EP1357813A1 - Strapless respiratory face mask - Google Patents
Strapless respiratory face maskInfo
- Publication number
- EP1357813A1 EP1357813A1 EP01996276A EP01996276A EP1357813A1 EP 1357813 A1 EP1357813 A1 EP 1357813A1 EP 01996276 A EP01996276 A EP 01996276A EP 01996276 A EP01996276 A EP 01996276A EP 1357813 A1 EP1357813 A1 EP 1357813A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- adhesive
- face mask
- skin
- wearer
- flange
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
Classifications
-
- A—HUMAN NECESSITIES
- A41—WEARING APPAREL
- A41D—OUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
- A41D13/00—Professional, industrial or sporting protective garments, e.g. surgeons' gowns or garments protecting against blows or punches
- A41D13/05—Professional, industrial or sporting protective garments, e.g. surgeons' gowns or garments protecting against blows or punches protecting only a particular body part
- A41D13/11—Protective face masks, e.g. for surgical use, or for use in foul atmospheres
- A41D13/1161—Means for fastening to the user's head
- A41D13/1169—Means for fastening to the user's head using adhesive
- A41D13/1176—Means for fastening to the user's head using adhesive forming a complete seal at the edges of the mask
Definitions
- US 4,966,140 issued on October 30, 1999, which discloses a face mask for the protection of the operating surgeon.
- the face mask comprising substantially vertical fasting tapes and a sealing strip formed along the upper marginal portion.
- US 5,735,270 issued April 7, 1998, which discloses a disposable, foldable face mask comprises a single generally rectangular sheet of filter material, a foam sealing strip and a mask tieing device attached to the top comers.
- JP 10-248,948, filed March 1 1 , 1997 discloses a face mask to cover the nose and the mouth which comprises an adhesive material at the periphery of the face mask.
- WO 00/07636 filed on July 30, 1999, discloses novel hydrogel adhesives particularly suitable for disposable absorbent articles but also useful for respiratory face masks.
- the prior art typically discloses the utilisation of certain adhesives having very high cohesive strengths such as rubber based adhesives and acrylics. These adhesives are then applied as thick layers to maximise the adhesive force by which the bandage is secured to the skin of the wearer.
- US 4,699,146 discloses hydrophilic elastomeric pressure sensitive adhesives suitable for use with ostomy devices, bandages, ulcer pads, sanitary napkins, diapers, and athletic padding.
- the adhesive comprises at least one radiation cross linked organic polymer and an adhesive plasticiser.
- GB 2 1 15 431 discloses adhesives for bandages, wounds or burn dressings, EKG adhesives, sanitary napkins, diapers and ulcer pads.
- the adhesive comprises an irradiation cross linked organic polymer such as polyvinylpyrrolodine and an adhesive plasticiser.
- an irradiation cross linked organic polymer such as polyvinylpyrrolodine
- an adhesive plasticiser for satisfactory use with a device such as a respiratory face mask, which may be worn over extended periods of time, it is important that the adhesive has a skin compatible composition and not be harsh or aggressive towards the skin or cause skin irritation or inflammation. Also it is preferred if the adhesive is compliant with the skin of the wearer such that maximum skin surface contact between the adhesive and the skin is achieved.
- the respiratory face mask can be readily removed from the wearer, without the wearer experiencing any unacceptable pain level and without leaving residues.
- This is particularly important under circumstances, where the device is removed and reapplication of the device once or even a number of times is required for example to allow for better communication, eating or the like, and to ensure the application of such devices on sensitive skin, e.g. of an elderly wearer.
- the desired level of adhesion albeit painless should of course also be maintained during such multiple applications of the device.
- the problem of achieving the desired adhesion level is further exacerbated under wet skin conditions.
- the skin is cleaned and is usually as a result moist.
- moisture from sweat may be developed while wearing a face mask, for example due to high ambient temperature or heavy physical work.
- the currently available adhesives such as those containing hydrocolloid particles, however often do not immediately strongly adhere to the skin and may need to be held in place until sufficient minimum adhesion occurs.
- the overall adhesive ability of such adhesives tends to be significantly reduced on wet skin surfaces per se, so that the device will typically not remain attached to the skin during wear if any pressure is exerted onto the device, for example by facial movements.
- WO-A-97/24149 describes a lipophilic polar pressure sensitive adhesive stated to have enhanced adhesion to greasy skin, the adhesive including a hydrophilic polymer matrix, a polar organic plasticiser and at least 9 wt % of a surfactant having an HLB (hydrophile lipophile balance) value of 10 to17.
- the hydrophilic polymer matrix may be selected from a range of polymers including homo- and copolymers of, for example, (meth)acrylic acid and salts thereof, acrylamide, N-vinyl pyrrolidone and acrylamidopropane sulphonic acid and salts thereof.
- the adhesive is prepared by polymerisation in a homogeneous aqueous mixture.
- the mask is comfortable and safe to wear.
- the mask is cheap to manufacture, so that it can serve as a disposable article, however, may alternatively be reusable many times.
- the mask works well on wet, greasy and in particular hair populated skin.
- the mask can be easily and comfortably removed.
- the present invention relates to face masks to control and improve the quality of inhaled air.
