A raw material cleaning device for a crosslinking agent production

CN224749648UActive Publication Date: 2026-09-15SUQIAN WANHETAI CHEM IND CO LTD
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Patent Information

Application Number
CN202521940324.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-10
Publication Date
2026-09-15
Estimated Expiration
2035-09-10

AI Technical Summary

Technical Problem

[0002]交联剂是一类能在两个或多个分子之间形成共价键或强力的离子键,从而将它们“桥接”起来的化学物质,这个过程被称为交联;在交联剂的生产过程中,清洗是一个至关重要的单元操作,其目的主要是为了去除未反应的原料、副产物、催化剂、溶剂或其他杂质,以确保最终产品的纯度、性能(如交联效率、稳定性)和安全性;现有的交联剂清洗方式主要以浸洗沉降为主,通过将重力不同的交联剂和杂质通过一定流速的冲洗后,较重的交联剂会向下沉降,较轻的杂质会被带走,以此进行清洗;但现有装置由于用水量巨大,十分消耗水资源,从而大大提高了生产成本;因此,本实用新型针对以上问题对现有设备进行改进

Benefits of technology

[0010] Compared with the prior art, the beneficial effects of this utility model are as follows: By combining the cleaning component and the vibration component, this utility model facilitates the distribution of dirty water to the cleaning material and clean water to the cleaning material through the circulation of rinsing water. Combined with vibration, it maximizes water conservation, thereby significantly reducing costs, improving water conservation, and realizing the device's ability to recycle water resources. Ultimately, it solves the problem of the huge water consumption of existing devices.

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Abstract

The utility model discloses a raw material cleaning device for crosslinking agent production relates to raw material cleaning technical field, including water route case, and the water route case top surface cooperation fixed mounting has the cleaning room, and the cleaning room top surface cooperation fixed mounting has the transmission case, and the water route case and the cleaning room inside are equipped with the cleaning subassembly, and the cleaning room and transmission case inside are equipped with the vibration and stirring subassembly, the utility model discloses through the cooperation of cleaning subassembly and vibration and stirring subassembly, the dirty water distribution washes the hidden material of device circulation immersion washing water, and the clean water distribution washes the clean material, and then cooperate vibration and stirring maximum limit water resource saving, thereby greatly reduce the cost, improved water -saving, realized the circulation utilization ability of device to water resources, finally solved the problem of the huge water consumption of the existing device.
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Description

Technical Field

[0001] This utility model relates to the field of raw material cleaning technology, and in particular to a raw material cleaning device for crosslinking agent production. Background Technology

[0002] Crosslinking agents are chemical substances that can form covalent bonds or strong ionic bonds between two or more molecules, thereby "bridging" them together. This process is called crosslinking. In the production process of crosslinking agents, cleaning is a crucial unit operation. Its main purpose is to remove unreacted raw materials, by-products, catalysts, solvents, or other impurities to ensure the purity, performance (such as crosslinking efficiency and stability), and safety of the final product. Existing crosslinking agent cleaning methods mainly rely on immersion and sedimentation. By passing crosslinking agents and impurities of different gravities through a certain flow rate, the heavier crosslinking agents will sink, while the lighter impurities will be carried away, thus achieving cleaning. However, existing equipment consumes a large amount of water, which greatly increases production costs. Therefore, this invention improves the existing equipment to address the above problems. Utility Model Content

[0003] The purpose of this invention is to address the shortcomings of existing technologies by proposing a raw material cleaning device for crosslinking agent production.

[0004] To achieve the above objectives, the present invention adopts the following technical solution: a raw material cleaning device for crosslinking agent production, comprising a water tank, a cleaning chamber fixedly installed on the top surface of the water tank, a transmission box fixedly installed on the top surface of the cleaning chamber, cleaning components provided inside the water tank and the cleaning chamber, and a stirring component provided inside the cleaning chamber and the transmission box.

[0005] Preferably, the vibrating assembly includes a motor, which is fixedly installed in the middle of the top surface of the transmission box. The bottom end of the motor passes through the transmission box and is fixedly connected to an eccentric hinged disc frame. Multiple connecting rods are hinged around the outer perimeter of the eccentric hinged disc frame. An eccentric shaft is hinged to the other end of each connecting rod. The eccentric shaft is rotatably connected to a stabilizing disc. The stabilizing disc is fixedly connected to the bottom surface inside the transmission box. A stirring frame is fixedly installed at the bottom end of the eccentric shaft.

[0006] Preferably, the cleaning assembly includes a rinsing tube, which is horizontally and fixedly installed around the bottom surface of the cleaning chamber, and an overflow groove is fixedly connected to the lower end of the outer surface of the rinsing tube.

