High-strength compression-resistant composite water tank
By setting up a force guide and auxiliary pressure distribution mechanism in the composite water tank, the problem of easy damage at the side panel joints is solved, and the high strength pressure resistance and extended service life of the water tank are achieved.
Patent Information
- Application Number
- CN202422744690.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-12
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-11-12
AI Technical Summary
The side panel joints of the composite water tank are easily damaged due to the water pressure, which affects the overall use and is inconvenient to repair.
A force guide mechanism and an auxiliary pressure divider mechanism are set between the side plate of the water tank and the base. The water pressure is guided to the base and the ground through the support frame and the support rod. The damper is used to provide buffering and enhance the support effect.
Effectively alleviate the damage of water pressure to the edge of the side panels and improve the stability and service life of the water tank.
Smart Images

Figure CN223371851U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of pressure-resistant water tanks, in particular to a high-strength pressure-resistant composite water tank. Background Art
[0002] Composite water tanks are water storage facilities assembled by components mainly made of stainless steel plates. They are usually buried underground or installed on the top floor of a building to meet a variety of water use and storage needs.
[0003] Composite water tank panels are spliced and fixed to each other by using flanges, rubber strips, etc. Composite water tanks are usually large in size and carry a large amount of water. After the water body gathers, it has a certain weight, and the water body will exert pressure on the side panels of the water tank. Since the side panels of the water tank are not integral, the joints of the panels are relatively fragile parts. After the water body continues to exert pressure, damage will inevitably occur here, such as the bolts of the flange connection breaking, the sealing part being washed away by water, etc., which greatly affects the use of the composite water tank. The water tank itself is a large facility, and the installation environment is not convenient for maintenance and disassembly. Once a similar failure occurs, it is difficult to deal with. For this reason, a high-strength and pressure-resistant composite water tank is provided. Utility Model Content
[0004] 1. Technical Problems Solved
[0005] The technical problem to be solved by the present invention is that a composite water tank is made of multiple plates spliced together according to usage requirements. A large amount of water is contained in the water tank, and the joints of the side plates are weak points that bear the outward impact of water, which can easily cause damage and affect the overall use of the composite water tank.
[0006] 2. Technical Solution
[0007] In order to solve the above technical problems, the technical solution provided by the utility model is: a high-strength and pressure-resistant composite water tank, including a composite water tank, a base is connected to the bottom of the composite water tank, and multiple splicing plates are connected to the sides of the composite water tank. The edges of the splicing plates are connected with flange edges, and the splicing plates are commonly connected with multiple fixing bolts that match the flange edges.
[0008] A support frame is connected to the outer edge of the splicing plate, and a force guide mechanism is connected between the support frame and the base. The force guide mechanism includes a support rod, one end of the support rod is rotatably connected to the support frame, the support rod is tilted downward at one end away from the composite water tank, and a slider is rotatably connected to one end of the support rod away from the support frame. A columnar support block is commonly connected between the slider and the base, and a plurality of auxiliary pressure dividing mechanisms that cooperate with the force guide mechanism are commonly connected between the composite water tank and the base.
[0009] Furthermore, the auxiliary pressure-sharing mechanism includes a second support rod, which is located below the first support rod and has one end rotatably connected to the support frame. The second support rod is tilted downward away from the end of the composite water tank, and the second support rod is rotatably connected to the end of the support frame with a second slider. The slider and the base are commonly connected with a second column-shaped support block. The auxiliary pressure-sharing mechanism is almost identical to the structural design of the force-sharing guide mechanism, and is a scaled-down version of the force-sharing guide mechanism. Setting it below the force-sharing guide mechanism can further protect the bottom of the composite water tank that bears greater pressure, provide powerful assistance to the force-sharing guide mechanism, and help it disperse the support burden.
[0010] Furthermore, a damper is commonly connected between the support block 1, the support block 2 and the base.
[0011] Furthermore, the base is located on the outside of the composite water tank and is connected upward with multiple support plates 1 and 2. The support plate 2 is arranged between the support frame and the support plate 1. The support plate 1 is connected with a slide groove 1 that cooperates with the slider 1, and the support plate 2 is connected with a slide groove 2 that cooperates with the slider 2.
[0012] Furthermore, the splicing plate is located in the inner area of the support frame and is connected outwardly with a protrusion, which extends the non-edge part of the splicing plate outward by a certain space, thereby reducing the pressure on the relatively fragile splicing part.
[0013] 3. Beneficial Effects
[0014] The advantage of the present invention over the prior art is that the device provides a set of force guide mechanisms for each side plate on the outside of the water tank, which transfers the pressure of the water in the water tank on the edge of the side plate to the base and the ground, thereby alleviating the damage of the water pressure on the edge of the side plate and the mutual connection, and providing good support for this, thereby effectively improving the quality of the composite water tank and extending its service life. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is a schematic diagram of the appearance structure of a high-strength pressure-resistant composite water tank of this utility model. Figure 1 .
