A water tank dismounting structure of a water spray mop
By introducing a snap-fit and drive structure into the spray mop, the problems of cumbersome connection and easy damage between the kettle and the mop handle are solved, enabling convenient disassembly and assembly of the kettle and simple operation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- ZHEJIANG TOP CLEANING TECH CO LTD
- Filing Date
- 2022-08-22
- Publication Date
- 2026-05-19
AI Technical Summary
The existing water spray mop has a cumbersome and easily damaged connection between the water bottle and the mop handle, and is prone to water spillage or detachment.
The kettle is connected to the kettle base via a snap-fit structure and a drive structure, allowing for easy assembly and disassembly.
It enables convenient assembly and disassembly of the kettle and kettle base, is easy to operate, is not easily damaged, and avoids the trouble and overflow problems caused by the spiral structure.
Smart Images

Figure CN115245292B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to a detachable structure for a water bottle in a spray mop. Background Technology
[0002] Currently, there are many types of spray mops on the market. A spray mop includes a mop handle with a mop head at the bottom. The mop handle has a kettle-type spray structure for spraying water onto the cleaning target. The kettle-type spray structure includes a drive mechanism connected to the mop handle, a water pump, and a kettle. The water pump is driven by the drive mechanism to draw water into the kettle, thereby spraying water onto the cleaning target. The kettle is connected to a connecting seat on the mop handle via a spiral structure, and the water chamber of the kettle is connected to the water pump. However, the spiral connection between the kettle and the connecting seat is relatively cumbersome and prone to damage. For example, if the spiral connection is too tight, disassembly is difficult and the threads are easily damaged. If the spiral connection is too loose, the kettle is prone to overflowing and detachment. Summary of the Invention
[0003] One object of the present invention is to provide a water bottle disassembly and assembly structure for a water spray mop that solves the above-mentioned problems.
[0004] To achieve the above-mentioned objectives, the present invention is implemented through the following technical solution: a detachable water bottle structure for a spray mop, wherein the spray mop includes a mop handle, and a mop head with a wiping agent is provided at the lower end of the mop handle; the mop handle is provided with a water bottle-type spray structure, which is used to spray water onto the cleaning target, and the water bottle-type spray structure includes a water bottle; characterized in that: the water bottle is connected to the mop handle through a detachable structure, the detachable structure including a water bottle seat connected to the mop handle, the water bottle seat having a snap-fit structure, the water bottle being connected to the water bottle seat through the snap-fit structure; the water bottle seat also has a driving structure, the movement of the driving structure causing the snap-fit structure to disengage from the water bottle.
[0005] In this invention, the disassembly and assembly structure further includes a locking component, which is rotatably connected to the kettle base. The locking component includes a locking end and a driving end, which are respectively located on both sides of the connection point. The locking structure includes a locking end for locking the kettle, which engages with the kettle via a locking head and a locking slot, which are respectively located on the locking end and the kettle. The driving structure includes a driving end for driving the locking end to rotate and disengage from the kettle. The kettle base also includes a return spring, which imparts elastic force to the locking component, allowing it to return to its original position after movement. When the locking component is given elastic force, it partially contacts and limits contact with the kettle base, keeping the locking head in its initial latchable state. The above structure enables the kettle to be disassembled or assembled relative to the kettle base.
[0006] In this invention, the kettle and the locking end are each provided with a guide surface. During the locking process, the guide surface pushes the locking end to move, causing the locking end to tilt upwards. The kettle moves until the locking head aligns with the locking slot, after which the locking end resets and locks in place. The above structure can achieve the purpose of connecting the kettle and the kettle seat.
[0007] In this invention, the kettle base is equipped with a drive switch. The drive switch can move within the kettle base, and the kettle base restricts its movement to prevent it from disengaging. The movement of the drive switch within the kettle base causes the drive end to move, thereby causing the locking end to rotate and disengage from its initial locking state. The aforementioned drive switch achieves the purpose of driving the locking component to move.
