WO2017197623A1 - 一种口罩 - Google Patents

一种口罩 Download PDF

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Publication number
WO2017197623A1
WO2017197623A1 PCT/CN2016/082632 CN2016082632W WO2017197623A1 WO 2017197623 A1 WO2017197623 A1 WO 2017197623A1 CN 2016082632 W CN2016082632 W CN 2016082632W WO 2017197623 A1 WO2017197623 A1 WO 2017197623A1
Authority
WO
WIPO (PCT)
Prior art keywords
mask
user
module
bracket
power
Prior art date
Application number
PCT/CN2016/082632
Other languages
English (en)
French (fr)
Inventor
刘秋明
向智勇
牛建华
韦志林
Original Assignee
惠州市吉瑞科技有限公司深圳分公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 惠州市吉瑞科技有限公司深圳分公司 filed Critical 惠州市吉瑞科技有限公司深圳分公司
Priority to PCT/CN2016/082632 priority Critical patent/WO2017197623A1/zh
Priority to CN201690001207.3U priority patent/CN208678201U/zh
Publication of WO2017197623A1 publication Critical patent/WO2017197623A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A62LIFE-SAVING; FIRE-FIGHTING
    • A62BDEVICES, APPARATUS OR METHODS FOR LIFE-SAVING
    • A62B9/00Component parts for respiratory or breathing apparatus
    • A62B9/06Mouthpieces; Nose-clips

Definitions

  • the utility model relates to the field of masks, in particular to a mask capable of filtering and enhancing the humidity of a gas sucked by a user.
  • the mask provided by the prior art can only block the dust in the air, so that the user wearing the mask does not breathe dust.
  • the air inhaled by the user after wearing the mask has a small amount of moisture, which makes the user feel uncomfortable when breathing, and the dry air will
  • the user's nasal cavity is uncomfortable to dry, and the mucous membranes in the nasal cavity are vigorously circulated, and the nasal cavity may cause blood vessel rupture due to lack of water to cause bleeding.
  • the present invention provides a mask that can have a filter and enhance the humidity of the gas inhaled by the user.
  • a mask comprising a filter assembly, a humidification assembly, and a power supply assembly, and the humidification assembly is electrically connected to the power supply assembly, the filter assembly for filtering air in the atmosphere for breathing by a user;
  • the humidification assembly includes an atomization module for supplying power to the atomization module, and a liquid storage module, wherein the atomization module is configured to store the liquid storage module when the power supply component is powered The liquid is atomized for the user to breathe.
  • the mask further includes a humidity sensor, the power component is electrically connected to the humidity sensor; the humidity sensor is configured to store a first threshold and a second threshold in advance, and the first threshold is smaller than the Second threshold
  • the humidity sensor is configured to detect a gas humidity inside the mask, and if the humidity sensor detects that the gas humidity inside the mask is less than or equal to the first threshold, the humidity sensor is configured to use the generated first indication Sending a signal to the power component to cause the power component to be according to the first
  • the indication signal supplies power to the atomization module, such that the atomization module atomizes the liquid stored by the liquid storage module for the user to breathe; if the humidity sensor detects that the gas humidity inside the mask is greater than or equal to The second threshold is used, the humidity sensor is configured to send the generated second indication signal to the power component, so that the power component does not supply power to the atomization module according to the second indication signal, so that The atomization module does not atomize the liquid stored by the liquid storage module.
  • the power component includes a power body and a power cable electrically connected to the power body, the power cable is detachably connected to the atomization module, and the power cable is used to power the power body Transfer to the atomization module.
  • the mask includes a first bracket and a second bracket, and the liquid storage module is formed between the first bracket and the second bracket; the first bracket is formed with a receiving recess toward a side of the user. a cavity, the receiving cavity is matched with a user's nose and mouth, and the first bracket connecting device has a hanging ear, and the hanging ear is matched with the user's ear to match the hanging ear Provided on the user's ear, so that the user's nose and mouth can be accommodated inside the receiving cavity of the first bracket;
  • the mask further includes a back cover, one side of the back cover is inserted and fixed with the second bracket, and the other side of the back cover is inserted and fixed with a front cover, and the front cover and the back cover
  • the detachable connection arrangement is provided with the filter assembly between the front cover and the rear cover to enable the filter assembly to be removed after the front cover is released from the rear cover.
  • At least one air inlet is disposed through the front cover to enable air in the atmosphere to flow through the air inlet to the inside of the mask;
  • a first through hole is disposed through the rear cover, a second through hole is disposed through the second bracket, a third through hole is disposed through the first bracket, and the first through hole and the second through hole are The through hole and the third through hole are coaxially disposed such that gas filtered through the filter assembly can be circulated to the receiving through the first through hole, the second through hole, and the third through hole in sequence
  • the inside of the cavity is for the user to breathe.
  • a fourth through hole is disposed through the first bracket, and the fourth through hole is juxtaposed with the third through hole;
  • the atomization module is disposed inside the fourth through hole, and the atomization module is electrically connected to the liquid stored in the liquid storage module, so that the atomization module stores the liquid storage module. After the liquid is atomized, it flows through the fourth through hole to the inside of the accommodating cavity for the user to breathe.
  • a liquid supply port is disposed through the second bracket, and the liquid supply port and the liquid storage Module conduction setting;
  • a sealing plug is disposed to match the filling port, and the sealing plug is detachably inserted inside the liquid filling port to make the filling port and the sealing plug have an interference fit.
  • the power supply body is internally provided with a timing module, and the timing module is pre-set with an interval duration, where the starting time of the interval duration is that the power supply body supplies power to the atomization module through the power line once.
  • the power supply body is configured to supply power to the atomization module when the interval duration counted by the timing module is reached.
  • the mask further includes a battery case, the power box is internally disposed, and the power cable is electrically connected to the power body through the battery box, and the battery box is provided with The charging interface of the power body is electrically connected.
  • At least one first exhaust port is disposed through the first bracket, at least one second exhaust port is disposed through the second bracket, and the first exhaust port and the second row are The air ports are coaxially disposed such that the accommodation cavity is electrically connected to the atmosphere outside the mask via the first exhaust port and the second exhaust port;
  • the mask further includes a one-way valve interposed in the second exhaust port of the second bracket, the one-way valve including a one-way valve body and a resisting arm, the Holding the arm against the second exhaust port, the gas exhaled by the user can cause the resisting arm to move away from the second exhaust port when the gas exhaled by the user flows into the interior of the receiving cavity
  • the directional movement is such that the second exhaust port and the first exhaust port are electrically connected such that the gas exhaled by the user flows to the atmosphere outside the mask.
  • the atomization module is an ultrasonic atomizing sheet, or a heating wire, or a ceramic heating sheet.
  • the atomization module is an ultrasonic atomization piece
  • the liquid storage module includes a storage space and a water storage cotton disposed in the storage space, and a surface of the water storage cotton is resisted by the ultrasonic wave On one surface of the atomized sheet.
  • the filtering component is at least one of the following:
  • Dust layer antibacterial layer and filter layer.
  • the utility model provides a mask, comprising a filter assembly, a humidifying component and a power component, wherein the humidifying component is electrically connected to the power component, the filtering component is configured to filter air in the atmosphere for the user to breathe;
  • the humidifying component includes an atomizing module and a liquid storage module, and the power component is used for The atomization module is powered, and the atomization module is configured to atomize the liquid stored by the liquid storage module for the user to breathe when the power component is powered.
