Water-saving pedestal pan
By adopting a new trine-triple water-dividing structure design in the toilet and optimizing the water flow distribution, the existing toilet has solved the problems of poor water-saving performance and poor cleaning effect, and achieved significant water reduction and improvement in cleaning effect.
Patent Information
- Application Number
- CN202421603603.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-09
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2034-07-09
AI Technical Summary
The existing toilets have poor water-saving performance when flushing, resulting in waste of water resources, and the cleaning effect is not ideal, making it difficult to completely wash away dirt.
The new trine-triple water split structure design is adopted, including a circular water inlet, upper water pipe and lower water pipe. By optimizing the water flow distribution, the flushing effect and water-saving performance are improved.
It significantly reduces the amount of water used, ensures excellent cleaning of the toilet, and improves the stability and efficiency of the product.
Smart Images

Figure CN222936126U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of sanitary ware equipment, and relates to a toilet, specifically a water-saving toilet. Background Art
[0002] Poor water-saving performance is a major challenge faced by current toilets. When many traditional toilets flush, they adopt the method of discharging a large amount of water at one time. This simple and crude flushing mode often leads to great waste of water resources. Although there are already some toilets on the market that claim to have water-saving functions, in actual use, their water-saving effects are often unsatisfactory. These toilets may have defects in water-saving design, such as imperfect flushing systems and too large water tank volumes, resulting in a large amount of water consumption every time they flush.
[0003] Secondly, when some toilets flush, due to unreasonable design of the water flow path or insufficient flushing force, the dirt cannot be completely washed away, leaving residues on the inner wall of the toilet. This not only affects the sanitation of the toilet but also brings great inconvenience to users. Users often need to flush multiple times to achieve a satisfactory cleaning effect, which not only wastes water resources but also increases the usage cost.
[0004] To address the above problems, we urgently need to develop toilets with new structures to solve the disadvantages such as poor water-saving performance and unsatisfactory cleaning effects. In view of the disadvantages of current toilets in terms of water-saving performance, cleaning effects, etc., we need to develop toilets with new structures, adopt advanced water-saving technologies and production processes, improve the water-saving performance, cleaning effects and production efficiency of the products, and meet the market's demand for water-saving and environmental protection. Summary of the Utility Model
[0005] To solve the above deficiencies in the prior art, the utility model aims to provide a water-saving toilet, which adopts a new three-way water diversion structure to achieve significant water saving, enhance the cleaning function, and improve the stability of the product.
[0006] To achieve the above object, the technical solutions adopted by the utility model are as follows:
[0007] A water-saving toilet, comprising a toilet main body. Inside the toilet main body, there are a toilet pan, a siphon elbow and a flushing water channel. The toilet pan is arranged at the front end of the toilet main body. At the bottom of the toilet pan, there are a siphon inlet and a jet nozzle. The siphon inlet is connected with a cap head. The siphon elbow is arranged at the rear end of the lower part of the toilet main body and is connected with the cap head. The flushing water channel is connected with the upper part of the toilet pan. There is an annular water guide groove on the upper edge of the toilet pan. The inner edge of the water guide groove is connected with the toilet pan, and the outer edge of the water guide groove is provided with a side wall. The upper edge of the side wall is connected with the outer shell to form a seat ring. There is a flushing water channel at the rear end of the side wall. The flushing water channel includes a circular water inlet and a water distribution structure. The water distribution structure is provided with an upper water pipe and a lower water pipe. The upper water pipe is connected with the water inlet and is arranged on one side of the toilet pan and is connected with the water guide groove. The lower water pipe is divided into left and right water guide walls, which respectively surround the upper part of the cap head from the left and right. One end of the left and right water guide walls is connected with the water inlet, and the other end is connected with the jet nozzle, and the jet nozzle faces the inlet of the siphon elbow.
[0008] By designing the water inlet to be circular, the water inlet resistance can be greatly reduced, the wear of the pipeline interface can be reduced, and it can be avoided that the sealing performance of the pipeline interface is reduced due to the long-term use of the toilet, resulting in toilet leakage.
[0009] As a limitation of the present utility model, the water distribution structure is an overall circular pipeline, including a water diversion structure and an intrusion model.
