Purification kettle for preparing interface agent

By designing the feed, purification, temperature control, inflation and discharge mechanism of the purification kettle for the interface agent preparation, the impurities and adhesion problems in the interface agent purification are solved, efficient interface agent purification and inner wall cleaning are achieved, and the practicality of the equipment is improved.

CN223233773UActive Publication Date: 2025-08-19WEIFANG XIANGDESHI NEW BUILDING MATERIALS CO LTD
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Patent Information

Application Number
CN202422557153.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-23
Publication Date
2025-08-19
Estimated Expiration
2034-10-23

AI Technical Summary

Technical Problem

The existing interfacial agent purification kettles are prone to contain impurities and insufficient mixtures during the mixing process, and the interfacial agent has adhesion, which causes the interface agent to adhere to the inner wall of the purified kettle, causing waste.

Method used

An interfacial agent preparation purification kettle is designed, which includes feed, purification, temperature control, inflation and discharge mechanisms. Through filtration, heating, stirring, cooling and discharge steps, the efficient purification of the interfacial agent and the cleaning of the inner wall are achieved.

Benefits of technology

It improves the purification efficiency of interface agents, reduces the waste of impurities and adheres, and enhances the practicality of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of preparation and purification kettles, in particular to an interface agent preparation and purification kettle, which discharges a mixed interface agent into a feeding mechanism, filters the interface agent through the feeding mechanism, discharges the interface agent after a cold area is completed through an extension discharge mechanism, and is used for preparing and purifying the interface agent. An adhesion agent adhered to the inner wall of the purification mechanism is discharged through the discharging mechanism, so that the practicability of the equipment is improved; comprising a feeding mechanism; the device further comprises a purification mechanism, a temperature control mechanism, an inflation mechanism, an exhaust mechanism and an exhaust mechanism, the feeding mechanism is installed on the purification mechanism, the temperature control mechanism is installed on the purification mechanism and located below the feeding mechanism, the inflation mechanism, the exhaust mechanism and the exhaust mechanism are all installed on the feeding mechanism, the exhaust mechanism is located in front of the inflation mechanism, and the exhaust mechanism is located in front of the exhaust mechanism. The discharging mechanism is located above the feeding mechanism.
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Description

Technical Field

[0001] The utility model relates to the technical field of preparing a purification kettle, in particular to an interface agent preparation and purification kettle. Background Art

[0002] An interfacial agent is an adhesive whose main function is to improve or completely change the physical and technical properties and surface chemical characteristics of the material surface by treating the surface of the object; the treatment of the interfacial agent may be physical adsorption or coating, and is often a physical and chemical effect.

[0003] For example, in a type of prior art represented by the purification kettle disclosed in the utility model patent with application number 202223377480.2, its main structure includes a reaction kettle, a precipitation discharge port, a kettle cover, a feed port and a vacuum interface, etc. The function of the purification kettle is realized by the coordination of the reaction kettle, the precipitation discharge port, the kettle cover, the feed port and the vacuum interface.

[0004] When purifying the interface agent, the mixing process of the interface agent may contain impurities and incompletely mixed substances, which will affect the use of the interface agent after purification. In addition, since the interface agent has a certain degree of adhesion, when the interface agent is discharged, a certain amount of interface agent will adhere to the inner wall of the purification kettle, resulting in waste of the interface agent. Utility Model Content

[0005] In order to solve the above technical problems, the utility model provides an interface agent preparation and purification kettle which discharges the mixed interface agent into a feeding mechanism, filters the interface agent through the feeding mechanism, discharges the interface agent after the cold zone is completed through a stretching discharge mechanism, and discharges the interface agent adhered to the inner wall of the purification mechanism through the discharge mechanism, thereby improving the practicality of the equipment.

