TWI587888B - Face mask having embedded nose pad - Google Patents

Face mask having embedded nose pad Download PDF

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Publication number
TWI587888B
TWI587888B TW105129653A TW105129653A TWI587888B TW I587888 B TWI587888 B TW I587888B TW 105129653 A TW105129653 A TW 105129653A TW 105129653 A TW105129653 A TW 105129653A TW I587888 B TWI587888 B TW I587888B
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TW
Taiwan
Prior art keywords
layer
mask
nose pad
nose
built
Prior art date
Application number
TW105129653A
Other languages
Chinese (zh)
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TW201811396A (en
Inventor
鄭永柱
鄭乾鋒
鄭羽良
Original Assignee
宣德醫材科技股份有限公司
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Priority to TW105129653A priority Critical patent/TWI587888B/en
Application granted granted Critical
Publication of TWI587888B publication Critical patent/TWI587888B/en
Publication of TW201811396A publication Critical patent/TW201811396A/en

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Classifications

    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D13/00Professional, industrial or sporting protective garments, e.g. surgeons' gowns or garments protecting against blows or punches
    • A41D13/05Professional, industrial or sporting protective garments, e.g. surgeons' gowns or garments protecting against blows or punches protecting only a particular body part
    • A41D13/11Protective face masks, e.g. for surgical use, or for use in foul atmospheres
    • A41D13/1107Protective face masks, e.g. for surgical use, or for use in foul atmospheres characterised by their shape
    • A41D13/1115Protective face masks, e.g. for surgical use, or for use in foul atmospheres characterised by their shape with a horizontal pleated pocket
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D13/00Professional, industrial or sporting protective garments, e.g. surgeons' gowns or garments protecting against blows or punches
    • A41D13/05Professional, industrial or sporting protective garments, e.g. surgeons' gowns or garments protecting against blows or punches protecting only a particular body part
    • A41D13/11Protective face masks, e.g. for surgical use, or for use in foul atmospheres
    • A41D13/1107Protective face masks, e.g. for surgical use, or for use in foul atmospheres characterised by their shape
    • A41D13/113Protective face masks, e.g. for surgical use, or for use in foul atmospheres characterised by their shape with a vertical fold or weld
    • AHUMAN NECESSITIES
    • A62LIFE-SAVING; FIRE-FIGHTING
    • A62BDEVICES, APPARATUS OR METHODS FOR LIFE-SAVING
    • A62B23/00Filters for breathing-protection purposes
    • A62B23/02Filters for breathing-protection purposes for respirators
    • A62B23/025Filters for breathing-protection purposes for respirators the filter having substantially the shape of a mask

Description

Protective mask for placed nose pads

The present invention relates to a mask, and more particularly to a protective mask for a placed nose pad.

In recent years, the rapid development of industry and cities, exhaust emissions from various factories, coal-fired power plants and a large number of steam and locomotives have caused serious air pollution, resulting in deteriorating air quality. Dust mites in the environment are fine aerosols (PM2). .5) Invading the human body through the respiratory tract, causing various diseases such as bronchitis, asthma and cardiovascular diseases, which seriously endanger human health. At the same time, in 2013, the World Health Organization (WHO) confirmed that air pollution is the main carcinogen of human beings. Among the top ten cancer deaths in Taiwan, seven are closely related to air pollution. In addition, various bacterial viruses and influenza in the living environment have been invading humans in recent years, such as severe acute respiratory syndrome (SARS), avian flu, and swine flu (H1N1). It is the killer of human health, showing that masks are increasingly important to human health.

