Ultra-low temperature and organic solvent resistant combined supramolecular adhesive storage tank

By introducing sealing, stirring and rinsing mechanisms into the adhesive storage tank, the high specific heat capacity characteristics of water are used to maintain low temperatures, which solves the problems of insufficient heat insulation and difficulty in cleaning of the storage tank, and achieves stable storage and efficient cleaning of the adhesive.

CN223238596UActive Publication Date: 2025-08-19WEIFANG XINBAISHUN IND & TRADE CO LTD
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Patent Information

Application Number
CN202422225961.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-11
Publication Date
2025-08-19
Estimated Expiration
2034-09-11

AI Technical Summary

Technical Problem

The existing adhesive storage tanks lack heat insulation function under ultra-low temperature conditions for a long time, and it is difficult to clean the adhesive after being discharged, which affects subsequent use.

Method used

A storage tank including sealing, stirring, heat insulation and flushing mechanism is designed to maintain a low temperature in the tank using the high specific heat capacity characteristics of water, accelerate the discharge of adhesive through the stirring mechanism, and clean the tank body using the flushing mechanism.

Benefits of technology

Effectively maintain the low temperature environment in the storage tank, ensure the stability of the adhesive, and facilitate cleaning, improving working efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of adhesive storage, in particular to an ultra-low temperature and organic solvent combined supramolecular adhesive storage tank, which not only can enhance the heat insulation effect of the storage tank and enable the adhesive in the storage tank to keep a low-temperature environment in the tank, but also is convenient to clean after the adhesive is discharged. The working efficiency is improved; comprising a storage tank; the device further comprises a sealing mechanism, a stirring mechanism, a heat insulation mechanism and a flushing mechanism, the sealing mechanism is installed on the storage tank and seals the storage tank, the stirring mechanism is installed on the sealing mechanism and stirs the adhesive, and the heat insulation mechanism is installed on the storage tank and enhances the heat insulation effect of the storage tank. The flushing mechanism is installed on the heat insulation mechanism and flushes the storage tank.
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Description

Technical Field

[0001] The utility model relates to the technical field of adhesive storage, in particular to a supermolecular adhesive storage tank resistant to ultra-low temperatures and organic solvents. Background Art

[0002] The combined supramolecular adhesive resistant to ultra-low temperatures and organic solvents is an adhesive formed by supramolecular action. It can maintain bonding strength under ultra-low temperature conditions and can remain stable in organic solvents without losing its bonding properties.

[0003] Existing adhesive storage tanks, such as a polyurethane adhesive storage tank disclosed in the utility model patent with application number 202320763329.8, have a main structure including a polyurethane adhesive storage tank, a storage tank body is provided on the inner wall of the base, an insulation tube is provided on the curved surface of the storage tank body, insulation cotton is provided inside the insulation tube, a rubber pad is provided on the bottom surface of the base, and a sealing cover is provided on the top surface of the storage tank body; when in use, the transmission shaft is driven to rotate by the motor so that the scraper can scrape the polyurethane adhesive onto the scraper surface, and then throw it off by the centrifugal force generated by the rotation, so that it no longer sticks to the inner wall of the storage tank body and can be easily taken out. At the same time, the outer shell can provide certain protection for the motor.

[0004] However, for adhesives that need to maintain ultra-low temperatures for a long time, it is necessary to reduce heat transfer and maintain a low-temperature environment in the tank. Most existing storage tanks do not have thermal insulation functions, and after the adhesive is discharged, adhesive still remains in the device, which is difficult to clean and affects subsequent use. Utility Model Content

[0005] In order to solve the above technical problems, the utility model provides a supermolecular adhesive storage tank that is resistant to ultra-low temperatures and organic solvents, which can not only enhance the thermal insulation effect of the storage tank and maintain the low-temperature environment of the adhesive in the storage tank, but also facilitate the cleaning of the device after the adhesive is discharged, thereby improving work efficiency.

