Closestool splash-proof device, cleaning device and related equipment
By installing a water-blocking device on the toilet and utilizing the movement of the toilet lid, combined with an automatic cleaning system, the problems of toilet splashing and inconvenient cleaning are solved, achieving the effects of splash prevention and automatic cleaning.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- 刘学钊
- Filing Date
- 2025-09-12
- Publication Date
- 2026-04-10
Smart Images

Figure FT_1 
Figure FT_2 
Figure FT_3
Abstract
Description
Technical Field
[0001] This invention relates to toilet splash prevention and cleaning, including automatic cleaning, and a device that controls whether the toilet seat is open or closed before the toilet flush button can be pressed. Background Technology
[0002] When people squat on the toilet, water often splashes up when items, especially excrement, fall into the toilet bowl, and the residue on the toilet bowl needs to be cleaned with a toilet brush. Summary of the Invention
[0003] This device uses a water-blocking basin or baffle of a certain angle and shape, along with holes or channels through which objects pass, to block water splashes from items, especially excrement, falling into the toilet. It utilizes one or more of the following forces as driving power: the force of pressing the toilet lid when it is closed, the force generated by the change in water level in the toilet tank during flushing, the force of pressing the toilet flush button, the force of the flushing water flow, electricity, or any other force. These driving forces are received by the device's power receiving component and then output by the device's power output component to achieve the water-blocking device and toilet cleaning, as well as automatic cleaning. It also includes a device that controls the toilet flush button to be pressed only when the toilet lid is open or closed (this device uses the same power source as the cleaning device, receives the driving forces through its power receiving component, and then outputs them to control the toilet flush button). Any method or process used to achieve the above splash prevention and cleaning purposes is part of this invention.
[0004] Figure description: Refer to the attached figures in the instruction manual. Detailed Implementation
[0005] The following is a demonstration of some embodiments of this device. To enable this device to function better, various parts and methods can be omitted or combined to achieve the above-mentioned splash prevention and cleaning objectives.
[0006] Figure 1 Top view of the device
[0007] Figure 2 Side view of the device
[0008] Figure 3 A device for blocking the toilet flush button
[0009] Figure 4 Detailed accessories and anatomical diagrams for item 15, the image showing one side as follows: Figure 1 As shown in Figure 15, the other side is a symmetrical pair. Figure 5 The diagram shows symmetry and similarity.
[0010] Figure 5Detailed accessories and anatomical diagrams for version 18
[0011] Figure 6 Some analytical diagrams about 2
[0012] Figure 7 Detailed parts and cutaway diagrams for part 5
[0013] Figure 8 / 9 / 10 contains detailed parts and cutaway diagrams for item 6.
[0014] Figure 10 Additional parts for 6-4
[0015] Figures 11 to 17 Detailed parts and anatomical diagrams for part 8
[0016] Figures 18 to 21 Detailed parts and anatomical diagrams for part 9
[0017] Figure 1 , 2 3
[0018] 1. The connection device for the toilet seat has a suction cup or adhesive on the back, which can be attached to or adhered to the toilet seat.
[0019] 2 is another type of connecting device. It has a hollow crossbar inside and is connected to 1. Both ends are equipped with locking parts or screw fastening devices, which can be connected to the toilet seat to fix 1. (2 can be a pair of symmetrical ones.)
[0020] 3 is a cylindrical pin connecting 1 and 4, allowing 4 to move in a fan shape.
[0021] 4 is the device connecting 1 and 5.
[0022] 5 is the power receiving and output device for the automatic cleaning system. 5 can be fitted with a square or other shaped housing, which can be connected and fixed to the bottom of 4 (the end of 4 that does not contact 1), or to any side or end of 8. The housing of 5 can serve as a fixing part for other components of the device, improving their stability. 5 can be multiple sets, each with different gear sizes / lengths / shapes and gear rack sizes / lengths and shapes, to drive various components of the device to suit different functions.
[0023] 6 is the cleaning device of the automatic cleaning system. It can be made of rubber belt or other cleaning materials. 6 can be installed anywhere on the device for better cleaning results (including anywhere on the toilet). 6 is powered by the force generated by the movement of the toilet or any other means. 6 can also be equipped with gears and gear racks (the principle is the same as 5) to receive the force from the movement of the toilet. 6 and 10 are parts of the same structure. The direction and length of 6 and 10 can be adjusted, such as symmetrically, mainly to meet the cleaning needs of 6 and 10 on both the inner and outer sides of 8.
[0024] 7 is the dividing line demonstrating the retractable nature of the water-retaining basin (see below for details). 7 can be positioned at any height and location as shown in 8.
[0025] 8 represents a cross-section of the funnel-shaped water-blocking device. Its bottom has a hole or channel, allowing the bottom to be positioned away from the water in the toilet bowl. An angle is set so that water droplets splashing from objects in the toilet bowl are blocked by 8, preventing them from exceeding the height of 7-1 or the horizontal line 7. The angle of 8 can be relatively steep (referring to the angle from the opening to the upper edge of the basin) to facilitate better entry of items into the opening. 8 can be circular, oval, rectangular, square, polygonal, or any other funnel-shaped, plate-shaped, or other shape. A water outlet can be provided at any point on the surface of 8 to mate with the water outlet at 9.
[0026] 9 is the water tank of the device, responsible for collecting water from the toilet flush, water in the toilet tank, tap water, water supplied by 8, and water for the cleaning device.
[0027] 10 is another automatic cleaning system's cleaning device, which is respectively connected to 6 as the cleaning device for the inner and outer sides of the water-retaining basin.
[0028] 12 holes allow items to pass through.
[0029] The connection hole for the 13-to-1 toilet seat can be drilled in the toilet seat and then secured with screws and nuts.
[0030] 14 is a connecting device with a suction cup or adhesive at the bottom that can be adsorbed or stuck to the toilet.
[0031] 15 is a connecting device, a crossbar connected to 14 for fixing 14.
[0032] 16 refers to a hook / clip or clip that can be hooked / clamped onto a toilet. 16 can also be an adhesive sticker or a connecting part with screws, nuts, or any part that serves this purpose. Its main function is to connect / fix to the toilet, especially the toilet tank and near the flush button on the tank.
[0033] 17 is a movable baffle.
[0034] The power transmission device 18 is connected to 17 / 19 at both ends, and can be designed as an adjustable or fixed length structure.
[0035] 19 is a cylindrical pin connecting 18 and 20, allowing 18 / 19 to move in a fan shape.
[0036] 20 is a connecting device with a suction cup or adhesive on the back that can be adsorbed or stuck to the toilet seat.
[0037] The 21-to-14 connection hole for the toilet can be drilled into the toilet and then secured with screws and nuts.
[0038] Spring 22 connects springs 14 and 17 respectively, and is responsible for the reset of spring 17.
[0039] Figure 4 middle
[0040] 15-1 consists of two lines.
[0041] 15-1-1 is connected and fixed to 14.
[0042] 15-1-2 and 16 are connected and fixed.
[0043] 15-1-3 indicates that the two ends can be tied together.
[0044] 15-2 is stretchable and has a certain degree of flexibility. It can be bent and connected to 16 at one end. The edge of the other end can be thickened and inserted into 15, or it can be left unthickened and connected to 15 through 15-3.
[0045] 15-3 is a screw and nut used to hold 15-2 in place so that it cannot move.
[0046] 15-4 is another design method for the 15-character buckle structure.
[0047] 15-4-1 is connected and fixed to 14.
[0048] 15-4-5 is connected and fixed to 16.
[0049] End 15-4-2 can bypass end 15-4-3 and pass between ends 15-4-3 and 15-4-4 to achieve locking.
[0050] 15-4-4 indicates that it is a downward slope.
[0051] 15-5 is a locking structure for 15-2 that can be installed / fixed on 15 or on the edge of 15 near 16.
