Upper cover rotating shaft assembly for intelligent closestool
By using the assistive structure of the smart toilet seat hinge assembly to detachably connect with the mounting housing, combined with the damper and motor structure, the problems of cumbersome operation and high cost of traditional smart toilet seats are solved, realizing convenient installation and stable use of automatic lid opening.
Patent Information
- Application Number
- CN202423306993.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2034-12-31
AI Technical Summary
Traditional smart toilet seats require manual operation to open or close, which is cumbersome, costly, and has a narrow range of applications. Furthermore, the motor structure increases production costs.
A lid hinge assembly for a smart toilet has been designed. It is detachably connected to the mounting housing via a booster structure and combined with a damper and motor structure to achieve automatic lid opening, simplifying the installation process and expanding its applicability.
It simplifies the installation process, improves installation efficiency and applicability, enhances the reliability and service life of the mounting housing, reduces noise and impact, and ensures the stability of the motor structure.
Smart Images

Figure CN223746269U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to intelligent closestool technical field especially for the upper cover pivot subassembly for intelligent closestool. BACKGROUND
[0002] The intelligent closestool has been well applied and popularized because of its intelligent use, cleaning and sanitation and convenient operation, whether public or household. In order to better realize the intelligence, the function of the intelligent closestool is gradually improved, and the share of the intelligent closestool in the market is also larger and larger. The opening or closing of the upper cover of the traditional intelligent closestool needs to be realized manually, in order to open or close the seat ring, people need to realize it through a series of actions such as bending over, which is troublesome and has poor comfort. In order to be convenient, people design an automatic flip closestool realized through a motor structure, compared with the upper cover of the traditional intelligent closestool in the prior art, the lower end of the upper cover needs to be re-molded for the motor structure, thereby increasing the production cost, and the application range of the upper cover structure is relatively narrow. SUMMARY
[0003] The upper cover pivot subassembly for the intelligent closestool is provided, the power assisting structure is detachably connected with the mounting shell, so that the power assisting structure can be fixedly connected with the mounting shell flexibly according to actual needs and installation conditions, the installation process is greatly simplified, the installation efficiency is improved, and the application range of the mounting shell installation is also improved.
[0004] In order to achieve the above object, the utility model provides the following technical scheme: the upper cover pivot subassembly for the intelligent closestool, the intelligent closestool includes a ceramic body, an upper cover arranged at the upper end of the ceramic body, a pivot subassembly arranged between the upper cover and the ceramic body, the pivot subassembly includes connecting parts arranged at both sides of the upper cover, a mounting shell arranged at the lower end of the upper cover, a power assisting structure arranged in the mounting shell, one side of the connecting part is inserted into the mounting shell and the power assisting structure, and the power assisting structure is detachably connected with the mounting shell.
[0005] Compared with the prior art, the utility model has the advantages that:
[0006] The power assisting structure is detachably connected with the mounting shell, so that the power assisting structure can be fixedly connected with the mounting shell flexibly according to actual needs and installation conditions, the installation process is greatly simplified, the installation efficiency is improved, and the application range of the mounting shell installation is also improved.
[0007] As an improvement, the front end and the rear end of the mounting shell are respectively provided with a plurality of mounting plates, the mounting plates are provided with mounting holes, the upper cover is provided with threaded holes corresponding to the mounting holes, and bolts are threadedly connected through the mounting holes and the threaded holes. The detachable design of the mounting shell makes it convenient to maintain, check and upgrade the inside when needed, thereby improving the reliability and service life of the intelligent closestool.
[0008] As an improvement, the power-assisted structure comprises a damping mounting seat, a damper, a rotating shaft arranged on one side of the damper, and an adapter, the damper is arranged in the interior of the damping mounting seat, one side of the rotating shaft is connected with the connecting part through the adapter, the rotating shaft and the adapter rotate synchronously, the damper serves as a core component, and provides smooth resistance when the rotating shaft rotates through the damping medium in the interior of the damper, so that the opening and closing speed of the upper cover is effectively slowed down, and impact and noise caused by rapid opening and closing are avoided.
