CN219003071U - Filtering structure and synthetic reaction kettle - Google Patents
Filtering structure and synthetic reaction kettle Download PDFInfo
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- CN219003071U CN219003071U CN202223474202.9U CN202223474202U CN219003071U CN 219003071 U CN219003071 U CN 219003071U CN 202223474202 U CN202223474202 U CN 202223474202U CN 219003071 U CN219003071 U CN 219003071U
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- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
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Abstract
The utility model discloses a filtering structure and a synthetic reaction kettle, which comprises a temperature control box and a reaction liner, wherein water outlet valves are arranged at the left and right ends of the lower part of the temperature control box, a first pipeline is arranged at the left and right sides of the upper part of the temperature control box, the reaction liner is arranged at the middle end of the inner part of the temperature control box, a stirring assembly is arranged at the middle end of the inner part of the reaction liner, an electromagnetic valve is arranged at the lower end of the reaction liner, a filtering assembly is arranged at the left side of the upper part of the inner part of the reaction liner, the filtering assembly comprises a second filtering liner, a second pipeline, a second screw and a mounting plate, and the upper end of the inner part of the filtering liner is connected with the second pipeline. This filtration compares with current filtration, impurity and caking in the raw materials can be filtered off, impurity and caking in the raw materials are avoided and the effect that the caking influences the reaction is avoided to can stir the raw materials in the reaction inner bag, accelerate the raw materials reaction, effectively improve the speed of raw materials reaction, but also can be convenient for operating personnel wash in the reaction inner bag.
Description
Technical Field
The utility model relates to the technical field of reaction kettles, in particular to a filtering structure and a synthetic reaction kettle.
Background
The synthetic reaction kettle is a normal pressure or pressure container which is applied to industries such as petroleum, chemical industry, rubber, pesticides, dyes, medicines, foods and the like and is used for completing the technological processes such as vulcanization, nitration, hydrogenation, chemical reaction, polymerization, condensation and the like, and is also called a polymerization kettle, a reactor, a decomposition pot and the like; the materials generally comprise carbon-manganese steel, stainless steel, knots, nickel-based (Harbour, monel, in Kang Nie) alloy and other composite materials, the stainless steel container with physical or chemical reaction is widely understood in the reaction kettle, the structural design and parameter configuration of the container are carried out according to different technological condition requirements, and the design conditions, processes, inspection, manufacture and acceptance are required to be according to relevant technical standards so as to realize the heating, evaporation, cooling and low-speed mixing reaction functions of technological requirements, and the reaction kettle is required to filter the raw materials of the reaction in the use process.
For example, the patent with publication number CN214916041U, named reaction kettle, is made up of charging barrel, driving motor and charging assembly; the feeding assembly comprises a feeding hole, a feeding pipe, a first electromagnetic valve and a controller, wherein the feeding hole is formed in the upper end of the feeding pipe, the first electromagnetic valve is formed in the upper side of the outer wall of the feeding pipe, and the controller is formed in the lower side of the outer wall of the feeding pipe; the feeding pipe is communicated with the upper end of the charging barrel, the driving motor is arranged at the upper end of the charging barrel and close to the feeding assembly, and the driving motor is electrically connected with the first electromagnetic valve and the controller. The controller controls the first electromagnetic valve at regular time to realize the purpose of adding the auxiliary agent at regular time.
In the using process of the patent, the raw materials are directly stirred for reaction, but the problem of raw material caking is ignored, and the filtering structure is lacked, so that the raw materials are subjected to technical innovation on the basis of the existing filtering structure under the condition that the caking influences the reaction effect of the raw materials in the reaction process.
Disclosure of Invention
The utility model aims to provide a filtering structure and a synthesis reaction kettle, which are used for solving the problems in the background technology.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides a filtration and synthetic reation kettle, includes temperature control box and reaction inner bag, both ends all are provided with the apovalve about the below of temperature control box, and the top left and right sides of temperature control box all is provided with pipeline one, the reaction inner bag sets up in the inside middle-end of temperature control box, and the inside middle-end of reaction inner bag is provided with stirring subassembly, the lower extreme of reaction inner bag is provided with the solenoid valve, and the inside top left side of reaction inner bag is provided with filtering component, filtering component includes filtering inner bag, pipeline two, screw two and mounting panel, the inside upper end of filtering inner bag is connected with pipeline two, and the upper end of filtering inner bag is provided with the mounting panel, screw two is worn to be equipped with on the inside right side of mounting panel, the inside middle-end of reaction inner bag is provided with stirring subassembly.
