Integrated anti-fluid channeling drainage integrator structure
By setting up vertical flow guide pipes in the vertical pipe of the drainage integrator, an independent flow guide and drainage channel and drainage gap is formed, the problem of traversing flow and water flow collision is solved, and efficient and independent drainage and structural reliability is achieved.
Patent Information
- Application Number
- CN202421571131.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-04
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-07-04
AI Technical Summary
The existing drainage integrator structure has problems of traversing and water flow collision, resulting in slowing down drainage speed and odor spilling.
An integrated anti-traffic drainage integrator structure is designed. By setting up a vertical flow guide pipe in the inner cavity of the vertical pipe, an independent flow guide channel and drainage gap is formed to ensure independent drainage of the vertical pipe and branch pipe, and prevent water flow from colliding.
Effectively prevent traversing, ensure the independence and speed of their respective drainage, avoid collision of water flow, improve the strength and reliability of the overall structure, and prevent sewage from overflowing.
Smart Images

Figure CN223035963U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of drainage devices, in particular to a drainage integrator structure. Background Art
[0002] At present, with the improvement of people's living standards, kitchen utensils and equipment that generate waste water, such as washbasins, washing machines, dishwashers, water purifiers, and mini water heaters, will be installed in the kitchen. Since there is generally only one sewer pipe opening in the existing kitchen, the drain pipes of these kitchen utensils and equipment can only be stuffed into the sewer pipe opening one by one, making it difficult to seal the sewer pipe opening and very likely to produce peculiar smells. To solve this problem, the applicant once proposed a patent solution with the patent number 202021371789.9 and the name of "a drainage structure with multiple interfaces" to the Patent Office of the State Intellectual Property Office of China. This solution mainly includes a vertical pipe and at least one branch pipe. Among them, the branch pipe is arranged on the vertical pipe, and the inner cavity of the branch pipe is communicated with the inner cavity of the vertical pipe. When in use, the lower end of the vertical pipe is connected to the sewer pipe opening, and then the drain pipes of multiple kitchen utensils and equipment are connected to the upper end of the vertical pipe and the branch pipe, so as to centrally discharge the sewage generated by multiple kitchen utensils and equipment and seal the sewer pipe opening, thereby avoiding the outflow of peculiar smells. However, in the actual application process, there are still the following deficiencies in this solution:
[0003] First, since the inner cavity of the branch pipe is directly communicated with the inner cavity of the vertical pipe, when the vertical pipe discharges sewage downward, the sewage is likely to flow along the inner cavity wall of the vertical pipe into the inner cavity of the branch pipe. Or, when there are multiple branch pipes on the vertical pipe, the sewage discharged from one branch pipe is likely to directly rush into the inner cavity of other branch pipes. These two flow-through situations make the flowing-through sewage easily accumulate in the drain pipes of the kitchen utensils and equipment through the branch pipes, thus easily generating peculiar smells.
[0004] Second, since the inner cavity of the branch pipe is directly communicated with the inner cavity of the vertical pipe, when the vertical pipe and the branch pipe drain water simultaneously, the water flows of both sides are likely to collide with each other, thus affecting the drainage speed.
[0005] Therefore, in view of the foregoing deficiencies of the foregoing solution, the applicant believes that it is very necessary to further improve its structure so that it can better meet people's application needs. Summary of the Utility Model
[0006] The object of the present utility model is to solve the above problems and deficiencies, and provide an integrated anti-crossflow drainage integrator structure. The integrated anti-crossflow drainage integrator structure can form channels for the independent drainage of the vertical pipe and the branch pipe in the inner cavity of the vertical pipe, so that it can prevent crossflow, does not affect their respective drainage, and does not cause the water flows of the two parties to collide with each other, avoiding the influence on the drainage speed. Moreover, by setting the vertical diversion pipe and the vertical pipe as an integral structure, the two can be prevented from becoming loose, so that the overall structural strength of the drainage integrator is higher, the structure is very reliable, and it can also prevent the sewage flowing through the drainage gap from overflowing upwards outside the vertical pipe.
[0007] The technical solution of the present utility model is realized as follows: An integrated anti-crossflow drainage integrator structure includes a vertical pipe and at least one branch pipe. The branch pipe is arranged on the vertical pipe, and the inner cavity of the branch pipe is communicated with the inner cavity of the vertical pipe. The characteristic is that an integrally formed vertical diversion pipe is further arranged in the inner cavity of the vertical pipe, and the inner cavity wall at the upper end of the vertical diversion pipe and the inner cavity wall of the vertical pipe are integrally formed, so that the inner cavity of the vertical diversion pipe becomes the diversion and drainage channel of the vertical pipe; a drainage gap for the drainage flow of the branch pipe is formed between the vertical diversion pipe and the vertical pipe.
