Disinfectable Bluetooth earphone box

By incorporating a silver ion channel component within the Bluetooth earphone case, and utilizing airflow to carry silver ions for disinfection, the problem of ineffective disinfection of Bluetooth earphones is solved, achieving active disinfection and safe use of Bluetooth earphones.

CN224037489UActive Publication Date: 2026-03-24CHENGDU MIAOMIAOWANGWANG TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-22
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

Existing Bluetooth earphone cases cannot effectively disinfect, causing used Bluetooth earphones to damage users' ear canals and affecting the user experience.

Method used

A silver ion channel component is installed inside the Bluetooth earphone case. Silver ions are carried by airflow to disinfect the earphone case. The combination of airflow and silver ion filter achieves active disinfection and avoids damage to the earphones.

Benefits of technology

It enables active disinfection of Bluetooth headsets, reducing the growth of germs, improving safety, protecting user health, and preventing headset damage.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224037489U_ABST
    Figure CN224037489U_ABST
Patent Text Reader

Abstract

The utility model discloses a sterilizable Bluetooth earphone box in the field of Bluetooth earphone boxes, which comprises a box body, an earphone cabin for placing an earphone body is arranged in the box body, an air inlet is arranged at the bottom of the box body and communicated with the earphone cabin, an air outlet pipe is arranged at the upper half part of the box body, one end of the air outlet pipe is communicated with the earphone cabin, and the other end of the air outlet pipe is communicated with the earphone cabin. The other end of the box body is communicated with the outside of the box body; a silver ion channel assembly is arranged between the air inlet and the earphone bin, one end of the silver ion channel assembly is communicated with the air inlet, and the other end of the silver ion channel assembly is communicated with the earphone bin.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of bluetooth headset box, specifically a disinfectable bluetooth headset box. BACKGROUND

[0002] At present, the bluetooth headset box can not be directly disinfected when storing the bluetooth headset, and can only protect the bluetooth headset in the form of passive antibiosis, but passive antibiosis can only reduce the breeding of bacteria in the bluetooth headset box, and cannot effectively antibacterial process the worn bluetooth headset, which can cause damage to the user's ear canal.

[0003] In the repeated wearing process, more users will have itching of the ear canal and other use problems, so the user needs to disinfect the bluetooth headset artificially, such as using alcohol cotton to wipe, washing the earplug sleeve or replacing the new earplug sleeve, which not only affects the user's experience, but also causes product damage due to user operation error.

[0004] Therefore, how to safely and effectively disinfect the bluetooth headset has become a problem to be solved in the field of bluetooth headset box. INVENTION CONTENTS

[0005] The utility model aims at overcoming the risk that the surface of the bluetooth headset cannot be disinfected due to the passive antibiosis of the bluetooth headset and the bluetooth headset box to resist the breeding of bacteria, thereby overcoming the harm to the user's ear canal, providing a disinfectable bluetooth headset box, utilizing the ventilation process in the bluetooth headset box, cooperating with silver ions to realize silver ion disinfection treatment on the environment in the bluetooth headset box and the bluetooth headset, thereby enhancing the active disinfection capacity of the bluetooth headset and improving the safety of the bluetooth headset.

[0006] The utility model mainly realizes the following technical scheme:

[0007] A disinfectable bluetooth headset box, comprising a box body, an earphone compartment for placing an earphone body is arranged in the box body, an air inlet is arranged at the bottom of the box body, the air inlet is communicated with the earphone compartment, an air outlet pipe is arranged on the upper half of the box body, one end of the air outlet pipe is communicated with the earphone compartment, and the other end of the air outlet pipe is communicated to the outside of the box body.

[0008] A silver ion channel assembly is arranged between the air inlet and the earphone compartment, one end of the silver ion channel assembly is communicated with the air inlet, and the other end of the silver ion channel assembly is communicated with the earphone compartment.

[0009] Further, the silver ion channel assembly comprises a double-circulation silver ion circulation cavity, a fan is arranged in the double-circulation silver ion circulation cavity, and the fan is used for driving air to flow from the air inlet to the earphone compartment.

[0010] The double-circulation silver ion circulation cavity is provided with a silver ion filter screen, which is located between the fan and the earphone compartment.

