Floor standing atomizing humidifier

By designing a water control valve and a gravity-connected shielding component in the atomizing humidifier, the problem of water spillage when the atomizing humidifier is tilted is solved, achieving the device's self-sealing and rapid recovery functions, ensuring safe use and environmental cleanliness.

CN224302229UActive Publication Date: 2026-05-29ZHONGSHAN MENGXIAOQI TECHNOLOGY CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHONGSHAN MENGXIAOQI TECHNOLOGY CO LTD
Filing Date
2025-05-16
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

When atomizing humidifiers are tipped over, they are prone to large-scale water leakage or spillage, resulting in an unclean environment and posing safety hazards.

Method used

A floor-standing atomizing humidifier was designed, which adopts a structure in which a water outlet control valve and a gravity component are connected to a shielding component through a straight handle support rod. Under normal conditions, water mist is allowed to spray out. When tilted, the shielding component seals the mist outlet. After being uprighted again, the water mist spraying function is restored.

Benefits of technology

Effectively prevents water from spilling when the atomizing humidifier is tilted, ensuring that the equipment can still be used normally after being tilted, avoiding environmental pollution and safety hazards.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224302229U_ABST
    Figure CN224302229U_ABST
Patent Text Reader

Abstract

The utility model relates to atomization humidifier technical field, concretely is a floor type atomization humidifier, including water tank main part and atomization device, the water tank main part's mist outlet is installed with water -out control valve, and water -out control valve is provided with gravity piece and shelter piece, and gravity piece passes through straight handle support pole and is connected in shelter piece through mist outlet. The utility model installs water -out control valve at the mist outlet of atomization humidifier water tank main part, under normal condition, water -out control valve can supply water mist to spray, once the collision causes atomization humidifier to roll over and dump, and the gravity piece of water -out control valve utilizes the dead weight and promotes the shelter piece to seal the mist outlet through straight handle support pole towards outside, make the water source inside water tank main part not easy to spill to outside, when atomization humidifier re -erect, the gravity piece of water -out control valve utilizes the dead weight and promotes shelter piece to leave mist outlet, and water mist can supply to spray again, restore the normal use of atomization humidifier, and the user uses conveniently.
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Description

Technical Field

[0001] This utility model relates to the field of atomizing humidifier technology, specifically a floor-standing atomizing humidifier. Background Technology

[0002] Atomizing humidifiers are common indoor humidification devices that can quickly atomize water and release it into the air, significantly increasing indoor humidity in a short period of time. They are especially suitable for dry environments.

[0003] However, atomizing humidifiers often need to be refilled with water, and the humidification range of the equipment is limited, so the humidification position needs to be changed frequently. This results in the equipment being moved frequently, and during use, it is easy for it to be bumped, tipped over, or overturned. After tipping over, the water from the atomizing humidifier can easily leak or spill into the environment, which is not conducive to keeping the user's environment clean. The spilled water may also pose a safety hazard to people passing by.

[0004] To address the above shortcomings, we need to develop a floor-standing atomizing humidifier to meet the needs of a wide range of users. Utility Model Content

[0005] To address the aforementioned problem that existing atomizing humidifiers are prone to significant water leakage or spillage when tipped over, the technical solution adopted by this utility model is as follows:

[0006] A floor-standing atomizing humidifier includes a water tank body and an atomizing device installed on the water tank body for water source atomization humidification. A water outlet control valve is installed at the mist outlet of the water tank body. A gravity component is provided on the side of the water outlet control valve away from the interior of the water tank body, and a shielding component is provided on the side of the water outlet control valve closer to the interior of the water tank body. The gravity component passes through the mist outlet and is connected to the shielding component via a straight handle support rod.

[0007] As described above, in a floor-standing atomizing humidifier, the water outlet control valve includes a first mist outlet diversion cover for limiting the installation position of the straight handle support rod. The first mist outlet diversion cover has a first cover hole in the middle for the straight handle support rod to pass through, and the first mist outlet diversion cover has first diversion holes arranged circumferentially around the first cover hole.

[0008] As described above, in a floor-standing atomizing humidifier, an elastic deformable member is installed between the gravity member and the first mist outlet diverter cover, which is mounted on the straight handle support rod.