- a respiratory face mask comprising a flange and a filter layer, the flange having an inner periphery and an outer periphery and a first and a second width measured perpendicular to the inner periphery between the inner periphery and the outer periphery, characterised in that the first width is greater than the second width.
- face masks are strapless and rely on a hydrogel adhesive for attachment and sealing.
- an improved cover layer for an adhesive of such a face mask is provided.
- Figure 1 is a top view onto the wearer facing side of a preferred embodiment of the present invention.
- Figure 1 a is a top view onto the wearer facing side of the same a preferred embodiment of the present invention, the Figure also showing the axis A defining sectors on the flange.
- the present invention relates to face masks to control and improve the quality of inhaled air, which sometimes are referred to also as respiratory face masks, and herein for simplicity will also be referred to as face masks (10) or masks (10).
- face masks (10) comprise at least one flange (20) and at least one air control module, such as a filter layer (30), which may be integral, or joined and which may be separable or unseparable pieces.
- a respiratory face mask (10) according to the present invention may be designed to cover only the mouth of the wearer or only the nose of the wearer, but preferably is designed to cover both respiratory organs can be provided with any attachment means known in the art, such as headbands or straps which may run around the head and the neck area or which may run around the ears of wearer.
- Highly preferred attachment means according to the present invention are adhesive attachment means, such as a layer of adhesive provided on the wearer facing side of the flange (20).
- the respiratory face mask (10) may be equipped with any sealing means known in the art, for example a foam material.
- the layer of adhesive is provided on the face mask (10) which serves both as an attachment means and as a sealing means.
- a respiratory face mask (10), hereinafter referred to as protective face mask (10), face mask (10) or mask (10), provided in accordance with the present invention comprises as essential elements a flange (20) and a filter layer (30). Preferred embodiments are shown in Figure 1 and Figure 2. These embodiments are preliminary suitable as disposable masks for private users seeking infection prevention.
- the flange (20) serves to seal and preferably to attach the mask (10) to the face of a wearer.
- the flange is not intended to cover the respiratory organs (mouth and nose) of the wearer. If the mask is designed to cover mouth and nose of a wearer, the flange will typically be in contact with the nose, the cheeks and the chin of wearer.
- the flange has an inner periphery (22), surrounding the respiratory organs of the wearer, and an outer periphery (24), which typically defines the outer contours of the mask (10), confer Fig. 1 and 2.
- the present invention resides in the provision of the face mask (10) with a largely improved flange (20). It has been surprisingly found that providing a face mask (10) with a flange (20) of non-uniform width largely improves the sealing of the face mask (10) to the face of a wearer.
- width denotes the distance between the inner periphery (22) of the flange (20) and the outer periphery (24) of the flange (20) as measured in the direction perpendicular to the inner periphery (22).
- a plurality of first width can be measured on the flange which is greater than a plurality of second width of which can be measured on the flange.
- at least one of said first width is at least 10%, more preferably at least 20%, yet more preferably at least 30%, yet even more preferably at least 40%, yet even more preferably 50%, most preferably 80% greater than at least one of said second widths.
- the respiratory face mask (10) provided according to the present invention will be symmetrical about one longitudinal axis reflecting the symmetry between the left half and the right half of the human face.
- the "central point”, as used herein, shall be the point on the longitudinal axis which bisects the distance from the outer periphery of the nasal portion (26) to the outer periphery of the central chin portion (29), as shown in Fig. 1a.
- areas of lower width are preferably present in the following sectors: Firstly in a sector extending from 20° to 80°, preferable 30° to 70°, most preferably 40° to 60°, and secondly in a sector extending from 100° to 150°, preferably 105° to 140°, most preferably 110° to 130° and in the corresponding two mirror- symmetric sectors on the other side of the longitudinal axis. These areas are also referred to as cheek portions (27) and comer-of-the-mouth portions (28), cf. Figure 1.
- the portions of the flange (20) having a lower width as described above, herein also referred to as “narrow portions”, provide a hinge effect allowing for facial movements. Without wishing to be bound by theory it is believed that this hinge effect can be attributed to the higher flexibility of the flange (20) at such narrower portions as less material is provided there. It is also believed that less folds are created in the narrower portions as compared to wider portions when stain, eg. due to facial movement, is exercised onto the flange (20). Such folds are believed to be a source of deficient sealing.
- the face mask (10) of the present invention may have any shape, such as circular, oval, squared, rectangular or triangular. Oval shapes are preferred.
- the shape of the face mask (10) is essentially given by the outer periphery (24) of the flange (20). If provided for an adult wearer the outer periphery (24) of the flange (20) should be shaped to have a height measure along the longitudinal axis from 5 cm to 15 cm, preferably 8 cm to 12 cm, and to have a width, measured along a transversal axis through the central point, from 8 cm to 20 cm and preferably from 10 cm to 15 cm. The height is preferably chosen so, that some facial movement and opening of the mouth is enabled. It has surprisingly be found, that the face mask (10) according to the present invention do, for example, even allow talking and coughing, which gives both a high comfort and a safety benefit.
- one air control module (30) is provided with more than one flange (20).
- flanges (20) can be provided in a stacked arrangement, so that a used flange (20) can be peeled off and a fresh flange (20) comprising a fresh adhesive layer is provided. The stacked arrangement is hold together by the adhesive layers provided on the flanges (20) for attachment to a wearer. In such embodiment, prior to use only the outermost flange (20) should be covered by a release sheet (40).
