Atomization device capable of sealing liquid storage bottle to prevent bacterium breeding

By introducing a sealing structure into the nebulizer, the problem of bacterial growth caused by contact between the liquid medicine and air is solved, achieving sealed storage of the liquid medicine and effectively preventing bacterial growth, extending the shelf life of the liquid medicine, and improving the health and safety of users.

CN224085775UActive Publication Date: 2026-04-07SHENZHEN SMART EYE INTELLIGENT TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-14
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Existing nebulizers are prone to bacterial growth when the liquid medicine comes into contact with air, which shortens the shelf life of the medicine and poses a risk to the user's health.

Method used

An atomizing device comprising a body, an atomizer, a guide tube, and a sealing structure has been designed. Through the driving component and sealing component in the sealing structure, the outlet of the liquid storage bottle or the guide tube can be sealed when not in use, reducing the contact between the liquid and air.

Benefits of technology

It effectively prevents bacterial growth, extends the shelf life of the medicine, and improves user safety.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224085775U_ABST
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Abstract

The utility model discloses an atomizing device capable of sealing a liquid storage bottle to prevent bacterium breeding, which comprises a body, an atomizer, a flow guide pipe and a sealing structure, the body is provided with a mounting groove, the liquid storage bottle is separably connected to the mounting groove, and the liquid storage bottle is provided with a liquid outlet communicated with the mounting groove; the atomizer is arranged on the body and used for atomizing and spraying out liquid in the liquid storage bottle; one end of the flow guide pipe communicates with the mounting groove, the other end is connected with the input end of the atomizer, and the flow guide pipe is used for allowing liquid in the liquid storage bottle to flow to the input end of the atomizer; the sealing structure comprises a driving part and a sealing part, the driving part is movably arranged on the body, and the sealing part is driven by the driving part to extend into the mounting groove and plug the liquid outlet or extrude the flow guide pipe to seal liquid in the liquid storage bottle. According to the atomizing device capable of sealing the liquid storage bottle and preventing bacterium breeding, contact between liquid medicine and air can be reduced, and bacterium breeding is effectively prevented.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a kind of atomization devices field, especially a kind of atomization device of sealed liquid storage bottle prevents bacteria breeding. BACKGROUND

[0002] The existing atomization device is generally provided with an atomizer and a replaceable medical liquid bottle. The medical liquid bottle is installed to the atomizer after being uncapped. The atomizer atomizes and sprays the medical liquid in the medical liquid bottle. However, when the atomizer does not atomize the medical liquid in the medical liquid bottle, the medical liquid continuously contacts with air, which can easily cause a large amount of bacteria breeding and greatly shorten the shelf life. The user using such unclean medical liquid can have a risk of causing adverse effects on the body. SUMMARY

[0003] The utility model aims to provide a kind of atomization device of sealed liquid storage bottle prevents bacteria breeding, which can reduce the contact between medical liquid and air and effectively prevent bacteria breeding.

[0004] To achieve the above-mentioned purpose, the utility model discloses a kind of atomization device of sealed liquid storage bottle prevents bacteria breeding, it includes: body, atomizer, flow guide pipe and sealing structure, the body is provided with installation groove, liquid storage bottle is detachably connected to the installation groove, the liquid storage bottle is provided with the liquid outlet that communicates with the installation groove;The atomizer is arranged in the body, and the atomizer is used to atomize and spray the liquid of the liquid storage bottle;One end of the flow guide pipe is communicated with the installation groove, and the other end is connected with the input end of the atomizer, and the flow guide pipe is used for the liquid of the liquid storage bottle to flow to the input end of the atomizer;The sealing structure includes a driving member and a sealing member, the driving member is movably arranged in the body, and the sealing member is driven by the driving member to extend into the installation groove and plug the liquid outlet or to extrude the flow guide pipe to seal the liquid of the liquid storage bottle.

[0005] Optionally, the body is further provided with a connecting hole communicated with the installation groove, the installation groove is used for mounting the end of the liquid storage bottle provided with the liquid outlet, one end of the sealing member is threadedly connected to the connecting hole, and the other end is fixedly connected with the driving member, the driving member is rotatably arranged in the body, when the driving member is rotated, one end of the sealing member close to the liquid storage bottle approaches or moves away from the liquid outlet to plug or open the liquid outlet.