[0016] Figure 2 This is a schematic diagram of the appearance structure of a high-strength pressure-resistant composite water tank of this utility model. Figure 2 .
[0017] Figure 3 yes Figure 1 Schematic diagram of the structure of part A.
[0018] Figure 4 yes Figure 2 Schematic diagram of the local structure.
[0019] As shown in the figure: 1. Composite water tank, 2. Splicing plate, 3. Protrusion, 4. Base, 5. Support frame, 6. Support rod 1, 7. Slider 1, 8. Support plate 1, 9. Slide 1, 10. Support block 1, 11. Support rod 2, 12. Slider 2, 13. Support plate 2, 14. Slide 2, 15. Support block 2, 16. Damper, 17. Flange edge, 18. Fixing bolts. DETAILED DESCRIPTION
[0020] The present invention will be described in further detail below with reference to the accompanying drawings.
[0021] Example 1
[0022] Combined with attachment Figure 1-2 In order to solve the above technical problems, the technical solution provided by the present invention is as follows: a high-strength and pressure-resistant composite water tank, comprising a composite water tank 1, wherein a base 4 is connected to the bottom of the composite water tank 1, and multiple splicing plates 2 are connected to the sides of the composite water tank 1. The edges of the splicing plates 2 are connected with flange edges 17, and the splicing plates 2 are commonly connected with multiple fixing bolts 18 that match the flange edges 17. The outer edges of the splicing plates 2 are connected with a support frame 5, and a force guide mechanism is connected between the support frame 5 and the base 4. The composite water tank 1 and the base 4 are commonly connected. There are multiple auxiliary pressure-dividing mechanisms that cooperate with the force-dividing guide mechanism. The structural design of the auxiliary pressure-dividing mechanism is almost the same as that of the force-dividing guide mechanism. It is a scaled-down version of the force-dividing guide mechanism. It is arranged below the force-dividing guide mechanism, which can provide further protection for the bottom of the composite water tank 1 that bears greater pressure, provide powerful assistance to the force-dividing guide mechanism, and help it disperse the supporting burden. The splicing plate 2 is located in the inner area of the support frame 5 and is connected outwardly with a protrusion 3. This is to extend the non-edge part of the splicing plate 2 outward by a certain space, thereby reducing the pressure on the relatively fragile splicing part.
[0023] A composite water tank 1 is formed by assembling multiple splicing plates 2, bottom plates, etc. using water-blocking strips and fixing bolts 18. This is a commonly used method for making water tanks. Since the water tank volume and size are generally large, the water carried inside has outward pressure, and the connection between the splicing plates 2 is relatively fragile. Therefore, a certain space is extended outward to form a protrusion 3 in the central area of the splicing plate 2, which can effectively relieve the pressure on the edge of the splicing plate 2 and better enhance the overall pressure-bearing and sealing effect of the composite water tank 1; laying a base 4 with cement is also a commonly used method for installing water tanks, which can level and fix the water tank installation area. The device is reasonably equipped with many force-dividing guide mechanisms around the water tank according to the number of splicing plates 2, which are used to relieve the water pressure on the edge of the splicing plate 2 and effectively improve the stability of the composite water tank 1.
[0024] Example 2
[0025] Combined with attachment Figure 1-4 , the force guide mechanism includes a support rod 6, one end of the support rod 6 is connected to the support frame 5 for mutual rotation, the support rod 6 is tilted downward away from the end of the composite water tank 1, the support rod 6 is rotatably connected to the end of the support frame 5 and is provided with a slider 7, and a column-shaped support block 10 is commonly connected between the slider 7 and the base 4, the auxiliary pressure dividing mechanism includes a support rod 2 11, the support rod 2 11 is located below the support rod 6 and one end is connected to the support frame 5 for mutual rotation, the support rod 2 11 is tilted downward away from the end of the composite water tank 1, the support rod 2 11 is away from One end of the support frame 5 is rotatably connected to a slider 2 12, and a column-shaped support block 2 15 is commonly connected between the slider 2 12 and the base 4. A damper 16 is commonly connected between the support block 10 and the support block 2 15 and the base 4. The base 4 is located on the outside of the composite water tank 1 and is upwardly connected to a plurality of support plates 1 8 and support plates 2 13. The support plate 2 13 is arranged between the support frame 5 and the support plate 1 8. The support plate 1 8 is connected to a slide groove 9 that cooperates with the slider 1 7, and the support plate 2 13 is connected to a slide groove 2 14 that cooperates with the slider 2 12.
