Reaction kettle bracket with various airflow pipelines capable of being introduced
The reaction furnace support structure with multiple gas flow conduits addresses the challenge of cleaning large filter boards by using compressed air to dislodge blockages, improving maintenance efficiency.
Patent Information
- Application Number
- CN202422033828.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-20
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-08-20
AI Technical Summary
The filter plate of the existing reactor is difficult to clean after being blocked, resulting in inconvenience in cleaning.
A reactor bracket with multiple airflow pipes is designed to clean the filter plate with steam and compressed air, and quickly clean it through the airflow shock and the structural design of the filter mesh.
It realizes rapid cleaning of the filter plate in the reactor, improving cleaning efficiency and convenience.
Smart Images

Figure CN223096759U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of chemical engineering, and particularly relates to a reaction kettle support with pipelines capable of introducing various airflows. Background Art
[0002] Generally understood, a reaction kettle is a stainless-steel container for physical or chemical reactions. The structural design and parameter configuration of the container are carried out according to different process condition requirements. The design conditions, processes, inspections, manufacturing, and acceptance should be based on relevant technical standards to achieve the heating, evaporation, cooling, and mixing reactions at low and high speeds required by the process. According to the usage requirements, a filter plate is generally installed inside the reaction kettle. Since the reaction kettle is relatively large in volume, once the filter plate inside the reaction kettle is blocked, it is difficult to clean, with great cleaning difficulty and inconvenient use. Content of the Utility Model
[0003] This part of the content of this application is used to briefly introduce the concepts, which will be described in detail in the following specific implementation part. This part of the content of this application is not intended to identify the key features or essential features of the claimed technical solution, nor is it intended to limit the scope of the claimed technical solution.
[0004] In order to overcome the deficiencies of the prior art, the utility model provides a reaction kettle support with pipelines capable of introducing various airflows.
[0005] In order to achieve the above purpose, the utility model adopts the following technical solutions: a reaction kettle support with pipelines capable of introducing various airflows, including a support body, an air delivery pipe, and a filter screen. The air delivery pipe passes through the support body, and the filter screen is arranged inside the support body. The support body is of a funnel-shaped structure. The air delivery pipe can introduce steam or compressed air and is located below the filter screen.
[0006] Furthermore, a first connecting rod is arranged on the inner wall of the support body. A connecting column is arranged on the first connecting rod, and a movable rod is arranged on the connecting column. The filter screen is connected to the movable rod.
[0007] Furthermore, a first movable groove is arranged on the connecting column, the movable rod is located in the first movable groove, and a connecting rope is arranged on the movable rod. One end of the connecting rope is fixedly connected to the filter screen.
[0008] Furthermore, a material receiving plate is arranged on the inner wall of the support body. The material receiving plate is inclined and in a ring structure and is located below the filter screen. A waste box is arranged on the side wall of the support body, and a plurality of through grooves communicating the material receiving plate and the waste box are arranged on the support body.
[0009] Furthermore, a baffle is arranged on the support body. The baffle is movably connected to the support body and covers the through groove.
[0010] Further, an extension rod is provided at the bottom of the movable rod. The extension rod passes through the bottom of the first movable groove, and an air gathering hood is provided at the bottom of the extension rod.
[0011] Further, a first air outlet and a second air outlet are provided on the air delivery pipe. The first air outlet is arranged below the air gathering hood, a first electromagnetic valve is arranged in the first air outlet, and a second electromagnetic valve is arranged in the second air outlet.
[0012] Further, a second movable groove is provided on the side wall of the movable rod. A fixed block is arranged in the second movable groove. A first connecting spring is arranged on the fixed block. One end of the first connecting spring is fixedly connected to the inner wall of the second movable groove, and a fixed groove corresponding to the fixed block is arranged on the inner wall of the first movable groove.
[0013] Further, a sleeve is sleeved on the second air outlet. A plurality of branch pipes are arranged on the sleeve, and a plurality of air injection holes are arranged on the branch pipes.
[0014] Further, a second connecting rod is arranged in the sleeve. A plurality of blades are arranged on the second connecting rod. The sleeve is rotatably connected to the second air outlet.