[0052] 15-5-1 is another shape of 15-2. It is a device with a conical protrusion on one side and a certain degree of toughness. One end is connected to 16 and the other end engages with 15-5.
[0053] 15-5-2 is a movable wrench that is fixed to one side of 15-5-5 and can rotate 15-5-5.
[0054] 15-5-3 is a locking lever; one end is fixed to 15-5-5 and can move with 15-5-5. It works with 15-5-1 to complete the locking. 15-5-4 is hollow; 15-5-1 passes through it and has a certain gap. It works with 15-5-3 to complete the locking and fixing of 15-5-1. 15-5-5 is a cylindrical part that is thick at both ends and thin in the middle. It is mounted on 15-5-6 and can rotate.
[0055] 15-5-6 is a pair of connecting pieces with a hole in the middle. The thick and thin ends of 15-5-5 are respectively engaged on both sides of it and can rotate. 15-5-6 is fixed on both sides of 15-5-7.
[0056] 15-5-7 is the component that supports 15-5-6 / 15-5-4.
[0057] 15-6 is a leather cover, but it can also be a cover made of any other material. It can be a complete hollow rectangle or any other shape, or it can be a piece of rectangle or any other shape with buttons, Velcro that can be easily attached and detached, or any other way to form a hollow, sheath-like cover made of leather or any other material. It is placed on 15 for aesthetic purposes, and can also be added to the exposed parts of 15-2 for aesthetic purposes. 15-6-1 indicates that 15-6 is hollow and can be passed through by other objects.
[0058] 15-7 is another locking structure of 15-2.
[0059] Holes 15-8 are for screws to pass through.
[0060] 15-7-1 is a locking device with a hole in the middle for connecting to 15-8 with a screw or a screw and nut to lock 15-7-4 in place.
[0061] 15-7-2 is a top view of 15-7-1.
[0062] 15-7-3 is a device with a conical protrusion on one side and a certain degree of flexibility, which can drive the gear to rotate. 15-7-3 can be inserted into 15-7 and engage with 15-7-4 using the conical protrusion.
[0063] 15-7-4 is a gear located inside 15, with one end connected to 15-7 and the other end connected to 15. It has a rotating shaft in the middle. 15-7-4 can engage with the conical protrusion of 15-7-3, allowing it to move and be locked by 15-7-1. This controls 15-7-3 to achieve both retraction and locking.
[0064] (The above information regarding the 15 accessories and components indicates that the 15 can be adjusted in length to accommodate different toilet sizes. [The following is a possible selection:] ... 15 [parts / components] can be adjusted in length to fit different toilet sizes.
[0065] One or more uses)
[0066] Figure 5 middle
[0067] The 18-1 lead connects to the various parts of the first type of 18.
[0068] 18-1-1 / 18-1-2 are two ropes or other materials that can be tied together.
[0069] The two ends of the 18-1-3 lead wire can be tied together.
[0070] The 18-2 lead connects to the various parts of the second type of 18.
[0071] The 18-2-1 design is a hollow, elongated shape.
[0072] 18-2-2 is a part that can pass through 18-2-1. It can be a belt with toughness and a certain degree of rigidity or any other material. One end can be thickened and widened to fit inside 18-2-1.
[0073] 18-2-3 consists of screws and nuts used to secure 18-2-2 into 18-2-1.
[0074] The 18-3 lead wire connects to the various parts of the third type of 18, and its principle is based on the D-ring buckle principle.
[0075] 18-3-1 is made of cloth or any other material and is connected to 18-3-5.
[0076] 18-3-2 can be made of cloth or any other material; it can be looped over 18-3-3 and passed through the middle of 18-3-3 and 18-3-4 to achieve a locking mechanism.
[0077] 18-3-3 is a horizontal bar
[0078] 18-3-4 indicates that it is a downward slope.
[0079] 18-3-5 is a rectangular frame with 18-3-1 and 18-3-3 connected to each other at both ends.
[0080] The 18-4 lead connects to the components of the fourth type of 18.
[0081] 18-4-1 is a part with a pointed, conical protrusion on one side.
[0082] 18-4-2 is a movable wrench that is fixed to one side of 18-4-5 and can rotate 18-4-5.
[0083] 18-4-3 is a locking lever; one end is fixed to 18-4-5 and can move with 18-4-5. It works in conjunction with 18-4-1 to complete the locking action.
[0084] 18-4-4 is hollow, through which 18-4-1 passes, with a certain gap to cooperate with 18-4-3 to lock and fix 18-4-1.
[0085] 18-4-5 is a cylindrical part that is thick at both ends and thin in the middle. It is mounted on 18-4-6 and can rotate.
[0086] 18-4-6 is a pair of connecting pieces with a hole in the middle. The thick and thin ends of 18-4-5 are respectively engaged on both sides of it and can rotate. 18-4-6 is fixed on both sides of 18-4-7.
[0087] 18-4-7 is a component that supports 18-4-6 / 18-4-4, one end of which is mounted / fixed to 18-4-8. 18-4-8 is a strip-shaped component made of a belt or other material.
[0088] The 18-5 lead connects to the fifth type of components of the 18 series.
[0089] 18-5-1 is a locking device with a hole in the middle for connecting to 18-5-5 with a screw or a screw and nut to lock 18-5-4 in place.
[0090] 18-5-2 is a hollow box; one end is connected / fixed to 18-5-5, and the other end is fixed to 19. 18-5-3 can be inserted into its interior.
[0091] The 18-5-3 is a device with a tapered protrusion on one side and a certain degree of flexibility, which can drive the gear to rotate. It can be made of plastic or other materials.
[0092] 18-5-4 is a gear with a hole in the middle through which a cylindrical shaft can be inserted and secured to 18-5-5 with screws and nuts. Half of it is located inside 18-5-5, and the other half is exposed outside 18-5-5, allowing it to be rotated by hand. It has a pivot in the middle that allows it to rotate.
[0093] 18-5-5 is a hollow part for support and connection, through which 18-5-3 can be inserted.
[0094] 18-5-6 is an internal and side view of the 18-5-4 wrench. Its interior has grooves (multiple grooves are possible), and the back has a protruding rectangular groove that can engage the gear of the 18-5-4, allowing the 18-5-4 to rotate. The depth of the groove can be the same as the exposed portion of the 18-5-5 wrench on the 18-5-4, allowing it to be permanently attached to the 18-5-4 for aesthetic purposes.
[0095] The 18-6 lead wire connection is shown in top and side views as a sleeve. It is fitted onto 18 to conceal the various parts on 18 for aesthetic purposes. Multiple sleeves can be used, and its shape and function are the same as 15-6.
[0096] The method of fixing 20 to the toilet is the same as that of 17.
[0097] The detailed accessories and anatomical diagrams for version 23 are the same as those for version 15.
[0098] The structure of 24 is the same as that of 16.
[0099] The structure of 2 is almost identical to 18. It can be understood as replicating the connection between 18 and 17 / 19 as the connection between the two sides of 2 and 1. 2 can also be a two-set connection / fixing method. The two sets can be connected / fixed at either end. The unconnected end can be connected to the two sides of 1 respectively. Or, compared with the parts of 18, 2 can also be modified in detail. 18-1 remains unchanged. In 18-2, parts 18-2-1 and 18-2-3 are changed to the shape of 2-2 and fixed to the bottom of 1 like 2-1. Part 18-2-2 can also be fixed to 18-2-1 as one piece or keep the original structure. 18-2-2 can wrap around the toilet seat and pass through the other end of 2-2 and be locked by 18-2-3. In 18-3, 18-3-1 is lengthened and can replace 18-3-2. It can wrap around the toilet seat and replace 18-3-2. To complete the locking mechanism, the remaining parts, as shown in 2-1, are fixed to the bottom of 1. In 18-4, one side of 18-4-7 or 18-4-4 can be either side, preferably the outer side, and fixed to 1. 18-4-1 and 18-4-8 can be replaced by a single unit or a part where one side has a pointed conical protrusion and the other part is a belt or other strip-shaped part that can wrap around the toilet seat and complete the locking. In 18-5, one side of 18-5-5 is fixed to 1, and 18-5-2 is removed. One end of 18-5-3 is fixed to 18-5-5 and can wrap around the toilet seat, engaging with 18-5-4 to complete the locking. 2 can also be used in multiple groups in the above or any other way for better fixing. 18-6 can also be applied to 2. 2-1 is a schematic diagram of the specifications of the parts fixed to 2 and 1.
