Non-silicone compositions for hard surface polishing applications

Non-silicone surfactant compositions address the availability and cost issues of silicone by providing effective shine and protection for hard surfaces, offering a durable and detergent-resistant alternative.

WO2025178708A1PCT designated stage Publication Date: 2025-08-28BASF SE +1
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Patent Information

Application Number
PCT/US2025/012516
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-02-22
Filing Date
2025-01-22
Publication Date
2025-08-28

AI Technical Summary

Technical Problem

The availability and cost of silicone-based compounds for hard surface applications have been disrupted, necessitating a need for lower-cost and more accessible alternatives that provide appearance enhancing and protectant properties.

Method used

The use of non-silicone compositions comprising water insoluble surfactants, such as fatty alcohol ethoxylates and polyoxyethylene-polyoxypropylene block polymers, applied to substrates like stainless steel, brass, metal, wood, and plastic, to impart shine and protection.

Benefits of technology

These compositions offer a cost-effective and readily available solution with gloss enhancing and surface protecting properties, along with longevity and resistance to water and detergents.

✦ Generated by Eureka AI based on patent content.

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Abstract

Described herein are methods of applying aqueous and non-aqueous compositions to substrates including a material selected from the group of stainless steel, brass, metal, wood, plastic, stone, and combinations thereof. The compositions are free of silicones and include an effective amount of a water insoluble surfactant, such as a fatty alcohol ethoxylate, a polyoxyethylene-polyoxypropylene block polymer, or mixtures thereof, and a suitable carrier.
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Description

NON-SILICONE COMPOSITIONS FOR HARD SURFACE POLISHING APPLICATIONSCROSS-REFERENCE TO RELATED APPLICATIONS

[0001] This application claims the benefit of U.S. Provisional Application No.63 / 556,441 , filed February 22, 2024, which is incorporated herein by reference in its entirety.FIELD

[0002] The present disclosure relates to methods of applying compositions comprising water insoluble surfactants to various substrate surfaces to provide appearance enhancing and protectant properties. More specifically, the present disclosure relates to methods of applying non-silicone compositions comprising water insoluble surfactants, such as fatty alcohol ethoxylates, polyoxyethylene-polyoxypropylene block polymers, and combinations thereof, to substrates comprising a material selected from the group of stainless steel, brass, metal, wood, plastic, stone, and combinations thereof.BACKGROUND

[0003] Silicone-based compounds, such as polydimethylsiloxane, are traditionally used in dispersions and emulsions to provide or impart an aesthetically desired shiny and / or darkening in hard surface applications, such as wood or furniture care, automobile and marine polishes, and stainless steel and other metal polishes. In recent years, however, silicone fluids have been difficult to procure due to issues with imports and plant shutdowns, as well as price increases.

[0004] Non-silicone materials, such as glycerin or polyalkylene glycol-based dressings and protectants, are also available as alternatives to silicone-based materials when such materials are undesirable. However, lower cost and more readily available nonsilicone-based options are needed.SUMMARY

[0005] The present disclosure provides for imparting appearance enhancing and protectant properties to a surface by applying compositions comprising water insoluble surfactants.

[0006] Various aspects of the disclosure relate to a use or method of use of a composition, comprising an effective amount of a water insoluble surfactant and a suitable carrier, as a coating or polish for a substrate.

[0007] In various aspects, the water insoluble surfactant may be selected from fatty alcohol ethoxylates, polyoxyethylene-polyoxypropylene block polymers, and mixtures thereof.

[0008] In various aspects, the composition may be free of silicone.

[0009] In various aspects, the composition may be aqueous or non-aqueous.

[0010] Various aspects of the disclosure relate to a method of using a composition comprising an effective amount of a water insoluble surfactant and a suitable carrier, the method comprising applying the composition to a substrate comprising a material selected from the group of stainless steel, brass, metal, wood, plastic, stone, and combinations thereof.DETAILED DESCRIPTION

[0011] Approximating language, as used herein throughout the specification and claims, may be applied to modify any quantitative representation that could permissibly vary without resulting in a change in the basic function to which it is related. Accordingly, a value modified by a term or terms, such as “about”, is not limited to the precise value specified. In at least some instances, the approximating language may correspond to the precision of an instrument for measuring the value. Range limitations may be combined and / or interchanged, and such ranges are identified and include all the sub-ranges stated herein unless context or language indicates otherwise. Other than in the operating examples or where otherwise indicated, all numbers or expressions referring to quantities of ingredients, reaction conditions and the like, used in the specification and the claims, are to be understood as modified in all instances by the term “about”.