[0015] The beneficial effect of the utility model is: to provide a reaction kettle support with a plurality of air flow pipes that can be introduced, which can quickly clean the filter plate in the reaction kettle by using compressed air. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The drawings forming a part of this application are used to provide a further understanding of this application, making other features, objects, and advantages of this application more obvious. The schematic embodiments and descriptions thereof of this application are used to explain this application and do not constitute an improper limitation of this application.
[0017] In addition, throughout the drawings, the same or similar reference numerals represent the same or similar elements. It should be understood that the drawings are schematic and the elements and components are not necessarily drawn to scale.
[0018] In the drawings:
[0019] Figure 1 is a schematic structural diagram of a reaction kettle support with a plurality of air flow pipes that can be introduced in an embodiment of the utility model.
[0020] Figure 2 is Figure 1 the sectional view of the reaction kettle support with a plurality of air flow pipes that can be introduced in the shown embodiment.
[0021] Figure 3 is Figure 2 the enlarged view of part A in
[0022] Figure 4 is Figure 1The cross-section of the reactor support with ducts capable of introducing various gas flows in the illustrated embodiment is used for the second time.
[0023] Figure 5 is Figure 4 the enlarged view at position B in
[0024] Figure 6 is Figure 4 the enlarged view at position C in
[0025] The meanings of the reference numerals in the figure are as follows:
[0026] 101, support body; 102, gas pipeline; 1021, first air outlet; 1022, second air outlet; 103, filter screen; 104, connecting column; 1041, fixing groove; 105, movable rod; 106, connecting rope; 107, waste box; 108, baffle; 109, material receiving plate; 110, first connecting rod; 111, extension rod; 112, air collecting hood; 113, first solenoid valve; 114, second solenoid valve; 115, sleeve; 116, branch pipe; 1161, air injection hole; 117, second connecting rod; 1171, blade; 118, convex rod; 119, third connecting rod; 1191, second connecting spring; 120, fixing block; 1201, first connecting spring. Detailed implementation manners
[0027] Hereinafter, embodiments of the present disclosure will be described in more detail with reference to the accompanying drawings. Although some embodiments of the present disclosure are shown in the drawings, it should be understood that the present disclosure can be implemented in various forms and should not be construed as limited to the embodiments set forth herein. On the contrary, these embodiments are provided to more thoroughly and completely understand the present disclosure. It should be understood that the drawings and embodiments of the present disclosure are only for exemplary purposes and are not used to limit the protection scope of the present disclosure.
[0028] In addition, it should be noted that for the sake of convenience of description, only parts related to the relevant utility model are shown in the drawings. Without conflict, the embodiments in the present disclosure and the features in the embodiments can be combined with each other.
[0029] It should be noted that the concepts such as "first" and "second" mentioned in the present disclosure are only used to distinguish different devices, modules or units, and are not used to limit the order of functions performed by these devices, modules or units or their interdependent relationships.
[0030] It should be noted that the modifications of "one" and "multiple" mentioned in the present disclosure are illustrative rather than restrictive. Those skilled in the art should understand that unless otherwise clearly specified in the context, it should be understood as "one or more".
[0031] The names of the messages or information exchanged between multiple devices in the embodiments of the present disclosure are for illustrative purposes only and are not used to limit the scope of these messages or information.
[0032] The present disclosure will be described in detail below with reference to the accompanying drawings and in conjunction with embodiments.
[0033] As Figures 1-6 shown, a reactor support with ducts capable of introducing multiple airflows includes a support body 101, a gas delivery pipe 102, and a filter screen 103. The gas delivery pipe 102 passes through the support body 101, and the filter screen 103 is arranged inside the support body 101. The support body 101 is of a funnel-shaped structure. The gas delivery pipe 102 can introduce steam or compressed air, and the gas delivery pipe 102 is located below the filter screen 103.
[0034] A first connecting rod 110 is provided on the inner wall of the support body 101. A connecting column 104 is provided on the first connecting rod 110. The connecting column 104 passes through the filter screen 103. A movable rod 105 is provided on the connecting column 104, and the filter screen 103 is connected to the movable rod 105.
[0035] A first movable groove is provided on the connecting column 104. The movable rod 105 is located in the first movable groove. A connecting rope 106 is provided on the movable rod 105, and one end of the connecting rope 106 is fixedly connected to the filter screen 103.