[0100] 2-2 is a diagram showing the changes between 18-2-1 and 18-2-3.
[0101] 2-3 is one of the parts in section 2. It can be made of a non-deformable material or any other material. A belt / rope, etc., can pass through it and move. Its main function is to hold it at the edge of the toilet seat and to shape a bend for the rope / belt, etc., that goes around the toilet to fit the toilet seat better and make it easier to close.
[0102] 2-3-1 is a hollow ring through which a belt / rope, etc., can pass.
[0103] 2-3-2 is a single-layer thin sheet, both sides of which can be bonded to a belt, rope, or any other material to form a bend.
[0104] Parts 2-4 are fixed at one end to part 1 and at the other end to part 2-3. You can add or replace them with the same parts as 15-5 / 15-7 (15-5 / 15-7 are a symmetrical pair, installed on opposite sides of part 1). Use a material with higher hardness for better fixation.
[0105] Part 2-5 is fixed at one end to part 2-3, and the other end can be fitted with or replaced with the same part as part 15-5 / 15-7 (parts 15-5 / 15-7 are a symmetrical pair, installed on the two sides of part 1 respectively) for better fixation.
[0106] 5-0-1 is a part with a conical protrusion on one side, which can be made of plastic or any material. It can drive the gear to rotate. The conical shape on its surface can be continuous or discontinuous. It can also be widened (fully or partially) to accommodate multiple gears. There can also be multiple sets of 5-0-1. It can also be installed on both sides of the bevel teeth of 5-0-2. The rotation direction of 5-0-2 is changed by the engagement of 5-0-2 with the conical protrusions on both sides of 5-0-1 (here, the conical protrusions of 5-0-1 can be discontinuous). In this way, the repeated up-and-down and continuous downward movement of the cleaning parts in the cleaning system can be realized (for easy viewing). Figure 7 This type of graphic can be understood as the explanation of the previous 5-0-1.
[0107] 5-0-2 represents a gear (for easier viewing). Figure 7 This type of graphic can be understood as the explanation in 5-0-2 above.
[0108] 5-0-3 is a connecting part, which can be a flexible belt or an inflexible iron / plastic or any other material (for easy viewing). Figure 7 This type of graphic can be understood as the explanation in 5-0-3 above.
[0109] 5-0-4 is for easier viewing of the diagram. Figure 7 Use this graphic frame to enclose the text. Figure 7 Divided into smaller images
[0110] 5-1 represents the first transmission method for component 5. 5-1-1 can be located within component 1. 5-1-2 can replace component 3, fixed to one end of component 4 via a shaft and capable of rotation. Through engagement, 5-1-1 transmits the force to the movable toilet seat. 5-1-3 / 5-1-4 enter component 5 from component 4; one end of each has neat conical teeth that allow them to move up and down, driven by 5-1-2, and rotate through the lower conical teeth, driving 5-1-5 to rotate. 5-1-5, located within component 5, transmits power to the various cleaning devices (see below for details on the cleaning devices).
[0111] 5-2 represents the second transmission method for 5. 5-2-1 can be located within 1. 5-2-2 can replace 3, fixed to the end of 4 via a shaft and capable of rotation. Through engagement, 5-2-1 transmits the force to the movable toilet seat. 5-2-3, through the rotation of 5-2-2, drives 5-2-4 to move up and down, thus driving 5-2-5 to rotate. 5-2-5, located within 5, is responsible for transmitting power to each washing device (see below for details on the cleaning devices).
[0112] 5-3 represents the third transmission method for component 5. 5-3-1 / 5-3-3 can be located in component 1, and 5-3-2 can replace component 3. It is fixed to one end of component 4 via a shaft and can rotate. Through engagement, 5-3-1 / 5-3-3 transmits the force of the movable toilet seat and drives 5-3-5 to rotate via 5-3-4. 5-3-5, located in component 5, transmits power to the various cleaning devices (see below for details on the cleaning devices).
[0113] 5-4 is the fourth transmission method for 5. One end of 5-4-1 is fixed to one end of 4 via a shaft. 5-4-1 can enter 5 and rotate. 5-4-2 / 5-4-3 are located in 5 and are responsible for controlling the rotation direction of 5-4-1 and transmitting power from 5-4-1 to each cleaning device (see the description of the cleaning devices below).
[0114] 5-5 is the fifth transmission method of 5, where 5-5-1 / 5-5-3 can be installed inside 1. 5-5-2 can be two non-contacting gears installed at one end of 4, which can replace 3. The force of the toilet seat movement is transmitted through the meshing of 5-5-1 / 5-5-3. 5-5-4 / 5-5-5
[0115] It is responsible for transmitting the force from 5-5-2 to 5-5-6 to distribute the power to each cleaning device (see the description of the cleaning devices below).
[0116] 5-6 represents the sixth transmission method for component 5. 5-6-1 can be installed within component 1. 5-6-2 consists of two gears, one large and one small, installed at one end of component 4, replacing component 3. These two gears are fixed together by shafts, allowing the smaller gear to rotate around the larger gear and also rotate on its own axis. When the larger gear connects to component 4, a spring can be added to ensure it engages with 5-6-1 while also allowing for clearance to accommodate the engagement of the smaller gear with 5-6-1. By adjusting the number of gears, component 5-6-3 can perform retraction and expansion movements, ultimately amplifying the retraction motion. 5-6-3 is installed within component 4, and 5-6-4 is installed within component 5. 5-6-3 receives the force from the toilet seat's movement and transmits it to the various cleaning devices (see below for details on the cleaning devices).
[0117] 6-1 refers to the scraping component in the cleaning device. It can be two separate belts or any other material, or it can be a complete loop, a square, or any other shape.
[0118] 6-2 is responsible for receiving the force from the toilet seat's movement transmitted from gear 5 and transmitting this force to 6-1. It can consist of a bevel gear (6-2-1) and a spur gear (6-2-2) that rotate only or move horizontally, as well as a connecting rod (6-2-3). As shown in the figure, multiple sets can be used to achieve better transmission efficiency.
[0119] 6-3 can be a tapered hard plastic rack or any other material, or a smooth belt or any other material. One end is fixed to the gear or gear shaft of 6-2 or any other part of this device, and can be wound around the gear / gear shaft or any other part. The length of 6-3 wound around the gear / gear shaft or other part can be controlled by the rotation of the gear or gear shaft or by any other method. The other end is fixed to 6-1 and is responsible for transmitting power. There can be multiple 6-3s. 6-3 can also be directly connected to 5 to receive its power, or 5 can be omitted and directly connected to 4, or designed as one unit.
[0120] 6-4 is for storing and scraping the parts from 6-1. It can be hollow or single-layered internally. One side or one end connects to 6-3. 6-1-1 is a detailed explanation diagram of 6-1. It shows that the surface of 6-1 can have conical protrusions (the protrusions can be arranged horizontally or vertically), or it can be a smooth part for better cleaning results.
[0121] 6-3-1 is another shape of 6-3, which can be a concave shape at one end to facilitate cooperation with other parts. 6-4-1 represents several opening directions and appearance shapes of 6-4 for reference (it can be any shape and opening direction) to facilitate selection of better storage effect.