[0008] In this invention, the locking component is connected to the kettle base via a rotatable structure. The rotatable structure includes a locking post and a locking groove B. The locking post is rotatably connected to the locking groove B, and the locking post and locking groove B are respectively located on the locking component and the kettle base. This structure achieves the purpose of rotatably connecting the locking component to the kettle base.
[0009] In this invention, the drive switch and the kettle base are connected by a snap-fit structure, which includes a hook and a slot. The hook engages with the slot and can move along the slot without disengaging. The hook and slot are respectively located on the drive switch and the kettle base, thus allowing the drive switch to move within the kettle base without disengaging. This structure achieves the purpose of allowing the drive switch to move within the kettle base without disengaging.
[0010] In this invention, the kettle holder includes a main body and a lock seat. The lock seat is detachably connected to the main body via a detachable structure, the locking element is rotatably connected to the lock seat via a rotatable structure, and the drive switch is connected to the lock seat via a snap-fit structure. This structure further optimizes the product.
[0011] In this invention, the reset spring is located between the locking piece and the drive switch. After the drive switch and the locking piece move, they are reset by the reset spring. Alternatively, the reset spring is located between the locking piece and the kettle base. After the locking piece moves, it is reset by the reset spring, and the drive switch is also reset along with the locking piece. The above structure achieves the purpose of resetting the locking piece and the drive switch after movement.
[0012] In this invention, the kettle base is provided with a mounting groove, and the kettle can be snapped into place with a snap-fit end through the guide of the mounting groove. After the kettle is snapped into place with the kettle base, it is partially hidden in the mounting groove. The above structure facilitates the installation of the kettle and optimizes the appearance of the product.
[0013] In this invention, a spring is provided between the kettle and the kettle base. The spring is installed on the kettle base or on the kettle itself. When the kettle disengages from the latch, the spring pushes the kettle outward. This structure further optimizes the product.
[0014] The advantages of this invention are as follows: the kettle is connected to the mop handle by a snap-fit mechanism, and the kettle can be disengaged from the snap-fit mechanism by the operation of the drive mechanism; the above-mentioned snap-fit mechanism is convenient and quick to operate, and has a simple structure that is not easily damaged. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the structure of the water-spraying mop of the present invention.
[0016] Figure 2 This is a detailed anatomical view of the kettle and its disassembly structure according to the present invention.
[0017] Figure 3 This is the present invention. Figure 2 Enlarged view of the exploded structure of AA in the middle.
[0018] Figure 4 This is a partial cross-sectional schematic diagram of the kettle and disassembly structure of the present invention.
[0019] Figure 5 This is the present invention. Figure 4 Enlarged view of the structure of indicator BB. Detailed Implementation
[0020] The present invention will be further described below with reference to the accompanying drawings and through embodiments. (Refer to...) Figures 1 to 5 As shown: This invention discloses a detachable water bottle structure for a spray mop. The spray mop includes a mop handle 1, with a mop head 2 containing a cleaning agent at the lower end of the handle. The mop handle is equipped with a water bottle-type spray structure for spraying water onto the cleaning target. The water bottle-type spray structure includes a water bottle 3. The key feature is that the water bottle is connected to the mop handle via a detachable structure. The detachable structure includes a water bottle seat 4 connected to the mop handle. The water bottle seat has a snap-fit structure, allowing the water bottle to be connected to the water bottle seat via the snap-fit structure. The water bottle seat also includes a driving structure, the movement of which causes the snap-fit structure to disengage from the water bottle. The kettle-type spray structure also includes a drive mechanism and a water pump connected to the mop handle. The water pump is driven by the drive mechanism to draw water into the kettle, thereby spraying water onto the cleaning target. The water chamber of the kettle is connected to the water pump. There are many existing structures for spray mops, such as patent number CN201120317654.9 A spray mop, CN201320313305.9 Leak-proof spray mop, and 201520661250.X Atomizing spray mop. This patent focuses on the innovation of its kettle disassembly and assembly structure, so the existing structure of spray mops will not be described in detail.
