Water-soluble film and article containing same
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2023-03-09
- Publication Date
- 2026-03-16
AI Technical Summary
The existing water-soluble membranes tend to become brittle during storage and transportation, resulting in damage, and after contact with the bleach composition, residual problems are easily arising.
A water-soluble film consisting of 70% to 100% of the povidoneol copolymer and plasticizer, including sorbitol and glycerol, is used, and when the film contains starch, the plasticizer is sorbitol and glycerol.
After contacting the bleach, the water-soluble film can maintain at least 25% tensile fracture performance and the residual value is less than 3, significantly reducing the brittleness and residual problems of the film.
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Abstract
Description
[Technical field]
[0001] CROSS-REFERENCE TO RELATED APPLICATIONS This application claims the benefit under 35 U.S.C. §119(e) of U.S. Provisional Patent Application No. 63 / 321,892, filed March 21, 2022, the entire disclosure of which is incorporated herein by reference.
[0002] The present disclosure relates generally to water-soluble films and related articles. More specifically, the present disclosure relates to water-soluble films suitable for forming unit dosage articles that include a bleaching agent. [Background technology]
[0003] Water-soluble polymeric films are commonly used as packaging materials to simplify the dispersion, injection, dissolution and administration of materials to be delivered. Advantageously, this provides accurate dosing while eliminating the need for users to measure compositions. This pouched composition can also reduce the mess that may be associated with dispensing similar compositions from containers, such as pouring compositions from bottles. In short, the soluble pre-measured polymeric film pouch provides convenience in a variety of applications.
[0004] Bleaching agents such as persulfates are typically used to bleach hair proteins. Persulfates themselves are not water-soluble, have low viscosity, and do not adhere well to hair to allow the bleaching process to be completed. Often, persulfates are combined with water-soluble polymers such as polyvinyl alcohol, cellulose, starch, and other synthetic water-soluble / swellable polymer systems to increase viscosity and hold the bleaching agent on the hair while the bleaching process is taking place, and then rinsed off the hair later.
[0005] However, these polymer / bleach compositions are hygroscopic, creating obstacles for the primary and secondary packaging of the bleach / polymer compositions. The polymers can draw moisture from the primary and secondary packaging materials, so that during storage, the primary and secondary packaging materials can become brittle and break during transportation or if dropped by the end user. Furthermore, when primary packaging, such as single unit dose pouches for the bleach / polymer compositions, is prepared from water-soluble polymers, the bleach / polymer compositions compete with the water-soluble polymer of the packaging for the available water in the resulting aqueous solution, resulting in non-solubilized residues of the primary packaging materials.
[0006] Thus, a need exists in the art to provide a water-soluble film for the primary packaging of bleach / polymer compositions that can demonstrate reduced residue after contact with bleach and can demonstrate reduced brittleness. Summary of the Invention
[0007] One aspect of the present disclosure provides a water-soluble film for packaging an oxidizing agent, the film comprising a water-soluble mixture of a polyvinyl alcohol resin and a plasticizer, the polyvinyl alcohol resin comprising about 70% to about 100% polyvinyl alcohol copolymer comprising maleate units, based on the total weight of the polyvinyl alcohol resin, (a) when the polyvinyl alcohol copolymer comprises less than 100% of the polyvinyl alcohol resin, the remainder of the polyvinyl alcohol resin is a polyvinyl alcohol homopolymer, (b) when the polyvinyl alcohol copolymer comprises 100% of the polyvinyl alcohol resin, the film comprising a starch (c) the polyvinyl alcohol resin comprises a blend of a polyvinyl alcohol copolymer and a polyvinyl alcohol homopolymer, (i) the polyvinyl alcohol copolymer is provided in an amount ranging from about 70% to about 90% by weight, based on the total weight of the polyvinyl alcohol resin, and (ii) when the film comprises starch, the film does not comprise sorbitol and / or glycerol, and after the film is stored in contact with a bleaching agent for 8 weeks at 38° C. and 50% relative humidity (RH), the film is characterized by an elongation at break of at least about 25%.
[0008] Another aspect of the present disclosure provides a water-soluble unit dose article comprising at least one compartment and, optionally, a composition contained within the compartment, wherein the unit dose article comprises a water-soluble film of the present disclosure, wherein the film is characterized by an elongation at break of at least about 25% after storage in contact with a bleaching agent at 38° C. and 50% relative humidity (RH) for 8 weeks, and wherein the water-soluble film constitutes at least one wall of the compartment.
[0009] With respect to the compositions and methods described herein, it is contemplated that optional features, including but not limited to components, compositional ranges thereof, substituents, conditions, and steps, are selected from the various aspects, embodiments, and examples provided herein.
[0010] Further aspects and advantages will become apparent to those skilled in the art from consideration of the following detailed description in conjunction with the drawings. While the films, articles, pouches, and methods of making and using them are susceptible to embodiment in various forms, the following description includes specific embodiments, with the understanding that the disclosure is illustrative and is not intended to limit the invention to the specific embodiments described herein. [Brief description of the drawings]
[0011] To further facilitate understanding of the present invention, six drawings are attached hereto.
[0012] [Figure 1] An example of a Grade 0 residue value is shown. [Diagram 2] An example of a Grade 1 residue value is shown. [Diagram 3] An example of a Grade 2 residue value is shown. [Figure 4] An example of a Grade 3 residue value is shown. [Diagram 5] An example of a Grade 4 residue value is shown. [Figure 6] An example of a Grade 5 residue value is shown. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0013] The present disclosure provides water-soluble films for packaging oxidizing agents, articles prepared from such water-soluble films, and methods of making and using the same. The water-soluble films of the present disclosure include a water-soluble mixture of a polyvinyl alcohol resin and a plasticizer, the polyvinyl resin including about 70% to about 100% polyvinyl alcohol copolymer including maleate units, based on the total weight of the polyvinyl alcohol resin; (a) when the polyvinyl alcohol copolymer constitutes less than 100% of the polyvinyl alcohol resin, the remainder of the polyvinyl alcohol resin comprises polyvinyl alcohol homopolymer; (b) when the polyvinyl alcohol copolymer constitutes 100% of the polyvinyl alcohol resin and the film contains starch, the plasticizers include sorbitol and glycerol; (c) the polyvinyl alcohol resin comprises a blend of a polyvinyl alcohol copolymer and a polyvinyl alcohol homopolymer, (i) the polyvinyl alcohol copolymer is provided in an amount ranging from about 70% by weight to about 90% by weight based on the total weight of the polyvinyl alcohol resin, (ii) when the film comprises starch, the film does not comprise sorbitol and / or glycerol; The film is characterized by an elongation at break of at least about 25% after being stored in contact with bleach for 8 weeks at 38° C. and 50% relative humidity (RH).
[0014] As described below, the films described herein and pouches prepared therefrom surprisingly provide one or more advantages, including, but not limited to, (a) an elongation of at least 25% as determined according to the elongation test disclosed herein, and / or (b) a residue value of less than 3 as determined according to the residue test disclosed herein. In embodiments, the films of the present disclosure and pouches prepared therefrom demonstrate at least the advantage (a) described above. In some embodiments, the films of the present disclosure and pouches prepared therefrom demonstrate at least the advantage (b) described above. In some embodiments, the films of the present disclosure and pouches prepared therefrom demonstrate each of (a) and (b).
[0015] "Comprising" as used herein means various components, ingredients, or steps that may be used together in the practice of the present disclosure. Thus, the term "comprising" encompasses the more restrictive terms "consisting essentially of" and "consisting of". The composition may comprise, consist essentially of, or consist of any of the required and optional elements disclosed herein. For example, a packet may "consist essentially of" the film described herein while including a secondary film (e.g., a lid portion) and optional markings on the film, for example, by inkjet printing. The inventions illustratively disclosed herein may be suitably practiced in the absence of any element or step not specifically disclosed herein.