At present, the use of various protective masks in the world has reached tens of billions, of which about eight have become flat non-woven masks. The common flat masks on the market and even some N95 series dust masks are easy to carry and cheap, but the adhesion is generally poor. . According to the test method of Taiwan standard CNS14774 and 14755 protective mask (N95/FFP2) D2 tightness, the mask should be worn to achieve a tightness of 100 (100% ÷ 100 tightness = 1% air leak rate), but according to Taiwan's labor safety and health The Institute's 100-person test, the marketed two N95 masks have an average fit of 13.9 and 21.8, while the average flat mask average is only 3.10, which means the average air leak rate is 33%, resulting in the effect of dust mites (PM2.5). Great discount. In order to maintain a certain degree of tightness, the current general masks have been installed with plastic nose lines on the upper edge, such as plastic strips or plastic coated iron wire or aluminum strips to increase the tightness to prevent the gap between the nose and the face. . But the nose of the mask is the easiest because of the shape, size and height of the individual's nose. Leakage is also the most difficult to prevent leakage. When you press the nose line by hand, it will be slightly conformed and shaped. After wearing for a few minutes, it will still have a large gap due to the movement of slight facial muscles, especially the elasticity of the mask on both sides. The ear straps or straps are pulled to support, so that airborne contaminants and viral bacteria can easily become "fascinated" for many years and have been a fatal flaw in masks.

Long-term inhalation without masking completely dirty air can cause many cancers and diseases, such as chronic diseases such as hypertension and diabetes, and even cause complications and death. When entering or leaving a medical institution or public place, it is easy to infect each other and increase the chance of infection. . Because most of the masks are worn, most of them are attached to the nose and mouth, and the air is concentrated in the mouth and nose. This increases the respiratory resistance and forces more air to leak from the gap. This causes the general leakage rate to be as high as 40%. The leakage rate of the mask is more. The higher the time, the more dangerous it is. This is a large defect in the non-woven flat mask that has been difficult to improve significantly in the past few years.

Moreover, the hot air exhaled by the mask wearer from the body will also rise upward from the bridge of the nose, causing the glasses to fog, affecting the line of sight, and even affecting the safety of driving. There are also masks for installing nose bridge foam on the market. Because the foam has a certain thickness and is placed between the mask and the nose bridge, the foam and the sides are still prone to voids, so that the mask can not effectively fit the face shape, greatly reducing the nasal airtightness. effect.

In view of the above, one of the objects of the present invention is to provide a protective mask for a placed nose pad. By forming a convex portion on the upper edge of the mask body, the inner layer can be closely fitted along the bridge of the nose and the tibia, effectively filling The gap between the mask and the nose greatly increases the tightness of the nose.

Another object of the present invention is to provide a protective mask for a placed nose pad, wherein horizontal and longitudinal wrinkles are formed on the mask body, and when the body shape is formed, the mouth and nose space and the ventilation area can be enlarged to make the breathing smooth. The speech is natural and greatly reduces respiratory resistance.

A third object of the present invention is to provide a protective mask for a placed nose pad, wherein a convex portion is formed on the upper edge of the mask body, and the convex portion can fill the gap between the nose bridge and the tibia to block the exhalation of the mist from passing through the mask. The body (10) rises directly upwards to prevent the glasses from fogging.

In order to achieve the above object, the present invention provides a protective mask for a built-in nose pad, comprising a mask body, which is provided with an outer layer, a middle layer and an inner layer in sequence; and a nose pad disposed on the outer layer; An inner layer fold is extended from the inner layer and folded back, the inner layer fold member and the outer layer jointly cover the nose pad, and a convex portion is formed on the mask body corresponding to the nose pad.

Preferably, the method further comprises a plurality of joints arranged along a circumference of the protrusion, each of the joints fixing the inner layer fold, the outer layer, the middle layer and the inner layer.

Preferably, the middle layer is a filter layer and the protrusion is formed on the filter layer.

Preferably, an outer flap is extended from the outer layer and folded back, and the outer flap is overlapped with the inner layer fold and covers the nose pad together with the outer layer.

Preferably, the mask body is formed with two longitudinal pleats, respectively located on both sides of the nose pad.

Preferably, the mask further comprises a pair of anti-folding sheets extending from the two sides of the mask body, and is folded back to the mask body with the two ends thereof.

Preferably, it further comprises an inner anti-fog sheet fixed to the inner layer and formed with the convex portion.

Preferably, it further comprises an exhalation valve mounted on the mask body.

