Atomizing machine with high utilization rate

The problem of liquid guide component misalignment is solved by the supporting mechanism composed of a rigid tube and a spring, which keeps the liquid guide component in contact with the atomizing plate and ensures that the atomization effect is not affected.

CN223847284UActive Publication Date: 2026-01-30GUANGZHOU BENXIANG INFORMATION TECH CO LTD
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Patent Information

Application Number
CN202520016733.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-03
Publication Date
2026-01-30
Estimated Expiration
2035-01-03

AI Technical Summary

Technical Problem

The liquid guiding components of existing atomizers are prone to shifting due to gravity after prolonged use, which prevents them from fully adhering to the back of the atomizing plate and affects the atomization effect.

Method used

The mechanism consists of a rigid tube and a spring. The flange of the rigid tube and the spring work together to keep the liquid guide piece facing upward and in contact with the back of the atomizing plate, preventing it from shifting.

Benefits of technology

Even after the liquid guide absorbs liquid and becomes heavier and softer, it can maintain the atomization effect during long-term use, ensuring effective adhesion between the liquid guide and the atomizing plate.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of atomizing equipment, in particular to an atomizing machine with a high utilization rate. The utility model provides an atomizing machine with high utilization rate, which comprises a liquid storage bin for accommodating liquid to be atomized, and an atomizing sheet is arranged above the liquid storage bin; comprising a liquid guide part, the lower end of the liquid guide part extends into the liquid storage bin, the upper end of the liquid guide part is attached to the back face of the atomization piece upwards, liquid to be atomized in the liquid storage bin is guided to the atomization piece to be atomized, and an abutting mechanism is arranged to abut the liquid guide part upwards till the liquid guide part is attached to the back face of the atomization piece upwards. The liquid guide piece of the atomizing machine can be well attached to the back face of the atomizing piece, and the original atomizing effect can be kept after the atomizing machine is used for a long time.
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Description

TECHNICAL FIELD

[0001] The utility model relates to atomization equipment field, concretely relates to a high utilization rate atomization machine. BACKGROUND

[0002] The atomization machine is a kind of more common small household appliance.The atomization machine of one kind currently, it includes liquid storage bin, liquid guide piece and atomization piece, and clean water, essential oil or aromatherapy liquid are contained in liquid storage bin, and the liquid to be atomized is atomized.Liquid guide piece includes liquid guide cotton, and the lower end of liquid guide cotton is inserted into liquid storage bin to contact the liquid to be atomized, and the upper end is pasted to the back of atomization piece, and the liquid to be atomized is absorbed in liquid storage bin by the lower end, and the liquid to be atomized is guided to the back of atomization piece upward to receive atomization.As liquid guide cotton is heavy and soft after absorbing the liquid to be atomized, it is easy to shift downward under the action of gravity after long time use, so that the upper end of liquid guide cotton cannot be completely pasted to the back of atomization piece, and the atomization effect is affected. SUMMARY

[0003] The technical problem to be solved by the utility model is to provide a high utilization rate atomization machine, and the liquid guide piece can be better pasted to the back of atomization piece, and the original atomization effect can be maintained after long time use.

[0004] To solve the above problems, the utility model provides a high utilization rate atomization machine, including the liquid storage bin for containing the liquid to be atomized, and the atomization piece is arranged above the liquid storage bin;Including liquid guide piece, and the lower end of the liquid guide piece is inserted into the liquid storage bin, and the upper end is pasted to the back of the atomization piece, and the liquid to be atomized in the liquid storage bin is guided to the atomization piece for atomization, and the top mechanism is arranged to top the liquid guide piece upward to keep pasting to the back of the atomization piece.