[0012] “Optional” or “optionally” means that the subsequently described event or circumstance may or may not occur, or that the subsequently identified material may or may not be present, and that the description includes instances where the event or circumstance occurs or where the material is present, and instances where the event or circumstance does not occur, or the material is not present.

[0013] As used herein, the terms “comprises”, “comprising”, “includes”, “including”, “has”, “having”, or any other variation thereof, are intended to cover a nonexclusiveinclusion. For example, a process, method, article or apparatus that comprises a list of elements is not necessarily limited to only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.

[0014] As used herein, the term “consisting of” excludes any element, step, or ingredient not specified. If in the claim, such would close the claim to the inclusion of materials other than those recited except for impurities ordinarily associated therewith. When the phrase “consisting of” appears in a clause of the body of a claim, rather than immediately following the preamble, it limits only the element set forth in that clause; other elements are not excluded from the claim as a whole.

[0015] Where an invention or a portion thereof is defined with an open-ended term such as “comprising,” it should be readily understood that (unless otherwise stated) the description should be interpreted to also describe such an invention using the term “consisting of.”

[0016] Further, unless expressly stated to the contrary, “or” refers to an inclusive or and not to an exclusive or. For example, a condition A or B is satisfied by any one of the following: A is true (or present) and B is false (or not present), A is false (or not present) and B is true (or present), and both A and B are true (or present).

[0017] Also, the indefinite articles “a” and “an” preceding an element or component of the invention are intended to be nonrestrictive regarding the number of instances (i.e. occurrences) of the element or component. Therefore “a” or “an” should be read to include one or at least one, and the singular word form of the element or component also includes the plural unless the number is obviously meant to be singular.

[0018] As used herein, the term “wt%” refers to a percent by weight of the recited component relative to a total weight of the recited composition.

[0019] The methods disclosed herein may provide a lower cost and more readily available alternative or replacement for silicone fluids for application as appearance enhancing (shine, gloss, wet look) dressings and protectants for various hard surfaces in, for example, auto care applications. More specifically, the compositions and methods disclosed herein may provide a non-silicone-based compound having gloss enhancing and surface protecting properties, as well as longevity and water and / or detergent resistance.

[0019] As used herein, the term “an effective amount” refers to any amount of a water insoluble surfactant that is effective in imparting appearance enhancing and protective properties to a substrate surface.

[0020] As used herein, the term “co-surfactant” refers to a surfactant that may be used in compositions of the present disclosure, in combination with, for example, the primary water insoluble surfactant to improve the emulsification of the ingredients.

[0021] In various aspects of the present disclosure, a composition for providing appearance enhancing and protectant properties to a surface or substrate is disclosed. In various aspects, the composition may include an effective amount of one or more water insoluble surfactants and a suitable carrier. In various aspects, the composition may be in the form of a polishing composition.

[0022] In some aspects, the composition may include any amount of a water insoluble surfactant that is effective in providing appearance enhancing and protectant properties to a surface. In some aspects, the water insoluble surfactant may be present in an amount of between about 5% to about 60% by weight of the composition, or about 5%, 10%, 15%, 20%, 25%, 30%, 35%, 40%, 45%, 50%, 55%, or 60% by weight of the composition, or any amount that falls between any of these percentages.

