EP2757913A1 - Disposable safety garment - Google Patents

Disposable safety garment

Info

Publication number
EP2757913A1
EP2757913A1 EP12833194.9A EP12833194A EP2757913A1 EP 2757913 A1 EP2757913 A1 EP 2757913A1 EP 12833194 A EP12833194 A EP 12833194A EP 2757913 A1 EP2757913 A1 EP 2757913A1
Authority
EP
European Patent Office
Prior art keywords
garment
hood
wearer
doffing
loops
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
Application number
EP12833194.9A
Other languages
German (de)
French (fr)
Other versions
EP2757913B1 (en
EP2757913A4 (en
Inventor
Sudhansu S. YADAV
Mark Dieterle
Joseph T. MARCUM
Elliot Thompson
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
QUEST ENVIRONMENTAL and SAFETY PRODUCTS Inc
Original Assignee
QUEST ENVIRONMENTAL and SAFETY PRODUCTS Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from US13/243,282 external-priority patent/US8621669B2/en
Application filed by QUEST ENVIRONMENTAL and SAFETY PRODUCTS Inc filed Critical QUEST ENVIRONMENTAL and SAFETY PRODUCTS Inc
Publication of EP2757913A1 publication Critical patent/EP2757913A1/en
Publication of EP2757913A4 publication Critical patent/EP2757913A4/en
Application granted granted Critical
Publication of EP2757913B1 publication Critical patent/EP2757913B1/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

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
    • A41D13/02Overalls, e.g. bodysuits or bib overalls
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D2200/00Components of garments
    • A41D2200/20Hoods
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D2300/00Details of garments
    • A41D2300/30Closures
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D2400/00Functions or special features of garments
    • A41D2400/52Disposable

