Mouthpiece-type mask
The mouthpiece-type mask addresses discomfort and fit issues by using a mouth-inserted design with an adjustable guide, ensuring stability and ease of use with helmets, and safe breathing.
Patent Information
- Application Number
- PCT/KR2025/005083
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-05-30
- Filing Date
- 2025-04-15
- Publication Date
- 2025-12-04
AI Technical Summary
Conventional masks cause discomfort due to constant ear pressure from straps and fail to maintain a stable fit when worn with helmets or during hair removal, making it difficult to breathe safely.
A mouthpiece-type mask design featuring a curved sheet body with a connecting portion that inserts into the mouth, a filtering unit, and a wearable guide that adjusts to maintain stability and ease of use, allowing for secure fitting with or without a helmet.
The mask maintains a stable fit during helmet use or hair removal, is easily put on or taken off, causes no discomfort, and ensures safe and easy breathing.
Smart Images

Figure KR2025005083_04122025_PF_FP_ABST
Abstract
Description
Mouthpiece type mask
[0001] The present invention relates to a mask, and more particularly, to a mouthpiece-type mask that can be easily worn by a helmet wearer, prevents discomfort while worn, and can be stably maintained in a worn state during the process of putting on and taking off the helmet.
[0002] A mask is an item worn on the user's head to cover the user's face. It protects the user's respiratory system by blocking dust, bacteria, viruses, etc., and is used to protect the user from harmful substances in the air. Recently, it has been used on a daily basis to prevent infectious diseases.
[0003] Typically, masks include a sheet-shaped mask body that wraps around the nose, mouth, and chin, and mask straps that connect to the mask body and hang over the ears. When worn, these straps exert constant pressure around the user's ears, potentially causing ear pain. While the length of the mask straps can be adjusted in some cases, the process is cumbersome.
[0004] Additionally, users may wear a helmet or remove it while riding a motorcycle or other vehicle while wearing a mask. However, the mask is often positioned too far from the user's face, making it difficult to maintain a stable fit.
[0005] The technical problem to be achieved by the mouthpiece type mask according to the technical idea of the present invention is to provide a mouthpiece type mask that can be stably maintained on the user's face during the user's helmet wearing and hair removal processes.
[0006] In addition, a technical problem to be achieved by a mouthpiece-type mask according to the technical idea of the present invention is to provide a mouthpiece-type mask that can be easily worn or detached by a user.
[0007] In addition, a technical task to be achieved by a mouthpiece-type mask according to the technical idea of the present invention is to provide a mouthpiece-type mask that does not cause discomfort to the user, such as pain, when worn.
[0008] In addition, the technical task to be achieved by the mouthpiece type mask according to the technical idea of the present invention is to provide a mouthpiece type mask that allows the user to breathe easily and safely while wearing it.
[0009] The technical problems to be solved by the mouthpiece type mask according to the technical idea of the present invention are not limited to the problems mentioned above, and other problems not mentioned can be clearly understood by those skilled in the art from the description below.
[0010] According to one embodiment of the technical idea of the present invention, a mouthpiece-type mask comprises: a body part formed in a curved sheet shape so as to cover a respiratory organ, and having a body opening; a connecting part positioned on a first surface of the body part to correspond to the body opening and having a connecting space formed to be connected to the body opening; and a filtering part positioned on the connecting space of the connecting part and capable of filtering foreign substances, wherein when a part of the connecting part is inserted and fixed into a user's mouth, the body part covers the user's respiratory organ, and an edge of the first surface of the body part comes into contact with the user's face.
[0011] Additionally, the filter unit can be inserted into the connecting portion so as to be detachable and positioned on the connecting space.
[0012] In addition, the connecting portion includes a connecting body having a column shape, the first end face of which is connected to the first surface of the body; and a wearing guide having a column shape, the first end face of which is connected to a second end face opposite the first end face of the connecting body and can be inserted and mounted in the user's mouth, wherein the connecting space can be formed to penetrate both end faces of the connecting body and both end faces of the wearing guide to be connected to the body opening.
[0013] Additionally, the filter unit may be positioned on the connecting space between the two longitudinal sections of the connecting body.
[0014] Additionally, when the wearable device is inserted and secured in the user's mouth, the user's nose can be positioned to correspond to the connecting body.
[0015] Additionally, when the user breathes in, air is drawn into the connecting space through the body opening and flows toward the user's mouth, passing through the filtering unit, and is inhaled by the user, and foreign substances in the air are filtered by the filtering unit, and when the user breathes out, air is drawn into the connecting space from the user's mouth and flows toward the body opening, passing through the filtering unit, and can be discharged through the body opening.
[0016] In addition, the body part includes an auxiliary body formed in a plate shape and positioned to correspond to the first surface of the body part by extending from the lower end of the body part; and an inductor formed in a gel shape and positioned along the edge of the first surface of the body part and detachably attachable to the user's face, such that when the wearable inductor is inserted and fixed in the user's mouth, the body part covers the user's respiratory organ, while the inductor is attached to the user's face and the auxiliary body can support the user's chin area.
[0017] In addition, a first connection space is formed in the connecting body so as to be connected to the body opening by penetrating both longitudinal sections of the connecting body, an induction space positioned along the circumferential direction of the first connection space is concavely formed in the second longitudinal section of the connecting body, and a plurality of movable openings are formed so as to be spaced apart from each other along the circumferential direction of the first connection space while connecting the induction spaces in the first longitudinal section of the connecting body, and a second connection space is formed in a shape corresponding to the first connection space in the wearing inductor by penetrating both longitudinal sections of the wearing inductor, a filtering portion is positioned on the first connection space, and an auxiliary inductor is positioned on the second surface opposite the first surface of the body portion so as to correspond to the movable opening and be detachably attached to a helmet worn by a user, and a first end portion of the wearing inductor is positioned by being inserted into the induction space, and the wearing inductor is movable along the induction space, an inner surface of the second connection space is in contact with an inner surface of the induction space, an outer surface of the wearing inductor is positioned so as to be spaced apart from an outer surface of the induction space, and 2 The connecting space can be connected to the first connecting space to form a connecting space.