[0023] In various aspects, suitable water insoluble surfactants may include any water insoluble surfactant compounds that are effective in imparting appearance enhancing and protectant properties to the composition of the disclosure. In some aspects, suitable water insoluble surfactants may be cationic, anionic, zwitterionic or nonionic. In some aspects, suitable water insoluble surfactants may include, but are not limited to, nonionic surfactant compounds, such as low-foaming nonionic surfactants, including surfactants selected from fatty alcohol ethoxylates, such as C16-C18 alkoxylates, C13-C15 alkoxylates, C12-C14 alkoxylates, C12-C15 alkoxylates, C4 alkoxylates, or mixtures thereof, polyoxyethylene-polyoxypropylene block polymers, such as alkyl and alkenyl alkoxylates of the type R-EOn / POm in which R are generally linear or branched C6-C30 alkyl radicals, or C8-C20 alkyl radicals, EO is an ethylene oxide unit and PO is a propylene oxide unit, the sequential arrangement of EO and PO being arbitrary, and n and m independently of one another being >1 and <100, or >3 and <50, or alkylphenol ethoxylates, EO / PO block copolymers, or mixtures thereof.

[0024] In various aspects, suitable water insoluble surfactants may be characterized by a hydrophilic-lipophilic balance (HLB) of less than about 6.0, or less than about 6.0, about 5.0, about 4.0, about 3.0, about 2.0 or about 1.0, or any HLB between any of these values.

[0025] In various aspects, the compositions of the disclosure may be aqueous or nonaqueous. In some aspects, the compositions of the disclosure may include a suitablecarrier, such as an aqueous or non-aqueous solvent carrier.

[0026] In some aspects, the compositions of the disclosure may be in the form of an aqueous mixture comprising the water insoluble surfactant and an aqueous carrier. The aqueous mixture may include a co-surfactant to emulsify and / or couple the water insoluble surfactant to form an aqueous emulsion. In various aspects, suitable cosurfactants may include any surfactant effective in emulsifying and / or coupling the water insoluble surfactant to form an aqueous emulsion.

[0027] In some aspects, suitable co-surfactants may include an HLB in a range of from about 8.0 to about 14.0. In some aspects, suitable co-surfactants may be characterized by an HLB of at least about 8.0, about 9.0, about 10.0, about 11.0, about 12.0, or about 13.0. In various aspects, suitable co-surfactants may be characterized by an HLB of at most about 9.0, about 10.0, about 11.0, about 12.0, about 13.0, or about 14.0.

[0028] In some aspects, suitable co-surfactants are selected from castor oil ethoxylates, hydrogenated castor oil ethoxylates, oleyl alcohol (fatty alcohol) ethoxylates, tridecyl alcohol ethoxylates, nonyl phenol ethoxylates, tallow amine ethoxylates, linear alcohol ethoxylates, lauryl alcohol ethoxylates, C10 Guerbet alcohol alkoxylates, decyl alcohol ethoxylates, dodecyl alcohol ethoxylates, ethylhexyl alkoxylates, octyl phenol ethoxylates, polyoxyethylene-polyoxypropylene block copolymers, alkoxylated fatty alcohols, polyethylene glycol (PEG) esters, fatty amine ethoxylates, ethoxylated glyceryl esters, fatty alcohol ethoxylates, ethoxylates, alkoxylates, glycerol esters, ethoxylated sorbitan ester, quaternary ammonium compounds, aliphatic amines, and combinations thereof.

[0029] In other aspects, the compositions may be in the form of a non-aqueous dispersion or emulsion comprising the water insoluble surfactant and a non-aqueous solvent carrier. Suitable non-aqueous solvent carriers may include, but are not limited to, glycol ethers, alcohols, mineral spirits and mixtures thereof.

[0030] In various aspects, the compositions of the present disclosure may include limited amounts of silicone. As used herein, “silicone” refers to silicone-based compounds, such as polydimethylsiloxane and the like.

[0031] In some aspects, the compositions include silicone. In some aspects, the compositions include silicone in an amount in a range of from about 0 wt% to about 50 wt%. In some aspects, the compositions include silicone in an amount in a range of from about 0 wt% to about 30 wt%.

