CN220595167U - Diving mask using buccal respirator - Google Patents

Diving mask using buccal respirator Download PDF

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Publication number
CN220595167U
CN220595167U CN202322365252.1U CN202322365252U CN220595167U CN 220595167 U CN220595167 U CN 220595167U CN 202322365252 U CN202322365252 U CN 202322365252U CN 220595167 U CN220595167 U CN 220595167U
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China
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air
air outlet
mask
interface
hole
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范永有
汪星
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Huizhou Shenghong Industry And Trade Co ltd
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Huizhou Shenghong Industry And Trade Co ltd
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Abstract

The utility model provides a diving mask using a buccal respirator, which comprises a mask body component and a breathing component, wherein the breathing component is detachably connected with the mask body component. Wherein the respiratory component comprises: the air inlet piece, the connecting piece, the air pipe and the air outlet one-way valve assembly are connected, the air pipe is detachably arranged on the outer surface of the cover body part, and the air outlet one-way valve assembly is arranged at the bottom of the connecting piece; the cover body part is provided with an interface through hole, and the air inlet piece is detachably arranged in the interface through hole. The air inlet piece is provided with a buccal part and a clamping part, and when the air inlet piece is arranged in the interface through hole, the buccal part penetrates through the interface through hole and extends to the inside of the cover body part; the clamping part is provided with a clamping groove, and a limit convex edge matched with the clamping groove is arranged in the interface through hole. The diving mask with the buccal respirator can meet the requirements of diving breathing and vision simultaneously, and can reduce the size of the buccal part, so that the diving mask is more comfortable to use for users.

Description

Diving mask using buccal respirator
Technical Field
The utility model relates to the technical field of diving equipment, in particular to a diving mask using a buccal respirator.
Background
Along with the improvement of the living standard of people and the enhancement of the consciousness of the people on body building, the sports such as swimming, diving and the like are developed on a long basis, and for the personnel of the beginner swimming, diving sports and shallow sea aquatic work, a diving breathing appliance with simple structure, light weight and safe use is needed to meet the demands.
The prior Chinese patent publication No. CN211281416U discloses a diving breathing appliance named as a diving breathing tube, which comprises: the respiratory tube comprises a respiratory tube, a turning tube, a mouthpiece, a connecting tube and an elastic strap, wherein the top end of the connecting tube is provided with a shrinking tube part inserted into the bottom end of the respiratory tube, the peripheral wall of the shrinking tube part is provided with a positioning locking protrusion, and the peripheral wall of the respiratory tube is provided with a positioning locking groove. In use, the user breathes through the mouthpiece.
However, existing diving breathing appliances still have drawbacks, such as: in use, the user is required to bite into the mouthpiece to maintain the breathing tube stable and prevent ingress of water into the mouth, the mouthpiece is typically large in size and is designed in the shape of a mouthpiece for the desired effect. However, long-term biting of a mouthpiece having an excessively large size may cause discomfort to the chin of the user, and may cause dislocation of the chin; meanwhile, as the outside of the mouthpiece is not protected, water can enter the mouth by a little careless, and bad experience is brought to users. Moreover, for underwater vision, users often use diving breathing tubes in combination with goggles.
Therefore, it is necessary to design a diving mask using a mouth-type respirator, so that the diving mask can combine a diving breathing tube with a diving mask, and simultaneously meet the requirements of diving breathing and vision; but also can reduce the size of the mouthpiece, thereby providing more comfortable use experience for users.
Disclosure of Invention
In order to overcome the defects in the prior art, the utility model provides the diving mask with the buccal respirator, so that the diving breathing tube and the diving mask can be combined, and the size of the mouthpiece is reduced, thereby providing more comfortable use experience for users.
The aim of the utility model is realized by the following technical scheme:
a diving mask employing a mouth-type respirator, comprising a mask body component and a respiratory component, the respiratory component being removably connected to the mask body component;
the respiratory component includes: the air inlet piece, the connecting piece, the air pipe and the air outlet one-way valve assembly are connected with the air inlet piece and the air pipe, the air pipe is detachably arranged on the outer surface of the cover body part, and the air outlet one-way valve assembly is arranged at the bottom of the connecting piece; the cover body part is provided with an interface through hole, and the air inlet piece is detachably arranged in the interface through hole;
the air inlet piece is funnel-shaped, a buccal part and a clamping part are arranged on the air inlet piece, and when the air inlet piece is installed in the interface through hole, the buccal part penetrates through the interface through hole and extends to the inside of the cover body part; the clamping part is provided with a clamping groove, and a limit convex edge matched with the clamping groove is arranged in the interface through hole.
