Resin magnetizing equipment for high-speed water treatment stable suspension reaction layer

By using a cylinder to drive the sliding of multiple magnetic rod core frames, uniform magnetization of the magnetic ion exchange resin is achieved, solving the problem of uneven magnetic field distribution, improving water treatment efficiency and reducing costs.

CN223857955UActive Publication Date: 2026-01-30CHINA WATER INVESTMENT CO LTD +4
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Patent Information

Application Number
CN202423125617.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2026-01-30
Estimated Expiration
2034-12-18

AI Technical Summary

Technical Problem

The existing magnetization equipment has an uneven magnetic field distribution, resulting in large differences in magnetic properties between individual magnetic ion exchange resins, which affects water treatment efficiency.

Method used

The design employs a cylinder to drive the sliding of multiple magnetic rod core frames. Multiple small currents are used to pull the magnetic rods evenly arranged to magnetize the magnetic ion exchange resin, generating a more uniform magnetic field.

Benefits of technology

It improves the magnetic uniformity between individual magnetic ion exchange resins, reduces the resin scrap rate, improves water treatment efficiency, and reduces magnetization costs.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to resin magnetizing equipment for a high-speed water treatment stable suspension reaction layer, and discloses equipment which can magnetize magnetic ion exchange resin in a box body by driving a magnetic rod core frame and a plurality of magnetic rod cores connected with the magnetic rod core frame to slide through an air cylinder. The current intensity of a single drawing magnetic rod is small, the magnetic field change tends to be stable, a plurality of small-current drawing magnetic rods are uniformly arranged to directly magnetize the magnetic ion exchange resin, the generated magnetic field is more uniform, and the magnetic uniformity among magnetic ion exchange resin individuals is effectively improved. The device is characterized in that the device comprises an outer frame, a box body and a magnetizing assembly, the outer frame is arranged on the box body, the magnetizing assembly is arranged on the outer frame, the magnetizing assembly comprises a pull-out magnetic bar and a magnetic bar core fixing grid plate capable of sliding up and down, a shell of the pull-out magnetic bar is fixedly arranged on the outer frame, and a part of the shell is located in the box body; and a magnetic rod core of the drawing magnetic rod is connected with the magnetic rod core fixing grid plate.
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Description

TECHNICAL FIELD

[0001] The resin magnetizing equipment for the stable suspended reaction layer of high-speed water treatment relates to an equipment for magnetizing magnetic ion exchange resin, and belongs to the technical field of resin magnetizing. BACKGROUND

[0002] In the process of high-speed water treatment by using the suspended reaction layer, the magnetic ion exchange resin plays an important role in reducing the contact time of water and resin and improving the water treatment efficiency, specifically: raw water enters the bottom of the high-speed reactor from the water inlet pipe through the flow guide pipe, and the water and resin in the reactor are stirred at low speed by the stirrer, and due to the unique agglomeration ability of the magnetic resin, the resin can be quickly settled and separated, and after the balance of the magnetic agglomeration force of the resin and the stirring effect, a stable suspended reaction layer is formed to make the water and resin fully contact and react to complete ion exchange. The magnetic ion resin containing permanent magnetic material loses magnetism after initial preparation due to the demagnetization of the sintered permanent magnetic material affected by high temperature, so the initial magnetic ion exchange resin does not have magnetism, and therefore needs to be magnetized to meet the requirements of high-speed water treatment.