Definitions

  • the present invention relates generally to the field of safety apparel, and more specifically to safety garments for use in various environments, including for example environments containing actual or potential radiological, biological, or light-splash hazards, the apparel having, in various embodiments, reduced particulate shedding properties, attachment facilities, reinforced points of wear or contact contamination risk, and ease-of- safe-removal characteristics.
  • Safety garments such as disposable smocks, jumpsuits, gloves, shoe coverings, and hair coverings, are required apparel for the performance of many jobs. Some of the jobs requiring safety garments are performed in clean room environments, wherein the introduction of foreign matter must be minimized. For example, technicians in certain sensitive medical fields dealing with infectious matter, aerospace researchers assembling interplanetary probes, and material scientists developing and manufacturing ultra-pure materials all wear safety garments in clean room environments.
  • the safety garments in some situations perform the dual function of protecting the wearer from the potentially hazardous materials he is working with as well as preventing unwanted matter from the wearer's person from contaminating his work product. In other situations, safety garments protect the worker from exposure to dangerous materials, such as radioactive, chemical, and biological hazards.
  • Safety garments for use in clean room environments are typically made from nonwoven disposable materials, such as from sheets of spunbond/melt blown/melt blown/spunbond (SMMS) material and the like. Such sheets of material are cut into patterns and stitched together to form desired safety apparel.
  • SMMS spunbond/melt blown/melt blown/spunbond
  • Such sheets of material are cut into patterns and stitched together to form desired safety apparel.
  • these garments are intended to be disposable and the focus is on their functionality and not aesthetic appeal, little attention is paid to the hemming and stitching.
  • the "as cut” edges are thus exposed.
  • contaminant levels in the parts per million or even parts per billion would be too high, such exposed cut edges present genuine sources of potential particulate contamination.
  • seam separation is not only a potential source of particulate evolution in and of itself, but also produces a pathway from the exterior to the interior of the garment through which potentially hazardous material may flow.
  • One aspect of the present disclosure relates to a safety garment.
  • Some embodiments include at least one sheet of nonwoven fabric having at least one cut edge, a plurality of stitches formed in the sheet(s) of nonwoven fabric to define a garment; and hemming formed at cut edges.
  • the nonwoven fabric is preferably formed from
  • the stitching is characterized by an optimized stitch density of between ten and twelve stitches per inch.
  • the garment includes at least one attachment feature for holding or attaching one or more dosimeters to the garment. These may be positioned to allow the wearer to grasp them and tear open certain seams, partially or completely open a zipper, or otherwise remove the garment.
  • the garment also includes an improved neck closure that simplifies donning of the garment and aids the wearer's effort to doff the suit while avoiding self-contamination events.
  • Some embodiments have reinforced knees and elbows for additional protection against contact with hazardous materials.
  • One object of the present invention is to provide an improved safety garment.
  • An object of some embodiments is to facilitate doffing of the garment with a reduced risk of contaminating oneself.
  • FIG. 1 is a perspective view of a safety garment in a first embodiment.
  • Fig. 2 is an enlarged exploded partial view of a hemmed edge of the embodiment of Fig. 1.
  • FIG. 3 is a perspective view of a safety garment in a second embodiment of the disclosed technology.
  • Fig. 4 is a perspective view of a safety garment in a third embodiment of the disclosed technology.
  • FIG. 5 is a perspective view of a safety garment in a fourth embodiment of the disclosed technology.
  • Fig. 6 shows a protective garment according to a fifth embodiment of the disclosed technology.
  • Fig. 7 shows a protective garment according to a sixth embodiment of the disclosed technology.
  • Fig. 8 shows a closure mechanism used in the fifth embodiment.
  • Fig. 9 shows a protective garment according to a seventh embodiment of the disclosed technology.
  • Fig. 10 shows an alternative design for the hood and upper body portions of the garment of Fig. 8.
  • Fig. 11 shows another alternative design for the hood and upper body portions of the garment of Fig. 8.
  • invention within this document is a reference to an embodiment of a family of inventions, with no single embodiment including features that are necessarily included in all embodiments, unless otherwise stated. Furthermore, although there may be references to “advantages” provided by some embodiments, other embodiments may not include those same advantages, or may include different advantages. Any advantages described herein are not to be construed as limiting to any of the claims.
  • Figs. 1 and 2 illustrate a first embodiment of the disclosed technology, a reduced particulate shedding disposable nonwoven safety garment 10.
  • safety garment 10 is formed as a smock.
  • Safety garment 10 is preferably made from spunbond/melt blown/melt blown/spunbond (SMMS) material, spunbond/melt blown/spunbond (SMS) material, or the like, and includes double- folded and hemmed edges 12.
  • the edges 12 are folded such that all cut edges of the non-woven material are double-folded under so as not to be exposed. Non-exposure of the edges 12 thus greatly reduces the potential for generation of shed particles where the material was cut.
  • the seams 16 are stitched with an optimization of the number of stitches per inch (SPI), increased to 10-12 SPI over the standard 6-8 SPI. Stitch densities of 10-12 SPI have been found to be better than the lower range, as densities greater than 12 SPI weaken the non-woven material via excessive perforation and those less than 10 SPI provide a looser and weaker hem, such that particulate shedding is not minimized.
  • SPI number of stitches per inch
  • Fig. 3 illustrates a second embodiment of the present invention, a jumpsuit 14 made from spunbond/melt blown/melt blown/spunbond (SMMS) material, spunbond/melt blown/spunbond (SMS) material, or the like.
  • the jumpsuit 14 includes twice-folded and hemmed edges 12. As in the first embodiment, the edges 12 are folded such that all cut edges of the non- woven material are double- folded under so as not to be exposed.
  • the seams 16 in this embodiment are stitched with an increased stitch density of 10-12 SPI over the standard 6-8 SPI. Seams are also bound with additional welting or other integrative material to reinforce the seams against contamination.
  • the garment also includes foot coverings 18 that are preferably stitched to the garment but may alternately be individually formed and attached, such as by an elastic band stitched into the hem at the foot opening.
  • the garment 14 further includes an excess of material in the armpit 20 and groin/seat area 22, to minimize the risk of accidental tearing that might generate additional particulate matter that enters into the environment, and might expose the wearer to environmental hazards.
  • the garments 10 and 14 are often made by cutting one or more sheets of nonwoven material into a desired safety garment pattern.
  • Simple patterns e.g., shoe coverings
  • more complex patterns e.g., smocks, jumpsuits, and the like
  • the sheet(s) is/are then stitched together to define a garment 10.
  • the edges of the garment 10 are then hemmed. All cut edges are twice folded and hemmed under to prevent exposure of any cut edges that could increase the likelihood of particulate shedding. All stitching in these illustrative embodiments is characterized by a stitch density in the range of 10 to 12 stitches per inch.
  • Fig. 4 illustrates a third embodiment garment 24.
  • the garment 24 of Fig. 4 is similar to that described in FIG. 1, but with the addition of loops 30 affixed to the sleeve 32 portion of the garment 24, to engage a wearer's hands so as to keep the garment 24 positioned about the wearer's body.
  • the safety garment 24 is formed as a smock and is preferably made from spunbond/melt blown/melt blown/spunbond (SMMS) material, spunbond/melt blown/spunbond (SMS) material, or the like.
  • the garment 10 includes double- folded and hemmed edges 12.
  • edges 12 are folded such that all cut edges of the non- woven material are double-folded under so as to not be exposed. Non-exposure of the edges 12 thus greatly reduces the potential for generation of shed particles where the material was cut.
  • the loops 30 are likewise folded over and stitched such that there are no exposed cut edges.
  • the seams 16 are stitched with an optimization of the number of stitches per inch (SPI), increased to 10-12 SPI over the standard 6-8 SPI.
  • Fig. 5 illustrates a fourth embodiment, a jumpsuit 34 similar to that of Fig. 3 with the addition of loops 30 extending from the sleeve portion 32 of the garment 34 to engage the hands of a wearer (similar to the embodiment of Fig. 4).
  • the jumpsuit 34 is likewise preferably made from spunbond/melt blown/melt blown/spunbond (SMMS) material, spunbond/melt blown/spunbond (SMS) material, or the like.
  • the jumpsuit 34 includes twice- folded and hemmed edges 12. As in the first embodiment, the edges 12 are folded such that all cut edges of the non-woven material are double-folded under so as to not be exposed.
  • the loops 30 are likewise formed of the SMMS, SMS or the like and folded over and stitched such that the cut edges are not exposed.
  • the seams 16 are stitched with 10-12 SPI.
  • the garment also includes foot coverings 18 that are preferably stitched to the garment, but may alternately be individually formed and attached, such as by an elastic band stitched into the hem at the foot opening.
  • the garment 12 further includes an excess of material in the armpit 20 and groin/seat area 22, to minimize the risk of accidental tearing that might generate additional particulate matter into the environment as well as expose the wearer to environmental hazards.
  • each loop 30 is preferably formed from an elongated piece of cut nonwoven fabric defining a pair of generally parallel cut edges 12, and wherein the cut edges 12 are folded under and hemmed into place such that the cut edges 12 are not exposed.
  • Fig. 6 illustrates a protective garment 110 for use with a radiation monitoring device according to one embodiment of the disclosed technology.
  • the garment 110 is a jumpsuit or coverall-type garment having a hood portion 125 and a body portion 1 15.
  • This particular embodiment also includes separate boots 120, although other embodiments include separable or integrated foot coverings. Still other embodiments include separate, separable or integrated hand coverings. Yet other embodiments include separate, separable, or integrated hoods.
  • the arm openings 155 and the leg openings 156 in this particular embodiment are hemmed so as to reduce shredding of the garment material.
  • the edges at arm openings 155 and the leg openings 156 are double-folded and hemmed such that all cut edges are double-folded under so as to not be exposed. Non-exposure of the edges greatly reduces the potential for generation of shed particles where the material was cut.
  • the arm openings 155 and/or leg openings 56 further include elastic bands so as to ensure a tight fit.
  • closure means 150 includes a zipper 152.
  • closure means 150 includes snaps, buttons, hook-and-loop closure materials such as Velcro®, adhesive strips, or any other suitable closure means.
  • closure means 150 further includes a cover flap 195 capable of being folded over once opening 146 is closed using zipper 152. Cover flap 195 prevents material from entering garment 110 through zipper 152. Flap 195 is releasably held in the closed position by a securing strip 190, which may comprise hook-and-loop closure materials such as Velcro®, adhesive strips, or any other suitable securing means.
  • Garment 1 10 can be made from a non-woven material such as polypropylene, polyethylene, polyester materials, and the like, including combinations of two or more non- woven materials. Such materials may be manufactured using spunbond/melt blown/melt blown/spunbond (SMMS) techniques, spunbond/melt blown/spunbond (SMS) techniques, or other suitable techniques for manufacturing non-woven garments, and may include two or more layers of material and/or multiple layers of different materials, as desired.
  • SMMS spunbond/melt blown/melt blown/spunbond
  • SMS spunbond/melt blown/spunbond
  • the seams 116 located at various points about the garment 110 are optionally double-folded under so as not to be exposed.
  • seams 116 are also stitched with an optimized number of stitches per inch (SPI) increased to 10-12 SPI over 6-8 SPI, which is the industry standard.
  • SPI stitches per inch
  • a stitch density of 10-12 SPI has been found to be optimal, as more than 12 SPI weakens the non- woven material via excessive perforation and less than 10 SPI provides a looser and weaker hem, such that particulate shedding is not minimized.
  • seams 16 are formed using some other method such as sonic welding or binding with welting or other materials.
  • garment 1 10 further includes at least one attachment feature 130 for a dosimeter or other measurement, communication, or detection device.
  • garment 110 includes two attachment features 130 located near the garment shoulders on its front side. Other embodiments include a greater or lesser number of attachment features positioned at other locations about the garment, such as the arms, wrists, or waist area, as desired.
  • Attachment features 130 are shown as loops or straps affixed to garment 1 10 using box-type stitches.