[0016] Films such as those made according to the present disclosure are defined by the polymer industry (Encyclopedia of Polymer Science and Technology, John Wiley & Sons, Inc., 1967, Vol. 6, page 764) as "molded plastics that are relatively thin in relation to their extent and width, having a maximum thickness of 0.010 inches."
[0017] A self-supporting film is one that is capable of supporting its own weight. A uniform film refers to a film that is substantially free of breaks, tears, holes, bubbles, and streaks.
[0018] To be considered a water-soluble film according to the present disclosure, a film having a thickness of about 1.5 mils (about 0.038 mm) dissolves in 300 seconds or less in water at a temperature of 20° C. (68° F.) according to MonoSol Test Method MSTM-205.
[0019] As used herein, the terms packet and pouch should be considered interchangeable. In certain embodiments, the terms packet and pouch are each used to refer to a container made using a film, preferably a sealed container that encloses a material therein, for example in the form of a metered dose delivery system. Sealed pouches can be made in any suitable manner, including processes and features such as heat sealing, solvent welding, and adhesive sealing (e.g., using water-soluble adhesives).
[0020] Unless otherwise specified, all percentages, parts and ratios are based on the total dry weight of the formed film composition and all measurements are made at about 25° C. Unless otherwise specified, all such weights as they pertain to listed ingredients are based on the active level and, therefore, do not include carriers or by-products that may be included in commercially available materials.
[0021] All ranges described herein include all possible subset ranges and any combination of such subset ranges. By default, ranges include the endpoints described unless otherwise stated. When a range of values is provided, it is understood that each intervening value between the upper and lower limits of the range, and any other stated or intervening value within the described range, is encompassed within the disclosure. The upper and lower limits of these smaller ranges may be independently included within the smaller ranges, and are also encompassed within the disclosure, subject to any specifically excluded limit in the described range. When a described range includes one or both of these limits, it is contemplated that ranges excluding either or both of these included limits are also part of the disclosure.
[0022] The dimensions and values disclosed herein should not be understood as being strictly limited to the exact numerical values recited. Instead, unless otherwise specified, each such dimension is intended to include both the recited value and a functionally equivalent range surrounding that value. For example, a dimension disclosed as "15 mm" is intended to include "about 15 mm," which may include a range of, for example, 14.5 mm to 15.4 mm, depending on the numerical rounding.
[0023] As used herein, and unless otherwise specified, the terms "weight percent (wt.%)" and "weight percent (wt%)" are intended to refer to the composition of a particular element in "dry" (anhydrous) parts by weight of the total film (if applicable), or parts by weight of the total composition contained within the pouch (if applicable). As used herein, and unless otherwise specified, the term "PHR" is intended to refer to the composition of a particular element in parts per 100 parts water-soluble polymer (or resin, whether polyvinyl alcohol or not) in the water-soluble film.
[0024] The film may be made by a solution casting process. The film may be used to form an article or pouch by any suitable process, including thermoforming, e.g., solvent or heat sealing of the film layer around the article. The pouch may be used, for example, to deposit materials that are delivered to bulk water.
[0025] The films, articles, pouches, and related methods of making and using are intended to include embodiments that include any combination of one or more of the elements, features, and steps further described below (including those shown in the examples and drawings), unless otherwise stated.
[0026] Water-soluble film The films and related articles and pouches described herein can include a plasticized water-soluble film. The water-soluble film can be solvent cast. The film optionally further includes one or more additives selected from fillers, surfactants, antiblocking agents, antioxidants, antifoaming agents, bleaching agents, aversive agents, irritants, other functional ingredients, and combinations of the foregoing. In one embodiment, the water-soluble film can include about 50% by weight of PVOH resins, including one or more PVOH polymers.
[0027] The film can have any suitable thickness, with film thicknesses of about 76 micrometers (μm) or 88 micrometers being typical and specifically contemplated. Other values and ranges contemplated include values within the range of about 5 to about 200 μm, or about 20 to about 100 μm, or about 60 to about 120 μm, or about 70 to about 100 μm, or about 40 to about 90 μm, or about 50 to about 80 μm, or about 60 to about 65 μm, or about 20 to about 60 μm, or about 20 to about 50 μm, or about 30 to about 40 μm, such as about 35 μm, about 36 μm, about 50 μm, about 65 μm, about 76 μm, about 88 μm, or about 90 μm.
[0028] PVOH resin The films described herein can include one or more polyvinyl alcohol (PVOH) polymers and can include PVOH copolymer resins to make up the PVOH resin content of the film.
[0029] Polyvinyl alcohol is a synthetic resin generally prepared by alcoholysis of polyvinyl acetate, commonly referred to as hydrolysis or saponification. Fully hydrolyzed PVOH, in which substantially all acetate groups have been converted to alcohol groups, is a strongly hydrogen-bonded, highly crystalline polymer that dissolves only in hot water above about 140°F (about 60°C). If a sufficient number of acetate groups are allowed to remain after hydrolysis of polyvinyl acetate, i.e., the PVOH polymer is partially hydrolyzed, then the polymer is less hydrogen-bonded, less crystalline, and generally soluble in cold water below about 50°F (about 10°C). Thus, the partially hydrolyzed polymer is a vinyl alcohol-vinyl acetate copolymer, generally referred to as homopolymer PVOH, although it is a PVOH copolymer.
[0030] Specifically, the PVOH resin can include a partially or fully hydrolyzed PVOH copolymer that includes anionic monomer units, vinyl alcohol monomer units, and, optionally, vinyl acetate monomer units. In various embodiments, the anionic monomer units are vinyl acetate, alkyl acrylate, maleic acid, monoalkyl maleate, dialkyl maleate, monomethyl maleate, dimethyl maleate, maleic anhydride, fumaric acid, monoalkyl fumarate, dialkyl fumarate, monomethyl fumarate, dimethyl fumarate, itaconic acid, monomethyl itaconate, dimethyl itaconate, itaconic anhydride, citraconic acid, monoalkyl citraconate, dialkyl citraconate, citraconic anhydride, mesaconic acid, monoalkyl mesaconate, dialkyl mesaconate, glutaconic acid, monoalkyl glutaconate, dialkyl glutamate, butyl ... The anionic monomer may be one or more of the following: taconate, glutaconic anhydride, vinyl sulfonic acid, alkyl sulfonic acid, ethylene sulfonic acid, 2-acrylamido-1-methylpropanesulfonic acid, 2-acrylamido-2-methylpropanesulfonic acid, 2-methylacrylamido-2-methylpropanesulfonic acid, 2-sulfoethyl acrylate, alkali metal salts of the foregoing (e.g., sodium, potassium, or other alkali metal salts), esters of the foregoing (e.g., methyl, ethyl, or other C1-C4 or C6 alkyl esters), and combinations of the foregoing (e.g., multiple types of anionic monomers or equivalent forms of the same anionic monomer). For example, the anionic monomer may include one or more of monomethyl maleate and its alkali metal salts (e.g., sodium salt).