[0010] Through the unique circular pipeline design, pipeline water diversion design and intrusion model design, the collision of water flow in the pipeline is significantly reduced, the reduction of the gravitational potential energy of water is effectively prevented, and the toilet function is completed with the maximum impact force, improving the use efficiency and water-saving performance of the toilet. Among them, the end of the pipeline adopts a circular cross-section design, so that the water flow forms a more smooth movement trajectory in the pipeline, reducing the water flow collision and reducing the energy loss.
[0011] The pipeline is designed with a water diversion structure to guide the water flow to flow along a predetermined path, avoiding the formation of disorder in the pipeline, and further improving the stability and impact force of the water flow.
[0012] By introducing an intrusion model at the end of the flushing pipeline, the gentle turning of the water flow is realized, thereby improving the flushing effect of the toilet.
[0013] Due to the adoption of the above technical solutions, compared with the prior art, the beneficial effects obtained by the present utility model are:
[0014] (1) The water-saving toilet involved in the present utility model adopts a three-way water distribution design. By optimizing the water flow distribution, the water flow is made more uniform and concentrated, thereby improving the flushing effect and water-saving performance. This design can not only reduce the water consumption, but also ensure that the toilet has an excellent cleaning effect.
[0015] (2)The water-saving toilet of the present utility model has strong structural adaptability, can be adapted to most cover plates, water tanks and water fittings sizes, and saves the customer's replacement cost;
[0016] (3)The water-saving toilet of the present utility model adopts a one-time molding technology without bonding, simplifies the production steps, reduces the production cost, and improves the production efficiency. By adopting advanced mold design and manufacturing technologies, integrated production is realized, and no cumbersome bonding operation is required. This process not only improves the product quality but also shortens the production cycle.
[0017] In summary, the water-saving toilet of the present utility model not only has the advantages of water saving, enhanced cleaning function and improved production efficiency, but also has strong adaptability, is easy to popularize and mass-produce. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] The following further describes the present utility model in detail with reference to the accompanying drawings and specific embodiments.
[0019] Figure 1 is a schematic structural diagram of an embodiment of the present utility model;
[0020] Figure 2 is a front view of the structural relationship of an embodiment of the present utility model;
[0021] Figure 3 is a schematic rear view structure diagram of an embodiment of the present utility model;
[0022] Figure 4 is a schematic rear view plane structure diagram of an embodiment of the present utility model;
[0023] Figure 5 is a schematic top view plane structure diagram of an embodiment of the present utility model.
[0024] In the figure: 1, toilet main body; 2, toilet pan; 3, siphon elbow; 4, flushing water channel; 5, cap head; 6, water guide groove; 7, water inlet; 8, upper water pipe; 9, lower water pipe; 10, water guide wall. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0025] The following describes the preferred embodiments of the present utility model with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are only for the purpose of illustrating and understanding the present utility model and are not intended to limit the present utility model.
[0026] Embodiment A water-saving toilet
[0027] As Figures 1-5As shown in the figure, this embodiment includes a toilet main body 1. Inside the toilet main body 1, there are a toilet bowl 2, a siphon elbow 3, and a flushing water channel 4. The toilet bowl 2 is arranged at the front end of the toilet main body 1. At the bottom of the bowl 2, there are a siphon inlet and a jet outlet. The siphon inlet is connected to a cap head 5. The siphon elbow 3 is arranged at the rear end of the lower part of the toilet main body 1 and is connected to the cap head 5, so that the siphon inlet at the bottom of the toilet main body 1 is connected to the siphon elbow 3. The diameter of the siphon elbow can be 54 mm. The flushing water channel 4 is connected to the upper part of the toilet bowl 2. There is an annular water guide groove 6 on the upper edge of the toilet bowl 2. The inner edge of the water guide groove 6 is connected to the toilet bowl 2. The outer edge of the water guide groove 6 is provided with a side wall. The upper edge of the side wall is connected to the outer shell to form a seat ring. There is a flushing water channel 4 at the rear end of the side wall. The flushing water channel includes a circular inlet 7 and a water distribution structure. The water distribution structure is provided with an upper water pipe 8 and a lower water pipe 9. The upper water pipe 8 is connected to the inlet 7 and is arranged on one side of the toilet bowl 2 and is connected to the water guide groove 6. The output water flow spirally flows into the toilet bowl 2 along the water guide groove 6. The lower water pipe 9 is divided into left and right water guide walls 10. The left and right water guide walls 10 are both arc-shaped pipes. They respectively surround the upper part of the cap head 5 from the left and right. One end of the left and right water guide walls 10 is connected to the inlet 7, and the other end is connected to the jet outlet. The cap head 5 is connected to the siphon elbow, so that the siphon inlet at the bottom of the toilet bowl 2 is connected to the siphon elbow 3 for siphon drainage. The jet outlet at the bottom of the toilet bowl 2 faces the inlet of the siphon elbow 3, so that the water flow led out by the left and right water guide walls 10 directly impacts the siphon elbow 3 to achieve rapid drainage.