  • attachment features 130 have a different configuration such as a sleeve, pouch, pocket, or the like, and are attached using a different type of stitching or a different attachment means such as adhesives, snaps, ties, and the like.
  • garment 110 includes further monitoring and/or communication devices in addition to dosimeters, such as body temperature monitoring devices, radios, pulse rate monitors, and the like.
  • garment 1 10 is constructed such that one or more closures (zippers, adhesives, etc.) are designed to open, rip, or tear when a force above a predetermined threshold is applied.
  • closures zippers, adhesives, etc.
  • Such "tear-open" garments are designed so as to allow for easy removal of a garment when it is no longer needed. Tear-open garments allow workers to quickly, safely, and easily remove a garment at the end of a shift, for example.
  • Attachment features 130 are optionally positioned so as to allow a wearer to grasp one or more of them and strong enough such that pulling on the attachment features 130 causes the tear-open closures to at least begin to open, thereby allowing the worker to quickly, safely, and easily remove the garment 1 10.
  • a garment 1 10 according to another embodiment of the disclosed technology will open at the closure means 150 when sufficient force is applied by the wearer to the attachment features 130, thereby allowing the wearer to remove the garment 1 10.
  • Portions of garment 110 likely to experience wear such as the knees and elbows may include reinforced portions 140, 145 to preclude seepage or bleed-through of contamination in the event the wearer leans or kneels in contaminated environments.
  • Reinforced portions 140, 145 may be made from the same material as garment 110 or from a different, stronger material.
  • garment 110 may be made from two or more layer of material.
  • Reinforced portions 140, 145 may be attached to the interior or exterior surface of garment 110 and may be attached using adhesives, stitching, or any other suitable attachment method.
  • Garment 1 10 may also include one or more pockets 135 located about the garment as desired.
  • FIG. 7 shows an alternative embodiment of a garment 160.
  • Garment 160 is a smock or apron having two sleeves 175 and an open bottom portion 176 that extends down the wearer's torso.
  • Garment 160 is closed using a closure means 165 (shown in this particular example as snaps).
  • closure means 165 may take the form of a zipper, buttons, adhesive strips, or any other suitable closure means.
  • Garment 160 further includes two pockets 180 located near bottom portion 176, although other embodiments may include more or fewer pockets located at different points about garment 160.
  • garment 160 further includes at least one attachment feature 170.
  • garment 160 includes two attachment features 170 located near the garment shoulders and one attachment feature 170 located on a sleeve. Other embodiments include a greater or lesser number of attachment features positioned at other locations on the garment such as the arms, wrists, or waist area as desired.
  • Attachment features 170 are shown as loops or straps affixed to garment 160 using box-type stitches. In other examples, attachment features 170 have a different configuration such as a sleeve, pouch, pocket, or the like, and are attached using a different type of stitching or a different attachment means such as adhesives, snaps, ties, and the like.
  • garment 160 includes further monitoring and/or communication devices in addition to dosimeters such as body temperature monitoring devices, radios, pulse rate monitors, and the like.
  • garment 200 generally has a hood that closes snugly around a full face respirator or air mask, thereby reducing the necessity for additional tape or material for covering the neck, and reducing the risk of breach of the integrity of the seal around the neck area from external radiological, environmental or other contaminants.
  • Garment 200 comprises an improved hood and closure system.
  • hood 210 is either made of contiguous nonwoven fabric with body 220 or stitched to body 220 from one or more cut panels of the same or different nonwoven fabrics. (Other assembly techniques will occur to those skilled in the art.)
  • Hood 210 and body 220 include an opening at the front of the suit 200 that is shown closed by zipper 230 or other closure device.
  • zipper 230 is covered by flap 240 over all or part of its length.
  • the loose edge 245 of flap 240 in some embodiments is secured to body 220 and hood 210 by a two-part closure device 247, which might be one-time-closable, reopen-able, and/or repositionable closure device.
  • two-part closure device 247 is adhesive-based, such as a peel-and-stick adhesive strip, where adhesive is on either the flap 240 or the body 220/hood 210, and the other (the body 220/hood 210 or the flap 240, respectively) includes a landing zone to which the adhesive adheres well.
  • two-part closure device 247 is a hook-and-loop closure, with a region of hook material on the flap 240 and a region of loop material on body 220/hood 210.
  • Other alternative two-part closure devices include buttons, slide closures, snaps, adhesive tape strips, and the like.
  • the wearer of suit 200 typically dons a respirator or air mask, then suit 200. After she puts her legs and arms in the legs 260 and arms 270 of suit 200, she puts the hood 210 over her head and closes zipper 230 up to edge 213 of face opening 215. She closes flap 240, securing flap 240 to the hood 210 and body 220 using two-part closure device 247.
  • the extra fabric around the neck area and under the chin relative to other embodiments and suits, in combination with elastic embedded in the hood edge 213, allows the edge 213 of the hood 210 to fully surround the perimeter of the respirator without the need to seal the edge 213 to the respirator by mechanical or adhesive means to produce an occlusive seal.
  • edge 213 In other embodiments, tape or other means are used to secure edge 213 to the mask or respirator. In some embodiments, there is elastic around edge 213 that has a stretched (vertical), or open, diameter and a contracted, or closed, diameter that fits around a face mask or respirator. In some embodiments, the open diameter of face opening 215 is less than about 15 inches. In preferred embodiments, the open diameter is less than about 10 inches, while in more preferred embodiments, the closed diameter is less than about 7 inches.
  • the wearer opens at least the top of two-part closure device 247 and pulls doffing loops 250. In some embodiments, this begins to open zipper 230, and the wearer opens it the rest of the way, while in other embodiments zipper 230 is manually opened without the assistance of doffing loops 250. In some embodiments, the wearer pulls on a doffing loop 275 to remove her arm from each sleeve, including pulling her hand through the elastic band 273 at each wrist. The wearer preferably removes all of garment 200 using the "inside-out" method, containing all "outside" surfaces of the garment 200 that had been exposed to actual or potential contamination within the inside-out garment 200 and disposing of it appropriately.
  • the neck flap is extended and includes an extra closure device, while the hood bears additional doffing loops as illustrated in Fig. 10 as garment 300.
  • Garment 300 includes zipper 330, flap 340, two-part closure strip 347 that holds loose edge 345 close to the body, and doffing loops 350 on either side of the chest near the shoulders, all as discussed in corresponding terms above.
  • Garment 300 also includes an extra portion 380 of flap 340 adjacent to or near the bottom of face opening 315 along hood edge 313.
  • extra portion 380 On the body side of extra portion 380 is a patch of hook fabric 385 that mates with target zone 390, which is a patch of loop fabric that holds extra portion 380 in a closed position, but allows the extra portion 380 of flap 340 to be reopened when desired.
  • target zone 390 is a patch of loop fabric that holds extra portion 380 in a closed position, but allows the extra portion 380 of flap 340 to be reopened when desired.
  • different two-part closure devices are used with one part on the back of extra portion 380 in the other on the front portion of the bottom of hood 310. Doffing loops 355 on either side of hood 310 give the user additional grasping points for removing the hood 310 and opening the top of zipper 330 while keeping (potentially) contaminated gloves away from the exposed neck.
  • flap 480 has a grasping tab 487 that extends beyond two-part closure device portion 485 to provide an unattached point at which the wearer can grasp the flap 480 and pull it open to begin doffing the garment 400.
  • grasping tab 487 takes the form of a strap, cord, or "tail" of any of a variety of shapes and materials, as will occur to those skilled in the art in view of the present disclosure.
  • closure device portion 485 mates with landing area 490, as discussed above in relation to garment 300 and Fig. 9.
  • landing area 490 is vertically wide enough and extends far enough around edge 413 of face opening 415 to make face opening 415 adjustable for different-sized masks, respirators, and other equipment.
  • the adjustment of this sizing is facilitated in this embodiment by the repositionable character of two-part closure device 485/490.
  • each illustrated embodiment can be mixed and matched, tweaked and adapted as needed or desired.
  • Particular embodiments may or may not include, for example, features corresponding to double-folded and hemmed edges or bound seam 12; stitch density of 10-12 SPI; hand-engaging loops 30; integrated hand or foot coverings; reinforced elbows and knees; attachment features 130; tear-away seams; zipper 230; doffing loops 250, 275, or 355; two-part closure devices 247, 385/390, or 485/490; limited or broad landing areas 390 and 490; elastic cuffs 263, 273; and grasping tab 487.
  • the flap that covers the neck may be short as illustrated on garment 400, or may be long as illustrated in garment 200.
  • One embodiment of the present disclosure includes a nonwoven safety garment for protecting against hazards, comprising a plurality of doffing loops positioned and attached to the outside of the garment with sufficient strength that a wearer can pull on one or more of the doffing loops to doff at least a portion of the garment.
  • Another embodiment of the present disclosure includes a method of making a safety garment for protecting against hazards, comprising attaching to the garment a plurality of doffing loops, each attached to the outside of the garment with sufficient strength that a wearer can pull on one or more of the doffing loops to doff at least a portion of the garment.
  • a further embodiment of the present disclosure includes a garment for protecting against hazards, comprising a hood of nonwoven material bearing a first portion of a closure device, and a neck flap, attached to the hood, and comprising a second portion of the closure device, wherein, when the first portion and second portion of the closure device are in contact, the hood and neck flap define an opening around the face of the wearer.
  • the hazards include: radiological, light splash, chemical, biological or foreign matter hazards; hazards to the wearer from the environment; and hazards to the environment from the wearer.
  • One or more pieces of material collectively having a plurality of edges, at least one seam connecting at least two of the plurality of edges, together defining a garment that has an inside and an outside and covers substantially all of the wearer.
  • a closure that openably closes at least one seam, and wherein the closure at least partially opens when a separating force above a predetermined threshold is applied in a particular direction, and at least one of the doffing loops is positioned and attached on the garment to transmit force above the predetermined threshold to the closure in the particular direction.
  • a hood having an edge that defines a face opening, a neck flap attached to a first side of the face opening, the neck flap bearing one part of a two-part attachment device, and on a second side of the face opening, opposite the first side, a second part of the attachment device, wherein, when the first part and the second part of the attachment device are in contact, the neck flap defines the bottom of the face opening.
  • a hood having one or more doffing loops, each positioned and attached to the outside of the hood so that a wearer can pull at least one of them to doff the hood.
  • a neck flap having one or more removal features, each positioned and attached to the outside of the neck flap so that, when the attachment device is in a closed position, a wearer can pull at least one of the removal features to move the attachment device to an open position.
  • a plurality of doffing loops of fabric sewn onto the outside of the garment.
  • a hood that includes: an edge that defines a face opening, a neck flap on a first side of the face opening, the neck flap bearing one part of a two-part attachment device, and on a second side of the face opening, opposite the first side, a second part of the attachment device, wherein, when the two-part attachment device is in a closed position, the neck flap defines the bottom of the face opening.
  • a hood having one or more doffing loops, each positioned and attached to the outside of the hood so that a wearer can doff the hood by pulling on at least one of them.
  • a neck flap having one or more doffing features, each positioned and attached to the outside of the neck flap so that, when the attachment device is in the closed position, a wearer can pull at least one doffing feature to move the attachment device to an open position.
  • a garment suit body connected to a hood, the suit body covering the torso, arms, and legs of the wearer.
  • a hood and a suit body that, in combination, cover substantially all of the wearer except the face.
  • a hood and suit body that, in combination, cover substantially all of the wearer except the face, hands, and feet.