[0006] The utility model discloses an interface agent preparation and purification kettle, comprising a feeding mechanism; a purification mechanism, a temperature control mechanism, an air charging mechanism, an exhaust mechanism and a discharge mechanism, wherein the feeding mechanism is mounted on the purification mechanism, the temperature control mechanism is mounted on the purification mechanism, the temperature control mechanism is located below the feeding mechanism, the air charging mechanism, the exhaust mechanism and the discharge mechanism are all mounted on the feeding mechanism, the exhaust mechanism is located in the front of the air charging mechanism, and the discharge mechanism is located above the feeding mechanism; the mixed interface agent is discharged into the feeding mechanism, the interface agent is filtered by the feeding mechanism, the filtered interface agent is transferred to the purification mechanism for purification, the temperature control mechanism is started to heat the purification mechanism, the air charging mechanism is started to inflate the purification mechanism to stir the interface agent in the purification mechanism, the exhaust mechanism is started to discharge excess gas in the air charging mechanism, the temperature control mechanism is started again to cool the purification mechanism after purification is completed, the interface agent after the cold zone is completed is discharged by extending the discharge mechanism, and the interface agent adhered to the inner wall of the purification mechanism is discharged by the discharge mechanism, thereby improving the practicality of the equipment.

[0007] Preferably, the feeding mechanism includes a first bracket, a motor, a conveying shaft, a spiral blade, a conveying pipe, a feed hopper and a filter screen. The motor is installed at the top of the first bracket, the left end of the conveying shaft is connected to the output end of the motor, the conveying shaft is provided with a spiral blade, the conveying shaft is located in the conveying pipe, the conveying pipe is installed at the top of the first bracket, the output end of the feed hopper is connected to the input end of the conveying pipe, and the bottom end of the filter screen is installed at the top of the feed hopper; the interface agent is discharged into the filter screen, and the interface agent is filtered through the filter screen. The filtered interface agent is discharged into the conveying pipe through the feed hopper, and the conveying shaft is rotated by starting the motor, and discharged into the purification mechanism through the spiral blade for purification, thereby improving the practicality of the equipment.

[0008] Preferably, the purification mechanism includes a base, a purification kettle, a feed pipe, a limiting plate and a discharge pipe. The bottom end of the purification kettle is installed on the top end of the base, the output end of the feed pipe is connected to the outer wall of the purification kettle, the limiting plate is installed on the top end of the purification kettle, the input end of the discharge pipe is connected to the outer wall of the purification kettle, and valves are provided on the feed pipe and the discharge pipe. The interface agent is discharged into the purification kettle through the feed pipe for purification, the limiting plate limits the discharge mechanism, and the purified interface agent is discharged through the discharge pipe. The base supports the purification kettle to improve the practicality of the equipment.

[0009] Preferably, the temperature control mechanism includes a first air pump, a water pump, a first diverter pipe, a heat exchanger, a second diverter pipe, a pipeline and a refrigerator. The output ends of the first air pump and the water pump are respectively connected to the input end of the first diverter pipe, the water pump and the first diverter pipe are respectively provided with multiple input ends, valves are provided on the multiple input ends of the first diverter pipe, the output end of the first diverter pipe is connected to the input end of the heat exchanger, the output end of the heat exchanger is connected to the input end of the second diverter pipe, the second diverter pipe is provided with multiple output ends, valves are provided on the multiple output ends of the second diverter pipe, and the pipeline input end is connected to the second diverter pipe. One of the output ends of the flow pipe is connected, the output end of the pipe is connected to the input end of the refrigerator, and the output end of the refrigerator is connected to an input end of the water pump; the steam is connected to the input end of the first air pump, so that the steam is discharged into the heat exchanger through the first diversion pipe to heat the purification kettle, and by connecting water to the input end of the water pump, the water is passed through the first diversion pipe to the heat exchanger to cool the water pump, and the water is discharged to the pipe through the second diversion pipe, and is discharged into the refrigerator through the pipe for refrigeration. After refrigeration, it is discharged to the water pump for circulation until the purification kettle is cooled, thereby improving the practicality of the equipment.

[0010] Preferably, the inflation mechanism includes a second air pump, a first air pipe and a valve, the output end of the first air pipe is connected to the input end of the first air pipe, and the first air pipe is also provided with an output end connection; by starting the second air pump, an air flow is generated and discharged into the purification kettle through the first air pipe to stir the interface agent in the purification kettle, thereby improving the practicality of the equipment.

