.
[0003] The current traditional fluorine and arsenic removal device still has some deficiencies, when treating water, the fluorine and arsenic in the water is generally filtered by the multi-stage fluorine and arsenic removal box inside the fluorine and arsenic removal device, over a long period of time, the filter box needs to be replaced due to blockage, so the staff needs to disassemble the filter box, the disassembly process is cumbersome, thereby reducing the efficiency of replacing the filter box, and at the same time, the device needs to be stopped during replacement, thereby reducing the working efficiency of the device, therefore, we provide a fluorine and arsenic removal integrated device. UTILITY MODEL CONTENT
[0004] Based on the deficiencies of the prior art mentioned in the above background technology, the utility model provides a fluorine and arsenic removal integrated device.
[0005] The utility model overcomes the above technical problems by adopting the following technical scheme, specifically:
[0006] A fluorine and arsenic removal integrated device, comprising: a treatment box, two sides of the inner wall of the treatment box are provided with abutting mechanisms, two abutting mechanisms are provided with positioning mechanisms, two sides of the treatment box are provided with locking mechanisms, and two locking mechanisms extend into the interior of the treatment box and are connected with two positioning mechanisms, a fluorine and arsenic removal multilayer filter box is placed between two abutting mechanisms, and a buffer mechanism is arranged in the interior of the treatment box.
[0007] As a further scheme of the utility model: the abutting mechanism comprises an L-shaped plate, a clamping groove, a spring telescopic rod and a triangular block, the L-shaped plate is connected to one side of the inner wall of the treatment box, a fluorine and arsenic removal multilayer filter box is placed at the bottom of the inner wall of the L-shaped plate, the clamping groove is opened at the bottom of the inner wall of the L-shaped plate, the spring telescopic rod is connected to the bottom of the inner wall of the clamping groove, and the triangular block is connected to the top end of the spring telescopic rod.
[0008] As a further scheme of the utility model: the positioning mechanism includes vertical rod, rotating plate, reset spring and threaded hole, the vertical rod is fixedly connected at the top of L-shaped plate, the rotating plate is rotatably connected at the outer surface of vertical rod, the reset spring is connected between the back of rotating plate and one side of processing box inner wall, the threaded hole is opened in the outer surface of vertical rod.
[0009] As a further scheme of the utility model: the locking mechanism includes threaded sleeve, threaded rod and handle, the threaded sleeve is fixedly connected at one side of processing box, the threaded rod is threadedly connected at the inner surface of threaded sleeve, and one end of threaded rod extends to the inside of processing box and is threadedly connected at the inside of threaded hole, the handle is connected at the other end of threaded rod.
[0010] As a further scheme of the utility model: the buffering mechanism includes U-shaped seat, leakage groove, two elastic telescopic rods and inclined plate, the U-shaped seat is connected at the inner surface of processing box, and the bottom of U-shaped seat is attached to the top of fluoride-arsenic removing multi-layer filter box, the leakage groove is opened at the bottom of U-shaped seat, two elastic telescopic rods are connected at one side of processing box inner wall, and the inclined plate is connected at one end of two elastic telescopic rods.
[0011] As a further scheme of the utility model: the buffering mechanism further includes two sliding grooves, two friction blocks, two second springs and two connecting pieces, two sliding grooves are respectively opened at the front and back inner walls of U-shaped seat, two friction blocks are slidably connected at the inner walls of two sliding grooves, two second springs are respectively connected at one side of two friction blocks, and one end of two second springs is respectively connected with one side of two sliding groove inner walls, two connecting pieces are respectively connected at one side of inclined plate, and one end of two connecting pieces is respectively connected with the adjacent side of two friction blocks.
[0012] As a further scheme of the utility model: the front of processing box is connected with a placing rack, and the inside of placing rack is placed with a push rod, and the bottom of processing box is connected with a base.
[0013] After adopting the above structure, compared with the prior art, the utility model has the following advantages:
[0014] 1. In the utility model, under the action of two abutting mechanisms, two positioning mechanisms and two locking mechanisms, not only can the fluoride-arsenic removing multi-layer filter box be conveniently installed and dismounted, but also can be replaced, and during the replacement of fluoride-arsenic removing multi-layer filter box, the device does not need to be stopped, thereby reducing the downtime of the device and greatly improving the working efficiency of the device.