[0011] Further, the double-circulation silver ion circulation cavity comprises a first silver ion circulation cavity and a second silver ion circulation cavity, and a circulation cavity ventilation pipe is connected at the air inlet and respectively communicates with the first silver ion circulation cavity and the second silver ion circulation cavity.

[0012] The first silver ion circulation cavity and the second silver ion circulation cavity are of the same structure.

[0013] Further, the first silver ion circulation cavity comprises a cavity, which communicates with the circulation cavity ventilation pipe, and the fan is located at the communication position of the cavity and the circulation cavity ventilation pipe.

[0014] An outlet pipe is connected at a position on the cavity, which is staggered with the position of the circulation cavity ventilation pipe, and the outlet pipe communicates with the earphone compartment.

[0015] The silver ion filter screen is located in the cavity and between the fan and the outlet pipe.

[0016] Further, a main communication pipe is arranged on the side surface of the earphone compartment, which communicates with the double-circulation silver ion circulation cavity, and a first communication pipe and a second communication pipe are connected on the main communication pipe, the first communication pipe communicates with the bottom of the earphone compartment, and the second communication pipe communicates with the upper half of the earphone compartment.

[0017] Further, a porous convex rib is arranged in the earphone compartment, and the second communication pipe communicates with the earphone compartment through the porous convex rib.

[0018] Further, a buffer cavity is arranged in the box body, a gas bag capable of being stretched and contracted is arranged in the buffer cavity, a third communication pipe is fixed on the gas bag, one end of the third communication pipe communicates with the porous convex rib, and the other end of the third communication pipe communicates with the gas bag.

[0019] The second communication pipe communicates with the third communication pipe.

[0020] Further, the box body comprises an outer shell, and an inner filler is arranged in the outer shell, and the inner filler fills the gap between the earphone compartment and the outer shell.

[0021] Compared with the prior art, the utility model has the following beneficial effects:

[0022] (1) The gas enters the box body through the air inlet and flows in the silver ion channel assembly, and silver ions are carried in the gas in the process of flowing, so that the air with silver ions realizes the sterilization effect in the earphone compartment, and the air in the earphone compartment is renewed after the gas is discharged from the air outlet pipe, so that the silver ion sterilization and air flow are combined to reduce the breeding of bacteria in the Bluetooth earphone, thereby protecting the user's safety.

[0023] (2) The double-circulation silver ion circulation cavity can increase the path of air flow, so that the air can carry enough silver ion concentration to achieve the sterilization effect, and the release of silver ions is realized through the silver ion filter screen, which is a silver metal screen layer, so that the air flow and the release of silver ions are allowed.

[0024] (3) The porous convex rib can be placed under the earplug of the Bluetooth earphone, so that the air flowing out of the holes in the porous convex rib can directly act on the earplug, and the air flow can be effectively divided through the porous setting, so as to avoid the air flow directly acting on the Bluetooth earphone to blow the Bluetooth earphone, thereby avoiding the risk of damaging the Bluetooth earphone. BRIEF DESCRIPTION OF DRAWINGS

[0025] The accompanying drawings, which are included to provide a further understanding of the embodiments of the present application and constitute a part of the application, do not constitute a limitation to the embodiments of the present application. In the drawings:

[0026] Fig. 1 It is a structural schematic diagram of the present application;

[0027] Fig. 2 It is a sectional view of the present application;

[0028] Fig. 3 It is a first silver ion circulation cavity overhead sectional view of the present application;

[0029] The name corresponding to the reference signs is: 1, box body; 2, first silver ion circulation cavity; 3, second silver ion circulation cavity; 4, air inlet; 5, earphone body; 11, inner filling; 12, outer shell; 13, earphone compartment; 21, outlet pipe; 22, silver ion filter screen; 23, fan; 24, cavity; 25, main communication pipe; 26, first communication pipe; 27, second communication pipe; 41, air filter element; 42, circulation cavity ventilation pipe; 43, air outlet pipe; 44, air bag; 45, third communication pipe; 46, porous convex rib. DETAILED DESCRIPTION

[0030] In order to make the purpose, technical scheme and advantages of the utility model more clearly, the utility model is further described in detail below by combining with examples and drawings, the schematic implementation mode and the description of the utility model are only used for explaining the utility model, and do not be regarded as the limitation of the utility model.

