Intelligent drying device and closestool

CN224598084UActive Publication Date: 2026-08-07TAKA TECH CO LTD
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Patent Information

Application Number
CN202521809904.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-25
Publication Date
2026-08-07
Estimated Expiration
2035-08-25

AI Technical Summary

Technical Problem

[0002]目前在智能马桶中通常设置有烘干风道,以保证智能烘干效果,提高用户体验感,但是烘干风道一般不能移动,且摆风角度较为单一,仅能水平摆动或者垂直摆动,使得出风方向单一,烘干效果不好

Benefits of technology

[0019]本实用新型中移动组件套设于风机风道,且能够相对于风机风道朝向或背离人体臀部移动,不仅能够延长出风通道,提高烘干效率,而且能够有效保证出风位置的精准可控。具体地,在移动组件内活动设置有吹风组件,可实现多样化的出风方向,以满足用户不同的烘干需求。进一步地,通过感应探头能够检测人体臀部的温度,以此能够将感应探头的检测结果与移动组件和吹风组件匹配使用,以实现精准区域的烘干效果,提高烘干效率,满足用户需求,避免局部过热,出现烫伤的安全问题。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the field of bathroom technology, disclose intelligent drying device and closestool, including mobile assembly, blow -off subassembly and inductive probe, mobile assembly is set in the fan air duct, and can be relative to the fan air duct towards or away from the human hip movement, blow -off subassembly is set in mobile assembly inductive probe is used for detecting the temperature of human hip. The utility model discloses through the movement of mobile assembly not only can extend the air outlet channel, improve drying efficiency, and can effectively guarantee the precision controllable of air outlet position, simultaneously utilize blow -off subassembly, can realize the diversified air outlet direction to satisfy the different drying needs of user, and under the action of inductive probe can realize the drying effect of accurate area, improve drying efficiency, satisfy the user demand, avoid local overheating, appear the safety problem of scald.
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Description

Technical Field

[0001] This utility model relates to the field of bathroom technology, and in particular to an intelligent drying device and toilet. Background Technology

[0002] Currently, smart toilets typically include a drying duct to ensure effective drying and improve user experience. However, this duct is generally fixed and has a limited range of motion, only able to swing horizontally or vertically, resulting in a single airflow direction and poor drying performance. Furthermore, smart toilets lack intelligent sensors to detect the temperature of the user's buttocks and adjust the airflow accordingly. This can lead to localized overheating and burns during drying. Therefore, ensuring diverse and controllable airflow directions, precise control over airflow temperature and location during toilet drying, and improving drying efficiency and user experience are problems that researchers in this field need to solve. Utility Model Content

[0003] The purpose of this invention is to provide an intelligent drying device and toilet, so as to ensure that the air outlet direction is diverse and controllable during toilet drying, and that the air outlet temperature and air outlet position are precisely controllable, thereby improving drying efficiency and user experience.

[0004] To achieve this objective, the present invention adopts the following technical solution:

[0005] Intelligent drying device, comprising:

[0006] A movable component, which is fitted onto the fan duct and is capable of moving relative to the fan duct toward or away from the human buttocks;

[0007] The blower component is active within this moving component;

[0008] A sensor probe is used to detect the temperature of the human buttocks.

[0009] Optionally, it also includes a circuit board, through which the sensing probe detects the temperature of the human buttocks and the circuit board can control the movement of the moving component and the activity of the blowing component.

[0010] Optionally, the movable component includes a movable air duct and a first drive mechanism, the movable air duct being sleeved on the outside of the fan air duct, and the first drive mechanism being used to drive the movable air duct to move on the outside of the fan air duct.

[0011] Optionally, the first drive mechanism includes a first drive gear, and a rack is provided on the moving air duct, with the first drive gear meshing with the rack.

[0012] Optionally, the blowing assembly is provided with at least two sets, the blowing assembly including a horizontal blowing assembly and a vertical blowing assembly arranged at intervals, the horizontal blowing assembly including horizontal blades, the vertical blowing assembly including vertical blades, the horizontal blades and the vertical blades being arranged at an angle.

[0013] Optionally, the horizontal blowing assembly further includes a second drive mechanism and a horizontal drive gear that mesh with each other. The second drive mechanism is used to drive the horizontal drive gear to rotate, and the horizontal drive gear is configured to correspond one-to-one with the horizontal blade.

[0014] Optionally, the vertical blowing assembly further includes a third drive mechanism and a vertical drive gear that mesh with each other. The third drive mechanism is used to drive the vertical drive gear to rotate, and the vertical drive gear is configured to correspond one-to-one with the vertical blade.