[0009] As described above, in a floor-standing atomizing humidifier, the water outlet control valve includes a second mist outlet diverter cover for detachable installation at the mist outlet. The first mist outlet diverter cover is fastened to the side of the second mist outlet diverter cover near the interior of the water tank body. The second mist outlet diverter cover has a second cover hole in the middle for the straight handle support rod to pass through. The second mist outlet diverter cover has second diverter holes arranged circumferentially around the second cover hole.

[0010] In the floor-standing atomizing humidifier described above, the length of the straight handle support rod is greater than the total thickness of the first mist outlet diverter cover, the diameter of the first cover hole is greater than the outer diameter of the straight handle support rod and smaller than the diameter of the second cover hole, and the diameter of the second cover hole is smaller than the outer diameter of the gravity component.

[0011] As described above, in a floor-standing atomizing humidifier, the middle part of the first mist outlet diversion cover has a cover mesh structure that extends towards the gravity member, the cover mesh structure has a cover mesh recess into which the shielding member extends, and the first cover hole and the first diversion hole are both located in the cover mesh structure.

[0012] The second mist outlet diverter cover has a conical structure on the side near the gravity member that is inclined from the outside inward toward the first mist outlet diverter cover, and the second cover hole and the second diverter hole are both located on the conical structure;

[0013] The gravity component has a spherical shape, and the outer edge of the shielding component extends into a conical disc edge in a direction away from the center, with the conical disc edge inclined in a direction away from the gravity component.

[0014] As described above, a floor-standing atomizing humidifier has a water tank body comprising an upper water tank located at the top and a lower water tank located at the bottom. A body control module is detachably installed between the upper water tank and the lower water tank. The atomizing device is located near the upper water tank on the body control module, and the mist outlet is located at the top of the upper water tank.

[0015] As described above, a floor-standing atomizing humidifier includes a body control module comprising a heating device for heating water mist and a water supply structure for pumping water. The water supply structure pumps water from the lower water tank to the upper water tank via a water supply pipe. The water supply pipe passes through the heating element of the heating device, which heats the water flowing from the lower water tank to the upper water tank.

[0016] As described above, in a floor-standing atomizing humidifier, a one-way valve is installed inside the water supply pipe near the heating device to prevent water from flowing back to the lower water tank. Water originates from the lower water tank, enters the inlet of the one-way valve through the water supply pipe, and flows out unidirectionally from the outlet of the one-way valve.

[0017] The water supply pipeline has a bend structure near the outlet valve. The one-way valve includes a check plug for blocking the inlet valve, a check elastic element installed in the bend structure and elastically pressing against the check plug, and a valve body shell for limiting the installation position.

[0018] As described above, in a floor-standing atomizing humidifier, the inlet of the water supply pipe is connected to the lower water tank near the bottom, the outlet of the water supply pipe is connected to the upper water tank near the top, and the atomizing device is installed near the bottom of the upper water tank.

[0019] The upper water tank is installed on the top of the machine body control module by elastic buckle, and the water inlet of the lower water tank is on the outer peripheral surface in the horizontal direction. The water inlet is equipped with a removable water inlet cover.

[0020] The housing of the device control module is equipped with a visual panel for user operation, which is electrically connected to the atomizing device and the heating device.

[0021] The beneficial effects of this utility model are as follows:

[0022] This invention features a water outlet control valve installed at the mist outlet of the water tank body of the atomizing humidifier. Under normal conditions, the water outlet control valve supplies water mist. In the event of a collision that causes the atomizing humidifier to tip over, the gravity component of the water outlet control valve uses its own weight to pull the blocking component outward via the straight handle support rod, sealing the mist outlet and preventing water from spilling out of the water tank body. When the atomizing humidifier is upright again, the gravity component of the water outlet control valve uses its own weight to push the blocking component away from the mist outlet, allowing water mist to be supplied again and restoring the normal operation of the atomizing humidifier, thus facilitating user convenience. Attached Figure Description

[0023] Figure 1 This is a perspective view of a floor-standing atomizing humidifier according to the present invention.

[0024] Figure 2 This is a vertically sectional view of the internal structure of this utility model.

[0025] Figure 3 This is a cross-sectional view of the internal structure of this utility model.

[0026] Figure 4 for Figure 2 A magnified view of A.

[0027] Figure 5 for Figure 2 A magnified view of B. Detailed Implementation

[0028] The embodiments of this utility model will now be described in detail with reference to the accompanying drawings.

