Patents Assigned to EPG(Engineered nanoProducts Germany)
  • Patent number: 11505729
    Abstract: Materials from the group consisting of a) one or more hybrid materials containing an organic polymer from the group of the polyamides, polyimides and epoxy resins and an inorganic oligo- or polymer from the group of the oligo- and polysiloxanes and heterocondensates of Si with Ti, Zr and/or Al, wherein the organic and the inorganic component are covalently bound to one another, in combination with one or more inorganic sols based on silyl alkoxylates and/or titanium alkoxylates, wherein hybrid material and inorganic sol are crosslinked, b) one or more hybrid materials containing an organic polymer from the group of the polyamides, polyimides and epoxy resins and an inorganic oligo- or polymer from the group of the oligo- and polysiloxanes and heterocondensates of Si with Ti, Zr and/or Al, wherein the organic and the inorganic component are covalently bound to one another, c) one or more inorganic sols based on silyl alkoxylates and/or titanium alkoxylates and d) one or more polyamides, polyimides and/or epox
    Type: Grant
    Filed: March 10, 2017
    Date of Patent: November 22, 2022
    Assignee: EPG (ENGINEERED NANOPRODUCTS GERMANY) AG
    Inventors: Heike Schneider, Stefan Pfeifer, Ralf Kockler, Klaus Endres
  • Patent number: 11407903
    Abstract: A process for producing a coated lightweight metal substrate, in particular, an aluminium substrate, by a wet-chemical application of a coating composition to the lightweight metal substrate and thermally curing the coating composition is provided. A coating material composition is also described that is formed from a sol-gel material.
    Type: Grant
    Filed: October 21, 2016
    Date of Patent: August 9, 2022
    Assignee: EPG (Engineered nanoProducts Germany) AG
    Inventors: Ertugrul Arpac, Heike Schneider, Gunter Hoyer, Ralf Kockler, Sandra Arend
  • Patent number: 11053397
    Abstract: An anti-corrosion coating to protect against corrosion, comprising: a high-density protective coating on a substrate which is prone to corrosion, preferably metals and/or alloys thereof, containing pre-condensed coat-forming alkoxysilane precursors, wherein the molecules of the pre-condensed coat-forming alkoxysilane precursors are built up from monomer units selected from the group formed by coat-forming alkoxysilane precursors, wherein the molecules of the pre-condensed coat-forming alkoxysilane precursors are cross-linked with each other, wherein the high-density protective coating has a coating thickness of at least 50 ?m. The high-density protective coating formed by an inorganic-organic hybrid material, which is preferably produced without solvents (i.e. without the addition of solvents, in particular organic solvents), is comprised of at least one coat-forming alkoxysilane precursor, in particular selected from the group formed by trialkoxysilane precursors.
    Type: Grant
    Filed: April 17, 2019
    Date of Patent: July 6, 2021
    Assignee: EPG Engineered nanoProducts Germany AG
    Inventors: Edwin Kroke, Stefan Pfeiffer
  • Patent number: 10308817
    Abstract: The invention relates to a protection layer which is used as anticorrosion layer on corrosion-prone substrates, especially corroding metals, alloys and other materials, especially on steel, and as a basecoat for the application of further porous layer systems or as a topcoat, and to the process for production thereof and to use on a coated substrate for protection against corrosion and specifically for use against microbially induced corrosion (MIC), wherein the anticorrosion layer comprises a high-density protection layer on a corrosion-prone substrate, containing pre-condensed layer-forming alkoxysilane precursors, wherein the molecules of the pre-condensed layer-forming alkoxysilane precursors are formed from monomer units selected from the group of the triethoxysilane precursors, wherein the molecules of the pre-condensed layer-forming alkoxysilane precursors are crosslinked with one another, and wherein the high-density protection layer has a layer thickness of at least 50 ?m.
    Type: Grant
    Filed: November 7, 2014
    Date of Patent: June 4, 2019
    Assignee: EPG Engineered nanoProducts Germany AG
    Inventors: Edwin Kroke, Stefan Pfeifer
  • Patent number: 10196743
    Abstract: The invention relates to the use of a coating of a layer including an inorganic, glass-like matrix of an alkali silicate and/or alkaline earth silicate or a layer including an inorganic-organic hybrid matrix or of a double layer of a base layer including an inorganic, glass-like matrix of an alkali silicate and/or alkaline earth silicate or a base layer including an inorganic-organic hybrid matrix and an alkali silicate-free and alkaline earth silicate-free top layer including a matrix of an oxidated silicon compound as the anti-limescale coating on at least one metal surface or inorganic surface of an object or material. The anti-limescale coating can be used for storage or transport devices for water or media containing water. The anti-limescale coating is suitable for pipelines, sand control systems or safety valves in the conveyance of oil or gas or the storage of oil or gas.
