Non-metal tank body bottom connecting structure in incinerator flue gas treatment
By using a sealing reinforcement module at the connection between the non-metal tank body and the cement foundation, the problems of insufficient connection strength and leakage are solved, the safety and efficiency of incinerator flue gas treatment are improved, and the emission of harmful substances is reduced.
Patent Information
- Application Number
- CN202422612801.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-29
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-10-29
AI Technical Summary
The one-way fixed connection between the existing non-metal tank body and the ground or other supporting structures may lead to insufficient connection strength, affect stability, and may cause leakage problems, resulting in a decrease in the flue gas treatment effect.
The sealing and reinforcement module is adopted, including arcuate metal hoops, rubber pads, connecting shafts, clamping holes, mounting plates, nuts and other components. By reinforcing and sealing the connection between the tank body and the cement foundation, stability and sealing are ensured.
Effectively prevent flue gas leakage, improve equipment safety, reduce secondary pollution and safety hazards, enhance flue gas treatment efficiency and effect, and reduce the emission of harmful substances.
Smart Images

Figure CN223191440U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of incinerator flue gas treatment, in particular to a non-metallic tank bottom connection structure in incinerator flue gas treatment. Background Art
[0002] Incinerator flue gas treatment refers to the process of purifying and treating the flue gas emitted by the incinerator to reduce its pollution to the environment. In the incinerator flue gas treatment system, non-metallic tanks usually refer to containers or equipment used for specific treatment steps. These containers or equipment are made of non-metallic materials, such as fiberglass, plastic, ceramics or certain advanced composite materials. These non-metallic tanks play an important role in the flue gas treatment process, but the specific role and type will vary depending on the flue gas treatment process. The non-metallic tank needs to be firmly connected to the ground or other supporting structures. Through this connection structure, the non-metallic tank can be easily and quickly installed on the ground concrete foundation, and there is no need to accurately locate the orientation of the non-metallic tank.
[0003] Most of the existing non-metallic tank bodies are fixedly connected to the ground or other supporting structures in one direction. If the welding points between the metal clamps and the embedded connecting plates are not dense enough, the connection strength may be insufficient, thereby affecting the stability of the non-metallic tank body and increasing the risk of displacement or tipping during operation. At the same time, if the welding is not tight enough, leakage problems may occur, which will lead to a decrease in the flue gas treatment effect and may even cause secondary pollution to the environment.
[0004] Therefore, since most of the existing non-metallic tank bodies are fixedly connected to the ground or other supporting structures in one direction, if the welding points between the metal clamps and the embedded connecting plates are not dense enough, it may affect the stability of the non-metallic tank body, and leakage problems may occur, resulting in a decrease in the flue gas treatment effect. A non-metallic tank bottom connection structure for incinerator flue gas treatment can be designed, and a sealing reinforcement structure can be installed on the outside of the non-metallic tank body to improve the stability of the non-metallic tank body. Utility Model Content
[0005] In order to overcome the problem that most of the existing non-metallic tank bodies are one-way fixed connections with the ground or other supporting structures, if the welding points between the metal clamps and the embedded connecting plates are not dense enough, it may affect the stability of the non-metallic tank body and leakage problems may occur, resulting in a decrease in the flue gas treatment effect.
[0006] The technical solution of the utility model is: a non-metallic tank bottom connection structure for incinerator flue gas treatment, comprising a cement foundation, a tank body and a sealing reinforcement module; a tank body for treating flue gas is provided above the cement foundation, and a sealing reinforcement module for reinforcing and sealing the connection between the tank body and the cement foundation is provided on the outside of the connection between the tank body and the cement foundation, the sealing reinforcement module comprising an arc-shaped metal clamp, a connecting shaft, a clamping hole, an arc-shaped rubber pad, a mounting plate, a mounting column, a first nut, a pre-embedded connecting plate, a clamping column, a fixing column and a second nut, the arc-shaped metal clamp is arranged in a transversely symmetrical manner, an arc-shaped rubber pad is installed on the inner side of the arc-shaped metal clamp, three groups of clamping holes are opened along the lower edge of the arc-shaped metal clamp, an embedded connecting plate is provided below the arc-shaped metal clamp corresponding to the clamping hole, and a clamping column is installed on the upper end of the embedded connecting plate.