[0011] Preferably, the exhaust mechanism includes a second air pipe, a vacuum pump and a third air pipe, the output end of the second air pipe is connected to the input end of the vacuum pump, and the output end of the vacuum pump is connected to the input end of the third air pipe; by starting the vacuum pump, the excess gas in the purification kettle is discharged through the second air pipe to the third air pipe, thereby improving the practicality of the equipment.

[0012] Preferably, the discharge mechanism includes a second bracket, a cylinder and a piston, the top end of the cylinder is installed on the second bracket, the top end of the piston is installed on the bottom end of the cylinder, and the piston is located in the purification kettle; by extending the cylinder to lower the piston, the purified interface agent is discharged through the piston, thereby improving the practicality of the equipment.

[0013] Compared with the prior art, the beneficial effects of the present invention are as follows: the mixed interface agent is discharged into the feeding mechanism, the interface agent is filtered through the feeding mechanism, the filtered interface agent is transferred to the purification mechanism for purification, the temperature control mechanism is started to heat the purification mechanism, and the inflation mechanism is started to inflate the purification mechanism to stir the interface agent in the purification mechanism, and the excess gas in the inflation mechanism is discharged by starting the exhaust mechanism. After the interface agent is purified, the temperature control mechanism is started again to cool the purification mechanism. The interface agent after the cold zone is completed is discharged by extending the discharge mechanism, and the interface agent adhering to the inner wall of the purification mechanism is discharged by the discharge mechanism, thereby improving the practicality of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is an axonometric schematic diagram of the present utility model;

[0015] Figure 2 This is a front cross-sectional view of the feeding mechanism of the present utility model;

[0016] Figure 3 This is a top view of the purification mechanism of the utility model;

[0017] Figure 4 This is a schematic diagram of the temperature control mechanism structure of the utility model;

[0018] Figure 5 This is an axonometric diagram of the inflation mechanism of the present utility model;

[0019] Figure 6 This is an axonometric diagram of the exhaust mechanism of the present utility model;

[0020] Figure 7 It is an axonometric schematic diagram of the discharge mechanism of the present utility model.

[0021] Markings in the accompanying drawings: 01, feeding mechanism; 11, first bracket; 12, motor; 13, transmission shaft; 14, spiral blade; 15, conveying pipeline; 16, feeding hopper; 17, filter; 02, purification mechanism; 21, base; 22, purification kettle; 23, feeding pipe; 24, limit plate; 25, discharge pipe; 03, temperature control mechanism; 31, first air pump; 32, water pump; 33, first diversion pipe; 34, heat exchanger; 35, second diversion pipe; 36, pipeline; 37, refrigerator; 04, charging mechanism; 41, second air pump; 42, first air pipe; 43, valve; 05, exhaust mechanism; 51, second air pipe; 52, vacuum pump; 53, third air pipe; 06, discharge mechanism; 61, second bracket; 62, cylinder; 63, piston. DETAILED DESCRIPTION

[0022] To facilitate understanding of the present invention, a more comprehensive description of the present invention will be provided below with reference to the accompanying drawings. The present invention can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and comprehensive understanding of the present invention. Example

[0023] like Figure 1 As shown, an interface agent preparation and purification kettle includes a feeding mechanism 01; further includes a purification mechanism 02, a temperature control mechanism 03, an air charging mechanism 04, an exhaust mechanism 05 and a discharge mechanism 06. The feeding mechanism 01 is installed on the purification mechanism 02, the temperature control mechanism 03 is installed on the purification mechanism 02, the temperature control mechanism 03 is located below the feeding mechanism 01, the air charging mechanism 04, the exhaust mechanism 05 and the discharge mechanism 06 are all installed on the feeding mechanism 01, the exhaust mechanism 05 is located in front of the air charging mechanism 04, and the discharge mechanism 06 is located above the feeding mechanism 01.