[0122] 6-4-2 is a side view of 6-4 in its double-layered shape. The diagram shows it as hollow with an opening at the top (multiple sets can be installed with openings facing different directions) to facilitate the passage of 6-3. Alternatively, it can consist of two separate units, each connected to 6-3. Figure 9 In the first form of movement of 6, after 6-2 receives power from 5, 6-3 drives 6-1 / 6-4 to move. One end of each of the two sets of 6-1 / 6-3 can enter 6-4 from either side. One end of 6-1 can be designed to remain within 6-4 to improve stability during movement. Alternatively, 6-3, which is connected to 6-1, can be removed, and the power from 6-3 connected to 6-4 can be used to press down on 6-1, causing it to perform a similar movement. 6-1 / 6-4 can also be directly connected to 8 using a spring and move downwards using the power of toilet flushing (6-1 can be designed as an L-shape or have intermittent protrusions added to better receive water power). 6-1 can also be removed from its connection with 6-4, or it can be understood that 6-4 is omitted from this device. 6-1 can be a complete circle driven by 6-3 or other means / parts to perform a downward cleaning movement, and can scrape against 10 / 11 to complete the cleaning of 6 / 10 / 11 itself. Figure 10Additional parts for 6-4, used to clean the surface of 6-4. In the diagram, 6-3 and 6-1 together form a pair of small brushes (6-1 can also be a trapezoidal structure as shown). The up-and-down movement is achieved through the force of the toilet's movement, cleaning 6-4 and the pair of 6-1s shown in the diagram. A small section of 6-1 can also be added separately to the bottom of 6-4 to better cooperate with other parts for cleaning. This separate small section of 6-1 can also be attached to 6-3, retracting upwards and completely hidden inside 6-4, using 6-4 to clean itself. 6-5 is another shape of the zero of 6; 6-5 can be a trapezoid, triangle, or semicircle. Parts made of rubber or other materials in strip or any other shape; 6-5-1 is a rod connected to 6-5; the end of 6-5-1 not connected to 6-5 is connected to 6-7; 6-7 / 6-6 are a set of gears fixed together; the function of 6-8 and its connection method with the toilet and other parts are the same as 5; 6-6 / 6-7 can be designed at a certain angle or shape, driven by 6-8, to achieve the fan-shaped flipping of 6-5 and cleaning work around 8; the cooperation between 6-9 and 6-10 is the same as the cooperation between 6-1 and 5, responsible for cleaning 6-5 and 6-10 themselves after 6-5 has cleaned 8.
[0123] 6-5-0 is a simplified method of 6-5. In the diagram, 6-8 can have a hole drilled in the middle and a bearing installed. Then, connecting parts are added to both ends of the bearing to fix it to 1, allowing 6-8 to rotate. The force for its movement comes from 6-9 and is transmitted through 6-11. 6-11 is the same as 6-3. 8-1 indicates that 8 can have an internally hollow structure to facilitate the shrinkage of 8-2 for better cleaning. Alternatively, 8-1 can be the only structure and set as a single layer.
[0124] 8-2 can be connected to 6-3 to achieve a telescopic effect (the range of motion of 8-2 can be controlled by adjusting the range of motion of 6-3 to achieve a better contraction effect). A layer of elastic rubber sleeve or other material can be added to the surface of 8. This material can be fixed to 8-2 or not, and it will contract along with 8-2 after 8-2 contracts to ensure a smoother surface for easier cleaning.
[0125] 8-3 is a rubber sleeve or any other material fixed to one end of 8. It can also be a sleeve that completely covers 8. Its other end is fixed to 6-3. The fixing method can be a detachable method of fixing with screws and nuts after drilling holes, or 8-3 can be understood as 18 and fixed in the same way as 18, or any other method. Alternatively, the connection between 8-3 and 6-3 / 8 can be fixed in the same way as 2 and 1. It can be understood that 8-3 can be transformed into a tapered protrusion like 18-4-1, or made of a flexible material with a certain degree of toughness, and the same zero as 2 / 2-1 / 2-2 can be installed on 6-3 / 8. The component 8-3 works in conjunction with the toilet seat to achieve adjustment and fixation, enabling better fixation / connection and fit between the device and the toilet, or other methods to achieve this purpose. It can wrap around the toilet seat and connect to 6-3, allowing 8 to be moved upwards via 6-3 (6-3 can also be extended and connected to 8-2 / 8-3 simultaneously, or the connection to 8-2 can be removed, and 8-2 can be retracted by pulling 8-3 along either the upper or lower edge of the connection point). 8-3 can also consist of two or more sets, each responsible for fixing 8 to the various parts of the toilet and for... (It can retract and drive the entire 8 to move up and down), or it can be connected to 8 by screws, nuts or any other method. In this case, 8 can be moved upward by 6-3 connected to 8-2 (through the locking of 8-2 and 8-1). The connection end of 8-3 and 6-3 / 8-5 can have a certain reserved length and can be drilled above it to facilitate better adjustment when 8 is installed with the toilet. The excess part of 8-3 can be cut off or an extra layer can be added near the upper part of 8 to make a pocket to put the excess part in. 8-3 can be a circle around 8, or... The fixing method of 8 and 8-3, which is not a complete circle, or is a separate segment or multiple segments, can also be understood as 15. A part similar to 16 can be added to one end of 8-3, allowing 8 to be placed on the toilet seat using 16. The various fixing and connection methods for 8 and other parts / components of the toilet in this instruction manual can be selected and used in combination. After fixing 8 to other parts of the toilet, it is possible, but not necessary, to maintain a horizontal and 0° position. A certain tilt angle can also be adjusted to ensure that water in 9 can flow to each or more places of 8 / 6, or to better coordinate with other parts for cleaning and other tasks.
[0126] 8-4 refers to toilet seats.
[0127] 8-5 is a convenient fixing part with a pre-drilled hole at one end for screws and nuts to pass through. 8-5 can also be understood as a part similar to 2 / 2-1 / 2-2, which can be used with 8-3 to achieve adjustment and fixing functions, thus enabling better fixation / connection and fit between this device and the toilet.
[0128] 8-6 is a sheet-like part with a certain degree of hardness, such as iron, plastic, or any other material, and has a conical protrusion on one side. It can be wrapped by 8-3. One end of it is widened and forked so that it can be locked onto the toilet seat to stabilize 8. 8-7 is the same part as 18-4-7 and is responsible for adjusting and fixing 8-6.
[0129] 8-8 is a component that secures other parts. It has two holes in the middle and is fixed to the other end where 8-1 and 8-2 connect. Alternatively, a hole can be drilled directly at the edge of this end to place this component inside 8-1. A nut is fixed to the end where it connects to the thinner side of 8-9.
[0130] 8-9 is another method of connecting 8-3 and 8-1. Its thick and thin ends are located on both sides of 8-8 and can rotate. Its thick end has a small hole through which a screw can pass and connect to a nut through the smaller hole of 8-8 to lock the rotation. It can be wrapped around 8-3 to facilitate adjustment of the length of 8-3.
[0131] Figure 12 The number 8 can have several opening positions and shapes. It can open at the left and right ends, in the middle, or anywhere on the 8. The opening shape can be circular, semi-circular, or any other shape. The angle from the bottom to the top edge of the 8 can also be set to allow items to slide in, enter, or pass through the holes or channels of the 8 smoothly. When the 8 is plate-shaped, an inclined plate can be added to the 8 to catch items and ensure that items can pass through or enter the holes or channels of the 8 smoothly. The 8 can be circular, oval, rectangular, square, polygonal, or any other funnel-shaped, plate-shaped, or any other shape.
[0132] 8 (This can be directly referenced, but is not limited to just referencing) Figure 12 8-1 and 8-2 in the text can also be set as a part of 8-1 or include part of 8-1 and above. They can be set as hollow cylinders with the same diameter from top to bottom, or any other shape with the same size and shape from top to bottom, so that 8-1 can better cooperate with 6 to complete the cleaning after 8-2 shrinks (this can be directly referenced but is not limited to just referencing). Figure 12 (8-1, 8-2)
[0133] Figure 13 The angle of the 8-position water-blocking setting can be set close to the edge of the toilet bowl to avoid water in the toilet bowl. Figure 14Another way to design a water-blocking device for the 8-1-1 end is to extend it outwards to block water splashing upwards when an object enters through the opening. It can also block water splashing outwards at other angles when an object enters through the opening, or limit water splashing from this opening to below 8-1-2 or below 8. Alternatively, it can be positioned anywhere below the upper edge of 8 to achieve a splash-proof effect. This method can also incorporate multiple corners for even better splash protection.