[0015] 2. The utility model discloses a buffering mechanism's effect can be to the water flow that enters the inside processing box multiple buffering, thereby effectively reduce the damage that water flow is impacted to the fluoride arsenic multilayer filter box, can play good water flow buffering protection to fluoride arsenic multilayer filter box, and then prolong the life of fluoride arsenic multilayer filter box use. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is the whole structure schematic diagram of the utility model;
[0017] Figure 2 It is the processing box's section view schematic diagram;
[0018] Figure 3 It is the structure schematic diagram of the utility model resistance mechanism;
[0019] Figure 4 It is the structure schematic diagram of the utility model positioning mechanism and locking mechanism;
[0020] Figure 5 It is the structure schematic diagram of the utility model buffering mechanism.
[0021] In the drawing: 1, processing box;2, resistance mechanism;201, L-shaped board;202, card slot;203, spring telescopic rod;204, triangular block;3, positioning mechanism;301, vertical rod;302, rotating plate;303, reset spring;304, screw hole;4, locking mechanism;401, threaded sleeve;402, threaded rod;403, handle;5, buffering mechanism;501, U-shaped seat;502, leakage groove;503, elastic telescopic rod;504, inclined plate;505, sliding slot;506, friction block;507, second spring;508, connecting piece;6, fluoride arsenic multilayer filter box;7, rack;8, base. DETAILED DESCRIPTION
[0022] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model.
[0023] Embodiment 1
[0024] Please refer to Figures 1-5The utility model discloses an embodiment of a kind of fluoride and arsenic removal integrated device, comprising: processing box 1, the two sides of the inner wall of processing box 1 are provided with the abutment mechanism 2, two abutment mechanisms 2 are provided with positioning mechanism 3, the two sides of processing box 1 are provided with locking mechanism 4, and two locking mechanisms 4 are extended to the inside of processing box 1 and are connected with two positioning mechanisms 3, fluoride and arsenic removal multilayer filter box 6 is placed between two abutment mechanisms 2, buffering mechanism 5 is provided in the inside of processing box 1.
[0025] Specifically, after water flows into the inside of processing box 1, it will flow to buffering mechanism 5, and then flow to fluoride and arsenic removal multilayer filter box 6 after buffering the impact force of water by buffering mechanism 5, for multistage filtration to water, so that buffered water can reduce damage to fluoride and arsenic removal multilayer filter box 6, new fluoride and arsenic removal multilayer filter box 6 is placed between two abutment mechanisms 2, reverse rotation two locking mechanisms 4 to unlock two positioning mechanisms 3, then push new fluoride and arsenic removal multilayer filter box 6 to slide on two abutment mechanisms 2, so that new fluoride and arsenic removal multilayer filter box 6 is extruded two abutment mechanisms 2 to shrink, and also push old fluoride and arsenic removal multilayer filter box 6 to slide, so that old fluoride and arsenic removal multilayer filter box 6 is extruded two positioning mechanisms 3 to rotate, when new fluoride and arsenic removal multilayer filter box 6 moves to a certain distance, it will no longer extrude two abutment mechanisms 2, so that two abutment mechanisms 2 will reset to limit the front of new fluoride and arsenic removal multilayer filter box 6, finally old fluoride and arsenic removal multilayer filter box 6 is extracted from the back of processing box 1, at this time two positioning mechanisms 3 will reset to limit the back of new fluoride and arsenic removal multilayer filter box 6, forward rotation two locking mechanisms 4 to move and connect with two positioning mechanisms 3, the angle of two positioning mechanisms 3 is fixed, that is, new fluoride and arsenic removal multilayer filter box 6 installation and fixation can be completed.