In one embodiment, the air inlet piece is of a soft rubber structure; the outer surface of the clamping part is provided with a plurality of waterproof rings, and when the air inlet piece is installed in the interface through hole, the waterproof rings are propped against the inner wall of the interface through hole.
In one embodiment, the cover member is provided with a fixing sleeve, the fixing sleeve is detachably mounted on the cover member through an elastic fastening structure, and the air pipe is arranged on the cover member through the fixing sleeve.
In one embodiment, the number of the air pipes is more than one, and the connecting piece is provided with more than one air receiving port, and the air pipes are respectively in one-to-one correspondence and are detachably connected with the air receiving ports; the respiratory component comprises a blocking plug for blocking the gas receiving port after the gas pipe is separated from the connecting piece.
In one embodiment, the end of the air tube is provided with a waterproof device.
In one embodiment, the outlet one-way valve assembly comprises: the device comprises an air outlet outer cover, an air outlet net, a movable sheet body and a sealing ring; the connecting piece is provided with an air outlet, the air outlet net and the sealing ring are arranged at the air outlet, the movable sheet body is arranged on the air outlet net, and the movable sheet body slides to realize unidirectional air exhaust of the air outlet net;
the air outlet outer cover is arranged at the air outlet, the air outlet net, the movable sheet body and the sealing ring are all arranged in the air outlet outer cover, and the air outlet outer cover is of a hollow structure.
In one embodiment, the cover member comprises: the outer frame is wrapped at the joint of the main body and the lining piece;
the lining member is provided with a face window and a face supporting ring surrounding the face window;
the main part is transparent structure, be equipped with planar structure's eyepiece portion and protruding structure's mouth and nose in the main part, the interface through-hole is located the mouth and nose of main part, be equipped with drainage check valve assembly on the mouth and nose, drainage check valve assembly is used for discharging ponding in the main part.
In one embodiment, the face supporting ring is of an elastic member structure, and a lower support is arranged on the face supporting ring.
In one embodiment, the drain check valve assembly includes: the water draining net is arranged at the mouth and the nose of the main body, the water draining net is plugged or opened by the water draining net to realize a one-way water draining function, the water draining net is covered by the outer cover, and the outer cover is of a hollow structure.
In one embodiment, the cover member includes a binding band, the outer frame is provided with a binding end, the end of the binding band is connected to the binding end, and the binding band is of an elastic structure or of a telescopic structure.
In one embodiment, the air inlet piece is provided with a folding ring, the folding ring is positioned between the buccal part and the clamping part, and the folding ring can be compressed or stretched.
In summary, the present utility model provides a diving mask using a mouth-type respirator, which can combine a diving breathing tube with diving glasses, and simultaneously meet the requirements of diving breathing and vision; but also can reduce the size of the buccal part, thereby reducing the discomfort of the chin of the user during use and providing more comfortable use experience for the user.
Drawings
In order to more clearly illustrate the technical solution of the embodiments of the present utility model, the drawings that are required to be used in the embodiments will be briefly described.
FIG. 1 is a schematic view of the construction of a diving mask of the present utility model employing a mouth-type respirator;
FIG. 2 is a schematic view of the housing component and respiratory component of FIG. 1;
FIG. 3 is a partial schematic view of the respirator of FIG. 1;
FIG. 4 is a schematic view of the respirator of FIG. 3 at other viewing angles;
FIG. 5 is a schematic view of a partial structure of the respiratory component shown in FIG. 2;
FIG. 6 is a schematic view of the air intake shown in FIG. 5;
FIG. 7 is a partial cross-sectional view of the respiratory component shown in FIG. 2;
FIG. 8 is an exploded view of the housing components shown in FIG. 2;
FIG. 9 is a schematic view of the liner and body of FIG. 8;
FIG. 10 is an exploded schematic view of the drain check valve assembly shown in FIG. 8;
fig. 11 is a plan cross-sectional view of the housing component shown in fig. 2.