  • the filter assembly adopted by the utility model can filter out air particles in the air, so that the user can inhale clean air and ensure the health of the user, and the humidification component can improve the humidity of the air sucked by the user, thereby Avoid the discomfort caused by the user's inhalation of dry air, and prevent the user from bleeding in the nasal cavity.
  • FIG. 1 is a schematic view showing the internal structure of an embodiment of a mask provided by the present invention.
  • FIG. 2 is a schematic structural view of an embodiment of a humidifying assembly provided by the present invention.
  • FIG. 3 is a schematic view showing the overall structure of an embodiment of a mask provided by the present invention.
  • Figure 4 is a cross-sectional structural view showing an embodiment of the mask provided by the present invention.
  • Figure 5 is a schematic view showing an explosive connection mechanism of an embodiment of the mask provided by the utility model
  • FIG. 6 is a schematic view showing an explosion connection structure of an embodiment of the mask provided by the present invention.
  • FIG. 7 is a schematic view showing an explosion connection structure of an embodiment of a mask provided by the present invention.
  • FIG. 8 is a schematic view showing an explosion connection structure of an embodiment of a mask provided by the present invention.
  • FIG. 9 is a schematic view showing the wearing effect of an embodiment of the mask provided by the present invention.
  • FIG. 10 is a cross-sectional structural view showing another embodiment of the mask provided by the present invention.
  • Figure 11 is a cross-sectional structural view showing another embodiment of the mask provided by the present invention.
  • FIG. 12 is a partial structural schematic view showing an embodiment of a mask provided by the present invention.
  • Figure 13 is a cross-sectional structural view showing another embodiment of the mask provided by the present invention.
  • FIG. 14 is a cross-sectional structural view showing another embodiment of the mask provided by the present invention.
  • FIG. 1 is a schematic view showing the internal structure of an embodiment of the mask provided by the present invention.
  • the mask includes a filter assembly 102, a humidification assembly 101, and a power supply assembly 103.
  • the humidifying component 101 is electrically connected to the power component 103.
  • the physical structure of the mask is not limited in this embodiment, as long as the humidifying component 101 can be increased.
  • the humidity of the gas breathed by the strong user, and the filter assembly 102 is capable of filtering the air in the atmosphere for the user to breathe.
  • the filter assembly 102 used in the embodiment can filter out the air particles in the air, so that the user can inhale the clean air and ensure the health of the user.
  • the humidifying component 101 shown in this embodiment can be used. Increase the humidity of the air inhaled by the user, thereby avoiding the discomfort caused by the user's inhalation of dry air and preventing the user from bleeding through the nose.
  • the working sequence of the filter assembly 102 and the humidifying component 101 is not limited in this embodiment.
  • the air in the atmosphere may be filtered by the filtering component 102, and the humidifying component 101 can enhance the humidity of the filtered gas.
  • the humidity of the air in the atmosphere may be enhanced by the humidifying component 101, and the air after the humidity is enhanced by the filtering component 102.
  • the specific timing is not limited in this embodiment.
  • the filter component 102 shown in this embodiment is at least one of the following:
  • Dust layer antibacterial layer and filter layer.
  • the filter assembly 102 can be the dust layer, wherein the dust layer is used to filter dust having a particle size greater than 5 microns.
  • the dustproof layer is mainly made of cotton cloth, and the cotton cloth can effectively prevent large particles such as dust in the air from being sucked into the body by the user, and the preliminary filtering of the dust by the dustproof layer can improve the pertinence of the filter layer and improve the effectiveness of the filter layer.
  • the filter assembly 102 can be an antimicrobial layer that is used to prevent microbial growth from producing a pungent odor.
  • the antibacterial layer is mainly made of bamboo charcoal or hemp fiber which is hygroscopic, breathable and sterilized.
  • the antibacterial layer may be provided with a sterilizing pure silver fiber web.
  • the filter assembly 102 may be a filter layer, which is mainly composed of seaweed fibers, or a carbon nanotube structure formed by laminating a plurality of carbon nanotube films, or a fusion layer bonded to an activated carbon structure layer. Spray the filter layer.
  • different filter assemblies 102 may be used according to different environments of use of the mask.
  • the filter layer may be filter cotton, and the filtering may be The cotton may use a N95 filter cloth; when the particles in the atmosphere have a particle diameter larger than 2 ⁇ m, the filter layer may be a filter cloth made of a material using a skim gauze.
  • the description of the filter assembly 102 in this embodiment is an optional example, and is not limited as long as the filter assembly 102 can perform the function of filtering air.
  • FIG. 2 is a schematic structural view of an embodiment of the humidifying component provided by the present invention.
  • the humidification assembly 101 includes an atomization module 202 and a liquid storage module 201.
  • the power module 103 is configured to supply power to the atomization module 202.
  • the atomization module 202 is configured to atomize the liquid stored by the liquid storage module 201 for the user to breathe when the power component 103 is powered.
  • the liquid stored by the liquid storage module 201 may be water, and/or a medical liquid having a certain health care function.
  • liquid storage module 201 different substances may also be added to the liquid storage module 201 according to different needs of the user.
  • a substance such as mint which is refreshing to the user may be added to the liquid storage module 201.
  • liquid stored in the liquid storage module 201 is not limited in this embodiment.
  • the atomization module 202 is used as the heating wire.
  • the atomization module 202 is not limited in this embodiment, as long as the atomization module 202 can store the liquid storage module 201.
  • the liquid may be atomized.
  • the atomization module 202 may be an ultrasonic atomizing sheet, or a ceramic heating sheet or the like.
  • This embodiment describes the physical structure of the mask. It should be clarified that the description of the physical structure of the mask in this embodiment is an optional example, as long as the mask can include the structure shown in FIG. 1 to FIG. can.
  • FIG. 3 is a schematic overall structural view of an embodiment of the mask provided by the present invention
  • FIG. 4 shows an implementation of the mask provided by the utility model.
  • FIG. 5 is a schematic view showing an exploded connection mechanism of an embodiment of a mask provided by the utility model.
  • the mask includes a first bracket 301 and a second bracket 302.
  • first bracket 301 is inserted inside the second bracket 302, and the first branch
  • the liquid storage module 201 is formed between the frame 301 and the second bracket 302.
  • liquid storage module 201 More specifically, an optional description of the specific structure of the liquid storage module 201 is as follows:
  • the liquid storage module 201 shown in this embodiment includes a storage space 303 and a water storage cotton 304.
  • the storage space 303 is formed between the first bracket 301 and the second bracket 302, and the water storage cotton 304 is disposed in the storage space 303.
  • the atomization module 202 shown in this embodiment may be an ultrasonic atomization sheet, and a surface of the water storage cotton 304 is abutted on a surface of the ultrasonic atomization sheet.
  • the side faces of the water storage cotton 304 and the ultrasonic atomizing sheet shown in this embodiment are mutually abutted, so that the ultrasonic atomizing sheet can obtain uniform water to keep the atomization amount stable. In turn, the humidity is kept stable.
  • the advantage of using the structure of the liquid storage module 201 shown in this embodiment is that the water storage cotton 304 can uniformly and constantly transfer the liquid it stores to the atomization module 202 to make the mist
  • the humidity of the gas atomized by the module 202 is constant and uniform, effectively preventing the gas that the user breathes from containing un-atomized liquid.
  • the first bracket 301 is formed with a receiving cavity 305 facing the side of the user, and the receiving cavity 305 is matched with the user's nose and mouth.