[0018] In addition, the connecting portion includes a plurality of adjusting inductors, each of which is formed in the form of a compression spring and is positioned so as to be spaced apart from each other along the circumferential direction of the first connecting space in the induction space, and the first end surface is connected to the first end surface of the induction space so as to correspond to the moving opening, and the second end surface opposite the first end surface is connected to the first end surface of the wearing inductor; a moving portion including a moving body formed in the shape of a rod and inserted into the adjusting inductor and the moving opening, the first end surface being fixed by contacting the first surface of the body part, and a moving auxiliary body formed in the shape of a wire and inserted into the adjusting inductor to connect the second end surface opposite the first end surface of the moving body and the first end surface of the wearing inductor; an induction portion formed concavely along the longitudinal direction of the wearing inductor on an outer surface of the wearing inductor and positioned between the adjusting inductors; And further comprising an adjusting connector formed in a rod shape, positioned in the induction space between the adjusting inductors so as to connect the outer surface of the induction space and the induction portion, the first end portion being inserted into the outer surface of the induction space, and the second end portion opposite the first end portion being inserted into the induction portion, wherein the induction portion comprises an insertion guide groove formed concavely on the outer surface of the wearing inductor in a straight line along the longitudinal direction of the wearing inductor between the two end faces of the wearing inductor, the first end face being positioned to correspond to the first end face of the wearing inductor; a first auxiliary guide groove formed concavely so as to face upward while being connected to the second end face opposite the first end face of the insertion guide groove on the outer surface of the wearing inductor, and having a width that gradually increases as it is positioned upward and away from the insertion guide groove; A second auxiliary guide groove connected to the upper end of the first auxiliary guide groove on the outer surface of the wearable inductor and formed concavely along the length direction of the wearable inductor to correspond to the second end portion of the insertion guide groove, and positioned so that the first end surface corresponds to the first end surface of the wearable inductor;And a restoration guide groove formed concavely on the outer surface of the wearing guide, and connecting the insertion guide groove between the two longitudinal sections of the insertion guide groove and the first longitudinal section of the second auxiliary guide groove, and positioned increasingly lower as it approaches the first longitudinal section of the wearing guide groove, an induction stopper is formed protrudingly on the upper end of the first side of the first auxiliary guide groove, a first auxiliary groove is formed concavely on the second side opposite the first side of the first auxiliary guide groove so as to be positioned lower than the induction stopper, and a second auxiliary groove is formed concavely on the second longitudinal section opposite the first longitudinal section of the second auxiliary guide groove, and when the wearing guide is inserted into the induction space and moves along the connecting body, the adjusting connection body rotates about the first longitudinal section of the adjusting connection body as an axis, and the second longitudinal section of the adjusting connection body can move along the induction part.;
[0019] In addition, the control inductor is positioned in the induction space in its original elongated shape, the wearing inductor is inserted into the induction space and positioned in a state protruding as much as possible from the connecting body, the moving body is inserted into the moving opening and the controlling inductor, and the first end face of the moving body is positioned on the same plane as the first end face of the connecting body, the moving auxiliary body is inserted into the controlling inductor and positioned taut in a straight line, the second end part of the controlling connecting body is positioned in contact with the first end face of the insertion guide groove, and the wearing inductor is pushed, and the wearing inductor moves along the connecting body so as to be increasingly inserted into the induction space, and the controlling inductor is gradually compressed while accumulating a restoring force, so that the second end part of the controlling connecting body moves along the insertion guide groove toward the second end face of the insertion guide groove and contacts the second end face of the insertion guide groove and the second side of the first auxiliary guide groove, moves along the first auxiliary guide groove, and is inserted into the first auxiliary groove, and the moving auxiliary body becomes looser and clumps up and presses the moving body to be pulled out from the first end face of the connecting body. The auxiliary guide is attached to the helmet while the helmet is pressed by the moving body so as to protrude, and when the wearing guide is not pushed, the adjusting guide is extended by the restoring force, and the wearing guide is moved to protrude further from the guidance space by the adjusting guide, so that the second end portion of the adjusting connecting body moves toward the first end face of the insertion guide groove and is separated from the first auxiliary groove and contacts the first side of the first auxiliary guide groove and moves along the first auxiliary guide groove to contact the guidance stopper, and the length of the connecting portion according to the connecting body and the wearing guide is maintained in a reduced state, and the moving body does not press the helmet while penetrating the moving opening and the auxiliary guide is attached to the helmet, and when the wearing guide is pushed again, the adjusting guide is compressed to accumulate the restoring force, and the wearing guide is moved to be inserted into the guidance space, and the second end portion of the adjusting connecting body is separated from the guidance stopper,When the first auxiliary guide groove is contacted with the second side and moves along the first auxiliary guide groove to be guided to the second auxiliary guide groove and inserted into the second auxiliary groove, and when the wearing guide is not pushed again, the adjusting guide is extended by the restoring force, the wearing guide is moved to protrude from the guidance space by the adjusting guide, the second end portion of the adjusting connecting body is separated from the second auxiliary groove and moves along the second auxiliary guide groove, the restoring guide groove and the insertion guide groove to be contacted with the first end surface of the insertion guide groove, and the length of the connecting portion according to the connecting body and the wearing guide is increased and maintained at the maximum, and the moving auxiliary body is gradually released from the clumped state and formed into a straight shape and positioned in a taut state, and the moving body moves to correspond to the wearing guide and is completely inserted into the movement opening and the guidance space, and the auxiliary guide can be separated from the helmet.
[0020] A mouthpiece-type mask according to embodiments of the technical idea of the present invention has the following effects.
[0021] (1) The mask can be maintained in a stable state while the user puts on or takes off the helmet.
[0022] (2) The mask can be easily put on or taken off by the user.
[0023] (3) Users may not feel any discomfort, such as pain, from wearing a mask.
[0024] (4) Users can breathe easily and safely while wearing the mask.
[0025] However, the effects that can be achieved by the mouthpiece-type mask according to one embodiment of the present invention are not limited to those mentioned above, and other effects not mentioned will be clearly understood by those skilled in the art from the description below.
