Thin high-cut seamless gloves
The thin coated support glove with a tungsten-core yarn and polymer coating addresses flexibility and adhesion issues, achieving high cut and abrasion resistance with reduced thickness and weight.
Patent Information
- Application Number
- JP2022505290
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2019-07-30
- Filing Date
- 2020-07-28
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2040-07-28
AI Technical Summary
Existing gloves with metallic fibers or yarns in knitted liners face issues of reduced flexibility and poor adhesion of polymer coatings, leading to reduced durability and comfort due to tight knitting or penetration, which affects cut and abrasion resistance.
A thin coated support glove with a knitted liner using tungsten-core covered yarns and a polymer coating, manufactured using a 21-gauge needle-knitted liner dipped in an aqueous polymer emulsion, achieving strong adhesion and integration with the yarns to enhance cut and abrasion resistance.
The solution provides gloves with improved cut resistance up to ANSI A7 and abrasion resistance of EN Level 4, maintaining flexibility and breathability while minimizing glove thickness and weight.
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Abstract
Description
[Technical Field]
[0001] FIELD OF THE DISCLOSURE Embodiments of the present disclosure relate generally to personal protective equipment, and more particularly to thin coated support gloves with improved abrasion and cut resistance, and methods of making the same. [Background technology]
[0002] Gloves are commonly used in many industries, such as construction, industry, and medicine, as well as at home, to protect users' hands from abrasions, impacts, and physical injuries. A supported glove is a glove that has a knitted liner that is at least partially coated with a coating, such as a polymer coating. Supported gloves combine durability with relative comfort.
[0003] Many of these gloves contain a coating of polymeric materials, such as synthetic or natural latex or other elastomers, including nitrile-butadiene rubber and polychloroprene. Some gloves have foamed polymer coatings to impart softness and other comfort-related properties. However, there is a continuing need for thin, flexible gloves that offer enhanced cut resistance, either alone or in combination with abrasion resistance, to minimize breakage during use, especially over extended periods of use, while maintaining softness and comfort, particularly when foamed coatings are included. Summary of the Invention [Problem to be solved by the invention]
[0004] Some manufactured gloves contain knitted liners containing metallic fibers or yarns. However, the inclusion of metallic fibers or yarns in knitted liners is problematic because it reduces the flexibility of the glove and reduces the adhesion resistance of coating materials applied to the knitted liner. Poor adhesion of the coating to the knitted liner reduces the overall durability of the glove, resulting in reduced cut and abrasion resistance. Achieving strong adhesion requires balancing the properties of the polymer coating with those of the knitted liner. The small diameter of fine yarns and the small needles used with them can result in knitting that is too tightly spaced, limiting the penetration of the polymer coating and resulting in poor adhesion. Conversely, if the space is too open, as can occur when knitting small diameter yarns with large needles, the polymer coating can completely penetrate the article, limiting flexibility and resulting in strike-through, which is uncomfortable for the user.
[0005] Thus, there is a continuing need for abrasion- and cut-resistant gloves formed with thin coated knitted liners, and methods for making such durable gloves. [Means for solving the problem]
[0006] Abrasion and cut resistant coatings and coated gloves, and methods for making abrasion and cut resistant foamed or non-foamed coatings and coated gloves, substantially as shown and / or described in connection with at least one of the drawings herein, are disclosed and more fully set forth in the claims. Various advantages and features of the present invention will be more fully understood from the following description and drawings.
[0007] Provided herein are methods and apparatus for a thin coated support glove. In some embodiments, the thin coated support glove includes a thin knitted liner including a plurality of finger components, a thumb component, a back component, and a palm component; and a thin polymer coating adhered to the thin knitted liner. The thin knitted liner includes a covering yarn of about 350 denier or less, the covering yarn including a tungsten core having a diameter of about 25-35 microns (e.g., about 28 to about 32 microns), a polyamide wrapping yarn disposed on the tungsten core, and a high performance polyethylene wrapping yarn disposed on the polyamide wrapping yarn; and a second yarn that is a commingled yarn of 115 denier or less.
[0008] In embodiments, the knit is a single knit. In embodiments, the smooth side of the knit faces the user's hand (inside). In embodiments, the single knit is jersey, French terry, sweatshirt fleece, board knit, etc. Generally, the various listings of glove properties do not pertain to the cuff area. For example, the knit in the can may be different. For example, if the majority of the glove is single knit, the cuff may be, for example, a double knit or a different style of knit.
[0009] In some embodiments, a method for manufacturing a thin-coated support glove is provided, the method comprising: placing a 21 to 28 gauge knitted liner (typically 21 to 23 gauge, such as 21 gauge (i.e., 21 needles per inch)) into a hand-shaped former; applying an aqueous coagulant solution to the 21 gauge knitted liner; dipping the 21 gauge knitted liner in a polymer emulsion of about 60 to about 100 parts per hundred (PHR) nitrile-butadiene (NBR) polymer blend, which forms a polymer coating on the knitted liner; and curing the polymer coating to form a thin-coated support glove, wherein the 21 gauge knitted liner includes a plurality of finger components, a thumb component, a back component, and a palm component, and the 21 gauge knitted liner comprises a covering yarn of about 350 denier or less, the covering yarn including a tungsten core having a diameter of about 25-35 microns, a polyamide wrapping yarn disposed on the tungsten core, and a high-performance polyethylene wrapping yarn disposed on the polyamide wrapping yarn. In embodiments, the aqueous coagulant solution comprises no more than 40% by weight of a weak acid.
[0010] In embodiments, the polymer emulsion is about 70 to about 100 parts, or about 80 to about 100 parts, or about 90 to about 100 parts, or about 100 parts NBR. The secondary polymer can be, for example, natural rubber, synthetic polyisoprene, styrene-butadiene, carboxylated or non-carboxylated acrylonitrile-butadiene, polychloroprene, polyacrylic, butyl rubber, or water-based polyurethane (polyester-based or polyether-based), or a combination thereof.
[0011] In some embodiments, a thin coated support glove includes a 21 gauge thin knitted liner including a plurality of finger components, a thumb component, a back component, and a palm component; and a thin polymer coating adhered to the 21 gauge thin knitted liner, wherein the 21 gauge thin knitted liner includes a covering yarn of about 350 denier or less including a tungsten core having a diameter of about 25-35 microns, a polyamide wrapping yarn disposed on the tungsten core, and a high performance polyethylene wrapping yarn disposed on the polyamide wrapping yarn; and a second yarn of 115 denier or less including nylon and spandex.
[0012] The foregoing summary is not intended to, and should not be expected to, describe each embodiment or every implementation of the present disclosure. Other and further embodiments within the scope of the present disclosure are described below. [Brief explanation of the drawings]
[0013] So that the above-mentioned features of the present invention may be understood in detail, a more particular description of the invention, briefly summarized above, may be had by reference to embodiments, some of which are illustrated in the accompanying drawings. However, the accompanying drawings depict only exemplary embodiments of the present invention, and therefore, these drawings should not be construed as limiting the scope of the present invention, since the present invention may embrace other equally effective embodiments. It should be understood that elements and features of one embodiment may be present in other embodiments without further recitation. Furthermore, it should be understood that, where possible, the same reference numerals have been used to designate equivalent elements common to the figures.
[0014] [Figure 1] FIG. 1 shows a diagram of a first covered yarn according to an embodiment of the present disclosure. [Figure 2] FIG. 2 shows a diagram of a second yarn according to an embodiment of the present disclosure. [Figure 3] FIG. 3 shows a diagram of a thin knitted liner according to an embodiment of the present disclosure. [Figure 4]FIG. 4 shows a diagram of a thin knitted liner having a thin coating disposed thereon to form a lightweight, thin, supportive glove, according to an embodiment of the present disclosure. [Figure 5] FIG. 5 illustrates a method for manufacturing a thin coated support glove according to an embodiment of the present disclosure. DETAILED DESCRIPTION OF THE INVENTION
[0015] Embodiments of the present disclosure include gloves, coatings, and methods for producing durable gloves and coatings with improved physical properties, particularly abrasion and cut resistance, while maintaining a very thin and flexible glove for improved dexterity during use. The gloves disclosed herein have significantly improved cut resistance and enhanced abrasion resistance. For example, latex, polymer, or elastomeric coatings and coated gloves produced according to embodiments of the present disclosure can achieve ANSI standard A5, A6, or A7 cut resistance and may include a 21-gauge tungsten seamless liner dipped in a foamed or non-foamed thin polymer (e.g., water-based) coating to provide a thin, durable, supportive glove. In some embodiments, the gloves may be breathable. Gloves according to embodiments of the present disclosure also achieve EN Level 4 abrasion resistance while achieving at least ANSI standard A5 cut resistance.
