Ion exchanger resin discharging auxiliary device
By designing the ion exchanger resin discharge auxiliary device for the guide groove and buffer groove, the problem of inconvenient resin spilling and recycling is solved, and efficient and safe resin recovery is achieved.
Patent Information
- Application Number
- CN202422315365.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-23
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-09-23
AI Technical Summary
During the process of unloading the resin of the ion exchanger, the resin is easily spilled on the ground, resulting in inconvenient recycling, large area and risk of personnel slipping and falling, and the existing methods are inefficient.
An ion exchanger resin discharge auxiliary device is designed, including a material guide groove and a buffer groove. The material guide groove is fixed to the discharge pipe by locking bolts. A buffer groove and a universal wheel are provided below the material guide groove for easy transfer. The resin flows into the buffer groove through the material guide groove and is introduced into the collection bag through the material discharge pipe.
It effectively avoids the accumulation of resin into mountains, improves recycling efficiency, reduces the risk of personnel slipping and falling, and simplifies the resin transfer process.
Smart Images

Figure CN223170935U_ABST
Abstract
Description
Technical Field:
[0001] The utility model relates to the technical field of ion exchange resins, and particularly relates to an auxiliary device for discharging resins from an ion exchanger. Background Art:
[0002] ]>During the reproduction of PTMEG, an ion exchanger is required to adsorb Na + so as to obtain a PTMEG solution without Na + Since the number of regenerations of the ion exchanger is limited, new resins need to be replaced to ensure the normal operation of production.
[0003] Currently, the diameter of the discharge pipe is 200 mm, and the end of the discharge pipe is a flange interface and is usually bolted to a flange end cover. During the process of opening the flange end cover, due to the short length of the discharge pipe and the large internal pressure, some containers cannot be placed under the discharge pipe for receiving, and only bags can be used. After the resin is discharged, employees cannot directly catch it with bags, resulting in the sprayed resin falling on the ground near the ion exchanger. Therefore, a double-layer plastic cloth is usually laid on the ground to prevent the resin from falling on the ground and contacting the soil, so that all the discharged resin falls on the plastic cloth and is later recycled into a collection bag with a shovel. Using this method, the resin piles up like a mountain and is not easy to transfer quickly. Due to the large floor area, the recycling process takes about 5 hours, and it is easy for people to slip during the recycling process. Content of the Utility Model:
[0004] The purpose of the utility model is to provide an auxiliary device for discharging resins from an ion exchanger to solve the problems raised in the above background art. <&
[0005] The utility model is implemented by the following technical solutions:
[0006] An auxiliary device for discharging resins from an ion exchanger includes an ion exchanger. A material guiding groove is rotatably arranged at the discharge pipe of the ion exchanger. A buffer groove is arranged below the material guiding groove. A universal wheel is installed on the buffer groove. A triangular cushion block is fixed at the end of the lower surface of the material guiding groove. A threaded through hole is formed on one side of the triangular cushion block, and the other side is movably abutted against the outer wall surface of the ion exchanger. A locking bolt is threadedly connected in the threaded through hole, and the locking bolt abuts against the flange edge of the discharge pipe, so that the material guiding groove cannot fall from above the discharge pipe.
[0007] Preferably, the material guiding groove includes a groove plate and baffle plates fixed on both sides of the groove plate; the groove plate is in an arc-shaped structure, and the baffle plates are triangular and one end of each baffle plate is hinged to the connecting columns on both sides of the discharge pipe.
[0008] Preferably, after the material guiding groove is turned downward, it is placed in the buffer groove. A discharge pipe is provided on the buffer groove, and a discharge valve is installed on the discharge pipe.
[0009] Preferably, during the flipping process of the groove plate, it does not contact the flange edge of the discharge pipe.
[0010] Preferably, a handle is fixed on the lower surface of the groove plate.
[0011] Advantages of the present utility model: By providing a material guiding groove and a buffer groove, the problems of resin piling up in mountains, inconvenient recycling, and difficult transfer are effectively avoided, the phenomenon of personnel slipping is avoided, and the recycling efficiency of resin is improved. Description of the drawings:
[0012] Figure 1 is a structural schematic diagram of the present utility model;
[0013] Figure 2 is a structural schematic diagram when the material guiding groove is closed;
[0014] Figure 3 is a partial structural cross-sectional view;
[0015] Figure 4 is a partial structural schematic diagram.
[0016] In the figure: 1. Ion exchanger, 1.1 Discharge pipe, 1.2 Connecting column, 2. Material guiding groove, 2.1 Groove plate, 2.2 Baffle plate, 3. Buffer groove, 4. Triangular cushion block, 5. Locking bolt, 6. Discharge pipe, 7. Discharge valve. Specific implementation manners:
[0017] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts belong to the scope of protection of the present utility model.
