Splash-proof faucet
By designing a slow-flow component for the anti-splash faucet and utilizing a diversion and return cavity structure, the water flow is made to collide and converge within the faucet, thus solving the problem of water splashing in the laboratory and improving safety.
Patent Information
- Application Number
- CN202423226357.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-25
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-12-25
AI Technical Summary
Excessive water pressure caused water to splash onto the floor in the laboratory, making the floor slippery and posing a safety hazard.
Design a splash-proof faucet, including a main water pipe, a four-way valve, a water outlet pipe and a gooseneck water outlet pipe, and set up a flow-slowing component to divert and return the water flow. The diverting and returning water flow chambers cause the water flow to collide and converge, reducing the flow rate.
It effectively reduces the outflow speed of water, prevents water splashing, and improves laboratory safety.
Smart Images

Figure CN223562245U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of faucet, concretely relates to a splashproof faucet. BACKGROUND
[0002] In laboratory instruments, the most commonly used is the test table, wherein, in order to facilitate the cleaning of experimental apparatus, three-way water nozzle will be provided on the test table. In the prior art, the water pressure of the laboratory is too large, and it is not convenient to control the water flow, so that water splashes to the floor, causing the floor to be wet and slippery, which is easy to cause students to slip and fall and cause safety hazards. SUMMARY
[0003] Therefore, the utility model aims at providing a splashproof faucet to solve the above problems.
[0004] In order to solve the above technical problems, the technical scheme of the utility model is as follows: a splashproof faucet, comprising a main water pipe, a four-way valve, a first water outlet pipe, a second water outlet pipe and a swan neck water outlet pipe, wherein the first water outlet pipe, the second water outlet pipe and the swan neck water outlet pipe are all provided with a water outlet valve; the water outlet end of the first water outlet pipe, the second water outlet pipe and the swan neck water outlet pipe is provided with a flow slowing component; the flow slowing component comprises a water inlet, a water outlet, a first flow dividing cavity, a second flow dividing cavity, a first backflow cavity, a second backflow cavity and a water outlet cavity; the water inlet is in communication with the first flow dividing cavity and the second flow dividing cavity, the first backflow cavity is in communication with the first flow dividing cavity, the second backflow cavity is in communication with the second flow dividing cavity, the first backflow cavity and the second backflow cavity are both in communication with the water outlet cavity, and the water outlet cavity is in communication with the water outlet.
[0005] Preferably, the flow slowing component is in a cylindrical structure, a partition plate is arranged in the flow slowing component, and the flow slowing component is divided into the first flow dividing cavity, the second flow dividing cavity, the first backflow cavity, the second backflow cavity and the water outlet cavity by the partition plate.
[0006] Preferably, the water outlet cavity is located inside the partition plate.
[0007] Preferably, the liquid flow direction in the first flow dividing cavity and the second flow dividing cavity is the same as the liquid flow direction in the first water outlet pipe, the second water outlet pipe and the swan neck water outlet pipe.
[0008] Preferably, the liquid flow direction in the first backflow cavity and the second backflow cavity is opposite to the liquid flow direction in the first flow dividing cavity and the second flow dividing cavity.
[0009] The technical effect of the utility model mainly embodies: water in the water faucet enters the slow flow assembly first, the water flow is separated by the first shunt cavity and the second shunt cavity, the water flow collides and converges after passing through the second backflow cavity and the second backflow cavity, thereby reducing the flow rate of the water flow out of the water outlet, and then realizing that the water flow does not splash after flowing out. BRIEF DESCRIPTION OF DRAWINGS
[0010] Figure 1 It is a perspective view of the utility model;
[0011] Figure 2 It is a front view of the slow flow assembly;
[0012] Figure 3 It is Figure 2 It is a sectional view along the line A-A;
[0013] Figure 4 It is Figure 2 It is a sectional view along the line B-B;
[0014] Figure 5 It is Figure 2 It is a sectional view along the line C-C;
[0015] Figure 6 It is Figure 2 It is a sectional view along the line D-D.
[0016] The figure mark is: 1-main water pipe, 2-four-way valve, 3-first water outlet pipe, 4-second water outlet pipe, 5-gooseneck water outlet pipe, 6-water outlet valve, 7-slow flow assembly, 71-water inlet, 72-water outlet, 73-first shunt cavity, 74-second shunt cavity, 75-first backflow cavity, 76-second backflow cavity, 77-water outlet cavity, 78-dividing plate. DETAILED DESCRIPTION
[0017] The specific embodiment of the utility model is further described in combination with the drawings, so that the technical scheme of the utility model is easier to understand and master.
[0018] In the embodiment, it is understood that the terms "intermediate", "upper", "lower", "top", "right side", "left end", "upper", "back", "middle" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.
[0019] In addition, in the present embodiment, if the connection or fixing manner between components is not particularly described, the connection or fixing manner can be bolt fixing or pin fixing commonly used in the prior art, or pin shaft connection, and thus the connection or fixing manner is not described in detail in the present embodiment.