[0007] Preferably, the tank body is first placed on a cement foundation, and then the connection between the tank body and the cement foundation is reinforced and sealed by a sealing reinforcement module. This method can more effectively prevent the incinerator flue gas from leaking from the bottom of the tank body during the treatment process, avoid secondary pollution to the environment, improve the health and safety of the staff, and help reduce safety hazards such as fire and explosion that may be caused by flue gas leakage, thereby improving the safety of the overall equipment. At the same time, it can ensure that the flue gas is more fully treated in the tank body, improve the efficiency and effectiveness of flue gas treatment, and further reduce the emission of harmful substances.
[0008] Preferably, six groups of placement grooves are provided around the upper edge of the cement foundation, and fixing holes are provided at the bottom of the cement foundation where the placement grooves are provided.
[0009] Preferably, a connecting shaft is installed at one end of the connection between the two groups of arc-shaped metal clamps, and a mounting plate is installed at one end of the arc-shaped metal clamp away from the connecting shaft.
[0010] Preferably, a mounting post is provided in the middle of the mounting plate, and first nuts are respectively provided on the outer sides of both ends of the mounting post.
[0011] Preferably, the embedded connecting plate is positioned and connected to the cement foundation along the placement groove.
[0012] Preferably, the clamping column drives the embedded connecting plate to be positioned and connected with the arc-shaped metal clamp through the clamping hole.
[0013] Preferably, a fixing column is passed through the middle of the embedded connecting plate, a second nut is sleeved on the outside of the fixing column, and the fixing column passes through the embedded connecting plate and is positioned and connected to the cement foundation through the fixing hole.
[0014] Beneficial effects of the utility model:
[0015] 1. First place the tank body on the cement foundation, and then reinforce and seal the connection between the tank body and the cement foundation through the sealing reinforcement module. This method can more effectively prevent the incinerator flue gas from leaking from the bottom of the tank body during the treatment process, avoid secondary pollution to the environment, improve the health and safety of the staff, and help reduce safety hazards such as fire and explosion that may be caused by flue gas leakage, thereby improving the safety of the overall equipment. At the same time, it can ensure that the flue gas is more fully treated in the tank body, improve the efficiency and effect of flue gas treatment, and further reduce the emission of harmful substances. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 Shown is a schematic diagram of the overall structure of the bottom connection structure of the non-metallic tank body of the utility model;
[0017] Figure 2 Shown is a schematic diagram of the cement foundation structure of the bottom connection structure of the non-metallic tank body of the utility model;
[0018] Figure 3 Shown is a schematic diagram of the arc-shaped metal clamp structure of the non-metallic tank bottom connection structure of the utility model;
[0019] Figure 4 Shown is a schematic diagram of the embedded connecting plate structure of the non-metallic tank bottom connection structure of the present invention.
[0020] Explanation of the accompanying drawings: 1. Cement foundation; 2. Tank body; 101. Placement groove; 102. Fixing hole; 301. Arc-shaped metal clamp; 302. Connecting shaft; 303. Snap-in hole; 304. Arc-shaped rubber pad; 305. Mounting plate; 306. Mounting column; 307. First nut; 308. Embedded connecting plate; 309. Snap-in column; 310. Fixing column; 311. Second nut. DETAILED DESCRIPTION
[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0022] See also Figures 1-4The utility model provides an embodiment: a non-metallic tank bottom connection structure for incinerator flue gas treatment, comprising a cement foundation 1, a tank body 2 and a sealing reinforcement module; a tank body 2 for treating flue gas is provided above the cement foundation 1, and a sealing reinforcement module for reinforcing and sealing the connection between the tank body 2 and the cement foundation 1 is provided on the outside of the connection between the tank body 2 and the cement foundation 1, the sealing reinforcement module comprising an arc-shaped metal clamp 301, a connecting shaft 302, a clamping hole 303, an arc-shaped rubber pad 304, an installation Plate 305, mounting column 306, first nut 307, embedded connecting plate 308, clamping column 309, fixing column 310 and second nut 311, the arc-shaped metal hoop 301 is arranged in a transverse symmetrical manner, an arc-shaped rubber pad 304 is installed on the inner side of the arc-shaped metal hoop 301, three groups of clamping holes 303 are opened along the lower edge of the arc-shaped metal hoop 301, and an embedded connecting plate 308 is provided below the arc-shaped metal hoop 301 corresponding to the clamping holes 303, and a clamping column 309 is installed on the upper end of the embedded connecting plate 308.
