Epoxy AB glue production reaction kettle
By employing a dual-function system of internal and external heating and cooling in the epoxy AB adhesive production reactor, the problem of uneven heat transfer was solved, production efficiency and product quality were improved, and temperature uniformity and reaction stability were ensured.
Patent Information
- Application Number
- CN202423267951.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2034-12-30
AI Technical Summary
In the existing reaction vessels, uneven heat transfer occurs during the production of epoxy resin and hardener, affecting the speed and efficiency of the chemical reaction.
An epoxy AB glue production reactor was designed, which adopts the dual functions of internal and external heating and internal and external cooling. By setting multiple liquid storage chambers inside the reactor and combining them with water inlet and drain pipes, the coolant or heating medium can circulate in the liquid storage chambers. The vortex tube generates hot and cold airflows, which are introduced into the conveying chamber of the rotating rod through a three-way pipe and a rotary joint to achieve uniform heating or cooling of the material.
This achieves a more uniform temperature in chemical reactions, improves production efficiency, avoids local overheating or overcooling, ensures product stability and consistency, and shortens the time to reach ideal reaction conditions.
Smart Images

Figure CN223641842U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of reaction kettle, specifically, relate to a epoxy AB glue production reaction kettle. BACKGROUND
[0002] Epoxy AB glue is a two-component (two-part) epoxy resin adhesive, usually composed of epoxy resin (A component) and hardener (B component), when the two components are mixed in a certain proportion, chemical reaction and curing will occur to form a solid thermosetting plastic material, the production of epoxy AB glue is usually carried out in a specially designed reaction kettle, which is a key equipment for chemical reaction and mixing process.
[0003] Epoxy resin (A component) and hardener (B component) are usually produced separately, and in production, separate reaction kettles are needed for processing, and during processing, due to the addition of different additives to epoxy resin (A component) and hardener (B component), the viscosity of epoxy resin (A component) increases and the viscosity of hardener (B component) decreases, that is, epoxy resin (A component) has high initial viscosity, which will increase the viscosity in low temperature environment, thereby being not conducive to stirring and mixing, while the hardener (B component) will generate heat when the additive is added (such as a certain amount of heat generated by mixing amine hardener and accelerator), and the heat will reduce the viscosity, so separate process treatment is needed during the production of epoxy resin (A component) and hardener (B component), and the existing reaction kettle can only heat or cool a single position during the production of epoxy resin (A component) and hardener (B component), which limits the uniformity of heat transfer, thereby affecting the speed and efficiency of chemical reaction. SUMMARY
[0004] In view of the problems in the related art, the utility model provides an epoxy AB glue production reaction kettle to overcome the above technical problems existing in the prior art.
[0005] Therefore, the utility model adopts the specific technical scheme as follows:
[0006] An epoxy AB glue production reaction kettle, comprising a box body, a first processing assembly is arranged at both ends of the box body, a second processing assembly is arranged at one end of the first processing assembly inside the box body, a controller is fixedly arranged on one side of the box body, the first processing assembly comprises a plurality of processing cavities, the processing cavities are arranged in the middle part of the box body, a plurality of feeding pipes are connected to the upper end of the processing cavities, a discharging pipe is connected to the bottom end of the processing cavities, the second processing assembly comprises a plurality of liquid storage cavities, the liquid storage cavities are arranged in the middle part of the box body, a water inlet pipe and a drain pipe are connected to both sides of the box body respectively, and the water inlet pipe and the drain pipe are in communication with the liquid storage cavities.
[0007] Further, in order to better ensure the adjustment effect, the side of the box is provided with motor one and motor two through mounting frame one, the output shafts of the motor one and the motor two are provided with first adjustment wheels, the first adjustment wheels are connected with a transmission belt, the transmission belt is connected with a plurality of second adjustment wheels, and the second adjustment wheels are provided with first rotating rods and second rotating rods.
[0008] Further, in order to better ensure the mixing reaction effect, one end of the first rotating rod and the second rotating rod extends to the inside of the treatment cavity, the inside of the treatment cavity is provided with a bearing seat, and the first rotating rod and the second rotating rod are arranged on the bearing seat, and a plurality of first treatment blades and a plurality of second treatment blades are connected on the first rotating rod and the second rotating rod, wherein one side of the three groups of first treatment blades and second treatment blades is provided with a cleaning plate, and the cleaning plate is in contact with the treatment cavity.
[0009] Further, in order to better ensure the heating and cooling effect, the side of the box is provided with a compression pump through a fixing seat, the input end of the compression pump is connected with a collection filter cartridge, and the collection filter cartridge is arranged on the side of the box through a mounting frame two, and the output end of the compression pump is connected with a vortex tube.