[0134] Figure 15 To indicate that part 8 can also be a plate-shaped component, 8-2-1 is a rod with a handle at one end. The end without the handle is fixed to part 8 or made into a detachable snap-fit structure to facilitate lifting of part 8 for easy and comprehensive cleaning. 8-2-1 can also simply have a handle for easy lifting of part 8 (including when part 8 is basin-shaped), or it can be made retractable and hidden inside part 8 to save space. (This method can be understood as omitting all other parts and only having part 8 and part 8-2-1 for operation. This method can also be used in conjunction with other parts to achieve better results.)
[0135] Figure 16 In the detailed drawing of 8-2-1, 8-2-1 can be a long rod-shaped part with a handle, or it can have only one handle. One or both ends can be thickened while the middle is thinner to facilitate a better fit with 8.
[0136] Figure 17 Some methods for fixing 8-2-1 to 8 are shown in the diagram. When 8 is double-layered, a hole can be drilled between the two layers, or a part with a hole can be added to the outside of 8 to insert one of the thicker ends of 8-2-1. This allows 8-2-1 to move but not leave the hole. The hole also limits the depth to support 8-2-1 and prevent it from falling into the air and becoming impossible to remove.
[0137] 8-0 is another way of representing 8. 8-0 indicates that 8 is divided into multiple pieces, and each piece can shrink. For example, the piece closest to 5 can be the thickest hollow piece, and the pieces further away from 5 can be slightly thinner, located in the hollow of the previous piece, and have elasticity. They can also be designed to retain a certain volume within the previous piece after stretching, and have a certain degree of sealing to form a basin shape after stretching. Alternatively, the previous and subsequent pieces can be arranged in a stepped manner (each blade is an independent blade), with the previous piece pressing down on the next piece or vice versa, so that the multiple pieces can eventually be stacked together. During the overlapping process, the blades can achieve a scraping and washing effect. 8-0-1 is one of the pieces in 8-0. The connection between 8-0 and 6-3 is that 6-3 can move laterally (6-3 can be strip-shaped or...). (This can be a gear and rack structure). In this configuration, 6-2 can use a bevel gear or change the gear meshing method to pull 6-3 to make lateral movement. When 6-3 is connected to 8-0, there can be multiple blades located in the upper, middle, lower, or other positions to achieve a more stable effect. The way 6-3 connects to the blades of 8-0 can be that 8-0-1 is the first blade from the side closest to 5, and 6-3 is connected to one end or one side of this blade to directly pull it and drive the other blades to move. It can also be connected to multiple blades until it overlaps with 8-0-1 on the other side closest to 5. Alternatively, it can be that both 8-0-1 blades located opposite 5 are the first blades, and 6-3 is connected to one end or one side of the first blade to directly pull it and drive the other blades to move. It can also be connected to multiple blades, dividing 8-0 into...
[0138] The two sides are pulled back to form two overlapping pieces, or 6-3 can be connected by any other piece or multiple pieces to achieve the contraction effect of 8-0.
[0139] 8-0-2 represents the overlapping shape of 8-0; it can also be any other shape. 8-0-3 is a pin that can be drilled into the bottom of 8-0 and installed inside the hole. Its function is similar to the pin of a folding fan, pressing down the blades of 8-0 and allowing them to unfold and overlap along a certain trajectory, such as a fan shape. 8-0-4 is a plate-like part; one end connects to the upper edge of 8-0, and the other end can be clipped onto the toilet seat, toilet seat cover, 8-3, or any other location to ensure better stability of 8-0. 8-0-4 can also be clipped below the toilet's water outlet so that the toilet can directly flush 8-0. 8-0-1-1 indicates that 8-0-1 can also be retracted and overlapped upwards. The connection at end 6-3 allows 8-0-1-1 to retract upwards. 8-0-1-1 can be multi-layered for better retraction. 8-0-1-2, located at the bottom of 8-0 / 8-0-1-1 (the end not in contact with 6-3), is a hollow, raised groove. Its function is to hold the blades at the bottom of 8-0 / 8-0-1-1 and overlap with the blades to stabilize 8-0 / 8-0-1-1. 8-0-5 is responsible for driving 8-0 in a fan-shaped motion. Its gearless end is fixed or integrated with the top of 8-0 (the end of 8-0 in contact with 6-3), while the other end meshes with a matching gear to receive the force from the toilet's movement, driving 8-0 to move forward / backward / left / right. The right-hand fan-shaped movement can ultimately bring 8-0 to a horizontal and 0° state. The connection between 8-0 and 8-3 can be the same as that between 8 and 8-3 mentioned above. The connection between 8-0 and 8-3 can be that 8-3 is divided into multiple parts to wrap around each blade of 8-0, or it can wrap / connect only one or several of 8-0. It can also be divided into pieces with the same or similar length as the upper edge of a single piece (the end that contacts 6-3), or it can be a circle or a section around the toilet seat. Alternatively, the end of 8-3 that contacts 8-0 can be thickened. 8-0-6 indicates that the outer shell at the end of 8-0 that contacts 8-3 is partially or completely cut off (which can be understood as 8-0 becoming two plates connected at only one end and the lower end connected), and a structure that can be locked onto 8-3 is set at the end that contacts 8-3, or a structure is set up. The concave shape allows 8-0 to slide on 8-3, and 8-3 provides stability to 8-0. The interaction between 8-0 and 6 can involve scraping only one or more of 8-0, or it can be divided into sections of the same or similar length as the upper edge of the single sheet (the end in contact with 6-3). When 8-0 is shrunk to a single sheet state, 6 is provided on both sides or each face of 8-0 to scrape all surfaces of 8-0. 8-0-7 represents 8, which can also be a structure split in the middle. 8-0-8 is a side view of 8-0-7. 8-0-5 is installed / fixed at the top of 8-0-8, allowing 8-0-8 to move in a fan shape, ensuring that 8 can be split and closed in the middle. The interior of 8-0-8 is hollow, allowing for the extension and retraction of 8-0-9.The upper end of 8-0-9 connects to 6-3, allowing it to retract. There should be a certain degree of sealing between 8-0-9 and 8-0-8 to ensure that 8-0-8 can scrape 8-0-9 during retraction. 8-0-9 can accommodate multiple pieces, enabling retraction between them. Its interaction with 6 can be the same as described above for 8-0, or with some modifications. 6 can also be installed at all the retractable interfaces of 8, directly fixed to the interface positions of 8 for better cleaning results.
[0140] 9-1 is the first method of the annotation starting with 9. In the diagram, 9-1-1 is the stopper in 9 that drives the water flow. It can be made of rubber or any other material. It fits tightly with the outer shell of 9 to ensure good sealing when driving the water. 9-1-2 is the water outlet. It can be single or multiple, or multiple rows at different heights to meet the needs of cooperating with other parts and ensure better water discharge timing. The water discharge timing can be before or after the belt and also for the cleaning of this automatic cleaning device itself. 9-1-3 is the part that blocks the water outlet. It can move with 9-1-1. When there are multiple rows of water outlets, it blocks the lower row of unused water outlets. 9-1-4 is the part that receives the force of the toilet movement and drives the stopper. It can be connected alone or simultaneously with 1, 4, or 5, as well as the gear in 5. It can be equipped with a separate set of gears and racks to cooperate with it, or it can be equipped with a rack with a conical gear on one side and a single gear added to the end that does not contact 9-1-1 to cooperate with other parts to achieve better water discharge effect.