[0003] The magnetizing equipment disclosed by Publication No. CN221352490U comprises a base, a magnetizing support and a protection assembly. The magnetizing support is connected to the top of the base by bolts. The protection assembly is arranged in the magnetizing support. A cleaning assembly is arranged in the base. The protection assembly comprises side plates. The side plates are connected to the top of the magnetizing support by sleeving. The bottom of each side plate is provided with a sliding plate. A slide is formed in the surface of the sliding plate. A sliding block is slidably connected to the slide. The side plate is connected to the sliding block by bolts. An air cushion is connected to one side of the slide by gluing. A return spring is installed on the other side of the slide by a spring seat. The magnetizing rack for neodymium-iron-boron magnets disclosed by Publication No. CN221352489U comprises a base plate. A magnetizer is fixedly installed in the middle of the base plate. A placing box is arranged on the base plate. A clamping assembly is arranged on the placing box to clamp and fix the magnets. The clamping assembly comprises clamping plates arranged in the placing box. Two movable rods are symmetrically and slidably connected to the placing box. The magnetizing equipment disclosed by Publication No. CN221327466U comprises a bearing table, supporting legs, a magnetizing rack and a magnetizing cavity. The four end corners of the bottom of the bearing table are fixedly provided with supporting legs. The top of the bearing table is fixedly provided with the magnetizing rack. The inner side of the magnetizing rack is fixedly provided with the magnetizing cavity. The top of the magnetizing rack is assembled with a magnetizing mechanism. The magnetizing mechanism comprises a magnetizing carrier, a top disc, a lower magnetizing plate and an upper magnetizing plate. The top of the magnetizing carrier is fixedly provided with the lower magnetizing plate. The top of the lower magnetizing plate is assembled with the top disc. The bottom of the top disc is fixedly provided with the upper magnetizing plate. The magnetizing equipment disclosed by Publication No. CN221262051U comprises a base, a magnetizing assembly, a pressing plate assembly, a tray, a conveying assembly and a driving member. The magnetizing assembly is arranged on the base. The magnetizing assembly comprises upper and lower magnetizing coils which are arranged at intervals in the vertical direction. The pressing plate assembly comprises upper and lower pressing plates. The upper pressing plate is fixedly arranged below the upper magnetizing coil. The lower pressing plate is movably arranged between the upper pressing plate and the lower magnetizing coil. A magnetizing space is formed between the upper and lower pressing plates. The tray is used for placing a magnetizing object. The conveying assembly is arranged on the base and penetrates the magnetizing space. The conveying assembly is used for conveying the tray. The driving member can drive the lower pressing plate to move towards the upper pressing plate so that the lower and upper pressing plates jointly clamp and hold the tray in the magnetizing space. The above-mentioned magnetizing equipment generates a magnetic field by energizing a single magnetic source to magnetize. The magnetic source is single. The magnetic field intensity in the region close to the magnetic source in the container is greater than that in the region far from the magnetic source. The magnetic field distribution is uneven. In addition, for safety considerations, there is generally an isolation layer between the magnetic source and the container. The reflection of the isolation layer further increases the unevenness of the magnetic field. The magnetic resin in the form of spherical beads has a small volume, a large number, and a scattered distribution. The magnetic differences between the individual magnetic ion exchange resins after batch magnetization by the above-mentioned magnetizing machine are large, which affects the magnetic agglomeration force and reduces the water treatment efficiency. Utility model content

[0004] In order to improve the above situation, the utility model discloses a resin magnetization equipment of high -speed water treatment stable suspended reaction layer provides a kind of equipment that can be driven by cylinder and the plurality of magnetic bar core sliding of and its connection to magnetic bar core frame, to the equipment of magnetization of magnetic ion exchange resin in box body. The current intensity of single pull magnetic bar is small, and magnetic field variation tends to be stable, and multiple small current pull magnetic bar is directly magnetized to magnetic ion exchange resin, and the generated magnetic field is more uniform, effectively improves the magnetic uniformity between individual magnetic ion exchange resin.

[0005] The utility model discloses a resin magnetization equipment of high -speed water treatment stable suspended reaction layer is realized as follows: the utility model discloses a resin magnetization equipment of high -speed water treatment stable suspended reaction layer includes outer frame, box body and magnetization component,

[0006] It is characterized in that the outer frame is arranged on the box body, the magnetization component is arranged on the outer frame, the magnetization component includes a pull magnetic bar and a magnetic bar core fixed grid plate capable of sliding up and down, the shell of the pull magnetic bar is fixed on the outer frame, and part is located in the box body, the magnetic bar core of the pull magnetic bar is connected with the magnetic bar core fixed grid plate, the magnetic bar core fixed grid plate drives the magnetic bar core of the pull magnetic bar to move up and down, when the magnetic bar core falls to the bottom, a magnetic field is generated around the shell of the pull magnetic bar in the box body, and the ion exchange resin in the box body is magnetized,

[0007] Preferably, the pull magnetic bar has multiple, and the multiple pull magnetic bars are arranged in matrix on the outer frame,

[0008] The box body includes a feeding port and a discharge flange,

[0009] The box body is in the shape of a rectangular parallelepiped, and the top end is in the shape of an open structure,

[0010] Preferably, the top end frame of the box body is in a widened structure,

[0011] The feeding port is fixed on the side surface of the top end of the box body, the height of the feeding port gradually decreases from one end to the other end intersecting with the box body, the top of the feeding port is flush with the top of the box body, and the feeding port is communicated with the box body,

[0012] The discharge flange is arranged on the bottom surface of the box body and is communicated with the box body,

[0013] The outer frame is composed of an upper grid plate assembly, a middle grid plate assembly, a lower grid plate assembly, an upper connecting column, a lower connecting column and a stand column,

[0014] The bottom end fixing plate of the lower connecting column is fixed on the top end frame of the box body,