Further, the left side and the right side of the upper end of the temperature control box are respectively provided with a second connecting block, and bolts are arranged in the second connecting block in a penetrating mode.
Further, the inside of connecting block two is connected with connecting block one, and the upper end of connecting block one is provided with the top cap.
Further, rings are arranged on the left side and the right side of the upper end of the top cover, and a feeding port is arranged on the inner side of each ring.
Further, the inside lower extreme of top cap is provided with sealed pad, and the diameter of sealed pad is less than the internal diameter of top cap.
Further, the stirring assembly comprises a motor, a rotating shaft and a connecting piece, wherein the lower end of the motor is connected with the rotating shaft, and the connecting piece is arranged at the left end and the right end of the rotating shaft.
Further, stirring subassembly still includes screw one and stirring leaf, the rear end of connecting piece is connected with the stirring leaf, and the connecting piece is provided with nine, the mounting hole has been seted up to the inside of connecting piece, and the mounting hole is provided with four, screw one is worn to be equipped with in the inside of mounting hole, and screw one is provided with four.
A synthetic reaction kettle comprises a reaction kettle main body, wherein the filtering structure is arranged on the reaction kettle main body.
Compared with the prior art, the utility model has the beneficial effects that: this filtration can filter impurity and caking in the raw materials in the use, avoids impurity and caking in the raw materials to influence the effect of reaction to can stir the raw materials in the reaction inner bag for the raw materials reaction, effectively improve the speed of raw materials reaction, but also can be convenient for operating personnel wash in the reaction inner bag, effectively improve the suitability of reation kettle main part.
1. According to the utility model, through the arrangement of the feed inlet, the filter liner, the second pipeline, the second screw and the mounting plate, raw materials enter the filter liner through the feed inlet and the second pipeline to be filtered, impurities and caking in the raw materials are filtered, the effect that the impurities and caking in the raw materials influence the reaction is avoided, and the reaction efficiency of the reaction kettle main body is effectively improved.
2. According to the utility model, through the arrangement of the first pipeline, the temperature control box, the first screw and the stirring blade, hot water or ice water is added into the first pipeline to heat or cool the raw materials in the reaction liner, and then the motor drives the rotating shaft, the connecting piece and the stirring blade to rotate, so that the raw materials in the reaction liner are stirred, the raw material reaction is accelerated, and the raw material reaction speed is effectively improved.
Drawings
FIG. 1 is a schematic diagram of a filtration structure and a synthesis reactor in front cross-section;
FIG. 2 is an enlarged schematic view of the structure of FIG. 1A of a filtering structure and a synthesis reactor according to the present utility model;
FIG. 3 is a schematic diagram of a three-dimensional enlarged structure of a filter structure and a connecting piece of a synthesis reaction kettle.
In the figure: 1. a reaction kettle main body; 2. a temperature control box; 3. a water outlet valve; 4. a reaction liner; 5. an electromagnetic valve; 6. a first pipeline; 7. a stirring assembly; 701. a motor; 702. a rotating shaft; 703. a connecting piece; 704. a first screw; 705. stirring the leaves; 8. a sealing gasket; 9. a filter assembly; 901. a filter liner; 902. a second pipeline; 903. a second screw; 904. a mounting plate; 10. a top cover; 11. a first connecting block; 12. a bolt; 13. a second connecting block; 14. a hanging ring; 15. a feed inlet; 16. and (5) mounting holes.