[0029] Figures 1 to 5 The illustration shows a floor-standing atomizing humidifier of embodiment 1, including a water tank body 1 and an atomizing device 2 installed on the water tank body 1 for water source atomization humidification. A water outlet control valve 3 is installed at the mist outlet 13 of the water tank body 1. A gravity member 31 is provided on the side of the water outlet control valve 3 away from the interior of the water tank body 1, and a shielding member 33 is provided on the side of the water outlet control valve 3 closer to the interior of the water tank body 1. The gravity member 31 passes through the mist outlet 13 and is connected to the shielding member 33 by a straight handle support rod 32.

[0030] Specifically, in this embodiment, the water tank body 1 is a water tank structure for storing water in an atomizing humidifier, and the atomizing device 2 is a device for converting water into a mist state in an atomizing humidifier. The atomizing device 2 can adopt one of ultrasonic atomization, centrifugal atomization, or steam atomization. The water outlet control valve 3 can control whether the water inside the water tank body 1 can pass through the valve body structure of the mist outlet 13. The gravity member 31 passes through the mist outlet 13 through the straight handle support rod 32 and is connected to the shielding member 33 to form an integral structure. Since the length of the straight handle support rod 32 is fixed and the straight handle support rod 32 can move along the axial direction of the mist outlet 13, the shielding member 33 can limit the extension distance of the gravity member 31 towards the outside and the insertion distance of the shielding member 33 into the water tank body 1.

[0031] Under normal conditions, when the atomizing humidifier is standing upright on the ground, the gravity component 31 falls down on the upper side of the mist outlet 13 by its own weight, but the gravity component 31 does not block the mist outlet 13. After the atomizing device 2 atomizes the water source inside the water tank body 1, the water mist floats out or sprays out to the outside through the water outlet control valve 3, thus achieving the normal effect of atomizing humidification.

[0032] When the atomizing humidifier is hit by an external force and tipped over, the gravity component 31 of the water outlet control valve 3 uses its own weight to pull the shield 33 towards the outside through the straight handle support rod 32 to seal the mist outlet 13, so that the water inside the water tank body 1 is not easy to spill to the outside, and achieves the seepage sealing effect after tipping over.

[0033] When the atomizing humidifier is upright again, the gravity component 31 of the water outlet control valve 3 falls due to its own weight and pushes the shield 33 away from the lower side of the mist outlet 13 through the straight handle support rod 32, so that the water mist inside the atomizing humidifier can be supplied and sprayed out again, restoring the normal use of the atomizing humidifier.

[0034] Furthermore, as another optional embodiment 101:

[0035] like Figure 4As shown, the water outlet control valve 3 includes a first mist outlet diversion cover 34 for limiting the installation position of the straight handle support rod 32. The first mist outlet diversion cover 34 has a first cover hole 341 in the middle for the straight handle support rod 32 to pass through, and the first mist outlet diversion cover 34 has first diversion holes 342 arranged circumferentially around the first cover hole 341.

[0036] Specifically, in this embodiment, in order to ensure that the falling of the gravity component 31 will not block the mist outlet 13 under normal conditions, the water outlet control valve 3 uses the first mist outlet diversion cover 34 to restrict the installation position of the straight handle support rod 32, so that the gravity component 31 is always located close to the first cover hole 341, and the water mist generated by the equipment is sprayed out from the first diversion holes 342 arranged circumferentially around the first cover hole 341, so as to realize the normal supply of water mist.

[0037] Furthermore, as another optional embodiment 102:

[0038] like Figure 4 As shown, an elastic deformable member 36 is installed on the straight handle support rod 32 between the gravity member 31 and the first mist outlet diverter cover 34.

[0039] Specifically, in this embodiment, to further ensure the sealing effect of the shielding member 33, an elastic deformable member 36 is installed on the straight handle support rod 32 to press down the gravity member 31 extending outward. The elastic pressing force of the elastic deformable member 36 is less than the gravity generated by the weight of the gravity member 31 falling. The elastic deformable member 36 is preferably a spring. Under normal conditions, when the atomizing humidifier is standing upright on the ground, the weight of the gravity member 31 falling is greater than the elastic pressing force of the elastic deformable member 36, so that the gravity member 31 can compress the deformation of the elastic deformable member 36 by its own weight, so that the shielding member 33 can be moved away from the mist outlet 13, ensuring the water mist. When the atomizing humidifier is knocked over by an external force, the gravity component 31 of the water outlet control valve 3 uses its own weight to pull the shielding component 33 to the outside through the straight handle support rod 32 to seal the mist outlet 13. After the gravity component 31 falls and the gravity is eliminated, the elastic deformation component 36 further provides elastic top pressure against the surface of the gravity component 31. The distance between the gravity component 31 and the first mist outlet diverter cover 34 is maximized by the elastic deformation component 36, which enhances the watertight effect of the shielding component 33 pressing against the mist outlet 13, making it difficult for the water inside the water tank body 1 to spill to the outside, and enhancing the water seepage sealing effect after the overturning.

