CN217696089U - Water-steam separation box for water purifier and water purifier - Google Patents

Water-steam separation box for water purifier and water purifier Download PDF

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Publication number
CN217696089U
CN217696089U CN202221637918.3U CN202221637918U CN217696089U CN 217696089 U CN217696089 U CN 217696089U CN 202221637918 U CN202221637918 U CN 202221637918U CN 217696089 U CN217696089 U CN 217696089U
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water
separation
box body
exhaust port
box
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朱泽春
姚颖锋
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Joyoung Co Ltd
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Joyoung Co Ltd
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Abstract

The application discloses water-steam separation box and purifier for water purifier, water-steam separation box includes that box body and lid locate the top cap of box body, be equipped with manifold and separation chamber in the box body, and the box body be equipped with the water inlet of manifold intercommunication, and with the outlet of separation chamber intercommunication, water-steam separation box still is equipped with first gas vent and second gas vent, the one end and the separation chamber intercommunication of first gas vent, the other end and external atmosphere intercommunication, the one end and the separation chamber intercommunication of second gas vent, the other end and the pure water case intercommunication of purifier. The water purifier comprises a machine body and a pure water tank, wherein the machine body is provided with the water-vapor separation box. The utility model provides a steam separation box establishes two gas vents, can realize the steam separation rapidly, guarantees the stability of drain outlet department drainage, and the pure water case intercommunication of second gas vent and purifier, and when the water level detection in the purifier became invalid, the second gas vent also provided discharge passage for the overflow of pure water case, avoids leading to the gathering of the inside water of purifier because of the overflow.