[0007] Preferably, a water inlet is provided in the middle of the bottom surface of the immersion drum, and a water outlet is provided on one side of the bottom surface of the overflow tank. The lower end of the water inlet is fixedly connected to the water inlet pipe, the other end of the water inlet pipe is connected to a water pump, the other end of the water pump is connected to the water outlet pipe, and the other end of the water outlet pipe is connected to the water outlet of another overflow tank on the side.

[0008] Preferably, a relay pipe connects the cylinder inlet connecting pipe and the adjacent trough inlet connecting pipe, an inlet pipe is connected to the bottom of the cylinder water inlet of the frontmost of the immersion cylinder, and an outlet pipe is connected to the bottom of the trough water inlet of the frontmost of the overflow trough, and both the inlet pipe and the outlet pipe pass through the water circuit box.

[0009] Preferably, solenoid valves are fixedly installed on the cylinder opening connecting pipe, the groove opening connecting pipe, and the relay pipe.

[0010] Compared with the prior art, the beneficial effects of this utility model are as follows: By combining the cleaning component and the vibration component, this utility model facilitates the distribution of dirty water to the cleaning material and clean water to the cleaning material through the circulation of rinsing water. Combined with vibration, it maximizes water conservation, thereby significantly reducing costs, improving water conservation, and realizing the device's ability to recycle water resources. Ultimately, it solves the problem of the huge water consumption of existing devices. Attached Figure Description

[0011] The accompanying drawings, which are included to provide a further understanding of the present invention and form part of this application, illustrate exemplary embodiments of the present invention and, together with the description thereof, serve to explain the present invention and do not constitute an undue limitation thereof. In the drawings: Figure 1 This is a three-dimensional schematic diagram of the overall appearance of the device proposed in this utility model; Figure 2 This is a three-dimensional schematic diagram of the internal structure of the device proposed in this utility model; Figure 3 This is a three-dimensional schematic diagram of the vibrating assembly structure proposed in this utility model; Figure 4 This is a partial cross-sectional view of the cleaning component proposed in this utility model; Figure 5 This is a three-dimensional schematic diagram of the cleaning component structure proposed in this utility model.

[0012] The following are the components listed in the diagram: 1. Water box; 2. Cleaning chamber; 3. Transmission box; 4. Motor; 5. Eccentric hinged plate frame; 6. Eccentric shaft; 7. Stabilizing plate; 8. Agitator; 9. Immersion drum; 10. Overflow tank; 11. Drum inlet; 12. Tank inlet; 13. Drum inlet connecting pipe; 14. Water pump; 15. Tank inlet connecting pipe; 16. Relay pipe; 17. Inlet pipe; 18. Outlet pipe. Detailed Implementation

[0013] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0014] Example: See Figures 1 to 5 This utility model discloses a raw material cleaning device for crosslinking agent production, comprising a water tank 1, a cleaning chamber 2 fixedly installed on the top surface of the water tank 1, a transmission box 3 fixedly installed on the top surface of the cleaning chamber 2, a cleaning component inside the water tank 1 and the cleaning chamber 2, and a vibrating component inside the cleaning chamber 2 and the transmission box 3. The vibrating component includes a motor 4, which is fixedly installed in the middle of the top surface of the transmission box 3. The bottom end of the motor 4 passes through the transmission box 3 and is fixedly connected to an eccentric hinged plate frame 5. Multiple connecting rods are hinged around the outer perimeter of the eccentric hinged plate frame 5, and an eccentric shaft 6 is hinged to the other end of each connecting rod. The eccentric shaft 6 is rotatably connected to a stabilizing plate 7, which is fixedly connected to the bottom surface inside the transmission box 3. A stirring frame 8 is fixedly installed at the bottom end of the eccentric shaft 6. The cleaning component includes an immersion tank 9, which is horizontally fixedly installed around the bottom surface inside the cleaning chamber 2. An overflow groove 10 is fixedly connected to the lower end of the outer surface of the immersion tank 9.

[0015] In this utility model, to solve the problem of excessive water consumption in existing cleaning devices, the following technical solution is adopted: a water inlet 11 is provided in the middle of the bottom surface of the immersion drum 9, and a water outlet 12 is provided on one side of the bottom surface of the overflow tank 10. The lower end of the water inlet 11 is fixedly connected to the water inlet connecting pipe 13, the other end of the water inlet connecting pipe 13 is connected to the water pump 14, the other end of the water pump 14 is connected to the water outlet connecting pipe 15, the other end of the water outlet connecting pipe 15 is connected to the water outlet 12 of another overflow tank 10, and a relay pipe 16 connects the water inlet connecting pipe 13 and the water outlet connecting pipe 15. The water inlet 11 at the front end of the immersion tank 9 is connected to the inlet pipe 17, and the water outlet 12 at the front end of the overflow tank 10 is connected to the outlet pipe 18. Both the inlet pipe 17 and the outlet pipe 18 pass through the water box 1. Solenoid valves are fixedly installed on the tank inlet connecting pipe 13, the tank inlet connecting pipe 15, and the relay pipe 16. Through the cooperation of the cleaning component and the vibration component, the device can easily circulate the immersion water to distribute dirty water to wash the stored materials and clean water to wash the clean materials. With the cooperation of vibration, water resources are saved to the maximum extent, thereby greatly reducing costs and improving water conservation.