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  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Professional, Industrial, Or Sporting Protective Garments (AREA)

Abstract

Nonwoven safety garments are described. Features of the stitching of some embodiments limit the number of particulates emitted from seams between cut edges. Attachments features may be included on the garments to enable secure, external attachment of measuring equipment. Doffing features, such as loops, are provided to help the wearer safely remove the garment, either by helping her pull off part or all of the garment or by starting to separate closure devices. In some embodiments, a repositionable closure on a neck flap covers the neck up to the bottom of a face mask or respirator, and a grasping tab helps the wearer safely open the repositionable closure and the neck flap.

Description

DISPOSABLE SAFETY GARMENT
REFERENCE TO RELATED APPLICATIONS
[0001] The present application claims priority to U.S. Patent App. No. 13/243,282, filed September 23, 201 1, which is a continuation-in-part of U.S. Patent App. No. 12/192,097, filed on August 14, 2008, which claims the benefit of U.S. Provisional App. No. 60/955,718, filed August 14, 2007, and U.S. Patent App. No. 13/243,282 is also a continuation-in-part of U.S. App. No. 1 1/428,728, filed July 5, 2006, which was a continuation-in-part of U.S. App. No. 10/798,646, filed March 1 1, 2004, the entireties of all aforementioned applications being hereby incorporated herein by reference. Any disclaimer that may have occurred during the prosecution of the above-referenced application(s) is hereby expressly rescinded.
TECHNICAL FIELD
[0002] The present invention relates generally to the field of safety apparel, and more specifically to safety garments for use in various environments, including for example environments containing actual or potential radiological, biological, or light-splash hazards, the apparel having, in various embodiments, reduced particulate shedding properties, attachment facilities, reinforced points of wear or contact contamination risk, and ease-of- safe-removal characteristics.
BACKGROUND
[0003] Safety garments, such as disposable smocks, jumpsuits, gloves, shoe coverings, and hair coverings, are required apparel for the performance of many jobs. Some of the jobs requiring safety garments are performed in clean room environments, wherein the introduction of foreign matter must be minimized. For example, technicians in certain sensitive medical fields dealing with infectious matter, aerospace researchers assembling interplanetary probes, and material scientists developing and manufacturing ultra-pure materials all wear safety garments in clean room environments. The safety garments in some situations perform the dual function of protecting the wearer from the potentially hazardous materials he is working with as well as preventing unwanted matter from the wearer's person from contaminating his work product. In other situations, safety garments protect the worker from exposure to dangerous materials, such as radioactive, chemical, and biological hazards.
[0004] Safety garments for use in clean room environments are typically made from nonwoven disposable materials, such as from sheets of spunbond/melt blown/melt blown/spunbond (SMMS) material and the like. Such sheets of material are cut into patterns and stitched together to form desired safety apparel. Typically, as these garments are intended to be disposable and the focus is on their functionality and not aesthetic appeal, little attention is paid to the hemming and stitching. The "as cut" edges are thus exposed. However, in clean room environments where contaminant levels in the parts per million or even parts per billion would be too high, such exposed cut edges present genuine sources of potential particulate contamination.
[0005] Moreover, as these garments are intended to be disposable, little effort is made to provide durable stitching. The prevalent attitude is that a garment intended to be worn for just a few hours does not require superior stitching. However, in a clean room situation or a hazardous environment such as asbestos remediation or nuclear demolition and
decontamination, seam separation is not only a potential source of particulate evolution in and of itself, but also produces a pathway from the exterior to the interior of the garment through which potentially hazardous material may flow.
[0006] Many workplace environments from industrial settings to hospitals hold the potential to expose workers to various types of radiation. One problem faced by workers in such environments is how to safely perform tasks while monitoring their exposure to potentially harmful radiation. Often such protective measures include the use of personal radiation measuring devices referred to as "dosimeters" along with protective garments.
[0007] Traditionally, personal dosimeters have been attached to a worker's protective garments using tape or some other improvised means. Under normal working conditions, such informal attachment methods often lead to the detachment and potential loss or damage to the dosimeter device. Additionally, such protective garments are often bulky and difficult to remove safely when they are no longer needed.
[0008] In addition, while most protective apparel is used with full-faced respirators to safeguard against respiratory particulate or chemical vapor inhalation in environments where minor skin contamination is not a major health issue, but presents an inconvenience (e.g., spray painting), radiological workers must maintain a contamination-free environment inside the protective "envelope" of their protective clothing and guard against contamination while doffing the protective clothing after the work in a contaminated zone is completed. Hence, they cannot overlook any types of gaps or openings to the suit.
[0009] Heretofore the solution to bridging the gap typically formed by the closed zipper and hood underneath the chin and respirator has been to apply layers of duct, vinyl, masking or other tapes over the gap and surrounding the respirator mask to ensure a tight seal. This requires a safety professional to conduct audits of personnel entering contamination areas to ensure adequate application of the tape and correct positioning. It also requires skillful and careful removal of the contaminated tape around the bare neck upon exiting the contaminated work area while the personnel are still wearing potentially contaminated protective gloves, and risks exposing the worker's neck to that cross-contamination, creating a Personal Contamination Event (PCE) that may risk the worker's health and have to be reported to a regulatory agency.
[0010] Traditional designs for this level of protective apparel account for a large portion of accidental self-contamination or PCEs each year. Even if a front zipper is closed to the end of its travel path, and the hood is applied over the head and around the face, many of those designs leave a gap in the neck area below the chin. Often, tape is wrapped around the respirator or other face mask to cover that gap. When the person is wearing a respirator, this gap can easily allow contaminants against the skin, which in radiological or biological environments is considered a recordable accident by the Occupational Safety & Health Administration (OSHA). Safe removal of the apparel is often challenging, sometimes requiring a partner or observer and/or a mirror to help the wearer find the end of the tape to begin the sequence of doffing the hood and respirator, running the risk of self-contamination.
[0011] There thus remains a need for an improved safety garment that is more durable and less prone to particulate shedding. There is also a need for protective garments to which personal dosimeter devices and other monitoring equipment can be effectively attached, as well as a garment that can be removed quickly, safely, and easily, and withstands high-wear regions such as elbows and knees. There is a further need for garments that protect the wearer from radiological, environmental, and other contaminants, both during exposure and during doffing of the garment.
[0012] Certain features of the present disclosure address these and other needs and provide other important advantages.
SUMMARY
[0013] One aspect of the present disclosure relates to a safety garment. Some embodiments include at least one sheet of nonwoven fabric having at least one cut edge, a plurality of stitches formed in the sheet(s) of nonwoven fabric to define a garment; and hemming formed at cut edges. The nonwoven fabric is preferably formed from
spunbond/melt blown material. The stitching is characterized by an optimized stitch density of between ten and twelve stitches per inch. The garment includes at least one attachment feature for holding or attaching one or more dosimeters to the garment. These may be positioned to allow the wearer to grasp them and tear open certain seams, partially or completely open a zipper, or otherwise remove the garment. In various embodiments, the garment also includes an improved neck closure that simplifies donning of the garment and aids the wearer's effort to doff the suit while avoiding self-contamination events. Some embodiments have reinforced knees and elbows for additional protection against contact with hazardous materials.
[0014] One object of the present invention is to provide an improved safety garment. An object of some embodiments is to facilitate doffing of the garment with a reduced risk of contaminating oneself. Related objects and advantages of the present invention will be apparent from the following description.