Description

Water-steam separation box for water purifier and water purifier
Technical Field
The application belongs to the technical field of water purifying equipment, and particularly relates to a water-steam separation box for a water purifier and the water purifier.
Background
The instant heating type water dispenser can realize the instant heating to water, according to going out promptly, need not the user and waits for, adopts instant heating type water dispenser can avoid the thousand to roll water and the secondary adds the harmful effects that hot water caused to the human body, and can satisfy the user to the water demand of multiple temperature water, and convenient to use is swift, receives more and more people's favor. However, the instant heating type water dispenser can generate a large amount of steam during heating, and the steam and hot water flow out of the pipeline together to cause phenomena of unstable water outlet, splashing of the water outlet and the like.
The prior art discloses a water-steam separation box, including box body and the upper cover that is used for covering the box body, box body and upper cover constitute a water-steam separation box for ultrasonic bonding together, one side of box body is provided with the water inlet, the opposite side of box body is equipped with venthole and apopore, the venthole runs through and goes out from the water-steam separation box, inside separation storehouse and the buffering separation storehouse of being equipped with of water-steam separation box, the separation storehouse is located one side of water inlet, be linked together through the intercommunication passageway between buffering separation storehouse and the separation storehouse, this water-steam separation box sets up venthole and apopore mutually independent, but the position and the structural style that set up of its venthole lead to giving vent to anger slowly, a considerable part steam still can gush and cause hot water to splash together with hot water, and the unable discharge of steam still causes the atmospheric pressure rising in the buffering separation storehouse easily in the short time, thereby lead to a short and urgent, reduce user experience.
SUMMERY OF THE UTILITY MODEL
The application provides a water-steam separation box and purifier for water purifier to solve the unstable technical problem of play water.
The technical scheme adopted by the application is as follows:
the utility model provides a vapor separation box for water purifier, includes that box body and lid are located the top cap of box body, be equipped with manifold and separation chamber in the box body, just the box body be equipped with the water inlet of manifold intercommunication and with the outlet of separation chamber intercommunication, the vapor separation box still is equipped with first exhaust port and second gas vent, the one end of first exhaust port with separation chamber intercommunication, the other end and external atmosphere intercommunication, the one end of second gas vent with the pure water case intercommunication of separation chamber intercommunication, the other end and water purifier.
The application in water vapor separation box for water purifier still includes following additional technical characteristic:
the air inlet end of the first exhaust port and the air inlet end of the second exhaust port are both located in the separation cavity, and the air inlet end of the first exhaust port is higher than the air inlet end of the second exhaust port.
The top cap is equipped with downwardly extending in order with space separation in the box body is the manifold with the baffle of separation chamber, the lower border of baffle with the cooperation forms first clearance of overflowing between the diapire of box body.
The lower edge of the partition plate is lower than the air inlet end of the second air outlet in position, so that the upper end of the first overflowing gap is lower than the air inlet end of the second air outlet.
The baffle is equipped with the strengthening rib, strengthening rib one end with the baffle links firmly, and the other end orientation the separation chamber and/or one side extension of manifold.
The separation intracavity is equipped with a plurality of vortex muscle, and is a plurality of vortex muscle staggered arrangement to it is in to change the fluid flow path in the separation intracavity.
The vortex muscle includes first muscle position and is located first muscle position with second muscle position between the outlet, first muscle position with second muscle position all with the box body links firmly, first muscle position have two and respectively to the middle part slope of manifold extends, two the cooperation forms the second between the first muscle position and overflows the clearance, second muscle position respectively with two the cooperation forms the third between the first muscle position and overflows the clearance, just the projection of second muscle position in vertical direction can cover the second overflows the projection of clearance in vertical direction.
The water inlet and the second air outlet are positioned on the same side of the box body, and the position height of the water inlet on the box body is lower than the position height of the second air outlet on the box body.
The box body is equipped with outside convex first mounting panel and second mounting panel, first mounting panel with the second mounting panel is located the double-phase offside of box body, first mounting panel with the second mounting panel all is equipped with the mounting hole.
The application also discloses a water purifier, include the organism and locate pure water case in the organism, the organism is equipped with as above the moisture separation box, the second gas vent with pure water case intercommunication.
