CN217105365U - Dewatering device and basin - Google Patents

Dewatering device and basin Download PDF

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Publication number
CN217105365U
CN217105365U CN202220682476.8U CN202220682476U CN217105365U CN 217105365 U CN217105365 U CN 217105365U CN 202220682476 U CN202220682476 U CN 202220682476U CN 217105365 U CN217105365 U CN 217105365U
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plug
hook
connecting rod
state
assembly
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CN202220682476.8U
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Chinese (zh)
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郭军学
阮国林
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Jiangmen Lizhu American Standard Sanitary Ware Hardware Manufacturing Co ltd
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Jiangmen Lizhu American Standard Sanitary Ware Hardware Manufacturing Co ltd
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Abstract

An embodiment of the present disclosure provides a dehydrator and a basin, the dehydrator including: end cap subassembly and lifting assembly, the end cap subassembly includes: the first end of the plug body is provided with a plug and is suitable for moving up and down under the pulling or pressing of the pulling assembly, so that the plug is driven to plug or open a water outlet of the water container; the plug is provided with a first state and a second state, and in the first state, the plug is limited by the pulling assembly and can move up and down within a certain range under the driving of the pulling assembly; when the plug is in the second state, the plug can be pulled out by being separated from the limit of the pulling assembly. By adopting the dehydrator, the plug assembly is convenient to disassemble and clean, and the use is convenient.