[0028] Among them, both the upper water pipe 8 and the lower water pipe 9 of the water distribution structure are circular pipelines and share a circular inlet 7. The water diversion structure of the circular pipelines in the water distribution structure significantly reduces the collision of the water flow in the pipeline, effectively prevents the reduction of the gravitational potential energy of the water, and the circular cross-section design at the end of the pipeline makes the water flow form a smoother movement trajectory in the pipeline, reduces the water flow collision, reduces the energy loss, and the invasive model in which the left and right water guide walls 10 are connected to the jet outlet directly impacts the siphon elbow 3 with the introduced water flow, so as to complete the toilet function with the maximum impact force, improving the use efficiency and water-saving performance of the toilet.
[0029] When this example is in use, the water flows into the toilet main body 1 through the inlet 7. Inside the toilet main body 1, the water flow is first divided by the water distribution structure of the flushing water channel 4 and flows into the upper water pipe 8 and the lower water pipe 9 respectively. The water flowing into the upper water pipe 8 flows from the upper water pipe 8 into the water guide groove 6 on the upper part of the side wall of the toilet bowl 2 and spirally flows into the inside of the toilet bowl 2 through the water holes opened at the lower part of the water guide groove 6, effectively flushing the inside of the toilet bowl 2 by spiral flushing, reducing the splashing of water during flushing, and at the same time reducing the water consumption. Then the water flow converges into the cap head 5 and flows into the siphon elbow 3 from the siphon inlet at the bottom of the toilet main body 1;
[0030] The water flow into the lower water pipe 9 is diverted by the left and right water guide walls 10, reducing the water flow collision, lowering the energy loss, and the introduced water flow is directly flushed into the siphon elbow 3 through the ejection port, thereby completing the toilet function with the maximum impact force and improving the water-saving performance of the toilet.
[0031] It should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the above embodiments, for those skilled in the art, they can still modify the technical solutions recorded in the above embodiments or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A water-saving toilet, characterized in that: The toilet comprises a toilet body (1), wherein a toilet pot (2), a siphon elbow (3) and a flushing water channel (4) are arranged inside the toilet body (1); the toilet pot (2) is arranged at the front end of the toilet body (1), and a siphon pipe water inlet and a jet outlet are arranged at the bottom of the toilet pot (2), and the siphon pipe water inlet is connected to a cap head (5); the siphon elbow (3) is arranged at the rear end of the lower part of the toilet body (1) and is connected to the cap head (5); the flushing water channel (4) is connected to the upper part of the toilet pot (2); an annular water guide groove (6) is arranged on the upper edge of the toilet pot (2), the inner edge of the water guide groove (6) is connected to the toilet pot (2), and the water guide groove (6) A side wall is provided at the outer edge, the upper edge of the side wall is connected to the outer shell to form a seat ring, and a flushing water channel (4) is provided at the rear end of the side wall. The flushing water channel (4) includes a circular water inlet (7) and a water distribution structure. The water distribution structure is provided with an upper water pipe (8) and a lower water pipe (9). The upper water pipe (8) is connected to the water inlet (7) and is arranged on one side of the toilet pot (2) and is connected to the water guide groove (6). The lower water pipe (9) is divided into left and right water guide walls (10), which surround the top of the hat head (5) from the left and right respectively. One end of the left and right water guide walls (10) is connected to the water inlet (7), and the other end is connected to the injection port, and the injection port faces the entrance of the siphon bend.
2. A water-saving toilet according to claim 1, characterized in that: The upper water delivery pipe (8) and the lower water delivery pipe (9) of the water distribution structure are both circular pipes and share a circular water inlet (7).
3. A water-saving toilet according to claim 1, characterized in that: The water guide wall (10) is an arc-shaped tube.
4. A water-saving toilet according to claim 1, characterized in that: The water guide wall (10) is arranged directly above the hat head (5).