[0016] A "thin" polymer coating is measured in terms of its thickness in addition to a thin liner. A "thin" liner is one that is about 0.4 mm to about 0.8 mm thick, e.g., about 0.5 mm to about 0.8 mm thick. A "thin" polymer coating is one that, together with the thin liner, has a thickness of about 0.7 mm to about 1.2 mm, e.g., about 0.8 mm to about 1.2 mm. References herein to "glove" thickness are references to the thickness of the glove in the coated area.
[0017] FIG. 1 shows a diagram of a first covered yarn 100 suitable for use in accordance with embodiments of the present disclosure. In some embodiments, the first covered yarn 100 includes a tungsten core 102. In some embodiments, the tungsten core 102 is a pure or substantially pure tungsten wire or filament. In embodiments, the tungsten core 102 may be doped or compounded with additional materials, such as metals or carbon. In some embodiments, the tungsten core 102 has a diameter of approximately 25-35 microns or 27-33 microns. In some embodiments, the tungsten core 102 has a diameter of approximately 30 microns, e.g., 29 microns, 30 microns, or 31 microns, over the entire length of the tungsten core. In some embodiments, the tungsten core 102 is characterized as a metallized filament made from thinly drawn tungsten that is flexible enough for weaving. In some embodiments, the tungsten core 102 has a length sufficient to form a full length of yarn, such as a yarn suitable for forming a knitted liner in accordance with the present disclosure. In some embodiments, the tungsten core 102 has a length of 100 to 1000 meters. In some embodiments, the tungsten core 102 has a length sufficient to form a thin braided liner, such as braided liner 300 according to FIG.
[0018] In some embodiments, as shown in FIG. 1 , at least one first wrapping yarn 104, such as a polyamide wrapping yarn, is disposed over and covers the tungsten core 102. In embodiments, the at least one first wrapping yarn 104 is a 40-70 denier yarn, e.g., a 20-50 denier yarn. In some embodiments, the at least one first wrapping yarn 104 is a nylon yarn. Non-limiting examples of nylon yarns suitable for use herein include nylon 6 or nylon 6,6 yarns, which may be 40-70 denier yarns, e.g., a 20-50 denier yarn. In some embodiments, the present disclosure includes single-covered yarns, in which the tungsten core 102 is covered with a single first wrapping yarn, e.g., a first wrapping yarn 104 having a polyamide or nylon composition. In some embodiments, the at least one first wrapping yarn 104 has a length sufficient to encase and cover the length of the tungsten core 102. In some embodiments, the at least one first wrapping yarn 104 is a textured polyamide wrapping yarn.
[0019] In some embodiments, as shown in FIG. 1 , the present disclosure includes, for example, a double-covered yarn, where a tungsten core 102 is covered with a first wrapping yarn 104 having a polyamide or nylon composition, and a second wrapping yarn 106 is disposed over the first wrapping yarn 104. In some embodiments, the second wrapping yarn 106 is wound in a direction opposite to the winding direction of the first wrapping yarn 104. In at least one embodiment according to the present disclosure, the second wrapping yarn 106 is a high-performance polyethylene (HPPE) yarn wrapped around at least one first wrapping yarn 104, such as in an S- or Z-wrap configuration. In some embodiments according to the present disclosure, the covered yarn 100 comprises a second wrapping yarn 106 that completely covers the first wrapping yarn 104. In some embodiments, the second wrapping yarn 106 is, for example, a 20-100 denier yarn, a 20-50 denier yarn, or a 50 to 100 denier yarn.
[0020] In embodiments, the total denier of the first covered yarn 100, having a tungsten core 102, at least one first wrapping yarn 104, and a second wrapping yarn 106, is about 350 denier or less, or between about 320 denier and about 350 denier, or between about 330 denier and about 350 denier, or about 350 denier, or 350 denier. In embodiments, the total denier of the first covered yarn 100 is suitable for use with 21 gauge needles on a knitting machine.
[0021] Embodiments according to the present disclosure further include yarns, where the first covered yarn 100 may further include polyester yarns, filaments, staple fibers, etc., additional high performance polyethylene (HPPE) or ultra-high molecular weight polyethylene (UHMWPE) yarns, filaments, staple fibers, etc., glass fibers, steel yarns, and other fibers or filaments known to those skilled in the art.
[0022] In some embodiments, the first covered yarn 100 comprises tungsten in an amount of about 30% to about 50% by weight of the total covered yarn or about 35 to about 45% by weight of the total covered yarn, polyamide in an amount of about 40 to about 50% by weight of the total covered yarn, and high-performance polyethylene in an amount of about 10 to about 20% by weight of the total covered yarn. In some embodiments, the first covered yarn 100 comprises tungsten in an amount of about 38 to about 42% by weight of the total covered yarn, polyamide in an amount of about 42 to about 46% by weight of the total covered yarn, and high-performance polyethylene in an amount of about 14 to about 18% by weight of the total covered yarn. In some embodiments, the first covered yarn 100 comprises tungsten in an amount of about 40% by weight of the total covered yarn, polyamide in an amount of about 44% by weight of the total covered yarn, and high-performance polyethylene in an amount of about 16% by weight of the total covered yarn.
[0023] In some embodiments, the first covered yarn 100 comprises a tungsten core having a diameter of about 25-35 microns, a polyamide wrapping yarn disposed on the tungsten core, and a high performance polyethylene wrapping yarn disposed on the polyamide wrapping yarn, where the covered yarn is 350 denier or less or between about 320 denier and about 350 denier.
[0024] In some embodiments, the first covered yarn 100 comprises a tungsten core having a diameter of about 30 microns, e.g., 29 microns, 30 microns, or 31 microns, over the entire length of the tungsten core, a polyamide wrapping yarn disposed on the tungsten core, and a high performance polyethylene wrapping yarn disposed on the polyamide wrapping yarn, where the covered yarn 100 is about 350 denier or less, e.g., about 320 to about 350 denier.
[0025] FIG. 2 shows a diagram of a second covered yarn 200 according to an embodiment of the present disclosure. In an embodiment, the second covered yarn 200 includes a core yarn 202 and a commingled yarn 204 covering the core yarn 202. In at least one embodiment according to the present disclosure, the core yarn 202 is an elastomeric yarn, such as an elastane yarn and / or a polyester yarn, e.g., LYCRA® or spandex. The core yarn 202 may be, for example, a 20-80, 40-70, or 70 denier yarn. Also, in at least one embodiment according to the present disclosure, the commingled yarn 204 is a nylon or polyamide yarn, such as a nylon 6 or nylon 6,6 yarn (also referred to as nylon 66). In at least one embodiment according to the present disclosure, the commingled yarn 204 is a yarn of about 30 to about 50 denier, e.g., a 40 denier yarn. In some embodiments, the total denier of the second covered yarn 200 in some embodiments may be about 115 denier. In embodiments, the second covering yarn 200 comprises a combination yarn 204 comprising or consisting of a polyamide yarn of about 40 denier or less (e.g., about 30 to about 45 or 50 denier, etc.) and a core yarn 202 comprising or consisting of a polyether-polyurea copolymer yarn of about 70 denier or less (e.g., about 60 to about 70 denier, etc.). In some embodiments, the second yarn is about 115 denier or less, or between about 105 denier and about 115 denier. In embodiments, the second yarn has a total denier suitable for use with a 21-gauge needle.
[0026] Embodiments according to the present disclosure further comprise yarns, where the second covering yarn may further comprise polyester yarns, filaments, staple fibers, etc. Embodiments according to the present disclosure further comprise yarns, such as high performance polyethylene (HPPE) or ultra-high molecular weight polyethylene (UHMWPE) yarns, filaments, staple fibers, etc. Embodiments according to the present disclosure further comprise para-aramid and / or meta-aramid yarns, fibers, and / or filaments. Any of the yarns contemplated herein may comprise glass fibers, steel fibers, ceramic fibers, and other fibers or filaments known to those skilled in the art.