Due to the adoption of the technical scheme, the beneficial effects obtained by the application are as follows:
1. compared with the water-vapor separation box only provided with one exhaust port in the prior art, the water-vapor separation box is provided with two exhaust ports, the first exhaust port is communicated with the separation cavity and the external atmosphere, and the rapid discharge of water vapor in the water-vapor separation box is realized.
2. As an optimal implementation mode of this application, the air inlet end of first gas vent and the air inlet end of second gas vent all are located the separation intracavity, and the air inlet end of first gas vent is higher than the air inlet end of second gas vent to the realization spills over the classification of precedence to steam, avoids being mingled with the steam of hot water and discharges and cause and splash from first gas vent.
3. As an optimal implementation of this application, the top cap is equipped with downwardly extending for the baffle that separates the inner space of box body for manifold and disengagement chamber, the cooperation forms the first clearance that overflows between the lower border of baffle and the diapire of box body, the first existence that overflows the clearance has both realized that water flows from the manifold to the submerged formula of disengagement chamber in, the flow rate of water has been slowed down, the gentleness of drain outlet department drainage when having guaranteed the water demand of big water volume, and the first clearance that overflows can also form the extrusion to the bubble and realize broken bubble, be convenient for gaseous quick separation with the hot water, reduce gaseous influence to the drainage.
Furtherly, the position height of the lower border of baffle highly is less than the position height of the air inlet end of second gas vent, both guaranteed the degree of depth that sinks when water flows from the current-collecting chamber to the separation chamber, realize that the dive formula flows, realized converging of rivers again and converged the broken bubble of in-process, can also ensure the mobile orientation behind the water entering current-collecting chamber in addition, when avoiding the big water demand, water is discharged to the pure water case from the second gas vent and is influenced the water intaking amount in the unit interval, promote user experience.
4. As an optimal implementation of this application, the separation intracavity is equipped with a plurality of staggered arrangement's vortex muscle, the setting of vortex muscle, the flow path of water has been prolonged, and help realizing broken bubble, be convenient for the separation of gaseous and hot water, hot water gets into behind the separation chamber, the existence of vortex muscle has been avoided water and gaseous direct discharge from the outlet and the rivers of the discharge outlet department that lead to are neglected to be little and have been accompanied vapor, the emergence of the condition that hot water splashes can appear even in the play water unstability, make water and gas can be in the separation intracavity sufficient separation, make gaseous first exhaust port and/or second exhaust port discharge, the stability of the water outlet department outlet has been guaranteed.
5. As an optimal implementation mode of this application, water inlet and second gas vent lie in the same one side of box body to make things convenient for the pipeline arrangement between steam separation box and the purifier, shortened connecting line's length by a wide margin, realized the compactification overall arrangement of purifier complete machine, help the miniaturization. The water inlet is in position height on the box body is less than the second gas vent is in position height on the box body, in the water use practice of normal temperature water and the like, the limitation of the relative position height of the water inlet and the second gas vent can avoid that water entering the water-steam separation box from the water inlet directly flows back to the pure water box through the second gas vent, and the water yield of the water outlet is ensured. And under the condition that the water level detection of the pure water tank fails, the water entering the water-vapor separation box from the water inlet can be effectively prevented from flowing back to the pure water tank through the second exhaust port, so that the water in the pure water tank overflows into the pure water tank.
Drawings
The accompanying drawings, which are included to provide a further understanding of the application and are incorporated in and constitute a part of this application, illustrate embodiment(s) of the application and together with the description serve to explain the application and not to limit the application. In the drawings:
FIG. 1 is a perspective view of one embodiment of a moisture separation cartridge according to the present application;
FIG. 2 is an exploded view of one embodiment of a moisture separation cartridge according to the present application;
FIG. 3 is a first cross-sectional view of one embodiment of a cassette described herein;
FIG. 4 is a second cross-sectional view of one embodiment of a cassette described herein;
FIG. 5 is a perspective view of one embodiment of a cap described herein.
Wherein, the first and the second end of the pipe are connected with each other,
1. the structure of the water separator comprises a box body, a water inlet 11, a water outlet 12, a first exhaust port 13, a first exhaust port 14, a second exhaust port 15, a manifold 16, a separation chamber 17, a first overflowing gap 18, a first rib position 19, a second rib position 110, a second overflowing gap 111, a third overflowing gap 112, a fence 113, a mounting plate 114 and a mounting hole;