[0031] In one type of embodiment, the PVOH is a carboxyl group modified copolymer. In another aspect, the PVOH can be modified with a dicarboxyl type monomer. In one class of these embodiments, the alpha carbon of the carbonyl is in contact with an unsaturated bond (e.g., maleic acid, fumaric acid). In another class of these embodiments, the alpha carbon of the carbonyl is in contact with an unsaturated bond with a methyl branch (e.g., citraconic acid, mesaconic acid). In another class of these embodiments, the beta carbon of the carbonyl is in contact with an unsaturated bond (e.g., itaconic acid, cis-glutaconic acid, trans-glutaconic acid). Monomers that provide alkyl carboxyl groups are contemplated. Maleate type (e.g., dialkyl maleate, including monomethyl maleate) or itaconate type (e.g., itaconic acid) comonomers are particularly contemplated. In embodiments, the maleate units of the polyvinyl alcohol copolymer comprising maleate units can comprise maleic acid, a monoalkyl maleate, a dialkyl maleate, maleic anhydride, an alkali metal salt of any of the foregoing, an ester of any of the foregoing, or a combination of any of the foregoing.
[0032] In an embodiment, the polyvinyl alcohol resin comprises a polyvinyl alcohol copolymer comprising maleate units. In a refinement of the above embodiment, the polyvinyl alcohol copolymer comprising maleate units may comprise one or more monomer units selected from maleic acid, monoalkyl maleates, dialkyl maleates, maleic anhydride, and alkali metal salts thereof. The polyvinyl alcohol copolymer comprising maleate units may be a partially or fully hydrolyzed copolymer of polyvinyl acetate and maleic anhydride. In embodiments, the polyvinyl alcohol copolymer comprising maleate units comprises at least 0.5 mol% maleate modification and up to about 10 mol% maleate modification, e.g., about 1 mol%, about 1.5 mol%, about 1.75 mol%, about 2 mol%, about 2.4 mol%, about 2.5 mol%, about 2.8 mol%, about 3 mol%, about 3.2 mol%, about 3.5 mol%, about 3.8 mol%, about 4 mol%, about 4.2 mol%, about 4.5 mol%, about 5 mol%, about 6 mol%, about 7 mol%, about 8 mol%, about 9 mol%, or about 10 mol%, e.g., about 0.5 mol% to about 10 mol%, about 1.5 mol% to about 8 mol%, about 2 mol% to about 6 mol%, or about 3 mol% to about 5 mol% maleate modification.
[0033] In embodiments where the polyvinyl alcohol resin comprises a blend of polyvinyl alcohol polymers or copolymers, at least one of the polyvinyl alcohol polymers may comprise a polyvinyl alcohol copolymer comprising maleate units. In some embodiments, the polyvinyl alcohol resin may comprise about 70% to about 100% by weight of the polyvinyl alcohol copolymer comprising maleate units, based on the total weight of the polyvinyl alcohol resin. In embodiments, when the polyvinyl alcohol copolymer comprising maleate units constitutes less than 100% by weight of the polyvinyl alcohol resin, the remainder of the blend may comprise a polyvinyl alcohol homopolymer. In embodiments comprising a blend of polyvinyl alcohol copolymers comprising maleate units and polyvinyl alcohol homopolymer, the polyvinyl alcohol copolymer comprising maleate units and polyvinyl alcohol homopolymer may generally be provided in any ratio. In embodiments, the polyvinyl alcohol copolymer comprising maleate units may be provided in an amount within the range of about 70% to about 90% by weight of the polyvinyl alcohol resin blend, based on the total weight of the polyvinyl alcohol resin. In embodiments, the polyvinyl alcohol copolymer comprising maleate units may be provided in an amount ranging from about 70% to about 90% by weight of the polyvinyl alcohol resin blend, with the polyvinyl alcohol homopolymer making up the remainder of the resin blend. In embodiments, the polyvinyl alcohol copolymer comprising maleate units may be provided in an amount ranging from about 70% to about 100% by weight, based on the total weight of the polyvinyl alcohol resin, for example, in the range of about 70% to about 95%, about 70% to about 90%, about 70% to about 85%, about 70% to about 80%, for example, about 75%, based on the total weight of the polyvinyl alcohol resin, with the polyvinyl alcohol homopolymer making up the remainder of the polyvinyl alcohol resin. In embodiments, the polyvinyl alcohol resin consists of, or consists essentially of, the polyvinyl alcohol copolymer comprising maleate units and the polyvinyl alcohol homopolymer.
[0034] The amount of PVOH resin in the film can be, for example, in the range of about 55 to about 95 weight percent, or about 60 to 90 weight percent, or about 65 to about 85 weight percent, based on the total weight of the film.
[0035] The total PVOH resin content of the film can have a degree of hydrolysis (DH or DH) of at least 80%, 84%, or 85%, and up to about 99.7%, 98%, or 96%, e.g., in the range of about 84% to about 90%, or 85% to 88%, or 86.5%, or 88% to 95%, or about 89% to 93%, or 89.5% to 92%, e.g., about 89%, about 90%, about 92%, about 93%, about 94%, about 95%, or about 96%. As used herein, the degree of hydrolysis is expressed as the mole percentage of vinyl acetate units converted to vinyl alcohol units.
[0036] In embodiments including polyvinyl alcohol copolymers, such as polyvinyl alcohol copolymers containing maleate units, the degree of hydrolysis of the copolymer can be in the range of about 70% to about 100%, or about 80% to about 99%, or about 85% to about 98%, or about 88% to about 98%, or about 88% to about 94%, or about 88% to about 92%.
[0037] In embodiments including polyvinyl alcohol homopolymers, the degree of hydrolysis of the copolymers can be in the range of about 70% to about 99%, or about 75% to about 95%, or about 78% to about 90%, or about 80% to about 90%, or about 85% to about 90%. In embodiments, the polyvinyl alcohol homopolymers can have a degree of hydrolysis in the range of about 85% to about 90% or about 86% to about 89%.
[0038] The degree of hydrolysis of the resin blend may also be characterized by the arithmetically weighted average degree of hydrolysis.
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[0039] The viscosity (μ) of the PVOH polymer is determined by measuring freshly made solutions using a Brookfield LV type viscometer with a UL adapter as described in the British Standard ENISO 15023-2:2006 Annex E Brookfield Test method. It is international practice to state the viscosity of a 4% (w / v) aqueous polyvinyl alcohol solution at 20°C. All viscosities specified in centipoise (cP) herein should be understood to refer to the viscosity of a 4% (w / v) aqueous polyvinyl alcohol solution at 20°C, unless otherwise specified. Similarly, when a resin is described as having (or not having) a particular viscosity, it is intended that the specified viscosity is the average viscosity of the resin essentially having the corresponding molecular weight distribution, unless otherwise specified.
[0040] Suitable PVOH resins for use individually or in combination have a viscosity of from about 3 cP to about 40 cP, or from about 5 cP to about 38 cP, or from about 10 cP to about 36 cP, or from about 10 cP to about 20 cP, or from about 12 cP to about 20 cP, or from about 14 cP to about 19 cP, or from about 3 cP to about 30 cP, or from about 5 cP to about 25 cP, or from about 5 cP to about 15 cP, or from about 5 cP to about 10 cP, Alternatively, the viscosity may be within the range of about 5 cP to about 7 cP, or about 12 cP to about 34 cP, or about 14 cP to about 32 cP, or about 18 cP to about 30 cP, or about 20 cP to about 28 cP, or about 21 cP to about 26 cP, for example, 32 cP, or 26 cP, or 23.5 cP, or 21 cP, or 19 cP, or 16.5 cP, or 14 cP, or 6 cP. The viscosity of the PVOH resin is determined by the weight average molecular weight of the PVOH resin.
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[0041] In embodiments including a polyvinyl alcohol homopolymer, the polyvinyl alcohol homopolymer can have a viscosity in the range of about 3 cP to about 30 cP, or about 5 cP to about 25 cP, or about 5 cP to about 15 cP, or about 5 cP to about 10 cP, or about 5 cP to about 7 cP. In embodiments, the polyvinyl alcohol homopolymer can have a viscosity in the range of about 5 cP to about 10 cP, or about 5 cP to about 7 cP.