[0141] The annotation for 9-1-4 begins with a number and provides a detailed description of 9-1-4. In the diagram, 9-1-4-2 is a part with a movable pin at one end, which connects to 9-1-4-1 via the pin. 9-1-4-1 passes through the pin and can slide within it. When 9-1-1 moves upward, the pin of 9-1-4-2, due to downward gravity and the pressure of the water inside 9-1-4-1, gets stuck at the corner of 9-1-4-1, forming a triangle with 9-1-4-1 to maintain the balance of 9-1-1 and ensure a good seal. The buoyancy of the water inside 9 causes the water in 9-1-1 to rise. When 9-1-1 is at the top of 9 and contains water, and 9-1-1 wants to move towards the bottom of 9, the upward buoyancy of the water pushes the pin of 9-1-4-2 upward along 9-1-4-1, thus disrupting the horizontal balance of 9-1-1. This causes 9-1-1 to reach the bottom of 9 at an angle, allowing the water inside 9 to reach the top of 9-1-1 through the gap between 9-1-1 and the outer shell. This ensures that when 9-1-1 returns to the bottom of 9, the water will not affect its return to its original position.
[0142] 9-1-4-3 is another representation of 9-1-4. In the diagram, it is connected to 9-1-1 in a stable triangular structure (the two forked ends of 9-1-4-3 are fixed to the two ends of 9-1-1 respectively). 9-1-1-1 is another representation of 9-1-1. In the diagram, it is a stopper with perforations (the perforations can be single or multiple). 9-1-1-2 is a film covering 9-1-1-1, which can be rubber or any other material. Its two ends are connected to 9-1-4-3, with a certain distance between them. The elasticity allows it to arch upwards. When 9-1-1-1 moves upwards, the water pressure forces 9-1-1-2 against the surface of 9-1-1-1 to prevent water from passing through the holes in 9-1-1-1, thus carrying water out of 9. When 9-1-1-1 moves downwards, the buoyancy of the water causes 9-1-1-2 to arch upwards, creating a gap with 9-1-1-1. This allows water to pass through the holes in 9-1-1-1, ensuring that 9-1-1-1 does not interfere with its return to its original position when it returns to the bottom of 9.
[0143] 9-2 (Note: Numbers starting with 9 indicate the second method for 9). The function of 9-2-1 in the diagram is the same as 9-1-1. 9-2-2 is the part that receives the force of the toilet's movement and drives the stopper. It can be connected alone or simultaneously with gears 1, 4, or 5, as well as gears within 5. It can be equipped with a separate set of gears and racks, or it can be a rack with a conical gear on one side, with a separate gear added to the end that does not contact 9-2-1, working in conjunction with other parts to achieve better water flow. 9-2-3 is the second water tank of 9. It is connected to the upper part of 9 via a pipe. When the toilet flushes, 9-2-3 receives the water first, and then, as 9-2-1 moves downwards, the water is drawn into 9 through the pipe from 9-2-3 into 9. 9-2-4 is a device with a certain density... A sealing cap or one-way valve controls the water outlet, allowing water and air to flow outwards and preventing them from entering the water tank (9). 9-2-4 can also be a valve controlled by two levers. 9-2-5 is a lever; one end is connected to 9-2-2 and moves with it. When 9-2-1 is at the bottom of 9, 9-2-5 moves the lower lever of 9-2-4, opening 9-2-4 and allowing water to flow out. When 9-2-1 moves to the top of 9, 9-2-5 moves the upper lever of 9-2-4, closing 9-2-4 and sealing the water tank. 9-2-3 can also be integrated with 9 (extending the water tank) to allow water to fall directly with 9-2-1. 9-2-6 connects to 9-2. The pipes -3 and 9 have one end connected to 9 and the other end inside 9-2-3 near the bottom, or connected to the bottom of 9-2-3 with a water inlet for easy flushing. 9-2-6 can also be connected to 9 at one end and placed directly into the toilet tank at a certain depth so that 9 can flush water directly from the tank. 9-2-7 is the opening of 9-2-3, responsible for receiving water from the toilet. (Note: 9-3 starting with a number indicates the third method for 9.) In the diagram, 9-3-1 functions the same as 9-2-1, and 9-3-2 functions the same as 9-2-2. 9-3-3 is a curved pipe with its two ends connected to the bottom of 9 and the upper part of the preset water level of 9, respectively. 9 has openings at both ends connected to 9-3-3 for water to pass through. 3-4 is a one-way valve that controls the flow of water from 9 into 9 through the lower part of the pipe opening of 9-3-3 and the upper part of the pipe opening of 9-3-3, but the water in 9 cannot flow out through the upper part of the pipe opening of 9-3-3. 9-3-5 is the outlet of 9. The outlet of the upper part of 9-3-3 is located above the preset water level of 9, thus ensuring that when 9-3-1 is at the top of 9, the rising height of 9-3-1 does not exceed the upper part of the outlet of 9-3-3. This prevents 9-3-1 from being unable to move downwards due to water retention in 9. When 9-3-1 moves downwards, the water in 9 is compressed, causing water to flow from the lower part of the pipe opening of 9-3-3 through the upper part of the pipe opening of 9-3-3 into 9 and remain above 9-3-1.To ensure that water does not affect the return of 9-3-1 to its original position when it returns to the bottom of 9,
[0144] The numbers starting with 9 in the annotation indicate the fourth method. In the diagram, 9-4-1 functions the same as 9-2-1. 9-4-2 consists of two rack parts with conical protrusions on one side; one end of each part connects to 9-4-1 to drive its movement. 9-4-4 / 9-4-5 are two sets of gears and rack parts that receive the force from the toilet's movement via 9-4-3 / 9-4-6, thus driving 9-4-2. 9-4-3 / 9-4-6 can be integrated with or cooperate with the components in 5. To achieve a better effect, such as simplification, in the diagram, assuming 9-4-3 / 9-4-6 move from top to bottom, 9-4-3 can lift 9-4-2, which is driven by 9-4-4, thus driving 9-4-1 upward. Then, 9-4-6 drives 9-4-5, which in turn drives 9-4-2, thus driving 9-4-1 downward. Now, assuming 9-4-3 / 9-4-6 wants to return, that is, to move from bottom to top, 9-4-5, driven by 9-4-6, should instead drive 9-4-2, which is driven by 9-4-5, towards... The upward movement is achieved through a mechanical stop 9-4-7. Its first or first few rack bevel teeth are movable upwards, disengaging the force from gear 9-4-5 that pulls 9-4-2 upwards, preventing 9-4-2 from moving upwards. Meanwhile, 9-4-3, driving 9-4-4, due to gear rotation, now forces 9-4-2 downwards. Since 9-4-2 is already at the bottom of 9, it will not move further. This serves the purpose of bringing 9-4-1 to the bottom of 9 beforehand, thus eliminating the need to consider [the following] when filling the water tank. To address the issue of 9-4-1 returning to the bottom of 9, the spacing and position of 9-4-3 / 9-4-6 can be adjusted to ensure they can drive 9-4-2 at different times. 9-4-1 can also be replaced with a sluice gate or valve-like switch, controlled by 9-4-2. Here, 9 can be replaced with a direct water pipe that connects directly to a tap water pipe and leads to the outlet of 9. This outlet can supply water to the cleaning device and 8, providing flushing and cleaning functions. The water flow and shut-off of this pipe can be controlled by 9-4-1 / 9-4-2.