Description

Dewatering device and basin
Technical Field
The embodiment of the disclosure relates to the technical field of water removers, in particular to a water remover and a wash basin.
Background
The drainer is generally used in the positions of a water pool, a wash basin, a bathtub and the like, is used as a device for overflowing and draining water, and is an important part in kitchen and bathroom products.
The water remover is often blocked due to hair winding or sundries accumulation, and the plug of the lifting type water remover used for the counter basin on the market at present needs to be disassembled and assembled under the counter basin when being cleaned, so that the cleaning is very inconvenient.
SUMMERY OF THE UTILITY MODEL
In order to solve the inconvenient problem of dismouting and clearance, the embodiment of this disclosure provides a dehydrator, the dehydrator includes: the first end of the plug body is provided with a plug and is suitable for moving up and down under the pulling or pressing of the pulling assembly, so that the plug is driven to plug or open a water outlet of the water container; the plug is provided with a first state and a second state, and in the first state, the plug is limited by the pulling assembly and can move up and down within a certain range under the driving of the pulling assembly; when the plug is in the second state, the plug can be pulled out by being separated from the limit of the pulling assembly.
In some embodiments, the second end of the plug body is provided with a limiting mechanism, and the lifting assembly comprises a connecting rod; when the plug is in a first state, the first end of the connecting rod is limited by the limiting mechanism and can drive the plug assembly to move up and down within a certain range; when the plug is in the second state, the first end of the connecting rod can be separated from the limit of the limiting mechanism, and the plug assembly can be pulled out.
In some embodiments, the certain range is a distance suitable for drainage of the drain opening.
In some embodiments, the limiting mechanism is in a hook shape and includes a first hook, a first end of the first hook is connected to the bottom of the second end of the plug body, a second end of the first hook is a free end, and a first gap is formed between the second end of the first hook and the bottom of the second end of the plug body, and the first gap at least allows the connecting rod to pass through.
In some embodiments, the first hook further comprises a hook slot, the first end of the connecting rod is located in the hook slot when the choke plug is in the first state, and the first end of the connecting rod is disengaged from the hook slot when the choke plug is in the second state.
In some embodiments, a second hook, a first end of which is connected to the bottom of the second end of the plug body, a second end of which is a free end, and a second gap is formed between the second end of the second hook and the bottom of the second end of the plug body, and the second gap at least allows the connecting rod to pass through; the first hook and the second hook are oppositely arranged at the second end of the plug body in a clearance mode, and the clearance between the first hook and the second hook at least enables the connecting rod to pass through.
In some embodiments, the first hook and the second hook each include a hook slot, and the first end of the connecting rod is positioned within the hook slots of the first hook and the second hook when the bulkhead is in the first state; when the plug is in the second state, the first end of the connecting rod is separated from the hook grooves of the first hook and the second hook.
In some embodiments, the second end of the first hook includes an end surface including a first inclined surface inclined downward toward an inner side of the restricting mechanism, the first inclined surface adapted to guide the connecting rod to disengage from the hook groove of the first hook; or the second end of the second hook includes an end surface including a second slope surface inclined downward toward the inside of the restricting mechanism, the second slope surface being adapted to guide the connecting rod to escape from the hook groove of the second hook.
In some embodiments, the transition of the plug from the first state to the second state is: the plug rotates anticlockwise or clockwise.
In some embodiments, the angle of rotation of the plug in the counter-clockwise direction or the clockwise direction is 90 degrees.
In some embodiments, the pulling assembly further comprises: and the lifting rod is suitable for being connected with the second end of the connecting rod, and a positioning hole is formed in the lifting rod and is suitable for adjusting the position of the connecting rod.
In some embodiments, the dehydrator further comprises a dehydrator main body adapted to accommodate the plug assembly, wherein a three-way interface is arranged on the dehydrator main body; the lifting assembly further comprises: and the connecting ring is suitable for being connected with the three-way interface, and a through hole is formed in the connecting ring and is suitable for the first end of the connecting rod to penetrate through.
In some embodiments, the pulling assembly further comprises: a steering adjustment ball having a passageway therethrough adapted for the first end of the connecting rod to pass through the passageway.
Embodiments of the present disclosure also provide a basin comprising a water trap as described in any of the preceding claims.
Compared with the prior art, the technical scheme of the embodiment of the disclosure has the following beneficial effects:
the plug assembly of embodiments of the present disclosure includes a restraining mechanism, the plug having a first state and a second state. When the plug is in a first state, the first end of the connecting rod is limited by the limiting mechanism and can drive the plug assembly to move up and down within a certain range; when the plug is in the second state, the first end of the connecting rod can be separated from the limit of the limiting mechanism, and the plug assembly can be pulled out. Therefore, the water remover provided by the embodiment of the disclosure has the advantage that the plug assembly is convenient to disassemble and clean in use.