[0016] Working Principle: When using this utility model, firstly, power is supplied to all electrical equipment. Then, the material to be cleaned is poured into the immersion tank 9 above the overflow tank 10, which is connected to the water outlet pipe 18. Next, cleaning water is introduced into the device through the water inlet pipe 17. The clean water enters the first immersion tank 9 through the water inlet pipe 17. After the water volume in the immersion tank 9 reaches a certain amount, it overflows into the overflow tank 10 at its lower end. At this time, the water pump 14 is started, and the solenoid valve on the relay pipe 16 is closed. The water in the overflow tank 10 will then be pumped into the next immersion tank 9 through the tank water outlet 12 and the tank outlet connecting pipe 15. This process is repeated, so that the clean water flows sequentially from the first immersion tank 9 through all the immersion tanks 9, and is finally discharged through the water outlet pipe 18, forming a complete water circulation. At the same time, the system is started. Motor 4 drives the eccentric hinged plate frame 5 to rotate. The eccentric hinged plate frame 5 drives the eccentric shaft 6 to rotate on the stabilizing plate 7 through the connecting rods hinged around its outer perimeter. This causes the stirring frame 8 at the bottom of the eccentric shaft 6 to stir and vibrate the materials in each immersion tank 9, enhancing the cleaning effect. After the materials have been immersed in the water in the initial immersion tank 9 for a period of time, the valve status is adjusted and the solenoid valve on the tank opening connecting pipe 15 is closed. The water pump 14 pumps the materials in the immersion tank 9 into the next immersion tank 9 through the tank water inlet 11 and the tank opening connecting pipe 13. This process is repeated, so that the materials flow sequentially through all immersion tank 9 in the opposite direction to the water path, greatly saving water resources. The cleaning operation can be ended after the materials have completed the cleaning process of all immersion tank 9.

[0017] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A raw material cleaning device for crosslinking agent production, comprising a water tank (1), wherein a cleaning chamber (2) is fixedly installed on the top surface of the water tank (1), and a transmission box (3) is fixedly installed on the top surface of the cleaning chamber (2), characterized in that: The water tank (1) and the cleaning chamber (2) are equipped with cleaning components, and the cleaning chamber (2) and the transmission box (3) are equipped with a stirring component.

2. The raw material cleaning device for crosslinking agent production according to claim 1, characterized in that: The vibrating assembly includes a motor (4), which is fixedly installed in the middle of the top surface of the transmission box (3). The bottom end of the motor (4) passes through the transmission box (3) and is fixedly connected to an eccentric hinged disc frame (5). Multiple connecting rods are hinged around the outer perimeter of the eccentric hinged disc frame (5). An eccentric shaft (6) is hinged to the other end of each connecting rod. The eccentric shaft (6) is rotatably connected to a stabilizing disc (7). The stabilizing disc (7) is fixedly connected to the bottom surface inside the transmission box (3). A stirring frame (8) is fixedly installed at the bottom end of the eccentric shaft (6).

3. The raw material cleaning device for crosslinking agent production according to claim 2, characterized in that: The cleaning assembly includes an immersion tubing (9), which is horizontally fixedly installed around the bottom surface of the cleaning chamber (2). An overflow groove (10) is fixedly connected to the lower end of the outer surface of the immersion tubing (9).

4. The raw material cleaning device for crosslinking agent production according to claim 3, characterized in that: The immersion tub (9) has a tubular water inlet (11) in the middle of its bottom surface, and the overflow trough (10) has a trough water inlet (12) on one side of its bottom surface. The lower end of the tubular water inlet (11) is fixedly connected to the tubular water inlet connecting pipe (13), the other end of the tubular water inlet connecting pipe (13) is connected to the water pump (14), the other end of the water pump (14) is connected to the trough water inlet connecting pipe (15), and the other end of the trough water inlet connecting pipe (15) is connected to the trough water inlet (12) of another overflow trough (10) on the side.

5. The raw material cleaning device for crosslinking agent production according to claim 4, characterized in that: A relay pipe (16) connects the cylinder inlet connecting pipe (13) and the side slot connecting pipe (15). The water inlet (11) at the front end of the immersion cylinder (9) is connected to the water inlet pipe (17). The water outlet (12) at the front end of the overflow slot (10) is connected to the water outlet pipe (18). The water inlet pipe (17) and the water outlet pipe (18) both pass through the water box (1).

6. The raw material cleaning device for crosslinking agent production according to claim 5, characterized in that: Solenoid valves are fixedly installed on the cylinder mouth connecting pipe (13), the groove mouth connecting pipe (15), and the relay pipe (16).