[0009] As an improvement, the mounting shell is provided with a plurality of first mounting through holes at the end away from the upper cover, and one end of the damping mounting seat is fixedly connected with the mounting shell through the first mounting through holes, so that the damping structure can be flexibly installed and adjusted according to actual needs, and the convenience of installation is improved.
[0010] As an improvement, the plurality of first mounting through holes are arranged in parallel and dispersed at the end of the mounting shell away from the upper cover, and the damping mounting column is protrusively arranged at the end of the damping mounting seat corresponding to the first mounting through hole, and the lower end of the damping mounting column is abutted with the inner wall of the lower end of the mounting shell and pinned with the first mounting through hole, so that the damping mounting seat can be quickly positioned and fixed on the mounting shell during installation, and the installation steps are simplified and the installation efficiency is improved.
[0011] As an improvement, the connecting plates are arranged between the plurality of damping mounting columns and at the front end and the rear end of the damping mounting columns, and the upper end of the connecting plate is connected with the front end of the damping mounting seat, so that the connecting plates are arranged between the plurality of damping mounting columns and at the front end and the rear end, and the connecting plates play a role in transmitting and dispersing stress when the damping mounting column is pinned with the first mounting through hole, and such a layout helps to form a stable structure and can resist external impact and vibration.
[0012] As an improvement, the power-assisted structure further comprises a motor structure, the motor structure comprises a motor mounting seat, a motor, and a driving shaft, the motor is arranged in the interior of the motor mounting seat, and one side of the motor drives the connecting part to rotate through the driving shaft, so that the connecting part is driven to rotate through the motor driving the driving shaft, and the upper cover is driven to open.
[0013] As an improvement, the mounting shell is provided with a plurality of second mounting through holes at the side close to the connecting part, and one side of the motor mounting seat is fixedly connected with the mounting shell through the second mounting through holes, so that the motor mounting seat is fixedly connected with the mounting shell through the second mounting through holes, and such a connection mode is stable and reliable, and can ensure that the motor structure will not be loose or fall off during use.
[0014] As an improvement, several second mounting through holes are arranged on the side of the mounting shell close to the connecting part, and the motor mounting column is arranged on the side of the motor mounting seat corresponding to the second mounting through hole, and the side of the motor mounting column is abutted against the inner wall of the side of the mounting shell and is pinned with the second mounting through hole. Through the pinning of the motor mounting column and the second mounting through hole, a firm mechanical connection is established between the motor mounting seat and the mounting shell, which not only ensures the stability of the motor during the installation process, but also effectively prevents the damage to the connecting part caused by the vibration or impact force generated by the motor during operation.
[0015] As an improvement, the inner wall of the side of the mounting shell close to the motor mounting seat is provided with a limiting block, and the limiting block is arranged between the motor mounting columns and abuts against the side of the motor mounting seat. By arranging the limiting block between the motor mounting columns and abutting against the side of the motor mounting seat, the strength of the entire installation structure is actually enhanced. The limiting block not only provides additional support, but also prevents damage to the mounting shell or the motor mounting seat by dispersing stress. BRIEF DESCRIPTION OF DRAWINGS
[0016] The utility model will be explained further in detail below in combination with the drawings and specific embodiments:
[0017] Figure 1 It is an exploded view of the upper cover rotating shaft assembly structure for the intelligent closestool of the first embodiment;
[0018] Figure 2 It is an enlarged exploded view of the upper cover rotating shaft assembly structure for the intelligent closestool of the first embodiment;
[0019] Figure 3 It is an exploded view of the upper cover rotating shaft assembly structure for the intelligent closestool of the second embodiment;
[0020] Figure 4 It is an enlarged exploded view of the upper cover rotating shaft assembly structure for the intelligent closestool of the second embodiment;
[0021] Figure 5 It is a schematic view of the mounting shell structure.