[0024] The mixed interface agent is discharged into the feeding mechanism 01, and the interface agent is filtered by the feeding mechanism 01. The filtered interface agent is transferred to the purification mechanism 02 for purification. The temperature control mechanism 03 is activated to heat the purification mechanism 02, and the inflation mechanism 04 is activated to inflate the purification mechanism 02 to stir the interface agent in the purification mechanism 02. The excess gas in the inflation mechanism 04 is discharged by activating the exhaust mechanism 05. After the interface agent is purified, the temperature control mechanism 03 is activated again to cool the purification mechanism 02. The interface agent in the cold zone is discharged by extending the discharge mechanism 06. The interface agent adhering to the inner wall of the purification mechanism 02 is discharged by the discharge mechanism 06, thereby improving the practicality of the equipment.

[0025] like Figure 2 As shown, the feeding mechanism 01 includes a first bracket 11, a motor 12, a conveying shaft 13, a spiral blade 14, a conveying pipe 15, a feed hopper 16 and a filter 17. The motor 12 is installed at the top of the first bracket 11. The left end of the conveying shaft 13 is connected to the output end of the motor 12. The conveying shaft 13 is provided with a spiral blade 14. The conveying shaft 13 is located in the conveying pipe 15. The conveying pipe 15 is installed at the top of the first bracket 11. The output end of the feed hopper 16 is connected to the input end of the conveying pipe 15. The bottom end of the filter 17 is installed at the top of the feed hopper 16.

[0026] like Figure 3As shown, the purification mechanism 02 includes a base 21, a purification kettle 22, a feed pipe 23, a limiting plate 24 and a discharge pipe 25. The bottom end of the purification kettle 22 is mounted on the top of the base 21, the output end of the feed pipe 23 is connected to the outer wall of the purification kettle 22, the limiting plate 24 is mounted on the top of the purification kettle 22, and the input end of the discharge pipe 25 is connected to the outer wall of the purification kettle 22. Valves are provided on both the feed pipe 23 and the discharge pipe 25.

[0027] The interface agent is discharged into the filter screen 17, and filtered through the filter screen 17. The filtered interface agent is discharged into the conveying pipe 15 through the feed hopper 16. The conveying shaft 13 is rotated by starting the motor 12, and the interface agent is discharged into the purification mechanism 02 through the spiral blade 14 for purification. The interface agent is discharged into the purification kettle 22 through the feed pipe 23 for purification. The limiting plate 24 limits the discharge mechanism 06. The purified interface agent is discharged through the discharge pipe 25. The base 21 supports the purification kettle 22 to improve the practicality of the equipment. Example

[0028] like Figure 4 、 Figure 5 and Figure 6 As shown, on the basis of Example 1, it also includes a temperature control mechanism 03, an inflation mechanism 04 and an exhaust mechanism 05. The temperature control mechanism 03 includes a first air pump 31, a water pump 32, a first diverter pipe 33, a heat exchanger 34, a second diverter pipe 35, a pipeline 36 and a refrigerator 37. The output ends of the first air pump 31 and the water pump 32 are respectively connected to the input end of the first diverter pipe 33. The water pump 32 and the first diverter pipe 33 are respectively provided with multiple input ends. Valves are provided on the multiple input ends of the first diverter pipe 33. The output end of the first diverter pipe 33 is connected to the input end of the heat exchanger 34. The output end of the heat exchanger 34 is connected to the input end of the second diverter pipe 35. The second diverter pipe 35 is provided with multiple output ends. Valves are provided on the multiple output ends of the shunt pipe 35. The input end of the pipe 36 is connected to one of the output ends of the second shunt pipe 35, the output end of the pipe 36 is connected to the input end of the refrigerator 37, and the output end of the refrigerator 37 is connected to an input end of the water pump 32; the inflation mechanism 04 includes a second air pump 41, a first air pipe 42 and a valve 43. The output end of the first air pipe 42 is connected to the input end of the first air pipe 42, and the first air pipe 42 is also provided with an output end connection; the exhaust mechanism 05 includes a second air pipe 51, a vacuum pump 52 and a third air pipe 53. The output end of the second air pipe 51 is connected to the input end of the vacuum pump 52, and the output end of the vacuum pump 52 is connected to the input end of the third air pipe 53;