[0015] This summary is provided to introduce a selection of the concepts that are described in further detail in the detailed description and drawings contained herein. This summary is not intended to identify any primary or essential features of the claimed subject matter. Some or all of the described features may be present in the corresponding independent or dependent claims, but should not be construed to be a limitation unless expressly recited in a particular claim. Each embodiment described herein is not necessarily intended to address every object described herein, and each embodiment does not necessarily include each feature described. Other forms, embodiments, objects, advantages, benefits, features, and aspects of the present disclosure will become apparent to one of skill in the art from the detailed description and drawings contained herein. Moreover, the various apparatuses and methods described in this summary section, as well as elsewhere in this application, can be expressed as a large number of different combinations and
subcombinations. All such useful, novel, and inventive combinations and subcombinations are contemplated herein, it being recognized that the explicit expression of each of these combinations is unnecessary. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Fig. 1 is a perspective view of a safety garment in a first embodiment.
[0017] Fig. 2 is an enlarged exploded partial view of a hemmed edge of the embodiment of Fig. 1.
[0018] Fig. 3 is a perspective view of a safety garment in a second embodiment of the disclosed technology.
[0019] Fig. 4 is a perspective view of a safety garment in a third embodiment of the disclosed technology.
[0020] Fig. 5 is a perspective view of a safety garment in a fourth embodiment of the disclosed technology.
[0021] Fig. 6 shows a protective garment according to a fifth embodiment of the disclosed technology.
[0022] Fig. 7 shows a protective garment according to a sixth embodiment of the disclosed technology.
[0023] Fig. 8 shows a closure mechanism used in the fifth embodiment.
[0024] Fig. 9 shows a protective garment according to a seventh embodiment of the disclosed technology.
[0025] Fig. 10 shows an alternative design for the hood and upper body portions of the garment of Fig. 8.
[0026] Fig. 11 shows another alternative design for the hood and upper body portions of the garment of Fig. 8.
DESCRIPTION
[0027] For the purposes of promoting an understanding of the principles of the disclosure, reference will now be made to one or more embodiments illustrated in the drawings and specific language will be used to describe the same. It will nevertheless be understood that no limitation of the scope of the disclosure is thereby intended; any alterations and further modifications of the described or illustrated embodiments, and any further applications of the principles of the disclosure as illustrated herein are contemplated as would normally occur to one skilled in the art to which the disclosure relates. At least one embodiment of the disclosure is shown in great detail, although it will be apparent to those skilled in the relevant art that some features or some combinations of features may not be shown for the sake of clarity.
[0028] Any reference to "invention" within this document is a reference to an embodiment of a family of inventions, with no single embodiment including features that are necessarily included in all embodiments, unless otherwise stated. Furthermore, although there may be references to "advantages" provided by some embodiments, other embodiments may not include those same advantages, or may include different advantages. Any advantages described herein are not to be construed as limiting to any of the claims.
[0029] Discussions pertaining to specific compositions of matter, if present, are presented as examples only and do not limit the applicability of other compositions of matter, especially other compositions of matter with similar properties, unless otherwise indicated.
[0030] Figs. 1 and 2 illustrate a first embodiment of the disclosed technology, a reduced particulate shedding disposable nonwoven safety garment 10. In this embodiment, safety garment 10 is formed as a smock. Safety garment 10 is preferably made from spunbond/melt blown/melt blown/spunbond (SMMS) material, spunbond/melt blown/spunbond (SMS) material, or the like, and includes double- folded and hemmed edges 12. The edges 12 are folded such that all cut edges of the non-woven material are double-folded under so as not to be exposed. Non-exposure of the edges 12 thus greatly reduces the potential for generation of shed particles where the material was cut. The seams 16 are stitched with an optimization of the number of stitches per inch (SPI), increased to 10-12 SPI over the standard 6-8 SPI. Stitch densities of 10-12 SPI have been found to be better than the lower range, as densities greater than 12 SPI weaken the non-woven material via excessive perforation and those less than 10 SPI provide a looser and weaker hem, such that particulate shedding is not minimized.
[0031] Fig. 3 illustrates a second embodiment of the present invention, a jumpsuit 14 made from spunbond/melt blown/melt blown/spunbond (SMMS) material, spunbond/melt blown/spunbond (SMS) material, or the like. The jumpsuit 14 includes twice-folded and hemmed edges 12. As in the first embodiment, the edges 12 are folded such that all cut edges of the non- woven material are double- folded under so as not to be exposed. The seams 16 in this embodiment are stitched with an increased stitch density of 10-12 SPI over the standard 6-8 SPI. Seams are also bound with additional welting or other integrative material to reinforce the seams against contamination. The garment also includes foot coverings 18 that are preferably stitched to the garment but may alternately be individually formed and attached, such as by an elastic band stitched into the hem at the foot opening. The garment 14 further includes an excess of material in the armpit 20 and groin/seat area 22, to minimize the risk of accidental tearing that might generate additional particulate matter that enters into the environment, and might expose the wearer to environmental hazards.
[0032] In practice, the garments 10 and 14 are often made by cutting one or more sheets of nonwoven material into a desired safety garment pattern. Simple patterns (e.g., shoe coverings) may require a single sheet; more complex patterns (e.g., smocks, jumpsuits, and the like) may require two or more sheets of varying size. The sheet(s) is/are then stitched together to define a garment 10. The edges of the garment 10 are then hemmed. All cut edges are twice folded and hemmed under to prevent exposure of any cut edges that could increase the likelihood of particulate shedding. All stitching in these illustrative embodiments is characterized by a stitch density in the range of 10 to 12 stitches per inch.
[0033] Fig. 4 illustrates a third embodiment garment 24. The garment 24 of Fig. 4 is similar to that described in FIG. 1, but with the addition of loops 30 affixed to the sleeve 32 portion of the garment 24, to engage a wearer's hands so as to keep the garment 24 positioned about the wearer's body. In this embodiment, as in the foregoing embodiment of Fig. 1, the safety garment 24 is formed as a smock and is preferably made from spunbond/melt blown/melt blown/spunbond (SMMS) material, spunbond/melt blown/spunbond (SMS) material, or the like. The garment 10 includes double- folded and hemmed edges 12. The edges 12 are folded such that all cut edges of the non- woven material are double-folded under so as to not be exposed. Non-exposure of the edges 12 thus greatly reduces the potential for generation of shed particles where the material was cut. The loops 30 are likewise folded over and stitched such that there are no exposed cut edges. The seams 16 are stitched with an optimization of the number of stitches per inch (SPI), increased to 10-12 SPI over the standard 6-8 SPI.
[0034] Fig. 5 illustrates a fourth embodiment, a jumpsuit 34 similar to that of Fig. 3 with the addition of loops 30 extending from the sleeve portion 32 of the garment 34 to engage the hands of a wearer (similar to the embodiment of Fig. 4). The jumpsuit 34 is likewise preferably made from spunbond/melt blown/melt blown/spunbond (SMMS) material, spunbond/melt blown/spunbond (SMS) material, or the like. The jumpsuit 34 includes twice- folded and hemmed edges 12. As in the first embodiment, the edges 12 are folded such that all cut edges of the non-woven material are double-folded under so as to not be exposed. The loops 30 are likewise formed of the SMMS, SMS or the like and folded over and stitched such that the cut edges are not exposed. The seams 16 are stitched with 10-12 SPI. The garment also includes foot coverings 18 that are preferably stitched to the garment, but may alternately be individually formed and attached, such as by an elastic band stitched into the hem at the foot opening. The garment 12 further includes an excess of material in the armpit 20 and groin/seat area 22, to minimize the risk of accidental tearing that might generate additional particulate matter into the environment as well as expose the wearer to environmental hazards.
[0035] The loops of the embodiments of Figs. 4 and 5 are preferably formed with no exposed cut edges 12. In particular, each loop 30 is preferably formed from an elongated piece of cut nonwoven fabric defining a pair of generally parallel cut edges 12, and wherein the cut edges 12 are folded under and hemmed into place such that the cut edges 12 are not exposed.
[0036] Fig. 6 illustrates a protective garment 110 for use with a radiation monitoring device according to one embodiment of the disclosed technology. In this particular embodiment, the garment 110 is a jumpsuit or coverall-type garment having a hood portion 125 and a body portion 1 15. This particular embodiment also includes separate boots 120, although other embodiments include separable or integrated foot coverings. Still other embodiments include separate, separable or integrated hand coverings. Yet other embodiments include separate, separable, or integrated hoods. The arm openings 155 and the leg openings 156 in this particular embodiment are hemmed so as to reduce shredding of the garment material. Optionally, the edges at arm openings 155 and the leg openings 156 are double-folded and hemmed such that all cut edges are double-folded under so as to not be exposed. Non-exposure of the edges greatly reduces the potential for generation of shed particles where the material was cut. In other embodiments, the arm openings 155 and/or leg openings 56 further include elastic bands so as to ensure a tight fit.