[0026] Embodiment 2
[0027] Please refer to Figures 1-4The utility model discloses an embodiment of a kind of fluoride and arsenic removal integrated device, and resistance mechanism 2 includes L-shaped plate 201, clamping groove 202, spring telescopic rod 203 and triangular block 204, L-shaped plate 201 is connected in the inner wall of processing box 1 one side, and the bottom of L-shaped plate 201 inner wall is placed with fluoride and arsenic removal multilayer filter box 6, clamping groove 202 is opened in the bottom of L-shaped plate 201 inner wall, spring telescopic rod 203 is connected in the bottom of clamping groove 202 inner wall, triangular block 204 is connected at the top of spring telescopic rod 203, positioning mechanism 3 includes vertical rod 301, rotating plate 302, reset spring 303 and screw hole 304, vertical rod 301 is fixedly connected at the top of L-shaped plate 201, rotating plate 302 is rotatably connected at the outer surface of vertical rod 301, reset spring 303 is connected between the back of rotating plate 302 and the inner wall of processing box 1 one side, screw hole 304 is opened in the outer surface of vertical rod 301, locking mechanism 4 includes threaded sleeve 401, threaded rod 402 and handle 403, threaded sleeve 401 is fixedly connected in the one side of processing box 1, threaded rod 402 is threadedly connected in the inner surface of threaded sleeve 401, and one end of threaded rod 402 extends to the inside of processing box 1 and is threadedly connected in the inside of screw hole 304, handle 403 is connected at the other end of threaded rod 402.
[0028] Specifically, reverse rotation handle 403 drives threaded rod 402 to threadedly rotate in the inner surface of threaded sleeve 401, withdraws from the inside of screw hole 304, removes the fixing of the angle of rotating plate 302, places new fluoride and arsenic removal multilayer filter box 6 on the bottom of L-shaped plate 201 inner wall, pushes fluoride and arsenic removal multilayer filter box 6 to slide on the bottom of L-shaped plate 201 inner wall by push rod, so that new fluoride and arsenic removal multilayer filter box 6 will extrude triangular block 204 to move to the inside of clamping groove 202, and let spring telescopic rod 203 compress, at the same time, new fluoride and arsenic removal multilayer filter box 6 will push old fluoride and arsenic removal multilayer filter box 6 to slide on the bottom of L-shaped plate 201 inner wall, old fluoride and arsenic removal multilayer filter box 6 will extrude rotating plate 302 to rotate on the outer surface of vertical rod 301, and let reset spring 303 compress, when new fluoride and arsenic removal multilayer filter box 6 is located at the back of triangular block 204, spring telescopic rod 203 will reset triangular block 204 from the inner wall of clamping groove 202, that is, new fluoride and arsenic removal multilayer filter box 6 can be blocked, old fluoride and arsenic removal multilayer filter box 6 can be taken out from the back of processing box 1, that is, rotating plate 302 can not be extruded, so that reset spring 303 resets, drives rotating plate 302 to reverse rotation and abuts against the back of new fluoride and arsenic removal multilayer filter box 6, finally, forward rotation handle 403 drives threaded rod 402 to be threadedly connected with the inside of screw hole 304 again, the angle of rotating plate 302 is fixed, so that the replacement and fixed installation of fluoride and arsenic removal multilayer filter box 6 are completed, without shutdown operation, so that the working efficiency of the device is improved.
[0029] Embodiment 3
[0030] Please refer to Figures 1-5 The utility model discloses a kind of fluoride and arsenic removal integrated devices, buffer mechanism 5 includes U-shaped seat 501, leakage groove 502, two elastic telescopic rods 503 and inclined plate 504, U-shaped seat 501 is connected in the inner surface of processing box 1, and the bottom of U-shaped seat 501 is attached with the top of fluoride and arsenic removal multilayer filter box 6, leakage groove 502 is opened in the bottom of U-shaped seat 501, two elastic telescopic rods 503 are all connected in one side of processing box 1 inner wall, inclined plate 504 is connected in one end of two elastic telescopic rods 503, buffer mechanism 5 further include two sliding grooves 505, two friction blocks 506, two second springs 507 and two connecting pieces 508, two sliding grooves 505 are respectively opened in the inner wall front and inner wall back of U-shaped seat 501, two friction blocks 506 are all slidingly connected in the inner wall of two sliding grooves 505, two second springs 507 are respectively connected in one side of two friction blocks 506, and one end of two second springs 507 is respectively connected with one side of the inner wall of two sliding grooves 505, two connecting pieces 508 are all connected in one side of inclined plate 504, and one end of two connecting pieces 508 is respectively connected with the side of two friction blocks 506 adjacent, the front of processing box 1 is connected with placing rack 7, and the inside of placing rack 7 is placed with push rod, the bottom of processing box 1 is connected with base 8.