[0026] To facilitate a more thorough understanding of the drawings cited herein, a brief description of each drawing is provided.
[0027] FIG. 1 is a perspective view illustrating a mouthpiece-type mask according to a first embodiment of the present invention.
[0028] FIG. 2 is a drawing showing a mouthpiece-type mask according to the first embodiment of the present invention being worn by a user.
[0029] FIG. 3 is a drawing showing a mouthpiece-type mask according to a second embodiment of the present invention being worn by a user.
[0030] FIG. 4 is a drawing showing the operation of a connecting portion in a mouthpiece-type mask according to a second embodiment of the present invention.
[0031] The present invention is susceptible to various modifications and embodiments. Specific embodiments are illustrated in the drawings and described in detail. However, this is not intended to limit the present invention to specific embodiments, and it should be understood that the present invention encompasses all modifications, equivalents, and alternatives falling within the spirit and technical scope of the present invention.
[0032] In describing the present invention, detailed descriptions of related known technologies will be omitted if they are deemed to unnecessarily obscure the gist of the present invention. Furthermore, numbers (e.g., "first," "second," etc.) used throughout the description of this specification are merely identifiers used to distinguish one component from another.
[0033] Additionally, when a component is referred to as being "connected" or "connected" to another component in this specification, it should be understood that the component may be directly connected or connected to the other component, but may also be connected or connected via another component in between, unless otherwise specifically stated.
[0034] In addition, the components expressed as "~part" in this specification may be two or more components combined into one component, or one component may be divided into two or more components with more detailed functions. In addition, each component described below may additionally perform some or all of the functions performed by other components in addition to its own main function, and of course, some of the main functions performed by each component may be exclusively performed by other components.
[0035] Hereinafter, embodiments according to the technical idea of the present invention will be described in detail one by one.
[0036] FIG. 1 is a perspective view illustrating a mouthpiece-type mask according to a first embodiment of the present invention, and FIG. 2 is a drawing illustrating a mouthpiece-type mask according to the first embodiment of the present invention being worn by a user.
[0037] As shown in FIGS. 1 and 2, a mouthpiece-type mask (100) according to the first embodiment of the present invention can be used to cover the respiratory part centered around the nose and mouth with a body part (101), a connection part (102), and a filter part (103), and is preferable for a user who wears a helmet (10) or loses hair.
[0038] The body part (101) may be formed in a curved sheet shape so as to cover the respiratory organs. This body part (101) may be formed in a laminated form of a spunbonded outer layer, a meltblown middle layer, and a spunbonded inner layer for lining. Here, the spunbonded inner layer for lining forms the first side of the body part (101), and the spunbonded outer layer forms the second side opposite the first side of the body part (101). A body opening (110) may be formed in the body part (101).
[0039] The connecting portion (102) may be positioned on the first surface of the body portion (101) so as to correspond to the body opening (110). In addition, a connecting space (120) may be formed through the connecting portion (102) so as to be connected to the body opening (110). A portion of the connecting portion (102) may be inserted into and fixed in the user's mouth, so that the mask (100) may be worn by the user.
[0040] Additionally, the connecting portion (102) may include a connecting body (121) and a wearing inducer (123).
[0041] The connecting body (121) is formed in a columnar shape and can be positioned on the first surface of the body portion (101) to correspond to the body opening (110). Here, the first longitudinal section of the connecting body (121) can be positioned and fixed on the first surface of the body portion (101).
[0042] The wearable inducer (123) may be formed into a column shape that can be mounted on the user's mouth and may be made of an elastic material. Here, the first end surface of the wearable inducer (123) may be positioned at the second end surface opposite the first end surface of the connecting body (121). The connecting space (120) may be formed to penetrate both end surfaces of the wearable inducer (123) and both end surfaces of the connecting body (121) and may be connected to the body opening (110).
[0043] When the wearable inducer (123) is inserted into the user's mouth, the user can bite and secure the wearable inducer (123), and the user's nose can be positioned to correspond to the connecting body (121). Here, the body part (101) covers the respiratory organ centered on the mouth and nose, and the edge of the first surface of the body part (101) can be in contact with the user's face. That is, in the present embodiment, as the wearable inducer (123) is inserted into the user's mouth, the mask (100) can be worn on the user's face to cover the user's respiratory organ.
[0044] The filter (103) can be detachably inserted into the connecting portion (102), particularly the connecting body (121), and positioned on the connecting space (120). Here, the filter (103) can be positioned between the two longitudinal sections of the connecting body (121). When air flows into the connecting space (120), the air can pass through the filter (103), and foreign substances in the air can be filtered by the filter (103). Here, the foreign substances in the air can be dust, bacteria, viruses, etc.
[0045] The user can wear the mask (100) with the wearable inducer (123) inserted into the user's mouth, and the user can breathe. Here, when the user breathes in, outside air can be introduced into the connection space (120) through the body opening (110). The outside air in the connection space (120) can be inhaled by the user by passing through the filtering unit (103) while flowing toward the user's mouth, while foreign substances in the outside air can be filtered by the filtering unit (103) and not introduced to the user. Meanwhile, when the user breathes out, air can be introduced into the connection space (120) from the user's mouth. Here, the air can be discharged to the outside through the body opening (110) by passing through the filtering unit (103) while flowing toward the body opening (110).
[0046] As described above, the filter (103) can provide the user with safe breathing by preventing the user from inhaling foreign substances in the external air.
[0047] Meanwhile, since the filter unit (103) is detachably inserted into the connecting body (121), it can be easily replaced as needed or reused after being washed.
[0048] When the wearing guide (123) of the connecting portion (102) of the mask (100) according to the present embodiment is inserted into the user's mouth, the user can bite and fix the wearing guide (123), and the user's nose can be positioned to correspond to the connecting body (121) of the connecting portion (102). Here, the body portion (101) covers the user's respiratory organ, and the first side edge of the body portion (101) can contact the user's face. In addition, the user can wear the mask (100) by biting the wearing guide (123) of the connecting portion (102) through the mouth while wearing the helmet (10), and can detach the mask (100) by detaching the wearing guide (123) from the mouth. Therefore, the mask (100) according to the present embodiment can be easily worn or detached by the user, and can avoid causing discomfort due to wearing, such as pain caused by components such as conventional strings.