[0018] Please refer to Figures 1-4 , the present utility model provides a technical solution for an auxiliary device for discharging resin from an ion exchanger:
[0019] An auxiliary device for discharging ion exchanger resin includes an ion exchanger 1. A material guiding groove 2 is rotatably arranged at the discharging pipe 1.1 of the ion exchanger 1 for guiding the discharged resin. The material guiding groove 2 includes a groove plate 2.1 and baffle plates 2.2 fixed on both sides of the groove plate 2.1. The groove plate 2.1 is in an arc structure. The baffle plates 2.2 are triangular and one end of each baffle plate is hinged to a connecting column 1.2 on both sides of the discharging pipe 1.1. The groove plate 2.1 does not contact the flange edge of the discharging pipe 1.1 during the flipping process. A handle 8 is fixed on the lower surface of the groove plate 2.1.
[0020] A buffer tank 3 is arranged below the material guiding groove 2. Universal wheels (not shown in the figure) can be installed on the buffer tank 3 for easy transfer. After the material guiding groove 2 is flipped downward, it is placed in the buffer tank 3. A discharge pipe 6 is provided on the buffer tank 3, and a discharge valve 7 is installed on the discharge pipe 6.
[0021] A triangular cushion block 4 is fixed at the end of the lower surface of the material guiding groove 2. A threaded through hole 4.1 is provided on one side of the triangular cushion block 4, and the other side is in movable contact with the outer wall surface of the ion exchanger 1. A locking bolt 5 is threadedly connected in the threaded through hole 4.1, and the locking bolt 5 abuts against the flange edge of the discharging pipe 1.1, so that the material guiding groove 2 cannot fall from above the discharging pipe 1.1.
[0022] The working principle is as follows: Since the diameter of the discharging pipe 1.1 is 200 mm and the discharging pressure generated is relatively large, the buffer tank 3 needs to be placed below the discharging pipe 1.1 first. Then, the locking bolt 5 is turned so that the locking bolt 5 does not abut against the flange edge of the discharging pipe 1.1, which is convenient for the material guiding groove 2 to be flipped downward. After the material guiding groove 2 is flipped down through the handle 8, the material guiding groove 2 is placed in the buffer tank 3. Finally, the flange end cover is opened, so that the discharged resin flows into the buffer tank 3 along the material guiding groove 2 for buffering. Finally, by moving the buffer tank 3 and opening the discharge valve 7 on the discharge pipe 6, the resin in the buffer tank 3 is introduced into a collection bag through the discharge pipe 6 for recycling and treatment.
[0023] This solution effectively avoids the problems of resin piling up, inconvenient recycling, and difficult transfer, avoids the occurrence of personnel slipping, and improves the recycling efficiency of resin.
[0024] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included in the protection scope of the present utility model.
Claims
1. An auxiliary device for discharging ion exchanger resin, comprising an ion exchanger (1), characterized in that: A material guiding groove (2) is rotatably arranged at the discharge pipe (1.1) of the ion exchanger (1). A buffer tank (3) is arranged below the material guiding groove (2). Universal wheels are installed on the buffer tank (3). A triangular cushion block (4) is fixed at the end of the lower surface of the material guiding groove (2). A threaded through hole (4.1) is formed in one side of the triangular cushion block (4), and the other side is movably abutted against the outer wall surface of the ion exchanger (1). A locking bolt (5) is threadedly connected in the threaded through hole (4.1), and the locking bolt (5) abuts against the flange edge on the discharge pipe (1.1), so that the material guiding groove (2) cannot fall from above the discharge pipe (1.1).
2. An auxiliary device for discharging the ion exchanger resin according to claim 1, characterized in that: The material guiding groove (2) includes a groove plate (2.1) and baffle plates (2.2) fixed on both sides of the groove plate (2.1); the groove plate (2.1) is of an arc-shaped structure, and the baffle plates (2.2) are triangular and one end is hinged to the connecting columns (1.2) on both sides of the discharge pipe (1.1).
3. An auxiliary device for discharging ion exchanger resin according to claim 1, characterized in that: After the material guiding groove (2) is turned downward, it is placed in the buffer tank (3). A discharge pipe (6) is arranged on the buffer tank (3), and a discharge valve (7) is installed on the discharge pipe (6).
4. An auxiliary device for discharging the resin of an ion exchanger according to claim 2, characterized in that: During the turning process of the groove plate (2.1), it does not contact the flange edge on the discharge pipe (1.1).
5. An auxiliary device for discharging the ion exchanger resin according to claim 2, characterized in that: A handle (8) is fixed on the lower surface of the groove plate (2.1).