- a highly preferred air control module according to the present invention is a filter layer (30).
- the filter layer (30) can be provided from a variety of materials and a variety of combinations of materials.
- Preferred materials include non- woven materials, textile materials, e.g. silk, linen or cotton, and tissue paper.
- any material be employed which is known in the art of absorbent articles, namely sanitary napkins, panty liners and diapers, for use as a top sheet or as a back sheet of such absorbent articles. Materials known for use in a top sheet provide good liquid permeability and hence also good air permeability, while they are appropriate for skin contact.
- the filter layer (30) should preferably filter some moisture of the exhaled air, eg. traces of saliva or blood, to suppress the spreading of infections.
- G'37 (1 rad/sec) / G"37 (1 rad/sec) is in the range of 1 to 30.
- Adhesive compositions which satisfy the above criteria can be used as adhesives for the device provided they also satisfy the common requirements of being safe for use on human or animal skin during use and generally after disposal of the device.
- the relation between the thickness or calliper C, measured in millimetres (mm), of the layer in which the adhesive is provided, typically onto at least a portion of the wearer facing surface of the device, and the viscous modulus G"25 at about 100 rad/sec of the adhesive is relevant to the scope of providing an easy and painless removal from the wearer's skin of such a adhesive applied on at least a portion of the wearer facing surface of an device for attachment of said device to the skin of a wearer.
- the adhesive of the present invention is thus preferably provided as a layer having a thickness C such that the viscous modulus G"25 (100 rad/sec) and the thickness C preferably satisfy the following empirical equation:
- the thickness C of the adhesive layer is constant, such an adhesive layer can also have different thicknesses in different portions of the wearer facing surface of the device where it is applied, provided that the above mentioned relationship between C and G"25 is in any case satisfied in each portion.
- the skin of the wearer to which the devices are typically applied will vary considerably from person to person.
- the type and amount of grease or sebum produced can vary considerably from person to person.
- the facial area, and in particular around the chin is generally known to produce high levels of sebum and to quickly reproduce such sebum, even if some is removed, e.g. by cleaning of the pertinent skin areas.
- the wearers of such devices may apply creams to the area of skin which will contact the adhesives, e.g. moisturing creams. It is thus important to provide an adhesive which adheres to greasy skin.
- the present invention provides an adhesive having a dry initial peel strength (PDI) and a greasy initial peel strength (PGI) as determined by the test method described herein, where the ratio PDI to PGI is from 1 :1 to 1.0:0.2, preferably from 1:1 to 1 :0.3.
- the dry initial peel strength is (PDI) is from 0.1 N/cm to 7.0N/cm, preferably from 0.1N/cm to 5.0N/cm, more preferably from 0.5N/cm to 3N/cm.
- the value of the grease initial peel strength is preferably the same as for the dry initial peel strength.
- the adhesive has a water absorption capacity as defined in the test herein of at least 3% by weight of said adhesive (so that the adhesive adheres directly onto wet or moist skin).
- the ratio of the peel strength of the adhesive as determined in the test methods herein should most preferably be maintained at a constant value such that the ratio of initial peel strength (PDI) and the final peel strength (PWF) is from 2:1 to 1 :4, preferably from 2:1.25 to 2:4, most preferably from 2.0:1.5 to 2.0:2.5.
- the initial peel strength for dry and more preferably also for wet skin should be from 0:1 N/cm to 7.0N/cm, 0.1 /cm to 5.0N/cm, preferably from 0.5N/cm to 3.0N/cm.
- the adhesive in addition to maintaining its peel strength over a period of time even in the presence of water also absorbs less than 15%, preferably less than 10%, more preferably less than 7% water.
- the ability of the adhesive to absorb water needs to be considered.
- hydrocolloid particle containing adhesives which are known in the art comprising a 3-dimensional rubber matrix and colloidal absorbent particles dispersed therein are only able to absorb limited amounts of water through the colloidal particles themselves and not the matrix itself. In addition the rate at which water is absorbent is slow. Hence these prior art adhesives do not adhere to wet surfaces.
- Prior art hydrogel adhesives on the other hand are able to not only absorb large quantities of water but also at a very fast rate. As a result such adhesives may be able to adhere, to wet surfaces, however due to the combination of fast rate of absorption and large absolute water uptake, these adhesives loose their adhesive strength rapidly in the presence of excess water or high humidity.
- the adhesives of the present invention exhibit both an ability to adhere directly to wet skin, by having a minimum absolute water absorption ability in combination with a rate of absorption such that the peel strength remains within defined levels over the period of wear.
- the adhesive is provided with the preferred pattern, typically on the wearer facing surface of the device, as a layer having a thickness or calliper C that is preferably constant.
- the layer can be preferably continuous or alternatively discontinuous, e.g. in form of dots, spirals, or stripes.
- PSA typical pressure sensitive adhesive
- materials useful as adhesives according to the present invention have rheological characteristics which are measured at a reference temperature of 37°C (as usual body temperature of humans) and in a range of frequencies. It has been found that upon application of an device with a adhesive the adhesive contact is formed at a low frequency, while debonding happens at the speed of removing the device. This speed is expressed as a frequency of 100 rad/s, while the low frequency of forming the adhesive bond has been found to be on the order of 1 rad/s. Therefore, the frequency range for use according to the present invention is between 1 and 100 rad/s.