[0006] The utility model discloses a supermolecular adhesive storage tank resistant to ultra-low temperatures and organic solvents, comprising a storage tank; a sealing mechanism, a stirring mechanism, an insulating mechanism and a flushing mechanism, wherein the sealing mechanism is installed on the storage tank and seals the storage tank, the stirring mechanism is installed on the sealing mechanism and stirs the adhesive, the insulating mechanism is installed on the storage tank and enhances the thermal insulation effect of the storage tank, and the flushing mechanism is installed on the insulating mechanism and flushes the storage tank; the sealing mechanism is opened, and a staff member adds the adhesive into the storage tank for storage, and then the insulating mechanism transports water into the storage tank, utilizing the large specific heat capacity of water to isolate the temperature inside and outside the storage tank, and keep the temperature of the adhesive in the storage tank stable; when the adhesive needs to be discharged, the stirring mechanism is started to accelerate the discharge of the adhesive from the storage tank, and then the insulating mechanism transports water into the flushing mechanism, and the flushing mechanism mixes the agent and water and sprays them into the storage tank to flush the storage tank.

[0007] Preferably, the storage tank includes a tank body, four sets of universal wheels, an insulation layer, a discharge pipe and a first valve. A cavity is provided inside the tank body, and a feed port is provided at the top of the tank body. The top ends of the four sets of universal wheels are connected to the bottom end of the tank body. The insulation layer is installed on the tank body and forms a sandwich layer with the tank body. The discharge pipe is installed on the tank body and communicates with the inside of the cavity of the tank body. The first valve is installed on the discharge pipe. The staff transports the adhesive into the cavity of the tank body and maintains a low-temperature environment in the cavity of the tank body by filling water in the sandwich layer of the insulation layer. When the adhesive needs to be used, the first valve is opened and the adhesive in the cavity of the tank body is discharged through the discharge pipe. The four sets of universal wheels are provided to facilitate the staff to move the tank body.

[0008] Preferably, the sealing mechanism includes four groups of guide rods, four groups of sealing heads, a movable plate, a sealing cover, two groups of supports, six groups of hydraulic cylinders and a pressure gauge. The bottom ends of the four groups of guide rods are connected to the top of the tank body, and the bottom ends of the four groups of sealing heads are respectively connected to the top ends of the four groups of guide rods. The movable plate is slidably installed on the four groups of guide rods, and the top end of the sealing cover is connected to the bottom end of the movable plate. Both groups of supports are installed on the insulation layer. Three groups of hydraulic cylinders are installed on each group of supports. The top ends of the six groups of hydraulic cylinders are connected to the bottom end of the movable plate, and the pressure gauge is installed on the movable plate. The staff adds the adhesive into the cavity of the tank body through the feed port of the tank body, and the six groups of hydraulic cylinders pull the movable plate downward so that the sealing cover blocks the feed port of the tank body to prevent outside air from entering. The movable plate is prevented from falling off by setting four groups of sealing heads, and the pressure in the cavity of the tank body is detected by setting a pressure gauge to prevent the adhesive from deteriorating and expanding.

[0009] Preferably, the stirring mechanism includes a motor, a reducer, a transmission shaft and two sets of scrapers, the bottom end of the motor is connected to the top of the movable plate, the bottom end of the reducer is connected to the top of the movable plate, the transmission shaft is rotatably mounted on the movable plate and longitudinally connected to the reducer, and the two sets of scrapers are mounted on the transmission shaft; when the adhesive needs to be discharged, the motor is started, the motor drives the transmission shaft to rotate through the reducer, and the transmission shaft drives the two sets of scrapers to rotate, the scrapers are spiral and tangent to the inner wall of the cavity of the tank body, the scrapers rotate downward to squeeze the adhesive, accelerate the discharge of the adhesive, and prevent the adhesive from sticking to the inner wall of the cavity of the tank body.