Detailed Description
In order that the utility model may be readily understood, a more complete description of the utility model will be rendered by reference to the appended drawings. Other advantages and effects of the present utility model will be readily apparent to those skilled in the art from the present disclosure. It should be understood that the structures, proportions, sizes, etc. shown in the drawings are for illustration purposes only and should not be construed as limiting the utility model to the extent that it can be practiced, since modifications, changes in the proportions, or adjustments of the sizes, which are otherwise, used in the practice of the utility model, are included in the spirit and scope of the utility model which is otherwise, without departing from the spirit or scope thereof. Meanwhile, the terms such as "upper", "lower", "left", "right" and "middle" are also used in the present specification for convenience of description, and are not intended to limit the scope of the present utility model, which is to be construed as being limited to the relative changes or modifications thereof. Without substantial modification to the technical context, it is considered to be within the scope of the utility model as it may be practiced.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this utility model belongs. The terminology used herein in the description of the utility model is for the purpose of describing particular embodiments only and is not intended to be limiting of the utility model. The term "and/or" as used herein includes any and all combinations of one or more of the associated listed items.
The present utility model provides a diving mask 10 employing a mouth-type respirator, as shown in FIGS. 1 and 2, that includes a cover member 100 and a respiratory member 200, the respiratory member 200 being removably connected to the cover member 100.
As shown in fig. 2, 3, and 4, the respiratory component 200 includes: the air inlet piece 210, the connecting piece 220, the air pipe 230 and the air outlet one-way valve assembly 240, wherein the connecting piece 220 is used for connecting the air inlet piece 210 with the air pipe 230, the air pipe 230 is detachably arranged on the outer surface of the cover body part 100, and the air outlet one-way valve assembly 240 is arranged at the bottom of the connecting piece 220. The cover member 100 is provided with an interface through hole 101, and the air inlet 210 is detachably attached to the interface through hole 101.
As shown in fig. 5 and 6, the air intake member 210 has a funnel shape, and the air intake member 210 is provided with a mouthpiece 211 and a holding portion 212, and when the air intake member 210 is mounted on the interface through hole 101, the mouthpiece 211 extends into the cover member 100 through the interface through hole 101. The clamping portion 212 is provided with a clamping groove 213, and a limit rib (not shown) matched with the clamping groove 213 is arranged in the interface through hole 101.
In this embodiment, the air intake member 210 is of a soft rubber structure, and the air intake member 210 is plugged into the interface through hole 101 during diving; after emerging from the water surface, the user may choose to detach the air intake member 210 so as to expose the interface through hole 101, so that the user can talk to communicate or eat, and the specific working principle thereof will be described below.
In addition, as shown in fig. 6, a plurality of waterproof rings 214 are provided on the outer surface of the clamping portion 212 of the air inlet member 210, and when the air inlet member 210 is mounted on the interface through hole 101, the plurality of waterproof rings 214 are abutted against the inner wall of the interface through hole 101, so as to prevent external water from penetrating into the cover member 100 during diving.
Preferably, as shown in fig. 3, the tip of the air tube 230 is provided with a waterproof device 231. When diving, the air pipe 230 is completely immersed in water, the waterproof device 231 can be closed by itself under the action of water pressure, so as to prevent water from entering the air pipe 230; when the water-proof device 231 is not subjected to water pressure any more after the water surface is floated, it is opened by itself, so that the air pipe 230 is communicated with the outside atmosphere. The waterproof device 231 is a waterproof device of the chinese utility model patent with the publication number "CN211281416U" in the background art, which belongs to the technology known to those skilled in the art, and thus is not described herein.
In this embodiment, as shown in fig. 5, the outlet check valve assembly 240 includes: an air outlet cover 241, an air outlet net 242, a movable sheet 243 and a sealing ring 244. Wherein, the connecting piece 220 is provided with an air outlet 221, the air outlet net 242 and the sealing ring 244 are installed at the air outlet 221, the movable sheet 243 is arranged on the air outlet net 242, and the movable sheet 243 slides to realize unidirectional air exhaust of the air outlet net 242. The air outlet cover 241 is covered at the air outlet 221, the air outlet net 242, the movable sheet 243 and the sealing ring 244 are all located inside the air outlet cover 241, and the air outlet cover 241 is hollow. During diving, when a user inhales, the movable sheet 243 seals the air outlet net 242, so that the air outlet one-way valve assembly 240 is in a closed state; when the user exhales, the movable sheet 243 no longer seals the air outlet net 242, and the air outlet check valve assembly 240 is in an open state.