[0042] Other water-soluble polymers for use in addition to the PVOH copolymer in the film may include, but are not limited to, polyacrylates, water-soluble acrylate copolymers, polyvinylpyrrolidone, polyethyleneimine, pullulan, water-soluble natural polymers including, but not limited to, guar gum, gum acacia, xanthan gum, carrageenan, pectin, amylopectin, alginic acid and salts thereof, and starch, water-soluble polymer derivatives including, but not limited to, modified starch, ethoxylated starch, and hydroxypropylated starch, copolymers of the foregoing, and combinations of any of the foregoing. Still other water-soluble polymers may include polyalkylene oxides, polyacrylamides, polyacrylic acids and salts thereof, cellulose, cellulose ethers, cellulose esters, cellulose amides, polyvinyl acetates, polycarboxylic acids and salts thereof, polyamino acids, polyamides, gelatin, methylcellulose, carboxymethylcellulose and salts thereof, dextrin, ethylcellulose, hydroxyethylcellulose, hydroxypropylmethylcellulose, maltodextrin, polymethacrylates, and combinations of any of the foregoing. In embodiments, the film may comprise polyethyleneimine, polyvinylpyrrolidone, polyalkylene oxides, polyacrylamides, cellulose ethers, cellulose esters, cellulose amides, polyvinyl acetates, polyamides, gelatin, methylcellulose, carboxymethylcellulose, carboxymethylcellulose salts, dextrin, ethylcellulose, hydroxyethylcellulose, hydroxypropylmethylcellulose, maltodextrin, starch, modified starch, guar gum, gum acacia, xanthan gum, carrageenan, polyacrylates, polyacrylate salts, and copolymers of any of such water soluble polymers previously described, PVOH or otherwise, which are commercially available from a variety of sources.
[0043] Plasticizer A plasticizer is a liquid, solid, or semi-solid that is added to a material (usually a resin or elastomer) to make it softer, more flexible, and easier to process (by decreasing the glass transition temperature of the polymer). At low plasticizer levels, the film may become brittle, difficult to process, or prone to breaking. At high plasticizer levels, the film may be too soft, weak, or difficult to process for the desired use. Water is recognized as a very efficient plasticizer for PVOH and other polymers, including but not limited to water-soluble polymers, but the volatility of water limits its usefulness because polymer films must have at least some resistance (robustness) to a variety of ambient conditions, including low and high relative humidity.
[0044] The water-soluble film of the present disclosure further comprises a plasticizer. The plasticizer may include, but is not limited to, glycerol, diglycerol, sorbitol, ethylene glycol, diethylene glycol, triethylene glycol, dipropylene glycol, tetraethylene glycol, propylene glycol, polyethylene glycols up to 400 MW, neopentyl glycol, trimethylolpropane (TMP), polyether polyols, 2-methyl-1,3-propanediol (e.g., MP Diol®), ethanolamine, and mixtures thereof. In some embodiments, the plasticizer is selected from glycerol, diglycerol, propylene glycol, ethylene glycol, diethylene glycol, dipropylene glycol, polyethylene glycols up to 400 MW, sorbitol, 2-methyl-1,3-propanediol, trimethylolpropane, polyether polyols, and combinations of the foregoing. In one type of embodiment, the plasticizer is selected from the group of sorbitol, glycerol, propylene glycol, 2-methyl-1,3-propanediol, trimethylolpropane, dipropylene glycol, and combinations thereof. In one type of embodiment, the plasticizer is selected from glycerol, propylene glycol, sorbitol, 2-methyl-1,3-propanediol, and combinations thereof. In another type of embodiment, the plasticizer comprises glycerol, sorbitol, or combinations thereof. In one type of embodiment, the plasticizer is selected from the group of triethylene glycol, sorbitol, glycerol, diglycerin, ethylene glycol, diethylene glycol, dipropylene glycol, tetraethylene glycol, propylene glycol, polyethylene glycols up to 400 Da molecular weight, hexylene glycol, xylitol, 2-methyl-1,3,propanediol, ethanolamine, or combinations thereof. In one type of embodiment, the plasticizer comprises triethylene glycol, polyethylene glycol having a molecular weight of about 200 Da, sorbitol, glycerol, or a combination thereof.In one type of embodiment, the plasticizer comprises triethylene glycol, polyethylene glycol having a molecular weight of about 200 Da, or a combination thereof.
[0045] The total amount of non-aqueous plasticizer can be in the range of about 10 to about 40 parts by weight per 100 parts of PVOH resin (PHR), or about 15 to about 23 PHR, or about 18 to about 23 PHR, or about 25 to about 30 PHR, for example, about 21 PHR, about 22 PHR, about 23 PHR, about 25 PHR, about 27 PHR, or about 28 PHR. In embodiments, the plasticizer can be provided in an amount in the range of about 15 to about 40 PHR, about 18 to about 23 PHR, or about 25 to about 30 PHR. In embodiments, the plasticizer can include triethylene glycol, polyethylene glycol having a molecular weight of about 200 Da, or a combination thereof, and can be provided in the range of about 18 to about 23 PHR. In embodiments, the plasticizer can include triethylene glycol, polyethylene glycol having a molecular weight of about 200 Da, sorbitol, glycerol, or combinations thereof, and can be provided in an amount ranging from about 25 to about 30 PHR.
[0046] The water-soluble film can contain auxiliary and processing agents such as, but not limited to, surfactants, lubricants, release agents, fillers, extenders, crosslinkers, antiblocking agents, antioxidants, detackifying agents, antifoaming agents (defoamers), nanoparticles such as layered silicate-type nanoclays (e.g., sodium montmorillonite), bleaching agents (e.g., sodium metabisulfite, sodium bisulfite, etc.), aversive agents such as bittering agents (e.g., denatonium salts such as denatonium benzoate, denatonium saccharide, and denatonium chloride; sucrose octaacetate; quinine; flavonoids such as quercetin and naringen; and quassinoids such as quassin and brucine), and irritants (e.g., capsaicin, piperine, allyl isothiocyanate, and resinferratoxin), and other functional ingredients in amounts suitable for their intended purpose.
[0047] Suitable surfactants may include nonionic, cationic, anionic, and zwitterionic classes.Suitable surfactants include, but are not limited to, polyoxyethylene polyoxypropylene glycols, alcohol ethoxylates, alkylphenol ethoxylates, tertiary acetylene glycols, and alkanolamides (nonionic), polyoxyethylene amines, quaternary ammonium salts, and quaternized polyoxyethylene amines (cationic), as well as amine oxides, N-alkyl betaines, and sulfobetaines (zwitterionic).Other suitable surfactants include dioctyl sodium sulfosuccinate, lactylated fatty acid esters of glycerol and propylene glycol, lactylated esters of fatty acids, sodium alkyl sulfates, polysorbate 20, polysorbate 60, polysorbate 65, polysorbate 80, lecithin, acetylated fatty acid esters of glycerol and propylene glycol, and acetylated esters of fatty acids, and combinations thereof. In various embodiments, the amount of surfactant in the water-soluble film can be in the range of, for example, about 0.1% to 4.0% by weight, or about 1.0% to 3.0% by weight, or about 1.5% to about 2.5% by weight, or about 0.1 PHR to about 9 PHR, or about 0.1 to about 8 PHR, or about 0.1 to about 6 PHR, or about 0.5 PHR to about 2.9 PHR, or about 0.5 PHR to about 1.5 PHR, or about 1 PHR to about 6 PHR, or about 1.5 PHR to about 5 PHR, or about 2 PHR to about 4 PHR.