[0040] Furthermore, as another optional embodiment 103:

[0041] like Figure 4As shown, the water outlet control valve 3 includes a second mist outlet diverter cover 35 for detachable installation at the mist outlet 13. A first mist outlet diverter cover 34 is fastened to the side of the second mist outlet diverter cover 35 near the inside of the water tank body 1. A second cover hole 351 for the straight handle support rod 32 to pass through is provided in the middle of the second mist outlet diverter cover 35. The second mist outlet diverter cover 35 has second diverter holes 352 arranged circumferentially around the second cover hole 351.

[0042] Specifically, in this embodiment, in order to ensure that the straight handle support rod 32 is more stable during movement under normal conditions and to provide the sealing effect of the shielding member 33, the water outlet control valve 3 adopts a second mist diversion cover 35 to increase the distance between the gravity member 31 and the first mist diversion cover 35. However, under normal conditions, the distance between the shielding member 33 and the first mist diversion cover 35 still meets the requirements for water mist spraying. The first mist diversion cover 35 is installed on the second mist diversion cover 35, and the second mist diversion cover 35 is installed on the mist outlet 13. This further stabilizes the installation positions of the gravity member 31, the straight handle support rod 32, and the shielding member 33, so that the straight handle support rod 32 can move axially in a directional manner between the first cover hole 341 and the second cover hole 351, reducing the situation where the shielding member 33 fails to effectively seal the mist outlet 13 due to the side deviation caused by the movement of the straight handle support rod 32.

[0043] Furthermore, as another optional embodiment 104:

[0044] like Figure 4 As shown, the length of the straight handle support rod 32 is greater than the total thickness of the first mist outlet diverter cover 34, the diameter of the first cover hole 341 is greater than the outer diameter of the straight handle support rod 32 and smaller than the diameter of the second cover hole 351, and the diameter of the second cover hole 351 is smaller than the outer diameter of the gravity member 31.

[0045] Specifically, in this embodiment, the length of the straight handle support rod 32 is greater than the total thickness of the first mist diversion cover 34, so that the shielding member 33 can stably maintain a space between itself and the mist outlet 13 under normal circumstances to allow water mist to be sprayed out smoothly.

[0046] The first mist outlet diverter cover 34 extends from the first cover hole 341 toward the second mist outlet diverter cover 35, forming a hollow first cover cylinder structure. The second mist outlet diverter cover 35 extends from the second cover hole 351 toward the first mist outlet diverter cover 34, forming a hollow second cover cylinder structure. The straight handle support rod 32 has a radially expanding support rod limiting part at one end near the gravity member 31. The diameter of the first cover hole 341 is larger than the outer diameter of the straight handle support rod 32 and smaller than the diameter of the second cover hole 351, so that the first mist outlet diverter cover 34 and the second mist outlet diverter cover 35 are connected. The flow caps 35 can be interlocked to reduce the volume of the mist outlet 13, further reducing the installation volume of the water outlet control valve 3. The structure is ingenious and practical. The elastic deformation member 36 can also be installed between the first cover cylinder structure and the second cover cylinder structure. The elastic deformation member 36 presses against the support rod limiting part along the outside of the first cover cylinder structure, making the movement direction of the straight handle support rod 32 more stable and reducing the situation where the shielding member 33 fails to effectively seal the mist outlet 13 due to the side deviation caused by the movement of the straight handle support rod 32.

[0047] The diameter of the second cover hole 351 is smaller than the outer diameter of the gravity component 31, so that the gravity component 31 will not fall through the second cover hole 351 under normal conditions, thus ensuring the placement of the gravity component 31 under normal conditions and avoiding blockage of the diversion port.

[0048] Furthermore, as another optional embodiment 105:

[0049] like Figure 4 As shown, the middle part of the first mist outlet diverter cover 34 has a cover mesh structure 343 that protrudes towards the gravity member 31. The cover mesh structure 343 has a cover mesh recess 344 into which the shielding member 33 extends. The first cover hole 341 and the first diverter hole 342 are both located in the cover mesh structure 343.

