A spray gun assembly and a toilet
By designing the guide structure and drive system of the spray gun assembly, the spray gun angle and distance can be adjusted, solving the problem of fixed spray angle of the smart toilet spray gun and improving the flexibility and accuracy of cleaning.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-06-27
- Publication Date
- 2026-04-03
AI Technical Summary
The spray angle of the spray gun in a smart toilet is fixed, which cannot meet the needs of users for different cleaning areas.
A spray gun assembly was designed, including a gun holder, a first guide structure, and a second guide structure. Through the cooperation of an arc-shaped guide rail and a support component, the spray angle and distance of the spray gun can be adjusted. Combined with the drive component and the transmission component, the position and angle of the spray gun are automatically adjusted.
The increased flexibility of the spray gun allows it to adapt to the cleaning needs of users in different locations, enhancing the flexibility and accuracy of the cleaning process.
Smart Images

Figure CN114922265B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of toilet technology, and in particular to a spray gun assembly and a toilet. Background Technology
[0002] Smart toilets boast numerous special features, such as bidet functions, genital cleansing, movable cleansing, heated seat, warm air drying, automatic deodorization, and quiet seating. These functions can be operated via a button panel or a remote control. Consequently, smart toilets have gained widespread use.
[0003] Smart toilets use a spray gun for cleaning, but the spray angle range is fixed, and the spray position for users is relatively fixed, which cannot meet the user's cleaning needs for different cleaning areas. Summary of the Invention
[0004] This application provides a spray gun assembly and a toilet, which enables adjustment of the spray gun's spray angle, improves the spray gun's flexibility, and allows for cleaning of different areas of the user's body.
[0005] This application first provides a spray gun assembly, including: a gun holder; a first guide structure disposed on the gun holder; a spray gun movably disposed on the first guide structure, the spray gun moving along the length direction of the spray gun, the free end of the spray gun being provided with a nozzle for spraying, the nozzle being able to extend from the front end of the gun holder to adjust the spray distance of the spray gun; and a second guide structure, the rear end of the gun holder being movably disposed on the second guide structure, the rear end of the gun holder moving along the second guide structure to adjust the spray angle of the spray gun.
[0006] In some specific embodiments, the second guide structure is provided with an arc-shaped guide rail, and the rear end of the gun holder moves along the arc-shaped guide rail to adjust the spray angle of the spray gun.
[0007] In some specific implementations, the two ends of the arc-shaped guide rail have different vertical heights in the vertical direction, and the rear end of the gun mount moves on the arc-shaped guide rail to realize the raising and lowering of the gun mount, so as to adjust the spray angle of the spray gun in the vertical direction.
[0008] In some specific embodiments, the spray gun assembly includes a support member, a first end of which is fixedly connected to the lower end of a second guide structure, a second end of which is disposed opposite to the second guide structure, and a second end of which is rotatably connected to the front end of the gun holder; wherein, when the rear end of the gun holder moves on the arc-shaped guide rail, the front end of the gun holder rotates relative to the second end of the support member.
[0009] In some specific embodiments, the arc-shaped guide rail extends vertically, and the second end of the support member is directly opposite the middle of the arc-shaped guide rail; wherein, when the spray gun is in the receiving state, the rear end of the gun holder is located at the lower end of the arc-shaped guide rail and the spray gun is horizontal, and when the spray gun is in use, the rear end of the gun holder is located at the upper end of the arc-shaped guide rail and the spray gun is tilted.
[0010] In some specific embodiments, the second guide structure is used to be horizontally positioned inside the toilet so that the rear end of the gun holder moves horizontally on the second guide structure, and the front end of the gun holder rotates in the horizontal direction.
[0011] In some specific embodiments, the gun mount includes a first side and a second side, with an included angle between the first side and the second side, a first guide structure disposed on the first side, and a second guide structure disposed on the second side.
[0012] In some specific embodiments, the spray gun assembly includes a drive member disposed on the gun holder. The drive member is used to drive the spray gun to move on a first guide structure, and the drive member is also used to drive the gun holder to move on a second guide structure.
[0013] In some specific embodiments, the spray gun assembly further includes: a first transmission member disposed on the gun holder, the first transmission member connecting the drive member and the spray gun, the first transmission member driving the spray gun to move on the first guide structure under the drive of the drive member; and a second transmission member disposed on the gun holder, the second transmission member connecting the drive member and the gun holder, the second transmission member moving on the second guide structure under the drive of the drive member, so as to drive the gun holder to move on the second guide structure.