The plug according to the embodiment of the disclosure can be changed from the first state to the second state by rotating the plug 90 degrees in the counterclockwise direction or the clockwise direction, in the rotating process, the first end of the connecting rod passes through the first gap and the second gap from the first hook and the second hook of the limiting mechanism, and is separated from the limiting mechanism through the guidance of the first inclined surface or the second inclined surface, and the plug can be pulled out in the second state, so that the operation is simple and convenient.
The washbasin provided by the embodiment of the disclosure is provided with the water remover comprising the plug assembly provided with the limiting mechanism, the plug is provided with a first state and a second state, and when the plug is in the second state, the plug assembly can be pulled out of the water remover main body, so that the washbasin is convenient to disassemble and is easier to clean.
Drawings
Other features and advantages of the present disclosure will be better understood by the following detailed description of alternative embodiments, taken in conjunction with the accompanying drawings, in which like characters represent the same or similar parts, and in which:
fig. 1 shows an exploded structural schematic of a water trap according to an embodiment of the present disclosure;
FIG. 2 illustrates a schematic structural view of a restriction mechanism of a water trap in accordance with an embodiment of the present disclosure;
FIG. 3 illustrates a schematic view of a plug assembly and a pulling assembly with the plug in a first state according to an embodiment of the present disclosure;
FIG. 4 illustrates a schematic view of the plug assembly and pulling assembly with the plug in the second state according to an embodiment of the present disclosure;
FIG. 5 illustrates a partially enlarged structural schematic view of a first end of a connecting rod of a water trap in accordance with an embodiment of the present disclosure;
FIG. 6 shows a schematic cross-sectional structural view of a basin according to an embodiment of the present disclosure.
Detailed Description
Reference will now be made in detail to embodiments of the present disclosure, examples of which are illustrated in the accompanying drawings. In the drawings, the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the drawings are exemplary only for the purpose of illustrating the present disclosure and should not be construed as limiting the same.
Unless defined otherwise, technical or scientific terms used herein shall have the ordinary meaning as understood by one of ordinary skill in the art to which this disclosure belongs. In the description of the present disclosure, it is to be understood that the terms "central," "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," and the like are used in the orientation or positional relationship indicated in the drawings for convenience in describing the present disclosure and simplicity in description, and do not indicate or imply that the referenced devices or elements must have a particular orientation, be constructed and operated in a particular orientation, and thus are not to be considered as limiting the present disclosure.
In order to solve the problems that an existing dewatering device is inconvenient to disassemble and assemble and is not easy to clean, an embodiment of the present disclosure provides a dewatering device, and the following describes the embodiment of the present disclosure in detail with reference to the attached drawings.
Fig. 1 shows an exploded structural schematic of a water trap according to an embodiment of the present disclosure. Referring to fig. 1, an embodiment of the present disclosure provides a water trap including: a plug component 1 and a lifting component 4. The plug assembly 1 comprises: the plug comprises a plug body 12, wherein a plug 11 is arranged at a first end of the plug body 12, and the plug 11 and the plug body 12 can be integrally connected; the plug 11 has a first state and a second state, and in the first state, the plug 11 is limited by the pulling assembly 4 and can move up and down within a certain range under the driving of the pulling assembly 4; when the plug 11 is in the second state, the plug 11 can be separated from the limit of the lifting assembly 4 and can be lifted out for cleaning.
Referring to fig. 1, the second end of the plug body 12 is provided with a limiting mechanism 13. The pulling assembly 4 comprises a connecting rod 41. The limiting mechanism 13 and the first end of the connecting rod 41 can cooperate with each other so as to: when the plug 11 is in the first state, the first end of the connecting rod 41 is limited by the limiting mechanism 13 and can drive the plug assembly 1 to move up and down within a certain range; when the plug 11 is in the second state, the first end of the connecting rod 41 can be disengaged from the limit of the limiting mechanism 13, and the plug assembly 1 can be pulled out.
In some embodiments, the connecting rod 41 drives the plug assembly 1 to move up and down within a distance range suitable for the water outlet of the water container to drain water.
Fig. 2 shows a schematic structural view of a restriction mechanism 13 of a water trap according to an embodiment of the present disclosure. Referring to fig. 2, the limiting mechanism 13 is in a hook shape, and includes a first hook 131, a first end of the first hook 131 is connected to a second end of the plug body 12, a second end a of the first hook 131 is a free end, and the second end a includes an end surface including a first inclined surface D inclined downward toward an inner side of the limiting mechanism 13. A first gap 1311 is formed between the second end a of the first hook 131 and the bottom of the second end of the plug body 12, and the first gap 1311 at least allows the connecting rod 41 to pass through.