[0005] Further, the hard pipe body for installing the liquid guide piece is included, the pipe body initial end is inserted into the liquid storage bin and extends to the bottom of the bin, and the tail end extends to the back of the atomization piece;The side wall of the pipe body initial end is provided with a gap, the liquid guide piece is installed in the pipe cavity of the pipe body, and the lower end of the liquid guide piece is communicated with the liquid storage bin through the gap, and the upper end is pasted to the back of the atomization piece after the tail end of the pipe body is pulled out.

[0006] Further, the tail end of the pipe body is provided with a radially outward flange, and the top mechanism is arranged on the outside of the pipe body, and the flange of the pipe body is upwardly topped to upwardly top the liquid guide piece to keep pasting to the back of the atomization piece.

[0007] Further, the top mechanism is a spring, and the spring is sleeved on the outside of the pipe body.

[0008] Further, the inner side wall of the pipe body extends radially inward in the pipe cavity and is provided with a plurality of friction strips for frictionally fixing the liquid guide piece.

[0009] Further, a first through hole is formed on the wall of the liquid storage bin, and an axial positioning groove is formed on the side wall of the first through hole. The pipe body is partially radially outwardly extended with a positioning block, the pipe body is inserted into the liquid storage bin through the first through hole, and the positioning block is inserted into the positioning groove, so that the pipe body is positioned.

[0010] Further, a shell is provided, and the liquid storage bin is installed in the shell. A wool gasket is arranged between the bottom surface of the liquid storage bin and the inner bottom wall of the shell to buffer and stabilize the liquid storage bin.

[0011] Further, the bottom surface of the liquid storage bin is provided with a containing position, and the wool gasket (34) is installed and contained in the containing position.

[0012] Further, the liquid storage bin is made of transparent material, and the shell is made of transparent material corresponding to the transparent part of the liquid storage bin.

[0013] Further, the liquid guide is a liquid guide cotton.

[0014] Beneficial effect: The liquid guide is upwardly pressed against the back surface of the atomizing piece by the pressing mechanism. Thus, even if the liquid guide becomes heavy and soft after absorbing the liquid to be atomized and is downwardly deviated, the liquid guide can be kept against the back surface of the atomizing piece upwardly under the pressing of the pressing mechanism, and the original atomizing effect can be kept after long time use. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 is a structural schematic diagram of the atomizing machine, and the liquid supplement bottle is connected and installed in the liquid supplement hole of the atomizing machine.

[0016] Figure 2 is a structural schematic diagram of the atomizing machine, and the liquid supplement bottle is connected and installed in the liquid supplement hole of the atomizing machine.

[0017] Figure 3 is a sectional view along the direction of A-A in FIG. Figure 1

[0018] Figure 4 is a partial exploded schematic diagram of the atomizing machine, and the first cover and the second cover are not shown.

[0019] Figure 5 is a structural schematic diagram of the liquid guide.

[0020] Figure 6 is a structural schematic diagram of the first cover and the second cover of the atomizing machine covering the liquid supplement hole and the atomizing hole, respectively.

[0021] Figure 7 is an exploded diagram of the bottom view of the liquid storage bin.

[0022] Figure 8 ​This is a simplified structural diagram from a top view of the liquid storage tank, pipe body, and liquid guiding cotton strips installed together.

[0023] Symbol explanation:

[0024] 1-Atomizer; 2-House; 21-Upper House; 211-Atomizing Through Hole; 212-Replenishment Hole; 22-Lower House; 3-Reservoir; 31-First Through Hole; 311-Bottom Wall of First Through Hole; 32-Second Through Hole; 33-Accommodation Position; 34-Wool Pad; 35-Positioning Groove; 4-Atomizing Plate; 51-Tube Body; 511-Starting End; 512-Ending End; 513-Flanged Edge; 514-Friction Strip; 515-Positioning Block; 52-Guiding Cotton Strip; 521-Lower End; 522-Upper End; 53-Spring; 6-Replenishment Bottle; 71-First Cover; 72-Second Cover; 81-Controller; 82-Control Switch; 83-Battery. Detailed Implementation

[0025] The present invention will be further described in detail below with reference to specific embodiments.