The principal principle of operation of the respirator 10 of the present utility model using a mouth-type respirator will now be described:
before diving, the user needs to wear the mask body 100 on the face, so that the eyes, nose and mouth of the face are covered by the mask body 100, and the mouth of the user is positioned at the position of the interface through hole 101; then, the user mounts the breathing member 200 to the cover member 100, the air intake member 210 is inserted into the interface through hole 101, the mouth portion 211 of the air intake member 210 extends to the inside of the cover member 100, and the mouth of the user can just hold the mouth portion 211;
in the diving process, the user needs to abandon the nose breathing mode and adopts the oral breathing mode. The breathing apparatus 200 may be operated by referring to a breathing tube of the prior art (for example, chinese patent publication No. CN 203372380U), and the main principle thereof is as follows. As shown in fig. 7, when inhaling, the air in the air pipe 230 passes through the connector 220 and the air inlet 210 and is finally inhaled into the user, and during this time, the air outlet check valve assembly 240 is in a closed state; during the gas discharge, the waste gas exhaled by the user enters the connecting piece 220 from the gas inlet piece 210, the gas pressure in the connecting piece 220 is increased, meanwhile, the gas outlet one-way valve assembly 240 is in an open state, and the redundant gas in the connecting piece 220 can be discharged to the outside through the gas outlet one-way valve assembly 240, so that the gas pressure in the connecting piece 220 is balanced; in addition, the redundant air in the connecting piece 220 can be discharged to the outside through the air pipe 230, so that the air pressure in the connecting piece 220 is balanced;
after the user is out of the water, the user has one of two breathing modes, the user continues to breathe by using the breathing component 200, the air pipe 230 at the moment is communicated with the outside atmosphere, and the user can breathe fresh air through the breathing component 200; secondly, the user can detach the air inlet 210 from the interface through hole 101, so that the interface through hole 101 is opened, and thus, the mouth and nose of the user can directly breathe to the external atmosphere through the interface through hole 101. When diving again, the user only needs to plug the air inlet piece 210 into the interface through hole 101 again.
It is noted that, in contrast to the breathing tubes of the prior art, the scuba diving mask 10 of the present utility model, in combination with the mask body assembly 100, allows the user to breathe as well as view objects underwater by way of the respiratory assembly 200. In addition, since the air inlet member 210 is fixedly supported by the interface through hole 101 and the air pipe 230 can be fixed on the outer surface of the cover member 100, in the present utility model, the user does not need to forcibly bite into the mouthpiece 211 of the air inlet member 210 to keep the respiratory member 200 stable, so that the size of the mouthpiece 211 can be reduced, the discomfort of the user's chin during use can be reduced, and a more comfortable use experience can be provided for the user.
It is further noted that in the present utility model, the respiratory component 200 and the cover component 100 may be separated from each other. Specifically, when the air intake member 210 is to be floated out of the water, the user can detach the air intake member 210 from the interface through-hole 101 while the interface through-hole 101 is open, the user can breathe directly to the outside atmosphere, and the user's mouth is in the position of the interface through-hole 101, which allows the user to speak or eat normally while wearing the cover member 100.
Preferably, as shown in fig. 6, in the respiratory component 200, the mouthpiece 211 of the air intake member 210 is provided with an incisor slot 215, and when the user holds the mouthpiece 211 in the mouth, the user's incisors bite into the incisor slot 215, thereby enhancing the fit between the mouthpiece 211 and the oral cavity and limiting the mouthpiece 211.
Preferably, as shown in fig. 6, a folding ring 216 is provided on the air inlet 210, the folding ring 216 is located between the mouth portion 211 and the clamping portion 212, and the folding ring 216 can be compressed or stretched. In this way, the telescopic folding ring 216 can change the overall length of the air intake member 210, and the user can compress or extend the folding ring 216 as required, so that the mouth portion 211 of the air intake member 210 is close to or far from the mouth, thereby facilitating the use of the user.