Preferably, it further comprises an activated carbon layer stacked between the outer layer and the intermediate layer.

Preferably, it further comprises an anti-bacterial layer stacked between the outer layer or the outer layer and the intermediate layer.

Preferably, the nose pad is a foam or a combination of a nose strip and a foam.

In addition, the present invention has the following features and effects:

(1) An anti-folding piece is extended from the side of the mask body, which can make up or close the gap between the two sides of the face and the mask, and greatly improve the mask adhesion.

(2) An anti-fog sheet is attached to the upper edge of the inner layer or the inner layer folding member, which can further block the exhaled mist from directly escaping through the mask body to prevent the glasses from fogging or affecting the line of sight.

(3) The mask body is equipped with an exhalation valve, which can quickly discharge the moisture and hot air during exhalation, effectively improve the sultry problem of the mask, and can quickly vent when the exercise or shortness of breath is rapid, greatly reducing the expiratory resistance. .

(4) There is also an anti-bacterial layer in the mask body, which can reduce the activity of influenza bacteria, inhibit the growth of pathogens, have strong antibacterial and anti-viral ability, and prevent infection.

(5) An active carbon layer may be provided in the mask body to effectively adsorb ozone and organic gases.

(10) ‧‧‧ mask body

(11) ‧‧‧ outer layer

(11') ‧ ‧ outer folded parts

(13) ‧‧‧ Middle

(13')‧‧‧ mid-level folding parts

(15) ‧‧‧ inner layer

(15')‧‧‧ Inner folds

(17) ‧ ‧ joints

(19) ‧‧‧Active carbon layer

(18) ‧ ‧ anti-bacterial layer

(20) ‧‧‧Band group

(21) ‧‧‧Band

(30)‧‧‧ nose pads

(31)‧‧‧Nose beam

(311)‧‧‧Wire

(312)‧‧‧Plastic parts

(33)‧‧‧ Elastomers

(40) ‧‧‧ convex

(50)‧‧‧Exhalation valve

(60) ‧ ‧ internal anti-fog tablets

(70) ‧ ‧ external anti-fog tablets

(100) ‧‧‧Reverse Folds

(101) ‧‧‧ horizontal wrinkles

(103)‧‧‧ longitudinal wrinkles

Figure 1 is a front elevational view of the present invention (which is a first preferred embodiment).

Figure 2 is a cross-sectional view taken along line A-A of Figure 1.

Figure 3 shows an extension of the inverted flap of the present invention (second preferred embodiment).

Figure 4 is a cross-sectional view taken along line B-B of Figure 3;

Figure 5 shows a longitudinal wrinkle formed in accordance with the present invention (third preferred embodiment).

Figure 6 is a cross-sectional view taken along line C-C of Figure 5.

Figure 7 shows a reverse flap and longitudinal pleats formed in the present invention (fourth preferred embodiment).

Figure 8 shows an exhalation valve (fifth preferred embodiment) of the present invention.

Figure 9 shows an inner anti-fog sheet (sixth preferred embodiment) of the present invention.

Figure 10 shows an outer anti-fog sheet (seventh preferred embodiment) of the present invention.

Figure 11 shows an outer foldable member (eighth preferred embodiment) that can be extended in accordance with the present invention.

Figure 12 is an extension of the intermediate layer fold (the ninth preferred embodiment) of the present invention.

Figure 13 shows the nose pad of the present invention disposed on the upper portion of the mask (ten preferred embodiment).

Figure 14 shows a bridge of the present invention having a length of about half of the elastic body (Eleventh Preferred Embodiment).

Figure 15 shows an activated carbon layer (twelfth preferred embodiment) of the present invention.

Figure 16 shows an active carbon layer and an outer layer folding member according to the present invention (thirteenth preferred embodiment).

Fig. 17 shows an anti-bacterial layer between the outer layer and the middle layer according to the present invention (fourteenth preferred embodiment).

Fig. 18 shows an outer layer of the present invention provided with an anti-bacterial layer (fifth preferred embodiment).