[0050] The second mist outlet diverter cover 35 has a conical structure 353 on the side near the gravity member 31 that is inclined from the outside to the inside towards the first mist outlet diverter cover 34. The second cover hole 351 and the second diverter hole 352 are both located in the conical structure 353.

[0051] The gravity member 31 has a spherical shape, and the outer edge of the shielding member 33 extends into a conical disc edge 331 in a direction away from the center. The conical disc edge 331 is inclined in a direction away from the gravity member 31.

[0052] Specifically, in this embodiment, the protruding design of the cover mesh structure 343 can increase the space between the shielding member 33 and the mist outlet 13 under normal conditions to ensure smooth water mist spraying. At the same time, the cover mesh recess 344 is used for the shielding member 33 to extend into, which improves the sealing effect of the shielding member 33. Compared with the flat structure without the recess, the recessed cover mesh recess 344 only needs to be contacted by the edge of the shielding member 33 to achieve the sealing effect, without the need for the entire surface to contact to achieve the sealing effect. Under the elastic top pressure of the elastic deformation member 36, the sealing effect is better.

[0053] Specifically, in this embodiment, the second mist outlet diversion cover 35 can better concentrate the gravity member 31 in its normal position through the conical structure 353, so that the gravity member 31 is stably stopped at the position of the second cover hole 351, and the gravity member 31 is prevented from blocking the diversion port.

[0054] Specifically, in this embodiment, the gravity member 31 preferably adopts a spherical shape. When the spherical shape contacts the second mist diversion cover 35, it can further avoid clogging the diversion port and facilitate structural installation. The shielding member 33 adopts a conical disc edge 331 to fit the cover mesh recess 344 of the first mist diversion cover 34, so that the sealing effect is better.

[0055] Furthermore, Figures 1 to 5 The following is an example of a floor-standing atomizing humidifier according to Embodiment 2. The water tank body 1 includes an upper water tank 11 located at the top and a lower water tank 12 located at the bottom. A body control module 5 is detachably installed between the upper water tank 11 and the lower water tank 12. The atomizing device 2 is located near the upper water tank 11 of the body control module 5. The mist outlet 13 is located at the top of the upper water tank 11.

[0056] Specifically, in this embodiment, the upper water tank 11 is the main body of the water tank 1 used to store part of the water source supplied to the atomizing device 2 for atomization, and the lower water tank 12 is the main body of the water tank 1 used to store a large amount of backup water source. The backup water source of the lower water tank 12 can be supplied to the upper water tank 11 in real time to provide water source for the atomizing device 2. The body control module 5 is detachably installed between the upper water tank 11 and the lower water tank 12, so that the overall shape of the atomizing humidifier is a column-shaped vertical structure. The lower water tank 12 has a stable base for the stable vertical structure. The stable base is used to increase the contact area of ​​the lower water tank 12 with the ground. The body control module 5 allows the user to intuitively control the use of the atomizing humidifier.

[0057] Furthermore, as another optional embodiment 201:

[0058] like Figure 2As shown, the fuselage control module 5 includes a heating device 4 for heating water mist and a water supply structure for pumping water. The water supply structure pumps water from the lower water tank 12 to the upper water tank 11 via a water supply pipe 52 through a water pump 51. The water supply pipe 52 passes through the heating plate of the heating device 4, and the heating device 4 can heat the water flowing from the lower water tank 12 to the upper water tank 11.

[0059] Specifically, in this embodiment, the heating device 4 can heat the water source flowing into the upper water tank 11, so that the atomization effect output to the outside has a warming effect, reducing the cold cooling effect caused by the water mist. The water source in the lower water tank 12 is supplied to the upper water tank 11 through the water pump 51 and the water supply pipe 52 through the heating plate of the heating device 4, so that the heating device 4 can heat the water source in the path.

[0060] Furthermore, as another optional embodiment 202:

[0061] like Figure 5 As shown, a one-way valve 53 is installed inside the water supply pipe 52 near the heating device 4 to prevent water from flowing back to the lower water tank 12. Water from the lower water tank 12 enters the inlet of the one-way valve 53 through the water supply pipe 52 and flows out unidirectionally from the outlet of the one-way valve 53.