In this embodiment, as shown in fig. 2 and 3, a fixing sleeve 102 is provided on the cover member 100, the fixing sleeve 102 is detachably mounted on the cover member 100 through an elastic fastening structure (not shown), and the air tube 230 is provided on the cover member 100 through the fixing sleeve 102. The elastic buckle structure is a prior art, and belongs to a technology well known to those skilled in the art, so that the description is omitted herein. Like this, fixed external member 102 is supplementary fixed to trachea 230 to fixed external member 102 adopts elasticity buckle structure, and it can be conveniently dismantled or the installation, when taking place to collide with the rupture, the user can be conveniently changed, thereby does not influence the whole use.
In one embodiment, the number of the air pipes is more than one, and the connecting piece is provided with more than one air receiving port, and the air pipes are respectively in one-to-one correspondence and are detachably connected with the air receiving ports; the respiratory component comprises a blocking plug, and the blocking plug is used for blocking the gas receiving port after the gas pipe is separated from the connecting piece. In the present embodiment, as shown in fig. 2 and 3, the number of the air pipes 230 is three, and three air receiving ports 222 are provided on the connecting member 220, and the three air pipes 230 are detachably connected to the three air receiving ports 222, respectively. Respiratory component 200 includes a plug 250, plug 250 for sealing off the air connection port 222 when the air tube 230 is disconnected from the connector 220. In use, a user may select the number of air tubes 230, and when a portion of the air tubes 230 are not needed, the user separates the air tubes 230 from the connector 220 and then plugs the air receiving port 222 with the plug 250 to prevent water or air leakage.
In the prior art, chinese patent publication No. CN110077558B discloses a diving mask comprising a frame, a transparent portion supported by the frame, a sealing portion mounted on the frame and adapted to be positioned on the face of a user, and a vent tube. The seal portion includes a dividing wall adapted to rest over the nose of a user when the mask is donned to form an upper chamber and a lower chamber, the lower chamber accommodating the nose and mouth of the user. The two chambers are communicated through a passage provided in the partition wall and through a one-way valve so that air can flow from the upper chamber to the lower chamber, but vice versa;
the Chinese patent with the bulletin number of CN208683078U discloses an isolated diving mask, which comprises a breathing tube and a mask with an inhalation channel and an exhalation channel, wherein a partition plate for partitioning the internal space of the breathing tube into the inhalation channel and the exhalation channel is arranged in the breathing tube, an air suction port and an exhalation port are arranged at the top end part of the breathing tube, the air suction port is communicated with the inhalation channel through the inhalation channel, the exhalation port is communicated with the exhalation channel through the exhalation channel, and the air suction port and the exhalation port are respectively positioned in the areas on different sides of the breathing tube.
It can be seen in the above prior art that the existing diving mask adopts a double-channel structural design, however, the existing diving mask has the following disadvantages:
firstly, the two-channel structural design of the existing diving mask ensures that the size of the mask is larger, and when the diving is carried out, the buoyancy generated by the mask is larger, so that the influence is easily brought to a diving user;
secondly, after the existing diving mask is out of the water, the mask needs to be taken down to speak or eat, frequent wearing is complicated, and inconvenience is brought to users;
thirdly, in order to adopt a double-channel structure design, the interior of the existing diving mask is usually partitioned, wherein a beam structure (such as a partition wall in the patent of the utility model with the bulletin number of CN 110077558B) serving as a partition boundary line is pressed on the nose bridge of a user, so that pressure is caused to the nose bridge of the user, and further the user experience is poor;
fourth, when using current diving mask, user's mouth and nose all breathe, in the expiration in-process, and the waste gas that the user spitted makes in the diving mask and forms water smoke easily to influence and look the thing.
In contrast to the prior art, the respiratory tube design of the present utility model, i.e., the present utility model does not employ a dual channel design, and thus the respiratory mask 10 of the present utility model overcomes the above-described drawbacks, as described in detail below.
Next, first, the main structure of the cover member 100 will be described:
as shown in fig. 8, the cover member 100 includes: the outer frame 110, the main body 120 and the lining member 130, wherein the edge of the main body 120 is connected with the edge of the lining member 130, and the outer frame 110 is wrapped at the connection part of the main body 120 and the lining member 130.
Wherein, the lining member 130 is provided with a face window 131 and a face holding ring 132 surrounding the face window 131, and when in use, the face holding ring 132 of the lining member 130 is mutually attached to the face of the user.