[0015] The upper grid plate assembly is in a rectangular frame structure and has a plurality of separated grids, each of which is composed of a flat and right-angle frame, the frame width is uniform, the edges of each grid are parallel to the frame, and all the grids are arranged in a regular grid pattern,

[0016] The upper grid plate assembly is in a rectangular frame structure and has a plurality of separated grids, each of which is composed of a flat and right-angle frame, the frame width is uniform, the edges of each grid are parallel to the frame, and all the grids are arranged in a regular grid pattern,

[0017] The upper grid plate assembly is in a rectangular frame structure and has a plurality of separated grids, each of which is composed of a flat and right-angle frame, the frame width is uniform, the edges of each grid are parallel to the frame, and all the grids are arranged in a regular grid pattern,

[0018] The upper grid plate assembly is in a rectangular frame structure and has a plurality of separated grids, each of which is composed of a flat and right-angle frame, the frame width is uniform, the edges of each grid are parallel to the frame, and all the grids are arranged in a regular grid pattern,

[0019] The upper grid plate assembly is in a rectangular frame structure and has a plurality of separated grids, each of which is composed of a flat and right-angle frame, the frame width is uniform, the edges of each grid are parallel to the frame, and all the grids are arranged in a regular grid pattern,

[0020] The upper grid plate assembly is in a rectangular frame structure and has a plurality of separated grids, each of which is composed of a flat and right-angle frame, the frame width is uniform, the edges of each grid are parallel to the frame, and all the grids are arranged in a regular grid pattern,

[0021] The upper grid plate assembly is in a rectangular frame structure and has a plurality of separated grids, each of which is composed of a flat and right-angle frame, the frame width is uniform, the edges of each grid are parallel to the frame, and all the grids are arranged in a regular grid pattern,

[0022] The upper grid plate assembly is in a rectangular frame structure and has a plurality of separated grids, each of which is composed of a flat and right-angle frame, the frame width is uniform, the edges of each grid are parallel to the frame, and all the grids are arranged in a regular grid pattern,

[0023] The upper grid plate assembly is in a rectangular frame structure and has a plurality of separated grids, each of which is composed of a flat and right-angle frame, the frame width is uniform, the edges of each grid are parallel to the frame, and all the grids are arranged in a regular grid pattern,

[0024] The upper grid plate assembly is in a rectangular frame structure and has a plurality of separated grids, each of which is composed of a flat and right-angle frame, the frame width is uniform, the edges of each grid are parallel to the frame, and all the grids are arranged in a regular grid pattern,

[0025] The upper grid plate assembly is in a rectangular frame structure and has a plurality of separated grids, each of which is composed of a flat and right-angle frame, the frame width is uniform, the edges of each grid are parallel to the frame, and all the grids are arranged in a regular grid pattern,

[0026] The upper grid plate assembly is in a rectangular frame structure and has a plurality of separated grids, each of which is composed of a flat and right-angle frame, the frame width is uniform, the edges of each grid are parallel to the frame, and all the grids are arranged in a regular grid pattern,

[0027] The upper grid plate assembly is in a rectangular frame structure and has a plurality of separated grids, each of which is composed of a flat and right-angle frame, the frame width is uniform, the edges of each grid are parallel to the frame, and all the grids are arranged in a regular grid pattern,

[0028] The upper grid plate assembly is in a rectangular frame structure and has a plurality of separated grids, each of which is composed of a flat and right-angle frame, the frame width is uniform, the edges of each grid are parallel to the frame, and all the grids are arranged in a regular grid pattern,

[0029] The upper grid plate assembly is in a rectangular frame structure and has a plurality of separated grids, each of which is composed of a flat and right-angle frame, the frame width is uniform, the edges of each grid are parallel to the frame, and all the grids are arranged in a regular grid pattern,

[0030] The upper grid plate assembly is in a rectangular frame structure and has a plurality of separated grids, each of which is composed of a flat and right-angle frame, the frame width is uniform, the edges of each grid are parallel to the frame, and all the grids are arranged in a regular grid pattern,

[0031] The cylinder barrel is fixed on the placement plate on the top surface of the upper grid plate assembly, and the piston rod passes through the hole in the placement plate,

[0032] A connecting plate is fixed on the piston rod, and the piston rod and the connecting plate are fixedly connected at the middle of the top surface,

[0033] The bottom surface of the connecting plate is fixed on the magnetic rod core frame,

[0034] Preferably, the magnetic rod core frame is a rectangular frame structure, has a plurality of separated grids, each grid is composed of a flat and right-angled frame, the frame width is uniform, the edges of each grid are parallel to the frame, all the grids are arranged in a neat manner to form a regular grid layout, the length of the magnetic rod core frame is less than the length of the upper grid plate assembly, and the number and distribution of the grids in the magnetic rod core frame correspond to the upper grid plate assembly,

