Rotary flushing type squatting pan
By designing the guide ring and flow platform of the vortex flush squat toilet, the problem of unsanitary corners formed by the scrubbing holes of the squat toilet is solved, resulting in a stronger flushing effect and higher user satisfaction.
Patent Information
- Application Number
- CN202422945147.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-29
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-11-29
AI Technical Summary
The brush hole of a conventional squat toilet is located below the water ring, and the water outlet direction is at an acute angle or parallel to the washing surface, which causes a dead corner for hygiene to form around or above the brush hole, affecting the user experience.
A vortex flushing squat toilet is designed, which adopts a guide ring and flow guiding platform structure. Multiple corner brushing holes are set on the guide ring. The flushing water flows around the washing surface in the main water channel and forms a rotating water flow. The main brushing hole and the secondary brushing hole work together to clean, increase the washing surface depth and reduce the dead corners of hygiene.
It effectively cleans the hard-to-reach areas that traditional squat toilets cannot reach, enhances flushing power, reduces the probability of splashing water, and improves the user experience.
Smart Images

Figure CN223577250U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the field of bathroom, and relates to a rotary flushing squatting pan. BACKGROUND
[0002] Squatting pan refers to a pan with the feature of taking squatting posture when used. In public bathrooms, squatting pan is very common, and has the advantages of low price, large flushing force, not easy to be blocked, small space occupation, and being very suitable for small-sized bathrooms, compared with toilet. The brushing hole of conventional squatting pan is located at the lower side of the water ring, and the water outlet direction is at an acute angle or parallel state with the cleaning surface, which causes the surrounding or upper end of the brushing hole to be unable to be cleaned, thereby generating a sanitary dead angle, and the sanitary dead angle is not cleaned for a long time or becomes yellow, affecting the use experience. SUMMARY
[0003] The utility model discloses a rotary flushing squatting pan, and solves the problem that the brushing hole of conventional squatting pan is located at the lower side of the water ring, and the water outlet direction is at an acute angle or parallel state with the cleaning surface, thereby generating a sanitary dead angle.
[0004] The utility model discloses a rotary flushing squatting pan, and solves the problem that the brushing hole of conventional squatting pan is located at the lower side of the water ring, and the water outlet direction is at an acute angle or parallel state with the cleaning surface, thereby generating a sanitary dead angle.
[0005] The utility model discloses a rotary flushing squatting pan, and solves the problem that the brushing hole of conventional squatting pan is located at the lower side of the water ring, and the water outlet direction is at an acute angle or parallel state with the cleaning surface, thereby generating a sanitary dead angle.
[0006] Further, the guide ring is composed of a plurality of strip-shaped guide blocks and a plurality of corners, the plurality of guide blocks are arranged around the cleaning surface, the guide blocks are connected through the corners between the end portions, the brushing holes are divided into main brushing holes and auxiliary brushing holes, the brushing holes in the same direction as the water inlet direction are the main brushing holes, and the brushing holes in the different direction from the water inlet direction are the auxiliary brushing holes, the main brushing holes are at least two, and the auxiliary brushing holes are at least two.
[0007] Further, the included angle between the flow guide platform and the horizontal plane is 5-20 degrees and is inclined to the cleaning surface.
[0008] Further, the side surface of the guide block close to the cleaning surface is a flow guide plane, and the included angle between the flow guide plane and the water outlet direction of the brushing hole is an acute angle.
[0009] Further, the washing surface is close to the water inlet end of the rear end, and the end away from the water inlet is the front end, the bottom of the washing surface is connected with a pollution storage area, the pollution storage area is connected at the junction of the front end and the rear end, the distance from the front end to the pollution storage area is greater than the distance from the rear end to the pollution storage area, and the angle between the front end and the horizontal plane is greater than the angle between the rear end and the horizontal plane.
[0010] Further, the angle between the front end and the horizontal plane is 15-30°, and the angle between the rear end and the horizontal plane is 25-45°.