[0006] Optionally, the driving member is rotatably disposed on the body. The driving member has a first spiral portion corresponding to the sealing member, and the sealing member has a second spiral portion at one end near the driving member. When the driving member is rotated in the forward direction, the first spiral portion and the second spiral portion are spirally engaged to move the sealing member away from the guide tube and release the guide tube. When the driving member is rotated in the reverse direction, the first spiral portion rotates and pushes the second spiral portion to move the sealing member closer to the guide tube and squeeze the guide tube.

[0007] Optionally, the sealing member is provided with a connecting groove and an elastic member at one end near the guide tube. One end of the elastic member is inserted into the connecting groove, and the other end abuts against the body. When the first spiral part rotates and pushes the second spiral part, the sealing member compresses the elastic member. When the first spiral part and the second spiral part are spirally engaged, the elastic member elastically expands to push the sealing member to release the guide tube.

[0008] Optionally, the driving component is provided with a mist outlet corresponding to the atomizer. When the driving component is rotated in the forward direction to loosen the guide tube by the sealing element, the mist outlet is aligned with the output end of the atomizer. When the driving component is rotated in the reverse direction to squeeze the guide tube by the sealing element, the mist outlet is misaligned with the output end of the atomizer.

[0009] Optionally, the body includes a first body and a second body, the driving member is rotatably mounted on the bottom of the first body, the driving member is provided with a rotation limiting hole, the first body is provided with a connecting part, the connecting part passes through the rotation limiting hole and is fixedly connected to the second body, and the rotation limiting hole extends along the circumference of the first body.

[0010] Optionally, the atomizing device further includes a detachable fastener, and the main body is provided with a limiting part corresponding to the mounting groove. After the liquid storage bottle is installed in the mounting groove, the fastener is snapped into place with the limiting part to limit the liquid storage bottle.

[0011] Optionally, the atomizing device further includes a vibration driving device, the output end of which is connected to the guide tube. The vibration driving device is used to drive the guide tube to vibrate so that the liquid flowing into the guide tube flows to the input end of the atomizer.

[0012] Optionally, the main body is equipped with a sensor and a control device. The control device is connected to the sensor and the smart terminal respectively. The sensor is used to detect whether the liquid storage bottle is installed on the main body. The control device is used to calculate the installation time of the liquid storage bottle based on the detection information of the sensor and send a reminder message to the smart terminal.

[0013] Optionally, a germicidal lamp is provided inside the body, which is used to sterilize the input end and / or output end of the atomizer.

[0014] This utility model includes a main body, an atomizer, a guide tube, and a sealing structure. The liquid storage bottle is installed in the mounting groove of the main body. The guide tube connects the mounting groove to the input end of the atomizer, so that the liquid in the storage bottle flows to the input end of the atomizer and is atomized and sprayed out by the atomizer. The sealing structure includes a driving component and a sealing component. When the atomizer is not in use, the user can control the driving component to drive the sealing component to extend into the mounting groove and plug the liquid outlet, or to squeeze the guide tube to seal the liquid in the storage bottle, thereby reducing the contact between the liquid and air and effectively preventing bacterial growth. Attached Figure Description

[0015] Figure 1 This is a perspective structural diagram of the first embodiment of the atomizing device for preventing bacterial growth in a sealable liquid storage bottle according to this utility model.

[0016] Figure 2 This is an exploded structural diagram of the first embodiment of the atomizing device for preventing bacterial growth in a sealable liquid storage bottle according to the present invention.

[0017] Figure 3 This is another exploded structural diagram of the first embodiment of the atomizing device for preventing bacterial growth in a sealable liquid storage bottle according to the present invention.

[0018] Figure 4 for Figure 3 A three-dimensional structural diagram from another angle.

[0019] Figure 5 This is a cross-sectional view of the second embodiment of the atomizing device for preventing bacterial growth in a sealable liquid storage bottle according to this utility model. Detailed Implementation

[0020] To explain in detail the technical content, structural features, objectives and effects of this utility model, the following description is provided in conjunction with the embodiments and accompanying drawings.