[0031] Embodiment

[0032] As shown in Figs. 1-3 The utility model relates to a sterilizable bluetooth earphone box, including box body 1, earphone compartment 13 for placing earphone body 5 is equipped in the box body 1, the bottom of the box body 1 is equipped with air inlet 4, the air inlet 4 is communicated with the earphone compartment 13, the upper half of the box body 1 is equipped with air outlet pipe 43, one end of the air outlet pipe 43 is communicated with earphone compartment 13, and the other end is communicated to the outside of the box body 1.

[0033] The air inlet 4 and the earphone compartment 13 are equipped with silver ion channel components, one end of the silver ion channel components is communicated with the air inlet 4, and the other end is communicated with the earphone compartment 13.

[0034] At present, the bluetooth earphone box in the prior art usually only has two functions of accommodating bluetooth earphone and charging bluetooth earphone, and the contact of cerumen, dust and other objects during use of bluetooth earphone can cause the breeding of bacteria, and under the condition of long-time contact with human body, can cause human infection and other problems.The solution of the prior art to the problem is mainly to increase an antibacterial coating to avoid the breeding of bacteria, but the surface coating can only passively resist bacteria, and when an oil film is formed on the surface of the bluetooth earphone, the antibacterial effect is weakened.So the user usually actively cleans and disinfects the part of the bluetooth earphone in contact with the human body during use of the bluetooth earphone, and if the user processes the bluetooth earphone by self-disinfection, the bluetooth earphone can be damaged, or the cleaning is not in place and infection still occurs.

[0035] In the embodiment, the air inlet 4 is arranged at the bottom of the box body 1, the air outlet pipe 43 is arranged at the upper half of the box body 1, the gas flow channel from the air inlet 4 to the earphone compartment 13 to the air outlet pipe 43 is formed, and on this basis, the silver ion channel components are arranged between the air inlet 4 and the earphone compartment 13, so that the gas flow channel is formed as the air inlet 4 to the silver ion channel components to the earphone compartment 13 to the air outlet pipe 43.

[0036] In the embodiment, the gas enters the box 1 through the air inlet 4 and flows in the silver ion channel assembly, and silver ions are carried in the gas in the process of flowing, so that the air with silver ions can achieve the sterilization effect in the earphone compartment 13. After the sterilization is completed, the gas is discharged from the air outlet pipe 43 to the box 1, so that the air in the earphone compartment 13 is refreshed, and the combination of silver ion sterilization and air flow can reduce the breeding of bacteria in the Bluetooth earphone, thereby protecting the user's safety.

[0037] In the embodiment, the silver ion (Ag⁺) has a positive charge and combines with the negative charge of the bacterial cell membrane to destroy the integrity of the cell membrane, thereby achieving the sterilization effect. The continuous release of trace silver ions can form an antibacterial environment, thereby achieving the purpose of long-acting effect.

[0038] In the embodiment, the silver ion can be provided to the air by embedding a silver-plated metal mesh or a detachable silver ion filter (such as a silver zeolite composite material), so that the air flow contact sterilization is achieved.

[0039] In the embodiment, the silver ion release mode adopts the mode that meets the safety use standard in the prior art, so that the embodiment can be mass-produced.

[0040] Further, the silver ion channel assembly includes a double-circulation silver ion circulation cavity, and a fan 23 is arranged in the double-circulation silver ion circulation cavity. The fan 23 is used to drive the air to flow from the air inlet 4 to the earphone compartment 13.

[0041] A silver ion filter screen 22 is arranged in the double-circulation silver ion circulation cavity, and the silver ion filter screen 22 is located between the fan 23 and the earphone compartment 13.

[0042] In the embodiment, the double-circulation silver ion circulation cavity can increase the path of air flow, so that the air can carry a sufficient silver ion concentration to achieve the sterilization effect. The release of silver ions is realized through the silver ion filter screen 22, which is a silver metal mesh layer, so that the air flow can be allowed and the silver ions can be released.

[0043] The fan 23 is used to drive the air flow and control the air flow direction, so that the air carrying silver ions can effectively enter the earphone compartment 13 to achieve the sterilization effect.

[0044] Further, the double-circulation silver ion circulation cavity includes a first silver ion circulation cavity 2 and a second silver ion circulation cavity 3, and a circulation cavity ventilation pipe 42 is connected at the air inlet 4. The circulation cavity ventilation pipe 42 respectively communicates the first silver ion circulation cavity 2 and the second silver ion circulation cavity 3.