[0011] Further, the pollution storage area is a circular channel, and the inner diameter gradually decreases from top to bottom.
[0012] Further, the bottom end of the pollution storage area is connected with a waterway, the waterway is connected with a sewage outlet through a water channel, and the sewage outlet is communicated with a sewer.
[0013] The beneficial effects of the utility model lie in:
[0014] 1. A plurality of corners protruding towards the washing surface are arranged on the guide ring, and a brushing hole is arranged on the corner. When the flushing water enters the main waterway, it first flows around the washing surface, and then quickly flows out from the brushing hole during the flowing process, and the flowing water forms a rotating water flow on the washing surface. The rotating water flow can fully cover the washing surface, including the brushing hole around and the upper end area which cannot be cleaned by the traditional squatting toilet, thereby effectively solving the problem of sanitary dead angle.
[0015] 2. When the utility model is flushed, the flushing water flows around the washing surface in the main waterway and quickly flows out from the brushing hole to form a rotating water flow. This design further enhances the flushing force of the flushing water, so that the squatting toilet still has the characteristics of large flushing force and is not easy to be blocked. Since the overall shape of the squatting toilet is not changed, it is very suitable for small household bathrooms, and the advantage of small space occupation is continued.
[0016] 3. The utility model increases the slope of the rear end of the washing surface, reduces the distance to the water seal point, thereby greatly increasing the depth of the washing surface, reducing the probability of splashing water from the source, and greatly increasing the user experience. BRIEF DESCRIPTION OF DRAWINGS
[0017] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the drawings needed to be used in the embodiment or the prior art description will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the utility model, and those skilled in the art can obtain other drawings according to these drawings without creating labor.
[0018] Figure 1 It is a structural exploded schematic view of the utility model;
[0019] Figure 2 The utility model discloses a waterway structure schematic view;
[0020] Figure 3 The utility model discloses a structure sectional view;
[0021] In the drawing, 1, water circle, 2, big body, 11, water inlet, 12, main waterway, 13, main brush washing hole, 14, auxiliary brush washing hole, 15, flow guide plane, 16, flow guide platform, 21, washing surface, 22, pollution storage area, 23, waterway mouth, 24, waterway, 25, pollution discharge mouth, 26, guide ring, 27, guide block, 28, corner. DETAILED DESCRIPTION
[0022] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model and not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the ordinary skilled in the art without creative work belong to the protection scope of the utility model.
[0023] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model and not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the ordinary skilled in the art without creative work belong to the protection scope of the utility model. Figure 1 To the drawings Figure 3 And specific embodiments, the utility model is discussed in detail:
[0024] Embodiment 1
[0025] Reference Figure 1 A rotary flush squatting pan, the washing surface 21 is arranged on the upper layer of the big body, the bottom of the water circle 1 is fixedly connected with the flow guide platform 15, the flow guide platform 15 is connected with the edge of the washing surface 21, the upper surface of the flow guide platform 15 is provided with the guide ring 26, the guide ring 26 is arranged around the washing surface 21, the water inlet 11 is formed in one end of the water circle 1, the outer wall of the guide ring 26, the top wall and the side wall of the water circle 1 and the upper surface of the flow guide platform 15 form a ring type channel, the ring type channel trend is around the washing surface 21, the ring type channel is the main waterway 12, the water inlet 11 is connected with the main waterway 12, the guide ring 26 is provided with a plurality of corners 28 protruding to the washing surface 21, and the corner 28 is provided with a brush washing hole. The flushing water enters the main waterway 12 first and flows around the washing surface 21, and the water flow is quickly discharged from the brush washing hole during the flowing process, and the discharged water flow forms a rotating water flow on the washing surface 21.