[0021] Please see Figures 1 to 5This utility model discloses an atomizing device for sealing a liquid storage bottle to prevent bacterial growth, comprising: a body 1, an atomizer 2, a guide tube 3, and a sealing structure 4. The body 1 is provided with an installation groove 11, and the liquid storage bottle 100 is detachably connected to the installation groove 11. The liquid storage bottle 100 is provided with an outlet 101 communicating with the installation groove 11. The atomizer 2 is disposed on the body 1 and is used to atomize and spray the liquid from the liquid storage bottle 100. One end of the guide tube 3 is connected to the installation groove 11, and the other end is connected to the input end of the atomizer 2. The guide tube 3 is used to allow the liquid from the liquid storage bottle 100 to flow to the input end of the atomizer 2. The sealing structure 4 includes a driving member 41 and a sealing member 42. The driving member 41 is movably disposed on the body 1, and the sealing member 42, driven by the driving member 41, is used to extend into the installation groove 11 and plug the outlet 101 or to squeeze the guide tube 3 to seal the liquid in the liquid storage bottle 100.

[0022] This utility model includes a body 1, an atomizer 2, a guide tube 3, and a sealing structure 4. The liquid storage bottle 100 is installed in the mounting groove 11 of the body 1. The guide tube 3 connects the mounting groove 11 with the input end of the atomizer 2, so that the liquid in the liquid storage bottle 100 flows to the input end of the atomizer 2 and is atomized and sprayed out by the atomizer 2. The sealing structure 4 includes a driving member 41 and a sealing member 42. When the atomizing device is not in use, the user can control the driving member 41 to drive the sealing member 42 to extend into the mounting groove 11 and plug the liquid outlet 101, or to squeeze the guide tube 3 to seal the liquid in the liquid storage bottle 100, thereby reducing the contact between the liquid and air and effectively preventing bacterial growth.

[0023] See Figure 5 In the second embodiment, the body 1 is also provided with a connecting hole 12 communicating with the mounting groove 11. The mounting groove 11 is used for mounting one end of the liquid storage bottle 100 which is provided with the liquid outlet 101. One end of the sealing member 42 is threaded to the connecting hole 12, and the other end is fixedly connected to the driving member 41. The driving member 41 is rotatably disposed on the body 1. When the driving member 41 is rotated, the end of the sealing member 42 near the liquid storage bottle 100 moves closer to or further away from the liquid outlet 101 to block or open the liquid outlet 101, which helps to reduce the contact between the liquid and air and avoid bacterial growth.

[0024] Specifically, in this embodiment, the end of the seal 42 near the liquid storage bottle 100 is convex conical, and the connection hole 12 is provided at the bottom of the mounting groove 11 and coaxially arranged with the mounting groove 11, so that the top end of the seal 42 can be inserted into the liquid outlet 101 of the liquid storage bottle 100 through the connection hole 12 and the mounting groove 11, but is not limited thereto.

[0025] See Figures 1 to 4In the first embodiment, the driving member 41 is rotatably disposed on the body 1. The driving member 41 is provided with a first spiral part 411 corresponding to the sealing member 42. The sealing member 42 is provided with a second spiral part 421 at one end near the driving member 41. When the driving member 41 is rotated in the forward direction, the first spiral part 411 and the second spiral part 412 are spirally engaged so that the sealing member 42 moves away from the guide tube 3 and loosens the guide tube 3. When the driving member 41 is rotated in the reverse direction, the first spiral part 411 rotates and pushes the second spiral part 412 so that the sealing member 42 moves towards the guide tube 3 and squeezes the guide tube 3. This helps to reduce the contact between the medicine liquid and air and avoid bacterial growth.

[0026] Specifically, in this embodiment, the driving member 41 is cylindrical in shape, the first spiral part 411 is located in the middle of the interior of the driving member 41, the body 1 is provided with a movable guide groove 13 corresponding to the first spiral part 411, the guide tube 3 passes through the movable guide groove 13 and is connected to the atomizer 2, and the sealing member 42 can be slidably disposed in the movable guide groove 13 along the vertical direction and squeeze or release the guide tube 3 under the push of the second spiral part 412, but is not limited thereto.