[0048] Suitable fillers / bulking agents / antiblocking agents / detackifiers include, but are not limited to, starch, modified starch, crosslinked polyvinylpyrrolidone, crosslinked cellulose, microcrystalline cellulose, silica, metallic oxides, calcium carbonate, talc, mica, stearic acid and its metal salts, such as magnesium stearate. Preferred materials are starch, modified starch, and silica. When included in the water-soluble film, the starch, modified starch, and / or silica can be provided in the range of about 1 PHR to about 35 PHR, or about 5 PHR to about 30 PHR, about 20 PHR to about 30 PHR, or about 10 PHR to about 15 PHR, or about 23 PHR to about 27 PHR, such as less than about 30 PHR, less than about 20 PHR, or about 15 PHR. In some embodiments, the film can be substantially free of starch, modified starch, and / or silica. As used herein, and unless otherwise stated, "substantially free of starch, modified starch, and / or silica" refers to a film in which starch, modified starch, and / or silica are present in an amount less than about 500 ppm, e.g., less than about 400 ppm, less than about 300 ppm, less than about 200 ppm, or less than about 100 ppm.
[0049] The antiblocking agent (e.g., stearic acid or a salt thereof), if present in the film, may be present in the film in an amount ranging from at least 0.1 PHR, or at least 0.5 PHR, or at least 1 PHR, or from about 0.1 to 5.0 PHR, or from about 0.1 to about 3.0 PHR, or from about 0.4 to 1.0 PHR, or from about 0.5 to about 0.9 PHR, or from about 0.2 to about 0.8 PHR, or from about 0.5 to about 1.5 PHR, for example, 0.4 PHR, 0.5 PHR, 0.6 PHR, 0.7 PHR, 0.8 PHR, or 0.9 PHR.
[0050] Processes for solvent casting of PVOH are known in the art. For example, in a film-forming process, polyvinyl alcohol resin and secondary additives are dissolved in a solvent, typically water, metered onto a surface, substantially dried (or forced dried) to form a cast film, and then the resulting cast film is removed from the casting surface. The process can be carried out in batches, but is more efficient in a continuous process.
[0051] In forming a continuous film of polyvinyl alcohol, it is conventional practice to meter a solution of the solution onto a moving casting surface, such as a continuously moving metal drum or belt, allow the solvent to be substantially removed from the liquid, thereby forming a self-supporting cast film, and then strip the resulting cast film from the casting surface.
[0052] Optionally, the water-soluble film can be a self-supporting film consisting of one layer or multiple similar layers.
[0053] In embodiments, the water-soluble film can include a polyvinyl alcohol resin, where the polyvinyl alcohol copolymer containing maleate units constitutes 100% of the polyvinyl alcohol polymer in the resin, the starch, and the plasticizer comprises sorbitol and glycerol. In embodiments, the water-soluble film can include a polyvinyl alcohol resin including a blend of polyvinyl alcohol polymers, where the polyvinyl alcohol copolymer containing maleate units constitutes about 70% to about 90% by weight of the polyvinyl alcohol polymer in the resin blend, based on the total weight of the resin blend, with the remainder of the polyvinyl alcohol polymer in the resin blend comprising a polyvinyl alcohol homopolymer, the film further includes starch, and the film does not include sorbitol and / or glycerol.
[0054] Without intending to be bound by theory, it is believed that when a film comprises a polyvinyl alcohol resin comprising 100% polyvinyl alcohol copolymer containing maleate units, the introduction of starch into the film reduces the elongation at break and produces a more brittle film after storage in contact with bleach. However, without intending to be bound by theory, it is believed that the presence of sorbitol and / or glycerol in the film helps to negate the effect of starch on the elongation at break, thereby providing a film that is more robust to breakage relative to a film comprising 100% polyvinyl alcohol copolymer containing maleate units and starch without sorbitol and glycerol.
[0055] Further, without intending to be bound by theory, it is believed that when the film comprises a polyvinyl alcohol resin comprised of about 70% to about 90% polyvinyl alcohol copolymer containing maleate units and 10% to 30% polyvinyl alcohol homopolymer, the incorporation of starch into the film reduces the elongation at break and results in a more brittle film after storage in contact with bleach. However, without intending to be bound by theory, it has been found that when sorbitol and / or glycerol are included in a film comprising about 70% to about 90% polyvinyl alcohol copolymer comprising maleate units and about 10% to about 30% polyvinyl alcohol copolymer, as opposed to a film comprising 100% polyvinyl alcohol copolymer, the presence of sorbitol and / or glycerol results in a decrease in the elongation at break, thereby providing a more brittle and susceptible to breakage, relative to a film comprising about 70% to about 90% polyvinyl alcohol copolymer comprising maleate units and about 10% to about 30% polyvinyl alcohol copolymer and starch, without the sorbitol and / or glycerol.
[0056] The water-soluble film of the present disclosure can be characterized by breaking elongation, as determined according to the elongation test herein.Generally, the water-soluble film of the present disclosure has a breaking elongation of at least about 25%, for example, at least about 50%, at least about 75%, at least about 100%, at least about 125%, at least about 150%, at least about 175%, at least about 200%, or at least about 225%.Without intending to be bound by theory, it is believed that the increasing breaking elongation, as determined according to the elongation test herein, reduces the brittleness of the film after storing in contact with bleaching agent, thereby providing the unit dose package prepared from the water-soluble film and containing bleaching agent with resilience against breaking during shipping and when dropped by end user. In an embodiment, the water-soluble film of the present disclosure may have an elongation at break within the range of about 25% to about 500%, about 25% to about 250%, about 50% to about 500%, about 50% to about 400%, about 50% to about 300%, about 50% to about 250%, about 100% to about 500%, about 100% to about 400%, about 100% to about 300%, about 100% to about 250%, about 150% to about 500%, about 150% to about 400%, about 150% to about 300%, about 150% to about 250%, about 200% to about 500%, about 200% to about 300%, or about 300% to about 250%.
[0057] The water-soluble films of the present disclosure may also be characterized by a residue value determined according to the residue test herein. In embodiments, the water-soluble films of the present disclosure may have a residue value of 3, 2, 1, or 0. In embodiments, the water-soluble films of the present disclosure may have a residue value of 3 or less. In embodiments, the water-soluble films of the present disclosure may have a residue value of 2 or less. In embodiments, the water-soluble films of the present disclosure may have a residue value of 1 or less.
[0058] In an embodiment, the water-soluble film of the present disclosure can have an elongation to break of at least 25% and a residue value of 2 or less. In an embodiment, the water-soluble film of the present disclosure can have an elongation to break of at least 25% and a residue value of 1 or less. In an embodiment, the water-soluble film of the present disclosure can have an elongation to break of at least 50% and a residue value of 3 or less. In an embodiment, the water-soluble film of the present disclosure can have an elongation to break of at least 50% and a residue value of 2 or less. In an embodiment, the water-soluble film of the present disclosure can have an elongation to break of at least 100% and a residue value of 3 or less. In an embodiment, the water-soluble film of the present disclosure can have an elongation to break of at least 100% and a residue value of 2 or less. In an embodiment, the water-soluble film of the present disclosure can have an elongation to break of at least 100% and a residue value of 1 or less. In an embodiment, the water-soluble film of the present disclosure can have an elongation to break of at least 1250% and a residue value of 2 or less. In embodiments, the water-soluble films of the present disclosure may have an elongation to break of at least 120% and a residue value of no more than 1. In embodiments, the water-soluble films of the present disclosure may have an elongation to break of at least 200% and a residue value of no more than 3. In embodiments, the water-soluble films of the present disclosure may have an elongation to break of at least 250% and a residue value of no more than 3.