[0037] Garment 1 10 is accessible through opening 146, which is held closed using a closure means 150 shown in greater detail in Fig. 8. In this particular example, closure means 150 includes a zipper 152. In other examples, closure means 150 includes snaps, buttons, hook-and-loop closure materials such as Velcro®, adhesive strips, or any other suitable closure means. Additionally, closure means 150 further includes a cover flap 195 capable of being folded over once opening 146 is closed using zipper 152. Cover flap 195 prevents material from entering garment 110 through zipper 152. Flap 195 is releasably held in the closed position by a securing strip 190, which may comprise hook-and-loop closure materials such as Velcro®, adhesive strips, or any other suitable securing means.
[0038] Garment 1 10 can be made from a non-woven material such as polypropylene, polyethylene, polyester materials, and the like, including combinations of two or more non- woven materials. Such materials may be manufactured using spunbond/melt blown/melt blown/spunbond (SMMS) techniques, spunbond/melt blown/spunbond (SMS) techniques, or other suitable techniques for manufacturing non-woven garments, and may include two or more layers of material and/or multiple layers of different materials, as desired. The seams 116 located at various points about the garment 110 are optionally double-folded under so as not to be exposed. The seams 116 are also stitched with an optimized number of stitches per inch (SPI) increased to 10-12 SPI over 6-8 SPI, which is the industry standard. A stitch density of 10-12 SPI has been found to be optimal, as more than 12 SPI weakens the non- woven material via excessive perforation and less than 10 SPI provides a looser and weaker hem, such that particulate shedding is not minimized. Optionally, seams 16 are formed using some other method such as sonic welding or binding with welting or other materials.
[0039] Continuing with the embodiment shown in Fig. 6, garment 1 10 further includes at least one attachment feature 130 for a dosimeter or other measurement, communication, or detection device. In this particular example, garment 110 includes two attachment features 130 located near the garment shoulders on its front side. Other embodiments include a greater or lesser number of attachment features positioned at other locations about the garment, such as the arms, wrists, or waist area, as desired. Attachment features 130 are shown as loops or straps affixed to garment 1 10 using box-type stitches. In other examples, attachment features 130 have a different configuration such as a sleeve, pouch, pocket, or the like, and are attached using a different type of stitching or a different attachment means such as adhesives, snaps, ties, and the like. Optionally, garment 110 includes further monitoring and/or communication devices in addition to dosimeters, such as body temperature monitoring devices, radios, pulse rate monitors, and the like.
[0040] In one embodiment of the disclosed technology, garment 1 10 is constructed such that one or more closures (zippers, adhesives, etc.) are designed to open, rip, or tear when a force above a predetermined threshold is applied. Such "tear-open" garments are designed so as to allow for easy removal of a garment when it is no longer needed. Tear-open garments allow workers to quickly, safely, and easily remove a garment at the end of a shift, for example. Attachment features 130 are optionally positioned so as to allow a wearer to grasp one or more of them and strong enough such that pulling on the attachment features 130 causes the tear-open closures to at least begin to open, thereby allowing the worker to quickly, safely, and easily remove the garment 1 10. Alternatively, a garment 1 10 according to another embodiment of the disclosed technology will open at the closure means 150 when sufficient force is applied by the wearer to the attachment features 130, thereby allowing the wearer to remove the garment 1 10.
[0041] Portions of garment 110 likely to experience wear such as the knees and elbows may include reinforced portions 140, 145 to preclude seepage or bleed-through of contamination in the event the wearer leans or kneels in contaminated environments.
Reinforced portions 140, 145 may be made from the same material as garment 110 or from a different, stronger material. Optionally, garment 110 may be made from two or more layer of material. Reinforced portions 140, 145 may be attached to the interior or exterior surface of garment 110 and may be attached using adhesives, stitching, or any other suitable attachment method. Garment 1 10 may also include one or more pockets 135 located about the garment as desired.
[0042] Fig. 7 shows an alternative embodiment of a garment 160. Garment 160 is a smock or apron having two sleeves 175 and an open bottom portion 176 that extends down the wearer's torso. Garment 160 is closed using a closure means 165 (shown in this particular example as snaps). In other examples, closure means 165 may take the form of a zipper, buttons, adhesive strips, or any other suitable closure means. Garment 160 further includes two pockets 180 located near bottom portion 176, although other embodiments may include more or fewer pockets located at different points about garment 160.
[0043] Continuing with the embodiment shown in Fig. 7, garment 160 further includes at least one attachment feature 170. In this particular example, garment 160 includes two attachment features 170 located near the garment shoulders and one attachment feature 170 located on a sleeve. Other embodiments include a greater or lesser number of attachment features positioned at other locations on the garment such as the arms, wrists, or waist area as desired. Attachment features 170 are shown as loops or straps affixed to garment 160 using box-type stitches. In other examples, attachment features 170 have a different configuration such as a sleeve, pouch, pocket, or the like, and are attached using a different type of stitching or a different attachment means such as adhesives, snaps, ties, and the like. Optionally, garment 160 includes further monitoring and/or communication devices in addition to dosimeters such as body temperature monitoring devices, radios, pulse rate monitors, and the like.
[0044] Turning to the embodiment shown in Fig. 9, garment 200 generally has a hood that closes snugly around a full face respirator or air mask, thereby reducing the necessity for additional tape or material for covering the neck, and reducing the risk of breach of the integrity of the seal around the neck area from external radiological, environmental or other contaminants. Garment 200 comprises an improved hood and closure system. In this garment 200, hood 210 is either made of contiguous nonwoven fabric with body 220 or stitched to body 220 from one or more cut panels of the same or different nonwoven fabrics. (Other assembly techniques will occur to those skilled in the art.) Hood 210 and body 220 include an opening at the front of the suit 200 that is shown closed by zipper 230 or other closure device. In some embodiments, including for example the embodiment shown in Fig. 8, zipper 230 is covered by flap 240 over all or part of its length.
[0045] The loose edge 245 of flap 240 in some embodiments is secured to body 220 and hood 210 by a two-part closure device 247, which might be one-time-closable, reopen-able, and/or repositionable closure device. In some embodiments, two-part closure device 247 is adhesive-based, such as a peel-and-stick adhesive strip, where adhesive is on either the flap 240 or the body 220/hood 210, and the other (the body 220/hood 210 or the flap 240, respectively) includes a landing zone to which the adhesive adheres well. In other embodiments, two-part closure device 247 is a hook-and-loop closure, with a region of hook material on the flap 240 and a region of loop material on body 220/hood 210. Other alternative two-part closure devices include buttons, slide closures, snaps, adhesive tape strips, and the like.
[0046] In use, the wearer of suit 200 typically dons a respirator or air mask, then suit 200. After she puts her legs and arms in the legs 260 and arms 270 of suit 200, she puts the hood 210 over her head and closes zipper 230 up to edge 213 of face opening 215. She closes flap 240, securing flap 240 to the hood 210 and body 220 using two-part closure device 247. In the illustrated embodiment, the extra fabric around the neck area and under the chin relative to other embodiments and suits, in combination with elastic embedded in the hood edge 213, allows the edge 213 of the hood 210 to fully surround the perimeter of the respirator without the need to seal the edge 213 to the respirator by mechanical or adhesive means to produce an occlusive seal. In other embodiments, tape or other means are used to secure edge 213 to the mask or respirator. In some embodiments, there is elastic around edge 213 that has a stretched (vertical), or open, diameter and a contracted, or closed, diameter that fits around a face mask or respirator. In some embodiments, the open diameter of face opening 215 is less than about 15 inches. In preferred embodiments, the open diameter is less than about 10 inches, while in more preferred embodiments, the closed diameter is less than about 7 inches.