[0045] The first silver ion circulation cavity 2 and the second silver ion circulation cavity 3 have the same structure.

[0046] In the embodiment, the air enters the box body 1 from the air inlet, and then enters the first silver ion circulation cavity 2 and the second silver ion circulation cavity 3 through the circulation cavity ventilation pipe 42. The first silver ion circulation cavity 2 and the second silver ion circulation cavity 3 are independent of each other, so that the air can be shunted, and the unit flow of air can contact more silver ion filter screens 22, so that the air can carry enough silver ions to achieve disinfection when the air enters the earphone chamber 13.

[0047] The circulation ventilation pipe is connected with the first silver ion circulation cavity 2 and the second silver ion circulation cavity 3 respectively, and can increase the air flow, thereby enhancing the ventilation effect.

[0048] Further, the first silver ion circulation cavity 2 comprises a cavity 24, the cavity 24 is connected with the circulation cavity ventilation pipe 42, and the fan 23 is located at the connection position of the cavity 24 and the circulation cavity ventilation pipe 42.

[0049] The outlet pipe 21 is connected with the position of the circulation cavity ventilation pipe 42 on the cavity 24 in a staggered manner, and the outlet pipe 21 is connected with the earphone chamber 13.

[0050] The silver ion filter screen 22 is located in the cavity 24 and between the fan 23 and the outlet pipe 21.

[0051] In the embodiment, the fan 23 drives the air to flow from the silver ion filter screen 22 to the earphone chamber 13, and the outlet pipe 21 is used to connect the cavity 24 and the earphone chamber 13.

[0052] The position of the outlet pipe 21 on the cavity 24 and the circulation cavity ventilation pipe 42 is staggered, so as to provide a flow space for the silver ion filter screen 22, and achieve the purpose of effectively releasing silver ions.

[0053] Further, the side surface of the earphone chamber 13 is provided with a main communication pipe 25, the main communication pipe 25 is connected with the double-circulation silver ion circulation cavity, the main communication pipe 25 is connected with a first communication pipe 26 and a second communication pipe 27, the first communication pipe 26 is connected with the bottom of the earphone chamber 13, and the second communication pipe 27 is connected with the upper half of the earphone chamber 13.

[0054] In the embodiment, the main communication pipe 25 and the double circulation silver ion circulation cavity are communicated, so as to guide the air carrying silver ions into the first communication pipe 26 and the second communication pipe 27, the first communication pipe 26 is communicated with the bottom of the earphone box 13, so that the silver ions effectively cover the inside of the earphone box 13 from the bottom of the earphone box 13, and the second communication pipe 27 can effectively enhance the silver ion concentration of the earphone earplug part, so as to enhance the disinfection capacity of the earphone earplug part.

[0055] Further, the earphone box 13 is provided with a porous convex rib 46, and the second communication pipe 27 is communicated with the inside of the earphone box 13 through the porous convex rib 46.

[0056] The porous convex rib 46 in the embodiment can be placed under the earplug of the Bluetooth earphone, so that the air flowing out of the holes on the porous convex rib 46 can directly act on the earplug, and the air flow can be effectively divided through the porous setting, so as to avoid the air flow directly acting on the Bluetooth earphone to blow the Bluetooth earphone, and avoid the risk of damaging the Bluetooth earphone.

[0057] Further, the box body 1 is provided with a buffer cavity, the buffer cavity is provided with an inflatable air bag 44, the air bag 44 is fixed with a third communication pipe 45, one end of the third communication pipe 45 is communicated with the porous convex rib 46, and the other end of the third communication pipe 45 is communicated with the air bag 44.

[0058] The second communication pipe 27 is communicated with the third communication pipe 45.

[0059] In the embodiment, in order to avoid that the flow rate of the air flow in the second communication pipe 27 acting on the earplug position is too fast or the air pressure is too high, the buffer cavity is arranged to release the pressure of the flowing air, so that the inflation and contraction of the air bag 44 can avoid the air flow impacting the Bluetooth earphone, so as to protect the Bluetooth earphone during the disinfection process.

[0060] The fan 23 in the embodiment adopts a model that can be configured on a large scale in the prior art, and the box body 1 is provided with a switch for controlling the fan 23, so as to effectively control the start and stop of the disinfection process by manual mode.