[0027] In some embodiments, the first covered yarn 100 and / or the second covered yarn 200 have a thickness suitable for knitting using 21 gauge needles. In embodiments, the first covered yarn and the second covered yarn have a thickness suitable for use, alone or in combination, inserted into a knitting machine.
[0028] FIG. 3 shows a diagram of a thin knitted liner 300 according to an embodiment of the present disclosure. In this embodiment, the thin knitted liner 300 includes a thumb 302, an index finger 304, a middle finger 306, a ring finger 308, a pinky finger 310, a knuckle region 312, and optionally a cuff region 314 and / or a bead 316. The thin knitted liner 300 further includes an opening 318 for a wearer to don the thin knitted liner 300 or to place the thin knitted liner on a former for subsequent coating as described herein. It should be understood that the thin knitted liner 300 may also include a palm region, which is not shown in this figure. In this embodiment, the thin knitted liner 300 is knitted using a knitting machine. The thin knitted liner 300 is knitted, for example, using the first covering yarn 100 or the second covering yarn 200 described above in a quantity sufficient to form the thin knitted liner 300. In some embodiments, the first and second covered yarns 100 and 200 may be combined in a plating technique to form a woven fabric, such as a knitted liner 300, in accordance with the present disclosure. For example, the first and second covered yarns 100 and 200 may be fed simultaneously to a knitting machine such that the first covered yarn 100 is positioned below the second covered yarn 200 and / or each yarn is wound on a particular side of the woven fabric. In embodiments, the first covered yarn 100 forms a layer of material adjacent to or below the layer of the second covered yarn 200. In embodiments, a coating may be applied over the layer of the second covered yarn 200 or over the layer of the first covered yarn 200 in a woven fabric, such as a knitted liner 300. Embodiments according to the present disclosure further include a coating to form a support glove, as described further below.
[0029] FIG. 4 shows a diagram of a thin knitted liner 300 having a thin coating 450 disposed thereon to form a thin support glove 400 according to an embodiment of the present disclosure. In an embodiment, the thin support glove 400 includes a coated thumb 402, a coated index finger 404, a coated middle finger 406, a coated ring finger 408, a coated pinky finger 410, a coated knuckle region, an uncoated cuff region 314, and / or an optional coated bead 316. Alternatively or additionally, the thin coating 450 is indicated by the darker shaded area; note that the texture of the thin knitted liner 300 is still visible beneath the thin coating 450. The cross-sectional thickness of the coated region of the thin, lightweight support glove 400 generally ranges from 0.80 mm to 1.20 mm, including and including 0.9 mm. Table 2 below lists additional cross-sectional thicknesses for gloves of the present disclosure. The thin support glove 400 further comprises an opening 318 through which the wearer puts on the thin support glove 400 .
[0030] It should be understood that the thin knitted liner 300 also includes a coated palm area, not shown in this figure. Embodiments according to the present disclosure further include a coating to form a support glove, in this case a three-quarter dipped support glove, covering the upper back area 420 with a thin coating 450. It should also be understood that other styles of dipping, as known to those skilled in the art, are within the scope of the disclosed embodiments of thinly coated support gloves. For example, embodiments optionally include knuckle-dipped support gloves (where the upper back area 420 may be uncoated), full-dipped support gloves, palm-dipped support gloves, etc.
[0031] The present inventors have unexpectedly overcome problems associated with previous methods for coating thin liners containing metallic materials with thin coatings. Accordingly, a 21-gauge needle-knitted liner containing one or more fine covered yarns as described herein, including tungsten-core covered yarns, can be coated with an aqueous polymer emulsion, such as aqueous polyurethane, and / or a mixture of aqueous polymer emulsions with other aqueous emulsions. For example, a mixture of nitrile-butadiene (NBR) emulsion with aqueous polyurethane emulsion. Also, a 21-gauge needle-knitted liner can be coated with aqueous NBR or an NBR mixture. The present inventors have unexpectedly produced a thin knitted liner 300 in which a thin coating 450 is disposed on the thin knitted liner 300, particularly with respect to the placement of the thin aqueous polymer coating, to produce a thin, flexible, durable, and optionally breathable thin-coated support glove.
[0032] The thin support glove 400 according to embodiments of the present disclosure includes a thin coating 450, which, despite its thinness, achieves EN388(2016) Level 4 abrasion (>8,000 cycles). Alternatively, in some embodiments, the thin coating 450 is non-foamed while maintaining breathability and abrasion resistance. Without intending to be bound by theory, this is believed to be because the thin knitted liner 300 and the thin coating 450 are integrally formed with each other when creating the thin-coated support glove 400, and because the thin coating 450 penetrates the yarns to prevent uncomfortable bleed-through. This integration allows for the formation of "channels," for example, which provide breathability. Furthermore, the excellent adhesion between the yarn and the thin coating provides high abrasion resistance despite the thinness of the thin-coated support glove and the inclusion of metal therein. In this context, integrally formed means that the thin coating 450 permeates the yarns of the thin knitted liner 300 to the extent that it cannot be disassembled without destroying one or more of the thin knitted liner 300 or the thin coating 450.
[0033] At least one thin coating 450 according to embodiments of the present disclosure is formulated using a dimethylformamide (DMF)-free formulation, as set forth in Table 1. The polymer emulsion has a low viscosity, for example, but not limited to, a viscosity in the range of 300 to 2000 centipoise. In some embodiments, the polymer emulsion uses a very low-viscosity polymer formulation despite having a high total solids content, such as 35 to 45 percent. In some embodiments, the polymer emulsion may include commonly used stabilizers, including, but not limited to, potassium hydroxide, ammonia, aluminum sulfate, sulfonates, and others known in the art. The polymer emulsion may include other commonly used ingredients, such as surfactants, antimicrobial agents, and fillers / additives. The amounts of the ingredients in Table 1 are expressed in percent weight dry rubber (PHR), as known to those skilled in the art. (All amounts and ranges may be near or to the approximate values.) Not all ingredients shown in Table 1 need be included; for example, waxes, pigments, and thickeners may be absent in some embodiments.
[0034] [Table 1]
[0035] The polymer emulsions shown in Table 1 above contain unexpectedly low viscosities while possessing very high total solids contents (TSC), nevertheless allowing the thin coating to penetrate the fibers that make up the yarn while inhibiting bleed-through. Furthermore, bleed-through occurs when the polymer emulsion penetrates deep enough into the thickness of the liner to contact the skin when the glove is worn. At least one exemplary embodiment according to the present disclosure includes a formulation that unexpectedly has a TSC of 35-45% and a viscosity of 300-2000 centipoise. At least one embodiment according to the present disclosure also includes a thin coating 450 that has been treated with a weak acid coagulant, such as acetic acid, formic acid, tricarboxylic acid, and other weak acids or any mixture of these weak acids, so that the interior molecules of the coating form additional crosslinks. The thin coating 450 may then be treated with a strong coagulant to more completely gel and crosslink the outer molecules, producing a coating 450 that is fully cured, i.e., gelled or crosslinked throughout the entire thickness of the polymer layer, as opposed to a case cure (a coating in which only the outer surface of the coating is fully crosslinked). Techniques for producing the through-cured thin coating 450 are disclosed in commonly assigned U.S. Publication No. 2014-0000006, entitled Abrasion and Cut Resistant Coatings and Coated Gloves, which is incorporated herein by reference in its entirety.
[0036] Referring to Table 1, in some embodiments, ammonia may be present in an amount of about 0.1 to about 0.3 PHR or about 0.2 PHR. In some embodiments, a curing agent such as zinc oxide may be present in an amount of about 2.5 to about 4.5 PHR, e.g., about 3.00 PHR. In some embodiments, a wax and / or lubricant may be present in an amount of about 0.2 to about 2.5 PHR or about 0.8 PHR. In some embodiments, a pigment may be present in an amount of about 1.0 to about 3.0 PHR, e.g., 1.2 PHR. In some embodiments, a thickener may be present in an amount of about 0.01 to about 0.2 PHR or about 0.1 PHR. In embodiments, the polymer emulsion may have a total solids content of 35-45% by weight of the total composition.