[0014] In some specific embodiments, the driving component includes: a first driving component disposed on the gun mount, the first driving component being connected to a first transmission component, the first driving component being used to drive the first transmission component; and a second driving component disposed on the gun mount, the second driving component being connected to a second transmission component, the second driving component being used to drive the second transmission component.
[0015] A second aspect of this application provides a toilet, including: a toilet seat; and a spray gun assembly as described in any of the preceding claims, the spray gun assembly being disposed within the toilet seat and used for cleaning a user.
[0016] In some specific embodiments, the toilet further includes: a toilet seat, disposed on the toilet rim, for closing the toilet rim; a sensor disposed on the inside of the toilet seat, the sensor for identifying the user's position and generating position sensing information; and a controller connected to the sensor and the spray gun assembly, the controller for receiving position sensing information from the sensor and controlling the movement of the spray gun and / or gun holder of the spray gun assembly based on the position sensing information, so that the spray gun washes the user's preset position.
[0017] In some specific implementations, the controller is used to control the raising of the gun mount and the movement of the spray gun so that when the rear end of the gun mount is at the upper end of the second guide structure, the spray gun extends from the front end of the gun mount; the controller is also used to control the lowering of the gun mount and the movement of the spray gun so that when the rear end of the gun mount is at the lower end of the second guide structure, the spray gun is horizontal.
[0018] This application has at least the following beneficial effects: Based on the spray gun assembly and toilet provided in this application, the rear end of the gun holder can move along the second guide structure, thereby realizing the adjustment of the spray gun spray angle, improving the flexibility of the spray gun, and enabling cleaning of different positions of the user. Attached Figure Description
[0019] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0020] Figure 1 This is a schematic diagram of the structure of one embodiment of the spray gun assembly provided in this application;
[0021] Figure 2 This is a schematic diagram of another embodiment of the spray gun assembly provided in this application;
[0022] Figure 3 yes Figure 2 A partially enlarged schematic diagram of the second guide structure of the spray gun assembly;
[0023] Figure 4 yes Figure 1 A schematic diagram of the spray gun assembly in another state;
[0024] Figure 5 yes Figure 1 A schematic diagram of the spray gun assembly on the other side;
[0025] Figure 6 yes Figure 5 A schematic diagram of the spray gun assembly after removing the first outer shell of the gun mount;
[0026] Figure 7 yes Figure 1 A schematic diagram of the spray gun assembly after removing the second housing of the gun mount;
[0027] Figure 8 yes Figure 1 A schematic diagram of the structure of the spray gun assembly with a second driving component on the second side;
[0028] Figure 9This is a structural schematic diagram of an embodiment of the toilet seat provided in this application;
[0029] Figure 10 yes Figure 9 A schematic diagram showing the setup of the spray gun assembly in a toilet seat;
[0030] Figure 11 yes Figure 9 Another schematic diagram of the spray gun assembly in the toilet seat;
[0031] Figure 12 yes Figure 9 A block diagram of the sensor and controller for the toilet seat;
[0032] Figure 13 This is a structural schematic diagram of an embodiment of the toilet provided in this application.
[0033] Explanation of reference numerals in the attached drawings: 10. Spray gun assembly; 11. Gun holder; 111. Front end of gun holder; 112. Rear end of gun holder; 113. First side; 114. Second side; 115. First outer shell; 116. Second outer shell; 117. Mounting plate; 1171. First side; 1172. Second side; 12. First guide structure; 13. Spray gun; 131. Free end; 14. Second guide structure; 141. Arc-shaped guide rail; 15. Support member; 151. First end of support member; 152. Second end of support member;
[0034] 171. First transmission component; 1711. Transmission gear; 1712. Transmission rack; 172. Second transmission component; 181. First drive component; 182. Second drive component; 20. Toilet seat; 21. Spray outlet; 22. Sensor; 23. Controller; 24. Toilet seat; 25. Toilet lid. Detailed Implementation
[0035] The present application will now be described in further detail with reference to the accompanying drawings and embodiments. It should be particularly noted that the following embodiments are for illustrative purposes only and do not limit the scope of the application. Similarly, the following embodiments are only some, not all, embodiments of the present application, and all other embodiments obtained by those skilled in the art without inventive effort are within the scope of protection of the present application.