[0036] A plurality of convex rods 118 are provided on the upper inner wall of the support body 101. A third movable groove is provided on the convex rod 118. A third connecting rod 119 is arranged in the third movable groove. One end of the third connecting rod 119 is provided with a second connecting spring 1191, and one end of the second connecting spring 1191 is fixedly connected to the inner wall of the third movable groove. The third connecting rod 119 can move in the third movable groove, and one end of the third connecting rod 119 is fixedly connected to the filter screen 103; the filter screen 103 is in an open state by being connected to a plurality of third connecting rods 119, and filters the unreacted solid waste in the reactor.
[0037] A receiving plate 109 is provided on the inner wall of the support body 101. The receiving plate 109 is inclined and is of an annular structure. The receiving plate 109 is located below the filter screen 103; a waste box 107 is provided on the side wall of the support body 101, and a plurality of through grooves communicating the receiving plate 109 and the waste box 107 are provided on the support body 101.
[0038] A baffle 108 is provided on the support body 101. The baffle 108 is movably connected to the support body 101. The baffle 108 covers the through groove, and the movement of the baffle 108 can be controlled by an external driving member to control the opening and closing of the through groove.
[0039] The bottom of the movable rod 105 is provided with an extension rod 111. The extension rod 111 passes through the bottom of the first movable groove, and a gas gathering hood 112 is provided at the bottom of the extension rod 111.
[0040] The air delivery pipe 102 is provided with a first air outlet 1021 and a second air outlet 1022. The first air outlet 1021 is arranged below the gas gathering hood 112. A first electromagnetic valve 113 is arranged in the first air outlet 1021, and a second electromagnetic valve 114 is arranged in the second air outlet 1022.
[0041] A second movable groove is provided on the side wall of the movable rod 105. A fixed block 120 is arranged in the second movable groove. A first connecting spring 1201 is arranged on the fixed block 120. One end of the first connecting spring 1201 is fixedly connected to the inner wall of the second movable groove. A fixed groove 1041 corresponding to the fixed block 120 is arranged on the inner wall of the first movable groove. An electromagnet is arranged in the second movable groove. The fixed block 120 is made of ferromagnetic metal, preferably ferroalloy.
[0042] A sleeve 115 is sleeved on the second air outlet 1022. A plurality of branch pipes 116 are arranged on the sleeve 115, and a plurality of air injection holes 1161 are arranged on the branch pipes 116.
[0043] A second connecting rod 117 is arranged in the sleeve 115. A plurality of blades 1171 are arranged on the second connecting rod 117. The sleeve 115 is rotatably connected to the second air outlet 1022.
[0044] When the reaction kettle is in normal use, steam is transported into the reaction kettle through the gas transmission pipe 102 to promote the reaction. At this time, the first electromagnetic valve 113 is closed and the second electromagnetic valve 114 is opened, and the steam enters the reaction kettle through the second air outlet 1022; when cleaning the filter plate in the reaction kettle, compressed air is introduced into the reaction kettle by using the gas transmission pipe 102. At this time, the first air outlet 1021 is opened and the second air outlet 1022 is closed. The compressed air just entering the reaction kettle is ejected through the first air outlet 1021, and the airflow impacts inside the gas collecting hood 112 to push the gas collecting hood 112 to move. The movable rod 105 moves upward to the top of the first movable groove, the connecting rope 106 pulls the middle part of the filter screen 103 upward, and the edge of the filter screen 103 pulls the third connecting rod 119 to move, so that the filter screen 103 forms a conical structure, and the middle part of the filter screen 103 inclines toward the periphery; after the fixed block 120 moves to one side of the fixed groove 1041 and is inserted into the fixed groove 1041 to fix the movable rod 105; the first electromagnetic valve 113 is closed and the second electromagnetic valve 114 is opened, and the compressed air flows out through the second air outlet 1022. The airflow impacts on the blade 1171 to drive the sleeve 115 to rotate, and the airflow entering the sleeve 115 is ejected from the air injection holes 1161 through the branch pipe 116. The arrangement of the sleeve 115 and the branch pipe 116 makes the airflow ejection more uniform. When the airflow passes through the filter screen 103, the filter screen 103 is cleaned. The blockages on the filter screen 103 are pushed out from the mesh holes and then roll down along the surface of the filter screen 103 to the material receiving plate 109. At this time, the through groove is in an open state, and the solid impurities falling on the material receiving plate 109 directly fall into the waste box 107; when the airflow passes through the filter screen 103, the filter screen 103 plays a role in equalizing the airflow, so that the compressed air can enter the reaction kettle more evenly to clean the filter plate in the reaction kettle, improving the cleaning effect on the filter plate.