[0023] See also Figure 2 In this embodiment, six groups of placement grooves 101 are opened around the upper edge of the cement foundation 1, and fixing holes 102 are opened at the bottom of the cement foundation 1 with the placement grooves 101. The placement grooves 101 can be used to place embedded connecting plates 308, thereby assisting in strengthening the connection between the tank body 2 and the cement foundation 1 and improving the stability of the non-metallic tank body 2 during operation.
[0024] See also Figure 3-Figure 4In this embodiment, a connecting shaft 302 is installed at one end of the connection between the two sets of arc-shaped metal clamps 301, and a mounting plate 305 is installed at the end of the arc-shaped metal clamp 301 away from the connecting shaft 302. The arc-shaped metal clamp 301 is pulled to rotate through the connecting shaft 302, thereby driving the arc-shaped rubber pad 304 to continuously approach and fit the tank body 2. The arc-shaped rubber pad 304 can increase the friction force to avoid shaking between the tank body 2 and the cement foundation 1, and improve the sealing of the connection between the tank body 2 and the cement foundation 1. A mounting post 306 is passed through the middle of the mounting plate 305, and a first nut 307 is provided on the outside of each end of the mounting post 306. The mounting post 306 is passed through the mounting plate 305, and then the first nut 307 is tightened to fix it. In this way, the two sets of arc-shaped metal clamps 301 are fixed, and the embedded connecting plate 308 is positioned and connected to the cement foundation 1 along the placement groove 101. First, pick up the embedded connecting plate 308 and position it along the placement groove 101 to connect it to the cement foundation 1. Then place the tank body 2 on the cement foundation 1. The clamping column 309 drives the embedded connecting plate 308 to be positioned and connected with the arc-shaped metal clamp 301 through the clamping hole 303. The clamping column 309 drives the embedded connecting plate 308 to be positioned and connected with the arc-shaped metal clamp 301 through the clamping hole 303. The embedded connecting plate 308 and the arc-shaped metal clamp 301 are assembled. A fixing column 310 is passed through the middle of the embedded connecting plate 308. A second nut 311 is sleeved on the outside of the fixing column 310. The fixing column 310 passes through the embedded connecting plate 308 and is positioned and connected to the cement foundation 1 through the fixing hole 102. Pick up the fixing column 310, pass it through the embedded connecting plate 308 and the fixing hole 102 to connect it to the cement foundation 1, and then tighten it with the second nut 311.
[0025] When working, first pick up the embedded connecting plate 308, position it along the placement groove 101 and connect it to the cement foundation 1, then place the tank body 2 on the cement foundation 1, and at the same time pull the arc-shaped metal clamp 301 to rotate it through the connecting shaft 302, thereby driving the arc-shaped rubber pad 304 to continuously approach and fit the tank body 2. The arc-shaped rubber pad 304 can increase friction and prevent shaking between the tank body 2 and the cement foundation 1;
[0026] At the same time, the clamping column 309 drives the embedded connecting plate 308 to be positioned and connected with the arc-shaped metal clamp 301 through the clamping hole 303, thereby completing the assembly of the embedded connecting plate 308 and the arc-shaped metal clamp 301. Then, the fixing column 310 is taken up, passed through the embedded connecting plate 308 and the fixing hole 102 to be positioned and connected to the cement foundation 1, and then tightened with the second nut 311 to fix it. Then, the installation column 306 is passed through the installation plate 305 and the first nut 307 is tightened to fix it. In this way, the two sets of arc-shaped metal clamps 301 are fixed;
[0027] After all the fixing is completed, cement is first poured into the placement groove 101 to further reinforce the embedded connection plate 308, and then the connection between the embedded connection plate 308 and the arc-shaped metal clamp 301 is welded.