[0036] The terms “first,” “second,” “third,” “fourth,” etc. (if present) in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a particular order or sequence. It should be understood that such data can be interchanged where appropriate so that embodiments of the application described herein can be implemented, for example, in orders other than those illustrated or described herein. Furthermore, the terms “comprising” and “having,” and any variations thereof, are intended to cover a non-exclusive inclusion; for example, a process, method, system, product, or apparatus that comprises a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to such processes, methods, products, or apparatus.
[0037] This application first provides a spray gun assembly 10, please refer to... Figures 1-3 , Figure 1 This is a schematic diagram of one embodiment of the spray gun assembly 10 provided in this application. Figure 2 This is a schematic diagram of another embodiment of the spray gun assembly 10 provided in this application. Figure 3 yes Figure 2 A partially enlarged schematic diagram of the second guide structure 14 of the spray gun assembly 10.
[0038] like Figure 1 as well as Figure 2 As shown, the spray gun assembly 10 includes a gun holder 11, a first guide structure 12, a spray gun 13, and a second guide structure 14.
[0039] Specifically, the first guide structure 12 is disposed on the gun mount 11. The first guide structure 12 may be detachably disposed on the gun mount 11, or it may be non-detachably disposed on the gun mount 11. For example, the first guide structure 12 may be welded to the gun mount 11. When the first guide structure 12 is non-detachably disposed on the gun mount 11, the first guide structure 12 can be regarded as part of the gun mount 11.
[0040] The spray gun 13 is movably mounted on the first guide structure 12 and can move along the length of the spray gun. The free end 131 of the spray gun 13 is provided with a nozzle for spraying, which can extend from the front end of the gun holder 11 to adjust the spray distance of the spray gun 13.
[0041] It should be understood that the first guide structure 12 is fixed in position relative to the gun holder 11, while the spray gun 13 can move along the length of the first guide structure 12. The first guide structure 12 can fix the movement trajectory of the spray gun 13, thereby ensuring that the spray gun 13 moves along a preset trajectory.
[0042] In some specific embodiments, the first guide structure 12 can be configured as a chute, allowing the spray gun 13 to move along a preset trajectory within the chute. Alternatively, the first guide structure 12 can be configured as a recess, with the spray gun 13 correspondingly provided with a protrusion, allowing the spray gun 13 to move along a preset trajectory by moving the protrusion within the recess. Of course, in other embodiments, the configuration of the first guide structure 12 is not limited to the above embodiments.
[0043] When the free end 131 of the spray gun 13 extends from the front end of the gun holder 11, the free end 131 of the spray gun 13 extends into the toilet bowl from the spray nozzle. At this time, the nozzle of the free end 131 of the spray gun 13 can operate to wash the user. At this time, by adjusting the spray gun 13 to move it, the position of the nozzle relative to the spray nozzle can be adjusted, thereby adjusting the spray distance of the spray gun 13 relative to the spray nozzle.
[0044] The spray gun 13 can be a multi-stage telescopic structure, with one end of the multi-stage telescopic structure being a free end. The spray gun 13 changes its length by telescopically extending and retracting, thereby changing the position of the nozzle relative to the spray port and adjusting the spray distance of the spray gun 13 relative to the spray port.
[0045] It should be understood that the spray gun 13 can adjust its spray distance by sliding on the first guide structure 12 and by extending and retracting itself.
[0046] The second guide structure 14 is used to fix the movement trajectory of the gun holder 11. The rear end of the gun holder 11 is movably mounted on the second guide structure 14. The rear end of the gun holder 11 can move along the second guide structure 14 and then move along the fixed trajectory to adjust the spray angle of the spray gun 13.
[0047] Specifically, the gun mount 11 has a front end and a rear end, which are positioned opposite each other. The distance between the rear end and the front end of the gun mount 11 can be the longest distance between any two ends of the gun mount, or it can be set to a distance other than the longest distance, depending on the situation. The second guide structure 14 can be configured in the same way as the first guide structure 12 described above, thereby enabling the rear end of the gun mount 11 to move on the second guide structure 14.
[0048] More specifically, the front end 111 of the gun holder 11 can be rotatably mounted inside the toilet, so that when the rear end 112 of the gun holder 11 moves on the second guide structure 14, the front end 111 of the gun holder 11 rotates. Of course, although the front end 111 of the gun holder 11 is rotatably mounted inside the toilet, its position can be fixed or changed as the rear end of the gun holder 11 moves. When the front end 111 of the gun holder 11 rotates, the spray gun 13 extending from the front end 111 of the gun holder 11 rotates accordingly, thereby changing the spray angle of the spray gun 13.