  • the user's mouth and nose position refers to the user's oral and nasal regions.
  • the device connected to the first bracket 301 has a hanging ear 306, and the hanging ear 306 is matched with the user's ear.
  • the specific connection between the first bracket 301 and the ear strap 306 is not limited, as long as the ear strap 306 connected to the first bracket 301 can be rotated according to the needs of the user. And/or stretching to facilitate the user wearing the mask and adjusting the position of the mask.
  • the user can wear the ear strap 306 on the user's ear, so that the user's nose and mouth can be accommodated in the receiving recess of the first bracket 301.
  • the interior of the cavity 305 is not limited to.
  • the ear strap 306 is matched with the user's ear setting, the user is more convenient to wear the mask, and the structure of the mask and the user's face is effectively improved, and the shaking of the mask is avoided.
  • the gas filtered by the filter assembly 102 and increased in humidity by the humidifying assembly 101 can be circulated to the inside of the accommodating cavity 305, thereby making The user is able to smoke a clean, humidified gas.
  • FIG. 6 is a schematic view showing an explosion connection structure of an embodiment of the mask provided by the present invention
  • FIG. 7 is an implementation of the mask provided by the present invention.
  • the mask further includes a rear cover 401.
  • One side of the rear cover 401 is inserted and fixed with the second bracket 302.
  • the other side of the rear cover 401 is inserted and fixed with a front cover 402.
  • the front cover 402 is detachably connected to the rear cover 401, and the filter assembly 102 is disposed between the front cover 401 and the rear cover 402.
  • the filter component 102 please refer to the first embodiment, which is not specifically described in this embodiment.
  • an accommodation space may be formed between the front cover 402 and the rear cover 401, so that the filter assembly 102 can be disposed between the front cover 402 and the rear cover 401 to form a receiving space. Internally, the filter assembly 102 can be taken out after the front cover 402 is released from the rear cover 401.
  • the advantage of using the mask shown in this embodiment is that, because the front cover 402 and the rear cover 401 are detachably connected, the front cover 402 and the rear can be replaced according to the needs of the user.
  • the filter assembly 102 between the covers 401 can replace the filter assembly 102 after a certain period of time by using the mask shown in this embodiment, thereby improving the hygiene during use, and without replacing the In the case of other parts of the mask, better air filtration effects can be achieved by replacing only the filter assembly 102, thereby extending the life of the mask and reducing the cost of repairing the mask.
  • the following is a description of how the filter assembly 102 specifically achieves conduction of the filtered gas into the receiving cavity 305.
  • At least one intake passage 403 is provided through the front cover 402 to allow air in the atmosphere to flow to the inside of the mask via the intake passage 403.
  • a plurality of the air inlets 403 are arranged on the front cover 402 in the embodiment.
  • the number and arrangement of the plurality of inlet passages 403 are not limited.
  • a first through hole 404 is defined through the rear cover 401 , a second through hole 405 is disposed through the second bracket 302 , and a third through hole 406 is disposed through the first bracket 301 .
  • first through hole 404, the second through hole 405, and the third through hole 406 are coaxially disposed.
  • first through hole 404, the second through hole 405, and the third through hole 406 are nested with each other.
  • the gas filtered through the filter assembly 102 can flow through the first through hole 404, the second through hole 405, and the third through hole 406 to the inside of the receiving cavity 305 in order for the user to breathe.
  • a fourth through hole 407 is disposed through the first bracket 301, and the fourth through hole 407 is disposed in parallel with the third through hole 406;
  • the atomization module 202 is disposed inside the fourth through hole 407, and the atomization module 202 is electrically connected to the liquid stored in the liquid storage module 201, so that the atomization module 202 will
  • the liquid stored by the liquid storage module 201 is atomized and flows through the fourth through hole 407 to the inside of the accommodating cavity 305 for the user to breathe.
  • the liquid stored in the liquid storage module 201 can be circulated to the atomization module 202, so that the atomization module 202 can atomize the liquid stored in the liquid storage module 201, thereby improving The humidity of the gas inhaled by the user.
  • FIG. 8 is a schematic diagram of an explosion connection structure of an embodiment of the mask provided by the present invention.
  • a liquid supply port 408 is disposed through the second bracket 302 , and the liquid supply port 408 is electrically connected to the liquid storage module 201 .
  • the liquid filling port 408 is connected to the storage space 303 formed between the first bracket 301 and the second bracket 302 so that the user can be located in the storage space 303 through the liquid filling port 408.
  • the water storage cotton 304 inside is added with a liquid.
  • the user can add liquid to the liquid storage module 201 through the liquid filling port 408 as needed, thereby increasing the service life of the mask.
  • a sealing plug 409 is provided in cooperation with the liquid filling port 408, and the sealing plug 409 can be detachable. Inserted inside the liquid filling port 408 to make the liquid filling port 408 and the sealing plug 409 interference fit, so that the liquid storage module 201 can be sealed by the sealing plug 409 to avoid the liquid storage The liquid stored in module 201 is likely to leak.
  • the sealing plug 409 is made of an elastic material.
  • the elastic material may be at least one of the following:
  • Thermoplastic elastomer TPE ethylene-vinyl acetate copolymer and its made rubber and plastic foam material EVA, polyurethane material PU, polypropylene PPE and silica gel.
  • the sealing plug 409 can be pulled out from the opening of the liquid filling port 408, thereby passing the adding The liquid port 408 adds a liquid to the liquid storage module 201.
  • the mask further includes a humidity sensor.
  • the specific position of the humidity sensor is not limited in this embodiment, as long as the humidity sensor can detect the humidity of the gas inside the mask.
  • the humidity sensor is configured to store a first threshold and a second threshold in advance, and the first threshold is smaller than the second threshold.
  • the gas breathed by the user is most suitable.
  • the first threshold and the second threshold may be set by a manufacturer, or may be set by a user according to his own usage and usage environment.
  • the humidity sensor is configured to detect a gas humidity inside the mask, and if the humidity sensor detects that the gas humidity inside the mask is less than or equal to the first threshold, the humidity sensor is configured to use the generated first indication Sending a signal to the power component 103 to cause the power component 103 to supply power to the atomization module 202 according to the first indication signal, so that the atomization module 202 stores the liquid stored by the liquid storage module 201 Atomize for the user to breathe.
  • the humidity sensor can control the atomization module 202 to be the liquid storage module 201.
  • the stored liquid is atomized to increase the humidity of the gas inside the mask until the gas humidity inside the mask is between the first threshold and the second threshold.
  • the humidity sensor detects that the gas humidity inside the mask is greater than or equal to the second threshold
  • the humidity sensor is configured to send the generated second indication signal to the power component 103, so that the power component 103 does not supply power to the atomization module 202 according to the second indication signal, so that The atomization module 202 does not atomize the liquid stored by the liquid storage module 201.
  • the humidity sensor can control the atomization module 202 to no longer atomize the liquid storage.
  • the liquid stored by the module 201 reduces the humidity of the gas inside the mask until the gas humidity inside the mask is between the first threshold and the second threshold.
  • the humidity sensor used in this embodiment can ensure that the humidity of the gas inhaled by the user is maintained between the first threshold and the second threshold to prevent the humidity from being too high or too low to bring health to the user. The adverse effects.
  • FIG. 9 is a schematic view showing the wearing effect of an embodiment of the mask provided by the present invention.