[0032] In some aspects, the compositions include silicone in an amount of at least about 0 wt%, about 0.1 wt%, about 0.2 wt%, about 0.3 wt%, about 0.4 wt%, about 0.5 wt%, about 0.6 wt%, about 0.7 wt%, about 0.8 wt%, about 0.9 wt%, about 1.0 wt%, about 1.1 wt%, about 1.2 wt%, about 1.3 wt%, about 1.4 wt%, about 1.5 wt%, about 1 .6 wt%, about 1 .7 wt%, about 1 .8 wt%, about 1 .9 wt%, about 2.0 wt%, about 2.5 wt%, about 3.0 wt%, about 3.5 wt%, about 4.0 wt%, about 4.5 wt%, about 5.0 wt%, about5.5 wt%, about 6.0 wt%, about 6.5 wt%, about 7.0 wt%, about 7.5 wt%, about 8.0 wt%, about 8.5 wt%, about 9.0 wt%, about 9.5 wt%, about 10.0 wt%, about 11 wt%, about 12 wt%, about 13 wt%, about 14 wt%, about 15 wt%, about 16 wt%, about 17 wt%, about 18 wt%, about 19

[0033] wt%, about 20.0 wt%, about 21 wt%, about 22 wt%, about 23 wt%, about 24 wt%, about 25 wt%, about 26 wt%, about 27 wt%, about 28 wt%, about 29 wt%, about 30.0 wt%, about 31 wt%, about 32 wt%, about 33 wt%, about 34 wt%, about 35 wt%, about 36 wt%, about 37 wt%, about 38 wt%, about 39 wt%, about 40.0 wt%, about 41 wt%, about 42 wt%, about 43 wt%, about 44 wt%, about 45 wt%, about 46 wt%, about 47 wt%, about 48 wt%, or about 49 wt%. In some aspects, the compositions include silicone in an amount of at most about 0.1 wt%, about 0.2 wt%, about 0.3 wt%, about 0.4 wt%, about 0.5 wt%, about 0.6 wt%, about 0.7 wt%, about 0.8 wt%, about 0.9 wt%, about 1.0 wt%, about 1.1 wt%, about 1.2 wt%, about 1.3 wt%, about 1.4 wt%, about1 .5 wt%, about 1 .6 wt%, about 1 .7 wt%, about 1 .8 wt%, about 1 .9 wt%, about 2.0 wt%, about 2.5 wt%, about 3.0 wt%, about 3.5 wt%, about 4.0 wt%, about 4.5 wt%, about 5.0 wt%, about 5.5 wt%, about 6.0 wt%, about 6.5 wt%, about 7.0 wt%, about 7.5 wt%, about 8.0 wt%, about 8.5 wt%, about 9.0 wt%, about 9.5 wt%, about 10.0 wt%, about 11 wt%, about 12 wt%, about 13 wt%, about 14 wt%, about 15 wt%, about 16 wt%, about 17 wt%, about 18 wt%, about 19 wt%, about 20.0 wt%, about 21 wt%, about 22 wt%, about 23 wt%, about 24 wt%, about 25 wt%, about 26 wt%, about 27 wt%, about 28 wt%, about 29 wt%, about 30.0 wt%, about 31 wt%, about 32 wt%, about 33 wt%, about 34 wt%, about 35 wt%, about 36 wt%, about 37 wt%, about 38 wt%, about 39 wt%, about 40.0 wt%, about 41 wt%, about 42 wt%, about 43 wt%, about 44 wt%, about 45 wt%, about 46 wt%, about 47 wt%, about 48 wt%, about 49 wt%, or about 50 wt%.

[0034] In various aspects, the compositions of the present disclosure may be free of silicone.

[0035] In various aspects, the present disclosure may include a method for using acomposition, the method comprising applying a composition comprising an effective amount of a water insoluble surfactant to a surface or substrate. In some aspects, the present disclosure may include a method for forming a protective coating on a surface or substrate comprising applying a composition comprising an effective amount of a water insoluble surfactant to the surface or substrate. In some aspects, suitable surfaces and substrates for application of the composition of the disclosure may include any surface or substrate that would benefit from the appearance enhancement and protectant properties of the composition of the disclosure.

[0036] In some aspects, suitable surfaces or substrates for application of the composition of the disclosure may include one or more materials selected from stainless steel, brass, metal, wood, plastic, stone, and combinations thereof.

[0037] In some aspects, suitable surfaces or substrates for application of the composition of the disclosure may include one or more of stainless steel, brass, metal, wood, plastic, stone, and the like.