Figure 19 is an elastomeric built-in nose bridge of the present invention (sixteenth preferred embodiment).

Fig. 20 shows the iron wire of the present invention as a single iron wire (seventh preferred embodiment).

Fig. 21 shows a nose pad of the lower portion of the mask body of the present invention (the eighteenth preferred embodiment).

Fig. 22 is a view showing a nasal pad provided on both sides of the mask body of the present invention (the nineteenth preferred embodiment).

Figure 23 shows a nasal pad provided on both sides and a lower portion of the mask body according to the present invention (the twentieth preferred embodiment).

The detailed description and technical content of the present invention are set forth below with reference to the accompanying drawings.

Referring to FIG. 1 and FIG. 2, the present invention provides a protective mask for a placement nose pad, comprising a mask body (10), a belt group (20) and a nose pad (30), which are described as follows: a mask body (10) ), a plurality of horizontal wrinkles (101) are formed, and an outer layer (11), a middle layer (13) and an inner layer (15) are sequentially disposed inside. The outer layer (11) can be a water-repellent layer such as a water-repellent function non-woven fabric to prevent moisture and liquid from penetrating. The middle layer (13) may be a filter layer such as an electrostatic high density filter non-woven fabric to block dust mites and virus bacteria. The inner layer (15) may be a hydrophilic layer such as a hydrophilic superfine composite fiber non-woven fabric, which is soft and comfortable, and effectively absorbs moisture.

The belt body set (20) comprises two belt bodies (21), which can be respectively fixed on the left and right sides of the mask body (10), wherein one end is fixed to the upper end of the mask body (10), and the other end is fixed. One end is fixed to the lower side (as shown in Figure 1). The strap body (21) may also be a strap type or a head strap type, but is not limited thereto.

The nose pad (30) is disposed on the outer layer (11) (as shown in Figure 2). The nose pad (30) comprises a bridge of the nose (31) and an elastic body (33). The bridge of the nose (31) is composed of a plastic part (312) and a covered iron wire (311), and the iron wire (311) can be a pair. Iron wire. The bridge of the nose (31) can be attached to one side of the elastic body (33). The elastomer (33) may be various foams such as PU foam, silicone foam, rubber foam, filter foam, inert foam, film or airbag, and the like. The cross section may be circular, rectangular, triangular or polygonal, but is not limited. The nose pad (30) may also consist of only an elastomer (33) or a foam.

In the foregoing, an inner layer fold (15') extends from the inner layer (15) and is folded back, and the inner layer fold member (15') and the outer layer (11) together cover the nose pad (30), and corresponding nose A convex portion (40) is formed on the mask body (10) of the pad (30), that is, a convex portion (40) is formed on the outer layer (11), the intermediate layer (13) and the inner layer (15).

The invention further comprises a plurality of joints (17) arranged along the circumference of the protrusions (40), each joint (17) being an inner layer fold (15'), an outer layer (11), a middle layer (13) and The inner layer (15) is fixed. Before the fixing, the nose pad (30) is pressed into the cavity with the mask body (10), and then the joint portion (17) is fixed to the joint portion (10) to form a convex portion (40).

When wearing the present invention, the user wears a two-ear type or strap type strap (21), and pulls the horizontal wrinkle (101) to completely cover the mouth and mouth (10) to cover the nose and the chin, and appropriately adjust and press the nose. The pad (30) and the convex portion (40) enable the inner layer (15) to closely conform to the curve of the bridge of the nose and the tibia, effectively filling the gap between the mask and the nose, and greatly increasing the tightness of the nose.

The convex portion (40) formed by the upper edge of the mask body (10) can fill the gap between the nose and the bone of the bone to prevent the exhaled mist from rising directly through the mask body (10) to prevent the glasses from fogging.

Referring to FIG. 3 and FIG. 4, in the second preferred embodiment of the present invention, the present embodiment is different from the foregoing embodiment in that it further includes a pair of reverse flaps (100) respectively from the mask body (10). Both sides Extending out, and reflexing, the two ends are fixed to the mask body (10). The pair of anti-folding sheets (100) can make up or close the pores between the sides of the face and the mask, and greatly improve the mask adhesion.