[0035] A magnetic rod fixing plate is fixed on the middle grid plate assembly, and the two ends of the magnetic rod fixing plate are fixed on the frame of the middle grid plate assembly,

[0036] Preferably, the magnetic rod fixing plate is in a long strip structure, a plurality of the magnetic rod fixing plates are arranged equidistantly along the width direction of the middle grid plate assembly, the number of the magnetic rod fixing plates is the same as the number of columns of the middle grid plate assembly in the width direction, and each magnetic rod fixing plate has a plurality of holes corresponding to the grids of the middle grid plate assembly,

[0037] A magnetic rod core fixing grid plate is fixed on the magnetic rod core frame,

[0038] Preferably, the magnetic rod core fixing grid plate is in a long strip structure, and a plurality of the magnetic rod core fixing grid plates are arranged equidistantly along the width direction of the magnetic rod core frame, the number of the magnetic rod core fixing grid plates is the same as the number of columns of the grids of the magnetic rod core frame in the width direction, and each magnetic rod core fixing grid plate corresponds to one of the columns of the grids of the magnetic rod core frame,

[0039] A magnetic rod fixing plate is fixed on the bottom surface of the lower grid plate assembly, and the structure of the magnetic rod fixing plate is the same as that of the magnetic rod fixing plate on the top surface of the middle grid plate assembly and corresponds to the magnetic rod fixing plate on the top surface of the middle grid plate assembly,

[0040] The bottom end of the pull-out magnetic rod is fixed on the magnetic rod fixing plate on the lower grid plate assembly, and the side surface of the pull-out magnetic rod is fixedly connected to the side surface of the hole in the magnetic rod fixing plate on the middle grid plate assembly,

[0041] Preferably, a plurality of the pull-out magnetic rods correspond to the holes in the magnetic rod fixing plate,

[0042] The magnetic rod core of the pull-out magnetic rod is arranged in the pull-out magnetic rod, and the top end of the magnetic rod core is fixedly connected to the magnetic rod core fixing grid plate through the screw nut and the magnetic rod core frame,

[0043] The intermediate grid plate assembly cooperates with the lower grid plate assembly to limit the pull magnetic rod shell,

[0044] The utility model also relates to a resin magnetization process of high -speed water treatment stable suspension reaction layer, its characterized in that, utilize a resin magnetization equipment of high -speed water treatment stable suspension reaction layer to carry out magnetization to magnetic ion exchange resin, specifically includes the following steps:

[0045] (1) start the air cylinder, and the air cylinder piston rod pushes the magnetic rod core frame to fall, and the magnetic rod core frame drives the magnetic rod core fixed grid plate and the magnetic rod core to fall, so that the magnetic rod core falls to the bottom, and the magnetic field is generated around the magnetic rod shell in the box, and the resin that has not been magnetized is added from the charging port;

[0046] (2) the magnetic ion exchange resin is in the uniform magnetic field, and waits for a period of time magnetization;

[0047] (3) after the magnetic ion exchange resin has the magnetism, the air cylinder moves and takes the magnetic rod core whole to the top;

[0048] (4) open the bottom discharge flange and discharge the resin that has been magnetized;

[0049] (5) the box is washed clean with water, and the bottom discharge flange is closed;

[0050] (6) the air cylinder moves and puts down the magnetic rod core to the bottom, and waits for the next resin magnetization. Beneficial effects

[0051] I. The current intensity of single pull magnetic rod is small, the magnetic field changes tend to be stable, and multiple small current pull magnetic rods are uniformly arranged to directly magnetize the magnetic ion exchange resin, the generated magnetic field is more uniform, effectively improves the magnetic uniformity between the individual magnetic ion exchange resin, and reduces the resin scrap rate.

[0052] II. The magnetic field of multiple magnetic sources is mutually enhanced, which can effectively improve the magnetization efficiency and reduce the magnetization cost.

[0053] III. The operation process is simple, the equipment is simple, and the failure probability is reduced. BRIEF DESCRIPTION OF DRAWINGS

[0054] Figure 1 It is the three -dimensional structure diagram of the resin magnetization equipment of high -speed water treatment stable suspension reaction layer of the utility model;

[0055] Figure 2 It is the structure schematic view of the resin magnetization equipment of high -speed water treatment stable suspension reaction layer of the utility model;

[0056] Figure 3 It is the three -dimensional structure diagram of the outer frame of the resin magnetization equipment of high -speed water treatment stable suspension reaction layer of the utility model;

[0057] Figure 4 It is a stereogram of the magnetic assembly of the resin magnetizing equipment for the stable suspended reaction layer of the high-speed water treatment of the utility model,