[0037] At least one embodiment according to the present disclosure also includes a thin coating 450 that has been treated with a salt treatment. The thin coating 450 may be treated with a salt bath, which may alternatively include salt particles, such as sodium chloride salt particles, before or after the curing process. The salt particles are embedded in the thin coating 450, imparting a faceted texture and providing enhanced gripping properties, as well as providing additional strength, i.e., wear resistance, to the thin coating 450. Techniques for treating the thin coating 450 with a salt bath treatment are disclosed in commonly assigned U.S. Patent Nos. 7,378,043, 7,771,644, 7,814,570, and 8,522,363, the teachings of which are incorporated herein by reference in their entireties.
[0038] FIG. 5 illustrates a method 500 for manufacturing a thin-coated support glove according to an embodiment of the present disclosure. Method 500 begins at step 502 and proceeds to step 504, in which a liner, such as a 21-gauge knitted liner as described herein, is placed in a former, such as a hand-shaped former. In step 506, the former, such as a hand-shaped former with the 21-gauge knitted liner placed therein, is immersed in a coagulant, such as a coagulant solution, and removed. In some embodiments, the coagulant solution comprises an aqueous solution of a weak acid, such as acetic acid, at a concentration of 40% or less. In embodiments, the aqueous solution of the weak acid may further comprise a surfactant. In some embodiments, the thin knitted liner with the coagulant solution is contacted with a polymer emulsion, and the coagulant solution destabilizes the polymer emulsion, causing the emulsion to gel. Without intending to be bound by theory, it is believed that the weak acid coagulant allows for penetration, full curing, and adhesion of the thin coating to the thin knitted liner of the present disclosure. Optionally, the coagulant solution disposed on the thin knitted liner may be heated to dry the coagulant solution. Optionally, the 21-gauge knitted liner of the present disclosure may first have a wetting agent disposed thereon before immersion in the coagulant solution. In some embodiments, the liner of the present disclosure may be coated using the methods described in International Patent Publication No. WO 2018 / 145145 to Fernando et al., entitled "Thin Coated Support Gloves," which is incorporated herein by reference in its entirety.
[0039] Next, in step 508, a former, such as a hand-shaped former fitted with a 21-gauge knitted liner, is dipped into a polymer emulsion, such as the polymer emulsion made according to the formulation set forth in Table 1. The polymer emulsions in Table 1 generally have very low viscosities, e.g., 300-2000 centipoise. The polymer emulsion penetrates the yarns of the knitted liner but, unexpectedly, does not penetrate through the gaps throughout the entire thickness of the knitted liner, resulting in a thin coating that adheres well to the knitted liner without causing bleed-through, which can be uncomfortable for the wearer of the support glove. The hand-shaped former may be dipped, palm-dipped, three-quarter-dipped, full-dipped, etc., as described above, and removed to form a polymer coating on the 21-gauge thin knitted liner. In step 510, the former, such as a hand-shaped former, with the thin knitted liner and polymer coating, is then sent to a curing oven at a temperature of 90-130°C for 30 to 70 minutes.
[0040] In step 512, the thin support glove is stripped from the hand-shaped former, ending method 500. Method 500 may include other steps. For example, a washing step may be performed in hot water before or after the curing step. Also, as described above, a salt treatment and / or a mild acid treatment may be used. Typically, a salt treatment is performed before the curing step. Also, typically, a mild acid treatment may be performed before and / or after the curing step.
[0041] In embodiments, when using yarns of a preselected denier, the knitted liner can have a thickness of approximately 0.5 mm to 0.8 mm at the point where the yarns cross. Table 2 below shows additional thicknesses of knitted liners suitable for use in accordance with the present disclosure. Also, when using 350 denier yarns, the knitted liner can have a thickness of approximately 0.6 mm at the point where the yarns cross. When a liner knitted with 21-gauge needles is coated with a polymer emulsion to form a coating, the thickness of the coating can approach the thickness of the thin knitted liner, and the lightweight, thin support glove can have a final thickness, for example, in the range of 0.80 mm to 1.2 mm. Table 2 below shows additional thicknesses of gloves according to the present disclosure. The total weight of a lightweight, thin support glove with a 21-gauge knitted liner and a thin polymer coating can also be lighter than a comparable glove with an EN388(2016) Level 4 abrasion rating. Alternatively or additionally, embodiments of the present disclosure include support gloves in which a coating (e.g., a full, 3 / 4, palm, or knuckle coating), such as thin coating 450, is a continuous coating. For example, thin coating 450 tightly covers a thin knitted liner, such as thin knitted liner 300.
[0042] In embodiments, glove thickness may be varied to achieve a predetermined cut resistance level. For example, a thin coated support glove of the present disclosure may be formed having a thickness of about 0.7 to about 0.9 mm (e.g., about 0.75 to about 0.85 mm, or about 0.8 mm) and a cut resistance level of A5 (per ANSI / ISEA 105 (2016 Edition)), a thickness of about 0.8 to about 1.0 mm (e.g., about 0.85 to about 0.95 mm, or about 0.9 mm) and a cut resistance level of A5, or a thickness of about 1.0 to about 1.2 mm (e.g., about 1.05 to about 1.15 mm, or about 1.1 mm) and a cut resistance level of A7. In embodiments, the yarn thickness and / or coating thickness may be varied to provide a glove of a predetermined thickness. Table 2 below shows additive cut resistance for glove / liner thicknesses according to the present disclosure. Gloves of the present invention can generally have cut resistance levels A5, A6, or A7.
[0043] As mentioned above, the gauge of knitting needles used is generally selected depending on the denier of the yarn being used. While it is possible to knit smaller denier yarns, i.e., smaller diameter yarns, with larger gauge needles, such a combination can result in excessive spacing, or gaps, between the horizontal yarn loops in the thin knitted liner, which will be larger than desired. When the appropriate needle gauge is selected, the gap spacing is typically within the range of 1 to 3 times the diameter of the yarn used to knit the liner. Furthermore, the difference between the yarn diameter and the gaps changes when the liner is loaded into the former, and stretching of the thin knitted liner can cause the gap diameter to become three times the yarn diameter.
[0044] As noted above, coating a knitted liner can be difficult. A 21-gauge knitted liner made from a double-covered yarn, such as the first and second covered yarns described herein, can be approximately 0.5 to 0.6 mm thick. The 21-gauge knitted liner can be coated with a polymer emulsion to form a coating, resulting in a glove thickness of approximately 0.80 to 0.90 mm. A glove with a 21-gauge knitted liner can be coated with, for example, a nitrile-butadiene (NBR) emulsion or an NBR blend emulsion, with an integrally formed permeable coating, approximately equal to the thickness of the knitted liner, which is approximately 0.50 to 0.6 mm. In at least one embodiment according to the present disclosure, the emulsion penetrates between approximately 40 and 75% of the knitted liner's thickness. In at least one embodiment according to the present disclosure, the emulsion penetrates less than approximately 60% of the knitted liner's thickness, in some embodiments, less than approximately 50% of a thin knitted liner, and in some embodiments, less than approximately 40%.
[0045] In one or more embodiments according to the present disclosure, the polymer emulsion is coated on selected portions of the glove, generally including the palm and finger (particularly the palm side) areas, while the back-of-hand liner portion is not coated with the polymer emulsion, further enhancing breathability. Nevertheless, due to the breathability of some thin knitted liner and thin coating embodiments, the full-dip style remains an unexpected advance in the art. Also, in embodiments according to the present disclosure, the polymer emulsion comprises natural rubber, synthetic polyisoprene, styrene-butadiene, carboxylated or non-carboxylated acrylonitrile-butadiene, highly carboxylated acrylonitrile-butadiene (e.g., >35% carboxylation), polychloroprene, polyacrylic, butyl rubber, or water-based polyurethane (polyester- or polyether-based), or a combination thereof.
[0046] In at least one embodiment according to the present disclosure, a polymer coating, e.g., a thin coating, is foamed with air cells dispersed in a range of 5 to 60% by volume to form closed or open cells with interconnected porosity within the polymer layer. Closed cells provide a fluid-resistant polymer coating that is flexible, soft, spongy, and provides good dry and wet grip. Closed cells are typically associated with an air content in the 5-15% volume percent range. Interconnected open cells typically occur in the 15-50% air volume range, providing breathability for the glove through the foamed polymer layer.