[0038] In various aspects, compositions of the present disclosure may be in the form of a formulation selected from polish compositions, wax compositions, metal polish formulations, stainless steel polish formulations, automotive polish formulations, automotive wax formulations, boat polish formulations, boat wax formulations, wood polish formulations, furniture polish formulations, countertop polish formulations, and combinations thereof.

[0039] Generally, a metal polish formulation is a formulation used in metal polishing, which is a process of refining, smoothing, and shining metal surfaces using abrasives and other tools. Metal polishing can be used for aesthetic or functional purposes, such as cleaning, restoring, or enhancing the appearance of metals. It can also prevent oxidation and corrosion that could damage the metal. Metal polishing involves rubbing the metal against different grit sizes of abrasive materials until the desired level of reflectivity and clarity is achieved.

[0040] Generally, a stainless steel polish formulation is a product or recipe that shines and protects stainless steel surfaces. It can remove various types of dirt, stains, and fingerprints from appliances, cookware, sinks, and more. Stainless steel polish formulations can come in different forms, such as powders, creams, sprays, aerosols, and wipes. Some stainless steel polish formulations are plant-based, natural, or solvent-free, while others are chemical-based. Some stainless steel polish formulations also leave a protective barrier or a streak-free shine on the stainless steel.

[0041] Generally, an automotive polish formulation is a formulation applied to an automobile for polishing. Automotive polish is an abrasive liquid that is used to remove a thin layer of clear coat paint. It can be applied by hand or using a dual-action machine polisher. The function is used to remove light defects, enhance gloss, and in some cases to prepare the surface for ceramic coating.

[0042] Generally, an automotive wax formulation is a formulation applied to an automobile for waxing. Automotive wax is non-abrasive and is used to protect paintwork from the environment. Waxing is often performed after polishing.

[0043] Generally, a boat polish formulation is a formulation applied to a boat for polishing. Boat polish is an abrasive liquid that is used to remove oxidation and other imperfections from the gel coat of a boat. It is designed to restore the shine and luster to the gel coat after it has become dull or faded over time.

[0044] Generally, a boat wax formulation is a formulation applied to a boat for waxing. Car wax is non-abrasive and is used to protect the gel coat from UV rays, saltwater, and other environmental factors that can cause damage over time.

[0045] Generally, a wood polish formulation is a formulation used in wood polishing, which is a process of cleaning, protecting, and shining wood.

[0046] Generally, a furniture polish formulation is a formulation used in furniture polishing, which is a process of cleaning, protecting, and shining furniture. Many furniture polish formulations are suitable for use with wooden furniture or wooden furniture surfaces. Many furniture polish formulations are also suitable for use on other hard surfaces, such as hard surfaces made of plastic, stone, or metal, to impart shine.

[0047] Generally, a countertop polish formulation is a formulation used in countertop polishing, which is a process of cleaning, protecting, and shining countertops. Countertops may include different substrate materials, such as wood, plastic, laminated composites, composites, stone, and combinations thereof.

[0048] In some aspects, the method may include applying a composition comprising any amount of a water insoluble surfactant that is effective in providing appearance enhancing and protectant properties to the surface or substrate. In some aspects, the water insoluble surfactant may be present in an amount of between about 5% to about 60% by weight of the composition, or about 5%, 10%, 15%, 20%, 25%, 30%, 35%, 40%, 45%, 50%, 55%, or 60% by weight of the composition, or any amount that falls between any of these percentages.

[0049] In various aspects, suitable water insoluble surfactants may include any waterinsoluble surfactant compounds that are effective in imparting appearance enhancing and protectant properties to the composition of the disclosure. In some aspects, suitable water insoluble surfactants may be cationic, anionic, zwitterionic or nonionic. In some aspects, suitable water insoluble surfactants may include nonionic surfactant compounds, such as low-foaming nonionic surfactants, including surfactants selected from fatty alcohol ethoxylates, such as C16-C18 alkoxylates, C13-C15 alkoxylates, C12- C14 alkoxylates, C12-C15 alkoxylates, C4 alkoxylates, or mixtures thereof, polyoxyethylene-polyoxypropylene block polymers, such as alkyl and alkenyl alkoxylates of the type R-EOn / POm in which R are generally linear or branched C6-C30 alkyl radicals, or C8-C20 alkyl radicals, EO is an ethylene oxide unit and PO is a propylene oxide unit, the sequential arrangement of EO and PO being arbitrary, and n and m independently of one another being >1 and <100, or >3 and <50, or alkylphenol ethoxylates, EO / PO block copolymers, or mixtures thereof.