[0058] Figure 5 It is a stereogram of the magnetic assembly of the resin magnetizing equipment for the stable suspended reaction layer of the high-speed water treatment of the utility model,

[0059] DRAWINGS

[0060] Wherein: air cylinder (1), upper grid plate assembly (2), magnetic rod core frame (3), pull magnetic rod (4), feeding port (5), box (6), discharge flange (7), upper connecting column (8), middle grid plate assembly (9), lower connecting column (10), stand column (11), lower grid plate assembly (12), magnetic rod core fixed grid plate (13), cleaning device (14), platform assembly (15), magnetizing device (16). DETAILED DESCRIPTION Example 1

[0061] The resin magnetizing equipment for the stable suspended reaction layer of the high-speed water treatment of the utility model comprises an outer frame, a box (6) and a magnetizing assembly,

[0062] Characterized in that the outer frame is arranged on the box (6), the magnetizing assembly is arranged on the outer frame, the magnetizing assembly comprises a pull magnetic rod (4) and a magnetic rod core fixed grid plate (13) capable of sliding up and down, the shell of the pull magnetic rod (4) is fixed on the outer frame and partially located in the box (6), the magnetic rod core of the pull magnetic rod (4) is connected with the magnetic rod core fixed grid plate (13), the magnetic rod core fixed grid plate (13) drives the magnetic rod core of the pull magnetic rod (4) to move up and down, when the magnetic rod core falls to the bottom, a magnetic field is generated around the shell of the pull magnetic rod (4) in the box (6), and ion exchange resin in the box (6) is magnetized,

[0063] Preferably, the pull magnetic rod (4) is provided with a plurality of pull magnetic rods (4) arranged in a matrix on the outer frame,

[0064] The box (6) comprises a feeding port (5) and a discharge flange (7),

[0065] The box (6) is in the shape of a cuboid, and the top end is in the shape of an open structure,

[0066] Preferably, the top end frame of the box (6) is in a widened structure,

[0067] The feeding port (5) is fixed on the top side of the box (6), the height of the feeding port (5) gradually decreases from one end to the other end of the box (6), the top of the feeding port (5) is flush with the top of the box (6), and the feeding port (5) is communicated with the box (6),

[0068] The discharge flange (7) is arranged on the bottom surface of the box (6) and is communicated with the box (6),

[0069] The outer frame is composed of an upper grid plate assembly (2), a middle grid plate assembly (9), a lower grid plate assembly (12), an upper connecting column (8), a lower connecting column (10), and a stand column (11),

[0070] The bottom end of the lower connecting column (10) is fixed on the top frame of the box (6),

[0071] The upper grid plate assembly (2) has a rectangular frame structure and a plurality of separated grids, each grid is composed of a flat and right-angle frame, the frame width is uniform, the edges of each grid are parallel to the frame, and all the grids are arranged in a regular grid pattern,

[0072] A placement plate is fixed on the top surface of the upper grid plate assembly (2), the placement plate has a rectangular parallelepiped structure and a circular hole,

[0073] Support plates are fixed on the top surface and the bottom surface of the upper grid plate assembly (2),

[0074] The middle grid plate assembly (9) has the same structure as the upper grid plate assembly (2),

[0075] Support plates are fixed on the top surface and the bottom surface of the middle grid plate assembly (9),

[0076] The lower grid plate assembly (12) has the same structure as the upper grid plate assembly (2),

[0077] Preferably, the lower grid plate assembly (12) is located in the box (6) and is detachably connected to the inner wall of the box (6),

[0078] A fixed plate is fixed on the top end of the upper connecting column (8),

[0079] The top end fixed plate of the upper connecting column (8) is fixed on the support plate on the bottom surface of the upper grid plate assembly (2), and the bottom end fixed plate of the upper connecting column (8) is fixed on the support plate on the top surface of the middle grid plate assembly (9),

[0080] The upper connecting column (8) has two groups, a plurality of upper connecting columns (8) in each group are arranged equidistantly along the direction of the support plate, and each group of upper connecting columns (8) corresponds to a support plate,

[0081] The lower connecting column (10) is fixed with a fixed plate at both ends,

[0082] The top end fixed plate of the lower connecting column (10) is fixed on the support plate on the bottom surface of the middle grid plate assembly (9), and the lower connecting column (10) corresponds to the upper connecting column (8),

[0083] The column (11) is fixed with a support plate at both ends,

[0084] The top end support plate of the column (11) is fixed on the bottom surface of the middle grid plate assembly (9), and the bottom end support plate of the column (11) is fixed on the top surface of the lower grid plate assembly (12),