[0010] Preferably, the thermal insulation mechanism includes a first water pump, a water suction pipe, a water supply pipe, a return pipe and a second valve. The first water pump is installed on the insulation layer, the water suction pipe is installed on the first water pump, the water supply pipe is installed on the first water pump and is connected to the interior of the interlayer of the insulation layer, the return pipe is installed on the insulation layer and is connected to the interior of the interlayer of the insulation layer, and the second valve is installed on the return pipe. The water suction pipe is connected to the water source, and the first water pump is started. The first water pump pumps water and transports the water to the interlayer of the insulation layer through the water supply pipe. Water is used to isolate the cavity of the tank body from the outside world. The high heat capacity ratio of water is used to maintain a low temperature environment in the cavity of the tank body. When the adhesive is discharged, the second valve is opened, and the water in the interlayer is transported to the flushing mechanism through the return pipe.

[0011] Preferably, the flushing mechanism includes a mixing box, a dosing hopper, a third valve, a second water pump, a water hose, a connecting pipe and multiple groups of high-pressure nozzles. The mixing box is installed on the insulation layer, and an inner cavity is provided inside the mixing box. The dosing hopper is installed on the top of the insulation layer and is connected with the inner cavity of the mixing box. The third valve is installed on the dosing hopper, the bottom end of the second water pump is connected with the top of the movable plate, the water hose is installed on the mixing box and penetrates into the inner cavity of the mixing box, the connecting pipe is installed on the second water pump, and multiple groups of high-pressure nozzles are all installed on the sealing cover and are all connected with the interior of the connecting pipe; the return pipe transports water to the inner cavity of the mixing box, the staff opens the third valve, and transports the cleaning agent into the inner cavity of the mixing box through the dosing hopper, and then starts the second water pump. The second water pump extracts the cleaning agent in the inner cavity of the mixing box through the water hose, and then transports it to the multiple groups of high-pressure nozzles through the connecting pipe. The high-pressure nozzles flush the cavity of the tank body and the two groups of scrapers.

[0012] Compared with the prior art, the beneficial effects of the present invention are as follows: the sealing mechanism is opened, the staff adds the adhesive into the storage tank for storage, and then the insulation mechanism transports water into the storage tank. The large specific heat capacity of water is utilized to isolate the temperature inside and outside the storage tank, thereby maintaining the temperature of the adhesive in the storage tank stable. When the adhesive needs to be discharged, the stirring mechanism is started to accelerate the discharge of the adhesive from the storage tank, and then the insulation mechanism transports water to the flushing mechanism, which mixes the agent and water and sprays them into the storage tank to flush the storage tank. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 This is an axonometric structural diagram of the present utility model;

[0014] Figure 2 This is a partially enlarged sectional axonometric structural diagram of the storage tank of the utility model;

[0015] Figure 3 It is a right side cross-sectional structural diagram of the sealing mechanism and stirring mechanism of the utility model;

[0016] Figure 4 This is an axonometric structural diagram of the heat insulation mechanism and flushing mechanism of the utility model;

[0017] Figure 5 It is a partially enlarged sectional axonometric structural diagram of the sealing mechanism and flushing mechanism of the utility model.

[0018] Markings in the accompanying drawings: 01, storage tank; 11, tank body; 12, universal wheel; 13, insulation layer; 14, discharge pipe; 15, first valve; 02, sealing mechanism; 21, guide rod; 22, plugging head; 23, movable plate; 24, sealing cover; 25, support; 26, hydraulic cylinder; 27, pressure gauge; 03, stirring mechanism; 31, electric motor; 32, reducer; 33, transmission shaft; 34, scraper; 04, insulation mechanism; 41, first water pump; 42, water suction pipe; 43, water supply pipe; 44, return pipe; 45, second valve; 05, flushing mechanism; 51, mixing box; 52, dosing hopper; 53, third valve; 54, second water pump; 55, water supply hose; 56, connecting pipe; 57, high-pressure nozzle. DETAILED DESCRIPTION