[0029] By connecting steam to the input end of the first air pump 31, the steam is discharged into the heat exchanger 34 through the first diversion pipe 33 to heat the purification kettle 22. By connecting water to the input end of the water pump 32, the water is discharged into the heat exchanger 34 through the first diversion pipe 33 to cool the water pump 32. The water is discharged to the pipe 36 through the second diversion pipe 35, and then discharged into the refrigerator 37 through the pipe 36 for cooling. After cooling, it is discharged into the water pump 32 for circulation until the purification kettle 22 is completely cooled. By starting the second air pump 41, an air flow is generated and discharged into the purification kettle 22 through the first air pipe 42 to stir the interface agent in the purification kettle 22. By starting the vacuum pump 52, the excess gas in the purification kettle 22 is discharged through the second air pipe 51 to the third air pipe 53, thereby improving the practicality of the equipment. Example

[0030] like Figure 7 As shown, based on Example 1, a discharge mechanism 06 is further included. The discharge mechanism 06 includes a second bracket 61, a cylinder 62 and a piston 63. The top end of the cylinder 62 is mounted on the second bracket 61, and the top end of the piston 63 is mounted on the bottom end of the cylinder 62. The piston 63 is located in the purification kettle 22.

[0031] By extending the cylinder 62 and lowering the piston 63, the purified interface agent is discharged through the piston 63, thereby improving the practicality of the equipment.

[0032] like Figures 1 to 7 As shown, the present invention is an interface agent preparation and purification kettle. When it is working, the interface agent is first discharged into the filter screen 17, and the interface agent is filtered through the filter screen 17. The filtered interface agent is discharged into the conveying pipe 15 through the feed hopper 16, and the conveying shaft 13 is rotated by starting the motor 12. The interface agent is discharged into the purification mechanism 02 through the spiral blade 14 for purification, and then the interface agent is discharged into the purification kettle 22 through the feed pipe 23 for purification. The limiting plate 24 limits the discharge mechanism 06. The purified interface agent is discharged through the discharge pipe 25. The base 21 supports the purification kettle 22. After that, it is connected to the input end of the first air pump 31 through steam, so that the steam is discharged into the heat exchanger 34 through the first diversion pipe 33 to heat the purification kettle 22. By connecting water to the input end of the water pump 32, the water passes through the first diversion pipe 33 and the heat exchanger 34 to cool the water pump 32. The water is discharged to the pipe 36 through the second diversion pipe 35, and is discharged to the refrigerator 37 through the pipe 36 for cooling. After cooling, it is discharged to the water pump 32 for circulation until the purification kettle 22 is completely cooled. Then, by starting the second air pump 41, an air flow is generated and discharged into the purification kettle 22 through the first air pipe 42 to stir the interface agent in the purification kettle 22. After that, by starting the vacuum pump 52, the excess gas in the purification kettle 22 is discharged through the second air pipe 51 to the third air pipe 53. Finally, by extending the cylinder 62, the piston 63 is lowered, and the purified interface agent is discharged through the piston 63, thereby improving the practicality of the equipment.

[0033] The motor 12, the first air pump 31, the water pump 32, the heat exchanger 34, the refrigerator 37, the second air pump 41 and the vacuum pump 52 of the utility model are purchased on the market. Technicians in this industry only need to install and operate them according to the accompanying instruction manuals, without the need for technical personnel in this field to make creative efforts.

[0034] The main functions achieved by the present invention are: discharging the mixed interface agent into the feeding mechanism 01, filtering the interface agent through the feeding mechanism 01, discharging the interface agent after the cold zone is completed through the extending discharge mechanism 06, and discharging the interface agent adhering to the inner wall of the purification mechanism 02 through the discharge mechanism 06, thereby improving the practicality of the equipment.

[0035] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the technical principles of the present invention. These improvements and modifications should also be regarded as the scope of protection of the present invention.