  • the power component 103 includes a power body 501 and a power line 502 electrically connected to the power body 501.
  • the power line 502 is detachably connected to the atomization module 202, and the power line 502 is configured to transmit power of the power body 501 to the atomization module 202.
  • the power supply body 501 can be placed in the pocket.
  • the power supply body 501 and the mask are separated by a structure.
  • the weight of the mask can be reduced, the user can wear the light weight mask for a long time, and the comfort of the user during the wearing process can be improved, and the manufacturer can produce the large-capacity power source body 501 to increase the duration of the mask.
  • the user is prevented from charging the power source body 501 frequently.
  • FIG. 10 is a schematic cross-sectional structural view of another embodiment of the mask provided by the present invention.
  • the power supply body 501 is disposed outside the second bracket 302, and the power line 502 electrically connected to the power source body 501 is electrically connected to the atomization module 202.
  • connection between the power supply body 501 and the mask increases the stability of the overall structure of the mask, avoids the loss of the power body 501, and the user compares the process of using the mask.
  • the short power cord 502 does not interfere with the user's behavior.
  • the power body 501 may be internally provided with a timing module, and the timing module is pre-set with an interval duration.
  • the starting time of the interval duration is a time when the power supply body 501 is powered by the power supply line 502 to the atomization module 202.
  • the power supply body 501 is used by the timing module.
  • the atomization module is powered when the interval duration is reached.
  • the power supply body 501 supplies power to the atomization module 202 through the power line 502.
  • the power supply body 501 does not supply power to the atomization module 202 during the timing of the timing module.
  • the timing module reaches a time of 50 seconds, the power supply body 501 is The atomization module is powered, and the timing module is cleared to zero.
  • the atomization module 202 can be atomized once every interval time, thereby effectively ensuring the constant humidity of the gas inside the mask.
  • the mask further includes a battery case, and the power box 501 is disposed inside the battery box, and the power line 502 is electrically connected to the power body 501 through the battery box, where the battery box is A charging interface electrically connected to the power source body 501 is provided.
  • the charging interface shown in this embodiment is a USB charging interface
  • the external power source can be used to charge the power body 501 through the USB charging interface, and the power body 501 can also be charged by the USB.
  • the interface charges other powered devices.
  • FIG. 11 is a cross-sectional view showing another embodiment of the mask provided by the present invention.
  • FIG. 12 is a partial structural view showing an embodiment of a mask provided by the present invention, and
  • FIG. 13 is a cross-sectional structural view showing another embodiment of the mask provided by the present invention, and
  • FIG. 14 is a schematic view A cross-sectional structural view of another embodiment of the mask provided by the present invention.
  • At least one first exhaust port 601 is disposed through the first bracket 301
  • at least one second exhaust port 602 is disposed through the second bracket 302 .