[0085] Preferably, the column (11) is provided with not less than four, and is uniformly distributed on the top surface of the lower grid plate assembly (12), and is placed on the inner grid frame of the lower grid plate assembly (12),

[0086] The magnetizing assembly is composed of a cylinder (1), a magnetic rod core frame (3), a magnetic rod core fixed grid plate (13) and a pull-out magnetic rod (4),

[0087] The cylinder barrel of the cylinder (1) is fixed on the placement plate on the top surface of the upper grid plate assembly (2), and the piston rod passes through the hole in the placement plate,

[0088] The connecting plate is fixed on the piston rod of the cylinder (1), and the piston rod of the cylinder (1) and the connecting plate are fixedly connected at the top surface,

[0089] The bottom surface of the connecting plate is fixed on the magnetic rod core frame (3),

[0090] Preferably, the magnetic rod core frame (3) is a rectangular frame structure, has a plurality of separated grids, each grid is composed of a flat and right-angle frame, the frame width is uniform, the edges of each grid are parallel to the frame, all the grids are arranged in a neat manner to form a regular grid layout, the length of the magnetic rod core frame (3) is less than the length of the upper grid plate assembly (2), and the number and distribution of the grids in the magnetic rod core frame (3) correspond to the upper grid plate assembly (2),

[0091] The magnetic rod fixing plate is fixed on the middle grid plate assembly (9),

[0092] Preferably, the magnetic rod fixing plate is in a long strip structure, a plurality of the magnetic rod fixing plates are equidistantly arranged along the width direction of the middle grid plate assembly (9), the number of the magnetic rod fixing plates is the same as the number of columns of the middle grid plate assembly (9) in the direction, and each magnetic rod fixing plate has a plurality of holes corresponding to the grids of the middle grid plate assembly (9),

[0093] The magnetic rod core fixing grid plate (13) is fixedly placed on the magnetic rod core frame (3).

[0094] Preferably, the magnetic rod core fixing grid plate (13) has a long strip structure, and there are multiple magnetic rod core fixing grid plates (13). The multiple magnetic rod core fixing grid plates (13) are arranged at equal intervals along the width direction of the magnetic rod core frame (3), and their number is the same as the number of grid columns of the magnetic rod core frame (3) in that direction, and they correspond one-to-one.

[0095] A magnetic rod fixing plate is fixedly placed on the bottom surface of the lower grid plate assembly (12), and its structure is the same as that of the magnetic rod fixing plate on the top surface of the middle grid plate assembly (9) and they correspond one-to-one.

[0096] The bottom end of the pull-out magnetic rod (4) is fixedly placed on the magnetic rod fixing plate on the lower grid plate assembly (12), and the side of the pull-out magnetic rod (4) is fixedly connected to the side of the inner hole of the magnetic rod fixing plate on the middle grid plate assembly (9).

[0097] Preferably, there are multiple pull-out magnetic rods (4), and each of the multiple pull-out magnetic rods (4) corresponds one-to-one with the holes on the magnetic rod fixing plate.

[0098] The magnetic core of the pull-out magnetic rod (4) is placed inside the pull-out magnetic rod (4), and the top of the magnetic core passes through the magnetic core frame (3) and is fixedly connected by a nut and the magnetic core fixing grid plate (13).

[0099] The magnetizing device (16) is fixedly placed on the platform assembly (15), and the cleaning device (14) is fixedly placed on the platform assembly (15). The resin to be magnetized is cleaned by the cleaning device (14) and then enters the magnetizing device (16) for magnetization treatment.

[0100] This utility model also relates to a resin magnetization process for a high-speed water treatment stable suspension reaction layer, characterized in that a resin magnetization device for a high-speed water treatment stable suspension reaction layer is used to magnetize the magnetic ion exchange resin, specifically including the following steps:

[0101] (1) Start cylinder (1), the piston rod of cylinder (1) pushes the magnetic rod core frame (3) down, the magnetic rod core frame (3) drives the magnetic rod core fixing grid plate (13) and the magnetic rod core to fall down, so that the magnetic rod core falls to the bottom, and a magnetic field is generated around the magnetic rod shell inside the box (6), and unmagnetized resin is added from the feeding port (5).

[0102] (2) The magnetic ion exchange resin is placed in a uniform magnetic field and magnetized for a period of time;

[0103] (3) After the magnetic ion exchange resin becomes magnetic, the cylinder (1) moves to lift the magnetic rod core upward as a whole.

[0104] (4) Open the bottom discharge flange (7) to discharge the magnetized resin;

[0105] (5) Rinse the box (6) with water, and close the bottom discharge flange (7);

[0106] (6) The cylinder (1) moves the magnetic rod core to the bottom, waiting for the next resin magnetization.