[0021] In this embodiment, the disassembly and assembly structure further includes a locking component 6, which is rotatably connected to the kettle base 4. The locking component includes a locking end 6-1 and a driving end 6-2, which are respectively located on both sides of the connection point 6-3. The locking structure includes a locking end for locking the kettle, which is engaged with the kettle via a locking head 7 and a locking groove 8, which are respectively located on the locking end and the kettle. The driving structure includes a driving end for driving the locking end to rotate and disengage from the kettle. The kettle base is also provided with a return spring 9, which imparts elasticity to the locking component, allowing it to return to its original position after movement. When the locking component is given elasticity, it partially contacts and limits contact with the kettle base, keeping the locking head end in its initial engaging state. The locking component is connected to the kettle base via a rotatable structure, which includes a locking post 12 and a locking groove B13. The locking post is rotatably connected to the locking groove B, which are respectively located on the locking component and the kettle base. The kettle and the snap-fit end are each provided with a guide surface 10. During the snap-fit process, the guide surface pushes the snap-fit end to move, causing it to tilt up. The kettle moves until the snap-fit head aligns with the snap-fit slot, after which the snap-fit end resets and snaps in place. The kettle base is provided with a drive switch 11. The drive switch can move within the kettle base, and the kettle base restricts its movement to prevent it from disengaging. The movement of the drive switch within the kettle base can cause the drive end to move, thereby causing the snap-fit end to rotate and disengage from its initial snap-fit state. The drive switch and the kettle base are connected by a snap-fit structure, which includes a hook 14 and a locking position 15. The hook engages with the locking position and can move along the locking position without disengaging. The hook and locking position are respectively located on the drive switch and the kettle base, so that the drive switch can move within the kettle base without disengaging. The hook and locking position structure can be multiple sets. The reset spring is located between the card and the drive switch. After the drive switch and the card move, they are reset by the reset spring. Alternatively, the reset spring is located between the card and the kettle seat. After the card moves, it is reset by the reset spring, and the drive switch is also reset as the card is reset.
[0022] In this embodiment, the kettle holder includes a main body 16 and a lock seat 17. The lock seat is connected to the main body via a detachable structure, the latch is connected to the lock seat via a rotatable structure, and the drive switch is connected to the lock seat via a snap-fit structure. There are many existing technologies for the detachable structure, such as screw connections or snap-fit connections, etc.
[0023] In one embodiment, the kettle seat is provided in the mounting groove 18, and the kettle can be snapped into the snap-fit end by the guide of the mounting groove. After the kettle is snapped into the kettle seat, it is partially hidden in the mounting groove.
[0024] In one embodiment, a spring is provided between the kettle and the kettle seat. The spring is installed on the kettle seat or on the kettle. When the kettle is disengaged, the spring pushes the kettle to bounce outward.
[0025] The kettle assembly and disassembly process in this embodiment is as follows: During kettle assembly, the kettle is pressed into the mounting slot of the kettle seat. The mounting slot guides the kettle to move towards the latch structure. The kettle moves against the latch by the guide surface, causing the latch head to be pushed up. When the latch head reaches the corresponding slot, it returns to its original position by spring force, thus locking the kettle into the kettle seat. During kettle disassembly, the drive switch is pressed to push the latch to move. While the drive end moves, the latch head is also pushed up, causing the latch head to exit the slot. The spring pushes the kettle outward.
[0026] Because the kettle described in this invention is connected to the mop handle by a snap-fit mechanism, and the kettle can be disengaged from the snap-fit mechanism by the operation of the drive mechanism; the above-mentioned snap-fit mechanism is convenient and quick to operate, and has a simple structure that is not easily damaged.
[0027] The above embodiments are merely examples of the present invention. Any substitutions or combinations between embodiments made in accordance with the spirit of the present invention should be understood as not departing from the protection scope of the present invention.