  • the first exhaust port 601 and the second exhaust port 602 are coaxially disposed such that the receiving cavity 305 and the second receiving port 602 are connected via the first exhaust port 601 and the second exhaust port 602 The atmosphere conduction setting outside the mask.
  • the mask further includes a one-way valve that is inserted inside the second exhaust port 602 of the second bracket 302.
  • the one-way valve includes a one-way valve body 603 and a resisting arm 604.
  • the gas exhaled by the user when the gas exhaled by the user flows into the interior of the accommodating cavity 305, the gas exhaled by the user can move the abutting arm 604 in a direction away from the second exhaust port 602.
  • the second exhaust port 602 and the first exhaust port 601 are electrically connected such that the gas exhaled by the user flows to the atmosphere outside the mask.
  • the advantage of using the mask shown in this embodiment is that the gas outside the mask cannot be circulated to the inside of the mask through the one-way valve, and the gas exhaled by the user can pass through the one-way The valve discharges the mask, so that the user exhaled gas can be discharged in time during the use of the mask, so that the user does not inhale the gas that has been discharged by the user, thereby improving the efficiency of the mask gas circulation and ensuring the user's use of the mask process. In the health.

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  • Health & Medical Sciences (AREA)
  • Pulmonology (AREA)
  • General Health & Medical Sciences (AREA)
  • Business, Economics & Management (AREA)
  • Emergency Management (AREA)
  • Respiratory Apparatuses And Protective Means (AREA)

Abstract

一种口罩,包括过滤组件(102)、加湿组件(101)以及电源组件(103),且所述加湿组件(101)与所述电源组件(103)电连接,所述过滤组件(102)用于过滤大气中的空气以供用户呼吸;所述加湿组件(101)包括雾化模块(202)和液体存储模块(201),所述电源组件(103)用于为所述雾化模块(202)供电,所述雾化模块(202)用于在所述电源组件(103)供电时将所述液体存储模块(201)所存储的液体雾化以供用户呼吸。

Description

一种口罩 技术领域
本实用新型涉及口罩领域,尤其涉及的是一种能够具有过滤以及增强用户吸入的气体的湿度的口罩。
背景技术
随着空气质量的恶化,用户对口罩的需求日益增加。
现有技术所提供的口罩,只能够隔阻空气中的粉尘,从而使得佩戴口罩的用户不会呼吸到粉尘。
但是,在冬季干燥的季节或空气干燥的环境中,由于空气中水分含量较少,用户佩戴口罩后所吸入的空气含水量少,则使得用户呼吸时会感觉到不舒服,而且干燥的空气会使得用户的鼻腔干燥不舒服,而鼻腔内的粘膜血液循环旺盛,鼻腔可能会因为缺水而引起血管破裂而引发出血的情况。
实用新型内容
本实用新型提供了一种能够具有过滤以及增强用户吸入的气体的湿度的口罩。
一种口罩,其中,包括过滤组件、加湿组件以及电源组件,且所述加湿组件与所述电源组件电连接,所述过滤组件用于过滤大气中的空气以供用户呼吸;
所述加湿组件包括雾化模块和液体存储模块,所述电源组件用于为所述雾化模块供电,所述雾化模块用于在所述电源组件供电时将所述液体存储模块所存储的液体雾化以供用户呼吸。
可选的,所述口罩还包括湿度传感器,所述电源组件与所述湿度传感器电连接;所述湿度传感器用于预先存储有第一阈值和第二阈值,且所述第一阈值小于所述第二阈值;
所述湿度传感器用于检测所述口罩内部气体湿度,若所述湿度传感器检测到所述口罩内部气体湿度小于或等于所述第一阈值,则所述湿度传感器用于将已生成的第一指示信号发送给所述电源组件,以使所述电源组件根据所述第一 指示信号向所述雾化模块供电,使得所述雾化模块将所述液体存储模块所存储的液体雾化以供用户呼吸;若所述湿度传感器检测到所述口罩内部气体湿度大于或等于所述第二阈值,则所述湿度传感器用于将已生成的第二指示信号发送给所述电源组件,以使所述电源组件根据所述第二指示信号不向所述雾化模块供电,使得所述雾化模块不会雾化所述液体存储模块所存储的液体。
可选的,所述电源组件包括电源本体和与所述电源本体电连接的电源线,所述电源线与所述雾化模块可拆卸连接,所述电源线用于将所述电源本体的电能传输给所述雾化模块。
可选的,所述口罩包括第一支架和第二支架,所述第一支架和所述第二支架之间形成有所述液体存储模块;所述第一支架朝向用户的侧面形成有容纳凹腔,所述容纳凹腔匹配用户口鼻部位设置,与所述第一支架连接设备有挂耳部,且所述挂耳部与用户耳郭匹配设置,以使通过将所述挂耳部匹配设置在用户耳郭上,使得用户的口鼻部位能够容纳在所述第一支架的所述容纳凹腔内部;
所述口罩还包括后盖,所述后盖的一侧插设固定有所述第二支架,所述后盖的另一侧插设固定有前盖,所述前盖与所述后盖之间可拆卸连接设置,所述前盖和所述后盖之间设置有所述过滤组件,以使在将所述前盖解除与后盖连接后能够将所述过滤组件取出。
可选的,贯穿所述前盖设置有至少一个进气道,以使大气中的空气能够经由所述进气道流通至所述口罩内部;
贯穿所述后盖设置有第一通孔,贯穿所述第二支架设置有第二通孔,贯穿所述第一支架设置有第三通孔,且所述第一通孔、所述第二通孔以及所述第三通孔同轴设置,以使经由所述过滤组件过滤后的气体能够依次经由第一通孔、所述第二通孔以及所述第三通孔流通至所述容纳凹腔内部以供用户呼吸。
可选的,贯穿所述第一支架设置有第四通孔,且所述第四通孔与所述第三通孔并列设置;
所述第四通孔内部设置有所述雾化模块,且所述雾化模块与所述液体存储模块所存储的液体导通设置,以使所述雾化模块将所述液体存储模块所存储的液体雾化后经由所述第四通孔流通至所述容纳凹腔内部以供用户呼吸。
可选的,贯穿所述第二支架设置有加液口,且所述加液口与所述液体存储 模块导通设置;
与所述加液口匹配设置有密封塞,所述密封塞可拆卸的插设在所述加液口内部,以使所述加液口和所述密封塞过盈配合。
可选的,所述电源本体内部设置有计时模块,所述计时模块预设有间隔时长,所述间隔时长的起点时刻为所述电源本体通过所述电源线上一次向所述雾化模块供电完成的时刻,所述电源本体用于在所述计时模块所计的所述间隔时长达到时向所述雾化模块供电。