[0015] Alternatively, the vertical blade may be disposed between the end of the moving assembly away from the fan duct and the horizontal blade, or the horizontal blade may be disposed between the end of the moving assembly away from the fan duct and the vertical blade.

[0016] Optionally, it also includes a heating element disposed in the fan duct; and / or, the sensing probe (70) is disposed outside the fan duct.

[0017] On the other hand, the toilet includes the smart drying device and the seat base, with the smart drying device disposed in the seat base.

[0018] The beneficial effects of this utility model are:

[0019] In this invention, a movable component is fitted into the fan duct and can move relative to the fan duct towards or away from the user's buttocks. This not only extends the air outlet channel and improves drying efficiency but also effectively ensures precise control of the air outlet position. Specifically, a blowing component is movably installed within the movable component, enabling diverse air outlet directions to meet different user drying needs. Furthermore, a sensing probe can detect the temperature of the user's buttocks. The probe's detection results can be matched with the movable component and the blowing component to achieve precise area drying, improve drying efficiency, meet user needs, and avoid localized overheating and burns. Attached Figure Description

[0020] Figure 1 This is a front sectional view of the intelligent drying device described in this embodiment of the invention installed in a toilet;

[0021] Figure 2 This is a partially enlarged schematic diagram of the intelligent drying device described in an embodiment of the present invention;

[0022] Figure 3 This is a side sectional view of the intelligent drying device described in this embodiment of the invention installed in a toilet;

[0023] Figure 4 This is a top sectional view of the intelligent drying device described in this embodiment of the invention installed in a toilet;

[0024] Figure 5 This is an exploded view of the intelligent drying device described in an embodiment of the present invention;

[0025] Figure 6 This is a first isometric view of the intelligent drying device described in this embodiment of the present invention;

[0026] Figure 7 This is a second isometric view of the intelligent drying device described in this embodiment of the present invention.

[0027] In the picture:

[0028] 100 - Human buttocks; 200 - Toilet base; 300 - Seat seat base; 400 - Seat seat shell;

[0029] 10 - Fan; 20 - Fan duct;

[0030] 30 - Moving component; 31 - Moving air duct; 311 - Rack; 32 - First drive mechanism; 321 - First drive motor; 322 - First drive gear;

[0031] 40 - Horizontal blowing assembly; 41 - Second drive mechanism; 411 - Second drive motor; 412 - Second drive gear; 42 - Horizontal drive gear; 421 - First gear; 422 - Second gear; 43 - Horizontal blade; 431 - First blade; 432 - Second blade;

[0032] 50 - Vertical blowing assembly; 51 - Third drive mechanism; 511 - Third drive motor; 512 - Third drive gear; 52 - Vertical drive gear; 521 - Third gear; 522 - Fourth gear; 53 - Vertical blade; 531 - Third blade; 532 - Fourth blade;

[0033] 60 - Heating element; 70 - Induction probe; 80 - Circuit board. Detailed Implementation

[0034] The embodiments of this utility model are described in detail below. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar parts or parts having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain this utility model, and should not be construed as limiting this utility model.

[0035] In the description of this utility model, unless otherwise explicitly specified and limited, the terms "connected," "linked," and "fixed" should be interpreted broadly. For example, they can refer to a fixed connection or a detachable connection; a mechanical connection or an electrical connection; a direct connection or an indirect connection through an intermediate medium; or the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0036] In the description of this utility model, unless otherwise expressly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.

[0037] The technical solution of this embodiment will be further described below with reference to the accompanying drawings and specific implementation methods.

[0038] like Figures 1-7 As shown, this embodiment provides an intelligent drying device, including a fan 10, a fan duct 20, a moving component 30, a blowing component, a heating element 60, a sensor probe 70, and a circuit board 80. Optionally, in this embodiment, the fan 10 is disposed at one end of the fan duct 20, and the moving component 30 is sleeved on the outside or inside of the fan duct 20. The moving component 30 can move relative to the fan duct 20 toward or away from the buttocks 100, thereby delivering the air generated by the fan 10 to the buttocks 100 and improving drying efficiency.

[0039] Specifically, in this embodiment, the air blowing component is movably disposed within the movable component 30, so that it can move synchronously with the movable component 30 and adjust the direction of the air blowing to achieve precise area drying and further improve drying efficiency. For example, in this embodiment, at least two sets of air blowing components are provided, including a horizontal air blowing component 40 and a vertical air blowing component 50 spaced apart, thereby enabling multiple ways to adjust the air blowing direction and improving the user experience.