2. top cover, 21, baffle, 22, reinforcing rib.
Detailed Description
In order to more clearly explain the overall concept of the present application, the following detailed description is given by way of example in conjunction with the accompanying drawings.
In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present application, however, the present application may be practiced in other ways than those described herein, and therefore the scope of the present application is not limited by the specific embodiments disclosed below. It should be noted that the embodiments and features of the embodiments may be combined with each other without conflict.
In addition, in the description of the present application, it is to be understood that the terms "top," "bottom," "inner," "outer," "axial," "radial," "circumferential," and the like refer to orientations or positional relationships illustrated in the drawings, which are used for convenience in describing the present application and to simplify the description, and do not indicate or imply that the referenced device or element must have a particular orientation, be constructed and operated in a particular orientation, and thus, are not to be considered limiting of the present application.
In this application, unless expressly stated or limited otherwise, the terms "mounted," "connected," "secured," and the like are to be construed broadly and can include, for example, fixed connections, removable connections, or integral parts; the connection can be mechanical connection, electrical connection or communication; either directly or indirectly through intervening media, either internally or in any other relationship. The specific meaning of the above terms in the present application can be understood by those of ordinary skill in the art as appropriate.
In this application, unless expressly stated or limited otherwise, the first feature "on" or "under" the second feature may be directly contacting the first and second features or indirectly contacting the first and second features through intervening media. In the description herein, reference to the description of the term "one embodiment," "some embodiments," "an example," "a specific example," or "some examples," etc., means that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the application. In this specification, the schematic representations of the terms used above are not necessarily intended to refer to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
As shown in fig. 1 to 5, a water vapor separation box for water purifier, locate including box body 1 and lid the top cap 2 of box body 1, be equipped with manifold 15 and separation chamber 16 in the box body 1, just box body 1 be equipped with the water inlet 11 of manifold 15 intercommunication and with the outlet 12 of separation chamber 16 intercommunication, water vapor separation box still is equipped with first exhaust port 13 and second exhaust port 14, the one end of first exhaust port 13 with separation chamber 16 intercommunication, the other end and external atmosphere intercommunication, the one end of second exhaust port 14 with separation chamber 16 intercommunication, the other end and the pure water case intercommunication of purifier.
This application right box body 1 with the connected mode of top cap 2 does not specifically limit, and it both can adopt welding, sticky etc. non-detachable mode to realize linking firmly between them, can adopt joint, screw connection etc. to dismantle the mode of connection again, works as box body 1 with when dismantling between top cap 2, as preferred, add the sealing washer between the two to it is excessive from the junction position department between them to avoid water and gas.
The present application does not limit the specific arrangement positions of the first exhaust port 13 and the second exhaust port 14: for example, the first exhaust port 13 and the second exhaust port 14 are provided in the cartridge body 1; for another example, the first exhaust port 13 and the second exhaust port 14 are both disposed in the top cover 2; for another example, one of the first exhaust port 13 and the second exhaust port 14 is provided in the case 1, and the other is provided in the top cover 2. Thereby providing more possibilities for various structural shapes of the water-steam separation box.
Compared with the water-vapor separation box only provided with one exhaust port in the prior art, the water-vapor separation box is provided with two exhaust ports, wherein the first exhaust port 13 is communicated with the separation cavity 16 and the external atmosphere, so that the rapid discharge of the water vapor in the water-vapor separation box is realized, the second exhaust port 14 is communicated with the separation cavity 16 and the pure water tank of the water purifier, on one hand, the water vapor in the separation cavity 16 can be shunted, the rapid discharge of the water vapor is realized, the unstable or splashing of the outlet water of the outlet port 12 caused by the accumulation of the water vapor in the separation cavity 16 is avoided, the water vapor discharged from the second exhaust port 14 flows to the pure water tank of the water purifier, the condensed water generated by condensation in the flowing process can flow back to the pure water tank for collection, the waste and the cleaning of a user are avoided, on the other hand, the second exhaust port 14 is communicated with the pure water tank, when the water level detection in the water purifier fails, the water in the pure water tank flows from the water inlet 11 to the inside of the water-vapor separation box, the second exhaust port 14 also provides a discharge channel for the overflow of the pure water tank, namely, the water tank can flow to the water separation box through the second exhaust port 14, and the accumulation box, and the water tank can achieve a good protection effect on a water circuit board for preventing the overflow of the water purification machine.