[0047] To remove garment 200, the wearer opens at least the top of two-part closure device 247 and pulls doffing loops 250. In some embodiments, this begins to open zipper 230, and the wearer opens it the rest of the way, while in other embodiments zipper 230 is manually opened without the assistance of doffing loops 250. In some embodiments, the wearer pulls on a doffing loop 275 to remove her arm from each sleeve, including pulling her hand through the elastic band 273 at each wrist. The wearer preferably removes all of garment 200 using the "inside-out" method, containing all "outside" surfaces of the garment 200 that had been exposed to actual or potential contamination within the inside-out garment 200 and disposing of it appropriately.
[0048] In yet another embodiment, the neck flap is extended and includes an extra closure device, while the hood bears additional doffing loops as illustrated in Fig. 10 as garment 300. Garment 300 includes zipper 330, flap 340, two-part closure strip 347 that holds loose edge 345 close to the body, and doffing loops 350 on either side of the chest near the shoulders, all as discussed in corresponding terms above. Garment 300 also includes an extra portion 380 of flap 340 adjacent to or near the bottom of face opening 315 along hood edge 313. On the body side of extra portion 380 is a patch of hook fabric 385 that mates with target zone 390, which is a patch of loop fabric that holds extra portion 380 in a closed position, but allows the extra portion 380 of flap 340 to be reopened when desired. In alternative embodiments, different two-part closure devices are used with one part on the back of extra portion 380 in the other on the front portion of the bottom of hood 310. Doffing loops 355 on either side of hood 310 give the user additional grasping points for removing the hood 310 and opening the top of zipper 330 while keeping (potentially) contaminated gloves away from the exposed neck.
[0049] In still another embodiment, shown in Fig. 1 1 as garment 400, flap 480 has a grasping tab 487 that extends beyond two-part closure device portion 485 to provide an unattached point at which the wearer can grasp the flap 480 and pull it open to begin doffing the garment 400. In alternative embodiments, grasping tab 487 takes the form of a strap, cord, or "tail" of any of a variety of shapes and materials, as will occur to those skilled in the art in view of the present disclosure. On garment 400, closure device portion 485 mates with landing area 490, as discussed above in relation to garment 300 and Fig. 9. On garment 400, however, landing area 490 is vertically wide enough and extends far enough around edge 413 of face opening 415 to make face opening 415 adjustable for different-sized masks, respirators, and other equipment. The adjustment of this sizing is facilitated in this embodiment by the repositionable character of two-part closure device 485/490.
[0050] It will be understood by those skilled in the art that the features of each illustrated embodiment can be mixed and matched, tweaked and adapted as needed or desired. Particular embodiments may or may not include, for example, features corresponding to double-folded and hemmed edges or bound seam 12; stitch density of 10-12 SPI; hand-engaging loops 30; integrated hand or foot coverings; reinforced elbows and knees; attachment features 130; tear-away seams; zipper 230; doffing loops 250, 275, or 355; two-part closure devices 247, 385/390, or 485/490; limited or broad landing areas 390 and 490; elastic cuffs 263, 273; and grasping tab 487. The flap that covers the neck may be short as illustrated on garment 400, or may be long as illustrated in garment 200.
[0051] Various aspects of different embodiments of the present disclosure are expressed in paragraphs XI, X2, and X3, as follows:
[0052] XI . One embodiment of the present disclosure includes a nonwoven safety garment for protecting against hazards, comprising a plurality of doffing loops positioned and attached to the outside of the garment with sufficient strength that a wearer can pull on one or more of the doffing loops to doff at least a portion of the garment.
[0053] X2. Another embodiment of the present disclosure includes a method of making a safety garment for protecting against hazards, comprising attaching to the garment a plurality of doffing loops, each attached to the outside of the garment with sufficient strength that a wearer can pull on one or more of the doffing loops to doff at least a portion of the garment.
[0054] X3. A further embodiment of the present disclosure includes a garment for protecting against hazards, comprising a hood of nonwoven material bearing a first portion of a closure device, and a neck flap, attached to the hood, and comprising a second portion of the closure device, wherein, when the first portion and second portion of the closure device are in contact, the hood and neck flap define an opening around the face of the wearer.
[0055] Yet other embodiments include the features described in any of the previous statements XI, X2 or X3, as combined with one or more of the following aspects:
[0056] Wherein the hazards include: radiological, light splash, chemical, biological or foreign matter hazards; hazards to the wearer from the environment; and hazards to the environment from the wearer. [0057] One or more pieces of material collectively having a plurality of edges, at least one seam connecting at least two of the plurality of edges, together defining a garment that has an inside and an outside and covers substantially all of the wearer.
[0058] Stitching at least one sheet of nonwoven material to define a garment that has an inside and an outside and covers substantially all of the wearer.
[0059] A plurality of doffing loops of fabric sewn onto the outside of garment.
[0060] A closure that openably closes at least one seam, and wherein the closure at least partially opens when a separating force above a predetermined threshold is applied in a particular direction, and at least one of the doffing loops is positioned and attached on the garment to transmit force above the predetermined threshold to the closure in the particular direction.
[0061] A hood having an edge that defines a face opening, a neck flap attached to a first side of the face opening, the neck flap bearing one part of a two-part attachment device, and on a second side of the face opening, opposite the first side, a second part of the attachment device, wherein, when the first part and the second part of the attachment device are in contact, the neck flap defines the bottom of the face opening.
[0062] A hood having one or more doffing loops, each positioned and attached to the outside of the hood so that a wearer can pull at least one of them to doff the hood.
[0063] A neck flap having one or more removal features, each positioned and attached to the outside of the neck flap so that, when the attachment device is in a closed position, a wearer can pull at least one of the removal features to move the attachment device to an open position.
[0064] Reinforced knees and elbows that retard or prevent passage of liquids through the garment at those points.
[0065] A plurality of doffing loops of fabric sewn onto the outside of the garment.
[0066] Attaching a reopenable closure to the garment at the stitching, and the closure opens at least partially when a separating force above a predetermined threshold is applied perpendicular to the direction of the stitching, and at least one doffing loop being positioned and attached on the garment to transmit an applied force above the predetermined threshold perpendicular to the stitching at the closure.
[0067] A hood that includes: an edge that defines a face opening, a neck flap on a first side of the face opening, the neck flap bearing one part of a two-part attachment device, and on a second side of the face opening, opposite the first side, a second part of the attachment device, wherein, when the two-part attachment device is in a closed position, the neck flap defines the bottom of the face opening.
[0068] A hood having one or more doffing loops, each positioned and attached to the outside of the hood so that a wearer can doff the hood by pulling on at least one of them.
[0069] A neck flap having one or more doffing features, each positioned and attached to the outside of the neck flap so that, when the attachment device is in the closed position, a wearer can pull at least one doffing feature to move the attachment device to an open position.
[0070] Reinforcing the knees and elbows of the garment to retard or prevent passage of liquids through the garment at those points.
[0071] A garment suit body, connected to a hood, the suit body covering the torso, arms, and legs of the wearer.
[0072] A hood and a suit body that, in combination, cover substantially all of the wearer except the face.
[0073] A hood and suit body that, in combination, cover substantially all of the wearer except the face, hands, and feet.
[0074] While the disclosed technology has been illustrated and described in detail in the drawings and foregoing description, the same is to be considered as illustrative and not restrictive in character. It is understood that the embodiments have been shown and described in the foregoing specification in satisfaction of the best mode and enablement requirements. The description of particular features in one embodiment does not imply that those particular features are necessarily limited to that one embodiment. It is also understood that one of ordinary skill in the art could readily make a near infinite number of insubstantial changes and modifications to the above-described embodiments, and that it would be impractical to attempt to describe all such variations in the present specification. Features of one embodiment may be used in combination with features of other embodiments as would be understood by one of ordinary skill in the art, whether or not explicitly described as such. Accordingly, it is understood that all changes and modifications that come within the spirit of the disclosed technology are desired to be protected.