Detailed Description
As shown in fig. 1, a filtering structure and a synthetic reaction kettle comprise a temperature control box 2 and a reaction inner container 4, wherein water outlet valves 3 are respectively arranged at the left and right ends of the lower part of the temperature control box 2, a first pipeline 903 is respectively arranged at the left and right sides of the upper part of the temperature control box 2, the reaction inner container 4 is arranged at the middle inner end of the temperature control box 2, a stirring assembly 7 is arranged at the middle inner end of the reaction inner container 4, an electromagnetic valve 5 is arranged at the lower end of the reaction inner container 4, a filtering assembly 9 is arranged at the left side of the upper inner part of the reaction inner container 4, the filtering assembly 9 comprises a filtering inner container 901, a second pipeline 902, a second screw 903 and a mounting plate 904, the upper inner end of the filtering inner container 901 is connected with a second pipeline 902, the upper end of the filtering inner container 901 is provided with the mounting plate 904, the second screw 903 is respectively arranged at the right side of the inner part of the mounting plate 904, the middle inner part of the reaction inner container 4 is provided with a stirring assembly 7, a second connecting block 13 is respectively arranged at the left and right side of the upper end of the temperature control box 2, a bolt 12 is respectively arranged at the inner part of the second 13, the inner part of the second block is provided, the raw materials enter the filtering inner container through a material inlet 15 and a second pipeline 902, the filtering inner material enters the filtering inner container and a filtering material through the second pipeline 902, filtering material, the filtering material is filtered by the filtering material and the filtering material is filtered by the main body, the filtering material efficiency is effectively improved, and the filtering material efficiency is prevented from caking, and the raw material is filtered by the main material is filtered and the reaction material is effectively removed;
as shown in fig. 2 and 3, the inner side of the second connecting block 13 is connected with a first connecting block 11, the upper end of the first connecting block 11 is provided with a top cover 10, the left side and the right side of the upper end of the top cover 10 are both provided with lifting rings 14, the inner side of the lifting rings 14 is provided with a feeding port 15, the inner lower end of the top cover 10 is provided with a sealing gasket 8, the diameter of the sealing gasket 8 is smaller than the inner diameter of the top cover 10, the stirring assembly 7 comprises a motor 701, a rotating shaft 702 and a connecting piece 703, the lower end of the motor 701 is connected with the rotating shaft 702, the left end and the right end of the rotating shaft 702 are both provided with the connecting piece 703, the stirring assembly 7 further comprises a first screw 704 and a stirring blade 705, the rear end of the connecting piece 703 is connected with the stirring blade 705, nine connecting pieces 703 are provided, the inside of the connecting piece 703 is provided with mounting holes 16, four mounting holes 16 are internally provided with a first screw 704, the first screw 704 is provided with four, the hot water or ice water is added into the temperature control box 2 through the first pipeline 6 to heat or cool the raw materials in the reaction liner 4, the motor 701 drives the rotating shaft 702, the connecting piece 703 and the stirring blade 705 to rotate, the raw materials in the reaction liner 4 are stirred, raw material reaction is accelerated, the raw material reaction speed is effectively improved, an operator rotates in the first connecting block 11 and the second connecting block 13 through screwing the bolt 12, the first connecting block 11 is separated from the second connecting block 13, the top cover 10 is separated from the second connecting block 13 and the reaction liner 4 through pulling the lifting ring 14, and then the sealing gasket 8, the rotating shaft 702, the filtering liner 901 and the stirring blade 705 are driven to separate from the reaction liner 4, so that the operator can clean the reaction liner 4, and the applicability of the reaction kettle main body 1 is effectively improved.
A synthetic reaction kettle, which comprises a reaction kettle main body 1, wherein the reaction kettle main body 1 is provided with the filtering structure.
Working principle: when the filtering structure and the synthetic reaction kettle are used, firstly, an operator installs the filtering liner 901 through the mounting plate 904 and the sealing gasket 8 by screwing the screw II 903, then the operator installs the rotating shaft 702 and the sealing gasket 8, then the operator rotates the connecting piece 703 through the mounting hole 16 by screwing the screw I704, thereby installing the stirring blade 705 and the rotating shaft 702, then the operator rotates the connecting block I11 and the connecting block II 13 through screwing the bolt 12, thereby installing the top cover 10, the sealing gasket 8, the rotating shaft 702 and the stirring blade 705, the reaction liner 4 and the temperature control box 2, then the operator adds raw materials into the reaction liner 4 through the feeding hole 15, the raw materials flow into the filtering liner 901 through the pipeline II 902 for filtering, then the operator adds hot water or cold water into the temperature control box 2 through the pipeline I6, heating or cooling raw materials in the reaction liner 4 to enable the raw materials in the reaction liner 4 to react, then opening a motor 701 to drive a rotating shaft 702, a connecting piece 703 and a stirring blade 705 to rotate, stirring the raw materials in the reaction liner 4 to accelerate raw material reaction, opening an electromagnetic valve 5 to discharge the raw materials in the reaction liner 4, opening a water outlet valve 3 to discharge water in a temperature control box 2, finally driving a bolt 12 to rotate in a connecting block I11 and a connecting block II 13 to enable the connecting block I11 to be separated from the connecting block II 13, pulling a lifting ring 14 to enable a top cover 10 to be separated from the connecting block II 13 and the reaction liner 4, and further driving a sealing gasket 8, the rotating shaft 702, a filtering liner 901 and the stirring blade 705 to be separated from the reaction liner 4, the operator then cleans the interior of the reaction liner 4.