[0059] In an embodiment, the water-soluble film of the present disclosure comprises a water-soluble mixture of a polyvinyl alcohol resin and a plasticizer, the polyvinyl alcohol resin comprises about 100% by weight of a polyvinyl alcohol copolymer comprising maleate units, based on the total weight of the polyvinyl alcohol resin in the film, the plasticizer comprises sorbitol and glycerol, and the film is free of starch. In a refinement of the above embodiment, the water-soluble film is characterized by an elongation at break of at least 200% and has a residue value of 3 or less.
[0060] In an embodiment, the water-soluble film of the present disclosure comprises a water-soluble mixture of a polyvinyl alcohol resin and a plasticizer, the polyvinyl alcohol resin comprises about 100% by weight of a polyvinyl alcohol copolymer comprising maleate units, based on the total weight of the polyvinyl alcohol resin in the film, the plasticizer comprises sorbitol and glycerol, and the film comprises starch in an amount of about 30 PHR or less, based on 100 parts of polyvinyl alcohol resin. In a refinement of the foregoing embodiment, the water-soluble film is characterized by an elongation at break of at least 25% and has a residue value of 1 or less.
[0061] In an embodiment, the water-soluble film of the present disclosure comprises a water-soluble mixture of a polyvinyl alcohol resin and a plasticizer, the polyvinyl alcohol resin comprises a mixture of a polyvinyl alcohol copolymer containing maleate units and a polyvinyl alcohol homopolymer, the polyvinyl alcohol resin comprises about 75% by weight of a polyvinyl alcohol copolymer containing maleate groups based on the total weight of the polyvinyl alcohol resin in the film, the plasticizer comprises sorbitol and glycerol, and the film is free of starch. In a refinement of the foregoing embodiment, the water-soluble film is characterized by an elongation at break of at least 130% and has a residue value of 1 or less.
[0062] In an embodiment, the water-soluble film of the present disclosure comprises a water-soluble mixture of polyvinyl alcohol resin and plasticizer, the polyvinyl alcohol resin comprises a mixture of polyvinyl alcohol copolymer containing maleate units and polyvinyl alcohol homopolymer, the polyvinyl alcohol resin comprises about 75% by weight of polyvinyl alcohol copolymer containing maleate groups based on the total weight of polyvinyl alcohol resin in the film, the film comprises starch in an amount of about 30 PHR or less based on 100 parts of polyvinyl alcohol resin, and the film does not contain sorbitol or glycerol. In a refinement of the above embodiment, the water-soluble film is characterized by an elongation at break of at least 50% and has a residue value of 2 or less.
[0063] water soluble articles The film is useful, for example, for making articles and / or pouches for containing bleach compositions. The composition contained within the pouch can be in any form, such as a powder, gel, paste, liquid, tablet, or any combination thereof. The film is also useful in any other application where improved wet handling and low cold water residue is desired. The film forms at least one sidewall of the article and / or pouch, optionally the entire article and / or pouch, and preferably the outer surface of at least one sidewall.
[0064] The films described herein can also be used to make articles and / or pouches with two or more compartments, made from the same film or in combination with films of other polymeric materials. The additional film can be obtained, for example, by casting, blowing, extrusion, or extrusion-blowing of the same or different polymeric materials known in the art. In one type of embodiment, the polymers, copolymers or derivatives thereof suitable for use as the additional film are selected from polyvinyl alcohol, polyvinylpyrrolidone, polyalkylene oxide, polyacrylic acid, cellulose, cellulose ethers, cellulose esters, cellulose amides, polyvinyl acetates, polycarboxylic acids and salts, polyamino acids or peptides, polyamides, polyacrylamides, copolymers of maleic acid / acrylic acid, polysaccharides including starch and gelatin, xanthan, and natural gums such as carrageenan. For example, the polymer may be selected from polyacrylates and water soluble acrylate copolymers, methylcellulose, sodium carboxymethylcellulose, dextrin, ethylcellulose, hydroxyethylcellulose, hydroxypropylmethylcellulose, maltodextrin, polymethacrylates, and combinations thereof, or may be selected from polyvinyl alcohol, polyvinyl alcohol copolymers, and hydroxypropylmethylcellulose (HPMC), and combinations thereof. One contemplated class of embodiments is characterized by the level of polymer in the packet material, for example, the PVOH copolymer described above is at least 60%, as described above.
[0065] The article and / or pouch of the present disclosure can include at least one sealed compartment. Thus, the article and / or pouch can be composed of a single compartment or multiple compartments. The water-soluble pouch or sachet can be formed from two layers of water-soluble polymeric film sealed at the interface or by a single film folded over and sealed on itself. One or both of the films include the PVOH film described above. The film defines an internal article and / or pouch container volume that contains any desired composition for release into an aqueous environment.
[0066] The volume of the pouch container is not particularly limited. In one type of embodiment, the volume of the pouch container is 25 mL or less. In another embodiment, the volume is less than 25 mL. In another type, the volume of the pouch container is less than 50 mL.
[0067] The composition for use in the pouch is not particularly limited. In embodiments with multiple compartments, each compartment may contain the same and / or different compositions. Similarly, the composition may take any suitable form, including but not limited to liquids, solids, and combinations thereof (e.g., solids suspended in liquids). In some embodiments, the pouch comprises a first, second, and third compartment, each of which contains a different first, second, and third composition, respectively. Liquid detergents are specifically contemplated.
[0068] The compartments of the multi-compartment article and / or pouch may be of the same or different size and / or volume. The compartments of the multi-compartment article and / or pouch may be separated or joined in any suitable manner. In some embodiments, the second compartment and / or the third compartment and / or subsequent compartments are superimposed on the first compartment. In one embodiment, the third compartment may be superimposed on the second compartment, which in turn is superimposed on the first compartment in a sandwich configuration. Alternatively, the second and third compartments may be superimposed on the first compartment. However, it is also envisioned that the first, second, and optionally the third and subsequent compartments may be attached to each other in a side-by-side relationship. The compartments may be packaged in a series, with each compartment being individually separable by a perforation line. Thus, each compartment may be individually torn from the rest of the series by an end user, for example, to pre-treat or post-treat a fabric with a composition from a compartment. In some embodiments, the first compartment may be surrounded by at least a second compartment, for example, in a tire and rim configuration, or in a pouch within a pouch configuration.
[0069] The articles and / or pouches of the present disclosure may include one or more different films. For example, in single compartment embodiments, the packet may be made of one wall folded over itself and sealed at the edges, or alternatively, two walls sealed together at the edges. In multiple compartment embodiments, the articles and / or packets may be made of one or more films, such that any given packet compartment may comprise walls made of a single film or multiple films with different compositions. In one embodiment, the multi-compartment article and / or pouch comprises at least three walls: an outer top wall, an outer bottom wall, and a partition wall. The outer top wall and the outer bottom wall are generally opposed and form the exterior of the article and / or pouch. The partition wall is on the interior of the article and / or pouch and is secured to the outer walls generally opposed along the seal line. The partition wall separates the interior of the multi-compartment article and / or pouch into at least a first compartment and a second compartment.
[0070] In one embodiment, a single compartment or multiple sealed compartments contain a composition. The multiple compartments may each contain the same or different compositions. The compositions are selected from liquids, solids, or combinations thereof.
[0071] In embodiments, the present disclosure provides a unit dosage article comprising at least one compartment and, optionally, a composition contained within the compartment, wherein a wall of at least one of the compartments comprises a water-soluble film of the present disclosure.