[0031] Specifically, water flows into the surface of U-shaped seat 501 and hits the surface of inclined plate 504, so that inclined plate 504 compresses two elastic telescopic rods 503 to compress, and the impact force of water is buffered for the first time, at the same time, inclined plate 504 drives two friction blocks 506 to slide in the inside of two sliding grooves 505 through two connecting pieces 508, so that two friction blocks 506 generate friction when sliding in the inside of two sliding grooves 505, and two second springs 507 are compressed, and the impact of water is buffered for the second time, finally, buffered water flows to fluoride and arsenic removal multilayer filter box 6 through leakage groove 502, that is, damage to fluoride and arsenic removal multilayer filter box 6 can be reduced, and the stability of the device during work can be improved by the arrangement of base 8.
[0032] The working principle of the utility model is: when using, the water needing to be purified is introduced into the inside of the processing box 1 through the water pump, so that the water flows into the surface of the U-shaped seat 501, then the water flow collides with the surface of the inclined plate 504, when the inclined plate 504 is forced, it will extrude two elastic expansion rods 503 to compress, the initial buffering of the impact force of water is carried out, at the same time, the inclined plate 504 drives two friction blocks 506 to slide in the inside of two sliding grooves 505 through two connecting pieces 508, so that the two friction blocks 506 generate friction when sliding in the inside of two sliding grooves 505, and extrude two second springs 507 to compress, so that the impact of water is buffered again, then the water is discharged through the leakage groove 502, the buffered water passes through the fluoride and arsenic removing multilayer filter box 6, the water is filtered through the arsenic and fluoride removing material in the inside of the fluoride and arsenic removing multilayer filter box 6, so that the purification of water can be realized, when the fluoride and arsenic removing multilayer filter box 6 needs to be replaced, the staff only needs to reversely rotate the handle 403, the handle 403 drives the threaded rod 402 to threadedly rotate on the inner surface of the threaded sleeve 401, so that one end of the threaded rod 402 is withdrawn from the inside of the threaded hole 304, the fixing of the angle of the rotating plate 302 is released, then the staff puts the new fluoride and arsenic removing multilayer filter box 6 into the bottom of the inside wall of the L-shaped plate 201 through the placing opening, then pushes the fluoride and arsenic removing multilayer filter box 6 to slide on the bottom of the inside wall of the L-shaped plate 201 through the push rod placed on the placing rack 7, when the back of the fluoride and arsenic removing multilayer filter box 6 contacts the triangular block 204, the triangular block 204 will be extruded to move to the inside of the clamping groove 202, and the spring expansion rod 203 is compressed, at the same time, the new fluoride and arsenic removing multilayer filter box 6 will push the fluoride and arsenic removing multilayer filter box 6 needing to be replaced to slide on the bottom of the inside wall of the L-shaped plate 201, so that the fluoride and arsenic removing multilayer filter box 6 needing to be replaced will extrude the rotating plate 302 to rotate on the outer surface of the vertical rod 301, and the reset spring 303 is compressed, when the front of the new fluoride and arsenic removing multilayer filter box 6 is located behind the back of the triangular block 204, the triangular block 204 will not be pressed at this time, so that the spring expansion rod 203 resets the triangular block 204 from the inside wall of the clamping groove 202, and the front of the new fluoride and arsenic removing multilayer filter box 6 is blocked, then the staff takes out the replaced fluoride and arsenic removing multilayer filter box 6 from the back of the processing box 1, at this time, the rotating plate 302 will not be extruded, so that the reset spring 303 resets, drives the rotating plate 302 to reversely rotate and abuts against the back of the new fluoride and arsenic removing multilayer filter box 6, finally, the handle 403 is forwardly rotated, drives the threaded rod 402 to be threadedly connected with the inside of the threaded hole 304 again, the angle of the rotating plate 302 is fixed, so that the replacement of the fluoride and arsenic removing multilayer filter box 6 can be completed.