[0049] In particular, the mask (100) according to the present embodiment is positioned in a fixed state on the user's mouth, so that it can be fixed and stably worn on the user's face when the user wears a helmet or takes off his / her hair.
[0050] In addition, the mask (100) according to the present embodiment may include a body opening (110) and a connection space (120) for air flow according to the user's breathing. Here, the filtering unit (103) may be inserted into the connection unit (102) and positioned on the connection space (120), and may allow air flowing along the connection space (120) to pass through and filter foreign substances in the air. Therefore, the mask (100) according to the present embodiment may enable the user to breathe easily and safely.
[0051] FIG. 3 is a drawing showing a mouthpiece-type mask according to a second embodiment of the present invention being worn by a user, and FIG. 4 is a drawing showing the operation of a connecting portion in a mouthpiece-type mask according to the second embodiment of the present invention.
[0052] As illustrated in FIGS. 3 and 4, a mouthpiece-type mask (300) according to a second embodiment of the present invention can be used to cover a respiratory area centered around the nose and mouth, including a body portion (301), a connection portion (302), and a filter portion (303). This mouthpiece-type mask (300) can maintain a certain shape, and in particular, can be fixed to a helmet (10) while being fixed to a user's face while the user is wearing or removing the helmet (10).
[0053] The body part (301) may be formed in a curved sheet shape so as to cover the respiratory organs. The body part (301) may be formed in a laminated form of a spunbonded outer layer, a meltblown middle layer, and a spunbonded inner layer for lining. Here, the spunbonded inner layer for lining forms a first surface of the body part (301), and the spunbonded outer layer forms a second surface opposite the first surface of the body part (301). A body opening (310) may be formed in the body part (301). In addition, the body part (301) may include an auxiliary body (311) and a guide (312).
[0054] The auxiliary body (311) is formed in a curved plate shape and can be positioned to extend from the lower end of the body part (301). Here, the auxiliary body (311) can be positioned to correspond to the first surface of the body part (301).
[0055] The inductor (312) is formed in a gel form and can be positioned along the edge of the first side of the body part (301). In addition, the inductor (312) can be detachably attached to the user's face.
[0056] The connecting portion (302) may be positioned on the first surface of the body portion (301) to correspond to the body opening (310). In addition, a connecting space (320) may be formed through the connecting portion (302) to be connected to the body opening (310). A portion of the connecting portion (302) may be inserted into the user's mouth, so that the mask (300) may be worn by the user.
[0057] When a part of the connecting part (302) is inserted into the user's mouth, the user can bite and fix the part of the connecting part (302), and the user's nose can be positioned to correspond to the remaining part of the connecting part (302). Here, the body part (301) covers the user's respiratory organ centered on the mouth and nose, the auxiliary body (311) can support the user's chin area, and the guide (312) positioned at the edge of the first surface of the body part (301) can be fixed by contacting the user's face. Accordingly, in the present embodiment, when a part of the connecting part (302) is inserted into the user's mouth, the mask (300) can be attached to and worn on the user's face so as to cover the user's respiratory organ.
[0058] In particular, the length of the connecting portion (302) can be changed. In the mask (300), when the body portion (301) is fixed to the user's face by the guide (312), the user can change the length of the connecting portion (302) using his / her tongue. Here, the user can push the connecting portion (302) toward the body opening (310) to reduce the length of the connecting portion (302) and not put the connecting portion (302) in the mouth, and then push the connecting portion (302) toward the body opening (310) again to increase the length of the connecting portion (302) and put the connecting portion (302) in the mouth again.
[0059] Additionally, the connecting portion (302) may include a connecting body (321), a wearing inductor (323), a control inductor (325), a moving portion (326), an induction portion (327), and a control connecting body (329).
[0060] The connecting body (321) is formed in a column shape, particularly a square column shape, and can be positioned on the first surface of the body portion (301) to correspond to the body opening (310). Here, the first longitudinal section of the connecting body (321) can be positioned and fixed on the first surface of the body portion (301).
[0061] Additionally, a first connection space (3210), an induction space (3220), and a movement opening (3240) can be formed in the connection body (321).
[0062] The first connecting space (3210) can be connected to the body opening (310) by penetrating the center of both cross-sections of the connecting body (321), and can be formed in a shape corresponding to the connecting body (321).
[0063] The induction space (3220) may be positioned along the circumferential direction of the first connection space (3210) while being concavely formed in the second end surface opposite the first end surface of the connection body (321). Here, the induction space (3220) may be positioned to surround the first connection space (3210). In addition, the inner surface of the induction space (3220) may refer to a surface positioned in the induction space (3220) to correspond to the first connection space (3210), and the outer surface of the induction space (3220) may refer to a surface positioned in the induction space (3220) to correspond to the outer surface of the connection body (321) and to be spaced apart from the inner surface of the induction space (3220).
[0064] A moving opening (3240) may be formed in the first end face of the connecting body (321) so as to be connected to the induction space (3220). A plurality of such moving openings (3240) may be formed, and may be positioned so as to be spaced apart from each other along the circumferential direction of the first connecting space (3220). Here, each of the moving openings (3240) may be formed to correspond to a control inductor (325) and a moving part (326), which will be specifically described below.
[0065] The wearable inductor (323) may be formed in a column shape, particularly a square column shape, and a second connection space (3230) may be formed to penetrate both longitudinal sections. Here, the second connection space (3230) may be formed in a shape corresponding to the first connection space (3210).
[0066] The first end portion of the wearable inductor (323) is positioned by being inserted into the induction space (3220), and the wearable inductor (323) is movable along the induction space (3220). Here, the inner surface of the second connection space (3230) may be in contact with the inner surface of the induction space (3220), and the outer surface of the wearable inductor (323) may be positioned spaced apart from the outer surface of the induction space (3220). In addition, the second connection space (3230) may be connected to the first connection space (3210) while surrounding at least a portion of the first connection space (3210) to form the connection space (320).