[0072] Contents of the article and / or pouch Generally, the water-soluble article of the present disclosure can contain a household care product, a personal care product, or a non-household care product. In an embodiment, the unit dose article includes a composition contained in a compartment, the composition including an oxidizing agent. In an embodiment, the oxidizing agent includes hypochlorite, chloramine, chlorinated isocyanurate, brominated isocyanurate, chlorate, bromate, perchlorate, perbromate, calcium hydroxide, calcium chloride, percarbonate, perborate, periodate, persulfate, permanganate, chromate, bichromate, nitrate, nitrite, peroxide, ketone peroxide, peroxy acid, inorganic acid, or combination thereof. In an embodiment, the oxidizing agent includes hypochlorite, chloramine, chlorinated isocyanurate, calcium hydroxide, calcium chloride, percarbonate, perborate, persulfate, permanganate, peroxide, peroxy acid, or combination thereof.
[0073] In an embodiment, at least one wall of the water-soluble unit dose article of the present disclosure comprises a water-soluble film of the present disclosure comprising a water-soluble mixture of a polyvinyl alcohol resin and a plasticizer, the polyvinyl alcohol resin comprises about 100% by weight of a polyvinyl alcohol copolymer comprising maleate units, based on the total weight of the polyvinyl alcohol resin in the film, the plasticizer comprises sorbitol and glycerol, and the film is free of starch. In a refinement of the foregoing embodiment, the water-soluble film is characterized by an elongation at break of at least 200% and has a residue value of 3 or less.
[0074] In an embodiment, at least one wall of the water-soluble unit dose article of the present disclosure comprises a water-soluble film of the present disclosure comprising a water-soluble mixture of a polyvinyl alcohol resin and a plasticizer, the polyvinyl alcohol resin comprises about 100% by weight of a polyvinyl alcohol copolymer comprising maleate units, based on the total weight of the polyvinyl alcohol resin in the film, the plasticizer comprises sorbitol and glycerol, and the film comprises starch in an amount of about 30 PHR or less, based on 100 parts of polyvinyl alcohol resin. In a refinement of the foregoing embodiment, the water-soluble film is characterized by an elongation at break of at least 25% and has a residue value of 1 or less.
[0075] In an embodiment, at least one wall of the water-soluble unit dose article of the present disclosure comprises a water-soluble film of the present disclosure comprising a water-soluble mixture of a polyvinyl alcohol resin and a plasticizer, the polyvinyl alcohol resin comprises a mixture of a polyvinyl alcohol copolymer containing maleate units and a polyvinyl alcohol homopolymer, the polyvinyl alcohol resin comprises about 75% by weight of a polyvinyl alcohol copolymer containing maleate groups based on the total weight of the polyvinyl alcohol resin in the film, the plasticizer comprises sorbitol and glycerol, and the film is free of starch. In a refinement of the above embodiment, the water-soluble film is characterized by an elongation at break of at least 130% and has a residue value of 1 or less.
[0076] In an embodiment, at least one wall of the water-soluble unit dose article of the present disclosure comprises a water-soluble film of the present disclosure comprising a water-soluble mixture of polyvinyl alcohol resin and a plasticizer, the polyvinyl alcohol resin comprises a mixture of a polyvinyl alcohol copolymer containing maleate units and a polyvinyl alcohol homopolymer, the polyvinyl alcohol resin comprises about 75% by weight of a polyvinyl alcohol copolymer containing maleate groups based on the total weight of the polyvinyl alcohol resin in the film, the film comprises starch in an amount of about 30 PHR or less based on 100 parts of polyvinyl alcohol resin, and the film does not contain sorbitol or glycerol. In a refinement of the above embodiment, the water-soluble film is characterized by an elongation at break of at least 50% and has a residue value of 2 or less.
[0077] Breaking Elongation Test The procedure includes the determination of elongation at break based on ASTM D882 ("Standard Test Method for Tensile Properties of Thin Plastic Sheeting") or equivalent. An INSTRON® tensile testing device (Model 5544 Tensile Tester or equivalent) is used to collect film data. A minimum of three specimens, each cut with a reliable cutting tool to ensure dimensional stability and repeatability, are tested in the machine direction (MD) (if applicable) for each measurement. Testing is performed in a standard laboratory atmosphere of 23±2.0°C and 35±5% relative humidity. For the determination of elongation at break, a one-inch wide (2.54 cm) specimen of a single film sheet having a thickness of 1.4 mil±0.15 (approximately 35.6±3.8 μm) is prepared. The specimen is then conditioned in contact with persulfate as a bleaching agent at 38°C and 50% RH for 8 weeks. The sample is then transferred to an INSTRON® tensile tester for testing to proceed while minimizing exposure to a 35% relative humidity environment. The tensile tester with a 500N load cell is prepared and calibrated according to the manufacturer's instructions. The correct grips and faces are installed (INSTRON® grips with model number 2702-032 faces or equivalent that are rubber coated and 25 mm wide). The sample is placed in the tensile tester and analyzed to determine the elongation at break (i.e., where Young's modulus is applied).
[0078] Residue Testing The residue test qualitatively measures the residual polymer after storing a water-soluble film having a thickness of about 1.4 mils in contact with bleach at 38°C and 50% RH for 8 weeks. Specifically, a single pod containing about 15g of persulfate as bleach is weighed with analytical residue and the weight is recorded. The same amount of commercial hair developer sold as Redken® Pro-Oxide Cream Developer 20 Volume 6% available from Redken is weighed into a bowl. The developer is an aqueous hydrogen peroxide formulation with a liquid / cream appearance and 6% hydrogen peroxide by weight. Inactive ingredients include cetearyl alcohol, trideceth-2 carboxamide MEA, ceteareth-30, glycerin, tetrasodium etidronate, tetrasodium pyrophosphate, sodium salicylate, and phosphoric acid.
[0079] The bleach pod is added to the bowl containing the developer (1:1 weight ratio of bleach to developer) and agitated with a brush for 45 seconds. The resulting product is then pressed through a 5x5 inch screen with 1 mm openings and any residue is rinsed with methanol. The residue is allowed to dry. Once dry, an image is taken and observations are recorded, including approximate residue size and number.
[0080] The rating is made by visual observation of the residue remaining in / on the filter. The qualitative scale is 0 (no residue) to 5 (heavy residue > 4 cm). The film may be characterized by a residue value of up to about 3.0, 2.9, or 2.8, or up to about 2.7, 2.6, 2.5, 2.4, 2.3, 2.2, 2.1, or 2.0. The water-soluble polymeric film passes the residue test if the average residue rating of 16 tests is less than 3. The following scale, and corresponding photographs, were used to determine the wash residue value: [Table 1] EXAMPLES
[0081] Water-soluble films were prepared using solution casting from mixtures containing the components shown below in Table 1. The prepared films were tested for elongation and residue as described in Elongation and Residue Tests. [Table 2]
[0082] As shown in Table 1, the films of the present disclosure demonstrate one or both of the advantageous properties of an elongation to break of greater than 25% according to the elongation test described herein, and / or a residue value of 3 or less according to the residue test disclosed herein.
[0083] Because modifications and variations that are readily apparent to those skilled in the art to adapt to particular operating requirements and environments, this disclosure is not limited to the embodiments selected for illustrative purposes, but covers all such changes and variations that do not constitute a departure from the true spirit and scope of the disclosure.
[0084] Accordingly, the foregoing description is given merely for clarity of understanding, and no unnecessary limitations should be understood therefrom, since modifications within the scope of the disclosure may be apparent to those skilled in the art.
[0085] Throughout this specification, when compounds, compositions, articles, methods, and processes are described as comprising components, steps, or materials, unless otherwise stated, it is contemplated that the composition, process, or device can comprise, consist essentially of, or consist of any combination of the listed components or materials.