[0019] 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

[0020] The utility model discloses a supermolecular adhesive storage tank resistant to ultra-low temperature and organic solvent, comprising a storage tank 01; a sealing mechanism 02, a stirring mechanism 03, a heat insulating mechanism 04 and a flushing mechanism 05, wherein the sealing mechanism 02 is mounted on the storage tank 01 and seals the storage tank 01, the stirring mechanism 03 is mounted on the sealing mechanism 02 and stirs the adhesive, the heat insulating mechanism 04 is mounted on the storage tank 01 and enhances the heat insulation effect of the storage tank 01, and the flushing mechanism 05 is mounted on the heat insulating mechanism 04 and flushes the storage tank 01; the storage tank 01 comprises a tank body 11, four sets of universal wheels 12, a heat insulation layer 13 and a heat preservation layer 14. , a discharge pipe 14 and a first valve 15, a cavity is provided inside the tank body 11, and a feed port is provided at the top of the tank body 11, the top of the four sets of universal wheels 12 are connected to the bottom end of the tank body 11, the insulation layer 13 is installed on the tank body 11 and forms a sandwich with the tank body 11, the discharge pipe 14 is installed on the tank body 11 and communicates with the cavity inside the tank body 11, and the first valve 15 is installed on the discharge pipe 14; the sealing mechanism 02 includes four sets of guide rods 21, four sets of plugging heads 22, a movable plate 23, a sealing cover 24, two sets of supports 25, six sets of hydraulic cylinders 26 and a pressure gauge 27, the bottom ends of the four sets of guide rods 21 are connected to the tank body 11 The top of the four plugging heads 22 are connected to the top of the four guide rods 21 respectively, the movable plate 23 is slidably mounted on the four guide rods 21, the top of the sealing cover 24 is connected to the bottom of the movable plate 23, the two sets of supports 25 are mounted on the insulation layer 13, and three sets of hydraulic cylinders 26 are installed on each set of supports 25. The top of the six hydraulic cylinders 26 is connected to the bottom of the movable plate 23, and the pressure gauge 27 is installed on the movable plate 23; the stirring mechanism 03 includes a motor 31, a reducer 32, a transmission shaft 33 and two sets of scrapers 34. The bottom end of the motor 31 is connected to the top of the movable plate 23, the bottom end of the reducer 32 It is connected to the top of the movable plate 23, the transmission shaft 33 is rotatably mounted on the movable plate 23 and longitudinally connected to the reducer 32, and the two sets of scrapers 34 are mounted on the transmission shaft 33; the heat insulation mechanism 04 includes a first water pump 41, a water extraction pipe 42, a water delivery pipe 43, a return pipe 44 and a second valve 45, the first water pump 41 is mounted on the insulation layer 13, the water extraction pipe 42 is mounted on the first water pump 41, the water delivery pipe 43 is mounted on the first water pump 41 and communicates with the interior of the interlayer of the insulation layer 13, the return pipe 44 is mounted on the insulation layer 13 and communicates with the interior of the interlayer of the insulation layer 13, and the second valve 45 is mounted on the return pipe 44;During operation, first, the staff adds the adhesive into the cavity of the tank body 11 through the feed port of the tank body 11, and the six groups of hydraulic cylinders 26 pull the movable plate 23 downward to make the sealing cover 24 seal the feed port of the tank body 11 to prevent the outside air from entering. By setting four groups of blocking heads 22, the movable plate 23 is prevented from falling off. By setting a pressure gauge 27, the pressure in the cavity of the tank body 11 is detected to prevent the adhesive from deteriorating and expanding. The water pumping pipe 42 is connected to the water source, and the first water pump 41 is started. The first water pump 41 pumps water and transports the water to the interlayer of the thermal insulation layer 13 through the water pipe 43, and uses water to isolate the cavity of the tank body 11 from the outside world. The large heat capacity ratio of water is used to keep the tank body 11 1. When the adhesive needs to be discharged, the motor 31 is started. The motor 31 rotates the drive shaft 33 via the reducer 32. The drive shaft 33 then rotates two sets of scrapers 34. The scrapers 34 are spiral and tangential to the inner wall of the tank 11. The scrapers 34 rotate downward to squeeze the adhesive, accelerating its discharge and preventing it from adhering to the inner wall of the tank 11. The first valve 15 is opened, and the adhesive in the tank 11 is discharged through the discharge pipe 14. The four sets of universal wheels 12 facilitate movement of the tank 11. After the adhesive is discharged, the second valve 45 is opened, and the water in the interlayer is transported to the flushing mechanism 05 through the return pipe 44. Example