可选的,所述口罩还包括电池盒,所述电池盒内部设置有所述电源本体,所述电源线穿过所述电池盒与所述电源本体电连接,所述电池盒上设置有与所述电源本体电连接的充电接口。
可选的,贯穿所述第一支架设置有至少一个第一排气口,贯穿所述第二支架设置有至少一个第二排气口,且所述第一排气口和所述第二排气口同轴设置,以使经由所述第一排气口和所述第二排气口使得所述容纳凹腔与所述口罩外部的大气导通设置;
所述口罩还包括单向阀,所述单向阀插设在所述第二支架的所述第二排气口内部,所述单向阀包括单向阀本体和抵持臂,所述抵持臂抵持所述第二排气口设置,当用户呼出的气体流通至所述容纳凹腔内部时,所述用户呼出的气体能够使得所述抵持臂沿远离所述第二排气口的方向运动,以使所述第二排气口和所述第一排气口导通设置,使得所述用户呼出的气体流通至所述口罩外部的大气。
可选的,所述雾化模块为超声波雾化片,或发热丝,或陶瓷发热片。
可选的,所述雾化模块为超声波雾化片,所述液体存储模块包括存储空间和设置在所述存储空间内的储水棉,所述储水棉的一表面抵持在所述超声波雾化片的一表面上。
可选的,所述过滤组件为以下所示的至少一项:
防尘层、抗菌层以及过滤层。
本实用新型提供了一种口罩,包括过滤组件、加湿组件以及电源组件,且所述加湿组件与所述电源组件电连接,所述过滤组件用于过滤大气中的空气以供用户呼吸;所述加湿组件包括雾化模块和液体存储模块,所述电源组件用于 为所述雾化模块供电,所述雾化模块用于在所述电源组件供电时将所述液体存储模块所存储的液体雾化以供用户呼吸。通过本实用新型所采用的所述过滤组件能够过滤掉空气中的空气颗粒物,以使用户能够吸入干净的空气,保障了用户的健康,采用所述加湿组件能够提升用户吸入的空气的湿度,从而避免因用户吸入干燥的空气所带来的不适,防止用户鼻腔出血的情况的出现。
附图说明
图1所示为本实用新型所提供的口罩的一种实施例内部结构示意图;
图2所示为本实用新型所提供的加湿组件的一种实施例结构示意图;
图3所示为本实用新型所提供的口罩的一种实施例整体结构示意图;
图4所示本实用新型所提供的口罩的一种实施例剖面结构示意图;
图5所示实用新型所提供的口罩的一种实施例爆炸连接机构示意图;
图6所示为本实用新型所提供的口罩的一种实施例爆炸连接结构示意图;
图7所示为本实用新型所提供的口罩的一种实施例爆炸连接结构示意图;
图8所示为本实用新型所提供的口罩的一种实施例爆炸连接结构示意图;
图9所示为佩戴本实用新型所提供的口罩的一种实施例佩戴效果示意图;
图10所示为本实用新型所提供的口罩的另一种实施例剖面结构示意图;
图11所示为本实用新型所提供的口罩的另一种实施例剖面结构示意图;
图12所示为本实用新型所提供的口罩的一种实施例局部结构示意图;
图13所示为本实用新型所提供的口罩的另一种实施例剖面结构示意图;
图14所示为本实用新型所提供的口罩的另一种实施例剖面结构示意图。
具体实施方式
实施例一
本实用新型实施例所提供的口罩的结构请详见图1所示,其中,图1所示为本实用新型所提供的口罩的一种实施例内部结构示意图。
所述口罩包括:过滤组件102、加湿组件101以及电源组件103。
具体的,所述加湿组件101与所述电源组件103电连接。
本实施例对所述口罩的物理结构不作限定,只要所述加湿组件101能够增 强用户所呼吸的气体的湿度,以及所述过滤组件102能够过滤大气中的空气以供用户呼吸即可。
可见,通过本实施例所采用的所述过滤组件102能够过滤掉空气中的空气颗粒物,以使用户能够吸入干净的空气,保障了用户的健康,采用本实施例所示的加湿组件101,能够提升用户吸入的空气的湿度,从而避免因用户吸入干燥的空气所带来的不适,防止用户鼻腔出血的情况的出现。
本实施例对所述过滤组件102以及加湿组件101的工作时序不作限定,例如,可先由所述过滤组件102对大气中的空气进行过滤,所述加湿组件101能够增强过滤后的气体的湿度,或者,可先由所述加湿组件101增强大气中的空气的湿度,再由所述过滤组件102对湿度增强后的空气进行过滤,具体时序在本实施例中不作限定。
具体的,本实施例所示的所述过滤组件102为以下所示的至少一项:
防尘层、抗菌层以及过滤层。
所述过滤组件102可为所述防尘层,其中,所述防尘层用于过滤粒径大于5微米粉尘。
防尘层主要由棉布制成,棉布可以有效阻止空气中的粉尘等大颗粒被用户吸入体内,而且防尘层对粉尘进行初步过滤可以提高过滤层的针对性,提高过滤层的有效性。
和/或,所述过滤组件102可为抗菌层,所述抗菌层用于防止微生物滋生产生刺激性气味。抗菌层主要由具有吸湿、透气并具有杀菌的竹炭或汉麻纤维制成。
进一步的,为了提高杀菌效果,所述抗菌层可设有杀菌作用的纯银纤维网。
和/或,所述过滤组件102可为过滤层,所述过滤层主要由海藻纤维组成,或者由多层碳纳米管膜层叠设置形成的碳纳米管结构,或者为结合于活性炭结构层的熔喷布过滤层。
可选的,可根据口罩使用环境的不同而使用不同的所述过滤组件102,例如,当大气中的颗粒直径小于或等于2μm的颗粒物,则所述过滤层可为过滤棉,且所述过滤棉可使用N95过滤布;当大气中的颗粒直径大于2μm的颗粒物,则所述过滤层可为由使用脱脂纱布材料制成的过滤布。
需明确的是,本实施例对所述过滤组件102的说明为可选示例,不作限定,只要所述过滤组件102能够实现对空气进行过滤的作用即可。
以下结合图2所示对所述加湿组件101的具体结构进行说明,其中,图2所示为本实用新型所提供的加湿组件的一种实施例结构示意图。
所述加湿组件101包括雾化模块202和液体存储模块201。
所述电源组件103用于为所述雾化模块202供电,所述雾化模块202用于在所述电源组件103供电时将所述液体存储模块201所存储的液体雾化以供用户呼吸。
具体的,所述液体存储模块201所存储的液体可为水,和/或具有一定保健功能的药液。
在具体应用中,也可根据用户的不同需求在所述液体存储模块201中添加不同的物质。
例如,可在所述液体存储模块201中添加薄荷等令用户感到清爽的物质。
需明确的是,本实施例对所述液体存储模块201所存储的液体不作限定。
其中,图2所示为以所述雾化模块202为发热丝为例,本实施例对所述雾化模块202不作限定,只要所述雾化模块202能够将所述液体存储模块201所存储的液体进行雾化即可,例如,所述雾化模块202可为超声波雾化片,或陶瓷发热片等。
实施例二
本实施例对口罩的物理结构进行说明,需明确的是,本实施例对所述口罩的物理结构的说明为可选的示例,只要所述口罩能够包括图1至图2所示的结构即可。
首先结合图3至图5所示进行说明,其中,图3所示为本实用新型所提供的口罩的一种实施例整体结构示意图,图4所示本实用新型所提供的口罩的一种实施例剖面结构示意图,图5所示实用新型所提供的口罩的一种实施例爆炸连接机构示意图。
所述口罩包括第一支架301和第二支架302。
具体的,所述第一支架301插设在所述第二支架302内部,且所述第一支 架301和所述第二支架302之间形成有所述液体存储模块201。
更具体的,以下对所述液体存储模块201的具体结构进行可选的说明:
本实施例所示的所述液体存储模块201包括存储空间303和储水棉304。
具体的,所述第一支架301和所述第二支架302之间形成有所述存储空间303,所述存储空间303内设置有所述储水棉304。
更具体的,本实施例所示的所述雾化模块202可为超声波雾化片,所述储水棉304的一表面抵持在所述超声波雾化片的一表面上。
可见,本实施例所示的所述储水棉304与所述超声波雾化片相对的侧面相互抵持,以使所述超声波雾化片能够获取均匀的水,以保持雾化量的稳定,进而使湿度保持稳定。
采用本实施例所示的所述液体存储模块201的结构的优势在于,所述储水棉304能够将其所存储的液体均匀恒定的传导至所述雾化模块202上,以使所述雾化模块202所雾化的气体的湿度恒定且均匀,有效的避免了用户呼吸到的气体中含有未经雾化的液体。
所述第一支架301朝向用户的侧面形成有容纳凹腔305,所述容纳凹腔305匹配用户口鼻部位设置。
具体的,用户的口鼻位置即指用户的口腔部位和鼻腔部位。
与所述第一支架301连接设备有挂耳部306,且所述挂耳部306与用户耳郭匹配设置。
本实施例对所述第一支架301和所述挂耳部306之间具体是如何连接的不作限定,只要连接至所述第一支架301上的所述挂耳部306能够根据用户的需要旋转,和/或拉伸以便于用户佩戴所述口罩以及调整所述口罩的位置即可。
当用户需要佩戴本实施例所提供的口罩时,用户可通过将所述挂耳部306佩戴在用户耳郭上,使得用户的口鼻部位能够容纳在所述第一支架301的所述容纳凹腔305内部。