[0049] In summary, the spray gun 13 of the spray gun assembly 10 provided in this application is disposed on the gun holder 11. The rear end 112 of the gun holder 11 can move on the second guide structure 14, thereby causing the front end 111 of the gun holder 11 to rotate, thereby causing the spray gun 13 extending from the front end 111 of the gun holder 11 to rotate, so as to change the spray angle of the spray gun 13.
[0050] Combination Figures 1-3 The second guide structure 14 is provided with an arc-shaped guide rail 141, and the rear end 112 of the gun holder 11 moves along the arc-shaped guide rail 141 to adjust the spray angle of the spray gun 13.
[0051] Specifically, the arc-shaped guide rail 141 is considered part of the second guide structure 14, but the arc-shaped guide rail 141 can be fixedly installed or detachably installed. The arc-shaped guide rail 141 can be located on one side of the second guide structure 14, and one side of the second guide structure 14 can be entirely composed of the arc-shaped guide rail 141.
[0052] Based on the above, the rear end 112 of the gun mount 11 is located on the second guide structure 14, that is, the rear end 112 of the gun mount 11 is located on the arc-shaped guide rail 141, and when it moves on the arc-shaped guide rail 141, it moves on the second guide structure 14.
[0053] Combination Figure 1 In some specific embodiments, the two ends of the arc-shaped guide rail 141 have different vertical heights in the vertical direction. The rear end 112 of the gun holder 11 moves on the arc-shaped guide rail 141 to realize the lifting and lowering of the gun holder 11, so as to adjust the spray angle of the spray gun 13 in the vertical direction.
[0054] In this embodiment, the arc-shaped guide rail 141 is arranged vertically. When the rear end 112 of the gun mount 11 moves on the arc-shaped guide rail 141, the height of the rear end 112 of the gun mount 11 changes in the vertical direction, thereby achieving a change in the height of the rear end 112 of the gun mount 11 in the vertical direction. Combined with the above, the position of the front end 111 of the gun mount 11 can be fixed, and thus, when the height of the rear end 112 of the gun mount 11 changes in the vertical direction, the rear end 112 of the gun mount 11 rises and falls.
[0055] It should be understood that when the rear end 112 of the gun holder 11 rises, the nozzle of the spray gun 13 rotates clockwise, and when the rear end 112 of the gun holder 11 falls, the nozzle of the spray gun 13 rotates counterclockwise. Therefore, the spray angle of the spray gun 13 in the vertical direction can be adjusted by rotating the nozzle clockwise and counterclockwise.
[0056] Please combine Figure 1 as well as Figure 4 , Figure 4 yes Figure 1A schematic diagram of the spray gun assembly 10 in another state.
[0057] exist Figure 1 In this configuration, the rear end 112 of the gun holder 11 is located at the lower end of the arc-shaped guide rail 141. At this time, the spray gun 13 does not extend beyond the front end 111 of the gun holder 11, the spray gun 13 is in a retracted state, and the spray gun 13 does not perform spraying operations.
[0058] exist Figure 4 In this configuration, the rear end of the gun holder 11 is located at the upper end of the arc-shaped guide rail 141. At this time, the spray gun 13 extends out of the front end 111 of the gun holder 11, and the spray gun 13 is in the extended state, performing the spraying operation.
[0059] Specifically, the gun holder 11 can be configured such that when the spray gun 13 is in the housed state, the spray gun 13 is horizontally positioned. When the sub-spray gun 13 is in the working state, the tilt angle of the spray gun 13 is located at a preset angle when the spray gun 13 is in operation.
[0060] Combination Figure 1 as well as Figure 4 When the spray gun 13 switches from the receiving state to the working state, the gun holder 11 moves upward on the arc-shaped guide rail 141, and the spray gun 13 moves towards the front end 111 of the gun holder 11 on the first guide structure 12. When the gun holder 11 moves to the upper end of the arc-shaped guide rail 141, the spray gun 13 has already extended from the front end 111 of the gun holder 11. It should be understood that the gun holder 11 and the spray gun 13 can move synchronously or asynchronously, as long as the spray gun 13 extends from the front end 111 of the gun holder 11 when the gun holder 11 moves to the upper end of the arc-shaped guide rail.