[0067] The adjusting inductor (325) may be formed in a plurality of pieces, each of which may be formed in the form of a compression spring. These adjusting inductors (325) may be positioned to be spaced apart from each other along the circumferential direction of the first connection space (3210) in the induction space (3220). The aforementioned moving openings (3240) may be positioned to correspond to the adjusting inductors (325). Here, the first end surface of the adjusting inductor (325) may be connected to the first end surface of the induction space (3220) to correspond to the moving opening (3240), and the second end surface opposite to the first end surface of the adjusting inductor (325) may be connected to the first end surface of the wearing inductor (323).
[0068] The above-described control inductor (325) can maintain the first end portion of the wearable inductor (323) inserted into the induction space (3220). Here, as the wearable inductor (323) is increasingly inserted into the induction space (3220), the second end face of the wearable inductor (323) moves closer and closer to the connecting body (321), and the control inductor (325) can be compressed while accumulating a restoring force. As the control inductor (325) is extended by the restoring force, the second end face of the wearable inductor (323) can move closer and further away from the connecting body (321).
[0069] The moving part (326) can be inserted into the control inductor (325) and the moving opening (3240) and connected to the first surface of the body part (301) and the first end surface of the wearing inductor (323). When the wearing inductor (323) moves along the induction space (3220), the moving part (326) can protrude from the connecting body (321) through the moving opening (3240) or be inserted into the connecting body (321). Meanwhile, an auxiliary inductor (313) can be positioned on the second surface of the body part (301) to correspond to the moving part (326). Here, the auxiliary inductor (313) can be detachably attached to the helmet (10).
[0070] Additionally, the moving part (326) may include a moving body (3261) and a moving auxiliary body (3262).
[0071] The moving body (3261) is formed in a rod shape and can be positioned by being inserted into the control inductor (325) and the moving opening (3240). Here, the first longitudinal section of the moving body (3261) can be fixed by being in contact with the first surface of the body part (301) and can be positioned to correspond to the auxiliary inductor (313).
[0072] The moving auxiliary body (3262) is formed in the form of a wire, and can be inserted into the control inductor (325) to connect the second end face opposite the first end face of the moving body (3261) and the first end face of the wearing inductor (323).
[0073] When the control inducer (325) is formed into the original elongated shape, the first end surface of the moving body (3261) is positioned on the same plane as the first end surface of the connecting body (321), and the moving auxiliary body (3262) can be formed in a straight shape and positioned in a taut state. Here, when the wearing inducer (323) is moved to be increasingly inserted into the induction space (3220), the moving auxiliary body (3262) can be formed to be increasingly loose and in a curved shape, and the wearing inducer (323) moves toward the moving body (3261) while compressing the control inducer (325). The wearing inducer (323) can continue to move to cause the moving auxiliary body (3262) to bunch up and pressurize the moving body (3261) to protrude from the first end surface of the connecting body (321). Here, a part of the body part (301) is separated from the connecting body (321) and pressurizes the helmet (10) through the moving body (3261), so that the auxiliary guide (313) can be attached to the helmet (10).
[0074] In the above state, the wearing guide (323) can be moved to protrude more and more from the induction space (3220) by the restoring force of the wearing guide (323). In addition, the moving auxiliary body (3262) can be gradually released from the clumped state and can be formed in a straight shape and positioned in a taut state. When the wearing guide (323) is moved to protrude more and more from the induction space (3220), the moving body (3261) can move to correspond to the wearing guide (323) and be completely inserted into the movement opening (3240) and the induction space (3220). As a result, the first surface of the body part (301) can be brought into contact with the connecting body (321) and the auxiliary guide (313) can be separated from the helmet (10).
[0075] The guide portion (327) may be formed concavely along the length direction of the wearable guide portion (323) on the outer surface of the wearable guide portion (323) and may be positioned between the adjustment guide portions (325). In addition, the guide portion (327) may include an insertion guide groove (3271), a first auxiliary guide groove (3272), a second auxiliary guide groove (3273), and a restoration guide groove (3274).
[0076] The insertion guide groove (3271) may be formed concavely on the outer surface of the wearing guide (323) in a straight line along the length direction of the wearing guide (323) between the two longitudinal sections of the wearing guide (323). Here, the first longitudinal section of the insertion guide groove (3271) corresponds to the first longitudinal section of the wearing guide (323), and the second longitudinal section, which is opposite to the first longitudinal section of the insertion guide groove (3271), corresponds to the second longitudinal section of the wearing guide (323).
[0077] The first auxiliary guide groove (3272) may be formed concavely so as to face upward and be connected to the second end portion of the insertion guide groove (3271) on the outer surface of the wearable inducer (323). Here, the width of the first auxiliary guide groove (3272) may gradually increase as it is positioned upward and away from the insertion guide groove (3271).
[0078] An induction stopper (327a) may be formed protrudingly on the upper side of the first side of the first auxiliary guide groove (3272), and a first auxiliary groove (327b) may be formed concavely on the second side opposite the first side of the first auxiliary guide groove (3272) so as to be positioned below the induction stopper (327a). Here, the first side of the first auxiliary guide groove (3272) refers to the side corresponding to the first end surface of the wearing guide (323) in the first auxiliary guide groove (3272), and the second side of the first auxiliary guide groove (3272) refers to the side corresponding to the second end surface of the wearing guide (323) while facing the first side of the first auxiliary guide groove (3272) in the first auxiliary guide groove (3272).
[0079] The second auxiliary guide groove (3273) may be formed concavely along the length direction of the wearing guide (323) so as to correspond to the second end portion of the insertion guide groove (3271) and be connected to the upper end of the first auxiliary guide groove (3272) on the outer surface of the wearing guide (323). The first end surface of the second auxiliary guide groove (3273) may be positioned so as to correspond to the first end surface of the wearing guide (323), and a second auxiliary groove (327c) may be formed concavely on the second end surface opposite to the first end surface of the second auxiliary guide groove (3273). The first auxiliary groove (327b) and the second auxiliary groove (327c) may be positioned so as to correspond to each other while being spaced apart from each other.