Claims
1. A detachable water bottle structure for a spray mop, the spray mop comprising a mop handle (1), the lower end of the mop handle being provided with a mop head (2) with a wiping agent; the mop handle being provided with a water bottle-type spray structure, the water bottle-type spray structure being used to spray water onto the cleaning target, the water bottle-type spray structure comprising a water bottle (3); characterized in that: The kettle is connected to the mop handle via a detachable structure, which includes a kettle seat (4) connected to the mop handle. The kettle seat has a snap-fit structure, allowing the kettle to be connected to the kettle seat via the snap-fit structure. The kettle seat also includes a drive structure; movement of the drive structure causes the snap-fit structure to disengage from the kettle. The detachable structure further includes a locking element (6), which is rotatably connected to the kettle seat (4). The locking element includes a snap-fit end (6-1) and a drive end (6-2), located at a connection point (6-). 3) Both sides; The snap-fit structure includes a snap-fit end, which is used to snap the kettle. The snap-fit end and the kettle are snapped together by a snap-fit head (7) and a snap-fit groove (8). The snap-fit head and the snap-fit groove are respectively located on the snap-fit end and the kettle; The driving structure includes a driving end, which is used to drive the snap-fit end to rotate and disengage from the snap-fit of the kettle; The kettle seat is also provided with a return spring (9). The return spring gives the snap-fit piece elastic force so that the snap-fit piece can be reset after it moves. After the snap-fit piece is given elastic force, its part abuts against the kettle seat and is limited, so that the snap-fit head end maintains the initial snap-fit state.
2. The kettle disassembly and assembly structure according to claim 1, characterized in that: The kettle and the snap-fit end are respectively provided with guide surfaces (10). During the snap-fit process, the guide surfaces push the snap-fit end to move so that the snap-fit end is raised. The kettle moves until the snap-fit head is aligned with the snap-fit slot and then the snap-fit end is reset and snap-fitted.
3. The kettle disassembly and assembly structure according to claim 1, characterized in that: The kettle base is provided with a drive switch (11). The drive switch can move in the kettle base, and the kettle base restricts its movement so that it does not disengage. The movement of the drive switch in the kettle base can cause the drive end to move, thereby causing the locking end to rotate and disengage from the initial locking state.
4. The kettle disassembly and assembly structure according to claim 1, characterized in that: The locking component is connected to the kettle seat via a rotatable structure. The rotatable structure includes a locking post (12) and a locking groove B (13). The locking post is rotatably connected to the locking groove B. The locking post and the locking groove B are respectively located on the locking component and the kettle seat.
5. The kettle disassembly and assembly structure according to claim 3, characterized in that: The drive switch and the kettle seat are connected by a snap-fit structure, which includes a snap hook (14) and a snap position (15). The snap hook is snapped into the snap position and can move along the snap position without disengaging. The snap hook and the snap position are respectively located in the drive switch and the kettle seat, so that the drive switch can move in the kettle seat without disengaging.
6. The kettle disassembly and assembly structure according to claim 4 or 5, characterized in that: The kettle stand includes a main body (16) and a lock seat (17), with the lock seat connected to the main body via a detachable structure.
7. The kettle disassembly and assembly structure according to claim 3, characterized in that: The reset spring is located between the card and the drive switch. After the drive switch and the card move, they are reset by the reset spring. Alternatively, the reset spring is located between the card and the kettle seat. After the card moves, it is reset by the reset spring, and the drive switch is also reset as the card is reset.
8. The kettle disassembly and assembly structure according to claim 1, characterized in that: The kettle seat is provided in the mounting groove (18), and the kettle can be snapped into the snap-fit end by the guide of the mounting groove. After the kettle is snapped into the kettle seat, it is partially hidden in the mounting groove.
9. The kettle disassembly and assembly structure according to claim 1, characterized in that: A spring is provided between the kettle and the kettle seat. The spring is installed on the kettle seat or on the kettle. When the kettle is disengaged, the spring pushes the kettle to bounce outward.