[0061] Please combine Figure 1 as well as Figure 4 In some specific embodiments, the spray gun assembly 10 includes a support member 15. A first end 151 of the support member 15 is fixedly connected to the lower end of a second guide structure 14, and a second end 152 of the support member 15 is disposed opposite to the second guide structure 14. The second end 152 of the support member 15 is rotatably connected to the front end of the gun holder 11. When the rear end of the gun holder 11 moves on the arc-shaped guide rail 141, the front end of the gun holder 11 rotates relative to the second end of the support member 15.
[0062] Specifically, the support member 15 is arranged in a strip shape, and the first end 151 of the support member 15 can be connected to the second guide structure 14 by means of snap-fit, welding or other methods. The second end 152 of the support member 15 is arranged opposite to the second guide structure 14, so that the gun holder 11 can be arranged between the second guide structure 14 and the second end 152 of the support member 15.
[0063] Based on the above, by setting the arc-shaped guide rail 141, when the second end 112 of the gun holder 11 moves on the arc-shaped guide rail 141, the second end 152 of the support member 15 and the connection point of the front end 111 of the gun holder 11 remain fixed, thereby ensuring that the spray gun 13 extends from the front end 111 of the gun holder 11 at a specific position each time.
[0064] Combination Figure 4 In some specific embodiments, the arc-shaped guide rail 141 extends vertically, and the second end 152 of the support member 15 is directly opposite the middle of the arc-shaped guide rail 141. The arc-shaped guide rail 141 extends vertically, meaning its upper and lower ends are on the same straight line in the vertical direction. The fact that the second end 152 of the support member 15 is directly opposite the middle of the arc-shaped guide rail 141 allows the spray gun 13 to be in its stored state, with the rear end of the gun holder 11 located at the lower end of the arc-shaped guide rail 141 and the spray gun 13 horizontal; and when the spray gun 13 is in its use or working state, the rear end of the gun holder 11 is located at the upper end of the arc-shaped guide rail 141 and the spray gun 13 is tilted.
[0065] Combination Figure 2 as well as Figure 3 The second guide structure 14 is used to be horizontally positioned inside the toilet so that the rear end 112 of the gun holder 11 moves horizontally on the second guide structure 14, and the front end 111 of the gun holder 11 rotates in the horizontal direction.
[0066] Based on the above, the front end 111 of the gun holder 11 is rotatably positioned inside the toilet bowl, allowing the front end 111 of the gun holder 11 to rotate horizontally simultaneously with the rear end 112 of the gun holder 11 moving horizontally. At this time, the portion of the spray gun 13 extending beyond the front end 111 of the gun holder 11 also moves horizontally. This horizontal movement of the spray gun 13 allows for adjustment of its horizontal spray angle.
[0067] In this embodiment, the spray angle of the spray gun 13 in the horizontal direction is adjusted by the horizontal movement of the rear end 112 of the gun holder 11 on the second guide structure 14.
[0068] The above content describes the implementation methods of adjusting the spray angle of the spray gun 13 in the vertical direction and the implementation methods of adjusting the spray angle in the horizontal direction. However, the two implementation methods of adjusting the spray angle can be combined to achieve adjustment of the spray angle in both the vertical and horizontal directions.
[0069] Combining the above implementation methods and Figure 2The gun mount 11 includes a first side 113 and a second side 114, with an included angle between the first side 113 and the second side 114. A first guide structure 12 is disposed on the first side 113, and a second guide structure 14 is disposed on the second side 114.
[0070] In this embodiment, the spray gun 13 and the second guide structure 14 have an included angle, that is, the spray gun 13 is inclined relative to the horizontal plane. Therefore, when adjusting the gun holder 11, it is not necessary to adjust the gun holder 11 to tilt it.
[0071] Based on the above, the second guide structure 14 is located at the end of the second side 114 away from the first end 111 of the gun mount 11. Of course, the second guide structure 14 can also be located in the middle of the second side 114, etc., to ensure that the second guide structure 14 does not protrude from the rear end 112 of the gun mount 11.
[0072] Specifically, the spray gun 13 assembly includes a drive unit disposed on the gun holder 11. The drive unit is used to drive the spray gun 13 to move on the first guide structure 12, and the drive unit is also used to drive the gun holder 11 to move on the second guide structure 14.
[0073] The drive unit enables the gun holder 11 and spray gun 13 to be automatically driven. The drive unit can be connected to a controller, which can then control the driving of the drive unit. The drive unit can drive motors, cylinders, or other driving devices, and is not specifically limited here.