[0022] The marks in the above drawings are respectively: 1, upper cover; 1.1, threaded hole; 2, rotating shaft assembly; 2.1, connecting part; 2.2, mounting shell; 2.2.1, mounting plate; 2.2.2, mounting hole; 2.2.3, first mounting through hole; 2.2.4, second mounting through hole; 2.2.5, limiting block; 2.3, power assisting structure; 2.3.1, damping mounting seat; 2.3.2, damper; 2.3.3, rotating shaft; 2.3.4, adapter; 2.3.5, damping mounting column; 2.3.6, connecting plate; 2.3.7, motor mounting seat; 2.3.8, motor; 2.3.9, driving shaft; 2.3.10, motor mounting column. DETAILED DESCRIPTION
[0023] In the utility model, it needs to be understood that the directions or position relations indicated by the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "plane direction", "circumferential direction" are the directions or position relations shown based on the drawings, which are only for the convenience of describing the utility model and simplifying the description, and are not indicative or suggestive of the devices or elements indicated must have a particular direction, be constructed and operated in a particular direction, and therefore cannot be understood as limiting the utility model.
[0024] Embodiment one
[0025] As shown in Figure 1 , Figure 2 , Figure 5 The upper cover rotating shaft assembly for the intelligent closestool, the intelligent closestool comprises a ceramic body, an upper cover 1 arranged at the upper end of the ceramic body, a rotating shaft assembly 2 arranged between the upper cover 1 and the ceramic body, the rotating shaft assembly 2 comprising connecting parts 2.1 arranged at both sides of the upper cover 1, a mounting shell 2.2 arranged at the lower end of the upper cover 1, a power assisting structure arranged inside the mounting shell 2.2, one side of the connecting part 2.1 penetrating through the mounting shell 2.2 and being plugged with the power assisting structure, and the power assisting structure being detachably connected with the mounting shell 2.2.
[0026] The front end and the rear end of the mounting shell 2.2 are respectively provided with a plurality of mounting plates 2.2.1, the mounting plate 2.2.1 is provided with a mounting hole 2.2.2, the upper cover 1 is provided with a threaded hole 1.1 corresponding to the mounting hole 2.2.2, and a bolt is threadedly connected through the mounting hole 2.2.2 and the threaded hole 1.1.
[0027] The power assisting structure 2.3 comprises a damping mounting seat 2.3.1, a damper 2.3.2, a rotating shaft 2.3.3 arranged at one side of the damper 2.3.2 and an adapter 2.3.4, the damper 2.3.2 is arranged inside the damping mounting seat 2.3.1, one side of the rotating shaft 2.3.3 is connected with the connecting part 2.1 through the adapter 2.3.4, and the rotating shaft 2.3.3 and the adapter 2.3.4 rotate synchronously.
[0028] One end of the mounting shell 2.2 away from the upper cover 1 is provided with a plurality of first mounting through holes 2.2.3, and one end of the damping mounting seat 2.3.1 is fixedly connected with the mounting shell 2.2 through the first mounting through hole 2.2.3.
[0029] A plurality of first mounting holes 2.2.3 are arranged in parallel and dispersed at one end of the mounting shell 2.2 away from the upper cover 1, and one end of the damping mounting seat 2.3.1 protrudes a damping mounting column 2.3.5 corresponding to the first mounting hole 2.2.3, and the lower end of the damping mounting column 2.3.5 is in abutment with the inner wall of the lower end of the mounting shell 2.2 and is pinned to the first mounting hole 2.2.3.
[0030] A plurality of damping mounting columns 2.3.5 are arranged between the front end and the rear end of the damping mounting column 2.3.5, and a connecting plate 2.3.6 is arranged at the front end and the rear end of the damping mounting column 2.3.5. The upper end of the connecting plate 2.3.6 is connected to the front end of the damping mounting seat 2.3.1.
[0031] The damper 2.3.2 is arranged in the interior of the damping mounting seat 2.3.1, and the rotating shaft 2.3.3 is arranged at one side of the damper 2.3.2. The lower end of the damping mounting column 2.3.5 is in abutment with the inner wall of the lower end of the mounting shell 2.2 and is pinned to the first mounting hole 2.2.3. The bolt passes through the mounting hole 2.2.2 and is threadedly connected to the threaded hole 1.1, so that the mounting shell 2.2 and the upper cover 1 are fixedly connected. One side of the connecting portion 2.1 passes through the mounting shell 2.2, so that one side of the rotating shaft 2.3.3 is connected to the connecting portion 2.1 through the adapter 2.3.4. The rotating shaft 2.3.3 and the adapter 2.3.4 rotate synchronously, so as to provide a smooth resistance when the rotating shaft 2.3.3 rotates, effectively reducing the opening and closing speed of the upper cover 1, and avoiding the impact and noise caused by rapid opening and closing.