[0010] Further, in order to better ensure the conveying effect, the cold end and the hot end of the vortex tube are respectively connected with three-way pipe one and three-way pipe two, the two ends of the three-way pipe one and the three-way pipe two are connected with a rotating joint, one end of the rotating joint is connected to one end of the first rotating rod and the second rotating rod, a plurality of conveying pipes are connected on the three-way pipe one and the three-way pipe two, and the conveying pipes are in communication with the liquid storage cavity.
[0011] Further, in order to better ensure the conveying effect of different positions, the second treatment assembly includes two conveying cavities one and two, the conveying cavities one are arranged at one end of the first rotating rod and the second rotating rod, and the two conveying cavities one are respectively in communication with the interiors of the three-way pipe one and the three-way pipe two, the conveying cavity two is arranged in the interiors of the first treatment blade and the second treatment blade, and the conveying cavity two is in communication with the conveying cavity one.
[0012] Further, in order to better monitor, the upper end of the box is provided with a temperature sensor and a pressure sensor, and one end of the temperature sensor and the pressure sensor extends to the inside of the treatment cavity.
[0013] The utility model discloses a beneficial effect: through setting up first processing assembly and second processing assembly mutual cooperation, realized the double function of internal and external heating and internal and external cooling, thereby the production efficiency and product quality have been improved significantly, the traditional reaction kettle can only heat or cooling processing to single position, this leads to the problem of uneven heat transfer, the speed and efficiency of chemical reaction have been affected, compared with, through setting up multiple liquid storage cavities in the box body, and combining inlet pipe and drain pipe, make cooling liquid or heating medium can circulate in the liquid storage cavity, ensure that the temperature in the whole reaction space is more uniform, through the vortex pipe can produce cold and hot airflow, through the three -way pipe and swivel joint cold and hot airflow is introduced to the delivery cavity one and delivery cavity two of first rotating rod and second rotating rod respectively, make heat gas or cooling gas diffusion to whole processing cavity, realize the internal heating or cooling of material, this internal and external combination temperature control mode not only speeds up the reaction rate, improves production efficiency, and avoids the local overheating or supercooling phenomenon, reduces the risk of material degradation, guarantees the stability and consistency of product, simultaneously, the uniform temperature distribution also shortens the time required to reach ideal reaction condition. BRIEF DESCRIPTION OF DRAWINGS
[0014] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or prior art, the following will briefly introduce the drawings needed to be used in the embodiments, obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can also be obtained according to these drawings without creative labor.
[0015] Figure 1 It is a structure of the epoxy AB glue production reaction kettle according to the utility model embodiment;
[0016] Figure 2 It is a structure of the epoxy AB glue production reaction kettle according to the utility model embodiment;
[0017] Figure 3 It is a structure of the epoxy AB glue production reaction kettle according to the utility model embodiment;
[0018] Figure 4 It is a first processing assembly structure diagram of the epoxy AB glue production reaction kettle according to the utility model embodiment;
[0019] Figure 5 It is a first processing assembly structure diagram of the epoxy AB glue production reaction kettle according to the utility model embodiment;
[0020] Figure 6 It is a second processing assembly structure side sectional view of the epoxy AB glue production reaction kettle according to the utility model embodiment;
[0021] Figure 7 It is a second processing assembly internal structure diagram of an epoxy AB glue production reaction kettle according to an embodiment of the utility model;
[0022] Figure 8 It is a second processing assembly partial structure diagram of an epoxy AB glue production reaction kettle according to an embodiment of the utility model;
[0023] Figure 9 It is a second processing assembly structure exploded view of an epoxy AB glue production reaction kettle according to an embodiment of the utility model;
[0024] Figure 10 It is a second processing assembly partial structure diagram of an epoxy AB glue production reaction kettle according to an embodiment of the utility model;
[0025] Figure 11 It is Figure 10 The enlarged view in A of Fig. 1.
[0026] Reference signs:
[0027] 1, box; 2, first processing assembly; 201, processing cavity; 202, feeding pipe; 203, discharging pipe; 204, motor one; 205, motor two; 206, first adjusting wheel; 207, transmission belt; 208, second adjusting wheel; 209, first rotating rod; 210, second rotating rod; 211, first processing blade; 212, second processing blade; 213, cleaning plate; 3, second processing assembly; 301, liquid storage cavity; 302, water inlet pipe; 303, drain pipe; 304, compression pump; 305, collection filter cartridge; 306, vortex pipe; 307, three-way pipe one; 308, three-way pipe two; 309, rotary joint; 310, conveying cavity one; 311, conveying cavity two; 312, conveying pipe; 4, controller; 5, bearing seat; 6, temperature sensor; 7, pressure sensor. DETAILED DESCRIPTION
[0028] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0029] Please refer to Figure 1 - Figure 11 As shown in Fig. 1, an epoxy AB glue production reaction kettle according to an embodiment of the utility model comprises a box 1, the two ends of the box 1 are provided with a first processing assembly 2 for ensuring the reaction effect of epoxy AB glue, and a controller 4 is fixedly arranged on one side of the box 1.