Claims

1. An interface agent preparation and purification kettle, comprising a feeding mechanism (01); characterized in that: The invention also includes a purification mechanism (02), a temperature control mechanism (03), an air filling mechanism (04), an exhaust mechanism (05) and a discharge mechanism (06), wherein the feeding mechanism (01) is mounted on the purification mechanism (02), the temperature control mechanism (03) is mounted on the purification mechanism (02), the temperature control mechanism (03) is located below the feeding mechanism (01), the air filling mechanism (04), the exhaust mechanism (05) and the discharge mechanism (06) are all mounted on the feeding mechanism (01), the exhaust mechanism (05) is located in front of the air filling mechanism (04), and the discharge mechanism (06) is located above the feeding mechanism (01).

2. The interface agent preparation and purification kettle according to claim 1, characterized in that: The feeding mechanism (01) includes a first bracket (11), a motor (12), a transmission shaft (13), a spiral blade (14), a conveying pipe (15), a feed hopper (16) and a filter (17), wherein the motor (12) is mounted on the top of the first bracket (11), the left end of the transmission shaft (13) is connected to the output end of the motor (12), the transmission shaft (13) is provided with a spiral blade (14), the transmission shaft (13) is located in the conveying pipe (15), the conveying pipe (15) is mounted on the top of the first bracket (11), the output end of the feed hopper (16) is connected to the input end of the conveying pipe (15), and the bottom end of the filter (17) is mounted on the top of the feed hopper (16).

3. The interface agent preparation and purification kettle according to claim 1, characterized in that: The purification mechanism (02) includes a base (21), a purification kettle (22), a feed pipe (23), a limiting plate (24) and a discharge pipe (25). The bottom end of the purification kettle (22) is mounted on the top end of the base (21), the output end of the feed pipe (23) is connected to the outer wall of the purification kettle (22), the limiting plate (24) is mounted on the top end of the purification kettle (22), the input end of the discharge pipe (25) is connected to the outer wall of the purification kettle (22), and valves are provided on the feed pipe (23) and the discharge pipe (25).

4. The interface agent preparation and purification kettle according to claim 1, characterized in that: The temperature control mechanism (03) includes a first air pump (31), a water pump (32), a first diverter pipe (33), a heat exchanger (34), a second diverter pipe (35), a pipeline (36) and a refrigerator (37). The output ends of the first air pump (31) and the water pump (32) are respectively connected to the input end of the first diverter pipe (33). The water pump (32) and the first diverter pipe (33) are respectively provided with multiple input ends. Valves are provided on the multiple input ends of the first diverter pipe (33). The output end of the first diverter pipe (33) is connected to the input end of the first diverter pipe (33). The end of the pipe (36) is connected to the input end of the heat exchanger (34), the output end of the heat exchanger (34) is connected to the input end of the second diverter pipe (35), the second diverter pipe (35) is provided with multiple output ends, and valves are provided on the multiple output ends of the second diverter pipe (35), the input end of the pipe (36) is connected to one of the output ends of the second diverter pipe (35), the output end of the pipe (36) is connected to the input end of the refrigerator (37), and the output end of the refrigerator (37) is connected to an input end of the water pump (32).

5. The interface agent preparation and purification kettle according to claim 1, characterized in that: The inflation mechanism (04) includes a second air pump (41), a first air pipe (42) and a valve (43). The output end of the first air pipe (42) is connected to the input end of the first air pipe (42). The first air pipe (42) is also provided with an output end connection.

6. The interface agent preparation and purification kettle according to claim 1, characterized in that: The exhaust mechanism (05) comprises a second air pipe (51), a vacuum pump (52) and a third air pipe (53), wherein the output end of the second air pipe (51) is connected to the input end of the vacuum pump (52), and the output end of the vacuum pump (52) is connected to the input end of the third air pipe (53).

7. The interface agent preparation and purification kettle according to claim 3, characterized in that: The discharge mechanism (06) includes a second bracket (61), a cylinder (62) and a piston (63), wherein the top end of the cylinder (62) is mounted on the second bracket (61), the top end of the piston (63) is mounted on the bottom end of the cylinder (62), and the piston (63) is located in the purification kettle (22).

Citation Information

Patent Citations

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