[0032] Embodiment Two
[0033] As shown in Figure 3 , Figure 4 , Figure 5 , the upper cover rotating shaft assembly for the intelligent toilet, the intelligent toilet comprising a ceramic body, an upper cover 1 arranged at the upper end of the ceramic body, a rotating shaft assembly 2 arranged between the upper cover 1 and the ceramic body, the rotating shaft assembly 2 comprising a connecting portion 2.1 arranged at both sides of the upper cover 1, a mounting shell 2.2 arranged at the lower end of the upper cover 1, and a power assisting structure arranged in the interior of the mounting shell 2.2. One side of the connecting portion 2.1 passes through the mounting shell 2.2 and is inserted into the power assisting structure, and the power assisting structure is detachably connected to the mounting shell 2.2.
[0034] The front end and the rear end of the mounting shell 2.2 are respectively provided with a plurality of mounting plates 2.2.1, and the mounting plate 2.2.1 is provided with a mounting hole 2.2.2. The upper cover 1 is provided with a threaded hole 1.1 corresponding to the mounting hole 2.2.2, and the bolt passes through the mounting hole 2.2.2 and is threadedly connected to the threaded hole 1.1.
[0035] The power assisting structure 2.3 further comprises a motor mounting base 2.3.7, a motor 2.3.8, and a driving shaft 2.3.9, the motor 2.3.8 is arranged in the motor mounting base 2.3.7, and one side of the motor 2.3.8 is connected with the rotating part 2.1 through the driving shaft 2.3.9.
[0036] The mounting shell 2.2 is provided with a plurality of second mounting through holes 2.2.4 on the side close to the connecting part 2.1, and one side of the motor mounting base 2.3.7 is fixedly connected with the mounting shell 2.2 through the second mounting through holes 2.2.4.
[0037] The plurality of second mounting through holes 2.2.4 are arranged on the side of the mounting shell 2.2 close to the connecting part 2.1, one side of the motor mounting base 2.3.7 is provided with motor mounting columns 2.3.10 corresponding to the second mounting through holes 2.2.4, and one side of the motor mounting columns 2.3.10 is abutted with the inner wall of one side of the mounting shell 2.2 and is pinned with the second mounting through holes 2.2.4.
[0038] The inner wall of the side of the mounting shell 2.2 close to the motor mounting base 2.3.7 is provided with a limiting block 2.2.5, the limiting block 2.2.5 is arranged between the motor mounting columns 2.3.10 and is abutted with one side of the motor mounting base 2.3.7.
[0039] The motor 2.3.8 is arranged in the motor mounting base 2.3.7, the motor mounting base 2.3.7 is arranged in the mounting shell 2.2, the limiting block 2.2.5 is abutted with one side of the motor mounting base 2.3.7, one side of the motor mounting columns 2.3.10 is abutted with the inner wall of one side of the mounting shell 2.2 and is pinned with the second mounting through holes 2.2.4, one side of the connecting part 2.1 passes through the mounting shell 2.2, one side of the motor 2.3.8 drives the connecting part 2.1 to rotate through the driving shaft 2.3.9, and thus the upper cover 1 is opened.
[0040] The utility model is described exemplarily above by combining with the drawings, obviously, the utility model is not limited by the above mode in the specific implementation, and various non-essential improvements adopting the technical scheme of the utility model or direct application of the conception and technical scheme of the utility model to other occasions without improvement are all within the protection scope of the utility model.
Claims
1. A cover hinge assembly for a smart toilet, the smart toilet comprising a ceramic body, a cover (1) arranged on an upper end of the ceramic body, the hinge assembly (2) being arranged between the cover (1) and the ceramic body, characterized in that: The rotating shaft assembly (2) comprises connecting parts (2.1) arranged on both sides of the upper cover (1), a mounting shell (2.2) arranged at the lower end of the upper cover (1), and a power assisting structure (2.3) arranged in the mounting shell (2.2), one side of the connecting part (2.1) penetrating through the mounting shell (2.2) and being inserted with the power assisting structure (2.3), and the power assisting structure being detachably connected with the mounting shell (2.2).