[0062] The water supply pipe 52 has a bend structure 523 near the outlet valve. The one-way valve 53 includes a check plug 531 for blocking the inlet valve, a check elastic element 532 installed in the bend structure 523 and elastically pressing against the check plug 531, and a valve body shell 533 for limiting the installation position.

[0063] Specifically, in this embodiment, in order to prevent the backflow of water flowing into the upper water tank 11, a one-way valve 53 is installed on the water supply pipe 52 near the heating device 4 to prevent the water from flowing back into the lower water tank 12. More specifically, one end of the check elastic member 532 is installed on the corner protrusion of the corner structure 523, and the other end of the check elastic member 532 is elastically pressed against the surface of the check plug 531, so that the check plug 531 abuts against the inlet of the one-way valve 53, thereby preventing the water at the outlet of the one-way valve 53 from flowing back.

[0064] When water supply is needed, the water pump 51 starts and pumps water into the water supply pipe 52. The thrust generated by the water pump 51 pushes open the check plug 531. At this time, the check elastic element 532 is in a state of pressure deformation. When the water supply stops, when the water pump 51 stops operating, the check elastic element 532 elastically resets and pushes the check plug 531 against the inlet valve of the one-way valve 53, preventing the water source at the outlet valve of the one-way valve 53 from flowing back, thus achieving the one-way check valve supply effect.

[0065] Furthermore, as another optional embodiment 202:

[0066] like Figures 2 to 3 As shown, the inlet 521 of the water supply pipe 52 is connected to the lower water tank 12 near the bottom, and the outlet 522 of the water supply pipe 52 is connected to the upper water tank 11 near the top. The atomizing device 2 is installed near the bottom of the upper water tank 11.

[0067] The upper water tank 11 is installed on the top of the machine body control module 5 by elastic buckle 111, and the water inlet 121 of the lower water tank 12 is on the outer peripheral surface in the horizontal direction. The water inlet 121 is equipped with a removable water inlet cover 122.

[0068] The housing of the body control module 5 is equipped with a visual panel 54 for user operation, which is electrically connected to the atomizing device 2 and the heating device 4.

[0069] Specifically, in this embodiment, the water supply pipe 52 optimizes the water path connection structure by connecting the inlet 521 to the lower water tank 12 near the bottom, so that the water level in the lower water tank 12 only needs to be replenished when it drops to the minimum. The outlet 522 of the water supply pipe 52 is connected to the upper water tank 11 near the top, avoiding the atomizing device 2 from affecting the atomizing effect and reducing the possibility of water from the upper water tank 11 flowing back into the water supply pipe 52. The atomizing device 2 is installed near the bottom of the upper water tank 11, which can atomize the remaining water in the upper water tank 11 to the maximum extent, reducing the accumulation of water in the upper water tank 11 and reducing water accumulation.

[0070] Specifically, in this embodiment, the upper water tank 11 is installed on the top of the body control module 5 by an elastic buckle 111, which facilitates installation and disassembly. The lower water tank 12 seals the internal water source by a water outlet cover 122, so that the internal water source of the lower water tank 12 will not spill to the outside when the atomizing humidifier is tilted to the side.

[0071] Specifically, in this embodiment, the user can intuitively control the atomizing device 2 and the heating device 4 through the visualization panel 54 installed on the outer shell of the device control module 5. The visualization panel 54 can also collect the remaining water level inside the device through sensors, display it in real time on the visualization panel 54 and remind the user to replenish the water in time, making it convenient for the user to use.

[0072] The above examples are merely illustrative of the technical content of this utility model to facilitate reader understanding, but do not imply that the implementation of this utility model is limited to these embodiments. Any technical extensions or re-creations made based on this utility model are protected by this utility model. The scope of protection of this utility model is defined by the claims.

Claims

1. A floor-standing atomizing humidifier, comprising a water tank body (1) and an atomizing device (2) installed on the water tank body (1) for water source atomization and humidification, characterized in that, The water tank body (1) has a mist outlet (13) equipped with a water outlet control valve (3). The water outlet control valve (3) is provided with a gravity member (31) on the side away from the inside of the water tank body (1). The water outlet control valve (3) is provided with a shielding member (33) on the side close to the inside of the water tank body (1). The gravity member (31) passes through the mist outlet (13) and is connected to the shielding member (33) via a straight handle support rod (32).