- the Glass Transition Temperature Tg of the adhesive composition is parameters which are useful to more fully define the group of useful adhesives.
- the value of the ratio of G'37/G"37 at least for the frequency range above 1 rads/up to 100 rads/s should preferably be not less than 0.5, preferably from 0.7 to 10 and most preferably from 1 to 7.
- Tg Transition Temperature
- Tg should preferably be less than 0°C, more preferably less than -5°C and most preferably less than -10.
- materials useful as adhesives according to the present invention have rheological characteristics which are measured at a reference temperature of 37°C (as usual body temperature of humans) and in a range of frequencies. It has been found that upon application of articles with an adhesive, the adhesive contact is formed at a low frequency, while debonding happens at the speed of removing the article. This speed is expressed as a frequency of 100 rad/s, while the low frequency of forming the adhesive bond has been found to be on the order of 1 rad/s. Therefore, the frequency range for use according to the present invention is between 1 and 100 rad/s.
- G'37 (1 rad/sec) is in the range 100 Pa to 4000 Pa, preferably 300 Pa to 2500 Pa, most preferably 400 Pa to 1500 Pa.
- G"37 (1 rad/sec) is in the range 100 Pa to 5000 Pa, preferably 200 Pa to 2000 Pa, most preferably 300 Pa to 2000 Pa.
- G'37 (1 rad/sec) is at least 50 Pa
- G"37 (1 rad/sec) preferably at least 150 Pa, more preferably at least 200 Pa, most preferably at lest 300 Pa.
- the values of elastic modulus, viscous modulus and peel strength can be selected from the above ranges depending on the end use envisaged.
- the nature of the hair itself also affects the ability of the hair to penetrate into the hydrogel adhesive, in particular the caliper, length, density, and curliness of the hair being of importance. It has now been found that the suitability for a particular hair type for embedding within the hydrogel adhesive can be determined by the following equation based on hair from a referenced 1 sqcm area.
- V weight (assuming constant specific weight)
- any medically suitable substantially water insoluble pressure sensitive adhesives comprising a polymer which forms a 3-dimensional matrix meeting the these characteristics may be utilised.
- the 3-dimensional matrix also referred to herein as a gel, comprises as an essential component a polymer which can be physically or chemically cross linked.
- the polymer may be naturally or synthetically derived.
- the uncrosslinked polymer includes repeating units or monomers derived from vinyl alcohols, vinyl ethers and their copolymers, carboxy vinyl monomer, vinyl ester monomers, esters of carboxy vinyl monomers, vinyl amide monomers, hydroxy vinyl monomers, cationic vinyl monomers containing amines or quaternary groups, N-vinyl lactam monomer, polyethylene oxides, polyvinylpyrrolidone (PVP), polyurethanes, acrylics such as methyl acrylate, 2-hydroxyethyl methacrylate, methoxydiethoxyethyl methacrylate and hydroxydiethoxyethyl methacrylate, acrylamides,and sulphonated polymers such as acrylamide sulphonated polymers for example 2 acrylamido methylpropan
- the uncrosslinked polymer may be a homopolymer or copolymer of a polyvinyl ether, or a copolymer derived from a half ester of maleic ester.
- any other compatible polymer monomer units may be used as copolymers such as for example polyvinyl alcohol and polyacrylic acid or ethylene and vinyl acetate.
- the polymers may be block copolymer thermoplastic elastomers such as ABA block copolymers such as styrene-olefin-styrene block copolymers or ethylene-propylene block copolymers. More preferably such polymers include hydrogenated grade styrol/ethylene-butylene/styrol (SEBS), styrene/isoprene/styrene (SIS), and styrol/ethylene-propylene/styrol (SEPS).
- SEBS hydrogenated grade styrol/ethylene-butylene/styrol
- SIS styrene/isoprene/styrene
- SEPS styrol/ethylene-propylene/styrol
- Particularly preferred polymers are acrylics, sulphonated polymers such as acrylamide sulphonated polymers, vinyl alcohols, vinyl pyrrolidone, polyethylene oxide and mixtures thereof. Most preferred are nitrogen containing polymers.
- the 3-dimensional adhesive matrix also essentially comprises a plasticiser, which is preferably a liquid at room temperature.
- a plasticiser which is preferably a liquid at room temperature.
- This material is selected such that the polymer may be solubilized or dispersed within the plasticiser.
- the plasticiser must also be irradiation cross linking compatible such that it does not inhibit the irradiation cross linking process of the polymer.
- the plasticiser may be hydrophilic or hydrophobic.
- Suitable plasticisers include water, alcohols, polyhydric alcohols such as glycerol and sorbitol, and glycols and ether glycols such as mono- or diethers of polyalkylene gylcol, mono- or diester polyalkylene glycols, polyethylene glycols (typically up to a molecular weight of about 600), glycolates, glycerol, sorbitan esters, esters of citric and tartaric acid, imidazoline derived amphoteric surfactants, lactams, amides, polyamides, quaternary ammonium compounds, esters such phthalates, adipates, stearates, palmitates, sebacates, or myristates, and combinations thereof. Particularly preferred are polyhydric alcohols, polyethylene glycol (with a molecular weight up to about 600), glycerol, sorbitol, water and mixtures thereof.