[0047] Due to the smaller diameter of the yarns that may comprise the thin knitted liner, the distance between the fibers rapidly decreases, forming a pinch area within the knitted liner. Once the polymer emulsion enters this area, the gelling action of the coagulant applied to the liner essentially inhibits the polymer emulsion from penetrating through the gaps and into the thickness of the thin knitted liner. This penetration and gelling action is a function of the viscosity of the polymer emulsion and the depth to which the former equipped with the coagulant-coated liner is pressed into the polymer emulsion. The higher the hydrostatic pressure, i.e., the deeper the penetration, the more polymer emulsion penetrates into the thin knitted liner. Therefore, controllable process variables for controlling the penetration of the polymer emulsion into the thin knitted liner include 1) controlling the viscosity of the polymer emulsion and 2) the immersion depth of the former equipped with the knitted liner. The thin, lightweight support gloves described herein are approximately 30% lighter in weight and thickness than 18-gauge gloves, and are more than three times softer.
[0048] Flexibility can be measured by the Gurley Stiffness Test on an excised coated portion of the glove using a Gurley Model 4171S. Test samples are taken from the palm area and are sized 50.8 mm (2 in) x 25.4 mm (1 in) to give a deflection between 1 and 7 on the Gurley Flexural Resistance / Stiffness Tester scale. Rectangular specimens are clamped centrally without stretch within the specimen clamps so that 6.4 mm (0.25 in) is held in the jaws.
[0049] In some embodiments, the present disclosure relates to a method for manufacturing a thin-coated support glove, the method comprising: placing a 21-gauge knitted liner in a hand-shaped former; applying an aqueous coagulant solution to the 21-gauge knitted liner; dipping the 21-gauge knitted liner in a polymer emulsion of a 100 parts per hundred (PHR) nitrile-butadiene polymer blend to form a polymer coating on the knitted liner; and curing the polymer coating to form a thin-coated support glove, the 21-gauge knitted liner including a plurality of finger components, a thumb component, a back component, and a palm component, the 21-gauge knitted liner comprising a covering yarn of about 350 denier or less, the covering yarn comprising a tungsten core having a diameter of about 25 to 35 microns, a polyamide wrapping yarn disposed on the tungsten core, and a high-performance polyethylene wrapping yarn disposed on the polyamide wrapping yarn. In some embodiments, the polymer emulsion has a viscosity of between 300 and 2000 centipoise during the dipping process. In some embodiments, the polymer emulsion comprises 35-45% total solids.
[0050] In some embodiments, a fabrication method for producing a thin coated support glove is suitable for forming a thin coated support glove, the glove comprising a thin knitted liner including a plurality of finger components, a thumb component, a back component, and a palm component; and a thin polymer coating adhered to the thin knitted liner, the thin knitted liner comprising a tungsten core having a diameter of about 25-35 microns, a covering yarn of about 350 denier or less, the covering yarn comprising a polyamide wrapping yarn disposed on the tungsten core and a high-performance polyethylene wrapping yarn disposed on the polyamide wrapping yarn, and a second yarn being a commingled yarn of 115 denier or less. In some embodiments, the thin coated support glove comprises a thin knitted liner that is a 21-gauge liner. In some embodiments, the glove has a thickness of about 0.8 mm and a cut resistance of level A5. In some embodiments, the glove has a thickness of about 0.9 mm and a cut resistance of level A5. In some embodiments, the glove has a thickness of about 1.1 mm and a cut resistance of level A7. In some embodiments, the tungsten core has a diameter of about 30 microns. In some embodiments, the polyamide wrapping yarn is textured. In some embodiments, the first covered yarn comprises tungsten in an amount of about 40% by weight of the total covered yarn, polyamide in an amount of about 44% by weight of the total covered yarn, and high-performance polyethylene in an amount of about 16% by weight of the total covered yarn. In some embodiments, the combined yarn comprises a polyamide yarn of 40 denier or less and a polyether-polyurea copolymer yarn of 70 denier or less. In some embodiments, the combined yarn or polyamide wrapping yarn is a nylon 6 or nylon 6,6 yarn. In some embodiments, the thin polymer coating comprises a polymer emulsion having a total solids content in the range of 35-45%. In some embodiments, the thin coated support glove has a cross-sectional thickness in the polymer coated region in the range of 0.8 to 1.00 mm. In some embodiments, the thin coated support glove has a cross-sectional thickness in the polymer coated region in the range of 0.8 to 1.20 mm.In some embodiments, the thin support glove has an EN388 abrasion level of 4 or greater.
[0051] In one embodiment, a glove according to the present disclosure has a total glove thickness of 0.8 mm to 0.9 mm in the polymer-coated area, with the liner having a thickness of 0.5 mm to 0.6 mm, in which case the glove is characterized as machine gauge seamless 21. In such an embodiment, the durability of the glove is characterized as having an EN abrasion level of 4. In such an embodiment, the glove provides ANSI standard level A5, level A6, or level A7 cut protection. In an embodiment, the yarn denier for forming the glove is about 350 denier or 350 denier.
[0052] In some embodiments, the thickness of the gloves is varied to vary the cut resistance. Non-limiting examples of gloves suitable for use herein include gloves having thicknesses and cut resistances (including cut resistance according to International Organization for Standardization ISO 13979 (1999)) as shown in Table 2 below.
[0053] [Table 2]
[0054] In some embodiments, a glove of the present disclosure includes an inner yarn, the inner yarn including a tungsten filament, a nylon first wrapping yarn, and an outer high performance polyethylene (HPPE) wrapping yarn. The glove also includes a second yarn for use as an outer yarn, the outer yarn including a blend of spandex (70 denier) and nylon (40 denier). The first and second yarns are suitable for forming a liner according to the present disclosure.
[0055] In some embodiments, a thin coated support glove includes a 21-gauge thin knitted liner having a plurality of finger components, a thumb component, a back component, and a palm component; and a thin polymer coating adhered to the 21-gauge thin knitted liner. The 21-gauge thin knitted liner includes a covering yarn of about 350 denier or less, the covering yarn comprising a tungsten core having a diameter of about 25-35 microns, a polyamide wrapping yarn disposed on the tungsten core, and a high-performance polyethylene wrapping yarn disposed on the polyamide wrapping yarn; and a second yarn of about 115 denier or less, comprising nylon and spandex. In embodiments, the nylon is 30 to 50 denier. In embodiments, the spandex is 20 to 80 denier. In embodiments, the covering yarn is between 320 denier and 350 denier. In some embodiments, the second yarn is 105 to 115 denier.
[0056] In some embodiments, cut resistance refers to a glove or knit fabric meeting the cut test requirements set forth in the ANSI / ISEA 105(2016) standard, with cut resistance levels characterized as A1 through A9. In some embodiments, a glove or knit fabric according to the present disclosure meets the cut test requirements set forth in the ANSI / ISEA 105-2016 standard and is characterized as having a cut resistance level of A5, where the weight in grams for a cut distance greater than 20 mm is 2200 or greater. In some embodiments, a glove or knit fabric according to the present disclosure meets the cut test requirements set forth in the ANSI / ISEA 105(2016) standard and is characterized as having a cut resistance level of A6, where the weight in grams for a cut distance greater than 20 mm is 3000 or greater. In some embodiments, gloves or knitted fabrics thereof according to the present disclosure meet the cut test requirements set forth in the ANSI / ISEA 105 (2016) standard and are characterized as having a cut resistance level of A7.
[0057] In some embodiments, abrasion resistance refers to the ability of a glove or knit fabric to resist surface abrasion caused by flat, frictional contact with another material. While there are many tests known in the art for measuring abrasion resistance, in embodiments, gloves or knit fabrics according to the present disclosure may be evaluated for abrasion resistance according to the European standard used to evaluate mechanical risks to hand protection. In some embodiments, gloves and glove knit fabrics according to the present disclosure meet the EN388:2016 abrasion test requirements and have a protection level of 4 as described according to this standard.
[0058] In embodiments, the present disclosure includes a thin coated support glove comprising a thin knitted liner comprising a plurality of finger components, a thumb component, a back component, and a palm component; and a thin polymer coating adhered to the thin knitted liner, wherein the thin knitted liner comprises a covering yarn of 350 denier or less comprising or consisting of a tungsten core having a diameter of about 25-35 microns, a polyamide wrapping yarn disposed on the tungsten core, and a high performance polyethylene wrapping yarn disposed on the polyamide wrapping yarn; and a second yarn comprising or consisting of a combined yarn of 115 denier or less, wherein the thin knitted liner is a 21 gauge liner.