[0107] The intermediate grid plate assembly (9) cooperates with the lower grid plate assembly (12) to limit the design of the pull-out magnetic rod (4) shell, which can provide stable support structure for the pull-out magnetic rod (4) shell, ensure that the magnetic rod shell does not deviate during the sliding process on the magnetic rod core due to position movement or vibration, and facilitate installation and disassembly of the pull-out magnetic rod (4), and facilitate maintenance;

[0108] The feeding port (5) is fixed on the top side of the box (6), the height of the feeding port (5) gradually decreases from one end to the other end of the box (6), the top of the feeding port (5) is flush with the top of the box (6), and the feeding port (5) and the box (6) are communicated, which can make the resin more smoothly into the box (6), reduce the accumulation and residue of the resin at the feeding port (5), simplify the material adding process, reduce the complexity in the operation process, and help the uniform dispersion of the resin in the box (6);

[0109] The pull-out magnetic rod (4) is provided with a plurality of and one-to-one corresponding designs in the grid of the lower grid plate assembly (12), so that the magnetic rods are uniformly distributed in the box (6), the magnetic fields between the multiple magnetic sources are mutually enhanced, the magnetization efficiency is improved, the magnetic field distribution in the entire box (6) is uniform, the magnetic consistency of the magnetic ion exchange resin is improved, the energy consumption is reduced, and the resin is discarded or the suspended reaction effect is poor due to uneven magnetization;

[0110] The cylinder (1) drives multiple magnetic rod cores to slide through the magnetic rod core frame (3) and the magnetic rod core fixed grid plate (13), which can realize synchronous upward movement of multiple magnetic rod cores, uniform magnetization of the resin in the box (6), improve the magnetization efficiency, and reduce the mechanical transmission link, reduce the probability of failure, and reduce the energy consumption;

[0111] The discharge flange (7) is arranged at the bottom of the box (6), which can make the resin flow out of the box (6) more concentrated under the action of gravity, improve the flowability of the resin, reduce the accumulation and residual amount of the resin in the box (6), and reduce the horizontal space occupation of the equipment, improve the space utilization of the equipment;

[0112] The magnetic rod core frame (3) and the plurality of magnetic rod cores connected therewith can be driven by the air cylinder (1) to slide upward, thereby magnetizing the resin in the box (6).

[0113] It should be noted that, unless otherwise explicitly specified and limited, the terms "placed", "connected", "linked" should be understood broadly, for example, it can be a fixed connection mode such as folding edge connection, rivet connection, pin connection, adhesive connection and welding connection, or a detachable connection mode such as threaded connection, buckle connection and hinge connection, or integral connection, or electrical connection, or direct connection, or indirect connection through an intermediate medium, or communication between two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

Claims

1. A resin magnetizing device for high-speed water treatment and stabilizing suspended reaction layer, comprising an outer frame, a housing, and a magnetizing assembly, characterized in that: The outer frame is arranged on the box, and the outer frame is composed of an upper grid plate assembly, a middle grid plate assembly, a lower grid plate assembly, upper connecting columns, lower connecting columns and stand columns.

2. The resin magnetizing apparatus for a high-speed water treatment stable suspension reaction layer according to claim 1, characterized in that The box includes a feeding port and a discharging flange, and the box has a cuboid structure and an open top end. The feeding port is fixed on the side of the top end of the box, and the discharging flange is arranged on the bottom surface of the box and is in communication with the box. The top end frame of the box has a widened structure. The height of the feeding port gradually decreases from one end to the other end of the intersection with the box. The top of the feeding port is flush with the top of the box. The feeding port is in communication with the box.

3. The resin magnetizing apparatus for a high-speed water treatment stable suspension reaction layer according to claim 1, characterized in that The bottom end fixing plate of the lower connecting column is fixed on the top end frame of the box. The upper grid plate assembly has a rectangular frame structure and a plurality of separated cells. Each cell is composed of a flat and right-angle frame. The frame width is uniform. The edges of each cell are parallel to the frame. All the cells are arranged in a neat manner to form a regular grid layout. A placement plate is fixed on the middle of the top surface of the upper grid plate assembly. The placement plate has a cuboid structure and is provided with a circular hole. Support plates are fixed on both ends of the top surface and the bottom surface of the upper grid plate assembly. The middle grid plate assembly has the same structure as the upper grid plate assembly. Support plates are fixed on both ends of the top surface and the bottom surface of the middle grid plate assembly. The lower grid plate assembly has the same structure as the upper grid plate assembly. Fixed plates are fixed on both ends of the upper connecting column. The top end fixing plate of the upper connecting column is fixed on the support plate on the bottom surface of the upper grid plate assembly. The bottom end fixing plate of the upper connecting column is fixed on the support plate on the top surface of the middle grid plate assembly. Each group of the upper connecting column is equidistantly arranged along the support plate. The upper connecting column corresponds to a support plate. Fixed plates are fixed on both ends of the lower connecting column. The top end fixing plate of the lower connecting column is fixed on the support plate on the bottom surface of the middle grid plate assembly. The lower connecting column corresponds to the upper connecting column. Support plates are fixed on both ends of the stand column. The top end support plate of the stand column is fixed on the bottom surface of the middle grid plate assembly. The bottom end support plate of the stand column is fixed on the top surface of the lower grid plate assembly.