[0080] The restoration guide groove (3274) is formed concavely on the outer surface of the wearable guide (323), and may be positioned lower and lower as it approaches the first end surface of the wearable guide (323) while connecting the insertion guide groove (3271) between the two end surfaces of the insertion guide groove (3271) and the first end surface of the second auxiliary guide groove (3273).
[0081] The adjusting connector (329) is formed in a rod shape and can be positioned in the induction space (3220) between the adjusting inductors (325) so as to connect the outer surface of the induction space (3220) and the induction part (327). Here, the first end portion of the adjusting connector (329) is inserted into the outer surface of the induction space (3220), and the second end portion of the adjusting connector (329), which is opposite to the first end portion, can be inserted into the induction part (327). When the wearing inductor (323) moves along the connecting body (321), the adjusting connector (329) can rotate about the first end portion of the adjusting connector (329) as an axis, and the second end portion of the adjusting connector (329) can move along the induction part (327). The control inductor (325), the induction unit (327) and the control linkage (329) can be used in combination with each other to move the wearable inductor (323) relative to the linkage body (321) and maintain it in a stationary state.
[0082] The above-described connection part (302) can be operated as follows.
[0083] The control inductor (325) is positioned in the induction space (3220) in its original, extended shape, and the wearing inductor (323) can be positioned in a state in which it protrudes as much as possible from the connecting body (321) while being inserted into the induction space (3220). Here, the moving body (3261) is inserted into the moving opening (3240) and the control inductor (325), and the first end surface of the moving body (3261) is positioned on the same plane as the first end surface of the connecting body (321), and the moving auxiliary body (3262) can be inserted into the control inductor (325) and positioned tautly in a straight line. In addition, the second end portion of the control connecting body (329) can be positioned in contact with the first end surface of the insertion guide groove (3271) (see FIG. 4(a)).
[0084] When a user, for example, the user's tongue pushes the wearing inducer (323), the wearing inducer (323) can move along the connecting body (321) so as to be gradually inserted into the guiding space (3220) of the connecting body (321), and the adjusting inducer (325) can be gradually compressed while accumulating a restoring force. Here, the adjusting connector (329) is rotated, and the second end portion of the adjusting connector (329) moves along the insertion guide groove (3271) toward the second end face of the insertion guide groove (3271), and comes into contact with the second end face of the insertion guide groove (3271) and the second side of the first auxiliary guide groove (3272), and can move along the first auxiliary guide groove (3272) and be inserted into the first auxiliary groove (327b). Additionally, the moving auxiliary body (3262) may be gradually loosened and compressed to pressurize the moving body (3261) so that it protrudes from the first end face of the connecting body (321), so that the helmet (10) may be pressed by the moving body (3261). As a result, the wearing guide (323) may no longer be moved to be inserted into the induction space (3220), a portion of the body portion (301) may be separated from the connecting body (321), and the auxiliary guide (313) may be attached to the helmet (10) (see FIG. 4(b)).
[0085] In the above state, when a force pushing the wearing inductor (323) is not applied to the wearing inductor (323), the adjusting inductor (325) is extended by the restoring force, and the wearing inductor (323) can be moved to protrude further from the induction space (3220) by the adjusting inductor (325). Here, the second end portion of the adjusting connector (329) moves toward the first end face of the insertion guide groove (3271) to be separated from the first auxiliary groove (327b) and contacts the first side of the first auxiliary guide groove (3272) so as to move along the first auxiliary guide groove (3272) to contact the induction stopper (327a). Due to this, while a significant portion of the wearable inductor (323) is inserted into the induction space (3220), the control inductor (325) may no longer be extended, and the wearable inductor (323) may no longer move along the induction space (3220). That is, the length of the connection portion (302) according to the connection body (321) and the wearable inductor (323) may be maintained in a reduced state. In addition, the moving body (3261) may not pressurize the helmet (10) while penetrating the moving opening (3240), and the auxiliary inductor (313) may maintain the body portion (301) and the helmet (10) in a fixed state (see FIG. 4(c)).
[0086] A force pushing the wearing guide (323) can be applied again to the wearing guide (323). Here, the adjusting guide (325) is compressed to accumulate a restoring force, and the wearing guide (323) can be moved to be inserted into the induction space (3220). In addition, the second end portion of the adjusting connector (329) is spaced apart from the induction stopper (327a) and comes into contact with the second side of the first auxiliary induction groove (3272), and can be moved along the first auxiliary induction groove (3272) to be guided to the second auxiliary induction groove (3273) and inserted into the second auxiliary groove (327c). As a result, the wearing guide (323) can no longer be moved to be inserted into the induction space (3220). Additionally, the moving body (3261) can re-pressurize the helmet (10) while penetrating the moving opening (3240), and the auxiliary guide (313) can maintain the body (301) and the helmet (10) in a fixed state (see FIG. 4(d)).
[0087] In the above state, when a force pushing the wearing guide (323) is not applied to the wearing guide (323), the adjusting guide (325) is extended by the restoring force, and the wearing guide (323) can be moved to protrude from the induction space (3220) by the adjusting guide (325). Here, the second end portion of the adjusting connector (329) can be separated from the second auxiliary groove (327c) and moved along the second auxiliary induction groove (3273), the restoring induction groove (3274), and the insertion induction groove (3271) to come into contact with the first end surface of the insertion induction groove (3271). As a result, in a state where the wearing guide (323) is inserted into the induction space (3220), the adjusting guide (325) can no longer be extended, and the wearing guide (323) can no longer be moved along the induction space (3220). That is, the length of the connecting portion (302) according to the connecting body (321) and the wearing guide (323) can be increased and maintained at the maximum. In addition, the moving auxiliary body (3262) can be gradually released from the clumped state, and can be formed in a straight shape and positioned in a taut state. Here, the moving body (3261) can move corresponding to the wearing guide (323) and be completely inserted into the moving opening (3240) and the induction space (3220). As a result, the first surface of the body portion (301) can be brought into contact with the connecting body (321) and the auxiliary guide (313) can be spaced apart from the helmet (10) (see FIG. 4(a)).