[0026] Reference Figure 2The guide ring is composed of a plurality of strip-shaped guide blocks and a plurality of corners. The plurality of guide blocks 27 are arranged around the washing surface 21. The guide blocks 27 are connected by the corners 28 between the ends of the guide blocks 27. The brush washing holes are divided into main brush washing holes 13 and auxiliary brush washing holes 14. The brush washing holes in the same direction as the water inlet direction are the main brush washing holes 13, and the brush washing holes in the different direction from the water inlet direction are the auxiliary brush washing holes 14. The two kinds of brush washing holes are respectively located on the left and right sides of the water ring 1. In the present embodiment, at least two main brush washing holes 13 and at least two auxiliary brush washing holes 14 are provided in the main water channel 12. In the present embodiment, three main brush washing holes 13 and three auxiliary brush washing holes 14 are respectively provided. In the flushing process, the cooperation of the main brush washing holes 13 and the auxiliary brush washing holes 14 forms a rotating water flow to flush the dirt on the washing surface 21.
[0027] The included angle between the guide platform 15 and the horizontal plane is 5-20° and is inclined to the washing surface 21. The side surface of the guide block 27 close to the washing surface 21 is the guide flow plane 16. The included angle between the guide flow plane 16 and the water outlet direction of the brush washing hole is an acute angle. The included angle effectively enables the flushing water to be sprayed on the guide flow plane 16 from the brush washing hole. The upper part of the guide flow plane 16 is shielded by the water ring 1, which can effectively avoid the external water splashing.
[0028] The end of the washing surface 21 close to the water inlet 11 is the rear end, and the end away from the water inlet 11 is the front end. The bottom of the washing surface 21 is connected with the dirt storage area. The dirt storage area 22 is connected at the junction of the front end and the rear end. The distance from the front end to the dirt storage area 22 is greater than the distance from the rear end to the dirt storage area 22. The included angle between the front end and the horizontal plane is greater than the included angle between the rear end and the horizontal plane.
[0029] The included angle between the front end and the horizontal plane is 15-30°. In the present embodiment, the value is 23°.
[0030] The included angle between the rear end and the horizontal plane is 25-45°. In the present embodiment, the value is 33°.
[0031] The front end of the washing surface 21 is relatively long, and the slope is relatively gentle. The rear end of the washing surface 21 is relatively short, and the slope is relatively steep. The design of the shape effectively enables the dirt to be naturally discharged to the dirt storage area 22 by gravity. The relatively steep washing surface 21 can effectively avoid the design problem of the relatively shallow washing surface 21 caused by the water seal height problem.
[0032] Reference Figure 3 The bottom of the washing surface 21 is connected with the dirt storage area 22. The dirt storage area 22 is connected at the junction of the front end and the rear end. The dirt storage area 22 is a circular channel, and the inner diameter gradually decreases from top to bottom. The circular channel can effectively cooperate with the structure of the rotating flushing to make the dirt rotate, which is more beneficial to clean the washing surface 21.
[0033] The waterway opening 23 is connected with the sewage outlet 25 through the waterway 24, and the sewage outlet 25 is communicated with a sewer, so that the sewage and the dirt are discharged into the sewer together.
[0034] The working process of the spin-flush squatting pan is as follows: when the squatting pan needs to be flushed, flushing water enters the main waterway 12 through the water inlet 11, and after entering the main waterway 12, the flushing water flows around the washing surface 21 first, and then flows out through the brushing holes, and in the flowing process, the flushing water flows out quickly from the main brushing hole 13 and the auxiliary brushing hole 14, and through the cooperation of the main brushing hole 13 and the auxiliary brushing hole 14, the water flow forms a rotating water flow on the washing surface 21, and the rotating water flow flushes the dirt on the washing surface 21. The part from the front end of the washing surface 21 to the dirt storage area 22 is relatively long and has a relatively gentle slope, and the part from the rear end to the dirt storage area 22 is relatively short and has a relatively steep slope, and such a design is helpful for the natural flow of the dirt, so that the dirt can be naturally discharged to the dirt storage area 22 by gravity, and the sewage and the dirt flow from the dirt storage area 22 through the waterway opening 23 into the waterway 24, and finally are discharged into the sewer through the sewage outlet 25.