[0145] The numbers starting with 9-5 indicate the fourth method of using 9. In the diagram, 9-5-1 functions the same as 9-2-1. 9-5-2 is a flexible rope, wire, or other material component; one end connects to 9-5-1, and the other to 9-5-5. 9-5-3 is a spring. 9-5-4 controls 9-5-5; its lower end has two openings, one upward and one downward. Its upper end can connect to 1, 4, or 5, or other components in the device. Its main function is to receive the force of the toilet's movement, using the downward opening to hold 9-5-5 downwards, thus causing 9-5-2 to move 9-5-1 upwards, expelling the water from 9. When 9-5-4 brings 9-5-1 to the top of 9, 9-... One end of 5-4 will encounter the protrusion of 9-5-6, changing its direction and causing 9-5-5 to detach from the downward opening of 9-5-4. At this time, 9-5-5 can return to its original position via a spring, causing 9-5-1 to return to the bottom of 9, or it can move upward through the upward opening of 9-5-4, causing 9-5-5 to move upward and thus causing 9-5-1 to return to the bottom of 9. Then, 9-5-4 will again use its downward opening to lock 9-5-5 and move downward along a pre-set trajectory. 9-5-6 is a part with a protrusion at one end, which can be installed in an appropriate position in this device, mainly to ensure a certain fit with 9-5-4 so that 9-5-4 can complete its work smoothly. 9-5-7 is the water outlet of 9.
[0146] Figure 199-6 is a baffle at the opening of the water tank where it receives toilet water (the water tank opening can be located on the side of the water tank without a drain outlet and at the toilet flush outlet; the length of the opening can be the same as or slightly less than the width of this side; the width of the opening should also ensure that the opening can effectively receive water during toilet flushing or any other process). It is located at the top of 9, and when 9-1-1 is located near the top of 9, 9-6 should generally be lower than 9-1-1. When the toilet flushes, 9-6 is responsible for intercepting water passing by it to store water in 9. The diagram shows several shapes of 9-6, indicating that 9-6 can be a curved, upward-sloping plate, a straight, upward-sloping plate, or a funnel shape (the plate mainly holds the opening of 9 so that the opening faces upward). The opening position can also be... At the top, the very top of 9, or any other location, a plate perpendicular to 0° and adjustable or fixed in angle can be added to block water flowing horizontally or diagonally during toilet flushing, helping 9 achieve a water-holding effect. 9-6-1 is a top view of 9-6, representing the reference diagram of the 9-6 baffle. The narrower square / semi-circular frame indicated by 9-6-1-1 represents the upper edge of 9-6, indicating that it can be funnel-shaped. 9-6-2 is a side view of the baffle perpendicular to 0° and adjustable or fixed in angle. This baffle can be integrated with the diagonal baffle or split into two. The long strip formed by the two narrow straight lines connecting to 9-6-2 represents the side view of 9-6 (9-6 can be made of plastic or any other material).
[0147] 9-7 is the connecting part between 9-6 and 9. It can be a single piece / plate structure with 9-6 (9 and 9-6 can also be a single piece). It can be made by drilling holes in 9 and 9-6 and then fixing it with screws and nuts. It can be equipped with washers to prevent water leakage. It can also be a nail-like clip with a certain degree of elasticity, such as 9-7-1, or a protruding shape, such as 9-7-2.
[0148] Figure 20The diagram shows that 9-6 can be adjustable, and its interior can be hollow, allowing a smaller section to be inserted and retracted for adjustment. This smaller section should maintain a certain seal with 9-6 during expansion and contraction. In this diagram, one end of 9-6 has a 9-9, a raised, perpendicular thin plate that engages with 9-8 for fixation. 9-8 consists of two plate-like parts that clamp 9-9 in the middle. Holes are located slightly away from the edge of 9-6, allowing for the tightening of the two clamping plates of 9-8 with a washer and nut, or a single washer or a screw with a small head and a nut with a small hole and thick edges. This fixes 9-9 in place, preventing 9-6 from expanding and contracting, and thus securing it to 9-6. 9-8 / 9-9 can be positioned within 9-6. The front, back, and sides are designed to facilitate better water flow. 9-8 can be connected to 9 in the same way as 9-6 and 9, or it can be installed at the end of 9-6 furthest from 9, with the same fixing method as 9-6 and 9. 9-8 can be multiple units, each capable of individually fixing 9-6 and its smaller, extendable parts. Multiple units can be added for better stability. 9-8 can also be a single unit directly fixing 9-6 and its smaller, extendable parts. The shape of 9-8 can be curved, straight, triangular, or any other shape. 9-8-1 is a top view of 9-8. The length, width, and height of 9-8 can be increased or decreased to ensure the range of motion of 9-6, allowing it to better receive water from the toilet.
[0149] The annotation starting with 9-0 indicates another way this device receives toilet water. 9-0-1 is a stopper that moves with 9-0-2. 9-0-3 / 9-0-6 are gear racks that can be installed at positions 1 / 4 / 5 or anywhere on the device / toilet. They are responsible for receiving the force of the toilet's movement and transmitting it to 9-0-4 / 9-0-5. 9-0-4 / 9-0-5 consists of two sets of gears and racks. In the diagram, assuming 9-0-3 / 9-0-6 moves from top to bottom, 9-0-3 can push down 9-0-2, driven by 9-0-4, thus driving 9-0-1 downwards. Then, 9-0-6 drives 9-0-5, which in turn drives 9-0-2, causing 9-0-1 to move upwards. Now, assuming 9-0-3 / 9-0-6 wants to return...
[0150] In other words, when moving upwards, 9-0-5, driven by 9-0-6, should have driven 9-0-2 downwards. However, 9-0-7 is installed here, which is one or more mechanical stops. It can be understood that a spring is located on the upper part of 9-0-7. The first or several rack bevel teeth are movable downwards, and the spring is responsible for returning them to their upward state. This relieves the force from gear 9-0-5 pulling 9-0-2 downwards, preventing 9-0-2 from moving downwards. Meanwhile, 9-0-4, driven by 9-0-3, is affected by the gear rotation. At this point, its force drives 9-0-2 to move upwards. However, this design also incorporates 9-0-7, where a spring is located at the bottom. 9-0-7 is the first or several bevel teeth that can move upwards and be reset by the spring to relieve the upward force from 9-0-4, keeping 9-0-1 stationary. 9-0-8 is a plug that can move with 9-0-1 and is driven by 9-0-9-1 to move 9-0-9. It can also be integrated with 9-0-1. 9-0-9-1 is the part connecting 9-0-8 and 9-0-9. It can be made of thin materials such as steel / plastic or other materials of a certain hardness. It can be made of any material, 9-0-9 / 9-0-9-1 can enter through the toilet outlet and contact the drain control valve of the water tank, 9-0-1 can control the movement of 9-0-9 so that 9-0-9 can lift the drain valve of the toilet to a certain height so that it can release water appropriately and stop the water from flowing out. The upper edge of the water basin (8) of this device can be provided with a connecting plate with a certain degree of curvature to the toilet outlet, or the upper edge of 8 can be directly located below the toilet outlet and close to the edge of the toilet seat, or in any other way, so as to receive the water from 9-0 during this process to achieve a better cleaning effect. 9-0-9-1 can also be a hollow tube. Holes can be provided in parts 9-0-9 / 9-0-8 / 9-0-1. A tube is installed in the hole on the side of 9-0-1 that does not contact 9-0-8, allowing water flowing from the toilet flush valve to the upper edge of 8 when the valve is activated, thus facilitating the cleaning process. The volume / shape of 9-0-9 can be controlled to prevent it from obstructing the normal flow of water from the toilet drain. The spacing and position of 9-0-3 / 9-0-6 can be adjusted to ensure they can drive 9-0-2 at different times.