As a preferred embodiment of the present application, the air inlet end of the first exhaust port 13 and the air inlet end of the second exhaust port 14 are both located in the separation cavity 16, and the air inlet end of the first exhaust port 13 is higher than the air inlet end of the second exhaust port 14, so as to realize the classification of steam overflow sequence, and avoid splashing caused by the discharge of the steam mixed with hot water from the first exhaust port 13. The air inlet end refers to an end of the first exhaust port 13 and the second exhaust port 14, which are communicated with the separation chamber 16, and steam enters the first exhaust port 13 and the second exhaust port 14 from the air inlet end and is then discharged to the outside of the water-steam separation box.
As a preferred embodiment of the present invention, as shown in fig. 3, a surrounding barrier 112 extending in a vertical direction is disposed in the box body 1, the surrounding barrier 112 is hollow to form the first exhaust port 13, and further, the surrounding barrier 112 is integrally formed with the box body 1, so as to avoid the increase of the processing difficulty, the assembly precision and the sealing performance requirement caused by assembling after separate molding. In this embodiment, the position of the air outlet end of the first air outlet 13 is not limited, and it may be disposed at the bottom of the box body 1, or at the side of the box body 1.
Of course, when the first exhaust port 13 is provided in the top cover 2, the exhaust port end of the first exhaust port 13 may be provided in the top cover 2.
As a preferred embodiment of this application, top cap 2 is equipped with downwardly extending in order to with the space separation in the box body 1 is for manifold 15 with the baffle 21 of separation chamber 16, the lower border of baffle 21 with the cooperation forms first overflowing clearance 17 between the diapire of box body 1. The existence of first clearance 17 that overflows had both realized that water flows from catchment chamber 15 to the submerged formula in the disengagement chamber 16, has slowed down the flow rate of water, the smoothness of outlet 12 department drainage when having guaranteed big water demand, and first clearance 17 that overflows can also form the extrusion to the bubble and realize breaking the bubble moreover, and the quick separation of gas and hot water of being convenient for reduces the influence of gas to the drainage.
Furthermore, the partition 21 and the top cover 2 are integrally formed, so that separate processing and assembling processes of processing and assembling after the processing caused by the separate molding of the partition and the top cover are avoided, and connecting members are omitted.
Of course, the partition board 21 in the present application does not necessarily need to be disposed on the top cover 2, but it may also be disposed on the box body 1, as long as it is satisfied that after the partition board 21 is assembled with the box body 1, the lower edge of the partition board 21 can be matched with the bottom wall of the box body 1 to form the first overflowing gap 17.
Preferably, the lower edge of the partition plate 21 is lower than the air inlet of the second air outlet 14, so that the upper end of the first overflowing gap 17 is lower than the air inlet of the second air outlet 14, thereby ensuring the sinking depth of water flowing from the water collecting chamber 15 to the separation chamber 16, realizing submerged flow, realizing water flow convergence and bubble breaking in the converging process, ensuring the flow orientation of water after entering the water collecting chamber 15, avoiding the influence of water intake in unit time caused by the fact that water is discharged from the second air outlet 14 to a pure water tank when large water volume is required, and improving user experience.
Furthermore, as shown in fig. 5, the partition plate 21 is provided with a reinforcing rib 22, one end of the reinforcing rib 22 is fixedly connected with the partition plate 21, and the other end extends towards one side of the separation chamber 16 and/or the manifold 15. As shown in fig. 3, a specific example of the ribs 22 extending into the separation chamber 16 is given. The existence of the reinforcing ribs 22 improves the structural strength of the partition plate 21, so that the partition plate can resist water flow impact without deformation, and on the other hand, the reinforcing ribs 22 extend into the separation cavity 16 and/or the manifold 15, so that disturbance can be formed on liquid in the separation cavity 16 and/or the manifold 15 to be beneficial to bubble breaking, thereby accelerating water-gas separation and avoiding interference of gas on water flow form and flow velocity at the water outlet 12.