[0026] See Figure 2 The housing 2 of the high-utilization atomizer 1 includes an upper housing 21 and a lower housing 22 fused together. The upper housing 21 has an atomization through-hole 211 on its upper surface. See... Figure 3 The housing 2 has a liquid storage chamber 3 inside for storing the liquid to be atomized (such as water, essential oil, or aromatherapy liquid). The upper wall of the liquid storage chamber 3 has a first through hole 31 (combined with...). Figure 4 The first through hole 31 is aligned upwards and connected to the atomizing through hole 211. An ultrasonic atomizing plate 4 is installed in the atomizing through hole 211, with the front of the atomizing plate 4 facing outwards and the back facing the liquid storage tank 3. The controller 81 controls the connection to the atomizing plate 4; the controller 81 is connected to a control switch 82, which is installed on the upper surface of the upper housing 21 (see...). Figure 1 The controller 81 is operated by pressing a button; it is also connected to a battery 83. When the user presses the control switch 82, the controller 81 draws power from the battery 83 and supplies power to the atomizing plate 4. The atomizing plate 4 then starts vibrating at high frequency, dispersing and atomizing the liquid on it. The bottom surface of the liquid storage chamber 3 has a receiving position 33 (see...). Figure 7 A wool pad 34 is provided between the bottom surface of the liquid storage tank 3 and the inner bottom wall of the lower shell 22 (see...). Figure 3 The wool pad 34 is installed and housed in the housing 33, which can buffer and stabilize the liquid storage tank 3 during the high-frequency vibration of the atomizing plate 4, so that the liquid storage tank 3 fits and does not impact the lower shell 22.

[0027] See Figure 3A hard tube body 51 is arranged in the first through hole 31, and the initial end 511 of the tube body 51 extends into the liquid storage chamber 3 through the first through hole 31 and reaches the bottom of the liquid storage chamber 3, and the terminal end 512 extends upward and approaches the back of the atomizing sheet 4. Figure 8 The inner side wall of the tube body 51 extends radially inward and has four friction strips 514 in the tube cavity, and the four friction strips 514 are arranged at intervals around the tube body 51. The liquid guiding cotton strip 52 is arranged in the tube body 51 and is fixed by the four friction strips 514 of the tube body 51. Since the liquid guiding cotton strip 52 only contacts the four friction strips 514 on a partial surface, when the user inserts the liquid guiding cotton strip 52 into the tube body 51, the liquid guiding cotton strip 52 is only subjected to a friction force at the position where it contacts the four friction strips 514, and the friction force is not too large. Figure 3 The side wall of the initial end 511 of the tube body 51 is provided with a notch (see Figure 5 The lower end 521 of the liquid guiding cotton strip 52 communicates with the liquid storage chamber 3 through the notch of the tube body 51, and the upper end 522 of the liquid guiding cotton strip 52 extends out of the terminal end 512 of the tube body 51 and closely adheres to the back of the atomizing sheet 4, which serves as a liquid guiding member and continuously guides the liquid to be atomized in the liquid storage chamber 3 to the back of the atomizing sheet 4 for atomization. The outer wall of the tube body 51 is partially provided with a positioning block 515 extending radially outward, and the side wall of the first through hole 31 is provided with an axially arranged positioning groove 35; in the state that the tube body 51 extends into the liquid storage chamber 3 through the first through hole 31, the positioning block 515 is aligned with and clamped into the positioning groove 35, so as to position the tube body 51 and ensure that the notch of the initial end 511 of the tube body 51 can approach the bottom of the liquid storage chamber 3 downward in the state that the tube body 51 extends into the first through hole 31, so that the lower end 521 of the liquid guiding cotton strip 52 in the tube body 51 can approach the bottom of the liquid storage chamber 3 as much as possible, and the liquid guiding cotton strip 52 can guide the liquid to be atomized at the bottom of the liquid storage chamber 3 to the back of the atomizing sheet 4.