因所述挂耳部306匹配用户耳郭设置,则更便于用户佩戴所述口罩,且有效的提升了口罩与用户面部之间结构的稳固,避免了所述口罩的晃动。
采用本实施例所示的口罩能够使得经过所述过滤组件102过滤以及经过所述加湿组件101增加湿度后的气体流通至所述容纳凹腔305内部,进而使得 用户能够吸食到经过过滤后干净且增加了湿度的气体。
具体的,以下结合附图所示对所述过滤组件102的具体结构进行说明。
以下结合图4至图7所示,其中,图6所示为本实用新型所提供的口罩的一种实施例爆炸连接结构示意图,图7所示为本实用新型所提供的口罩的一种实施例爆炸连接结构示意图。
所述口罩还包括后盖401,所述后盖401的一侧插设固定有所述第二支架302,所述后盖401的另一侧插设固定有前盖402。
所述前盖402与所述后盖401之间可拆卸连接设置,且所述前盖401和所述后盖402之间设置有所述过滤组件102。
所述过滤组件102的具体说明请详见实施例一所示,具体在本实施例中不作赘述。
具体的,所述前盖402与所述后盖401之间可形成有容纳空间,以使所述过滤组件102能够设置在所述前盖402与所述后盖401之间所形成有容纳空间内部,以使在将所述前盖402解除与后盖401连接后能够将所述过滤组件102取出。
采用本实施例所示的口罩的优势在于,因所述前盖402与所述后盖401之间为可拆卸连接设置,则可根据用户的使用需要更换位于所述前盖402与所述后盖401之间的所述过滤组件102,因采用本实施例所示的口罩用户能够在使用一定时间后即可更换所述过滤组件102,从而提升了使用过程中卫生,而且在不更换所述口罩其他部件的情况下,通过只更换所述过滤组件102即可实现更好的对空气过滤的效果,从而延长的口罩的使用寿命,降低了维修口罩的成本。
以下对所述过滤组件102具体是如何实现将过滤后的气体导通至所述容纳凹腔305中的进行说明。
贯穿所述前盖402设置有至少一个进气道403,以使大气中的空气能够经由所述进气道403流通至所述口罩内部。
为保障用户能够呼吸到足够的气体,则本实施例中所述前盖402上排列设置有多个所述进气道403。
本实施例对多个所述进气道403的数目和排列方式不作限定。
贯穿所述后盖401设置有第一通孔404,贯穿所述第二支架302设置有第二通孔405,贯穿所述第一支架301设置有第三通孔406。
具体的,所述第一通孔404、所述第二通孔405以及所述第三通孔406同轴设置。
更具体的,所述第一通孔404、所述第二通孔405以及所述第三通孔406相互嵌套设置。
经由所述过滤组件102过滤后的气体能够依次经由第一通孔404、所述第二通孔405以及所述第三通孔406流通至所述容纳凹腔305内部以供用户呼吸。
以下对所述雾化模块202的具体设置方式进行说明。
贯穿所述第一支架301设置有第四通孔407,且所述第四通孔407与所述第三通孔406并列设置;
所述第四通孔407内部设置有所述雾化模块202,且所述雾化模块202与所述液体存储模块201所存储的液体导通设置,以使所述雾化模块202将所述液体存储模块201所存储的液体雾化后经由所述第四通孔407流通至所述容纳凹腔305内部以供用户呼吸。
具体的,所述液体存储模块201所存储的液体能够流通至所述雾化模块202上,以使所述雾化模块202能够将所述液体存储模块201所存储的液体进行雾化,从而提升用户吸入的气体的湿度。
可选的,如图6和图8所示,其中,图8所示为本实用新型所提供的口罩的一种实施例爆炸连接结构示意图。
贯穿所述第二支架302设置有加液口408,且所述加液口408与所述液体存储模块201导通设置。
具体的,所述加液口408与所述第一支架301和第二支架302之间所形成的存储空间303连通设置,以使用户可通过所述加液口408向位于所述存储空间303内的所述储水棉304添加液体。
通过本实施例所提供的口罩,能够使得用户可根据需要随时通过所述加液口408向所述液体存储模块201添加液体,从而提升口罩的使用寿命。
与所述加液口408匹配设置有密封塞409,所述密封塞409能够可拆卸的 插设在所述加液口408内部,以使所述加液口408和所述密封塞409过盈配合,使得通过所述密封塞409能够密封所述液体存储模块201,避免所述液体存储模块201所存储的液体出现泄漏的可能。
具体的,所述密封塞409由弹性材料制成。
更具体的,所述弹性材料可为以下所示的至少一项:
热塑性弹性体TPE、乙烯-醋酸乙烯共聚物及其制成的橡塑发泡材料EVA、聚氨酯材料PU、聚丙乙烯PPE以及硅胶等。
具体的,当用户需要通过所述加液口408向所述液体存储模块201内添加液体时,即可将所述密封塞409从所述加液口408开口处拔下,从而通过所述加液口408向所述液体存储模块201内添加液体。
可选的,所述口罩还包括湿度传感器,本实施例对所述湿度传感器的具体位置不作限定,只要所述湿度传感器能够检测到所述口罩内部气体的湿度即可。
具体的,所述湿度传感器用于预先存储有第一阈值和第二阈值,且所述第一阈值小于所述第二阈值。
具体的,当所述口罩内部气体湿度位于所述第一阈值和所述第二阈值之间时,用户所呼吸到的气体最为适宜。
所述第一阈值和所述第二阈值可由生产商设定,也可由用户根据自身的使用情况以及使用环境自行设定。
所述湿度传感器用于检测所述口罩内部气体湿度,若所述湿度传感器检测到所述口罩内部气体湿度小于或等于所述第一阈值,则所述湿度传感器用于将已生成的第一指示信号发送给所述电源组件103,以使所述电源组件103根据所述第一指示信号向所述雾化模块202供电,使得所述雾化模块202将所述液体存储模块201所存储的液体雾化以供用户呼吸。
可见,当所述口罩内部气体湿度小于或等于所述第一阈值时,说明所述口罩内部气体湿度过低,则所述湿度传感器可控制所述雾化模块202将所述液体存储模块201所存储的液体雾化以提升所述口罩内部气体湿度,直至所述口罩内部气体湿度位于所述第一阈值和所述第二阈值之间。
若所述湿度传感器检测到所述口罩内部气体湿度大于或等于所述第二阈 值,则所述湿度传感器用于将已生成的第二指示信号发送给所述电源组件103,以使所述电源组件103根据所述第二指示信号不向所述雾化模块202供电,使得所述雾化模块202不会雾化所述液体存储模块201所存储的液体。
可见,当所述口罩内部气体湿度小于或等于所述第一阈值时,说明所述口罩内部气体湿度过高,则所述湿度传感器可控制所述雾化模块202不再雾化所述液体存储模块201所存储的液体以降低所述口罩内部气体湿度,直至所述口罩内部气体湿度位于所述第一阈值和所述第二阈值之间。
可见,通过本实施例所采用的所述湿度传感器能够保障用户吸入的气体的湿度保持在所述第一阈值和所述第二阈值之间,避免湿度过高或过低对用户健康所带来的不利影响。
以下对本实施例所提供的所述电源组件103的具体设置方式进行说明。
首先可参见图8和图9所示,其中,图9所示为佩戴本实用新型所提供的口罩的一种实施例佩戴效果示意图。
所述电源组件103包括电源本体501和与所述电源本体501电连接的电源线502。
所述电源线502与所述雾化模块202可拆卸连接,所述电源线502用于将所述电源本体501的电能传输给所述雾化模块202。
在具体佩戴的过程中,如图9所示,用于可将所述电源本体501放置在口袋中,可见,因本实施例所示的所述电源本体501和口罩之间为分离式结构,则可减轻所述口罩的重量,便于用户长时间的佩戴重量较轻的口罩,提升用户佩戴过程中的舒适度,而且生产商可生产大容量的所述电源本体501,提升口罩的使用时长,避免用户频繁的对电源本体501进行充电。
当然,所述口罩的结构也可采用图10所示,其中,图10所示为本实用新型所提供的口罩的另一种实施例剖面结构示意图。
如图10所示可知,所述电源本体501设置在所述第二支架302的外部,且所述电源本体501电连接的电源线502与所述雾化模块202电连接设置。
采用本种设置方式的优势在于,因所述电源本体501与所述口罩连接设置,提升了口罩整体结构的稳固性,避免电源本体501出现丢失的情况,而且用户在使用口罩的过程中,比较短的电源线502不会对用户的行为造成干涉。
可选的,所述电源本体501内部可设置有计时模块,所述计时模块预设有间隔时长。
所述间隔时长的起点时刻为所述电源本体501通过所述电源线502上一次向所述雾化模块202供电完成的时刻,所述电源本体501用于在所述计时模块所计的所述间隔时长达到时向所述雾化模块供电。