[0050] In various aspects, suitable water insoluble surfactants may be characterized by an HLB of less than about 6.0, or less than about 6.0, about 5.0, about 4.0, about 3.0, about 2.0 or about 1 .0, or any HLB between any of these values.

[0051] In some aspects, suitable water insoluble surfactants may be quaternary ammonium compounds (quats). Quats are cationic. Use of quats may increase adsorption of the compositions to substrate surfaces due to their cationic charge.

[0052] In various aspects of the disclosed method, the compositions may be aqueous or non-aqueous. In some aspects, the compositions may include a suitable carrier, such as an aqueous or non-aqueous solvent carrier.

[0053] In some aspects, the compositions may be in the form of an aqueous mixture comprising the water insoluble surfactant and an aqueous carrier. The aqueous mixture may include a co-surfactant to emulsify and / or couple the water insoluble surfactant to form an aqueous emulsion. In various aspects, suitable co-surfactants may include any surfactant effective in emulsifying and / or coupling the water insoluble surfactant to form an aqueous emulsion.

[0054] In some aspects, suitable co-surfactants may include an HLB in a range of from about 8.0 to about 14.0. In some aspects, suitable co-surfactants may be characterized by an HLB of at least about 8.0, about 9.0, about 10.0, about 11.0, about 12.0, or about 13.0. In various aspects, suitable co-surfactants may be characterized by an HLB of at most about 9.0, about 10.0, about 11.0, about 12.0, about 13.0, or about 14.0.

[0055] In some aspects, suitable co-surfactants are selected from castor oil ethoxylates, hydrogenated castor oil ethoxylates, oleyl alcohol (fatty alcohol) ethoxylates, tridecyl alcohol ethoxylates, nonyl phenol ethoxylates, tallow amine ethoxylates, linear alcohol ethoxylates, lauryl alcohol ethoxylates, C10 Guerbet alcohol alkoxylates, decyl alcohol ethoxylates, dodecyl alcohol ethoxylates, ethylhexyl alkoxylates, octyl phenol ethoxylates, polyoxyethylene-polyoxypropylene block copolymers, alkoxylated fatty alcohols, polyethylene glycol (PEG) esters, fatty amine ethoxylates, ethoxylated glyceryl esters, fatty alcohol ethoxylates, ethoxylates, alkoxylates, glycerol esters, ethoxylated sorbitan ester, quaternary ammonium compounds, aliphatic amines, and combinations thereof.

[0056] In other aspects, the compositions may be in the form of a non-aqueous dispersion or emulsion comprising the water insoluble surfactant and a non-aqueous solvent carrier. Suitable non-aqueous solvent carriers may include glycol ethers, alcohols, mineral spirits and mixtures thereof.

[0057] In various aspects of the disclosed method, the compositions may be free of silicone-based compounds, such as polydimethylsiloxane and the like.EXAMPLES

[0058] The present technology will be further described in the following examples, which should be viewed as being illustrative and should not be construed to narrow the scope of the present disclosure or limit the scope to any particular embodiments. Example 1

[0059] Water-Based Formulas

[0060] Benchmark 1 : 60% Water-Based Emulsion

[0061] A benchmark 1 emulsion was prepared by mixing a silicone compound (Silicone 350 cst) with an emulsifier and water to form a silicone fluid emulsion.

[0062] Benchmark 2: 60% Water-Based Emulsion

[0063] A benchmark 2 emulsion was prepared by mixing a silicone compound (Silicone 1000 cst) with an emulsifier and water to form a silicone fluid emulsion.

[0064] Emulsion 1 : 60% Water-Based Emulsion

[0065] An Emulsion 1 was prepared by mixing an alcohol alkoxylate with an alkyl polyethylene glycol ether (Guerbet Alcohol Ethoxylate, 9 mol EO) and water.