[0008] Preferably, the lower end of the vertical diversion pipe is arranged lower than the bottom edge of the branch pipe, or the lower end of the vertical diversion pipe is at the same horizontal line as the bottom edge of the branch pipe.
[0009] Preferably, the vertical diversion pipe is a funnel-shaped pipe body structure.
[0010] Preferably, the vertical diversion pipe is composed of an upper circular pipe part, a middle funnel pipe part, and a lower circular pipe part. The inner cavity wall at the upper end of the upper circular pipe part and the inner cavity wall of the vertical pipe are integrally formed, and the inner diameter of the upper circular pipe part is the same as the inner diameter of the vertical pipe. The inner diameter of the lower circular pipe part is smaller than the inner diameter of the upper circular pipe part.
[0011] Preferably, a conical flare is further arranged at the pipe orifice at the lower end of the vertical diversion pipe.
[0012] Preferably, the number of the branch pipes is two or more.
[0013] Preferably, threaded connection parts are respectively arranged at the upper and lower ends of the vertical pipe and the outer ends of the branch pipes.
[0014] Advantages of the present utility model: Since the inner cavity of the vertical diversion pipe forms the diversion and drainage channel of the vertical pipe, and a drainage gap for the drainage of the branch pipe is also formed between the vertical diversion pipe and the vertical pipe, channels for the independent drainage of the vertical pipe and the branch pipe can be formed in the inner cavity of the vertical pipe. In this way, it can prevent cross-flow, does not affect their respective drainage, and does not cause the water flows of both sides to collide with each other, avoiding the influence on the drainage speed. Moreover, through the setting of the drainage gap, it can also guide the water discharged from the branch pipe to form a vortex-type drainage water flow, making the drainage faster and smoother. At the same time, when there are multiple branch pipes on the vertical pipe, the vertical diversion pipe can also play a role in blocking, preventing the water discharged from the branch pipe from directly flushing into the inner cavity of other branch pipes and preventing cross-flow. In addition, by setting the vertical diversion pipe and the vertical pipe as an integral structure, and making the inner cavity wall at the upper end of the vertical diversion pipe and the inner cavity wall of the vertical pipe integrally formed, the two will not become loose, making the overall structural strength of the drainage integrator higher, the structure very reliable, and preventing the sewage flowing through the drainage gap from overflowing upwards outside the vertical pipe. Brief Description of the Drawings
[0015] Figure 1 It is a three-dimensional structural schematic diagram of the present utility model.
[0016] Figure 2 For the present utility model Figure 1 It is a cross-sectional structural schematic diagram of the A-A section in the present utility model.
[0017] Figure 3 It is a schematic diagram of the use state of the present utility model. Detailed Embodiment
[0018] As Figure 1 shown, a structure of an integrated anti-cross-flow drainage integrator described in the present utility model includes a vertical pipe 1 and at least one branch pipe 2. The branch pipe 2 is arranged on the vertical pipe 1, and the inner cavity of the branch pipe 2 is communicated with the inner cavity of the vertical pipe 1. To achieve the purpose proposed by the present utility model, as Figure 2 shown, a vertically formed vertical diversion pipe 3 is further arranged in the inner cavity of the vertical pipe 1, and the inner cavity wall at the upper end of the vertical diversion pipe 3 and the inner cavity wall of the vertical pipe 1 are integrally formed, so that the inner cavity of the vertical diversion pipe 3 becomes the diversion and drainage channel 10 of the vertical pipe 1; a drainage gap 20 for the drainage of the branch pipe 2 is also formed between the vertical diversion pipe 3 and the vertical pipe 1. The present utility model can form channels for the independent drainage of the vertical pipe 1 and the branch pipe 2 in the inner cavity of the vertical pipe 1. In this way, it can prevent cross-flow, does not affect their respective drainage, and does not cause the water flows of both sides to collide with each other, avoiding the influence on the drainage speed. Moreover, by setting the vertical diversion pipe 3 and the vertical pipe 1 as an integral structure, the two will not become loose, making the overall structural strength of the drainage integrator higher, the structure very reliable, and preventing the sewage flowing through the drainage gap 20 from overflowing upwards outside the vertical pipe 1.