- the adhesive comprises a ratio of polymer to plasticiser by weight of from 1 :100 to 100:1 , more preferably from 50:1 to 1 :50.
- the exact amounts and ratios of the polymer and plasticiser will depend to a large extent on the exact nature of polymer and plasticisers utilised and can be readily selected by the skilled person in the art. For example a high molecular weight polymer material will require a greater amount of plasticiser than a low molecular weight polymer.
- the adhesive also further preferably comprises a lipid-micellising polymer, i.e. a so-called hypercoiling polymer. This polymer functions to micellise and remove the rolled up pockets of grease from the gel-skin interface.
- a particularly preferred example is an alternating copolymer of styrene and maleic anhydride.
- the adhesive seeks to provide a biphasic structure on polymerisation. These two phases are hydrophilic and hydrophobic.
- the hydrophobic phase my be provided by a hydrophobic monomer which is initially maintained as part of the homogenous reaction mixture by way of a reactive solvent bridge.
- the hydrophobic component is provided as a polymer which separates from the aqueous phase on polymerisation.
- the exact amounts and ratios of the hypercoiling polymer will depend to a large extent on the nature of the components.
- the reaction mixture preferably comprises from 3% to 20%, and more preferably from 8% to 18% by weight of the reaction mixture, of a stabilised polymer dispersion that is used to provide a stable phase separated system.
- the polymer preferably comprises any of the following either alone or in combination: vinylacetate dioctyl maleate copolymer or ethylene-vinyl acetate copolymer. Ethylene-vinylacetate copolymer is preferred, such as that marketed under the trade name DM137 by Harlow Chemicals.
- the adhesive also preferably comprise surfactants such as nonionic, cationic, anionic, amphoteric and any mixtures thereof.
- Suitable nonreactive nonionic surfactants include but are not limited to those selected from the group consisting of the condensation products of a higher aliphatic alcohol, such as a fatty alcohol, containing about 8 to about 20 carbon atoms, in a straight or branched chain configuration, condensed with about 3 to about 100 moles, preferably about 5 to about 40 moles and most preferably about 5 to about 20 moles of ethylene oxide.
- a higher aliphatic alcohol such as a fatty alcohol, containing about 8 to about 20 carbon atoms, in a straight or branched chain configuration
- Examples of such nonionic ethoxylated fatty alcohol surfactants are the Tergitol.TM. 15-S series from Union. Carbide and Brij.TM. surfactants from ICI. Tergitol.TM.
- nonreactive nonionic surfactants include but are not limited to those selected from the group consisting of the polyethylene oxide condensates of one mole of alkyl phenol containing from about 6 to 12 carbon atoms in a straight or branched chain configuration, with about 3 to about 100 moles of ethylene oxide.
- nonionic surfactants are the Igepal.TM.CO and CA series from Rhone-Poulenc.
- Igepal.TM.CO surfactants include nonylphenoxy poly(ethyleneoxy) ethanols.
- Igepal.TM. CA surfactants include octylphenoxy poly(ethyloneoxy) ethanols.
- nonreactive nonionic surfactants include but are not limited to those selected from the group consisting of block copolymers of ethylene oxide and propylene oxide or butylene oxide.
- Anionic surfactants which can be used in the present invention include but are not limited to those selected from the group consisting of (about Csub.6 to about C.sub.20) alkyl or alkylaryl sulfates or sulfonates such as sodium lauryl sulfate (commercially available as Polystep.TM B-3 from Srepan Co.) and sodium dodecyl benzene sulfonate, (commercially available as Siponate.TM.DS- 10 from Rhone-Poulene); polyoxyethylene (about Csub.6 to about C.sub.20) alkyl or alkylphenol ether sulfates with the ethylene oxide repeating unit in the surfactant below about 30 units, preferably below about 20 units, most preferably below about 15 units, such as Polystep.TM.B-1 commercially available from Stepan Co.
- alkyl or alkylaryl sulfates or sulfonates such as sodium lauryl sulfate (commercially available as Polystep.
- Cationic surfactants useful in the present invention include but are not limited to those selected from the group consisting of quaternary ammonium salts in which at least one higher molecular weight group and two or three lower molecular weight groups are linked to a common nitrogen atom to produce a cation, and wherein the electrically-balancing anion is selected from the group consisting of a halide (bromide, chloride, etc.), acetate, nitrite, and lower alkosulfate (methosulfate etc.).
- a halide bromide, chloride, etc.
- acetate acetate
- nitrite nitrite
- lower alkosulfate methosulfate etc.
- the surfactant acts to remove the grease from the skin and to form the removed grease into isolated pockets within the hydrogel without reducing the work of adhesion of the coating.
- a polyfunctional cross linker and/or a free radical initiator may be present in the premix to initiate the crosslinking upon irradiation.
- Such an initiator can be present in quantities up to 5% by weight, preferably from 0.02% to 2%, more preferably from 0.02% to 0.2%.
- Suitable photoinitiators include type l- ⁇ -hydroxy- ketones and benzilidimethyl-ketals e.g. Irgacure 651 which are believed to on irradiation to form benzoyl radicals that initiate polymerization. Photoinitiators of this type that are preferred do not carry any subtitients in the para position of the aromatic ring.
