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Surface treatment composition

a surface treatment and composition technology, applied in the direction of cati non-ionic surface active compounds, amphetamines/electroneutral surface active compounds, etc., can solve the problems of long lasting, achieve rapid drying, enhance the shine or gloss of the treated substrate, and prevent uneven distribution

Inactive Publication Date: 2015-08-13
ROBINSON GREGORY E
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

The present disclosure provides a long-lasting, non-greasy surface treatment that improves durability and enhances the appearance of substrates, such as vehicle surfaces. The treatment includes a composition that contains at least one surfactant, polish, dispersion, solvent, and emulsion. The composition dries quickly, preventing uneven distribution, and has a reduced degree of greasiness once dry. The treatment is effective for at least two years, making it a versatile option for a range of applications. Overall, the patent aims to provide a surface treatment that offers long-lasting shine and durability.

Problems solved by technology

This composition is similar to silicone products such as Armor All®, however, unexpectedly, it is much longer lasting.

Method used

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Examples

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formulation examples

[0022]A composition of the present disclosure comprises a mixture of about 35-50% water, about 0.03-0.1% Kathon CG / ICP, about 0.5-1.0% Masurf FS-230 (1%) (Proprietary), about 1.5-4.0% Michem Dispersion 91530, about 0.4-0.75% Abex—18S, about 2.5-5.0%, Diethylene Glycol Ethyl Ether, about 1.0-3.0% Tributoxyethyl Phosphate, about 30-40% Duragreen MF 1 1.5-4.0% Michem Emulsion 93235, and about 1.5-3.0% Michem Emulsion 94340. The composition of the present disclosure is generally applied at a pH of between 6.0 and 8.0.

[0023]The CAS number for water is 7732-18-5. The CAS number for Kathon CG / ICP is 10377-60-3 / 26172-55-4. The CAS number for Tributoxyethyl Phosphate is 78-51-3.

[0024]A specific embodiment of the composition of the present disclosure comprises a mixture of 43.74% water, 0.06% Kathon CG / ICP, 0.87% Masurf FS-230 (1%) (Proprietary), 2.09% Michem Dispersion 915300, 0.45% Abex—18S, 3.72%, Diethylene Glycol Ethyl Ether, 1.36% Tributoxyethyl Phosphate, 33.00% Duragreen MF 1 2.49% Mi...

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PUM

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Abstract

A composition for the treatment of surfaces including leather, vinyl, painted surfaces, fiberglass, and rubber is provided. The surface treatment composition is particularly effective as an interior / exterior vehicle and facility surface dressing. The composition is also biodegradable, non-carcinogenic, non-flammable and environmentally benign. The qualities that make this composition superior to other surface treatments are its long lasting protection, shining effects, fabric breathability (where applicable) and quick drying after application. The surface treatment has an appearance similar to mineral oil silicone-based compositions but can last for years rather than days or weeks. Unlike mineral oil and silicone-based compositions, the surface treatment of the present disclosure won't rub off on clothing, make floors slippery, or fly / spin off the surface that has been treated. The surface treatment dries in minutes, rather than hours, or never, for compositions designed for similar purposes.

Description

FIELD OF THE INVENTION[0001]The present disclosure relates to surface treatment composition that provides improved shine and protection, in addition to being environmentally safe and non-toxic.BACKGROUND OF THE INVENTION[0002]Commercially available surface treatments incorporate chemicals that are detrimental to the environment. These chemicals include surfactants, solvents, boosters and chelators. Other common ingredients in cleaning compositions detrimental to the environment include phosphates, nitrilotriacetic acid, ethylenediaminetetraacetic acid, nonylphenol ethoxylates, and heavy metals; some of which accumulate in ground water.[0003]Toxic chemicals from cleaning compositions have been found in fresh water such as ponds, lakes, and streams in high levels. Aquatic organisms, including both plants and animals, are at risk from exposure to high levels of these chemicals in water systems. Further, humans exposed to these chemicals through water systems may suffer from health prob...

Claims

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Application Information

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IPC IPC(8): C09D133/00
CPCC09D133/00C08K5/47C08K5/521C09D133/08C09D5/024C12Q1/18C11D3/08C11D1/75C11D1/94C11D1/62C11D1/88C11D3/1246C11D3/30C11D3/33C11D1/66C11D3/2093C11D3/43
Inventor ROBINSON, GREGORY E
Owner ROBINSON GREGORY E
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