Claims
1. A water-soluble film for packaging an oxidizing agent, wherein the film is The material comprises a water-soluble mixture of polyvinyl alcohol resin and a plasticizer, wherein the polyvinyl alcohol resin comprises approximately 70% to approximately 100% polyvinyl alcohol copolymer, including maleate units, based on the total weight of the polyvinyl alcohol resin. (a) When the polyvinyl alcohol copolymer constitutes less than 100% of the polyvinyl alcohol resin, the remainder of the polyvinyl alcohol resin includes a polyvinyl alcohol homopolymer having a viscosity in the range of about 5 cP to about 10 cP. (b) When the polyvinyl alcohol copolymer constitutes 100% of the polyvinyl alcohol resin, and the film contains starch, the starch is provided in the range of about 20 PHR to about 30 PHR, and the plasticizer contains sorbitol and glycerol, (c) The polyvinyl alcohol resin comprises a blend of the polyvinyl alcohol copolymer and the polyvinyl alcohol homopolymer, (i) the polyvinyl alcohol copolymer is provided in an amount in the range of about 70% to about 90% by weight based on the total weight of the polyvinyl alcohol resin, and (ii) if the film contains starch, the starch is provided in an amount in the range of about 20 PHR to about 30 PHR, and the film does not contain sorbitol and / or glycerol. A water-soluble film characterized by an elongation at break of at least about 25% after being stored in contact with a bleach at 38°C and 50% relative humidity (RH) for eight weeks.
2. A water-soluble unit dose article comprising at least one compartment and optionally a composition contained within the compartment, wherein the unit dose article is A water-soluble film comprising a water-soluble film comprising a polyvinyl alcohol resin and a plasticizer, wherein the polyvinyl alcohol resin comprises approximately 70% to approximately 100% polyvinyl alcohol-comaleate polymer based on the total weight of the polyvinyl alcohol resin, (a) When the polyvinyl alcohol copolymer constitutes less than 100% of the polyvinyl alcohol resin, the remainder of the polyvinyl alcohol resin includes a polyvinyl alcohol homopolymer. (b) When the polyvinyl alcohol copolymer constitutes 100% of the polyvinyl alcohol resin and the film contains starch, the plasticizer contains sorbitol and glycerol. (c) The polyvinyl alcohol resin comprises a blend of the polyvinyl alcohol copolymer and the polyvinyl alcohol homopolymer, (i) the polyvinyl alcohol copolymer is provided in an amount in the range of about 70% to about 90% by weight based on the total weight of the polyvinyl alcohol resin, and (ii) when the film contains starch, the film does not contain sorbitol and / or glycerol. After the film is stored in contact with a bleach at 38°C and 50% relative humidity (RH) for 8 weeks, the film exhibits an elongation at break of at least about 25%. A water-soluble unit dose article wherein the water-soluble film constitutes at least one wall of the compartment.
3. A water-soluble film according to claim 1, or a water-soluble unit dose article according to claim 2, further comprising about 20 phr to about 30 phr of starch based on 100 parts of polyvinyl alcohol resin.
4. The water-soluble film according to claim 1 or the water-soluble unit dosage article according to claim 2, wherein the maleate units of the polyvinyl alcohol copolymer include maleic acid, monoalkyl maleate, dialkyl maleate, maleic anhydride, an alkali metal salt of any of the above, an ester of any of the above, or any combination of the above.
5. The water-soluble film according to claim 1 or the water-soluble unit dosage article according to claim 2, wherein the polyvinyl alcohol copolymer contains the maleate units in an amount of about 0.5 mol% to about 10 mol%, or about 1.5 mol% to about 8 mol%, about 2 mol% to about 6 mol%, or about 3 mol% to about 5 mol%, based on the total monomer units in the copolymer.
6. The water-soluble film according to claim 1 or the water-soluble unit dose article according to claim 2, wherein the polyvinyl alcohol copolymer has a degree of hydrolysis (DH) of about 70% to about 100%, or about 80% to about 99%, or about 85% to about 98%, or about 88% to about 98%, or about 88% to about 94%, or about 88% to about 92%.
7. The water-soluble film according to claim 1 or the water-soluble unit dose article according to claim 2, wherein the polyvinyl alcohol homopolymer has a DH in the range of about 70% to about 99%, or about 75% to about 95%, or about 78% to about 90%, or about 80% to about 90%, or about 85% to about 90%.
8. The water-soluble film according to claim 1 or the water-soluble unit dose article according to claim 2, wherein the plasticizer is selected from the group consisting of triethylene glycol, sorbitol, glycerol, diglycerin, ethylene glycol, diethylene glycol, dipropylene glycol, tetraethylene glycol, propylene glycol, polyethylene glycol with a maximum molecular weight of 400 Da, hexylene glycol, xylitol, 2-methyl-1,3, propanediol, ethanolamine, or combinations thereof.
9. The water-soluble film or water-soluble unit dose article according to claim 8, wherein the plasticizer comprises triethylene glycol, polyethylene glycol having a molecular weight of about 200 Da, or a combination thereof, and optionally further comprises sorbitol, glycerol, or a combination thereof.
10. The water-soluble film according to claim 1 or the water-soluble unit dose article according to claim 2, wherein the plasticizer is provided in an amount of about 15 phr to about 40 phr, or about 18 phr to about 23 phr, or about 25 phr to about 30 phr, based on 100 parts of polyvinyl alcohol resin.
11. The water-soluble film according to claim 1 or the water-soluble unit dosage article according to claim 2, wherein the film comprises a water-soluble mixture of a polyvinyl alcohol resin and a plasticizer, the polyvinyl alcohol resin comprises about 100% polyvinyl alcohol copolymer containing maleate units based on the total weight of the polyvinyl alcohol resin in the film, the plasticizer comprises sorbitol and glycerol, and the film is starch-free.
12. The water-soluble film according to claim 1 or the water-soluble unit dose article according to claim 2, wherein the film comprises a water-soluble mixture of a polyvinyl alcohol resin and a plasticizer, the polyvinyl alcohol resin comprises about 100% polyvinyl alcohol copolymer including maleate units based on the total weight of the polyvinyl alcohol resin in the film, the plasticizer comprises sorbitol and glycerol, and the film comprises about 30 PHR or less of starch based on 100 parts of the polyvinyl alcohol resin.
13. The water-soluble film according to claim 1, wherein the film comprises a water-soluble mixture of a polyvinyl alcohol resin and a plasticizer, the polyvinyl alcohol resin comprises a mixture of a polyvinyl alcohol copolymer containing maleate units and a polyvinyl alcohol homopolymer, the polyvinyl alcohol resin comprises about 75% by weight of the polyvinyl alcohol copolymer containing maleate groups based on the total weight of the polyvinyl alcohol resin, the film is starch-free, and the plasticizer comprises sorbitol and glycerol.
14. The water-soluble film according to claim 1, wherein the film comprises a water-soluble mixture of a polyvinyl alcohol resin and a plasticizer, the polyvinyl alcohol resin comprises a mixture of a polyvinyl alcohol copolymer containing maleate units and a polyvinyl alcohol homopolymer, the polyvinyl alcohol resin comprises about 75% by weight of the polyvinyl alcohol copolymer containing maleate groups based on the total weight of the polyvinyl alcohol resin, the film comprises about 30 PHR or less of starch based on 100 parts of the polyvinyl alcohol resin, and the film does not contain sorbitol or glycerol.
15. The water-soluble unit dose article according to claim 2, wherein the unit dose article comprises the composition stored in the compartment, and the composition comprises an oxidizing agent.