- l-hydroxycyclohexylphenylketone available under the trade name Irgacure 184 from Ciba Speciality Chemicals
- Darocur 1173 (2-hydroxy-2-propylphenyl ketone)
- mixtures of Irgacure 184 and Darocur 1173 may also be used.
- a mixture of monomers which may result in 1 , 2 or more phases are preferred.
- Mixed phase adhesives are compositions in which both hydrophobic and hydrophilic components, preferably in both plasticisers and polymers, form two or more separate phases.
- an emulsifier is preferably present at a suitable level to form stable emulsions between the incompatible phases.
- the invention seeks to provide a homogeneously dispersed reaction mixture comprising both hydrophobic and hydrophilic components which, on polymerisation separates into a biphasic or a multiphasic structure.
- the phases have in some cases been observed to have a thickness of about 100 microns +/-50 microns.
- the reaction mixture may contain one or more surface active agents which may assist or promote phase separation but in the course of polymersation become anistropically distributed between the result phases.
- Suitable preferred hydrophilic monomers are acrylic acid, and salts thereof, 2-acrylamido methylpropane sulphonic acid, acrylic (3-sulphopropyl) ester acid and salts thereof and combinations thereof.
- a particularly preferred example is 2- acrylamide.-2-methylpropane sulphonic acid sodium salt commonly known as NaAMPs available commercially from Lubriz ' ol as either a 50% aqueous solution (reference code LZ 2405) or at a 58% solution (refernce code LZ 2405 A).
- the ingredients will usually be mixed to provide a homogeneous reaction mixture in the form of an initial pre-gel aqueous based liquid formulation, and this is then converted into a gel by a free radical polymerisation reaction.
- This may be achieved for example using conventional thermal initiators and/or photoinitiators or by ionizing radiation.
- Photoinitiation is a preferred method and will usually be applied by subjecting the pre-gel reaction mixture containing an appropriate photoinitiation agent to UV light after it has been spread or coated as a layer on siliconised release paper or other solid substrate.
- the incident UV intensity, at a wavelength in the range from 240 to 420nm, is ideally substantially 40mW/cm2.
- the processing will generally be carried out in a controlled manner involving a precise predetermined sequence of mixing and thermal treatment or history.
- the UV irradiation time scale should ideally be less than 60 seconds, and preferably less than 10 seconds to form a gel with better than 95% conversion of the monomers and for conversion better than 99.95% exposure to UV light less than 60 seconds and preferably less than 40 seconds is preferred.
- the extent of irradiation will be dependent on the thickness of the reaction mixture, concentration of photoinitiator and nature of substrate on to which the reaction mixture is coated and the source of UV.
- timings are for medium pressure mercury arc lamps as the source of
- the conversion of the hydrophilic monomers present such as NaAMPS should be 98%, preferably 99% most preferably 99.9% so that the amount of monomer within the adhesive is 4600 microg/g or less, preferably 2300 microg/g or less, most preferably 230 microg/g or less.
- the adhesive is thus typically formed by polymerising a homogeneous aqueous reaction mixture comprising from 5 to 50%, preferably from 30% to 50% by weight of the reaction mixture, of hydrophilic monomer, i.e. an ionic water soluble monomer, from 10% to 50%, preferably from 15% to 45% by weight of the reaction mixture, of a plasticiser (other than water), up to 50%, preferably from 10% to 50%, more preferably from 15% to 30% most preferably from 15% to 25% by weight of the reaction mixture, of a nonionic, water soluble monomer, from up to 40%, preferably from 0.05% to 40%, more preferably from 3 to 40%, by weight of the reaction mixture, of water.
- hydrophilic monomer i.e. an ionic water soluble monomer
- the reaction mixture comprises from up to 10%, preferably from 0.05% to 9%, more preferably less than 8% by weight of the reaction mixture, of a surfactant.
- the reaction mixture may also comprise from 0.1 % to 5%, by weight of the reaction mixture, of a lipid micelling polymer, and may comprise from 1 % to 30% by weight of the reaction mixture of at least one hydrophobic monomer.
- the phase separated polymerised material contains at least at its surface relatively hydrophobic regions, which enable the polymer to function as a pressure sensitive adhesive, and substantially hydrophilic regions, which enable the surface active agent to function in an aqueous environment at the interface between the polymer and mammalian skin.
- the nature and quantity of surface active agent are chosen to bring about the removal of natural or synthetic hydrophobic material, such as skin lipid or skin creme, from the skin surface without adversely diminishing the work of adhesion between the hydrophobic domains and the skin surface.
- hydrophobic phase visualised microscopically may, for example, appear as discontinuous linear and/or branched strands, or closed loops, embedded in the hydrophilic matrix.
- the polymerised material is typically non-bicontinuous. At least one of the hydrophobic and hydrophilic phases exists as discrete regions within the polymerised material, and both phases do not simultaneously extend across the polymerised material (bicontinuity).
- the adhesive is provided, typically on at least a portion of the wearer facing surface of the device, as a layer having a thickness or calliper C that is preferably constant, or that alternatively can vary over the surface of application of the adhesive.