[0028] Through the above steps, the tank body 2 is first placed on the cement foundation 1, and then the connection between the tank body 2 and the cement foundation 1 is reinforced and sealed by the sealing reinforcement module. Through this method, the incinerator flue gas can be more effectively prevented from leaking from the bottom of the tank body 2 during the treatment process, avoiding secondary pollution to the environment, improving the health and safety of the staff, and helping to reduce safety hazards such as fire and explosion that may be caused by flue gas leakage, thereby improving the safety of the overall equipment. At the same time, it can ensure that the flue gas is more fully treated in the tank body 2, improve the efficiency and effect of flue gas treatment, and further reduce the emission of harmful substances, so as to solve the problem that most of the existing non-metallic tank bodies 2 and the ground or other supporting structures are one-way fixed connections. If the welding points between the metal clamp and the embedded connecting plate 308 are not dense enough, it may affect the stability of the non-metallic tank body 2, and leakage problems may occur, resulting in a decrease in the flue gas treatment effect.
Claims
1. A non-metallic tank bottom connection structure for incinerator flue gas treatment, comprising a cement foundation (1); characterized in that: The invention also includes a tank body (2) and a sealing reinforcement module; a tank body (2) for treating flue gas is provided above the cement foundation (1); a sealing reinforcement module for reinforcing and sealing the connection between the tank body (2) and the cement foundation (1) is provided on the outside of the connection between the tank body (2) and the cement foundation (1); the sealing reinforcement module includes an arc-shaped metal clamp (301), a connecting shaft (302), a clamping hole (303), an arc-shaped rubber pad (304), a mounting plate (305), a mounting column (306), a first nut (307), a pre- The arc-shaped metal hoop (301) is provided with an embedded connecting plate (308), a clamping column (309), a fixing column (310) and a second nut (311). The arc-shaped metal hoop (301) is arranged in a transverse symmetrical manner. An arc-shaped rubber pad (304) is installed on the inner side of the arc-shaped metal hoop (301). Three groups of clamping holes (303) are opened along the lower side of the arc-shaped metal hoop (301). An embedded connecting plate (308) is provided below the arc-shaped metal hoop (301) corresponding to the clamping holes (303). A clamping column (309) is installed on the upper end of the embedded connecting plate (308).
2. The non-metallic tank bottom connection structure for incinerator flue gas treatment according to claim 1, characterized in that: Six groups of placement grooves (101) are arranged around the upper edge of the cement foundation (1), and fixing holes (102) are arranged at the bottom of the cement foundation (1) where the placement grooves (101) are arranged.
3. The non-metallic tank bottom connection structure for incinerator flue gas treatment according to claim 1, characterized in that: A connecting shaft (302) is installed at one end of the connection between the two groups of arc-shaped metal hoops (301), and a mounting plate (305) is installed at one end of the arc-shaped metal hoops (301) away from the connecting shaft (302).
4. The non-metallic tank bottom connection structure for incinerator flue gas treatment according to claim 1, characterized in that: A mounting post (306) is provided through the middle of the mounting plate (305), and first nuts (307) are respectively sleeved on the outer sides of both ends of the mounting post (306).
5. The non-metallic tank bottom connection structure for incinerator flue gas treatment according to claim 2, characterized in that: The embedded connection plate (308) is positioned and connected to the cement foundation (1) along the placement groove (101).
6. The non-metallic tank bottom connection structure for incinerator flue gas treatment according to claim 1, characterized in that: The clamping column (309) drives the embedded connecting plate (308) to be positioned and connected with the arc-shaped metal hoop (301) through the clamping hole (303).
7. The non-metallic tank bottom connection structure for incinerator flue gas treatment according to claim 2, characterized in that: A fixing column (310) is provided in the middle of the embedded connection plate (308), a second nut (311) is sleeved on the outside of the fixing column (310), and the fixing column (310) passes through the embedded connection plate (308) and is positioned and connected to the cement foundation (1) through the fixing hole (102).