[0151] The part starting with 9-0-10 describes a method for receiving toilet water similar to 9-0. 9-0-10-1 is a gear and rack system driven by 9-0-10-3. The installation method of 9-0-10-3 is the same as that of 9-0-3. 9-0-10-2 is a protruding part fixed to 9-0-10-1, surrounding the rack of 9-0-10-1. It has a notch on the side without tapered teeth. Assuming that 9-0-10-3 moves downwards, it will drive 9-0-10-1. Rotate, causing 9-0-10-2 to rotate, which in turn moves 9-0-8 forward. When 9-0-10-2 reaches the notch, 9-0-8 will return to its original position under the pressure of the toilet's flush valve. Alternatively, a spring can be added to the side of 9-0-8 that contacts 9-0-10-2 to assist in the return of 9-0-8 (the other end of the spring can be fixed to the 8th part of the device or the stationary housing to prevent 9-0-10-2 from pushing this end of the spring, thus ensuring the spring's return effect). The teeth of 9-0-10-3... The stroke is controlled to ensure a good match between the notch of 9-0-10-2 and the water volume required by this cleaning device, and that 9-0-10-2 is positioned precisely at the notch when the device does not require water. A water pipe can be added to the end of 9-0-8 that does not contact 9-0-10-2, or a hole can be drilled in the other side of 9-0-8 that is not in contact with 9-0-10-2 and connected to the hollow pipe of 9-0-9-1 to be used as a pipeline. Alternatively, the water outlet of 9-0-8 can be offset from that of 9-0-10-2 to prevent 9-0-10-2 from being exposed. The water outlet of 9-0-8 is blocked so that when the toilet flush valve is lifted, the water flowing out can flow from the pipe / 9-0-8 to the upper edge of 8 to assist the cleaning of this device (the other structure of 9-0-8 is the same as described above). When 9-0-10-3 moves from bottom to top, because of the presence of 9-0-10-4 (9-0-10-4 is a mechanical stop, which is the same as 9-0-7 and is used to control the rack of 9-0-10-1 to rotate only in one direction), 9-0-10-2 will remain stationary.
[0152] The annotation at the beginning of 9-0-11 indicates a simplified method of 9-0-10. 9-0-11-3 is the same as 9-0-10-3; it uses the force of the toilet's movement to drive 9-0-11-1 to rotate. Assuming 9-0-11-3 moves downwards, it will drive 9-0-11-1 to rotate, causing 9-0-9-1 to push the toilet's flush valve forward. When 9-0-11-3 moves upwards, it will drive 9-0-11-1 to rotate in the opposite direction, thus resetting 9-0-9-1. 9-0-9-1 can be directly fixed to 9-0-11-1 and can be partially or entirely wrapped around 9-0-11-1. 9-0-9-1 can also be partially or entirely equipped with a conical rack, and the rack engages with 9-0-11-1 to move 9-0-9-1.
[0153] In a specific implementation, when an object falls into the toilet, the splashing water is blocked by the splash basin or device. Then, when the toilet lid is closed or opened, power is transmitted from unit 1 to unit 5, causing the water tank to drain and fill (the water tank can also be filled through an opening). This also causes the splash basin and belt to retract, completing automatic cleaning and resetting. Units 1 and 5 can also be installed inside the toilet tank or near the flush button. The device can be operated by the force generated by the water level change during flushing, the force generated when the toilet tank button is pressed, or any other force. Figure 3 The function of 20, which connects to the toilet lid, is to transmit power to 17 when the toilet lid is open, so that 17 blocks the toilet flush button. When the toilet lid is closed, 20 drives 17 to expose the flush button, ensuring that the user closes the toilet lid after using the toilet to activate the automatic cleaning device.
Claims
1. A toilet splash-proof device characterized in that it prevents water splashing from an object, especially excrement, after it falls into the toilet by setting up a splash-proof basin or splash-proof plate and holes or channels through which the object passes. Any method and process for achieving the above splash-proof purpose is part of the present invention and is the part claimed in this patent application.
2. A splash-proof device as described in 1, and a toilet and cleaning or automatic cleaning device thereof, characterized in that it utilizes one or more of the following forces as driving power: the force of pressing the toilet lid when it is closed, the force generated by the change in water level in the toilet tank when flushing, the force of the toilet button when the flush button is pressed, the force of the flushing water flow when the toilet is flushed, electricity, or any other force. The driving force is received by the power receiving part of the device, and then the cleaning or automatic cleaning of the splash-proof device, toilet, and cleaning device is achieved by the power output part of the device. The cleaning device can perform repeated cleaning of the splash-proof device, toilet, and cleaning device. The cleaning device also includes an independent water tank and a water intake part or automatic water intake part for the water tank, as well as a water intake part or automatic water intake part for drawing water from the toilet tank, the water during toilet flushing, tap water, etc., to provide water for the cleaning device. Any method or process for achieving the above cleaning purpose is part of this invention and is the part claimed in this patent application.
3. A device that controls the toilet flush button to be pressed only when the toilet seat is open or closed, characterized in that... The device can utilize one or more of the following forces as driving power: the force of pressing the toilet lid when it is closed, the force generated by the change in water level in the toilet tank when flushing, the force of the toilet flush button when it is pressed, the force of the flushing water flow, electricity, or any other force. The device receives these driving forces through its power receiving component and then uses its power output component to control whether the toilet lid is open or closed before the toilet flush button can be pressed. Any method or process for achieving the above objectives is part of this invention and is the part claimed in this patent application.
4. The main feature of the water-blocking device as described in 1 is that, by changing the angle of the hole or channel through which an object enters the toilet, it can block the splashing water generated after the object enters the toilet. The water-blocking device as described in 1 can be set with an angle from the bottom to the top edge of the water-blocking basin to allow items to slide smoothly into or through the holes or channels of the water-blocking device. When the device is plate-shaped, an inclined plate can be added to the plate to catch the item and ensure that the item can smoothly pass through or enter the holes or channels of the water-blocking device. The water-blocking device as described in 1 can be multi-layered and height-adjustable. Its surface can also be covered with a certain elasticity or inelasticity material such as rubber or any other material, and can be contracted or expanded using this material to ensure a smooth surface and aesthetic appearance after contraction. The water-blocking device described in 1 is a foldable device. The water-blocking device described in 1 is provided with an adjustable connecting device to ensure the connection between the water-blocking device and various parts of the toilet. The shape of the water-blocking device described in 1 can be circular, elliptical, rectangular, square, polygonal, or any other funnel-shaped, plate-shaped, or any other shape. The surface of the water-blocking device described in 1 can have a water outlet hole that can cooperate with the water outlet of the water tank. The upper edge or any other position of the water-blocking device described in 1 can be provided with a part or protruding edge that can be locked under the toilet bowl or seat or the toilet flush outlet or any other position, so that the water-blocking device can be directly flushed by the toilet flushing or the water from the toilet flushing can partially or completely pass through the water-blocking device to complete the toilet flushing or enter the sewer. All of the above are the parts that this patent application claims to protect.
5. All parts, components, processes, methods, and concepts mentioned in all documents submitted in this patent application for the operation and purpose of realizing the toilet splash-proof device, the splash-proof device as described in 1, the cleaning or automatic cleaning device for the toilet and the cleaning device, and the device that can control the toilet seat to be in the open or closed state before pressing the toilet flush button are the parts claimed to be protected in this patent application.
6. All parts, components, processes, methods, and concepts mentioned in all the documents submitted in Figures 1 to 21 that enable the operation and achieve the purpose of the toilet splash-proof device, the splash-proof device as described in 1, the toilet and the cleaning or automatic cleaning device of this cleaning device, and the device that controls the toilet seat to be in the open or closed state before the toilet flush button can be pressed are the parts claimed in this patent application.
7. All parts, components, processes, methods, and concepts mentioned in all documents submitted in this patent specification for the operation and realization of the toilet splash-proof device, the splash-proof device as described in 1, the cleaning or automatic cleaning device for the toilet and the cleaning device, and the device that controls the toilet seat to be in the open or closed state before the toilet flush button can be pressed are the parts claimed to be protected in this patent application.
8. All parts, components, processes, methods, and concepts mentioned in the accompanying drawings of this patent specification for the operation and purpose of the toilet splash-proof device, the splash-proof device as described in 1, the cleaning or automatic cleaning device for the toilet and the cleaning device, and the device that controls the toilet seat to be in the open or closed state before the toilet flush button can be pressed are the parts claimed in this patent application.