Referring to FIG. 5 and FIG. 6, which is a third preferred embodiment of the present invention, the embodiment is different from the previous embodiment in that the mask body (10) is formed with at least two longitudinal pleats (103), each located on the nose. On the left and right sides of the pad (30), the two longitudinal pleats (103) pass through the horizontal pleats (101), respectively. Thereby, when the shape of the body is established, the mouth and nose space and the ventilation area can be enlarged, the breathing can be smooth, the speech can be natural, and the respiratory resistance can be greatly reduced.

Referring to FIG. 7, which is a fourth preferred embodiment of the present invention, the embodiment is different from the foregoing embodiment in that the mask body (10) is formed with a reverse flap (100) and a longitudinal wrinkle (103). Has the same functions and effects as above. It is comfortable to wear and elegant, and it can greatly improve the "adhesion" and increase safety.

Referring to FIG. 8, which is a fifth preferred embodiment of the present invention, the present embodiment is different from the foregoing embodiment in that it further includes an exhalation valve (50) mounted on the mask body (10). The mask body (10) is equipped with an exhalation valve (50), which can quickly discharge the moisture and hot air during exhalation, effectively improve the problem of sultry heat of the mask, and can excrete exhalation rapidly when strenuous exercise or shortness of breath, and greatly reduce exhalation. Resistance and carbon dioxide in the wearer's body.

Referring to FIG. 9, a sixth preferred embodiment of the present invention is different from the foregoing embodiment in that it further includes an inner anti-fogging sheet (60) fixed to the upper edge of the inner layer (15). And forming a convex portion (40), the convex portion (40) can conform to the shape of the face, filling the pore between the bridge of the nose and the tibia, and further blocking the exhalation of the mist directly penetrating the mask body (10) upward, preventing the glasses from Fog or affecting the line of sight. The material of the inner anti-fogging sheet (60) is a gas-impermeable material, and may be, for example, a film, a film or a patch.

Referring to FIG. 10, which is a seventh preferred embodiment of the present invention, the embodiment is different from the foregoing embodiment in that it further includes an outer anti-fog sheet (70) fixed to the inner layer folding member (15'). The outer anti-fog sheet (70) may be made of the same material as the inner anti-fog sheet (60). Thereby, when the exhalation is further blocked, the generated mist directly penetrates the mask and rises upward, thereby preventing the glasses from fogging and causing poor line of sight.

Referring to FIG. 11, which is an eighth preferred embodiment of the present invention, the present embodiment is different from the foregoing embodiment in that an outer layer folding member (11') is further extended from the outer layer (11) and folded back. The flap (11') overlaps the inner fold (15') and wraps the nose pad (30) with the outer layer (11). The outer folded piece (11') is made of the same material as the outer layer (11) and may be a water-repellent layer such as a water-repellent function non-woven fabric. Thereby, the strength of the covered bridge piece (31) is increased, and the end face of the bridge piece (31) is prevented from piercing the mask body (10), thereby increasing the safety of use.

Referring to FIG. 12, a ninth preferred embodiment of the present invention is different from the foregoing embodiment in that a middle layer fold member (13') is extended from the middle layer (13) and is folded back. The folding member (13') is overlapped between the inner layer folding member (15') and the outer layer folding member (11') and covers the nose pad (30) together with the outer layer (11). The material of the middle layer folding piece (13') is the same as that of the middle layer (13) and may be a filtering layer such as an electrostatic high density filtering non-woven fabric. Thereby, to achieve the same functions and effects as described above.

Referring to FIG. 13, a tenth preferred embodiment of the present invention is different from the previous embodiment in that the nose pad (30) can be entirely disposed on the upper edge of the mask body (10) or extends close to the mask body. The left and right sides of (10), wherein the length of the elastic body (33) and the bridge of the nose (31) may be equal or nearly equal. In order to achieve the same functions and effects as above.