[0030] The first processing component 2 includes two processing chambers 201, which are located in the middle of the housing 1. A temperature sensor 6 and a pressure sensor 7 are installed at the upper end of the housing 1 to monitor the temperature and pressure inside the processing chambers 201. One end of the temperature sensor 6 and the pressure sensor 7 extends into the interior of the processing chambers 201. Two feed pipes 202 are connected to the upper end of the processing chambers 201 for conveying the epoxy AB adhesive material and additives. The feed pipes 202 are connected to external conveying equipment during actual use. A discharge pipe 203 is connected to the bottom end of the processing chambers 201, and a control valve is installed on the discharge pipe 203. A motor 1 204 and a motor 205 are mounted on one side of the housing 1 via a mounting bracket. The output shafts of motor 1 204 and motor 205 are... A first adjusting wheel 206 is provided, and a transmission belt 207 is connected to the first adjusting wheel 206. Two second adjusting wheels 208 are connected to the transmission belt 207. A first rotating rod 209 and a second rotating rod 210 are provided on the second adjusting wheel 208. One end of the first rotating rod 209 and the second rotating rod 210 extends into the interior of the processing chamber 201. A bearing seat 5 is provided inside the processing chamber 201, and the first rotating rod 209 and the second rotating rod 210 are mounted on the bearing seat 5. Multiple first processing blades 211 and multiple second processing blades 212 are connected to the first rotating rod 209 and the second rotating rod 210. A cleaning plate 213 is provided on one side of the three sets of first processing blades 211 and second processing blades 212, and the cleaning plate 213 is in contact with the processing chamber 201.
[0031] like Figure 1 - Figure 11 As shown, a second processing component 3 is provided inside the housing 1 and at one end of the first processing component 2, and a controller 4 is fixedly provided on one side of the housing 1.
[0032] The second processing component 3 includes two liquid storage chambers 301, which are located in the middle of the housing 1. An inlet pipe 302 and a drain pipe 303 are connected to the two sides of the housing 1, respectively. Control valves are installed on the inlet pipe 302 and the drain pipe 303, and both are connected to the liquid storage chambers 301. A compression pump 304 is mounted on one side of the housing 1 via a fixed base. A collection filter cartridge 305 is connected to the input end of the compression pump 304, and the collection filter cartridge 305 is mounted on one side of the housing 1 via a mounting bracket. The output end of the compression pump 304 is connected to a vortex tube 306, which is an existing type. The conventional structure, not shown in detail, has a vortex tube 306 with its hot and cold ends connected to a first tee tube 307 and a second tee tube 308, respectively. Rotary joints 309 are connected to both ends of the first tee tube 307 and the second tee tube 308. One end of the rotary joint 309 is connected to one end of the first rotating rod 209 and the second rotating rod 210. Multiple delivery pipes 312 are connected to the first tee tube 307 and the second tee tube 308. In actual use, one end of the delivery pipe 312 is equipped with a one-way valve (not shown in detail in the figure) to prevent backflow of the liquid medium. The delivery pipe 312 is connected to the liquid storage chamber 301.
[0033] The second processing component 3 includes two conveying chambers 310 and 311. The first conveying chamber 310 is opened at one end of the first rotating rod 209 and the second rotating rod 210, and the two conveying chambers 310 are respectively connected to the interior of the first three-way pipe 307 and the second three-way pipe 308. The second conveying chamber 311 is opened inside the first processing blade 211 and the second processing blade 212, and the second conveying chamber 311 is connected to the first conveying chamber 310.
[0034] In actual use, the processing chamber 201 and the liquid storage chamber 301 are connected to pressure relief valves (not shown in detail in the figure) for relieving gas pressure.