[0028] After the liquid guiding cotton strip 52 absorbs the liquid to be atomized, the whole liquid guiding cotton strip 52 becomes heavy and soft, and under the action of gravity, the liquid guiding cotton strip 52 is prone to downward deviation after long-term use, which causes the upper end 522 of the liquid guiding cotton strip 52 to not completely adhere to the back of the atomizing sheet 4, thereby affecting the atomization effect. Therefore, see Figure 5 The terminal end 512 of the tube body 51 is provided with a radially outward flange 513, and the tube body 51 is sleeved with a spring 53, and the spring 53 is clamped between the flange 513 and the first through hole 31 (see Figure 3) between the bottom wall 311 and the pipe body 51 flange 513, the liquid guide cotton 52 is upwardly pressed against the back of the atomizing sheet 4 by the pipe body 51, preventing the liquid guide cotton 52 from separating from the back of the atomizing sheet 4. Even if the liquid guide cotton 52 becomes heavy and soft after absorbing the liquid to be atomized and shifts downward, it can still be kept upwardly attached to the back of the atomizing sheet 4 under the pressing of the spring 53, and the original atomizing effect can be maintained after long-term use. In this embodiment, the pipe body 51 flange 513 is arranged at the end portion 512, and the spring 53 is used as the pressing mechanism to press the pipe body 51 flange 513 upwardly to press the liquid guide cotton 52 upwardly to keep it attached to the back of the atomizing sheet 4. In other embodiments, the pipe body 51 flange 513 can be arranged at the beginning portion 511, and the pressing mechanism can be a small extension motor instead of the spring 53.

[0029] See Figure 3 and Figure 4 A threaded through hole is formed in the center of the upper surface of the upper shell 21, which is a liquid supplement hole 212. Correspondingly, a second through hole 32 is formed in the upper surface of the liquid storage compartment 3, which communicates with the space inside the compartment. The second through hole 32 is aligned with and communicates with the liquid supplement hole 212. When the liquid to be atomized in the liquid storage compartment 3 is depleted and needs to be supplemented, a supplement bottle 6 containing the liquid to be atomized is taken, with the bottle mouth facing upward. Then the atomizing machine 1 is inverted, with the liquid supplement hole 212 of the shell 2 facing downward and aligned with the bottle mouth of the supplement bottle 6. Then the supplement bottle 6 is screwed into the liquid supplement hole 212 for docking. After docking, the user turns over the atomizing machine 1 together with the supplement bottle 6 that has been docked with the liquid supplement hole 212. After turning over, the atomizing machine 1 is restored to the upright position, and the supplement bottle 6 is inverted and located above the shell 2 with the bottle mouth facing downward (as shown in Figure 1 、 3 The liquid to be atomized in the supplement bottle 6 flows into the liquid storage compartment 3 through the liquid supplement hole 212 and the second through hole 32 under the action of gravity for liquid supplement. After liquid supplement is completed, the liquid guide cotton 52 can guide the liquid to be atomized in the liquid storage compartment 3 to the atomizing sheet 4 for atomization, as described above. During the atomization process, the supplement bottle 6 can be kept docked with the liquid supplement hole 212, as shown in Figure 1 、 3 , or it can be directly detached from the liquid supplement hole 212. After the supplement bottle 6 is detached from the liquid supplement hole 212, it can be stored in the liquid storage compartment 3, as shown in Figure 6The first cover 71 is used to cover the liquid supplement hole 212. The second cover 72 is arranged at the atomization hole 211. If the atomizer 1 is not used for a short time, the second cover 72 is used to cover the atomization hole 211 to prevent the liquid to be atomized in the liquid storage compartment 3 from evaporating. When atomization is needed, the second cover 72 is removed from the atomization hole 211 to expose the atomization hole 211. In the embodiment, the first cover 71 and the second cover 72 are soft plugs and are used to cover the liquid supplement hole 212 and the atomization hole 211 respectively by interference fit. In other embodiments, the first cover 71 and the second cover 72 can be replaced by screw caps and are respectively screwed to the liquid supplement hole 212 and the atomization hole 211 to cover the holes. The first cover 71 and the second cover 72 can be used as decorative parts to cover the holes and play a decorative role.