[0021] like Figures 1 to 5As shown, the utility model is a supermolecular adhesive storage tank resistant to ultra-low temperature and organic solvent combination, based on Example 1; the flushing mechanism 05 includes a mixing box 51, a dosing hopper 52, a third valve 53, a second water pump 54, a water hose 55, a connecting pipe 56 and multiple groups of high-pressure nozzles 57, the mixing box 51 is installed on the insulation layer 13, the interior of the mixing box 51 is provided with an inner cavity, the dosing hopper 52 is installed at the top of the insulation layer 13 and communicates with the inner cavity of the mixing box 51, the third valve 53 is installed on the dosing hopper 52, the bottom end of the second water pump 54 is connected to the top of the movable plate 23, the water hose 55 is installed on the mixing box 51 and Go deep into the inner cavity of the mixing box 51, the connecting pipe 56 is installed on the second water pump 54, and multiple groups of high-pressure nozzles 57 are installed on the sealing cover 24 and are connected to the inside of the connecting pipe 56; when it is working, first, the staff adds the adhesive into the cavity of the tank body 11 through the feed port of the tank body 11, and the six groups of hydraulic cylinders 26 pull the movable plate 23 downward to make the sealing cover 24 block the feed port of the tank body 11 to prevent outside air from entering. By setting four groups of blocking heads 22, the movable plate 23 is prevented from falling off. By setting a pressure gauge 27, the pressure in the cavity of the tank body 11 is detected to prevent the adhesive from deteriorating and expanding. The water pumping pipe 42 is connected to the water source and started. The first water pump 41 pumps water and delivers it to the interlayer of the thermal insulation layer 13 through the water pipe 43, and uses water to isolate the cavity of the tank body 11 from the outside world. The high heat capacity ratio of water is used to maintain a low temperature environment in the cavity of the tank body 11. When the adhesive needs to be discharged, the motor 31 is started, and the motor 31 drives the transmission shaft 33 to rotate through the reducer 32. The transmission shaft 33 drives two sets of scrapers 34 to rotate. The scrapers 34 are spiral and tangential to the inner wall of the cavity of the tank body 11. The scrapers 34 rotate downward to squeeze the adhesive, accelerate the discharge of the adhesive, and prevent the adhesive from adhering to the inner wall of the cavity of the tank body 11. The first valve 15 is opened, and the tank The adhesive in the cavity of 11 is discharged through the discharge pipe 14. Four sets of universal wheels 12 are provided to facilitate the staff to move the tank body 11. When the adhesive is discharged, the second valve 45 is opened, and the water in the interlayer is transported to the inner cavity of the mixing box 51 through the return pipe 44. The staff opens the third valve 53 and transports the cleaning agent to the inner cavity of the mixing box 51 through the dosing hopper 52, and then starts the second water pump 54. The second water pump 54 extracts the cleaning agent in the inner cavity of the mixing box 51 through the water hose 55, and then transports it to multiple sets of high-pressure nozzles 57 through the connecting pipe 56. The high-pressure nozzles 57 flush the cavity of the tank body 11 and the two sets of scrapers 34.

[0022] The electric motor 31, reducer 32, first water pump 41 and second water pump 54 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 creative work by technicians in this field.

[0023] 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. A supermolecular adhesive storage tank resistant to ultra-low temperature and organic solvent, comprising a storage tank (01); characterized in that: The invention also includes a sealing mechanism (02), a stirring mechanism (03), a heat insulating mechanism (04) and a flushing mechanism (05), wherein the sealing mechanism (02) is mounted on the storage tank (01) and seals the storage tank (01), the stirring mechanism (03) is mounted on the sealing mechanism (02) and stirs the adhesive, the heat insulating mechanism (04) is mounted on the storage tank (01) and enhances the heat insulation effect of the storage tank (01), and the flushing mechanism (05) is mounted on the heat insulating mechanism (04) and flushes the storage tank (01).