[0033] It is obvious for those skilled in the art that the utility model is not limited to the details of the above exemplary embodiments, and the utility model can be realized in other specific forms without departing from the spirit or basic features of the utility model.
Claims
1. A fluoride and arsenic integrated removal device, characterized by, Include: The processing box (1), the two sides of the inner wall of the processing box (1) are provided with abutting mechanisms (2), the two abutting mechanisms (2) are provided with positioning mechanisms (3), the two sides of the processing box (1) are provided with locking mechanisms (4), and the two locking mechanisms (4) extend to the inside of the processing box (1) and are connected with the two positioning mechanisms (3), the two abutting mechanisms (2) are placed with fluoride arsenic multilayer filter box (6), the inside of the processing box (1) is provided with a buffering mechanism (5).
2. The fluoride and arsenic removal integrated device according to claim 1, characterized in that, The abutting mechanism (2) comprises an L-shaped plate (201), a clamping groove (202), a spring telescopic rod (203) and a triangular block (204), the L-shaped plate (201) is connected to one side of the inner wall of the processing box (1), and the bottom of the inner wall of the L-shaped plate (201) is placed with the fluoride arsenic multilayer filter box (6), the clamping groove (202) is opened in the bottom of the inner wall of the L-shaped plate (201), the spring telescopic rod (203) is connected to the bottom of the inner wall of the clamping groove (202), and the triangular block (204) is connected to the top end of the spring telescopic rod (203).
3. The fluoride and arsenic removal integrated device according to claim 2, characterized in that, The positioning mechanism (3) comprises a vertical rod (301), a rotating plate (302), a reset spring (303) and a threaded hole (304), the vertical rod (301) is fixedly connected to the top of the L-shaped plate (201), the rotating plate (302) is rotatably connected to the outer surface of the vertical rod (301), the reset spring (303) is connected between the back of the rotating plate (302) and one side of the inner wall of the processing box (1), and the threaded hole (304) is opened in the outer surface of the vertical rod (301).
4. The fluoride and arsenic removal integrated device according to claim 1, characterized in that, The locking mechanism (4) comprises a threaded sleeve (401), a threaded rod (402) and a handle (403), the threaded sleeve (401) is fixedly connected to one side of the processing box (1), the threaded rod (402) is threadedly connected to the inner surface of the threaded sleeve (401), one end of the threaded rod (402) extends to the inside of the processing box (1) and is threadedly connected in the inside of the threaded hole (304), and the handle (403) is connected to the other end of the threaded rod (402).
5. The fluoride and arsenic removal integrated device according to claim 1, characterized in that, The buffering mechanism (5) comprises a U-shaped seat (501), a leakage groove (502), two elastic telescopic rods (503) and an inclined plate (504), the U-shaped seat (501) is connected to the inner surface of the processing box (1), and the bottom of the U-shaped seat (501) is attached to the top of the fluoride arsenic multilayer filter box (6), the leakage groove (502) is opened in the bottom of the U-shaped seat (501), the two elastic telescopic rods (503) are connected to one side of the inner wall of the processing box (1), and the inclined plate (504) is connected to one end of the two elastic telescopic rods (503).
6. The fluoride and arsenic removal integrated device according to claim 5, characterized in that, The buffering mechanism (5) further comprises two sliding grooves (505), two friction blocks (506), two second springs (507) and two connecting pieces (508), the two sliding grooves (505) are respectively opened in the front inner wall and the back inner wall of the U-shaped seat (501), and the two friction blocks (506) are slidably connected to the inner walls of the two sliding grooves (505).
7. The fluoride and arsenic removal integrated device according to claim 6, characterized in that, Two second springs (507) are connected at one side of two friction blocks (506) respectively, and one end of two second springs (507) is connected with one side of inner wall of two sliding grooves (505) respectively, two connecting pieces (508) are connected at one side of the inclined plate (504), and one end of two connecting pieces (508) is connected with the adjacent side of two friction blocks (506) respectively.
8. The fluoride and arsenic removal integrated device according to claim 1, characterized in that, The front of the processing box (1) is connected with a rack (7), and a push rod is placed in the rack (7). The bottom of the processing box (1) is connected with a base (8).