[0059] In embodiments, the present disclosure includes a thin coated support glove, the support glove comprising: a thin knitted liner including a plurality of finger components, a thumb component, a back component, and a palm component; and a thin polymer coating adhered to the thin knitted liner, the thin knitted liner comprising: a covering yarn of 350 denier or less comprising or consisting of a tungsten core having a diameter of about 25-35 microns; a polyamide wrapping yarn disposed on the tungsten core; and a high performance polyethylene wrapping yarn disposed on the polyamide wrapping yarn; and a second yarn comprising or consisting of a combined yarn of 115 denier or less, wherein the glove in the polymer coated area has a thickness of about 0.7 mm to about 0.9 mm (e.g., about 0.75 mm to about 0.85 mm or about 0.8 mm) and a cut resistance of Level A5.
[0060] In embodiments, the present disclosure includes a thin coated support glove comprising: a thin knitted liner including a plurality of finger components, a thumb component, a back component, and a palm component; and a thin polymer coating adhered to the thin knitted liner; the thin knitted liner comprising: a covering yarn of 350 denier or less comprising or consisting of a tungsten core having a diameter of about 25-35 microns; a polyamide wrapping yarn disposed on the tungsten core; and a high performance polyethylene wrapping yarn disposed on the polyamide wrapping yarn; and a second yarn comprising or consisting of a combined yarn of 115 denier or less; and the thin knitted liner has a thickness of about 0.4 mm to about 0.6 mm (e.g., about 0.45 mm to about 0.55 mm or about 0.5 mm).
[0061] In embodiments, the present disclosure includes a thin coated support glove, the support glove comprising a thin knitted liner comprising a plurality of finger components, a thumb component, a back component, and a palm component; and a thin polymer coating adhered to the thin knitted liner, the thin knitted liner comprising: a covering yarn of 350 denier or less comprising or consisting of a tungsten core having a diameter of about 25-35 microns; a polyamide wrapping yarn disposed on the tungsten core; and a high performance polyethylene wrapping yarn disposed on the polyamide wrapping yarn; and a second yarn comprising or consisting of a blended yarn of 115 denier or less, wherein the glove in the polymer coated area has a thickness of about 1.1 mm to about 1.2 mm and a cut resistance level of A7.
[0062] In embodiments, the present disclosure includes a thin coated support glove comprising: a thin knitted liner comprising a plurality of finger components, a thumb component, a back component, and a palm component; and a thin polymer coating adhered to the thin knitted liner; the thin knitted liner comprising: a covering yarn of 350 denier or less comprising or consisting of a tungsten core having a diameter of about 25-35 microns; a polyamide wrapping yarn disposed on the tungsten core; and a high performance polyethylene wrapping yarn disposed on the polyamide wrapping yarn; and a second yarn comprising or consisting of a combined yarn of 115 denier or less; and the thin knitted liner has a thickness of about 0.7 to 0.8 mm.
[0063] In embodiments, the present disclosure includes a thin coated support glove, the support glove comprising: a thin knitted liner comprising a plurality of finger components, a thumb component, a back component, and a palm component; and a thin polymer coating adhered to the thin knitted liner, the thin knitted liner comprising: a covering yarn of 350 denier or less comprising or consisting of a tungsten core having a diameter of about 25-35 microns; a polyamide wrapping yarn disposed on the tungsten core; and a second yarn comprising or consisting of a combined yarn of 115 denier or less, the covering yarn comprising or consisting of a tungsten core having a diameter of about 25-35 microns; a polyamide wrapping yarn disposed on the tungsten core; and a second yarn comprising or consisting of a combined yarn of 115 denier or less, the glove in the polymer coated area having a thickness of about 0.9 mm to about 1.1 mm (e.g., about 0.95 to about 1.05 mm or about 1.00 mm) and a cut resistance of Level A5, and the thickness of the thin knitted liner is about 0.5 mm to about 0.7 mm (e.g., about 0.55 mm to about 0.65 mm or about 0.6 mm).
[0064] In embodiments, the present disclosure includes a thin coated support glove comprising: a thin knitted liner including a plurality of finger components, a thumb component, a back component, and a palm component; and a thin polymer coating adhered to the thin knitted liner; the thin knitted liner comprising: a tungsten core having a diameter of about 25-35 microns; a covering yarn of 350 denier or less comprising or consisting of a polyamide wrapping yarn disposed on the tungsten core; and a second yarn comprising or consisting of a combined yarn of 115 denier or less; wherein the tungsten core has a diameter of about 28 to about 32 microns (e.g., about 29 mm to about 31 mm or about 30 microns).
[0065] In embodiments, the present disclosure includes a thin coated support glove, the support glove including a thin knitted liner including a plurality of finger components, a thumb component, a back component, and a palm component, and a thin polymer coating adhered to the thin knitted liner, the thin knitted liner comprising or including a tungsten core having a diameter of about 25-35 microns, a polyamide wrapping yarn disposed on the tungsten core, and a high performance polyethylene wrapping yarn disposed on the polyamide wrapping yarn. and a second yarn comprising or consisting of a combined yarn of about 115 denier or less, wherein the covered yarn comprises or consists of tungsten in an amount of about 38% to about 42% by weight (e.g., about 39% to about 41% or about 40%) of the total covered yarn, polyamide in an amount of about 42% to about 44% by weight (e.g., about 43% to about 45% or about 44%) of the total covered yarn, and high performance polyethylene in an amount of about 14% to about 18% by weight (e.g., about 15% to about 17% or about 16%) of the total covered yarn.
[0066] In embodiments, the present disclosure includes a thin coated support glove comprising a thin knitted liner including a plurality of finger components, a thumb component, a back component, and a palm component; and a thin polymer coating adhered to the thin knitted liner, wherein the thin knitted liner comprises a covering yarn of 350 denier or less comprising or consisting of a tungsten core having a diameter of about 25-35 microns, a polyamide wrapping yarn disposed on the tungsten core, and a high performance polyethylene wrapping yarn disposed on the polyamide wrapping yarn; and a second yarn comprising or consisting of a combined yarn of 115 denier or less, wherein the combined yarn comprises or consists of a polyamide yarn of 40 denier or less and a polyether-polyurea copolymer yarn of 70 denier or less.
[0067] In embodiments, the present disclosure includes a thin coated support glove comprising a thin knitted liner including a plurality of finger components, a thumb component, a back component, and a palm component; and a thin polymer coating adhered to the thin knitted liner, wherein the thin knitted liner comprises a covering yarn of 350 denier or less comprising or consisting of a tungsten core having a diameter of about 25-35 microns, a polyamide wrapping yarn disposed on the tungsten core, and a high performance polyethylene wrapping yarn disposed on the polyamide wrapping yarn; and a second yarn comprising or consisting of a commingled yarn of 115 denier or less, wherein the commingled yarn or polyamide wrapping yarn comprises or consists of a nylon 6 or nylon 6,6 yarn.
[0068] In embodiments, the present disclosure includes a thin coated support glove comprising: a thin knitted liner comprising a plurality of finger components, a thumb component, a back component, and a palm component; and a thin polymer coating adhered to the thin knitted liner; the thin knitted liner comprising: a covering yarn of 350 denier or less comprising or consisting of a tungsten core having a diameter of about 25-35 microns, a polyamide wrapping yarn disposed on the tungsten core, and a high performance polyethylene wrapping yarn disposed on the polyamide wrapping yarn; and a second yarn comprising or consisting of a combined yarn of 115 denier or less; and the thin polymer coating comprising a polymer emulsion having a total solids content in the range of 40-46%.
[0069] In embodiments, the present disclosure includes a thin coated support glove, the support glove comprising a thin knitted liner comprising a plurality of finger components, a thumb component, a back component, and a palm component; and a thin polymer coating adhered to the thin knitted liner, the thin knitted liner comprising: a covering yarn of 350 denier or less comprising or consisting of a tungsten core having a diameter of about 25-35 microns; a polyamide wrapping yarn disposed on the tungsten core; and a high performance polyethylene wrapping yarn disposed on the polyamide wrapping yarn; and a second yarn comprising or consisting of a combined yarn of 115 denier or less, wherein the thin coated support glove in the polymer coated region has a cross-sectional thickness in the range of 0.8 to 1.20 mm.