[0066] Emulsion 2: 60% Water-Based Emulsion

[0067] An Emulsion 2 was prepared by mixing an ethylene oxide and propylene oxideblock copolymer (Ethylene Oxide / Propylene Oxide Block Copolymer, 20% EO) with an alkyl polyethylene glycol ether (Guerbet Alcohol Ethoxylate, 7 mol EO) and water.

[0068] The compositions of the benchmark 1 emulsion, benchmark 2 emulsion, and Emulsions 1 and 2 are shown in Table 1 below.Table 1. Water-Based Formulas.

[0069] The benchmark 1 emulsion and Emulsions 1 and 2 were also diluted to 20% and 10% Example 2

[0070] Water Based Formula Testing

[0071] The water based emulsions of Example 1 were applied to a tire wall, and the ease of rub, tackiness, shine, and darkening effects of each emulsion were evaluated. The results are shown below in Table 2.Table 2. Water Based Formula TestingExample 3

[0072] Base Emulsions

[0073] Various emulsions according to the present disclosure were prepared according to the below table. These exemplary emulsions are demonstrative and nonlimiting.Example 4

[0074] Formulations

[0075] Various formulations according to the present disclosure were prepared according to the below tables. These exemplary formulations are demonstrative and nonlimiting.

[0076] Furniture and wood polish formulations:

[0077] Other co-surfactants suitable for furniture and wood polish formulations include castor oil ethoxylates, hydrogenated castor oil ethoxylates, oleyl alcohol (fatty alcohol) ethoxylates, tridecyl alcohol ethoxylates, nonyl phenol ethoxylates, tallow amine ethoxylates, methyl oxirane copolymers (e.g., Meroxapol® 174), lauryl alcohol ethoxylates, C12-C14 and C10-C16 alcohol ethoxylates, C13-C15 alcohol ethoxylates, C10 Guerbet alcohol alkoxylates, decyl alcohol ethoxylates, dodecyl alcohol ethoxylates, ethylhexyl alkoxylates, C9-C11 alcohol ethoxylates, octyl phenol ethoxylates, polyoxyethylene-polyoxypropylene block co-polymers, alkoxylated fatty alcohols, PEG esters, fatty amine ethoxylates, C12-C15 alcohol ethoxylates, ethoxylated glyceryl esters, fatty alcohol ethoxylates, glycerol esters, ethoxylated sorbitan ester, quaternary ammonium compounds, aliphatic amines, or combinations thereof.

[0078] Stainless steel and other metal polish formulations:

[0079] Other co-surfactants suitable for stainless steel and other metal polish formulations include castor oil ethoxylates, hydrogenated castor oil ethoxylates, oleyl alcohol (fatty alcohol) ethoxylates, tridecyl alcohol ethoxylates, nonyl phenol ethoxylates, tallow amine ethoxylates, methyl oxirane copolymers (e.g., Meroxapol® 174), lauryl alcohol ethoxylates, C12-C14 and C10-C16 alcohol ethoxylates, C13-C15 alcohol ethoxylates, C10 Guerbet alcohol alkoxylates, decyl alcohol ethoxylates, dodecyl alcohol ethoxylates, ethylhexyl alkoxylates, C9-C11 alcohol ethoxylates, octyl phenol ethoxylates, polyoxyethylene-polyoxypropylene block co-polymers, alkoxylated fatty alcohols, PEG esters, fatty amine ethoxylates, C12-C15 alcohol ethoxylates, ethoxylated glyceryl esters, fatty alcohol ethoxylates, glycerol esters, ethoxylated sorbitan ester, quaternary ammonium compounds, aliphatic amines, or combinations thereof.