[0074] Combination Figure 1 as well as Figures 5-7 , Figure 5 yes Figure 1 The spray gun assembly 10 is shown in the structural diagram on the other side. Figure 6 yes Figure 5 A schematic diagram of the spray gun assembly 10 after removing the first outer shell 115 of the gun holder 11. Figure 7 yes Figure 1 A schematic diagram of the structure of the spray gun assembly 10 after removing the second outer shell 116 of the gun holder 11.
[0075] Combination Figure 1 , Figure 5 as well as Figure 6 Specifically, the spray gun assembly 10 also includes a first transmission member 171, which is disposed on the gun holder 11. The first transmission member 171 connects the drive member and the spray gun 13. Under the drive of the drive member, the first transmission member 171 drives the spray gun 13 to move on the first guide structure 12.
[0076] More specifically, the gun mount 11 includes a mounting plate 117, and a first transmission member 171 is disposed on the mounting plate 117, which includes a first side 1171 and a second side 1172 disposed opposite to each other, with the first transmission member disposed on the first side 1171.
[0077] The first transmission component 171 may include a transmission gear 1711 and a transmission rack 1712. The transmission gear 1711 can be connected to the driving component, and the transmission gear 1711 is connected to the transmission rack 1712. The transmission rack 1712 is connected to the spray gun 13. The transmission gear 1711 drives the transmission rack 1712, which in turn drives the spray gun 13 to move.
[0078] Combination Figure 1 as well as Figure 7 ,exist Figure 1 After removing the second housing 116, the spray gun assembly 10 in the middle forms a shape like... Figure 7 The spray gun assembly 10 also includes a second transmission member 172, which is disposed on the gun holder 11 and connects the drive member and the second guide structure 14. Driven by the drive member, the second transmission member 172 moves on the second guide structure 14, thereby causing the gun holder 11 to move on the second guide structure 14.
[0079] Based on the above, the second guide structure 14 is disposed on the second side 1172 of the mounting plate 117, or on the side of the gun holder 11.
[0080] Specifically, the second guide structure 172 may include multiple transmission gears, which are connected to each other. One of the transmission gears is connected to the driving member, and the other transmission gear is connected to the second guide structure 14. The driving member drives the transmission gears to transmit power between them, and the transmission gear connected to the second guide structure 14 can roll on the second guide structure, thereby driving the gun mount 11 to move on the second guide structure 14.
[0081] It should be understood that, corresponding to the specific arrangement of the second transmission component 172, the arc-shaped guide rail 141 can be configured as a gear guide rail, and thus mesh with the transmission gear of the second transmission component 172.
[0082] Please combine Figure 5 as well as Figure 6 The driving component includes a first driving component 181, which is disposed on the gun mount 11 and connected to a first transmission component 171. The first driving component 181 is used to drive the first transmission component 171.
[0083] In conjunction with the above, the first driving member 181 is disposed on the first side 1171, and the driving shaft of the first driving member 181 is connected to the first transmission member 171, thereby driving the first transmission member 171 by rotating the driving shaft of the first driving member 181.
[0084] In conjunction with the above, in some embodiments, the spray gun assembly 10 only includes a first driving member 181. In this case, the first driving member 181 is disposed on the first side 1171, and the first driving member 181 simultaneously drives both the first transmission member 171 and the second transmission member 171. In this case, the connection between the first transmission member 171 and the second transmission member 172 can be achieved through a connecting shaft penetrating the mounting plate 117, thereby enabling the first driving member 181 to drive the first transmission member 171 synchronously, and vice versa.
[0085] Please combine Figure 8 , Figure 8 yes Figure 1 A schematic diagram of the structure of the spray gun assembly 10 having a second drive member 182 provided on the second side 1172.
[0086] The driving component also includes a second driving component 182, which is disposed on the second side 1172 of the gun mount 11. The second driving component 182 is connected to the second transmission component 172 and is used to drive the second transmission component 172.
[0087] In this embodiment, the spray gun assembly 10 includes both a first driving member 181 and a second driving member 182, and the first driving member 181 and the second driving member 182 are respectively disposed on two opposite sides of the mounting plate 117. At this time, the first driving member 181 drives the first transmission member 171, and the second driving member 182 drives the second transmission member 172, thereby realizing the driving of the first transmission member 171 and the second transmission member 172 respectively.
[0088] It should be understood that the above-described configuration of the first driving member 181 and the second driving member 182, and the first transmission member 171 and the second transmission member 172, is based solely on the embodiment where the spray gun 13 adjusts the spray angle in the vertical direction. For the embodiment where the spray gun 13 adjusts the spray angle in the horizontal direction, please refer to the above-described embodiments; the underlying principle is the same.