[0019] As Figure 2 shown, the lower end of the vertical diversion pipe 3 is arranged lower than the bottom edge of the branch pipe 2, or the lower end of the vertical diversion pipe 3 is arranged on the same horizontal line as the bottom edge of the branch pipe 2. This can ensure that the vertical diversion pipe 3 can play a good role in blocking, so as to prevent the water discharged from the branch pipe 2 from directly flushing into the inner cavity of other branch pipes 2 and prevent cross-flow.
[0020] As Figure 2 shown, the vertical diversion pipe 3 is a funnel-shaped pipe body structure. This can guide the sewage discharged from the vertical pipe 1 to form a vortex flow, so that the drainage can be more smooth and rapid.
[0021] As Figure 2 shown, the vertical diversion pipe 3 is composed of an upper circular pipe part 31, a middle funnel pipe part 32 and a lower circular pipe part 33. The inner cavity wall at the upper end of the upper circular pipe part 31 and the inner cavity wall of the vertical pipe 1 are integrally formed, and the inner diameter of the upper circular pipe part 31 is the same as the inner diameter of the vertical pipe 1. The inner diameter of the lower circular pipe part 33 is smaller than the inner diameter of the upper circular pipe part 31. Through the setting of the upper circular pipe part 31, it can be more easily connected with the vertical pipe 1 as a whole. Through the setting of the middle funnel pipe part 32 and the lower circular pipe part 33, it can be more easily guide the water discharged from the vertical pipe 1 and the branch pipe 2 into a vortex flow.
[0022] As Figure 2 shown, a conical flared opening 34 is also provided at the pipe orifice at the lower end of the vertical diversion pipe 3. Through such a structural design, when the sewage is discharged from the lower end of the vertical diversion pipe 3, the sewage is not easy to spray around.
[0023] As Figure 1 and Figure 3 shown, the number of the branch pipes 2 is two or more. This can be connected to the drain pipes of more kitchen utensils and equipment. In the actual application process, the outer diameters of the branch pipes 2 can be the same or different.
[0024] As Figure 1 and Figure 3 shown, threaded connection parts 4 are respectively provided at the upper and lower ends of the vertical pipe 1 and the outer ends of the branch pipes 2. This can facilitate the connection with the drain pipes of various kitchen utensils and equipment or the connection with various drain pipe adapters.
Claims
1. An integrated anti-channeling drainage integrated structure, comprising a vertical pipe (1) and at least one branch pipe (2), wherein the branch pipe (2) is arranged on the vertical pipe (1), and the inner cavity of the branch pipe (2) is connected to the inner cavity of the vertical pipe (1), characterized in that: An integrally formed vertical flow guide pipe (3) is also provided in the inner cavity of the vertical pipe (1), and the inner cavity wall of the upper end of the vertical flow guide pipe (3) is integrally formed with the inner cavity wall of the vertical pipe (1), so that the inner cavity of the vertical flow guide pipe (3) becomes a diversion and drainage channel (10) of the vertical pipe (1); a drainage gap (20) is also formed between the vertical flow guide pipe (3) and the vertical pipe (1) for drainage of the branch pipe (2).
2. The integrated anti-channeling drainage integrated structure according to claim 1 is characterized in that: The lower end of the vertical flow guide pipe (3) is arranged below the bottom edge of the branch pipe (2), or the lower end of the vertical flow guide pipe (3) is arranged on the same horizontal line as the bottom edge of the branch pipe (2).
3. The integrated anti-channeling drainage integrated structure according to claim 1 is characterized in that: The vertical flow guide pipe (3) is a funnel-shaped pipe structure.
4. The integrated anti-channeling drainage integrated structure according to claim 3 is characterized in that: The vertical flow guide pipe (3) is composed of an upper circular tube portion (31), an intermediate funnel tube portion (32), and a lower circular tube portion (33); the inner cavity wall of the upper end of the upper circular tube portion (31) and the inner cavity wall of the vertical tube (1) are integrally formed, and the inner diameter of the upper circular tube portion (31) is the same as the inner diameter of the vertical tube (1); and the inner diameter of the lower circular tube portion (33) is smaller than the inner diameter of the upper circular tube portion (31).
5. The integrated anti-channeling drainage integrated structure according to claim 1 is characterized in that: The vertical flow guide pipe (3) is also provided with a conical expansion opening (34) at the pipe opening at the lower end.
6. The integrated anti-channeling drainage integrated structure according to claim 1 is characterized in that: The number of the branch pipes (2) is two or more.
7. The integrated anti-channeling drainage integrated structure according to claim 1 is characterized in that: The upper and lower ends of the vertical pipe (1) and the outer ends of the branch pipes (2) are also provided with threaded connection parts (4) respectively.
Citation Information
Patent Citations
Drainage structure with multiple connectors
CN213245366U