2. The upper cover rotating shaft assembly for a smart toilet according to claim 1, characterized in that: The front end and the rear end of the mounting shell (2.2) are respectively provided with a plurality of mounting plates (2.2.1), the mounting plate (2.2.1) is provided with a mounting hole (2.2.2), the upper cover (1) is provided with a threaded hole (1.1) corresponding to the mounting hole (2.2.2), and a bolt is threadedly connected through the mounting hole (2.2.2) and the threaded hole (1.1).
3. The upper cover rotating shaft assembly for a smart toilet according to claim 1, characterized in that: The power assisting structure (2.3) comprises a damping mounting seat (2.3.1), a damper (2.3.2), a rotating shaft (2.3.3) arranged on one side of the damper (2.3.2), and an adapter (2.3.4), the damper (2.3.2) is arranged in the damping mounting seat (2.3.1), one side of the rotating shaft (2.3.3) is connected with the connecting part (2.1) through the adapter (2.3.4), and the rotating shaft (2.3.3) and the adapter (2.3.4) rotate synchronously.
4. The upper cover rotating shaft assembly for a smart toilet according to claim 3, characterized in that: The end of the mounting shell (2.2) away from the upper cover (1) is provided with a plurality of first mounting through holes (2.2.3), and one end of the damping mounting seat (2.3.1) is fixedly connected with the mounting shell (2.2) through the first mounting through hole (2.2.3).
5. The upper cover rotating shaft assembly for a smart toilet according to claim 4, characterized in that: A plurality of first mounting through holes (2.2.3) are arranged in parallel and dispersed at the end of the mounting shell (2.2) away from the upper cover (1), one end of the damping mounting seat (2.3.1) is provided with a damping mounting column (2.3.5) protruding corresponding to the first mounting through hole (2.2.3), and the lower end of the damping mounting column (2.3.5) is abutted with the inner wall of the lower end of the mounting shell (2.2) and is pinned with the first mounting through hole (2.2.3).
6. The upper cover rotating shaft assembly for a smart toilet according to claim 5, characterized in that: A connecting plate (2.3.6) is arranged between a plurality of damping mounting columns (2.3.5), at the front end and the rear end of the damping mounting column (2.3.5), the upper end of the connecting plate (2.3.6) is connected with the front end of the damping mounting seat (2.3.1).
7. The upper cover rotating shaft assembly for a smart toilet according to claim 1, characterized in that: The power assisting structure (2.3) further comprises a motor mounting seat (2.3.7), a motor (2.3.8), and a driving shaft (2.3.9), the motor (2.3.8) is arranged in the motor mounting seat (2.3.7), and one side of the motor (2.3.8) drives the connecting part (2.1) to rotate through the driving shaft (2.3.9).
8. The upper cover rotating shaft assembly for a smart toilet according to claim 7, characterized in that: The side of the mounting shell (2.2) close to the connecting part (2.1) is provided with a plurality of second mounting through holes (2.2.4), and one side of the motor mounting seat (2.3.7) is fixedly connected with the mounting shell (2.2) through the second mounting through hole (2.2.4).
9. The upper cover rotating shaft assembly for a smart toilet according to claim 8, characterized in that: Second installation holes (2.2.4) are arranged on one side of the mounting shell (2.2) close to the connecting part (2.1), and motor installation columns (2.3.10) are arranged on one side of the motor installation base (2.3.7) corresponding to the second installation holes (2.2.4), and one side of the motor installation column (2.3.10) is in abutment with the inner wall of one side of the mounting shell (2.2) and is pinned with the second installation hole (2.2.4).
10. The upper cover rotating shaft assembly for a smart toilet according to claim 7, characterized in that: A limiting block (2.2.5) is arranged on the inner wall of one side of the mounting shell (2.2) close to the motor installation base (2.3.7), and the limiting block (2.2.5) is arranged between the motor installation columns (2.3.10) and is in abutment with one side of the motor installation base (2.3.7).