[0089] Please see Figures 9-11 , Figure 9 This is a schematic diagram of the structure of one embodiment of the toilet seat 20 provided in this application. Figure 10 yes Figure 9 A schematic diagram of the spray gun assembly 10 in the toilet seat 20. Figure 11 yes Figure 9 Another schematic diagram of the spray gun assembly 10 in the toilet seat 20.
[0090] Combination Figure 9 The second aspect of this application provides a toilet, which includes a toilet seat 20 and a spray gun assembly 10 as described in any of the above embodiments. The spray gun assembly 10 is disposed inside the toilet seat 20 and is used to clean the user.
[0091] Combination Figure 10 In an embodiment of the spray gun assembly 10 corresponding to the vertical adjustment of the spray angle of the spray gun 10, the second guide structure 14 is vertically arranged inside the toilet seat 20, and the spray gun 13 can extend from the spray outlet 21.
[0092] Combination Figure 11 In an embodiment of the spray gun assembly 10 corresponding to the horizontal adjustment of the spray angle of the spray gun 10, the second guide structure 14 is horizontally disposed inside the toilet seat 20, and the spray gun 13 can extend from the spray outlet 21.
[0093] Combination Figure 12 , Figure 12 yes Figure 9 The structural block diagram of the sensor 22 and controller 23 of the toilet seat 20.
[0094] Specifically, the toilet also includes a sensor 22 and a controller. The sensor 22 is installed inside the toilet and is used to identify the user's position and generate position sensing information.
[0095] The controller 23 is connected to the sensor 22 and the spray gun assembly 10. The controller 23 is used to receive position sensing information from the sensor 22 and control the movement of the spray gun 13 and / or the gun holder 11 of the spray gun 13 assembly based on the position sensing information, so that the spray gun 13 washes the user's preset position.
[0096] By configuring the controller 23 and the sensor 22, it is possible to intelligently identify the user's location and intelligently rinse specific locations of the user.
[0097] More specifically, the controller 23 controls the raising of the gun holder 11 and the movement of the spray gun 13, so that when the rear end of the gun holder 11 is located above the second guide structure 14, the spray gun 13 extends from the front end of the gun holder 11. Combined with the aforementioned sensor 22, the controller 23 can adjust the movement of the gun holder 11 and the spray gun 13 based on the position sensing information from the sensor 22, thereby ensuring that the spray gun 13 is precisely positioned at a specific location.
[0098] At this time, the spray gun 13 is tilted and in working condition, spraying water into the toilet seat to clean the user. Specifically, when the rear end of the gun holder 11 is located above the second guide structure 14, the spray gun 13 has extended from the front end of the gun holder 11, lowering the overall height of the gun holder 11. This, in turn, lowers the height of the top of the toilet seat 20, thereby improving the overall aesthetics of the toilet seat 20.
[0099] The controller 23 is also used to control the descent of the gun holder 11 and the movement of the spray gun 13 so that the spray gun 13 is horizontal when the rear end of the gun holder 11 is at the lower end of the arc-shaped guide rail 14.
[0100] This control process is implemented when the spray gun 13 is no longer in use. Through this control process, the spray gun 13 is placed in a receiving state, thus storing the spray gun 13 in the gun holder 11.
[0101] Please combine Figure 13 , Figure 13 This is a structural schematic diagram of an embodiment of the toilet provided in this application.
[0102] The toilet also includes a toilet seat 24 and a toilet lid 25. A toilet ring 21 is mounted on the toilet seat 24, and a toilet lid 25 is mounted on the toilet ring 21. The toilet seat 24 is used to hold water, and the toilet lid 25 is used to close the toilet ring 21. A spray gun 13 can extend from the spray outlet 21 of the toilet ring 20 into the toilet seat 24 to spray water onto the user.
[0103] Based on the aforementioned sensor 22 configuration, the sensor 22 can be positioned on the inside of the toilet seat 25, which is the side of the toilet seat 25 facing the user when the toilet seat 21 is not closed. By positioning the sensor 22 on the inside of the toilet seat 25, the user's position can be accurately detected when the user is sitting on the toilet seat 21.
[0104] In some specific embodiments, the sensor 22 can be a distance sensor, and there are multiple sensors 22 arranged horizontally on the toilet seat 25. With this arrangement, when the user's sitting posture shifts to the left or right, the distance sensing information from the sensor 22 can accurately determine the amount of the user's posture shift, and then control the spray gun 13 to adjust its angle to achieve accurate cleaning.