Referring to fig. 2, the first hook 131 further includes a hook groove 1312, when the plug 11 is in the first state, the hook groove 1312 accommodates the first end of the connecting rod 41 therein, and when the pulling assembly 4 is pulled or pressed, the connecting rod 41 drives the plug assembly 1 to move up and down within a certain range by contacting with the hook groove 1312 or the bottom of the second end of the plug body 12; when plug 11 enters the second state from the first state, the first end of connecting rod 41 is guided by first inclined surface D of second end a of first hook 131 to escape from hook groove 1312 through first gap 1311, so that plug assembly 1 can be pulled out.
In some embodiments, the hook groove 1312 may be U-shaped, semi-circular, arcuate, etc. The curved shape is preferred so that the first end of the connecting rod 41 has less friction with the hook groove 1312 and is more easily separated from the hook groove 1312 when the plug 11 is moved from the first state to the second state.
In some embodiments, the restriction mechanism 13 further comprises: a second hook 132, a first end of the second hook 132 is connected to the second end of the plug body 12, a second end B of the second hook 132 is a free end, the second end B includes an end surface, and the end surface includes a second inclined surface E inclined downward toward the inner side of the limiting mechanism 13. A second gap 1321 is formed between the second end B of the second hook 132 and the bottom of the second end of the plug body 12, and the second gap 1321 at least allows the connecting rod 41 to pass through.
In some embodiments, first and second hooks 131, 132 are oppositely disposed at the second end of plug body 12 with a clearance C. The first hook 131 and the second hook 132 are disposed side by side and at the same height, so that the connection rod 41 passes through the first hook 131 and the second hook 132 at the same time. When the plug 11 is transformed from the first state to the second state, the gap C between the first hook 131 and the second hook 132 allows at least the connection rod 41 to pass through.
In some embodiments, the first hook 131 includes a hook slot 1312, and the second hook 132 includes a hook slot 1322, and the first end of the connecting rod 41 is located within the hook slots (1312, 1322) of the first and second hooks 131, 132 when the bulkhead 11 is in the first state; when the plug 11 is in the second state from the first state, the first end of the connecting rod 41 passes through the first gap 1311 and the second gap 1321 at the same time, thereby being separated from the hook grooves (1321,1322) of the first and second hooks 131 and 132 under the guidance of the first and second slopes D and E at the same time, or separated from the hook grooves (1321,1322) of the first and second hooks 131 and 132 under the guidance of the first slope D or the second slope E alone.
Fig. 3 shows a schematic structural view of the plug assembly 1 and the lifting assembly 4 when the plug is in the first state according to the embodiment of the disclosure. Referring to fig. 3, the first end of the connecting bar 41 is located in the hook groove 1312 of the first hook 131 and the hook groove 1322 (not shown) of the second hook 132 (not shown). The distance from the bottom of hook groove 1312 to the bottom of the second end of plug body 12 is greater than 2 times the size of the first end of connecting rod 41; the distance from the bottom of hook slot 1322 to the bottom of the second end of plug body 12 is greater than 2 times the size of the first end of connecting rod 41.
Fig. 4 shows a schematic structural view of the plug assembly 1 and the lifting assembly 4 when the plug is in the second state according to the embodiment of the disclosure. Referring to fig. 4, when plug 11 is transformed from the first state to the second state, limiting mechanism 13 and connecting rod 41 are relatively moved, connecting rod 41 is moved from the state of being located in hook groove 1312 of first hook 131 and hook groove 1322 of second hook 132, passes through first gap 1311 and second gap 1322, and is moved to gap C between first hook 131 and second hook 132, at which time connecting rod 41 and limiting mechanism 13 are relatively separated, so that plug assembly 1 can be pulled out.
In some embodiments, the transition of the plug 11 from the first state to the second state is: the plug 11 rotates counterclockwise or clockwise.
In some embodiments, the rotation angle of the plug 11 in the counterclockwise direction or the clockwise direction is 90 degrees.
Referring to FIG. 4, the pull assembly 4 further includes: the lifting rod 44 and the angle piece 45, wherein the lifting rod 44 is provided with a positioning hole 441 which is suitable for the second end of the connecting rod 41 to pass through; the angle-bending piece 45 is an angle-bending part and comprises two angle edges, and the two angle edges are respectively provided with a fixing hole and suitable for the connecting rod 41 to pass through simultaneously; the second end of the connecting rod 41 is coupled to the lifting rod 44 by passing the second end of the connecting rod 41 through the positioning hole 441 and the fixing hole of the angle piece 45.
In some embodiments, the lifting rod 44 is provided with a plurality of positioning holes 441, so that the second end of the connecting rod 41 is connected in the positioning hole 441 at a proper position during installation according to the actual use situation, such as the depth of the basin.
In some embodiments, one end of the lifting rod 44 of the lifting assembly 4 is provided with a transmission assembly 442, said transmission assembly 442 being provided with two opposite apertures 4421 adapted to be inserted by a pressing member; the transmission assembly 442 further comprises a fixing member 4422 adapted to fix the pressing member after it is inserted into the opening 4421.