- the relationship between the thickness or calliper C measured in millimetres (mm) of the layer of the adhesive typically onto at least part of the wearer's facing surface of the device, and the viscous modulus G"25 at 25°C at about 100 rad/sec of the topical adhesive gives an indication of painless and easy removal of the adhesive from the skin.
- Polyester Film PET 23 ⁇ available from EFFEGIDI S.p.A.,43052 Colorno, Italy.
- the sample is peel from the forearm. There are 3 conditions of the skin that are tested:
- test area of the forearm is a rectangle approximately 2cm wider and longer than the adhesive area).
- the concentration of the test and calibration sample are determined by linear regression analysis using a software package such as VG Mass Lynx.
- Irgacure 184 Mix 6.0g of Irgacure 184 with 20g IRR280 (PEG400 diacrylate) from UCB (Solution A). To 0.07 g of Irgacure 184 add 23.5g of NNDMA and stir for one hour (keep container covered from light). Add to this 10 g of Mowilith DM137 (50% dispersion of ethylene vinyl acetate copolymer in water from Harco) and stir for 5 minutes. Add30 g of glycerol to this and stir for 5 minutes, followed by 40g of NaAMPS (58%). Stir for another 5 minutes. Add 0.13g of Solution A and stir the whole formulation for 1 hour before use.
- Bromopyrogallol Red is dominated by acidic - S03H and -COOH groups and fluorescein sodium by a slightly acidic -COOH group. More basic regions of the polymer have most affinity for the acidic dye and the acidic regions least affinity for the acidic dye. It can also be observed that a higher water content material allows more rapid uptake of a dye.
- Bromopyrogallol Red is more likely to favour the more hydrophobic than the more hydrophilic aqueous phase, in comparison to fluorescein sodium which would prefer the aqueous environment.
- This preference is illustrated by the fact that conventional N-vinyl pyrrolidone or N,N- dimethylacrylamide based hydrogels tend to retain approximately 30% of the Brompyrogallol Red dye within the polymeric network.
- Brompyrogallol Red coupled with its greater affinity for hydrophobic domains and its solubility in methanol make it much more suited than sodium fluorescein for indicating by differential staining the presence of hydrophobic and hydrophilic regions in the surface of polymer gels.
- an adhesive present of the wearer facing side of the face mask (10) is preferably covered by a cover layer, which may for example be provided by at least one release sheet (40) or release paper, such as siliconised paper.
- any such release sheet (40) extends from the outer periphery (24) of the flange (20) to the filter layer (30), and most preferably to the central point of the face mask (10).
- Such embodiment allows to peal off the release sheet (40) starting from the centre rather than from the outer periphery of the face mask (10).
- release sheet (40) which provides the cover layer overlap, so that at least one portion of at least one of the release sheets is not in contact with the adhesive, as to facilitate an easier pealing-off.
- the outer contours of the release sheets (40) may be chosen to have the same form as the outer periphery (24) of the flange (20) or may be chosen to have another form which is convenient to produce.
Landscapes
- Health & Medical Sciences (AREA)
- General Health & Medical Sciences (AREA)
- Physical Education & Sports Medicine (AREA)
- Engineering & Computer Science (AREA)
- Textile Engineering (AREA)
- Adhesives Or Adhesive Processes (AREA)
- Orthopedics, Nursing, And Contraception (AREA)
- Materials For Medical Uses (AREA)
- Respiratory Apparatuses And Protective Means (AREA)
- Secondary Cells (AREA)
- Electric Double-Layer Capacitors Or The Like (AREA)
- Semiconductor Integrated Circuits (AREA)
Abstract
Description
Claims
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP01996276A EP1357813B1 (en) | 2000-12-18 | 2001-12-13 | Strapless respiratory face mask |
Applications Claiming Priority (4)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP00127674 | 2000-12-18 | ||
| EP00127674A EP1214896A1 (en) | 2000-12-18 | 2000-12-18 | Strapless respiratory face mask |
| EP01996276A EP1357813B1 (en) | 2000-12-18 | 2001-12-13 | Strapless respiratory face mask |
| PCT/US2001/048941 WO2002049467A1 (en) | 2000-12-18 | 2001-12-13 | Strapless respiratory face mask |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| EP1357813A1 true EP1357813A1 (en) | 2003-11-05 |
| EP1357813B1 EP1357813B1 (en) | 2006-06-07 |
Family
ID=8170706
Family Applications (2)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP00127674A Withdrawn EP1214896A1 (en) | 2000-12-18 | 2000-12-18 | Strapless respiratory face mask |