As a preferred embodiment of the present application, a plurality of turbulence ribs are arranged in the separation chamber 16, and the turbulence ribs are arranged in a staggered manner to change the flow path of the fluid in the separation chamber 16. The setting of vortex muscle, the flow path of water has been prolonged, and help realizing broken bubble, be convenient for the separation of gas and hot water, hot water gets into the disengagement chamber 16 back, the existence of vortex muscle has avoided water and gas direct discharge and the rivers of the 12 departments of outlet that lead to from outlet 12 are suddenly big and suddenly little and have been accompanied by vapor, the emergence of the condition that hot water splashes can appear even in the water instability, make water and gas can be separated in disengagement chamber 16 fully, make gas discharge from first exhaust port 13 and/or second exhaust port 14, the stability of outlet water of 12 departments of outlet has been guaranteed.
As a preferred embodiment under the present embodiment, as shown in fig. 2 and 3, the turbulence rib includes first rib positions 18 and second rib positions 19 located between the first rib positions 18 and the water outlet 12, the first rib positions 18 and the second rib positions 19 are both fixedly connected to the box body 1, two of the first rib positions 18 extend obliquely toward the middle of the manifold 15, a second flow gap 110 is formed between the two first rib positions 18 in a matching manner, the second rib positions 19 are respectively matched with the two first rib positions 18 to form a third flow gap 111, and a projection of the second rib positions 19 in the vertical direction can cover a projection of the second flow gap 110 in the vertical direction, so that a flow path of water flowing from the first flow gap 17 to the water outlet 12 is greatly extended, a phenomenon that water directly flows toward the water outlet 12 after flowing through the first flow gap 17 is avoided, water flows out of the water outlet 12 due to short and rapid water discharge is caused, and water collides with the first rib positions and/or the second rib positions 18 and/or the second rib positions 19 in the flow process of water flow, and a friction effect of water flow is further promoted and a separation is further facilitated.
As an optimal implementation manner of the present application, as shown in fig. 2 to fig. 4, the water inlet 11 and the second air outlet 14 are located on the same side of the box body 1, so that the pipeline arrangement between the water-steam separation box and the water purifier is facilitated, the length of the connecting pipeline is greatly shortened, the compact layout of the whole water purifier is realized, and the miniaturization is facilitated.
As a preferred embodiment of the present application, as shown in fig. 4, the height of the water inlet 11 on the box body 1 is lower than the height of the second air outlet 14 on the box body 1. In the practice of using water with the same water amount as normal-temperature water, the limitation of the relative position heights of the water inlet 11 and the second exhaust port 14 can prevent water entering the water-vapor separation box from the water inlet 11 from directly flowing back to the pure water box through the second exhaust port 14, and the water yield at the water outlet 12 is ensured. And under the condition that the water level detection of the pure water tank fails, the water entering the water-vapor separation box from the water inlet 11 can be effectively prevented from flowing back to the pure water tank through the second exhaust port 14, so that the water in the pure water tank overflows into the pure water tank.
As shown in fig. 1, the box body 1 is provided with a first mounting plate 113 and a second mounting plate 113 protruding outwards, the first mounting plate 113 and the second mounting plate 113 are located at two opposite sides of the box body 1, and the first mounting plate 113 and the second mounting plate 113 are both provided with mounting holes 114. Firm installation of steam separation box can be realized through first mounting panel 113 and second mounting panel 113, the phenomenon of stress concentration that the unilateral installation brought is avoided.
The application also discloses a water purifier, include the organism and locate pure water case in the organism, the organism is equipped with as above the steam separation box, second gas vent 14 with pure water case intercommunication to make the steam that discharges from second gas vent 14 can flow to the pure water incasement, the comdenstion water that the condensation produced among the flow process can flow back to the pure water case and collect, both avoided the waste, also avoided the user to wash, furthermore, second gas vent 14 and pure water case intercommunication, when making the water level detection in the pure water case inefficacy, the water of pure water incasement except that from water inlet 11 flow to inside and outside the steam separation box, second gas vent 14 also provides the escape way for the overflow of pure water case, the water that overflows in the pure water incasement still can flow to the steam separation box through second gas vent 14, and avoid leading to the gathering of the inside water of water purifier because of the overflow, spare parts such as the circuit board in the water purifier play fine safeguard effect.
Where not mentioned in this application, this may be achieved using or taking advantage of existing technology.
The embodiments in the present specification are described in a progressive manner, and the same and similar parts among the embodiments are referred to each other, and each embodiment focuses on the differences from the other embodiments.
The above description is only an example of the present application and is not intended to limit the present application. Various modifications and changes may occur to those skilled in the art to which the present application pertains. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application should be included in the scope of the claims of the present application.