[0027] See Figures 1 to 4 In the first embodiment, the sealing member 42 is provided with a connecting groove 422 and an elastic member 423 at one end near the guide tube 3. One end of the elastic member 423 is inserted into the connecting groove 422, and the other end abuts against the body 1. When the first spiral part 411 rotates and pushes the second spiral part 412, the sealing member 42 compresses the elastic member 423. When the first spiral part 411 and the second spiral part 412 are spirally engaged, the elastic member 423 elastically expands to push the sealing member 42 to release the guide tube 3, which is beneficial to improving the structural stability of the sealing member 42 squeezing the guide tube 3.

[0028] Specifically, in this embodiment, the guide tube 3 is arc-shaped, and one end of the guide tube 3 near the liquid storage bottle 100 is connected to the mounting groove 11 through the bottom wall of the mounting groove 11. The sealing member 42 is provided with elastic members 423 on both sides of the guide tube 3 in the lateral direction, but is not limited to this.

[0029] See Figures 1 to 5 The drive component 41 is provided with a mist outlet 412 corresponding to the atomizer 2. When the drive component 41 is rotated in the forward direction to loosen the guide tube 3 by the seal 42, the mist outlet 412 is aligned with the output end of the atomizer 2. When the drive component 41 is rotated in the reverse direction to squeeze the guide tube 3 by the seal 42, the mist outlet 412 is misaligned with the output end of the atomizer 2, which helps to improve the cleanliness of the output end of the atomizer 2.

[0030] Specifically, in the first embodiment, the atomizer 2 is disposed on the side of the main body 1, and the drive member 41 is cylindrical in shape. The side wall of the drive member 41 is provided with a through-hole 412 corresponding to the atomizer 2, but is not limited thereto. In the second embodiment, the atomizer 2 and the drive member 41 are configured in the same way as in the first embodiment. After the drive member 41 is rotated in the forward direction to open the liquid outlet 101 with the sealing member 42, the atomizer 412 is configured to correspond with the output end of the atomizer 2. After the drive member 41 is rotated in the reverse direction to block the liquid outlet 101 with the sealing member 42, the atomizer 412 is misaligned with the output end of the atomizer 2.

[0031] See Figures 1 to 5 The main body 1 includes a first main body 14 and a second main body 15. The driving member 41 is rotatably mounted on the bottom of the first main body 14. The driving member 41 is provided with a rotation limiting hole 413. The first main body 14 is provided with a connecting part 141. The connecting part 141 passes through the rotation limiting hole 413 and is fixedly connected to the second main body 15. The rotation limiting hole 413 extends along the circumference of the first main body 14, which is beneficial to improving the operational flexibility and structural stability of the driving member 41.

[0032] Specifically, in the first and second embodiments, the driving member 41 is cylindrical, the first body 14 is cylindrical and disposed inside the driving member 41, and the second body 15 is disposed on the lower side of the driving member 41, but not limited thereto. The atomizer 2 is disposed on the side of the first body 14, and the mist outlet 412 is disposed on the side of the driving member 41 corresponding to the atomizer 2.

[0033] Specifically, in the first embodiment, rotation limiting holes 413 are respectively provided on opposite sides of the bottom of the drive member 41. The extension trajectory of the rotation limiting holes 413 is arc-shaped. The connecting part 141 of the first main body 14 corresponding to the rotation limiting holes 413 is column-shaped. The connecting part 141 restricts the rotation angle of the drive member 41 through the rotation limiting holes 413 so that the drive member 41 can achieve a certain degree of self-rotation under user operation, but is not limited thereto.

[0034] See Figures 1 to 4 The atomizing device that can seal the liquid storage bottle to prevent bacterial growth also includes a detachable buckle 5. The main body 1 is provided with a limiting part 16 corresponding to the mounting groove 11. After the liquid storage bottle 100 is installed in the mounting groove 11, the buckle 5 is snapped into place with the limiting part 16 to limit the liquid storage bottle 100 and improve the installation stability of the liquid storage bottle 100 when it is installed in the main body 1.