The main body 120 is of a transparent structure, the main body 120 is provided with an eyepiece part 121 with a planar structure and an oral-nasal part 122 with a convex structure, the interface through hole 101 is positioned on the oral-nasal part 122 of the main body 120, the oral-nasal part 122 is provided with a drainage one-way valve assembly 140, and the drainage one-way valve assembly 140 is used for draining accumulated water in the main body 120. In use, a user views through eyepiece portion 121 of body 120.
Preferably, the face abutment ring 132 is of an elastic structure, so that when worn, the face abutment ring 132 having elasticity can better conform to the facial contours of a user and be compatible with facial contours of different users, thereby better preventing water from penetrating into the cover member 100.
Further, the face supporting ring 132 of the present utility model is provided with a lower bracket 133 (as shown in fig. 9). The lower support 133 has two functions, namely, in order to support the chin of the user, ensure the balance of stress, ensure that the lining member 130 can stably fit the facial contour of the user, and prevent the cover member 100 from falling off; on the other hand, the buccal portion 211 of the air inlet member 210 extends into the cover member 100, and the lower bracket 133 can provide lifting for the buccal portion 211 (as shown in fig. 11), thereby reducing the pressure applied to the chin of the user and reducing the burden on the user.
Preferably, as shown in fig. 10, the drain check valve assembly 140 includes: the outer cover 141, the drainage net 142 and the drainage sheet body 143, the drainage net 142 is arranged at the mouth and nose 122 of the main body 120, the drainage sheet body 143 seals or opens the drainage net 142 to realize a one-way drainage function, the outer cover 141 covers the drainage sheet body 143 and the drainage net 142, and the outer cover 141 is of a hollow structure. In the use process, when ponding appears in the cover body part 100, ponding can gather in the mouth and nose 122 under the action of gravity, and the drainage sheet body 143 can open drainage network 142 for ponding in the main part 120 can be discharged through drainage check valve assembly 140, and outside water can not get into the main part 120 inside through drainage check valve assembly 140.
Preferably, the cover member 100 includes a binding band (not shown), the outer frame 110 is provided with a binding end 111 (shown in fig. 10), the end of the binding band is connected to the binding end 111, and the binding band is of an elastic structure or a telescopic structure. Thus, the user can wear the cover body part 100 on the face by using the binding belt, and the elastic structure or the telescopic structure of the binding belt is designed, so that the user can wear the cover body part conveniently, and the compatibility of the cover body part 100 with different user surface profiles can be improved.
It can be seen that, compared with the prior art, the diving mask 10 using the buccal respirator of the present utility model adopts the combination of the mask body 100 and the respiratory component 200, thereby overcoming the drawbacks of the prior art, and has the following characteristics:
first, compared to the existing breathing tube, the breathing member 200 of the present utility model relies on the cover member 100 for support, reducing the size of the mouthpiece 211 of the air intake member 210, thereby reducing user chin discomfort during use and providing a more comfortable use experience for the user;
secondly, compared with the existing diving mask, the utility model adopts the breathing tube structural design, and the inside of the mask body part 100 does not need to be designed with a complex double-channel structure, so that the volume of the mask body part 100 can be greatly reduced, thereby reducing the buoyancy during diving;
third, compared with the existing diving mask, in the present utility model, the breathing component 200 and the mask body component 100 can be separated from each other, and the user can normally speak or eat only by removing the air inlet 210 from the interface through hole 101, thereby avoiding the trouble of frequent wearing;
fourth, compared with the existing diving mask, because the user breathes through the independent breathing component 200, the inside of the mask body component 100 does not need to be partitioned, so that a beam structure serving as a partition boundary line is not needed to be arranged, namely, a structure for pressing on the nose bridge of the user is not needed to be arranged in the mask body component 100, so that the pressure of the nose bridge of the user is reduced, and the experience of the user is improved;
fifth, in the present utility model, compared to the conventional diving mask, the user breathes through the independent breathing member 200, and the discharged exhaust gas is discharged through the breathing member 200, so that fog is not easily generated in the cover member 100, and thus the vision function is not affected.
In summary, the present utility model provides a respirator 10 that uses a mouth-type respirator that can combine a scuba tube with a pair of goggles while meeting the breathing and vision requirements of the scuba; but also reduces the size of the mouthpiece 211 of the air intake 210, thereby reducing user chin discomfort during use and providing a more comfortable use experience for the user.