4. The resin magnetizing apparatus for a high-speed water treatment stable suspension reaction layer according to claim 1, characterized in that The magnetism giving assembly is composed of a cylinder, a magnetic rod core frame, a magnetic rod core fixing grid plate and a pull magnetic rod, the cylinder cylinder barrel is fixed on the placement plate on the top surface of the upper grid plate assembly, and the piston rod passes through the hole in the placement plate, a connecting plate is fixed on the cylinder piston rod, and the cylinder piston rod and the connecting plate top surface middle part are fixedly connected, the connecting plate bottom surface is fixed on the magnetic rod core frame, the magnetic rod core frame is a rectangular frame structure, has a plurality of separated lattices, each lattice is composed of a flat, right-angle frame, the frame width is uniform, the edge of each lattice is parallel to the frame, all the lattices are arranged in a neat manner, and a regular grid layout is formed, a magnetic rod fixing plate is fixed on the middle grid plate assembly, the magnetic rod fixing plate is fixed on the frame of the middle grid plate assembly at both ends, a plurality of the magnetic rod fixing plates are equidistantly arranged along the width direction of the middle grid plate assembly, the number is the same as the column number of the middle grid plate assembly in the direction, and one-to-one correspondence is realized, a plurality of holes are formed in each magnetic rod fixing plate, the holes and the lattices of the middle grid plate assembly are one-to-one corresponding, the magnetic rod core fixing grid plate is fixed on the magnetic rod core frame, a plurality of the magnetic rod core fixing grid plates are equidistantly arranged along the width direction of the magnetic rod core frame, the number is the same as the column number of the lattices of the magnetic rod core frame in the direction, and one-to-one correspondence is realized, the magnetic rod fixing plate is fixed on the bottom surface of the lower grid plate assembly, and the structure is the same as that of the magnetic rod fixing plate on the top surface of the middle grid plate assembly and one-to-one correspondence is realized, the bottom end of the pull magnetic rod is fixed on the magnetic rod fixing plate on the lower grid plate assembly, the side surface of the pull magnetic rod is fixedly connected with the side surface of the hole in the magnetic rod fixing plate on the middle grid plate assembly, a plurality of the pull magnetic rods are provided, the plurality of the pull magnetic rods and the holes in the magnetic rod fixing plate are one-to-one corresponding, the magnetic rod core of the pull magnetic rod is arranged in the pull magnetic rod, and the top end of the magnetic rod core is fixedly connected with the screw nut and the magnetic rod core fixing grid plate through the magnetic rod core frame.

5. The resin magnetizing apparatus for a high-speed water treatment stable suspension reaction layer according to claim 1, characterized in that The middle grid plate assembly cooperates with the lower grid plate assembly to limit the pull magnetic rod shell.

6. The resin magnetizing apparatus for a high-speed water treatment stable suspension reaction layer according to claim 3, characterized in that The lower grid plate assembly is located in the box body, and the side edge and the inner wall of the box body are detachably connected.

7. The resin magnetizing apparatus for a high-speed water treatment stable suspension reaction layer according to claim 3, characterized in that The column is provided with not less than four, and is uniformly distributed on the top surface of the lower grid plate assembly, and is arranged on the inner lattice frame of the lower grid plate assembly.

8. The resin magnetizing apparatus for a high-speed water treatment stable suspension reaction layer according to claim 4, characterized in that The length of the magnetic rod core frame is less than the length of the upper grid plate assembly, the number and distribution of the lattices in the magnetic rod core frame correspond to the upper grid plate assembly, the magnetic rod fixing plate is in a strip-shaped structure, and the magnetic rod core fixing grid plate is in a strip-shaped structure.

Citation Information

Patent Citations

  • Magnetizing equipment

    CN221262051U

  • Magnetizing equipment

    CN221327466U

  • Magnetizing frame of neodymium-iron-boron magnet

    CN221352489U

  • Magnetic material magnetizing equipment

    CN221352490U