[0070] In embodiments, the present disclosure includes a thin coated support glove comprising a thin knitted liner comprising a plurality of finger components, a thumb component, a back component, and a palm component; and a thin polymer coating adhered to the thin knitted liner, wherein the thin knitted liner comprises a covering yarn of 350 denier or less comprising or consisting of a tungsten core having a diameter of about 25-35 microns, a polyamide wrapping yarn disposed on the tungsten core, and a high performance polyethylene wrapping yarn disposed on the polyamide wrapping yarn; and a second yarn comprising or consisting of a combined yarn of 115 denier or less, wherein the thin support glove has an EN388 abrasion level of 4 or greater.
[0071] In embodiments, the present disclosure includes a thin coated support glove, the support glove comprising: a thin knitted liner including a plurality of finger components, a thumb component, a back component, and a palm component; and a thin polymer coating adhered to the thin knitted liner, the thin knitted liner comprising: a covering yarn of 350 denier or less comprising or consisting of a tungsten core having a diameter of about 25-35 microns; a polyamide wrapping yarn disposed on the tungsten core; and a second yarn comprising or consisting of a commingled yarn of 115 denier or less, the tungsten core having a diameter of about 28 to about 32 microns (e.g., about 29 to about 31 microns or about 30 microns), the covering yarn comprising about 38% to about 40% by weight of the total covered yarn. the coated yarn comprises or consists of tungsten in an amount of about 42% by weight (e.g., about 39% to about 41% or about 40%), polyamide in an amount of about 42% to about 46% by weight (e.g., about 43% to about 45% or about 44%) of the total coated yarn, and high performance polyethylene in an amount of about 14% to about 18% by weight (e.g., about 15% to about 17% or about 16%) of the total coated yarn; the combined yarn comprises or consists of polyamide yarn of 40 denier or less and polyether-polyurea copolymer yarn (such as spandex) of 70 denier or less; the combined yarn or polyamide wrapping yarn is nylon 6 or nylon 6,6 yarn; the thin polymer coating comprises a polymer emulsion having a total solids content in the range of 40-46%; and the thin coated support glove in the polymer-coated area has a cross-sectional thickness in the range of 0.8-1.20 mm.
[0072] In some embodiments, the present disclosure includes a method for manufacturing a thin coated support glove, the method comprising: placing a knitted liner, such as a 21 gauge knitted liner, in a hand-shaped former; applying an aqueous coagulant solution to the 21 gauge knitted liner; and wetting the 21 gauge knitted liner to a thickness of 100 parts per million. and curing the polymer coating to form a thin-coated support glove, wherein the 21-gauge knitted liner has a plurality of finger components, a thumb component, a back of the hand component, and a palm component, the 21-gauge knitted liner having a covering yarn of about 350 denier or less, the covering yarn comprising a tungsten core having a diameter of about 25-35 microns, a polyamide wrapping yarn disposed on the tungsten core, and a high-performance polyethylene wrapping yarn disposed on the polyamide wrapping yarn, the polymer emulsion having a viscosity of between 300-2000 centipoise during the dipping process, and the polymer emulsion comprising or consisting of 35-45% total solids.
[0073] All ranges recited herein are inclusive and can include or exclude their endpoints. Optional inclusive ranges extend from the intervening integer value (or one of the original endpoints) by the recited digit or the next smaller digit. For example, if the lower range value is 0.2, optional inclusive endpoints can be 1, 2, 3, etc., as well as 0.3, 0.4, ..., 1.1, 1.2, etc.; if the higher range is 8, optional inclusive endpoints can be 7, 6, etc., as well as 7.9, 7.8, etc. Unilateral boundaries, such as 3 or greater, similarly include consistent boundaries (or ranges) beginning at the recited digit or the next lower integer value. For example, 3 or greater includes 4 or greater or 3.1 or greater. When two ranges, such as about 1 to 10 and about 2 to 5, are stated, one skilled in the art will recognize that the implied ranges of 1 to 5 and 2 to 10 are within the scope of the invention.
[0074] A laminate is a bond, fusion, adhesion, etc. between polymer layers or between a polymer and a knitted layer, and within the scope of its anticipated use, the laminate is a unitary structure.
[0075] If a statement states that the subject matter of a statement is found in an embodiment or in a particular embodiment, etc., the statement is applicable to any embodiment to which the subject matter can logically be applied.
[0076] The present invention described herein is directed to a thin-coated support glove and methods of forming or using the same. While several embodiments have been discussed above, other implementations and applications are also within the scope of the following claims. While the present invention has been described with reference to particular embodiments, it should be understood that these embodiments are merely illustrative of the principles and applications of the present invention. Accordingly, it should be understood that numerous modifications may be made to the exemplary embodiments and that other configurations may be devised without departing from the spirit and scope of the present invention as defined by the following claims. More specifically, those skilled in the art will recognize that any embodiment described herein may advantageously possess, and be described as having, minor features of other embodiments, as the skilled artisan would recognize. Numbered Embodiments
[0077] The present invention can be further described in the following numbered embodiments.
[0078] Embodiment 1: A thin coated support glove comprising: (I) a thin knitted liner comprising a plurality of finger components, a thumb component, a back component, and a palm component; and (II) a thin polymer coating adhered to the thin knitted liner such that the coated area of the liner has a thickness of about 0.7 mm to about 1.2 mm, wherein the thin knitted liner comprises: (a) a covering yarn of about 350 denier or less, the covering yarn comprising a tungsten core having a diameter of about 25-35 microns, a polyamide wrapping yarn disposed on the tungsten core, and a high performance polyethylene wrapping yarn disposed on the polyamide wrapping yarn; and (b) a second yarn which is a commingled yarn of 115 denier or less, wherein the liner has a thickness of about 0.4 mm to about 0.8 mm.
[0079] Embodiment 2: A thin coated support glove comprising: (I) a 21 to 28 gauge knitted liner comprising a plurality of finger components, a thumb component, a back component, and a palm component; and (II) a thin polymer coating adhered to the 21 gauge knitted liner, wherein the knitted liner comprises: (a) a covering yarn of 350 denier or less comprising a tungsten core having a diameter of about 25-35 microns, a polyamide wrapping yarn disposed on the tungsten core, and a high performance polyethylene wrapping yarn disposed on the polyamide wrapping yarn; and (b) a second yarn of 115 denier or less comprising nylon and spandex.
[0080] Embodiment 3: A method for manufacturing a thin coated support glove, comprising: (a) placing a 21 to 28 gauge knitted liner into a hand-shaped former; (b) applying an aqueous coagulant solution to the knitted liner; (c) dipping the knitted liner in about 60 to about 100 PHR of a polymer emulsion of a nitrile-butadiene polymer blend to form a polymer coating on the knitted liner; and (d) curing the polymer coating to form a thin coated support glove, wherein the knitted liner comprises a plurality of finger components, a thumb component, a back component, and a palm component, and the knitted liner comprises a covering yarn of about 350 denier or less, the covering yarn comprising a tungsten core having a diameter of about 25 to about 35 microns, a polyamide wrapping yarn disposed on the tungsten core, and a high performance polyethylene wrapping yarn disposed on the polyamide wrapping yarn.
[0081] Embodiment 4: A method of making the above thin coated support glove or the thin coated support glove of any numbered embodiment, wherein the thin knitted liner is a 21 to 23 gauge liner.
[0082] Embodiment 5: A method of making the above thin coated support glove or the thin coated support glove of any numbered embodiment, wherein the thin knitted liner is a 21 gauge liner.
[0083] Embodiment 6: A method of making the above thin coated support glove or the thin coated support glove of any numbered embodiment, wherein the liner is single knit.
[0084] Embodiment 7: A method of making the above thin coated support glove or the thin coated support glove of any numbered embodiment, wherein the liner is single jersey knit.
[0085] Embodiment 8: A method of making the above thin coated support glove or the thin coated support glove of any numbered embodiment, wherein the glove has a thickness of about 0.7 mm to about 0.9 mm and a cut resistance of level A5.
[0086] Embodiment 9: A method of making the thin coated support glove or the numbered embodiment of claim 3, wherein the thin knitted liner has a thickness of about 0.4 mm to about 0.6 mm.