The above examples illustrate only a few embodiments of the utility model, which are described in detail and are not to be construed as limiting the scope of the utility model. It should be noted that it will be apparent to those skilled in the art that several variations and modifications can be made without departing from the spirit of the utility model, which are all within the scope of the utility model. Accordingly, the scope of protection of the present utility model is to be determined by the appended claims.

Claims (11)

1. A diving mask employing a mouth-type respirator, comprising a mask body component and a respiratory component, wherein the respiratory component is detachably connected to the mask body component;
the respiratory component includes: the air inlet piece, the connecting piece, the air pipe and the air outlet one-way valve assembly are connected with the air inlet piece and the air pipe, the air pipe is detachably arranged on the outer surface of the cover body part, and the air outlet one-way valve assembly is arranged at the bottom of the connecting piece; the cover body part is provided with an interface through hole, and the air inlet piece is detachably arranged in the interface through hole;
the air inlet piece is funnel-shaped, a buccal part and a clamping part are arranged on the air inlet piece, and when the air inlet piece is installed in the interface through hole, the buccal part penetrates through the interface through hole and extends to the inside of the cover body part; the clamping part is provided with a clamping groove, and a limit convex edge matched with the clamping groove is arranged in the interface through hole.
2. The scuba diving mask of claim 1 wherein said air intake member is of flexible rubber construction; the outer surface of the clamping part is provided with a plurality of waterproof rings, and when the air inlet piece is installed in the interface through hole, the waterproof rings are propped against the inner wall of the interface through hole.
3. The scuba diving mask for a mouth-type respirator according to claim 1, wherein said mask body member is provided with a securing sleeve, said securing sleeve being detachably mounted to said mask body member by means of an elastic snap-fit structure, said air tube being provided to said mask body member by means of said securing sleeve.
4. The diving mask with a mouth-type respirator according to claim 3, wherein the number of the air pipes is more than one, and more than one air receiving port is arranged on the connecting piece, and the air pipes are respectively in one-to-one correspondence and are detachably connected with the air receiving ports; the respiratory component comprises a blocking plug for blocking the gas receiving port after the gas pipe is separated from the connecting piece.
5. The scuba diving mask for use with a mouth-type respirator of claim 1 wherein the tip of the air tube is provided with a waterproof means.
6. The scuba-using diving mask of claim 1, wherein said air outlet one-way valve assembly comprises: the device comprises an air outlet outer cover, an air outlet net, a movable sheet body and a sealing ring; the connecting piece is provided with an air outlet, the air outlet net and the sealing ring are arranged at the air outlet, the movable sheet body is arranged on the air outlet net, and the movable sheet body slides to realize unidirectional air exhaust of the air outlet net;
the air outlet outer cover is arranged at the air outlet, the air outlet net, the movable sheet body and the sealing ring are all arranged in the air outlet outer cover, and the air outlet outer cover is of a hollow structure.
7. The scuba diving mask of claim 1 wherein said mask body component comprises: the outer frame is wrapped at the joint of the main body and the lining piece;
the lining member is provided with a face window and a face supporting ring surrounding the face window;
the main part is transparent structure, be equipped with planar structure's eyepiece portion and protruding structure's mouth and nose in the main part, the interface through-hole is located the mouth and nose of main part, be equipped with drainage check valve assembly on the mouth and nose, drainage check valve assembly is used for discharging ponding in the main part.
8. The scuba diving mask of claim 7 wherein said face abutment ring is of elastomeric construction and is provided with a lower bracket.
9. The scuba-using diving mask of claim 7, wherein said drain check valve assembly comprises: the water draining net is arranged at the mouth and the nose of the main body, the water draining net is plugged or opened by the water draining net to realize a one-way water draining function, the water draining net is covered by the outer cover, and the outer cover is of a hollow structure.
10. The scuba diving mask of claim 7, wherein said mask body member comprises a restraining strap, said outer frame having a restraining end, said restraining strap terminating in said restraining end, and said restraining strap being of elastic construction or of telescoping construction.
11. The scuba diving mask of claim 1 wherein said air intake member is provided with a fold-over loop between said mouth and said catch, said fold-over loop being compressible or expandable.
CN202322365252.1U 2023-09-01 2023-09-01 Diving mask using buccal respirator Active CN220595167U (en)

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