Claims (10)

1. A water-steam separation box for a water purifier comprises a box body and a top cover arranged on the box body in a covering manner, wherein a collecting cavity and a separation cavity are arranged in the box body, the box body is provided with a water inlet communicated with the collecting cavity and a water outlet communicated with the separation cavity, and the water-steam separation box is characterized in that,
the water-vapor separation box is further provided with a first exhaust port and a second exhaust port, one end of the first exhaust port is communicated with the separation cavity, the other end of the first exhaust port is communicated with the outside atmosphere, one end of the second exhaust port is communicated with the separation cavity, and the other end of the second exhaust port is communicated with a pure water tank of the water purifier.
2. The water-vapor separation cartridge for a water purifier as recited in claim 1,
the air inlet end of the first exhaust port and the air inlet end of the second exhaust port are both positioned in the separation cavity, and the air inlet end of the first exhaust port is higher than the air inlet end of the second exhaust port.
3. The water-vapor separation cartridge for a water purifier as recited in claim 1,
the top cap be equipped with downwardly extending in order with space separation in the box body is the manifold with the baffle of separation chamber, the lower border of baffle with cooperate between the diapire of box body and form first clearance of overflowing.
4. The water-vapor separation cartridge for a water purifier as recited in claim 3,
the lower edge of the baffle plate is lower than the air inlet end of the second air outlet, so that the upper end of the first overflowing gap is lower than the air inlet end of the second air outlet.
5. The water-vapor separation cartridge for a water purifier as recited in claim 3,
the baffle is equipped with the strengthening rib, strengthening rib one end with the baffle links firmly, and the other end orientation the separation chamber and/or one side of manifold extends.
6. The water-vapor separation cartridge for a water purifier as recited in claim 1,
the separation intracavity is equipped with a plurality of vortex muscle, and is a plurality of vortex muscle staggered arrangement to it is in to change the fluid flow path in the separation intracavity.
7. The water-vapor separation cartridge for a water purifier as recited in claim 6,
the vortex muscle includes first muscle position and is located first muscle position with second muscle position between the outlet, first muscle position with second muscle position all with the box body links firmly, first muscle position have two and respectively to the middle part slope of manifold extends, two the cooperation forms the second between the first muscle position and overflows the clearance, second muscle position respectively with two the cooperation forms the third between the first muscle position and overflows the clearance, just the projection of second muscle position in vertical direction can cover the second overflows the projection of clearance in vertical direction.
8. The water-vapor separation cartridge for a water purifier according to any one of claims 1 to 7,
the water inlet and the second air outlet are positioned on the same side of the box body, and the position height of the water inlet on the box body is lower than the position height of the second air outlet on the box body.
9. The water-vapor separation cartridge for a water purifier according to any one of claims 1 to 7,
the box body is equipped with outside convex first mounting panel and second mounting panel, first mounting panel with the second mounting panel is located the double-phase offside of box body, first mounting panel with the second mounting panel all is equipped with the mounting hole.
10. A water purifier comprising a machine body and a pure water tank arranged in the machine body, characterized in that the machine body is provided with the water-vapor separation box as claimed in any one of claims 1 to 9, and the second exhaust port is communicated with the pure water tank.
CN202221637918.3U 2022-06-28 2022-06-28 Water-steam separation box for water purifier and water purifier Active CN217696089U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221637918.3U CN217696089U (en) 2022-06-28 2022-06-28 Water-steam separation box for water purifier and water purifier

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221637918.3U CN217696089U (en) 2022-06-28 2022-06-28 Water-steam separation box for water purifier and water purifier

Publications (1)

Publication Number Publication Date
CN217696089U true CN217696089U (en) 2022-11-01

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ID=83774290

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221637918.3U Active CN217696089U (en) 2022-06-28 2022-06-28 Water-steam separation box for water purifier and water purifier

Country Status (1)

Country Link
CN (1) CN217696089U (en)

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