Referring to FIG. 14, which is an eleventh preferred embodiment of the present invention, the embodiment is different from the foregoing embodiment in that the length of the elastic body (33) is slightly equal to the length of the mask body (10), but the bridge of the nose ( 31) is about one-half the length of the elastomer (33). In order to achieve the same functions and effects as above.

Referring to FIG. 15, which is a twelfth preferred embodiment of the present invention, the embodiment is different from the foregoing embodiment in that it further includes an activated carbon layer (19) which can be stacked on the outer layer (11) and the middle layer. Between (13), the inner layer fold (15') and the outer layer (11) together cover the nose pad (30). Thereby, ozone and organic gases are effectively adsorbed.

Referring to FIG. 16, which is a thirteenth preferred embodiment of the present invention, the embodiment is different from the foregoing embodiment in that it further includes an activated carbon layer (19) stacked on the outer layer (11) and the middle layer. (13) The inner layer fold member (15'), the outer layer fold member (11') and the outer layer (11) together cover the nose pad (30). Thereby, to achieve the same functions and effects as described above.

Referring to FIG. 17, which is a fourteenth preferred embodiment of the present invention, the present embodiment is different from the foregoing embodiment in that it further includes an anti-bacterial layer (18) which can be stacked on the outer layer (11) and the middle layer. Between (13). The anti-bacterial layer (18) can be a non-woven fabric coated with an anti-viral bacterial material such as nano silver, photocatalyst, etc., can reduce the activity of influenza bacteria, inhibit the growth of pathogens, has strong antibacterial and antiviral ability, and prevents infection or mutual infection. At the same time, it also has the aforementioned functions and effects.

Referring to FIG. 18, which is a fifteenth preferred embodiment of the present invention, the embodiment is different from the foregoing embodiment in that the position of the anti-pathogenic layer (18) is interchangeable with the outer layer (11), that is, the anti-bacterial layer. (18) is superposed on the outer layer (11) and located at the outermost side of the mask body (10). In this way, the activity of the virus bacteria can be first reduced, and then the layer of bacteria is blocked, filtered and filtered to prevent the inhalation of the inside of the mask into the human body, thereby improving the protective (or filtering) performance of the mask.

Referring to FIG. 19, a sixteenth preferred embodiment of the present invention is different from the previous embodiment in that the nose pad (30) can be composed of an elastic body (33) covering the bridge piece (31). Thereby, the structural strength of the nose pad (30) can be improved (to avoid separation), and the safety of use can be increased (to avoid piercing the mask at both ends of the bridge (31)).

20 is a seventeenth preferred embodiment of the present invention. The difference between this embodiment and the foregoing embodiment is that the iron wire (311) can be a single iron wire, which can be passed through a thick single iron wire or increased. The plastic part (312) is covered with a volume to increase the strength of the nose pad (30). Thereby, the functions and effects similar to those described above can be achieved.

Referring to FIG. 21, it is an eighteenth preferred embodiment of the present invention. The difference between the embodiment and the foregoing embodiment is that a nose pad (30) or a pad can be disposed on the mask body (10). The lower part, thereby achieving the same functions and effects as described above.

Referring to FIG. 22, a nineteenth preferred embodiment of the present invention is different from the previous embodiment in that two nose pads (30) or adhesive pads are provided on the mask body (10). On the left and right sides, the functions and effects similar to those described above can be achieved.

Referring to FIG. 23, a twentieth preferred embodiment of the present invention is different from the foregoing embodiment in that a nose pad (30) is disposed on each of the two sides and the lower portion of the mask body (10). Or the mat is used to achieve the same functions and effects as described above.

In summary, the present invention has the following main effects as compared with the prior art: by forming a convex portion (40) on the upper edge of the mask body (10), the gap between the bridge of the nose and the tibia can be filled, and the nasal density is greatly increased. The degree of cooperation prevents the glasses from fogging, and an enlarged three-dimensional space is formed inside the mask, so that the breathing can be smooth, the speech is natural, and the respiratory resistance can be greatly reduced.