[0035] The spin-flush squatting pan has the advantages that: through the cooperation of the main brushing hole and the auxiliary brushing hole, a rotating water flow is formed on the washing surface, so that the generation of a sanitary dead angle is avoided, and at the same time, the slope of the rear end of the washing surface is increased, the distance to the water seal point is reduced, and the depth of the washing surface is greatly increased, so that the probability of splashing water is reduced from the source, and the user experience is greatly improved.
[0036] The above further describes the utility model with the help of specific embodiments, but it should be understood that the specific description herein should not be understood as limiting the essence and scope of the utility model, and various modifications of the above embodiments made by ordinary skilled persons in the art after reading the specification all belong to the scope protected by the utility model.
Claims
1. A spin-cup squat toilet comprising a water ring (1) and a large body (2), characterized in that, The upper layer of the body (2) is provided with a washing surface (21), the bottom of the water ring (1) is fixedly connected with a flow guide platform (15), the flow guide platform (15) is connected with the edge of the washing surface (21), the upper surface of the flow guide platform (15) is provided with a guide ring (26), the guide ring (26) is arranged around the washing surface (21), one end of the water ring (1) is provided with a water inlet (11), the outer wall of the guide ring (26), the top wall and the side wall of the water ring (1) and the upper surface of the flow guide platform (15) form a ring-shaped channel, the ring-shaped channel is a main waterway (12), the water inlet (11) is connected with the main waterway (12), the guide ring (26) is provided with a plurality of corners (28) protruding towards the washing surface (21), and the corners (28) are provided with brushing holes.
2. The spin-cleaning squat toilet according to claim 1, wherein The guide ring (26) is composed of a plurality of strip-shaped guide blocks (27) and a plurality of corners (28), a plurality of the guide blocks (27) are arranged around the washing surface (21), the guide blocks (27) are connected between the end portions through the corners (28), the brushing holes are divided into main brushing holes (13) and auxiliary brushing holes (14), the brushing holes in the same water inlet direction are the main brushing holes (13), and the brushing holes different from the water inlet direction are the auxiliary brushing holes (14), there are at least two main brushing holes (13), and there are at least two auxiliary brushing holes (14).
3. The spin-cleaning squat toilet according to claim 2, characterized in that, The included angle between the flow guide platform (15) and the horizontal plane is 5-20° and is inclined to the washing surface (21).
4. The spin-cleaning squat toilet according to claim 3, wherein The side surface of the guide block (27) close to the washing surface (21) is a flow guide plane (16), and the included angle between the flow guide plane (16) and the water outlet direction of the brushing hole is an acute angle.
5. The spin-cleaning squat toilet according to claim 3, wherein One end of the washing surface (21) close to the water inlet (11) is a rear end, and the other end away from the water inlet (11) is a front end, the bottom of the washing surface (21) is connected with a sewage storage area (22), the distance between the front end and the sewage storage area (22) is greater than the distance between the rear end and the sewage storage area (22), and the included angle between the front end and the horizontal plane is greater than the included angle between the rear end and the horizontal plane.
6. The spin-cleaning squat toilet according to claim 5, wherein The included angle between the front end and the horizontal plane is 15-30°, and the included angle between the rear end and the horizontal plane is 25-45°.
7. A spin-ceram squat toilet according to claim 5 or 6, characterized in that The sewage storage area (22) is a circular channel, and the inner diameter gradually decreases from top to bottom.
8. The spin-cleaning squat toilet according to claim 7, characterized in that, The bottom end of the sewage storage area (22) is connected with a water channel (23), the water channel (23) is connected with a sewage discharge port (25) through a water channel (24), and the sewage discharge port is connected with a sewer.