[0035] In summary, with the help of the above-mentioned technical solution of this utility model, before the production process begins, the controller 4 sets the required process parameters, such as temperature and pressure. The materials (epoxy resin and hardener) are fed into the processing chamber 201 through the feed pipe 202. Then, the controller 4 causes the first motor 204 and the second motor 205 to have their output shafts connected to two second adjusting wheels 208 via a transmission belt 207. This drives the first rotating rod 209 and the second rotating rod 210 to rotate in opposite directions. The first rotating rod 209 and the second rotating rod 210 are equipped with first processing blades 211 and second processing blades 212. During rotation, the materials can be fully mixed to promote the chemical reaction. At the same time, the first processing blades 211 and the second processing blades 212 are equipped with cleaning plates 213 to help prevent materials from adhering to the wall of the processing chamber 201 and ensure the cleanliness of the inner wall of the reactor. The temperature sensor 6 and the pressure sensor 7 monitor the temperature and pressure inside the processing chamber 201 in real time. The data is fed back to the controller 4 to maintain optimal reaction conditions. The compressor pump 304 draws gaseous medium from the collection filter cartridge 305 and generates hot and cold airflows through the vortex tube 306. The hot and cold ends are connected to the first three-way pipe 307 and the second three-way pipe 308, respectively. The energy is then transferred to the conveying chamber 310 and the second conveying chamber 311 inside the first rotating rod 209 and the second rotating rod 210 through the rotary joint 309. The energy is then indirectly conducted to the processing chamber 201 to process the epoxy resin and hardener inside the processing chamber 201. When the hot and cold gaseous medium enters the first three-way pipe 307 and the second three-way pipe 308, the hot and cold gaseous medium is also diverted to the conveying pipe 312. The hot and cold gas in the conveying pipe 312 enters the interior of the liquid storage chamber 301 to heat and cool the liquid medium, further assisting in temperature control. By realizing the dual functions of internal and external heating and internal and external cooling, the production efficiency and product quality are significantly improved. After the reaction is completed, the generated epoxy AB glue is discharged through the discharge pipe 203, ready for use in subsequent processes.
[0036] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A reaction vessel for producing epoxy AB adhesive, characterized in that, Includes a housing (1), with a first processing component (2) at both ends of the housing (1), a second processing component (3) at the interior of the housing (1) and at one end of the first processing component (2), and a controller (4) fixedly installed on one side of the housing (1); The first processing component (2) includes multiple processing chambers (201), which are located in the middle of the housing (1). Multiple feed pipes (202) are connected to the upper end of the processing chamber (201), and a discharge pipe (203) is connected to the bottom end of the processing chamber (201). The second processing component (3) includes multiple liquid storage chambers (301), which are located in the middle of the box body (1). The two sides of the box body (1) are respectively connected to a water inlet pipe (302) and a drain pipe (303), and the water inlet pipe (302) and the drain pipe (303) are connected to the liquid storage chambers (301).
2. The epoxy AB adhesive production reactor according to claim 1, characterized in that, One side of the housing (1) is provided with a motor (204) and a motor (205) via a mounting bracket. The output shafts of the motor (204) and the motor (205) are provided with a first adjusting wheel (206). A transmission belt (207) is connected to the first adjusting wheel (206). A plurality of second adjusting wheels (208) are connected to the transmission belt (207). A first rotating rod (209) and a second rotating rod (210) are provided on the second adjusting wheel (208).
3. The epoxy AB adhesive production reactor according to claim 2, characterized in that, One end of the first rotating rod (209) and the second rotating rod (210) extends into the interior of the processing cavity (201). The interior of the processing cavity (201) is provided with a bearing seat (5), and the first rotating rod (209) and the second rotating rod (210) are disposed on the bearing seat (5). A plurality of first processing blades (211) and a plurality of second processing blades (212) are connected to the first rotating rod (209) and the second rotating rod (210). A cleaning plate (213) is provided on one side of the three sets of first processing blades (211) and second processing blades (212), and the cleaning plate (213) is in contact with the processing cavity (201).
4. The epoxy AB adhesive production reactor according to claim 3, characterized in that, A compression pump (304) is installed on one side of the housing (1) via a fixed base. The input end of the compression pump (304) is connected to a collection filter cartridge (305), and the collection filter cartridge (305) is installed on one side of the housing (1) via a mounting bracket. The output end of the compression pump (304) is connected to a vortex tube (306).
5. The epoxy AB adhesive production reactor according to claim 4, characterized in that, The hot and cold ends of the vortex tube (306) are respectively connected to a three-way pipe one (307) and a three-way pipe two (308). The two ends of the three-way pipe one (307) and the three-way pipe two (308) are connected to a rotary joint (309). One end of the rotary joint (309) is connected to one end of the first rotating rod (209) and the second rotating rod (210). Multiple delivery pipes (312) are connected to the three-way pipe one (307) and the three-way pipe two (308), and the delivery pipes (312) are connected to the liquid storage chamber (301).
6. The epoxy AB adhesive production reactor according to claim 5, characterized in that, The second processing component (3) includes two conveying chambers: a first conveying chamber (310) and a second conveying chamber (311). The first conveying chamber (310) is located at one end of the first rotating rod (209) and the second rotating rod (210), and the two first conveying chambers (310) are respectively connected to the interior of the first three-way pipe (307) and the second three-way pipe (308). The second conveying chamber (311) is located inside the first processing blade (211) and the second processing blade (212), and the second conveying chamber (311) is connected to the first conveying chamber (310).
7. The epoxy AB adhesive production reactor according to claim 1, characterized in that, A temperature sensor (6) and a pressure sensor (7) are provided at the upper end of the housing (1), and one end of the temperature sensor (6) and the pressure sensor (7) extends into the interior of the processing chamber (201).