[0026] When the support frame 5 and the composite water tank 1 are subjected to the outward pressure of the water in the composite water tank 1, the support frame 5 and the composite water tank 1 will move outward. As the other end of the support frame 5 is connected to the base 4 through the support block 10, the horizontal position of the support frame 5 is fixed. Then, the end of the support frame 6 away from the composite water tank 1 can only move downward, thereby changing the direction of the horizontal divergent force transmission into a downward force. The slider 7 on one end of the support frame 6 is kept in a sliding connection with the support plate 8 by being embedded in the slide groove 9. In theory, the slide groove 9 provides a path and space for it to move downward. After the gradual transmission of the above-mentioned force, the force on the edge of the splicing plate 2 is finally borne by the edge of the base 4 and the ground. The principle of action and reaction force, the base 4 and the ground that bear relatively strong force provide reliable support for the edge of the splicing plate 2, and a damper 16 is added between the support block 10 and the base 4. The damper 16 is a common component with shock absorption and buffering effects. It can greatly reduce the pressure, thereby playing a good protective role for the composite water tank 1. The pressure borne at the bottom of the composite water tank 1 may be greater, and the load-bearing capacity of a group of force-dividing guide mechanisms may also have an upper limit. It is fixed between the splicing plate 2 and the base 4 and located below the force-dividing guide mechanism. Another group of miniature force-dividing guide mechanisms, namely auxiliary pressure-dividing mechanisms, is added. Its structure and working principle are almost the same as those of the force-dividing guide mechanism, and will not be repeated again. However, its existence only exists as an auxiliary component of the force-dividing guide mechanism, and cannot replace the leading role of the force-dividing guide mechanism in the pressure-dividing and relief process of the splicing plate 2.
[0027] In the specific implementation of the present invention, when installing the water tank device, after the composite water tank part is installed, each support frame 5 with a force guide mechanism and an auxiliary pressure dividing mechanism is installed between the outer edge of the splicing plate 2 and the base 4. When the composite water tank 1 is filled with water, due to the gravity effect, the water always has a tendency to move downward. The upper water body is blocked by the lower water body, and the fluid water tries to pass through the edge of the lower water body to achieve the purpose of flowing downward. In this process, the water in the water tank will generate horizontal pressure on the side plate of the composite water tank 1, and the splicing plate 2 is relatively flat. The interconnected edges are the fragile parts that prevent water from overflowing. When the edge of the splicing plate 2 is under pressure, this part of the force is transmitted through the support rod 1 6 and the support rod 2 11 and the transmission direction is changed. After reaching the support block 10 and the support block 2 15 at the end of the support rod 1 6 and the support rod 2 11 respectively, the force is transmitted downward. Then the base 4 with the damper 16 below and the ground will bear and resolve this part of the force, thereby greatly reducing the influence of the water pressure in the composite water tank 1 on the fragile edge of the splicing plate 2, providing the pressure-bearing capacity of the water tank while effectively ensuring the quality of the water tank.
[0028] The above description of the present invention and its embodiments is non-limiting. The drawings show only one embodiment of the present invention, and the actual structure is not limited thereto. In short, if a person skilled in the art is inspired by the above, and does not deviate from the purpose of the present invention, without inventive design, a structure and embodiment similar to the technical solution should fall within the scope of protection of the present invention.
Claims
1. A high-strength, pressure-resistant composite water tank, comprising a composite water tank (1), wherein a base (4) is connected to the bottom of the composite water tank (1), a plurality of splicing plates (2) are connected to the sides of the composite water tank (1), the edges of the splicing plates (2) are connected to the edges of the splicing plates (2) and a plurality of fixing bolts (18) that cooperate with the flange edges (17) are connected to each other between the splicing plates (2), and the characteristics are: A support frame (5) is connected to the outer edge of the splicing plate (2), and a force guide mechanism is connected between the support frame (5) and the base (4). The force guide mechanism includes a support rod (6), one end of the support rod (6) is rotatably connected to the support frame (5), the support rod (6) is tilted downward at one end away from the composite water tank (1), and a slider (7) is rotatably connected to the one end of the support rod (6) away from the support frame (5). A columnar support block (10) is commonly connected between the slider (7) and the base (4), and a plurality of auxiliary pressure-dividing mechanisms that cooperate with the force guide mechanism are commonly connected between the composite water tank (1) and the base (4).
2. The high-strength, pressure-resistant composite water tank according to claim 1, characterized in that: The auxiliary pressure dividing mechanism comprises a second support rod (11), the second support rod (11) being located below the first support rod (6) and having one end rotatably connected to the support frame (5), the second support rod (11) being tilted downwardly at one end away from the composite water tank (1), the second support rod (11) being rotatably connected at one end away from the support frame (5) and having a second slider (12), the second slider (12) and the base (4) being connected to a second support block (15) in the form of a column.
3. The high-strength, pressure-resistant composite water tank according to claim 2, characterized in that: A damper (16) is commonly connected between the support block 1 (10) and the support block 2 (15) and the base (4).
4. The high-strength, pressure-resistant composite water tank according to claim 3, characterized in that: The base (4) is located outside the composite water tank (1) and is connected upwardly with a plurality of support plates (1) and (2) support plates (13). The support plate (2) is located between the support frame (5) and the support plate (8). The support plate (8) is connected with a chute (9) that matches the slider (7). The support plate (13) is connected with a chute (14) that matches the slider (12).
5. The high-strength, pressure-resistant composite water tank according to claim 1, characterized in that: The splicing plate (2) is located in the inner area of the support frame (5) and is connected outwardly with a protrusion (3).