[0035] Specifically, in the first embodiment, two limiting portions 16 are provided on opposite sides of the top of the first main body 14. Multiple continuous engaging grooves 161 are provided on the inner side of the two limiting portions 16. Engaging portions 51 are provided on opposite sides of the fastener 5. Engaging protrusions 511 are provided on the outer side of the engaging portions 51. After the liquid storage bottle 100 is installed in the mounting groove 11, the fastener 5 is pressed against the end of the liquid storage bottle 100 away from the main body 1. The engaging protrusions 511 engage with the corresponding engaging grooves 161 to restrict the liquid storage bottle 100 from moving away from the main body 1. The multiple engaging grooves 161 and engaging protrusions 511 are provided to accommodate different sizes of liquid storage bottles 100, resulting in high compatibility.

[0036] See Figures 1 to 4 The nebulizer that can seal the liquid storage bottle to prevent bacterial growth also includes a vibration drive device 6. The output end of the vibration drive device 6 is connected to the guide tube 3. The vibration drive device 6 is used to drive the guide tube 3 to vibrate so that the liquid flowing into the guide tube 3 flows to the input end of the nebulizer 2, which helps to accelerate the flow of the liquid to the input end of the nebulizer 2 and improve the nebulization efficiency of the nebulizer.

[0037] Specifically, in the first embodiment, the guide tube 3 is arc-shaped, and the output end of the vibration driving device 6 is fixedly connected to the end of the guide tube 3 near the atomizer 2. When the seal 42 loosens the guide tube 3, the vibration driving device 6 is used to drive the guide tube 3 to vibrate, but is not limited to this.

[0038] See Figures 1 to 4 The main body 1 is equipped with a sensor (not shown) and a control device (not shown). The control device is connected to the sensor and the smart terminal respectively. The sensor is used to detect whether the main body 1 is equipped with a liquid storage bottle 100. The control device is used to calculate the installation time of the liquid storage bottle 100 based on the detection information of the sensor and send a reminder message to the smart terminal.

[0039] Specifically, in the first embodiment, the sensor is an infrared sensor. When the liquid storage bottle 100 is installed in the mounting slot 11 and blocks the light emitted by the infrared sensor, the infrared sensor sends detection information to the control device. However, it is not limited to this. In some embodiments, the sensor can also be a push switch or a Hall switch. After the liquid storage bottle 100 is installed in the mounting slot 11, it touches the push switch. Alternatively, a magnetic element is provided on the liquid storage bottle 100. After the liquid storage bottle 100 is installed in the mounting slot 11, the magnetic element triggers the Hall switch.

[0040] Specifically, in the first embodiment, the control device is located in the second body 15. After receiving the detection information, the control device starts recording the installation time of the liquid storage bottle 100 and compares the installation time with the expiration date of the liquid in the liquid storage bottle 100 (e.g., 30 days). If the installation time of the liquid storage bottle 100 exceeds the expiration date of the liquid, the control device sends a reminder message of the expired liquid to the user's terminal (e.g., mobile phone) through the sending device to remind the user to replace the liquid storage bottle 100 in time, but it is not limited to this.

[0041] See Figures 1 to 4 The main body 1 is equipped with a germicidal lamp (not shown in the figure). The germicidal lamp is used to sterilize the input end and / or output end of the atomizer 2, which helps to prevent bacteria from growing in the atomizer 2 and ensures that the atomized medicine is sprayed out clean.

[0042] Specifically, in this embodiment, the germicidal lamp is a UV germicidal lamp, and the main body 1 is provided with two germicidal lamps, which are respectively arranged on both sides of the atomizer 2 to sterilize the input end and the output end of the atomizer 2, but not limited to this.

[0043] The above-disclosed embodiments are merely preferred embodiments of the present utility model and should not be construed as limiting the scope of the present utility model. Therefore, any equivalent changes made in accordance with the scope of the present utility model application are still within the scope of the present utility model.