[0061] Further, the box body 1 includes an outer shell 12, and the outer shell 12 is provided with an inner filling 11, and the inner filling 11 fills the gap between the earphone box 13 and the outer shell 12.

[0062] In the embodiment, the shell 12 is used to play an external protection role, the inner filling 11 can effectively limit the freedom of the circuit structure and the mechanical structure in the shell 12, thereby enhancing the overall structural stability of the embodiment, and the inner filling 11 adopts a flexible insulating material which can be massively purchased in the prior art, thereby avoiding affecting the function implementation of the Bluetooth earphone and the Bluetooth earphone box.

[0063] An air filter element 41 is arranged at the air inlet 4, the air filter element 41 adopts a resin impregnated paper filter element, a HEPA filter element or an activated carbon filter element in the prior art, and the air filter element 41 is detachably fixedly connected with the air inlet 4, and the connection mode can adopt bolt connection or buckle connection.

[0064] The above specific embodiments have further detailed the purposes, technical schemes and beneficial effects of the utility model, and it should be understood that the above description is only the specific embodiments of the utility model and is not used to limit the protection scope of the utility model, and any modification, equivalent replacement, improvement and the like within the spirit and principle of the utility model should be included in the protection scope of the utility model.

Claims

1. A sterilizable Bluetooth earphone case, comprising a case body, wherein the case body has an earphone compartment for holding the earphone body, characterized in that, The bottom of the box is provided with an air inlet, which is connected to the earphone compartment. The upper part of the box is provided with an air outlet pipe, one end of which is connected to the earphone compartment and the other end of which is connected to the outside of the box. A silver ion channel assembly is provided between the air inlet and the earphone compartment, with one end of the silver ion channel assembly connected to the air inlet and the other end connected to the earphone compartment.

2. The sterilizable Bluetooth earphone case according to claim 1, characterized in that, The silver ion channel assembly includes a dual-circulation silver ion circulation chamber, and a fan is provided in the dual-circulation silver ion circulation chamber. The fan is used to drive air to flow from the air inlet into the earphone compartment. The dual-circulation silver ion circulation chamber is equipped with a silver ion filter, which is located between the fan and the earphone compartment.

3. A sterilizable Bluetooth earphone case according to claim 2, characterized in that, The dual-circulation silver ion circulation chamber includes a first silver ion circulation chamber and a second silver ion circulation chamber. The air inlet is connected to a circulation chamber ventilation pipe, which is connected to the first silver ion circulation chamber and the second silver ion circulation chamber respectively. The first silver ion circulation chamber and the second silver ion circulation chamber have the same structure.

4. A sterilizable Bluetooth earphone case according to claim 3, characterized in that, The first silver ion circulation chamber includes a cavity, the cavity being connected to the circulation chamber ventilation pipe, and the fan being located at the connection between the cavity and the circulation chamber ventilation pipe; An outlet pipe is connected to the cavity at a position offset from the ventilation pipe of the circulation cavity, and the outlet pipe is connected to the earphone compartment; The silver ion filter is located inside the cavity and between the fan and the outlet pipe.

5. A sterilizable Bluetooth earphone case according to claim 2, characterized in that, The earphone compartment has a main connecting pipe on its side, which is connected to the dual-circulation silver ion circulation chamber. The main connecting pipe is connected to a first connecting pipe and a second connecting pipe. The first connecting pipe is connected to the bottom of the earphone compartment, and the second connecting pipe is connected to the upper part of the earphone compartment.

6. A sterilizable Bluetooth earphone case according to claim 5, characterized in that, The earphone compartment is provided with perforated ribs, and the second connecting pipe is connected to the earphone compartment through the perforated ribs.

7. A sterilizable Bluetooth earphone case according to claim 6, characterized in that, The box body is provided with a buffer cavity, and the buffer cavity is provided with a retractable airbag. A third connecting tube is fixed on the airbag. One end of the third connecting tube is connected to the porous rib, and the other end is connected to the airbag. The second connecting pipe is connected to the third connecting pipe.

8. A sterilizable Bluetooth earphone case according to claim 1, characterized in that, The housing includes an outer shell, and an inner filler is provided inside the outer shell, which fills the gap between the earphone compartment and the outer shell.