Patents Assigned to SUPER SKIN SYSTEMS, INC.
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Patent number: 9714363Abstract: Novel polyurea siloxane coating compositions are contemplated, the compositions being the reaction products of isocyanate prepolymers and resin blends, with the resin blends containing siloxane copolymers in addition to conventional polyurea monomer and polymer resin reactants. Specifically, it has been found that reaction products having superior gloss retention, water resistance, temperature resistance, and chemical resistance may be formed from isocyanate prepolymers and resin blends having various amounts of poly[(3-aminopropyl)methylsiloxane-co-diphenylsiloxane] in addition to aromatic and/or aliphatic polyamines.Type: GrantFiled: December 17, 2015Date of Patent: July 25, 2017Assignee: SUPER SKIN SYSTEMS, INC.Inventor: Stuart Bruce Smith
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Patent number: 9482492Abstract: A polyurea hybrid ballistic armor formed from novel cured reaction products of various diamines and polyester diols with isocyanate curing agents. The cured reaction product can absorb large amounts of energy from ballistic projectiles, and when various hard granular particles are embedded within the cured reaction product, a strike plate effect can be realized, allowing the polyurea hybrid ballistic armor to defeat ballistic projectiles. The polyurea hybrid ballistic armor can additionally be utilized to add additional layers of protection to existing armor systems.Type: GrantFiled: March 3, 2015Date of Patent: November 1, 2016Assignee: SUPER SKIN SYSTEMS, INC.Inventor: Stuart Bruce Smith
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Publication number: 20160264709Abstract: Novel polyurea prepolymer and quasi-prepolymers are contemplated, the compositions being the reaction products of various isocyanate components with various polyamine components. Isocyanate components contemplated include uretonimine-modified 4,4? methylene diphenyl diisocyanate (MDI) 4,4? MDI, 2,4? MDI, aliphatic hexamethylene diisocyanate (HDI) trimer, HDI allophanate, and aliphatic HDI biuret. Polyamine components contemplated include primary amine-terminated poly(oxypropylene), secondary isopropylamine-terminated poly(oxypropylene), tetraethyl N,N?-(methylenebis(2-methyl-4,1-cyclohexanediyl)) bisaspartate, and poly[(3-aminopropyl)methylsiloxane-co-diphenylsiloxane].Type: ApplicationFiled: March 14, 2016Publication date: September 15, 2016Applicant: SUPER SKIN SYSTEMS, INC.Inventor: STUART BRUCE SMITH
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Publication number: 20160229947Abstract: Novel polyurea prepolymer and quasi-prepolymer compositions are contemplated, the compositions being the reaction products of an isocyanate component and a secondary diamine component. Specifically, a an isocyanate component comprising uretonimine-modified 4,4? methylene diphenyl diisocyanates are reacted with various polyamines to form prepolymers or quasi-prepolymers. The isocyanate component may additionally comprise one or more other isocyanates, including pure MDI, aliphatic HDI trimer, HDI allophanate, and aliphatic HDI biuret.Type: ApplicationFiled: February 9, 2016Publication date: August 11, 2016Applicant: SUPER SKIN SYSTEMS, INC.Inventor: STUART BRUCE SMITH
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Publication number: 20160177132Abstract: Novel polyurea siloxane coating compositions are contemplated, the compositions being the reaction products of isocyanate prepolymers and resin blends, with the resin blends containing siloxane copolymers in addition to conventional polyurea monomer and polymer resin reactants. Specifically, it has been found that reaction products having superior gloss retention, water resistance, temperature resistance, and chemical resistance may be formed from isocyanate prepolymers and resin blends having various amounts of poly[(3-aminopropyl)methylsiloxane-co-diphenylsiloxane] in addition to aromatic and/or aliphatic polyamines.Type: ApplicationFiled: December 17, 2015Publication date: June 23, 2016Applicant: SUPER SKIN SYSTEMS, INC.Inventor: STUART BRUCE SMITH
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Publication number: 20160102949Abstract: A polyurea hybrid ballistic armor formed from novel cured reaction products of various diamines and polyester diols with isocyanate curing agents. The cured reaction product can absorb large amounts of energy from ballistic projectiles, and when various hard granular particles are embedded within the cured reaction product, a strike plate effect can be realized, allowing the polyurea hybrid ballistic armor to defeat ballistic projectiles. The polyurea hybrid ballistic armor can additionally be utilized to add additional layers of protection to existing armor systems.Type: ApplicationFiled: March 3, 2015Publication date: April 14, 2016Applicant: SUPER SKIN SYSTEMS, INC.Inventor: STUART BRUCE SMITH