[0030] In the embodiment, the shell 2 and the liquid storage compartment 3 are made of transparent materials. The user can directly observe the condition of the liquid to be atomized in the liquid storage compartment 3 from the outside of the shell 2. In other embodiments, the liquid storage compartment 3 can be made of transparent materials only in a partial region. The shell 2 can also be made of transparent materials only in a region corresponding to the transparent region of the liquid storage compartment 3. In the embodiment, the upper shell 21 and the lower shell 22 are fused together by high-frequency plastic welding. In other embodiments, the upper shell 21 and the lower shell 22 can be connected and installed together by means of bolt connection, screw connection or threaded connection.

[0031] The above description is only an embodiment of the present application and does not limit the patent protection scope. Those skilled in the art can make non-essential changes or substitutions on the basis of the present application and still fall within the patent protection scope.

Claims

1. A high-utilization atomizer, comprising a liquid storage tank for holding a liquid to be atomized, with an atomizing plate disposed above the liquid storage tank; and a liquid guiding member, the lower end of which extends into the liquid storage tank and the upper end of which faces upward and adheres to the back of the atomizing plate, guiding the liquid to be atomized in the liquid storage tank to the atomizing plate for atomization, characterized in that, The guide liquid piece is upwardly abutted to keep abutting against the back of the atomizing piece by the abutting mechanism.

2. The atomizer of claim 1, wherein, The hard tube body for mounting the guide liquid piece has a beginning end part penetrating into the liquid storage bin and extending to the bottom of the bin and a terminal end part extending to near the back of the atomizing piece, the side wall of the beginning end part is provided with a notch, the guide liquid piece is mounted in the tube cavity of the tube body, the lower end part of the guide liquid piece communicates with the liquid storage bin through the notch and the upper end part abuts against the back of the atomizing piece after penetrating out of the terminal end part of the tube body.

3. The atomizer of claim 2, wherein, The terminal end part of the tube body is provided with a radially outward flange, the abutting mechanism is arranged outside the tube body, and the flange of the tube body is used to upwardly abut the guide liquid piece to keep abutting against the back of the atomizing piece.

4. The atomizer of claim 3, wherein The abutting mechanism is a spring, which is sleeved outside the tube body.

5. The atomizer of claim 2, wherein The inner side wall of the tube body extends radially inwardly into the tube cavity and is provided with a plurality of friction strips for frictionally fixing the guide liquid piece.

6. The atomizer of claim 2, wherein, The bin wall of the liquid storage bin is provided with a first through hole, the first through hole is provided with an axially arranged positioning groove along the side wall of the first through hole, the outer wall of the tube body is partially provided with a radially outward positioning clamping block, the tube body penetrates into the liquid storage bin through the first through hole, the positioning clamping block is clamped into the positioning groove, and the tube body is positioned in this way.

7. The atomizer of claim 1, wherein The liquid storage bin is mounted inside the shell, and a wool gasket for buffering and stabilizing the liquid storage bin is arranged between the bottom surface of the liquid storage bin and the inner bottom wall of the shell.

8. The atomizer of claim 7, wherein, The bottom surface of the liquid storage bin is provided with a containing position, and the wool gasket is mounted and contained in the containing position.

9. The atomizer of claim 7, wherein, The liquid storage bin is made of transparent material, and the shell is made of transparent material corresponding to the transparent part of the liquid storage bin.

10. The atomizer according to any one of claims 1 to 9, wherein The guide liquid piece is a guide cotton bar.