2. The ultra-low temperature resistant and organic solvent combined supramolecular adhesive storage tank according to claim 1, characterized in that: The storage tank (01) includes a tank body (11), four sets of universal wheels (12), an insulation layer (13), a discharge pipe (14) and a first valve (15). A cavity is provided inside the tank body (11), and a feed port is provided at the top end of the tank body (11). The top ends of the four sets of universal wheels (12) are connected to the bottom end of the tank body (11). The insulation layer (13) is installed on the tank body (11) and forms a sandwich layer with the tank body (11). The discharge pipe (14) is installed on the tank body (11) and communicates with the inside of the cavity of the tank body (11). The first valve (15) is installed on the discharge pipe (14).

3. The ultra-low temperature resistant and organic solvent combined supramolecular adhesive storage tank according to claim 2, characterized in that: The sealing mechanism (02) includes four groups of guide rods (21), four groups of plugging heads (22), a movable plate (23), a sealing cover (24), two groups of supports (25), six groups of hydraulic cylinders (26) and a pressure gauge (27). The bottom ends of the four groups of guide rods (21) are connected to the top end of the tank body (11), the bottom ends of the four groups of plugging heads (22) are respectively connected to the top ends of the four groups of guide rods (21), the movable plate (23) is slidably mounted on the four groups of guide rods (21), the top end of the sealing cover (24) is connected to the bottom end of the movable plate (23), the two groups of supports (25) are both mounted on the insulation layer (13), three groups of hydraulic cylinders (26) are mounted on each group of supports (25), the top ends of the six groups of hydraulic cylinders (26) are connected to the bottom end of the movable plate (23), and the pressure gauge (27) is mounted on the movable plate (23).

4. The ultra-low temperature resistant and organic solvent combined supramolecular adhesive storage tank according to claim 3, characterized in that: The stirring mechanism (03) includes a motor (31), a reducer (32), a transmission shaft (33) and two sets of scrapers (34). The bottom end of the motor (31) is connected to the top end of the movable plate (23), the bottom end of the reducer (32) is connected to the top end of the movable plate (23), the transmission shaft (33) is rotatably mounted on the movable plate (23) and longitudinally connected to the reducer (32), and the two sets of scrapers (34) are both mounted on the transmission shaft (33).

5. The ultra-low temperature resistant and organic solvent combined supramolecular adhesive storage tank according to claim 2, characterized in that: The heat insulation mechanism (04) includes a first water pump (41), a water pumping pipe (42), a water delivery pipe (43), a water return pipe (44) and a second valve (45). The first water pump (41) is installed on the insulation layer (13), the water pumping pipe (42) is installed on the first water pump (41), the water delivery pipe (43) is installed on the first water pump (41) and is communicated with the interior of the interlayer of the insulation layer (13), the water return pipe (44) is installed on the insulation layer (13) and is communicated with the interior of the interlayer of the insulation layer (13), and the second valve (45) is installed on the water return pipe (44).

6. The ultra-low temperature resistant and organic solvent combined supramolecular adhesive storage tank according to claim 3, characterized in that: The flushing mechanism (05) includes a mixing box (51), a dosing hopper (52), a third valve (53), a second water pump (54), a water hose (55), a connecting pipe (56) and a plurality of high-pressure nozzles (57). The mixing box (51) is mounted on the insulation layer (13). An inner cavity is provided inside the mixing box (51). The dosing hopper (52) is mounted on the top of the insulation layer (13) and communicates with the inner cavity of the mixing box (51). The third valve (53) is mounted on the dosing hopper (52). The bottom end of the second water pump (54) is connected to the top of the movable plate (23). The water hose (55) is mounted on the mixing box (51) and penetrates into the inner cavity of the mixing box (51). The connecting pipe (56) is mounted on the second water pump (54). The plurality of high-pressure nozzles (57) are all mounted on the sealing cover (24) and are all communicated with the inner cavity of the connecting pipe (56).

Citation Information

Patent Citations

  • Polyurethane adhesive storage tank

    CN219524969U