[0040] Specifically, in this embodiment, the heating element 60 is disposed in the fan duct 20, and / or the sensing probe 70 is disposed outside the fan duct 20 and spaced apart from the blowing assembly. In this way, after the fan 10 generates air, warm air can be generated under the action of the heating element 60, which improves the user's comfort during the drying process and speeds up the drying process. In addition, the sensing probe 70 can detect the temperature of the human buttocks 100, and after detecting the temperature of the human buttocks 100, it can control the movement of the moving component 30 and the activity of the blowing assembly through the circuit board 80, thereby achieving rapid and accurate drying of the human buttocks 100.

[0041] For example, when the sensor probe 70 first detects that the temperature of the human buttocks 100 is low, it can send a signal to the circuit board 80, which will start the fan 10 and the heating element 60 to blow warm air evenly onto the human buttocks 100. Then, the sensor probe 70 can detect the temperature of the human buttocks 100 again. When it detects that the temperature of a certain location is low, the circuit board 80 can control the moving component 30 to move toward the human buttocks 100, and control the movement angle of the horizontal blowing component 40 and the vertical blowing component 50 to achieve the optimal blowing angle. This allows for precise drying and improved drying efficiency. At the same time, the temperature of the heating element 60 can be controlled by the detection value of the sensor probe 70. The combination of the blowing component and the moving component 30 can effectively prevent the human buttocks 100 from overheating and being burned.

[0042] like Figures 5-7 As shown, in this embodiment, the moving component 30 includes a moving air duct 31 and a first driving mechanism 32. The moving air duct 31 is sleeved on the outside of the fan air duct 20. The first driving mechanism 32 is used to drive the moving air duct 31 to move outside the fan air duct 20, thereby extending the air blowing channel and accurately delivering warm air to the drying area, improving drying efficiency while effectively preventing air leakage. Specifically, a rack 311 is provided at the bottom of the moving air duct 31. The first driving mechanism 32 includes a first driving motor 321 and a first driving gear 322. Optionally, the first driving gear 322 is connected to the first driving motor 321 and meshes with the rack 311. Thus, when the first driving motor 321 drives the first driving gear 322 to rotate, the moving air duct 31 can move relative to the fan air duct 20 under the meshing action of the rack 311 and the first driving gear 322. Specifically, the position of the moving air duct 31 is controlled by the rack and pinion structure, which not only has high transmission efficiency but also allows for precise control. In other embodiments, the first drive mechanism 32 may also be configured as a motor and linkage structure, or a motor, gear and linkage structure, to meet the corresponding requirements, and no limitation is made here.

[0043] Combination Figure 5 and Figure 6As shown, in this embodiment, the horizontal blowing assembly 40 includes horizontal blades 43, and the vertical blowing assembly 50 includes vertical blades 53. The horizontal blades 43 and vertical blades 53 are arranged at an angle, thereby enabling various adjustments to the airflow direction to meet drying requirements. For example, in this embodiment, the horizontal blades 43 are arranged horizontally, and the vertical blades 53 are arranged vertically, with the horizontal blades 43 and vertical blades 53 perpendicular to each other and spaced apart. Adjusting the angle of the horizontal blades 43 allows for up-and-down airflow in the horizontal direction, and adjusting the angle of the vertical blades 53 allows for left-and-right airflow in the vertical direction.

[0044] Furthermore, in this embodiment, the vertical blade 53 is positioned between the end of the moving component 30 away from the fan duct 20 and the horizontal blade 43, meaning the vertical blade 53 is positioned on the outside relative to the horizontal blade 43. This allows the airflow direction to be adjusted horizontally first and then vertically, making it easier for warm air to blow to the right, thus improving blowing efficiency. Correspondingly, in other embodiments, the horizontal blade 43 can also be positioned between the end of the moving component 30 away from the fan duct 20 and the vertical blade 53, meaning the horizontal blade 43 is positioned on the outside relative to the vertical blade 53. The specific position can be set as needed.

[0045] Specifically, the horizontal blowing assembly 40 also includes a second drive mechanism 41 and a horizontal drive gear 42. The second drive mechanism 41 is used to drive the horizontal drive gear 42 to rotate. The horizontal drive gear 42 is set in a one-to-one correspondence with the horizontal blades 43. In this way, the second drive mechanism 41 can drive the rotation of the horizontal blades 43 to achieve precise adjustment of the angle of movement of the horizontal blades 43.