[0045] After the cleaning of the filter plate is completed, the electromagnet is energized. The electromagnet attracts the fixed block 120 into the second movable groove, the fixed block 120 is disengaged from the fixed groove 1041, and the second connecting spring 1191 pulls the third connecting rod 119 to move back, and the filter screen 103 is pulled back to the open state.
[0046] The above description is only some preferred embodiments of the present disclosure and an explanation of the applied technical principles. Those skilled in the art should understand that the scope of the utility model involved in the embodiments of the present disclosure is not limited to the technical solutions formed by the specific combination of the above technical features, and should also cover other technical solutions formed by any combination of the above technical features or their equivalent features without departing from the above inventive concept. For example, the technical solutions formed by mutually replacing the above features with the technical features (but not limited to) having similar functions disclosed in the embodiments of the present disclosure.
Claims
1. A reactor support with ducts capable of introducing multiple airflows, characterized in that: It includes a support body, an air delivery pipe and a filter screen. The air delivery pipe is penetrated through the support body, and the filter screen is arranged inside the support body. The support body is of a funnel-shaped structure. The air delivery pipe can introduce steam or compressed air, and the air delivery pipe is located below the filter screen.
2. The reactor support with ducts capable of admitting multiple gas flows according to claim 1, characterized in that: A first connecting rod is arranged on the inner wall of the support body. A connecting column is arranged on the first connecting rod. A movable rod is arranged on the connecting column. The filter screen is connected to the movable rod.
3. The reactor support with ducts capable of introducing multiple airflows according to claim 2, characterized in that: A first movable groove is arranged on the connecting column. The movable rod is located in the first movable groove. A connecting rope is arranged on the movable rod. One end of the connecting rope is fixedly connected to the filter screen.
4. The reactor support with ducts capable of introducing multiple airflows according to claim 3, characterized in that: A material receiving plate is arranged on the inner wall of the support body. The material receiving plate is inclined and is of an annular structure. The material receiving plate is located below the filter screen. A waste box is arranged on the side wall of the support body. A plurality of through grooves communicating the material receiving plate and the waste box are arranged on the support body.
5. The reactor support with a reaction kettle having a plurality of air flow channels according to claim 4, characterized in that: A baffle is arranged on the support body. The baffle is movably connected to the support body and covers the through grooves.
6. The reactor support with a pipeline capable of introducing multiple airflows according to claim 3, characterized in that: An extension rod is arranged at the bottom of the movable rod. The extension rod penetrates out from the bottom of the first movable groove. A gas gathering hood is arranged at the bottom of the extension rod.
7. The reactor support with a reaction kettle capable of introducing a variety of gas flow pipelines according to claim 6, characterized in that: A first air outlet and a second air outlet are arranged on the air delivery pipe. The first air outlet is arranged below the gas gathering hood. A first solenoid valve is arranged in the first air outlet. A second solenoid valve is arranged in the second air outlet.
8. The reactor support with ducts capable of introducing multiple airflows according to claim 6, characterized in that: A second movable groove is arranged on the side wall of the movable rod. A fixed block is arranged in the second movable groove. A first connecting spring is arranged on the fixed block. One end of the first connecting spring is fixedly connected to the inner wall of the second movable groove. A fixed groove corresponding to the fixed block is arranged on the inner wall of the first movable groove.
9. The reactor support with ducts capable of introducing multiple airflows according to claim 7, characterized in that: A sleeve is sleeved on the second air outlet. A plurality of branch pipes are arranged on the sleeve. A plurality of air injection holes are arranged on the branch pipes.
10. The reactor support with ducts for introducing multiple gas flows according to claim 9, characterized in that: A second connecting rod is arranged in the sleeve. A plurality of blades are arranged on the second connecting rod. The sleeve is rotatably connected to the second air outlet.