[0088] The filter (303) may be positioned on the connection space (320) of the connection part (302). Here, the filter (303) may be positioned on the first connection space (3210) of the connection body (321). When air flows into the connection space (320), i.e., the first connection space (3210) and the second connection space (3230), the air may pass through the filter (303), and foreign substances in the air may be filtered by the filter (303). Here, the foreign substances in the air may be dust, bacteria, viruses, etc.
[0089] A user can wear a mask (300) and breathe. Here, when the user inhales, outside air can be drawn into the connection space (320) through the body opening (310). The outside air in the connection space (320) can flow toward the user's mouth and pass through the filtering unit (303) to be inhaled by the user, while foreign substances in the outside air can be filtered by the filtering unit (303) and not be introduced to the user. Meanwhile, when the user exhales, air can be drawn into the connection space (320) from the user's mouth. Here, the air can flow toward the body opening (310) and pass through the filtering unit (303) to be discharged to the outside through the body opening (310).
[0090] As described above, the filter (303) can provide safe breathing by preventing the user from inhaling foreign substances in the external air.
[0091] When the wearing guide (323) of the connecting portion (302) of the mask (300) according to the present embodiment is inserted into the user's mouth while protruding to the maximum from the connecting body (321), the user can bite and fix the wearing guide (323), and the user's nose can be positioned to correspond to the connecting body (321) of the connecting portion (302). Here, the body portion (301) covers the user's respiratory organ, the auxiliary body (311) of the body portion (301) supports the user's chin area, and the guide (312) of the first surface of the body portion (301) can be attached by contacting the user's face. In addition, the user can wear or remove the helmet (10) while wearing the mask (300) by biting the wearing guide (323) of the connecting portion (302) with the mouth. Here, the mask (300) may not be separated from the user's face due to the combination of the auxiliary body (311), the inductor (312), and the mouth-bitten connecting portion (302), particularly the wearing inductor (323).
[0092] In particular, the user can push the wearing guide (323) of the connecting portion (302) while wearing the helmet (10) and the mask (300) so that it is inserted into the connecting body (321), thereby maintaining the mask (300) in a wearing state without biting the wearing guide (323). Here, the mask (300) can be attached to the helmet (10) via the auxiliary guide (313). Meanwhile, the user can push the wearing guide (323) of the connecting portion (302) again while wearing the helmet (10) and the mask (300), thereby positioning it so that it protrudes from the connecting body (321), and biting the wearing guide (323) into the mouth again. Therefore, the mask (300) according to the present embodiment can be easily worn or detached by the user, maintained in a stably worn state, and can be comfortably worn without causing discomfort due to wearing, such as pain caused by components such as conventional strings.
[0093] In addition, the mask (300) according to the present embodiment may include a body opening (310) and a connection space (320) for air flow according to the user's breathing. Here, the filtering unit (303) may be positioned on the connection space (320) of the connection unit (302), and may allow air flowing along the connection space (320) to pass through and filter foreign substances in the air. Therefore, the mask (300) according to the present embodiment may enable the user to breathe easily and safely.
[0094] Above, the technical idea of the present invention has been described in detail with reference to preferred embodiments, but the technical idea of the present invention is not limited to the above embodiments, and various modifications and changes are possible by a person having ordinary knowledge in the art within the scope of the technical idea of the present invention.
[0095] [Explanation of symbols]
[0096] 100, 300: Mask
[0097] 101, 301: Body
[0098] 102, 302: Connection
[0099] 103, 303: Filtration unit
Claims
1. A body part formed in a curved sheet shape to cover the respiratory organ and having a body opening; A connecting portion positioned on the first surface of the body portion to correspond to the body opening and having a connecting space formed to be connected to the body opening; and Including a filtering unit located on the connecting space of the connecting unit and capable of filtering foreign substances, A mask characterized in that when a portion of the connecting portion is inserted and fixed into the user's mouth, the body portion covers the user's respiratory organs, and the edge of the first surface of the body portion comes into contact with the user's face.
2. In paragraph 1, A mask characterized in that the filtering part is inserted into the connecting part so as to be detachable and is positioned in the connecting space.
3. In paragraph 1, the connecting part is, A connecting body having a column shape, the first longitudinal section of which is connected to the first surface of the main body; and A wearable inducer having a first end face connected to a second end face opposite the first end face of the connecting body and having a pillar shape that can be inserted and mounted in the user's mouth, A mask characterized in that the connecting space is formed to be connected to the body opening by penetrating both longitudinal sections of the connecting body and both longitudinal sections of the wearing inducer.
4. In paragraph 3, A mask characterized in that the filtering portion is located on the connecting space between the two longitudinal cross-sections of the connecting body.
5. In paragraph 4, A mask characterized in that when the wearable device is inserted and secured in the user's mouth, the user's nose is positioned to correspond to the connecting body.
6. In paragraph 3, When the user breathes in, air enters the connecting space through the body opening and flows toward the user's mouth, passing through the filter and being inhaled by the user, and foreign substances in the air are filtered by the filter. A mask characterized in that when a user exhales, air is drawn into the connecting space from the user's mouth, flows toward the body opening, passes through the filtering member, and is discharged through the body opening.
7. In the third paragraph, the body part, An auxiliary body having a plate shape and extending from the lower end of the body portion and positioned to correspond to the first surface of the body portion; and A gel-shaped device comprising a derivative positioned along the edge of the first side of the body portion and detachably attachable to the user's face, A mask characterized in that when the wearable inducer is inserted and fixed in the user's mouth, the body part covers the user's respiratory organs, the inducer is attached to the user's face, and the auxiliary body supports the user's chin area.
8. In paragraph 7, A first connecting space is formed in the connecting body so as to be connected to the body opening by penetrating both longitudinal sections of the connecting body, a guide space positioned along the circumferential direction of the first connecting space is concavely formed in the second longitudinal section of the connecting body, and a plurality of moving openings positioned so as to be spaced apart from each other along the circumferential direction of the first connecting space while connecting the guide spaces in the first longitudinal section of the connecting body are formed. A second connection space is formed in a shape corresponding to the first connection space by penetrating the two cross-sections of the wearable inductor, a filter is positioned on the first connection space, and an auxiliary inductor is positioned on the second side opposite the first side of the body part, corresponding to the moving opening and detachably attachable to a helmet worn by a user. A mask characterized in that a first end portion of a wearable inductor is positioned and inserted into an induction space, the wearable inductor is movable along the induction space, an inner surface of a second connection space is in contact with an inner surface of the induction space, an outer surface of the wearable inductor is positioned spaced apart from an outer surface of the induction space, and the second connection space is connected to the first connection space to form a connection space.