以下举具体应用场景进行说明,若本实施例所示的所述计时模块所计的间隔时长为50S,则在所述电源本体501通过所述电源线502上一次向所述雾化模块202供电完成的时刻开始计时,在所述计时模块计时过程中,所述电源本体501不向所述雾化模块202供电,当所述计时模块所计时长达到50S时,所述电源本体501向所述雾化模块供电,且所述计时模块所计时长清零。
通过本实施例所示的计时模块,能够使得所述雾化模块202每隔所述间隔时长雾化一次,从而有效的保障了口罩内部气体湿度的恒定。
可选的,所述口罩还包括电池盒,所述电池盒内部设置有所述电源本体501,所述电源线502穿过所述电池盒与所述电源本体501电连接,所述电池盒上设置有与所述电源本体501电连接的充电接口。
具体的,本实施例所示的所述充电接口为USB充电接口,通过所述USB充电接口能够使得外部电源为所述电源本体501进行充电,且所述电源本体501还能够通过所述USB充电接口为其他用电设备充电。
以下对本实施例所示的口罩如何提升气体循环的进行说明,以下结合图11至图14所示进行说明,其中,图11所示为本实用新型所提供的口罩的另一种实施例剖面结构示意图,图12所示为本实用新型所提供的口罩的一种实施例局部结构示意图,图13所示为本实用新型所提供的口罩的另一种实施例剖面结构示意图,图14所示为本实用新型所提供的口罩的另一种实施例剖面结构示意图。
贯穿所述第一支架301设置有至少一个第一排气口601,贯穿所述第二支架302设置有至少一个第二排气口602。
所述第一排气口601和所述第二排气口602同轴设置,以使经由所述第一排气口601和所述第二排气口602使得所述容纳凹腔305与所述口罩外部的大气导通设置。
所述口罩还包括单向阀,所述单向阀插设在所述第二支架302的所述第二排气口602内部。
具体的,所述单向阀包括单向阀本体603和抵持臂604。
如图13所示,当用户没有呼出气体时,所述抵持臂604抵持所述第二排气口602设置。
如图14所示,当用户呼出的气体流通至所述容纳凹腔305内部时,所述用户呼出的气体能够使得所述抵持臂604沿远离所述第二排气口602的方向运动,以使所述第二排气口602和所述第一排气口601导通设置,使得所述用户呼出的气体流通至所述口罩外部的大气。
其中,用户呼出的气体的具体流通方向请详见图14所示的箭头所示的方向。
采用本实施例所示的口罩的优势在于,通过所述单向阀,使得口罩外部的气体不能经由所述单向阀流通至所述口罩内部,而用户呼出的气体却能够经由所述单向阀排出所述口罩,从而使得用户在使用口罩的过程中,用户呼出的气体能够及时的排出,不会使得用户吸入自身已排出的气体,提升了口罩气体循环的效率,保障了用户使用口罩过程中的健康。
以上所述,以上实施例仅用以说明本实用新型的技术方案,而非对其限制;尽管参照前述实施例对本实用新型进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本实用新型各实施例技术方案的精神和范围。

Claims (13)

  1. 一种口罩,其特征在于,包括过滤组件、加湿组件以及电源组件,且所述加湿组件与所述电源组件电连接,所述过滤组件用于过滤大气中的空气以供用户呼吸;
    所述加湿组件包括雾化模块和液体存储模块,所述电源组件用于为所述雾化模块供电,所述雾化模块用于在所述电源组件供电时将所述液体存储模块所存储的液体雾化以供用户呼吸。
  2. 根据权利要求1所述的口罩,其特征在于,所述口罩还包括湿度传感器,所述电源组件与所述湿度传感器电连接,所述湿度传感器用于预先存储有第一阈值和第二阈值,且所述第一阈值小于所述第二阈值;
    所述湿度传感器用于检测所述口罩内部气体湿度,若所述湿度传感器检测到所述口罩内部气体湿度小于或等于所述第一阈值,则所述湿度传感器用于将已生成的第一指示信号发送给所述电源组件,以使所述电源组件根据所述第一指示信号向所述雾化模块供电,使得所述雾化模块将所述液体存储模块所存储的液体雾化以供用户呼吸;若所述湿度传感器检测到所述口罩内部气体湿度大于或等于所述第二阈值,则所述湿度传感器用于将已生成的第二指示信号发送给所述电源组件,以使所述电源组件根据所述第二指示信号不向所述雾化模块供电,使得所述雾化模块不会雾化所述液体存储模块所存储的液体。
  3. 根据权利要求1所述的口罩,其特征在于,所述电源组件包括电源本体和与所述电源本体电连接的电源线,所述电源线与所述雾化模块可拆卸连接,所述电源线用于将所述电源本体的电能传输给所述雾化模块。
  4. 根据权利要求1至3任一项所述的口罩,其特征在于,所述口罩包括第一支架和第二支架,所述第一支架和所述第二支架之间形成有所述液体存储模块;所述第一支架朝向用户的侧面形成有容纳凹腔,所述容纳凹腔匹配用户口鼻部位设置,与所述第一支架连接设备有挂耳部,且所述挂耳部与用户耳郭匹配设置,以使通过将所述挂耳部匹配设置在用户耳郭上,使得用户的口鼻部位能够容纳在所述第一支架的所述容纳凹腔内部;
    所述口罩还包括后盖,所述后盖的一侧插设固定有所述第二支架,所述后盖的另一侧插设固定有前盖,所述前盖与所述后盖之间可拆卸连接设置,所述 前盖和所述后盖之间设置有所述过滤组件,以使在将所述前盖解除与后盖连接后能够将所述过滤组件取出。
  5. 根据权利要求4所述的口罩,其特征在于,贯穿所述前盖设置有至少一个进气道,以使大气中的空气能够经由所述进气道流通至所述口罩内部;
    贯穿所述后盖设置有第一通孔,贯穿所述第二支架设置有第二通孔,贯穿所述第一支架设置有第三通孔,且所述第一通孔、所述第二通孔以及所述第三通孔同轴设置,以使经由所述过滤组件过滤后的气体能够依次经由第一通孔、所述第二通孔以及所述第三通孔流通至所述容纳凹腔内部以供用户呼吸。
  6. 根据权利要求5所述的口罩,其特征在于,贯穿所述第一支架设置有第四通孔,且所述第四通孔与所述第三通孔并列设置;
    所述第四通孔内部设置有所述雾化模块,且所述雾化模块与所述液体存储模块所存储的液体导通设置,以使所述雾化模块将所述液体存储模块所存储的液体雾化后经由所述第四通孔流通至所述容纳凹腔内部以供用户呼吸。
  7. 根据权利要求4所述的口罩,其特征在于,贯穿所述第二支架设置有加液口,且所述加液口与所述液体存储模块导通设置;
    与所述加液口匹配设置有密封塞,所述密封塞可拆卸的插设在所述加液口内部,以使所述加液口和所述密封塞过盈配合。
  8. 根据权利要求3所述的口罩,其特征在于,所述电源本体内部设置有计时模块,所述计时模块预设有间隔时长,所述间隔时长的起点时刻为所述电源本体通过所述电源线上一次向所述雾化模块供电完成的时刻,所述电源本体用于在所述计时模块所计的所述间隔时长达到时向所述雾化模块供电。
  9. 根据权利要求3所述的口罩,其特征在于,所述口罩还包括电池盒,所述电池盒内部设置有所述电源本体,所述电源线穿过所述电池盒与所述电源本体电连接,所述电池盒上设置有与所述电源本体电连接的充电接口。
  10. 根据权利要求4所述的口罩,其特征在于,贯穿所述第一支架设置有至少一个第一排气口,贯穿所述第二支架设置有至少一个第二排气口,且所述第一排气口和所述第二排气口同轴设置,以使经由所述第一排气口和所述第二排气口使得所述容纳凹腔与所述口罩外部的大气导通设置;
    所述口罩还包括单向阀,所述单向阀插设在所述第二支架的所述第二排气 口内部,所述单向阀包括单向阀本体和抵持臂,所述抵持臂抵持所述第二排气口设置,当用户呼出的气体流通至所述容纳凹腔内部时,所述用户呼出的气体能够使得所述抵持臂沿远离所述第二排气口的方向运动,以使所述第二排气口和所述第一排气口导通设置,使得所述用户呼出的气体流通至所述口罩外部的大气。
  11. 根据权利要求1所述的口罩,其特征在于,所述雾化模块为超声波雾化片,或发热丝,或陶瓷发热片。
  12. 根据权利要求1所述的口罩,其特征在于,所述雾化模块为超声波雾化片,所述液体存储模块包括存储空间和设置在所述存储空间内的储水棉,所述储水棉的一表面抵持在所述超声波雾化片的一表面上。
  13. 根据权利要求1所述的口罩,其特征在于,所述过滤组件为以下所示的至少一项:
    防尘层、抗菌层以及过滤层。
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CN109393604A (zh) * 2018-11-26 2019-03-01 佛山科学技术学院 一种智能口罩
CN113546271A (zh) * 2021-07-20 2021-10-26 广东医科大学附属医院 一种自动雾化的呼吸机湿化装置

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