2. A floor-standing atomizing humidifier according to claim 1, characterized in that, The water outlet control valve (3) includes a first mist outlet diversion cover (34) for limiting the installation position of the straight handle support rod (32). The first mist outlet diversion cover (34) has a first cover hole (341) in the middle for the straight handle support rod (32) to pass through. The first mist outlet diversion cover (34) has first diversion holes (342) arranged circumferentially around the first cover hole (341).

3. A floor-standing atomizing humidifier according to claim 2, characterized in that, An elastic deformation member (36) is installed on the straight handle support rod (32) between the gravity member (31) and the first mist outlet diverter cover (34).

4. A floor-standing atomizing humidifier according to claim 2, characterized in that, The water outlet control valve (3) includes a second mist outlet diverter cover (35) for detachable installation at the mist outlet (13). The first mist outlet diverter cover (34) is fastened to the side of the second mist outlet diverter cover (35) near the inside of the water tank body (1). The second mist outlet diverter cover (35) has a second cover hole (351) in the middle for the straight handle support rod (32) to pass through. The second mist outlet diverter cover (35) has second diverter holes (352) arranged circumferentially around the second cover hole (351).

5. A floor-standing atomizing humidifier according to claim 4, characterized in that, The length of the straight handle support rod (32) is greater than the total thickness of the first mist outlet diverter cover (34), the diameter of the first cover hole (341) is greater than the outer diameter of the straight handle support rod (32) and smaller than the diameter of the second cover hole (351), and the diameter of the second cover hole (351) is smaller than the outer diameter of the gravity member (31).

6. A floor-standing atomizing humidifier according to claim 4, characterized in that, The first mist outlet diverter cover (34) has a cover mesh structure (343) extending in the middle towards the gravity member (31), the cover mesh structure (343) has a cover mesh recess (344) into which the shielding member (33) extends, and the first cover hole (341) and the first diverter hole (342) are both located in the cover mesh structure (343). The second mist outlet diverter cover (35) has a conical structure (353) on the side near the gravity member (31) that is inclined from the outside to the inside and toward the first mist outlet diverter cover (34). The second cover hole (351) and the second diverter hole (352) are both located on the conical structure (353). The gravity member (31) has a spherical shape, and the outer edge of the shielding member (33) extends into a conical disc edge (331) in a direction away from the center. The conical disc edge (331) is inclined in a direction away from the gravity member (31).

7. A floor-standing atomizing humidifier according to claim 1, characterized in that, The main body of the water tank (1) includes an upper water tank (11) located above and a lower water tank (12) located below. A body control module (5) is detachably installed between the upper water tank (11) and the lower water tank (12). The atomizing device (2) is located near the upper water tank (11) of the body control module (5). The mist outlet (13) is located at the top of the upper water tank (11).

8. A floor-standing atomizing humidifier according to claim 7, characterized in that, The fuselage control module (5) includes a heating device (4) for heating water mist and a water supply structure for pumping water. The water supply structure pumps water from the lower water tank (12) to the upper water tank (11) via a water supply pipe (52) through a water pump (51). The water supply pipe (52) passes through the heating plate of the heating device (4). The heating device (4) can heat the water flowing from the lower water tank (12) to the upper water tank (11).

9. A floor-standing atomizing humidifier according to claim 8, characterized in that, Inside the water supply pipe (52), near the heating device (4), there is a one-way valve (53) that prevents water from flowing back to the lower water tank (12). Water originates from the lower water tank (12), enters the inlet of the one-way valve (53) through the water supply pipe (52), and flows out unidirectionally from the outlet of the one-way valve (53). The water supply pipe (52) has a corner structure (523) near the outlet valve. The one-way valve (53) includes a check plug (531) for blocking the inlet valve, a check elastic member (532) installed on the corner structure (523) and elastically pressing against the check plug (531), and a valve body shell (533) for limiting the installation position.

10. A floor-standing atomizing humidifier according to claim 8, characterized in that, The inlet (521) of the water supply pipe (52) is connected to the lower water tank (12) near the bottom, and the outlet (522) of the water supply pipe (52) is connected to the upper water tank (11) near the top. The atomizing device (2) is installed near the bottom of the upper water tank (11). The upper water tank (11) is installed on the top of the body control module (5) by an elastic buckle (111), and the water inlet (121) of the lower water tank (12) is on the outer peripheral surface in the horizontal direction. The water inlet (121) is equipped with a removable water inlet cover (122). The housing of the body control module (5) is equipped with a visual panel (54) for user operation, and the visual panel (54) is electrically connected to the atomizing device (2) and the heating device (4).