[0020] The utility model provides a kind of splash-proof faucet, as shown in Figures 1-6 The first water outlet pipe 3, the second water outlet pipe 4 and the goose neck water outlet pipe 5 are all communicated with the four-way valve 2, and the first water outlet pipe 3, the second water outlet pipe 4 and the goose neck water outlet pipe 5 are all provided with a water outlet valve 6. By rotating the water outlet valve 6, the first water outlet pipe 3, the second water outlet pipe 4 and the goose neck water outlet pipe 5 can realize water outlet. The water outlet 72 end of the first water outlet pipe 3, the second water outlet pipe 4 and the goose neck water outlet pipe 5 is provided with a slow flow assembly 7. The slow flow assembly 7 includes a water inlet 71, a water outlet 72, a first shunt cavity 73, a second shunt cavity 74, a first reflux cavity 75, a second reflux cavity 76 and a water outlet cavity 77. The water inlet 71 is communicated with the first shunt cavity 73 and the second shunt cavity 74. The first reflux cavity 75 is communicated with the first shunt cavity 73. The second reflux cavity 76 is communicated with the second shunt cavity 74. The first reflux cavity 75 and the second reflux cavity 76 are both communicated with the water outlet cavity 77. The water outlet cavity 77 is communicated with the water outlet. The water in the faucet first enters the slow flow assembly 7. The first shunt cavity 73 and the second shunt cavity 74 separate the water flow, so that the water flow collides and converges at the water outlet cavity 77 after passing through the second reflux cavity 76 and the second reflux cavity 76, thereby reducing the flow rate of the water flow flowing out of the water outlet 72, and further realizing that the water flow does not splash after flowing out.
[0021] As a preferred, the slow flow assembly 7 is a cylindrical structure, and a partition plate 78 is arranged in the slow flow assembly 7. The slow flow assembly 7 is divided into the first shunt cavity 73, the second shunt cavity 74, the first reflux cavity 75, the second reflux cavity 76 and the water outlet cavity 77 by the partition plate 78. As a preferred, the water outlet cavity 77 is located inside the partition plate 78.
[0022] As preferred, the liquid flow direction in the first and second flow distribution cavities 73 and 74 is the same as the liquid flow direction in the first, second and goose-neck water outlet pipes 3, 4 and 5. As preferred, the liquid flow direction in the first and second backflow cavities 75 and 76 is opposite to the liquid flow direction in the first and second flow distribution cavities 73 and 74, so that the water flow is first distributed and then makes a 180° turn to enter the first and second backflow cavities 75 and 76 through the first and second flow distribution cavities 73 and 74 and the first and second backflow cavities 75 and 76.
[0023] The technical effects of the utility model mainly embody that: the water in the faucet first enters the slow-flow component, the water flow is separated by the first and second flow distribution cavities, the water flow collides and converges at the water outlet cavity after passing through the second and second backflow cavities, so that the flow rate of the water flow flowing out of the water outlet is reduced, and the water flow does not splash after flowing out.
[0024] Of course, the above is only a typical example of the utility model, and in addition to this, the utility model can have other various specific implementation manners, and any technical solution formed by equivalent replacement or equivalent transformation falls within the scope of protection required by the utility model.
Claims
1. A splash-proof faucet characterized by comprising: The utility model provides a shower head, including main water pipe, four -way valve, first outlet pipe, second outlet pipe and swan neck outlet pipe, be provided with water outlet valve on first outlet pipe, second outlet pipe and swan neck outlet pipe, the water outlet of first outlet pipe, second outlet pipe and swan neck outlet pipe all is provided with slow flow subassembly, slow flow subassembly includes water inlet, water outlet, first shunt cavity, second shunt cavity, first reflux cavity, second reflux cavity and water outlet cavity, water inlet with first shunt cavity and second shunt cavity are communicated, first reflux cavity with first shunt cavity are communicated, second reflux cavity with second shunt cavity are communicated, first reflux cavity with second reflux cavity all with water outlet cavity are communicated, water outlet cavity with water outlet are communicated.
2. A splash-proof faucet according to claim 1, wherein The slow flow subassembly is a cylindrical structure, a partition plate is arranged in the slow flow subassembly, the slow flow subassembly is divided into a first shunt cavity, a second shunt cavity, a first reflux cavity, a second reflux cavity and a water outlet cavity by the partition plate.
3. A splash-proof faucet according to claim 2, wherein The water outlet cavity is located inside the partition plate.
4. A splash-proof faucet according to claim 3, wherein The liquid flow direction in the first shunt cavity and the second shunt cavity is the same as the liquid flow direction in the first outlet pipe, the second outlet pipe and the swan neck outlet pipe.
5. A splash-proof faucet according to claim 4, wherein The liquid flow direction in the first reflux cavity and the second reflux cavity is opposite to the liquid flow direction in the first shunt cavity and the second shunt cavity.