Claims (8)
1. The utility model provides a filtering structure, includes temperature control box (2) and reaction inner bag (4), its characterized in that, both ends all are provided with outlet valve (3) about the below of temperature control box (2), and the top left and right sides of temperature control box (2) all is provided with pipeline one (6), reaction inner bag (4) set up in the inside middle-end of temperature control box (2), and the inside middle-end of reaction inner bag (4) is provided with stirring subassembly (7), the lower extreme of reaction inner bag (4) is provided with solenoid valve (5), and the inside top left side of reaction inner bag (4) is provided with filtering component (9), filtering component (9) are including filtering inner bag (901), pipeline two (902), screw two (903) and mounting panel (904), the inside upper end of filtering inner bag (901) is connected with pipeline two (902), and the upper end of filtering inner bag (901) is provided with mounting panel (904), inside right side of mounting panel (904) is worn to be provided with screw two (903), in the inside of reaction inner bag (4) is provided with stirring subassembly (7).
2. The filtering structure according to claim 1, wherein the two connecting blocks (13) are arranged on the left side and the right side of the upper end of the temperature control box (2), and bolts (12) are arranged inside the two connecting blocks (13) in a penetrating manner.
3. A filter structure according to claim 2, wherein the inner side of the second connecting block (13) is connected with the first connecting block (11), and the upper end of the first connecting block (11) is provided with a top cover (10).
4. A filtering structure according to claim 3, wherein the left and right sides of the upper end of the top cover (10) are provided with hanging rings (14), and the inner side of the hanging rings (14) is provided with a feed inlet (15).
5. A filter arrangement according to claim 3, characterized in that the inner lower end of the top cap (10) is provided with a gasket (8), and that the diameter of the gasket (8) is smaller than the inner diameter of the top cap (10).
6. The filtering structure according to claim 1, wherein the stirring assembly (7) comprises a motor (701), a rotating shaft (702) and a connecting piece (703), the rotating shaft (702) is connected to the lower end of the motor (701), and the connecting pieces (703) are arranged at the left end and the right end of the rotating shaft (702).
7. The filtering structure according to claim 6, wherein the stirring assembly (7) further comprises a first screw (704) and a stirring blade (705), the rear end of the connecting piece (703) is connected with the stirring blade (705), nine connecting pieces (703) are arranged, mounting holes (16) are formed in the connecting pieces (703), four mounting holes (16) are formed in the mounting holes (16), the first screw (704) is arranged in the mounting holes (16) in a penetrating mode, and the first screw (704) is arranged in the four mounting holes.
8. A synthesis reaction kettle, comprising a reaction kettle main body (1), wherein the reaction kettle main body (1) is provided with the filtering structure as claimed in any one of claims 1 to 7.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202223474202.9U CN219003071U (en) | 2022-12-26 | 2022-12-26 | Filtering structure and synthetic reaction kettle |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202223474202.9U CN219003071U (en) | 2022-12-26 | 2022-12-26 | Filtering structure and synthetic reaction kettle |
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CN219003071U true CN219003071U (en) | 2023-05-12 |
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CN202223474202.9U Active CN219003071U (en) | 2022-12-26 | 2022-12-26 | Filtering structure and synthetic reaction kettle |
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2022
- 2022-12-26 CN CN202223474202.9U patent/CN219003071U/en active Active
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