[0080] Automotive and boat wax and polish formulations:

[0081] Other co-surfactants suitable for automotive and boat wax and polish formulations include castor oil ethoxylates, hydrogenated castor oil ethoxylates, oleylalcohol (fatty alcohol) ethoxylates, tridecyl alcohol ethoxylates, nonyl phenol ethoxylates, tallow amine ethoxylates, methyl oxirane copolymers (e.g., Meroxapol® 174), lauryl alcohol ethoxylates, C12-C14 and C10-C16 alcohol ethoxylates, C13-C15 alcohol ethoxylates, C10 Guerbet alcohol alkoxylates, decyl alcohol ethoxylates, dodecyl alcohol ethoxylates, ethylhexyl alkoxylates, C9-C11 alcohol ethoxylates, octyl phenol ethoxylates, polyoxyethylene-polyoxypropylene block co-polymers, alkoxylated fatty alcohols, PEG esters, fatty amine ethoxylates, C12-C15 alcohol ethoxylates, ethoxylated glyceryl esters, fatty alcohol ethoxylates, glycerol esters, ethoxylated sorbitan ester, quaternary ammonium compounds, aliphatic amines, or combinations thereof.

[0082] It was discovered herein that compositions and methods in accordance with the present disclosure may provide a non-silicone-based compound having gloss enhancing and surface protecting properties, as well as longevity and water and / or detergent resistance.

[0083] While embodiments of the present disclosure have been described, it should be understood that the present disclosure is not so limited, and modifications may be made without departing from the present disclosure. The scope of the present disclosure is defined by the appended claims, and all devices, processes, and methods that come within the meaning of the claims, either literally or by equivalence, are intended to be embraced therein.

Claims

CLAIMSWhat is claims is:1 . A method of using an aqueous composition comprising an effective amount of a water insoluble surfactant and a suitable carrier, the method comprising applying the aqueous composition to a substrate comprising a material selected from the group of stainless steel, brass, metal, wood, plastic, stone, and combinations thereof.

2. The method of claim 1 , wherein the water insoluble surfactant is selected from the group of fatty alcohol ethoxylates, polyoxyethylene-polyoxypropylene block polymers, and combinations thereof.

3. The method of claim 1 , wherein the water insoluble surfactant is characterized by an HLB of less than 6.0.

4. The method of claim 1 , wherein the aqueous composition further comprises silicone in an amount less than or equal to 50 wt%.

5. The method of claim 1 , wherein the aqueous composition is free of silicone.

6. The method of claim 1 , wherein the water insoluble surfactant is present in an amount of about 5% to about 60% by weight of the aqueous composition.

7. The method of claim 1 , wherein the aqueous composition further comprises a cosurfactant.

8. The method of claim 7, wherein the aqueous composition is in the form of an emulsion.

9. The method of claim 1 , wherein the carrier comprises water.

10. The method of claim 1 , wherein the aqueous composition is in the form of a formulation selected from polish compositions, wax compositions, metal polish formulations, stainless steel polish formulations, automotive polish formulations, 5 automotive wax formulations, boat polish formulations, boat wax formulations, wood polish formulations, furniture polish formulations, countertop polish formulations, and combinations thereof.

11. A method of using a non-aqueous composition comprising an effective amount of a water insoluble surfactant and a suitable carrier, the method comprising applying the non10 aqueous composition to a substrate comprising a material selected from the group of stainless steel, brass, metal, wood, plastic, stone, and combinations thereof.

12. The method of claim 11 , wherein the water insoluble surfactant is selected from the group of fatty alcohol ethoxylates, polyoxyethylene-polyoxypropylene block polymers, and combinations thereof.

13. The method of claim 11 , wherein the carrier is selected from the group of glycol ethers, alcohols, mineral spirits, aliphatic solvents, aromatic solvents, and mixtures thereof.

14. The method of claim 11 , wherein the water insoluble surfactant is present in an amount of about 5% to about 60% by weight of the non-aqueous composition.

15. The method of claim 11 , wherein the composition is in the form of a dispersion or emulsion.

16. The method of claim 11 , wherein the composition further comprises silicone in an amount less than or equal to 50 wt%.

17. The method of claim 11 , wherein the composition is free of silicone.

18. The method of claim 11 , wherein the non-aqueous composition is in the form of a formulation selected from polish compositions, wax compositions, metal polish formulations, stainless steel polish formulations, automotive polish formulations, automotive wax formulations, boat polish formulations, boat wax formulations, wood polish formulations, furniture polish formulations, countertop polish formulations, and combinations thereof.

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