Fig. 5 shows a partially enlarged structural schematic view of a first end of a connecting rod 41 of a water trap according to an embodiment of the present disclosure. Referring to fig. 1 and 5, the dehydrator also includes a main dehydrator body 3 adapted to accommodate the plug assembly 1, the main dehydrator body 3 is a hollow tubular structure, and the main dehydrator body 3 is provided with a three-way connector 31. The pull assembly 4 further comprises: and the connecting ring 42 is suitable for being connected with the three-way connector 31 of the dehydrator main body 3, a through hole is formed in the connecting ring 42, and the first end of the connecting rod 41 is suitable for penetrating through the connecting ring 42 to enter the three-way connector 31 to be matched with the limiting mechanism 13 for working.
Referring to fig. 1 and 5, the pull assembly 4 further comprises: a steering adjustment ball 43, said steering adjustment ball 43 being provided with a passage through its sphere adapted to be passed through by a first end of said connecting rod 41. When the water remover is installed, the first end of the connecting rod 41 passes through the passage of the steering adjusting ball 43, the steering adjusting ball 43 is arranged in the connecting ring 42, the connecting ring 42 is fixedly connected with the three-way connector 31, and the first end of the connecting rod 41 enters the first hook 131 and the second hook 132 of the limiting mechanism 13. The steering adjustment ball 43 serves to cushion and adjust the steering upon the up and down movement of the first end of the connecting rod 41 when the lift rod 44 of the lift assembly 4 is pressed or pulled.
Referring to fig. 1, the water remover further comprises a sealing assembly 2 adapted to seal the junction of the bulkhead assembly 1 and the water remover body 3 when the bulkhead assembly is installed in the water remover body, said sealing assembly 2 comprising: the plug body 12 and the limiting mechanism 13 sequentially penetrate through the water remover flange 21, the sealing gasket 22, the conical sealing ring 23, the plastic gasket 24 and the locking nut 25 to enter the water remover main body 3, and the locking nut 25 is in threaded connection with an interface at one end of the water remover main body 3.
Embodiments of the present disclosure also provide a basin comprising a water trap as defined in any one of the preceding claims. FIG. 6 shows a schematic cross-sectional structural view of a basin according to an embodiment of the present disclosure. Referring to fig. 6, the basin 5 includes a basin surface 51, the lowest portion of the basin surface 51 has a water outlet 52, the basin surface is communicated with a water outlet pipe 53, the plug assembly 11 is installed in the dehydrator main body 3, the dehydrator main body 3 is located in the water outlet pipe 53, and the size of the plug 11 corresponds to the size of the water outlet 52, so that the basin 5 stores water when the plug 11 blocks the water outlet 52. The plug body 12 and the limiting mechanism 13 are positioned in the dehydrator body 3. The specific structures of the plug assembly 11, the plug body 12, the limiting mechanism 13 and the water remover main body 3 are as described above.
Referring to fig. 6, a three-way connector 31 is arranged on the water remover main body 3, the three-way connector 31 and a connecting ring 42 of a lifting assembly 4 of the water remover are connected and fixed with each other, one end of a connecting rod 41 of the lifting assembly 4 passes through the connecting ring 42 and enters the limiting mechanism 13 located in the water remover main body 3, the connection mode and the relative position of one end of the connecting rod 41 and the limiting mechanism 13 are referred to above, and the connection mode of the other end of the connecting rod 41 and the lifting rod 44 is referred to above, which is not described again.
Referring to FIG. 6, the pull assembly 4 further includes: and the pressing piece 46, wherein the pressing piece 46 penetrates through the opening 4422 formed on the transmission assembly 442, and the pressing rod 46 and the connecting rod 41 are fixed to each other by the fixing piece 4422. One end of the pressing member 46 is provided with a pressing handle 461, and the pressing handle 46 is arranged above the highest platform of the basin 5, so that the pressing handle 46 can be lifted or pressed on the basin for easier operation.
When the plug 11 is in the first state, the pulling rod 44 is driven to move upward by pulling the pressing handle 461, the second end of the connecting rod 41 moves upward, the first end of the connecting rod 41 moves downward, and thus the limiting mechanism 13 is driven to move downward, and the plug 11 plugs the water outlet 52, so as to store water.
When the plug 11 is in the first state, the lifting rod 44 is driven to move downwards by pressing the pressing handle 461, the second end of the connecting rod 41 moves downwards, the first end of the connecting rod 41 moves upwards, and the limiting mechanism 13 is driven to move upwards, the plug 11 is not in contact with the drain opening 52, and the drain opening 52 is not obstructed, so that water can be drained conveniently.
With continued reference to figure 6, by rotating the plug 11 through an angle, the plug 11 is transformed from the first condition to the second condition, the relative disengagement of the restraining means 13 and the connecting rod 41 being such that the plug assembly can be pulled out of the water trap body 3.
In some embodiments, plug 11 is rotated 90 degrees counterclockwise.
In some embodiments, plug 11 is rotated 90 degrees clockwise.
The foregoing is considered as illustrative of exemplary embodiments, which have been used to illustrate the principles of the disclosure, and not to limit the scope of the disclosure. It will be apparent to those skilled in the art that various changes and modifications can be made therein without departing from the spirit and scope of the disclosure, and these changes and modifications are also within the scope of the disclosure.