[0087] Embodiment 10: A method of making the above thin coated support glove or the thin coated support glove of any numbered embodiment, wherein the glove has a thickness of about 1.1 mm to about 1.2 mm and a cut resistance of level A7.
[0088] Embodiment 11: A method of making the thin coated support glove or the numbered embodiment of claim 5, wherein the thin knitted liner has a thickness of about 0.7 mm to about 0.8 mm.
[0089] Embodiment 12: A method of making the thin coated support glove or the thin coated support glove of any numbered embodiment, wherein the glove has a thickness of about 0.9 mm to about 1.1 mm and a cut resistance level of A5, and the thin knitted liner has a thickness of about 0.5 mm to about 0.7 mm.
[0090] Embodiment 13: A method of making the thin coated support glove or the thin coated support glove of any numbered embodiment, wherein the tungsten core has a diameter of about 28 to about 32 microns.
[0091] Embodiment 14: A method of making the thin coated support glove or a thin coated support glove of any of the numbered embodiments, wherein the covered yarn comprises tungsten in an amount of about 32 to about 42% by weight of the total covered yarn, polyamide in an amount of about 42 to about 46% by weight of the total covered yarn, and high performance polyethylene in an amount of about 14 to about 18% by weight of the total covered yarn.
[0092] Embodiment 15: A method of making the thin coated support glove or any numbered embodiment, wherein the combined yarn comprises a polyamide yarn of about 40 denier or less and a polyether-polyurea copolymer yarn of about 70 denier or less.
[0093] Embodiment 16: A method of making the thin coated support glove or the thin coated support glove of any numbered embodiment, wherein the combined yarn or the polyamide wrapping yarn is a nylon 6 or nylon 6,6 yarn.
[0094] Embodiment 17: A method of making the thin coated support glove or any numbered embodiment thereof, wherein the thin polymer coating comprises a coating formed from a polymer emulsion having a total solids content in the range of 40-46%.
[0095] Embodiment 18: A method of making the thin coated support glove or the thin coated support glove of any numbered embodiment, wherein the cross-sectional thickness of the thin coated support glove ranges from about 0.8 to about 1.20 mm.
[0096] Embodiment 19: A method of making the above thin coated support glove or the thin coated support glove of any numbered embodiment, wherein the thin support glove has an EN388 abrasion level of 4 or greater.
[0097] Embodiment 20: A method of making the thin coated support glove or the thin coated support glove of any numbered embodiment, wherein the nylon is about 30 to about 50 denier.
[0098] Embodiment 21: A method of making the thin coated support glove or the thin coated support glove of any numbered embodiment, wherein the spandex is 20 to 80 denier and the covering yarn is about 330 to about 350 denier.
[0099] Embodiment 22: The method of making the thin coated support glove or the thin coated support glove of any numbered embodiment, wherein the polymer emulsion has a viscosity of between about 300 centipoise and about 2000 centipoise during the dipping step.
[0100] Embodiment 23: A method of making the thin coated support glove or the thin coated support glove of any numbered embodiment, wherein the polymer emulsion comprises 35-46% total solids.
[0101] All publications and references cited herein, including but not limited to patents and patent applications, are hereby incorporated by reference in their entirety to the same extent as if each individual publication or reference was specifically and individually indicated to be incorporated by reference herein as if fully set forth. Any patent application to which this application claims priority is also incorporated by reference herein in the manner described above for publications and references.
Claims
1. a knitted liner having a plurality of finger components, a thumb component, a back component, and a palm component; a polymeric coating adhered to the knitted liner such that the coated area of the liner has a thickness of 0.7 mm to 1.2 mm; the knitted liner comprises: (a) a covering yarn of 350 denier or less, the covering yarn comprising a tungsten core having a diameter of 25 to 35 microns, a polyamide wrapping yarn disposed on the tungsten core, and a high performance polyethylene wrapping yarn disposed on the polyamide wrapping yarn; and (b) a second yarn which is a commingled yarn of 115 denier or less; A coated support glove, wherein the liner has a thickness of 0.4 mm to 0.8 mm.
2. 10. The coated support glove of claim 1, wherein the tungsten core has a diameter of 28 to 32 microns.
3. 10. The coated support glove of claim 1, wherein the support glove has an EN 388 abrasion level of 4 or greater.
4. 10. The coated support glove of claim 1, wherein the glove has a thickness of 0.7 mm to 0.9 mm and a cut resistance level of A5, and the knitted liner has a thickness of 0.4 mm to 0.6 mm.
5. 10. The coated support glove of claim 1, wherein the glove has a thickness of 1.1 mm to 1.2 mm and a cut resistance level of A7, and the knitted liner has a thickness of 0.7 mm to 0.8 mm.
6. 10. The coated support glove of claim 1, wherein the glove has a thickness of 0.9 mm to 1.1 mm and a cut resistance level of A5, and the knitted liner has a thickness of 0.5 mm to 0.7 mm.
7. 10. The coated support glove of claim 1, wherein the covered yarn comprises tungsten in an amount of 32 to 42% by weight of the total covered yarn, polyamide in an amount of 42 to 46% by weight of the total covered yarn, and high performance polyethylene in an amount of 14 to 18% by weight of the total covered yarn.
8. 10. The coated support glove of claim 1, wherein the combination yarn comprises a polyamide yarn of 40 denier or less and a polyether-polyurea copolymer yarn of 70 denier or less.
9. a 21 to 28 gauge knitted liner having a plurality of finger components, a thumb component, a back component, and a palm component; a polymeric coating adhered to the knitted liner such that the coated area of the liner has a thickness of 0.7 mm to 1.2 mm; the knitted liner comprises: (a) a covering yarn of 350 denier or less comprising a tungsten core having a diameter of 25 to 35 microns, a polyamide wrapping yarn disposed on the tungsten core, and a high performance polyethylene wrapping yarn disposed on the polyamide wrapping yarn; and (b) a second yarn of 115 denier or less comprising nylon and spandex; Optionally, said nylon is 30 to 50 denier, optionally said spandex is 20 to 80 denier, and optionally said covering yarn is between 330 and 350 denier.
10. 10. The coated support glove of claim 9, wherein the tungsten core has a diameter of 28 to 32 microns.
11. 10. The coated support glove of claim 9, wherein the support glove has an EN 388 abrasion level of 4 or greater.
12. 10. The coated support glove of claim 9, wherein the glove has a thickness of 0.7 mm to 0.9 mm and a cut resistance level of A5, and the knitted liner has a thickness of 0.4 mm to 0.6 mm.
13. 10. The coated support glove of claim 9, wherein the glove has a thickness of 1.1 mm to 1.2 mm and a cut resistance level of A7, and the knitted liner has a thickness of 0.7 mm to 0.8 mm.
14. 10. The coated support glove of claim 9, wherein the glove has a thickness of 0.9 mm to 1.1 mm and a cut resistance level of A5, and the knitted liner has a thickness of 0.5 mm to 0.7 mm.
15. 10. The coated support glove of claim 9, wherein the covered yarn comprises tungsten in an amount of 32 to 42% by weight of the total covered yarn, polyamide in an amount of 42 to 46% by weight of the total covered yarn, and high performance polyethylene in an amount of 14 to 18% by weight of the total covered yarn.
16. 1. A method for manufacturing a coated support glove, comprising: placing a 21 to 28 gauge knitted liner into a hand-shaped former; applying an aqueous coagulant solution to the knitted liner; dipping the knitted liner in a polymer emulsion of 60 to 100 PHR nitrile-butadiene polymer blend to form a polymer coating on the knitted liner; and curing the polymer coating to form a coated support glove such that the coated area of the liner has a thickness of 0.7 mm to 1.2 mm. the knitted liner comprises a plurality of finger components, a thumb component, a back component, and a palm component; The method wherein the braided liner comprises a covering yarn of 350 denier or less comprising a tungsten core having a diameter of 25 to 35 microns, a polyamide wrapping yarn disposed on the tungsten core, and a high performance polyethylene wrapping yarn disposed on the polyamide wrapping yarn.
17. 17. The method of claim 16, wherein the liner is 21 to 23 gauge.
18. The method of claim 16, wherein the liner is single knit.
19. 17. The method of claim 16, wherein the polymer emulsion has a viscosity of between 300 and 2000 centipoise during the dipping step.
20. The method of claim 16, wherein the polymer emulsion comprises 35 to 46% total solids.
Citation Information
Patent Citations
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