Claims

What is claimed is:
1. A nonwoven safety garment for protecting against hazards, such as radiological, light splash, chemical, biological or foreign matter, comprising:
one or more pieces of material collectively having a plurality of edges;
at least one seam connecting at least two of the plurality of edges, together defining a garment that has an inside and an outside and covers substantially all of the wearer; and a plurality of doffing loops positioned and attached to the outside of the garment with sufficient strength that a wearer can pull on one or more of the doffing loops to doff at least a portion of the garment.
2. The garment of claim 1, wherein the plurality of doffing loops are loops of fabric sewn onto the outside of garment.
3. The garment of claim 1, further comprising a closure that openably closes at least one of the at least one seams, and wherein
the closure at least partially opens when a separating force above a predetermined threshold is applied in a particular direction, and
at least one of the doffing loops is positioned and attached on the garment to transmit force above the predetermined threshold to the closure in the particular direction.
4. The garment of claim 1, further comprising a hood that includes:
an edge that defines a face opening;
a neck flap attached to a first side of the face opening, the neck flap bearing one part of a two-part attachment device; and
on a second side of the face opening, opposite the first side, a second part of the attachment device;
wherein, when the first part and the second part of the attachment device are in contact, the neck flap defines the bottom of the face opening.
5. The garment of claim 4, wherein the hood further includes one or more doffing loops, each positioned and attached to the outside of the hood so that a wearer can pull at least one of them to doff the hood.
6. The garment of claim 4, wherein the neck flap further includes one or more removal features, each positioned and attached to the outside of the neck flap so that, when the attachment device is in a closed position, a wearer can pull at least one of the removal features to move the attachment device to an open position.
7. The garment of claim 1, further comprising reinforced knees and elbows that retard or prevent passage of liquids through the garment at those points.
8. A method of making a safety garment for protecting against hazards, such as radiological, light splash, chemical, biological or foreign matter, comprising the acts of: a) stitching at least one sheet of nonwoven material to define a garment that has an inside and an outside and covers substantially all of the wearer; and
b) attaching to the garment a plurality of doffing loops, each attached to the outside of the garment with sufficient strength that a wearer can pull on one or more of the doffing loops to doff at least a portion of the garment.
9. The method of claim 8, wherein the plurality of doffing loops are loops of fabric sewn onto the outside of the garment.
10. The method of claim 8, further comprising:
attaching a reopenable closure to the garment at the stitching, and the closure opens at least partially when a separating force above a predetermined threshold is applied perpendicular to the direction of the stitching, and
at least one of the doffing loops is positioned and attached on the garment to transmit an applied force above the predetermined threshold perpendicular to the stitching at the closure.
11. The method of claim 8, further comprising including in the garment a hood that includes:
an edge that defines a face opening;
a neck flap on a first side of the face opening, the neck flap bearing one part of a two-part attachment device; and
on a second side of the face opening, opposite the first side, a second part of the attachment device;
wherein, when the two-part attachment device is in a closed position, the neck flap defines the bottom of the face opening.
12. The method of claim 1 1, wherein the hood further includes one or more doffing loops, each positioned and attached to the outside of the hood so that a wearer can doff the hood by pulling on at least one of them.
13. The method of claim 1 1, wherein the neck flap further includes one or more doffing features, each positioned and attached to the outside of the neck flap so that, when the attachment device is in the closed position, a wearer can pull at least one doffing feature to move the attachment device to an open position.
14. The method of claim 8, further comprising reinforcing the knees and elbows of the garment to retard or prevent passage of liquids through the garment at those points.
15. A garment for protecting against hazards, such as radiological, light splash, chemical, biological or foreign matter, comprising:
a hood of nonwoven material bearing a first portion of a closure device; and
a neck flap, attached to the hood, and comprising a second portion of the closure device; wherein, when the first portion and second portion of the closure device are in contact, the hood and neck flap define an opening around the face of the wearer.
16. The garment of claim 15, further comprising a suit body, connected to the hood, that covers the torso, arms, and legs of the wearer.
17. The garment of claim 16, wherein the hood and suit body in combination cover substantially all of the wearer except the face.
18. The garment of claim 16, wherein the hood and suit body in combination cover substantially all of the wearer except the face, hands, and feet.
19. The garment of claim 16, further comprising reinforced knees and elbows that retard or prevent passage of liquids through the garment at those points.
EP12833194.9A 2011-09-23 2012-09-21 Disposable safety garment Active EP2757913B1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US13/243,282 US8621669B2 (en) 2004-03-11 2011-09-23 Disposable safety garment with improved doffing and neck closure
PCT/US2012/056627 WO2013044066A1 (en) 2011-09-23 2012-09-21 Disposable safety garment

Publications (3)

Publication Number Publication Date
EP2757913A1 true EP2757913A1 (en) 2014-07-30
EP2757913A4 EP2757913A4 (en) 2016-01-20
EP2757913B1 EP2757913B1 (en) 2021-01-13

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ID=47914906

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Application Number Title Priority Date Filing Date
EP12833194.9A Active EP2757913B1 (en) 2011-09-23 2012-09-21 Disposable safety garment

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EP (1) EP2757913B1 (en)
WO (1) WO2013044066A1 (en)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP6954117B2 (en) * 2016-03-30 2021-10-27 東レ株式会社 clothing

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4998296A (en) * 1989-11-28 1991-03-12 Stames Rebecca M Hypothermia protection suit collapsible into compact package for storage
US5815834A (en) * 1996-04-04 1998-10-06 Bronson; Armel Harness/combination vest
US20040006815A1 (en) * 2002-05-10 2004-01-15 Kappler Safety Group Contamination avoidance garment
US20090126088A1 (en) * 2007-08-14 2009-05-21 Yadav Sudhansu S Protective garment for use with radiation monitoring devices
US20050198726A1 (en) * 2004-03-15 2005-09-15 Yadav Sudhansu S. Disposable garment with reduced particulate shedding
US7699195B2 (en) * 2005-10-27 2010-04-20 Julius Zorn, Inc. Apparatus for donning and/or doffing a compression garment and related methods

Also Published As

Publication number Publication date
EP2757913B1 (en) 2021-01-13
WO2013044066A1 (en) 2013-03-28
EP2757913A4 (en) 2016-01-20

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