[0046] Optionally, the second drive mechanism 41 includes a second drive motor 411 and a second drive gear 412, and the second drive gear 412 meshes with the horizontal drive gear 42. This allows for precise control of the rotation of the horizontal blades 43 through gear transmission, improving transmission efficiency. Specifically, the horizontal drive gear 42 includes a first gear 421 and a second gear 422, and the horizontal blades 43 include a first blade 431 and a second blade 432. For example, the first gear 421 is correspondingly arranged with the first blade 431, and the second gear 422 is correspondingly arranged with the second blade 432. The first gear 421 meshes with both the second drive gear 412 and the second gear 422, and the first blades 431 and 432 are spaced apart. Thus, when the second drive motor 411 drives the second drive gear 412 to rotate, the first gear 421 and the second gear 422 rotate synchronously with the second drive gear 412 under meshing action, thereby driving the first blades 431 and 432 to rotate synchronously, thus changing the angle of movement of the first blades 431 and 432, and consequently changing the wind direction. In other embodiments, the second drive mechanism 41 may be configured as a motor and linkage structure, or a motor, gear and linkage structure, and the number of horizontal blades 43 may also be set as needed to meet the corresponding requirements, which is not limited here.

[0047] Combination Figure 5 and Figure 7 As shown, the vertical blowing assembly 50 also includes a third drive mechanism 51 and a vertical drive gear 52. The third drive mechanism 51 is used to drive the vertical drive gear 52 to rotate. The vertical drive gear 52 is set in a one-to-one correspondence with the vertical blades 53. Thus, the third drive mechanism 51 can drive the rotation of the vertical blades 53, thereby achieving precise adjustment of the angle of movement of the vertical blades 53.

[0048] Optionally, the third drive mechanism 51 includes a third drive motor 511 and a third drive gear 512, and the third drive gear 512 meshes with the vertical drive gear 52, thereby enabling precise control of the rotation of the vertical blade 53 through gear transmission and improving transmission efficiency. Specifically, the vertical drive gear 52 includes a third gear 521 and a fourth gear 522, and the vertical blade 53 includes a third blade 531 and a fourth blade 532. For example, the third gear 521 is correspondingly arranged with the third blade 531, and the fourth gear 522 is correspondingly arranged with the fourth blade 532. The third gear 521 meshes with the third drive gear 512 and the fourth gear 522 respectively, and the third blade 531 and the fourth blade 532 are spaced apart. Thus, when the third drive motor 511 drives the third drive gear 512 to rotate, the third gear 521 and the fourth gear 522 rotate synchronously with the third drive gear 512 under meshing action, thereby driving the third blade 531 and the fourth blade 532 to rotate synchronously, so as to change the angle of movement of the third blade 531 and the fourth blade 532, thereby changing the wind direction. In other embodiments, the third drive mechanism 51 can also be set as a motor and linkage structure, or a motor, gear and linkage structure, and the number of vertical blades 53 can also be set as needed to meet the corresponding requirements, which is not limited here.

[0049] Working Process: After using the bidet or feminine wash, when the user needs to dry their body, they simply need to turn on the drying function, and the intelligent drying device will start working. Specifically, the sensor 70 detects the temperature of the buttocks 100. When the temperature of the buttocks 100 is detected to be low, the detection result is sent to the circuit board 80. The circuit board 80 controls the fan 10 and the heating element 60 to start according to the received signal. At this time, the moving component 30 is stationary relative to the fan duct 20, so that warm air is blown evenly onto the buttocks 100. After the warm air dries for a certain period of time, the sensor 70 detects the buttocks 100 again. When the temperature of a certain part of the buttocks 100 is detected to be low, the circuit board 80 controls the first drive mechanism 32 to start, which drives the moving duct 31 to move to the optimal blowing position. At the same time, the circuit board 80 controls the second drive mechanism 41 and the third drive mechanism 51 to start, so that the horizontal blade 43 and the vertical blade 53 swing to the appropriate angle to ensure the optimal blowing angle.

[0050] For example, when the temperature in the left front of the human buttocks 100 is low, the first drive mechanism 32 drives the moving air duct 31 to move to the target position, and the third drive mechanism 51 drives the vertical blade 53 to rotate to the left by the target angle, so as to blow warm air to the left side, thereby ensuring the drying effect in the left front of the human buttocks 100. The drying process in other positions is the same as this process, and will not be described in detail here.

[0051] The specific structure of the toilet in this embodiment is described below.