| EP01996276A Expired - Lifetime EP1357813B1 (en) | 2000-12-18 | 2001-12-13 | Strapless respiratory face mask |
Family Applications Before (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP00127674A Withdrawn EP1214896A1 (en) | 2000-12-18 | 2000-12-18 | Strapless respiratory face mask |
Country Status (7)
| Country | Link |
|---|---|
| EP (2) | EP1214896A1 (en) |
| CN (1) | CN1269428C (en) |
| AT (1) | ATE328501T1 (en) |
| AU (1) | AU2002227424A1 (en) |
| DE (1) | DE60120495T2 (en) |
| ES (1) | ES2266307T3 (en) |
| WO (1) | WO2002049467A1 (en) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN106889676A (en) * | 2015-12-18 | 2017-06-27 | 北京奇虎科技有限公司 | Air filter and air filtering method |
Families Citing this family (17)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US6948499B2 (en) | 2002-09-24 | 2005-09-27 | Kimberly-Clark Worldwide, Inc. | Easy gripping face mask |
| US6945249B2 (en) | 2002-09-24 | 2005-09-20 | Kimberly-Clark Worldwide, Inc. | Easy gripping face mask |
| US6868984B2 (en) | 2002-09-24 | 2005-03-22 | Kimberly-Clark Worldwide, Inc. | Method of dispensing a face mask |
| US6857935B1 (en) * | 2003-11-14 | 2005-02-22 | Jewel L. Dohan | Reusable adhesive body apparel |
| EP1894549A1 (en) | 2006-08-29 | 2008-03-05 | Helle Kayerod | Protective face mask |
| CN102100939A (en) | 2009-12-18 | 2011-06-22 | 崇仁(厦门)医疗器械有限公司 | Strapless breathing mask |
| US20140182600A1 (en) * | 2012-12-27 | 2014-07-03 | 3M Innovative Properties Company | Filtering face-piece respirator having welded indicia hidden in pleat |
| CN106572713A (en) * | 2014-08-11 | 2017-04-19 | 3M创新有限公司 | Strapless facemask with skin friendly adhesive perimeter |
| WO2019047332A1 (en) * | 2017-09-08 | 2019-03-14 | 盐城方天无纺制品有限公司 | Novel face mask without bands |
| KR102585442B1 (en) | 2017-11-13 | 2023-10-06 | 쓰리엠 이노베이티브 프로퍼티즈 캄파니 | Inner shell and mask including same |
| IT202000009583A1 (en) * | 2020-04-30 | 2021-10-30 | Pierc S R L | MEDICAL DEVICE FOR THE PROTECTION OF THE RESPIRATORY TRACT |
| DE202020002159U1 (en) | 2020-05-15 | 2020-06-30 | Jochen Slaby | Self-holding disposable breathing mask, for single use |
| CN111760384A (en) * | 2020-06-09 | 2020-10-13 | 田晓慧 | Anti-haze antibacterial filtering material and preparation method thereof |
| US20210386141A1 (en) * | 2020-06-12 | 2021-12-16 | Alice M. Chun | Transparent flexible self-attaching face mask |
| EP3925471B1 (en) * | 2020-06-16 | 2025-05-14 | Mark Huesges | Adhesive facial masks |
| SE544685C2 (en) * | 2020-09-30 | 2022-10-18 | Soliver Ab | Elastic face mask comprising an adhesive |
| USD958463S1 (en) | 2020-11-24 | 2022-07-19 | Victoria Iagulli | Face mask |
Family Cites Families (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US3357426A (en) * | 1965-01-14 | 1967-12-12 | Univ California | Adherent face mask having a quick disconnect fitting and disposable components |
| US5306504A (en) * | 1992-12-09 | 1994-04-26 | Paper Manufactures Company | Skin adhesive hydrogel, its preparation and uses |
| US5724964A (en) * | 1993-12-15 | 1998-03-10 | Tecnol Medical Products, Inc. | Disposable face mask with enhanced fluid barrier |
| US5392773A (en) * | 1994-04-13 | 1995-02-28 | Bertrand; Archie A. | Respiratory particulate filter |
| AU1171299A (en) * | 1997-11-14 | 1999-06-07 | Louis Michael Crowe | A seal for a respiratory mask, and a respiratory mask |
| AU4442499A (en) * | 1998-06-17 | 2000-01-05 | Firedrill Company, Inc., The | Fire escape mask |
-
2000
- 2000-12-18 EP EP00127674A patent/EP1214896A1/en not_active Withdrawn
-
2001
- 2001-12-13 CN CN01822594.2A patent/CN1269428C/en not_active Expired - Fee Related
- 2001-12-13 ES ES01996276T patent/ES2266307T3/en not_active Expired - Lifetime
- 2001-12-13 WO PCT/US2001/048941 patent/WO2002049467A1/en not_active Ceased
- 2001-12-13 EP EP01996276A patent/EP1357813B1/en not_active Expired - Lifetime
- 2001-12-13 DE DE60120495T patent/DE60120495T2/en not_active Expired - Fee Related
- 2001-12-13 AU AU2002227424A patent/AU2002227424A1/en not_active Abandoned
- 2001-12-13 AT AT01996276T patent/ATE328501T1/en not_active IP Right Cessation
Non-Patent Citations (1)
| Title |
|---|
| See references of WO0249467A1 * |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN106889676A (en) * | 2015-12-18 | 2017-06-27 | 北京奇虎科技有限公司 | Air filter and air filtering method |
Also Published As
| Publication number | Publication date |
|---|---|
| CN1501779A (en) | 2004-06-02 |
| DE60120495D1 (en) | 2006-07-20 |
| ES2266307T3 (en) | 2007-03-01 |
| DE60120495T2 (en) | 2006-12-21 |
| AU2002227424A1 (en) | 2002-07-01 |
| WO2002049467A1 (en) | 2002-06-27 |
| ATE328501T1 (en) | 2006-06-15 |
| EP1214896A1 (en) | 2002-06-19 |
| EP1357813B1 (en) | 2006-06-07 |
| CN1269428C (en) | 2006-08-16 |
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