In addition, the present invention has other effects: the active body layer (19) or the anti-bacterial layer (18) may be further disposed in the mask body (10). Activated carbon can effectively remove ozone and organic gases. The anti-bacterial layer (18) can reduce the activity of influenza bacteria, inhibit the growth of pathogens, and has strong antibacterial and antiviral ability to prevent infection or mutual infection.

The above is only the preferred embodiment of the present invention, and is not intended to limit the scope of the invention, and the equivalent structural changes of the present invention and the contents of the drawings are all included in the present invention. Within the scope of the rights, it is given to Chen Ming.

(10) ‧‧‧ mask body

(11) ‧‧‧ outer layer

(13) ‧‧‧ Middle

(15) ‧‧‧ inner layer

(15')‧‧‧ Inner folds

(17) ‧ ‧ joints

(30)‧‧‧ nose pads

(31)‧‧‧Nose beam

(311)‧‧‧Wire

(312)‧‧‧Plastic parts

(33)‧‧‧ Elastomers

(40) ‧‧‧ convex

Claims (10)

  1. A protective mask for a built-in nose pad, comprising: a cover body, an outer layer, a middle layer and an inner layer, wherein the middle layer is a filter layer; and a nose pad, which is composed of a nose strip and an elastic layer Constructed on the outer layer, wherein the elastic system is disposed on the outer layer; wherein an inner layer fold is extended from the inner layer and folded back, the inner layer fold member and the outer layer jointly cover the nose pad, and correspondingly A mask is formed on the mask body of the nose pad, and the protrusion is formed on the filter layer.
  2. The protective mask for a built-in nose pad according to claim 1, further comprising a plurality of joint portions arranged along a circumference of the convex portion, each of the joint portions being the inner layer folding member, the outer layer, The middle layer is fixed to the inner layer.
  3. The protective mask for a built-in nose pad according to claim 2, wherein an outer layer folding member is extended from the outer layer and is folded back, and the outer layer folding member is overlapped with the inner layer folding member and the outer layer The nose pad is co-coated.
  4. The protective mask for a built-in nose pad according to claim 3, wherein the mask body is formed with two longitudinal pleats, each on either side of the nose pad.
  5. The protective mask for the placed nose pad according to claim 1, 2, 3 or 4, further comprising a pair of inverted flaps extending from the sides of the mask body and being folded back The two ends are fixed to the mask body.
  6. The protective mask for a built-in nose pad according to claim 1, 2, 3 or 4, further comprising an inner anti-fog sheet fixed to the inner layer and formed with the convex portion.
  7. The protective mask for the placed nose pad according to claim 1, 2, 3 or 4, further comprising an exhalation valve mounted on the mask body.
  8. The protective mask for a built-in nose pad according to claim 1, 2, 3 or 4, further comprising an activated carbon layer stacked between the outer layer and the middle layer.
  9. The protective mask for a built-in nose pad according to claim 1, 2, 3 or 4, further comprising an anti-bacterial layer stacked between the outer layer or the outer layer and the middle layer.
  10. A protective mask for a built-in nose pad according to claim 1, wherein the elastomer has a uniform cross section and a circular shape.
TW105129653A 2016-09-12 2016-09-12 Face mask having embedded nose pad TWI587888B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
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Application Number Priority Date Filing Date Title
TW105129653A TWI587888B (en) 2016-09-12 2016-09-12 Face mask having embedded nose pad
DE102016124196.2A DE102016124196B4 (en) 2016-09-12 2016-12-13 Face mask with embedded nose pad

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TWI587888B true TWI587888B (en) 2017-06-21
TW201811396A TW201811396A (en) 2018-04-01

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JP5615195B2 (en) 2011-02-03 2014-10-29 サンエムパッケージ 株式会社 Mask
JP5811270B2 (en) 2012-03-07 2015-11-11 東亞合成株式会社 Deodorant mask

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20140182602A1 (en) * 2012-12-28 2014-07-03 San-M Package Co., Ltd. Mask

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DE102016124196A1 (en) 2018-03-15
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