[0052] like Figures 1-4 As shown, in this embodiment, the toilet includes the aforementioned intelligent drying device, a toilet base 200, a lid base 300, and a lid housing 400. Specifically, in this embodiment, the lid base 300 is disposed on the toilet base 200, the intelligent drying device is disposed within the lid base 300, and the lid housing 400 covers the intelligent drying device. The movable component 30 in the intelligent drying device can extend out of the lid housing 400 and is located below the buttocks 100 for drying. Further, a sensing probe 70 is fixed to the lid base 300 and can extend out of the lid housing 400, located below the buttocks 100, for temperature detection of the buttocks 100. In other embodiments, the sensing probe 70 can also be fixed to the lid housing 400; the specific position can be set as needed.

[0053] Exemplarily, a spray nozzle is provided on the cover housing 400, and the sensing probe 70 and the moving component 30 are respectively disposed on both sides of the spray nozzle. In this embodiment, the moving component 30 is located on the left side of the spray nozzle, and the sensing probe 70 is located on the right side of the spray nozzle. In other embodiments, the sensing probe 70 may be disposed on the right side of the spray nozzle or on the left side of the spray nozzle; this is not a limitation. Exemplarily, the first drive mechanism 32 in the moving component 30 is fixed to the cover base 300 to ensure the stable movement of the moving air duct 31. Correspondingly, the circuit board 80 is also fixed to the cover base 300 to ensure stable operation.

[0054] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating the present utility model, and are not intended to limit the implementation of the present utility model. Those skilled in the art can make other variations or modifications based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this utility model should be included within the protection scope of the claims of this utility model.

Claims

1. An intelligent drying device, characterized in that, include: A movable component (30) is fitted onto a fan duct (20) and is capable of moving relative to the fan duct (20) toward or away from the human buttocks (100); A blower assembly is movably disposed within the movable assembly (30); A sensing probe (70) is used to detect the temperature of the human buttocks (100).

2. The intelligent drying device according to claim 1, characterized in that, It also includes a circuit board (80), through which the sensing probe (70) detects the temperature of the human buttocks (100) and controls the movement of the moving component (30) and the activity of the blowing component.

3. The intelligent drying device according to claim 1, characterized in that, The moving component (30) includes a moving air duct (31) and a first driving mechanism (32). The moving air duct (31) is sleeved on the outside of the fan air duct (20), and the first driving mechanism (32) is used to drive the moving air duct (31) to move on the outside of the fan air duct (20).

4. The intelligent drying device according to claim 3, characterized in that, The first drive mechanism (32) includes a first drive gear (322), and a rack (311) is provided on the moving air duct (31). The first drive gear (322) meshes with the rack (311).

5. The intelligent drying device according to claim 1, characterized in that, The blowing assembly is provided in at least two sets. The blowing assembly includes a horizontal blowing assembly (40) and a vertical blowing assembly (50) arranged at intervals. The horizontal blowing assembly (40) includes a horizontal blade (43), and the vertical blowing assembly (50) includes a vertical blade (53). The horizontal blade (43) and the vertical blade (53) are arranged at an angle.

6. The intelligent drying device according to claim 5, characterized in that, The horizontal blowing assembly (40) further includes a second driving mechanism (41) and a horizontal driving gear (42) that mesh with each other. The second driving mechanism (41) is used to drive the horizontal driving gear (42) to rotate. The horizontal driving gear (42) is arranged in a one-to-one correspondence with the horizontal blade (43).

7. The intelligent drying device according to claim 5, characterized in that, The vertical blowing assembly (50) further includes a third driving mechanism (51) and a vertical driving gear (52) that mesh with each other. The third driving mechanism (51) is used to drive the vertical driving gear (52) to rotate. The vertical driving gear (52) is arranged in a one-to-one correspondence with the vertical blade (53).

8. The intelligent drying device according to claim 5, characterized in that, The vertical blade (53) is disposed between the end of the moving component (30) away from the fan duct (20) and the horizontal blade (43), or the horizontal blade (43) is disposed between the end of the moving component (30) away from the fan duct (20) and the vertical blade (53).

9. The intelligent drying device according to claim 1, characterized in that, It also includes a heating element (60), which is disposed in the fan duct (20); And / or, the sensing probe (70) is located outside the fan duct (20).

10. A toilet, characterized in that, Includes the intelligent drying device as described in any one of claims 1-9 and the cover plate base (300), wherein the intelligent drying device is disposed in the cover plate base (300).