[0105] The above are merely embodiments of this application and do not limit the scope of this patent application. Any equivalent structural or procedural changes made using the content of this application's specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the scope of patent protection of this application.
Claims
1. A spray gun assembly, characterized in that, include: Gun rack; A first guide structure is provided on the gun mount; A spray gun is movably mounted on the first guide structure. The spray gun moves along its length. The free end of the spray gun is provided with a nozzle for spraying. The nozzle can extend from the front end of the gun holder to adjust the spraying distance of the spray gun. The second guide structure, wherein the rear end of the gun mount is movably mounted on the second guide structure, and the rear end of the gun mount moves along the second guide structure to adjust the spray angle of the spray gun; The second guide structure is provided with an arc-shaped guide rail, and the rear end of the gun holder moves along the arc-shaped guide rail to adjust the spray angle of the spray gun; The two ends of the arc-shaped guide rail have different vertical heights in the vertical direction. The rear end of the gun mount moves on the arc-shaped guide rail to realize the raising and lowering of the gun mount, so as to adjust the spray angle of the spray gun in the vertical direction. The spray gun assembly includes a support member, a first end of which is fixedly connected to the lower end of the second guide structure, a second end of which is disposed opposite to the second guide structure, and a second end of which is rotatably connected to the front end of the gun holder. When the rear end of the gun mount moves on the arc-shaped guide rail, the front end of the gun mount rotates relative to the second end of the support member. The arc-shaped guide rail extends vertically, and the second end of the support member is directly opposite the middle of the arc-shaped guide rail; When the spray gun is in the stored state, the rear end of the gun holder is located at the lower end of the arc-shaped guide rail and the spray gun is horizontal. When the spray gun is in the use state, the rear end of the gun holder is located at the upper end of the arc-shaped guide rail and the spray gun is tilted. The spray gun assembly includes a drive member disposed on the gun holder. The drive member is used to drive the spray gun to move on the first guide structure, and the drive member is also used to drive the gun holder to move on the second guide structure. The spray gun assembly further includes: A first transmission component is disposed on the gun holder. The first transmission component connects the driving component and the spray gun. Under the drive of the driving component, the first transmission component drives the spray gun to move on the first guide structure. A second transmission component is disposed on the gun mount. The second transmission component connects the driving component and the second guide structure. The second transmission component moves on the second guide structure under the drive of the driving component, thereby driving the gun mount to move on the second guide structure. The second transmission component includes multiple transmission gears, and the arc-shaped guide rail is correspondingly configured as a gear guide rail, thereby meshing with the transmission gears of the second transmission component; The driving component enables transmission between the transmission gears by driving the transmission gear, and the transmission gear connected to the second guide structure can roll on the second transmission component.
2. The spray gun assembly according to claim 1, characterized in that, The driving component includes: A first driving member is disposed on the gun mount. The first driving member is connected to the first transmission member and is used to drive the first transmission member. A second driving member is disposed on the gun mount. The second driving member is connected to the second transmission member and is used to drive the second transmission member.
3. A toilet, characterized in that, include: Toilet seat; The spray gun assembly as described in claim 1 or 2 is disposed within the toilet seat and is used to clean the user.
4. The toilet according to claim 3, characterized in that, The toilet also includes: A toilet seat, mounted on the toilet seat, for covering the toilet seat; A sensor is disposed on the inside of the toilet seat, and the sensor is used to identify the user's position and generate position sensing information; A controller, connected to the sensor and the spray gun assembly, is used to receive position sensing information from the sensor and control the movement of the spray gun and / or gun holder of the spray gun assembly based on the position sensing information, so that the spray gun washes the user's preset position.
5. The toilet according to claim 4, characterized in that, The controller is used to control the raising of the gun mount and the movement of the spray gun, so that when the rear end of the gun mount is located at the upper end of the second guide structure, the spray gun extends from the front end of the gun mount. The controller is also used to control the descent of the gun mount and the movement of the spray gun, so that the spray gun is horizontal when the rear end of the gun mount is located at the lower end of the second guide structure.
Citation Information
Patent Citations
Water spraying structure for intelligent toilet bowl
CN107794992A
A spray gun system for toilet
CN210122748U
Spray gun assembly and closestool
CN217601608U
Nozzle of bidet
KR1020090021553A