Claims (14)

1. A water trap comprising: end cap subassembly and lift and draw the subassembly, the end cap subassembly includes:
the first end of the plug body is provided with a plug and is suitable for moving up and down under the pulling or pressing of the pulling assembly, so that the plug is driven to plug or open a water outlet of the water container;
it is characterized in that the preparation method is characterized in that,
the plug is provided with a first state and a second state, and in the first state, the plug is limited by the pulling assembly and can move up and down within a certain range under the driving of the pulling assembly;
when the plug is in the second state, the plug can be pulled out by being separated from the limit of the pulling assembly.
2. The dehydrator according to claim 1, wherein the second end of the plug body is provided with a limiting mechanism, and the lifting assembly comprises a connecting rod;
when the plug is in a first state, the first end of the connecting rod is limited by the limiting mechanism and can drive the plug assembly to move up and down within a certain range;
when the plug is in the second state, the first end of the connecting rod can be separated from the limit of the limiting mechanism, and the plug assembly can be pulled out.
3. A water trap according to claim 2, wherein the range is a distance suitable for drainage of a drain opening.
4. A water trap according to claim 2,
the limiting mechanism is in a hook shape and comprises a first hook, the first end of the first hook is connected with the bottom of the second end of the plug body, the second end of the first hook is a free end, a first gap is formed between the second end of the first hook and the bottom of the second end of the plug body, and the first gap at least can allow the connecting rod to pass through.
5. A water trap according to claim 4,
the first hook further comprises a hook groove, when the plug is in the first state, the first end of the connecting rod is located in the hook groove, and when the plug is in the second state, the first end of the connecting rod is separated from the hook groove.
6. A dehydrator according to claim 4, wherein the limiting mechanism further comprises:
a first end of the second hook is connected with the bottom of the second end of the plug body, the second end of the second hook is a free end, a second gap is formed between the second end of the second hook and the bottom of the second end of the plug body, and the second gap at least allows the connecting rod to pass through;
the first hook and the second hook are oppositely arranged at the second end of the plug body in a clearance mode, and the clearance between the first hook and the second hook at least enables the connecting rod to pass through.
7. A water trap according to claim 6,
the first hook and the second hook respectively comprise a hook groove, and when the plug is in the first state, the first end of the connecting rod is positioned in the hook grooves of the first hook and the second hook;
when the plug is in the second state, the first end of the connecting rod is separated from the hook grooves of the first hook and the second hook.
8. A water trap according to claim 7,
the second end of the first hook includes an end surface including a first slope inclined downward toward an inner side of the restricting mechanism, the first slope adapted to guide the connecting rod to be disengaged from the hook groove of the first hook; or
The second end of the second hook includes an end surface including a second slope surface inclined downward toward the inside of the restricting mechanism, the second slope surface being adapted to guide the connecting rod to be disengaged from the hook groove of the second hook.
9. A water trap as defined in claim 8, wherein the transition of the plug from the first state to the second state is: the plug rotates anticlockwise or clockwise.
10. The water remover according to claim 9, wherein the plug rotates 90 degrees counterclockwise or clockwise.
11. A water trap as defined in any one of claims 2-10, wherein the lifting assembly further comprises:
and the lifting rod is suitable for being connected with the second end of the connecting rod, and a positioning hole is formed in the lifting rod and is suitable for adjusting the position of the connecting rod.
12. The dehydrator according to claim 11, further comprising: the water remover main body is suitable for accommodating the plug assembly, and a three-way connector is arranged on the water remover main body;
the lift assembly further comprises: and the connecting ring is suitable for being connected with the three-way interface, and a through hole is formed in the connecting ring and is suitable for the first end of the connecting rod to penetrate through.
13. The dehydrator according to claim 12, wherein the lift assembly further comprises: a steering adjustment ball having a passageway therethrough adapted for the first end of the connecting rod to pass through the passageway.
14. A basin comprising a water trap as claimed in any one of claims 1-13.
CN202220682476.8U 2022-03-25 2022-03-25 Dewatering device and basin Active CN217105365U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220682476.8U CN217105365U (en) 2022-03-25 2022-03-25 Dewatering device and basin

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220682476.8U CN217105365U (en) 2022-03-25 2022-03-25 Dewatering device and basin

Publications (1)

Publication Number Publication Date
CN217105365U true CN217105365U (en) 2022-08-02

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Application Number Title Priority Date Filing Date
CN202220682476.8U Active CN217105365U (en) 2022-03-25 2022-03-25 Dewatering device and basin

Country Status (1)

Country Link
CN (1) CN217105365U (en)

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