Claims

1. An atomizing device for sealing a liquid storage bottle to prevent bacterial growth, characterized in that, include: The main body is provided with a mounting groove, and a liquid storage bottle is detachably connected to the mounting groove. The liquid storage bottle is provided with a liquid outlet communicating with the mounting groove. Atomizer, which is disposed on the main body, is used to atomize and spray the liquid from the storage bottle; A flow guide tube, one end of which is connected to the mounting groove and the other end of which is connected to the input end of the atomizer, is used to allow the liquid from the storage bottle to flow to the input end of the atomizer; A sealing structure includes a driving member and a sealing member. The driving member is movably disposed on the body, and the sealing member, driven by the driving member, is used to extend into the mounting groove and plug the liquid outlet or to squeeze the guide tube to seal the liquid in the storage bottle.

2. The atomizing device for preventing bacterial growth in a sealable liquid storage bottle according to claim 1, characterized in that, The main body is also provided with a connection hole communicating with the mounting groove. The mounting groove is used for mounting one end of the liquid storage bottle with the liquid outlet. One end of the sealing member is threaded to the connection hole, and the other end is fixedly connected to the driving member. The driving member is rotatably disposed on the main body. When the driving member is rotated, the end of the sealing member near the liquid storage bottle moves closer to or away from the liquid outlet to block or open the liquid outlet.

3. The atomizing device for preventing bacterial growth in a sealable liquid storage bottle according to claim 1, characterized in that, The driving member is rotatably disposed on the body. The driving member has a first spiral portion corresponding to the sealing member, and the sealing member has a second spiral portion at one end near the driving member. When the driving member is rotated in the forward direction, the first spiral portion and the second spiral portion are spirally engaged to move the sealing member away from the guide tube and release the guide tube. When the driving member is rotated in the reverse direction, the first spiral portion rotates and pushes the second spiral portion to move the sealing member closer to the guide tube and squeeze the guide tube.

4. The atomizing device for preventing bacterial growth in a sealable liquid storage bottle according to claim 3, characterized in that, The sealing element is provided with a connecting groove and an elastic element at one end near the guide tube. One end of the elastic element is inserted into the connecting groove, and the other end abuts against the body. When the first spiral part rotates and pushes the second spiral part, the sealing element compresses the elastic element. When the first spiral part and the second spiral part are spirally engaged, the elastic element elastically expands to push the sealing element to release the guide tube.

5. The atomizing device for preventing bacterial growth in a sealable liquid storage bottle according to claim 3, characterized in that, The driving component is provided with a mist outlet corresponding to the atomizer. When the driving component is rotated in the forward direction to loosen the guide tube by the sealing element, the mist outlet is aligned with the output end of the atomizer. When the driving component is rotated in the reverse direction to squeeze the guide tube by the sealing element, the mist outlet is misaligned with the output end of the atomizer.

6. The atomizing device for preventing bacterial growth in a sealable liquid storage bottle according to claim 2 or 3, characterized in that, The body includes a first body and a second body. The driving member is rotatably mounted on the bottom of the first body. The driving member is provided with a rotation limiting hole. The first body is provided with a connecting part. The connecting part passes through the rotation limiting hole and is fixedly connected to the second body. The rotation limiting hole extends along the circumference of the first body.

7. The atomizing device for preventing bacterial growth in a sealable liquid storage bottle according to claim 1, characterized in that, It also includes a detachable fastener. The main body is provided with a limiting part corresponding to the mounting groove. After the liquid storage bottle is installed in the mounting groove, the fastener is snapped into the limiting part to limit the liquid storage bottle.

8. The atomizing device for preventing bacterial growth in a sealable liquid storage bottle according to claim 1, characterized in that, It also includes a vibration drive device, the output end of which is connected to the guide tube. The vibration drive device is used to drive the guide tube to vibrate so that the liquid flowing into the guide tube flows to the input end of the atomizer.

9. The atomizing device for preventing bacterial growth in a sealable liquid storage bottle according to claim 1, characterized in that, The main body is equipped with a sensor and a control device. The control device is connected to the sensor and the smart terminal respectively. The sensor is used to detect whether the liquid storage bottle is installed on the main body. The control device is used to calculate the installation time of the liquid storage bottle based on the detection information of the sensor and send a reminder message to the smart terminal.

10. The atomizing device for preventing bacterial growth in a sealable liquid storage bottle according to claim 1, characterized in that, The body is equipped with a germicidal lamp, which is used to sterilize the input and / or output ends of the atomizer.