9. In paragraph 8, The connecting part is, A plurality of adjusting guides, each in the form of a compression spring, positioned so as to be spaced apart from each other along the circumference of the first connection space in the induction space, the first end face being connected to the first end face of the induction space so as to correspond to the movement opening, and the second end face opposite the first end face being connected to the first end face of the wearing guide; A moving part including a moving body having a rod shape and positioned by being inserted into the adjusting inductor and the moving opening, the first end face of which is in contact with the first surface of the body part and fixed, and a moving auxiliary body having a wire shape and being inserted into the adjusting inductor and connecting the second end face opposite the first end face of the moving body and the first end face of the wearing inductor; An induction portion formed concavely along the longitudinal direction of the wearable inductor on the outer surface of the wearable inductor and positioned between the control inductors; and It further includes a control connector having a rod shape, positioned in the induction space between the control inductors to connect the outer surface of the induction space and the induction section, and a first end portion inserted into the outer surface of the induction space, and a second end portion opposite to the first end portion inserted into the induction section. The judo club, An insertion guide groove formed concavely on the outer surface of the wearable inductor in a straight line along the longitudinal direction of the wearable inductor between the two longitudinal sections of the wearable inductor, the first longitudinal section being positioned to correspond to the first longitudinal section of the wearable inductor; A first auxiliary guide groove which is formed concavely so as to face upward and is connected to a second end portion opposite to the first end portion of the insertion guide groove on the outer surface of the wearable inducer, and has a width that gradually increases as it is positioned upward and away from the insertion guide groove; A second auxiliary guide groove connected to the upper end of the first auxiliary guide groove on the outer surface of the wearable inductor and formed concavely along the length direction of the wearable inductor to correspond to the second end portion of the insertion guide groove, and positioned so that the first end surface corresponds to the first end surface of the wearable inductor; and A restoration guide groove is formed concavely on the outer surface of the wearable inducer, and is positioned lower and lower as it approaches the first end face of the wearable inducer while connecting the insertion guide groove between the two end faces of the insertion guide groove and the first end face of the second auxiliary guide groove. An induction stopper is formed protrudingly on the upper side of the first side of the first auxiliary induction groove, a first auxiliary groove is formed concavely on the second side opposite the first side of the first auxiliary induction groove so as to be positioned below the induction stopper, and a second auxiliary groove is formed concavely on the second end face opposite the first end face of the second auxiliary induction groove. A mask characterized in that when the wearable inductor is inserted into the induction space and moves along the connection body, the adjustment connector rotates around the first end portion of the adjustment connector as an axis, and the second end portion of the adjustment connector moves along the induction portion.
10. In paragraph 9, The control inductor is positioned in the induction space in its original, elongated shape, the wearing inductor is inserted into the induction space and positioned so as to protrude as much as possible from the connecting body, the moving body is inserted into the moving opening and the control inductor, and the first end face of the moving body is positioned on the same plane as the first end face of the connecting body, the moving auxiliary body is inserted into the control inductor and positioned taut in a straight line, and the second end part of the control connecting body is positioned in contact with the first end face of the insertion guide groove. The wearing inducer is pushed, and the wearing inducer moves along the connecting body so as to be increasingly inserted into the induction space, and the adjusting inducer is gradually compressed while accumulating a restoring force, so that the second end portion of the adjusting connecting body moves along the insertion guide groove toward the second end face of the insertion guide groove and contacts the second end face of the insertion guide groove and the second side of the first auxiliary guide groove, moves along the first auxiliary guide groove, and is inserted into the first auxiliary groove, and the moving auxiliary body becomes looser and gathers and presses the moving body to protrude from the first end face of the connecting body, thereby attaching the auxiliary inducer to the helmet while the helmet is pressed by the moving body. When the wearing guide is not pushed, the adjusting guide is extended by the restoring force, and the wearing guide is moved to protrude further from the guiding space by the adjusting guide, so that the second end portion of the adjusting connector moves toward the first end face of the insertion guide groove, is separated from the first auxiliary groove, contacts the first side of the first auxiliary guide groove, moves along the first auxiliary guide groove, and contacts the guiding stopper, and the length of the connecting portion according to the connecting body and the wearing guide is maintained in a reduced state, and the moving body does not pressurize the helmet while penetrating the moving opening, and the auxiliary guide is attached to the helmet. When the wearing inductor is pushed again, the regulating inductor is compressed to accumulate restoring force, the wearing inductor is moved to be inserted into the induction space, the second end portion of the regulating connector is separated from the induction stopper, contacts the second side of the first auxiliary induction groove, moves along the first auxiliary induction groove, is guided to the second auxiliary induction groove, and is inserted into the second auxiliary groove. When the wearing guide is not pushed back, the adjusting guide is extended by the restoring force, the wearing guide is moved to protrude from the guiding space by the adjusting guide, the second end portion of the adjusting connecting body is separated from the second auxiliary groove and moves along the second auxiliary guiding groove, the restoring guiding groove and the insertion guiding groove to contact the first end surface of the insertion guiding groove, the length of the connecting portion according to the connecting body and the wearing guide is increased and maintained at the maximum, the moving auxiliary body is gradually released from the clumped state and formed into a straight shape and positioned in a taut state, the moving body moves to correspond to the wearing guide and is completely inserted into the moving opening and the guiding space, and the auxiliary guide is separated from the helmet. A mask.
Citation Information
Patent Citations
face mask
JP2023527731A
Versatile mask for ultrafine particles
KR1020150115154A
Mouthpiece type mask
KR1020180134694A
Mouthpiece type mask
KR102021523B1
Cardiopulmonary reinforcement mask with mouthpiece
KR102249445B1