    Type: Grant
    Filed: November 20, 2013
    Date of Patent: February 5, 2019
    Assignee: EPG (ENGINEERED NANOPRODUCTS GERMANY) AG
    Inventors: Klaus Endres, Christian Schmidt, Luis Genolet, Barbara Kutzky, Heike Schneider
  • Publication number: 20190023955
    Abstract: Materials from the group consisting of a) one or more hybrid materials containing an organic polymer from the group of the polyamides, polyimides and epoxy resins and an inorganic oligo- or polymer from the group of the oligo- and polysiloxanes and heterocondensates of Si with Ti, Zr and/or Al, wherein the organic and the inorganic component are covalently bound to one another, in combination with one or more inorganic sols based on silyl alkoxylates and/or titanium alkoxylates, wherein hybrid material and inorganic sol are crosslinked, b) one or more hybrid materials containing an organic polymer from the group of the polyamides, polyimides and epoxy resins and an inorganic oligo- or polymer from the group of the oligo- and polysiloxanes and heterocondensates of Si with Ti, Zr and/or Al, wherein the organic and the inorganic component are covalently bound to one another, c) one or more inorganic sols based on silyl alkoxylates and/or titanium alkoxylates and d) one or more polyamides, polyimides and/or ep
    Type: Application
    Filed: March 10, 2017
    Publication date: January 24, 2019
    Applicant: EPG (ENGINEERED NANOPRODUCTS GERMANY) AG
    Inventors: Heike Schneider, Stefan Pfeifer, Ralf Kockler, Klaus Endres
  • Patent number: 10161043
    Abstract: A process for providing a substrate having a metal, glass or ceramic surface with a vitreous layer comprising an interference pigment. The process comprises comminuting an interference pigment having at least one dielectric interference layer by a wet grinding process; dispersing the comminuted interference pigment into a silicate-containing suspension to obtain a coating composition; applying the coating composition to the surface by a wet coating process; and densifying the coating composition at a temperature of not more than 650° C.
    Type: Grant
    Filed: February 15, 2008
    Date of Patent: December 25, 2018
    Assignee: EPG (Engineered nanoProducts Germany) AG
    Inventors: Martin Mennig, Helmut Schmidt
  • Publication number: 20180305557
    Abstract: A process for producing a coated lightweight metal substrate, in particular, an aluminium substrate, by a wet-chemical application of a coating composition to the lightweight metal substrate and thermally curing the coating composition is provided. A coating material composition is also described that is formed from a sol-gel material.
    Type: Application
    Filed: October 21, 2016
    Publication date: October 25, 2018
    Applicant: EPG (Engineered nanoProducts Germany) AG
    Inventors: Ertugrul Arpac, Heike Schneider, Gunter Hoyer, Ralf Kockler, Sandra Arend
  • Patent number: 9920237
    Abstract: The invention relates to a method of stabilizing the bonding agent gelation time in the consolidation of a geological formation in the presence of one or more catalytically active substances, in which method a bonding agent is infiltrated into the formation, a portion of the infiltrated bonding agent is optionally expelled by flushing with a gas or a liquid, and the bonding agent remaining in the formation is cured. the bonding agent comprises a mixture of a) a heterocondensate, obtainable by hydrolysis and condensation of at least one hydrolyzable silicon compound and at least one metal, phosphorus or boron compound, the metal being selected from Al, Ge, Sn, Pb, Ti, Mg, Li, V, Nb, Ta, Zr and Hf, B) at least one organic polymerizable monomer or oligomer comprising a C-C double bond, and C) at least one thermal polymerization initiator without peroxide function.
    Type: Grant
    Filed: September 26, 2013
    Date of Patent: March 20, 2018
    Assignee: EPG (ENGINEERED NANOPRODUCTS GERMANY) AG
    Inventors: Helmut Schmidt, Christian Schmidt
  • Patent number: 9534297
    Abstract: Metallic substrates with a vitreous or glass-ceramic pigmented protective layer are obtainable by applying an alkali metal silicate-containing coating sol to the substrate or a surface thereof and thermally densifying the layer thus obtained, said alkali metal silicate-containing coating sol comprising an oxidic pigment of at least one element selected from the third and fourth main or subgroups of the Periodic Table of the chemical elements and the transition metals Fe, Co, Ni, Cu, Zn, Nb and Ta.
    Type: Grant
    Filed: December 23, 2009
    Date of Patent: January 3, 2017
    Assignee: EPG (ENGINEERED NANOPRODUCTS GERMANY) AG
    Inventors: Helmut Schmidt, Carsten Schmidt, Thomas Dembski
  • Patent number: 9458539
    Abstract: The invention relates to articles comprising a metal surface provided with a glass-, glass-ceramic- or ceramic-type protective layer, characterized in that the protective layer comprises a base layer comprising a matrix made of an alkali and/or alkaline earth silicate and an alkali metal- and alkaline earth metal-free top layer comprising a matrix made of an oxidic silicon compound, and to a method for the manufacture of said articles. The articles comprising the protective layer exhibit high chemical resistance and improved non-stick properties. They are characterized in particular by high dishwasher resistance.
    Type: Grant
    Filed: March 11, 2011
    Date of Patent: October 4, 2016
    Assignee: EPG (ENGINEERED NANOPRODUCTS GERMANY) AG
    Inventors: Helmut Schmidt, Carsten Ludwig Schmidt, Christian Schmidt
  • Publication number: 20150315390
    Abstract: The invention relates to the use of a coating of a layer including an inorganic, glass-like matrix of an alkali silicate and/or alkaline earth silicate or a layer including an inorganic-organic hybrid matrix or of a double layer of a base layer including an inorganic, glass-like matrix of an alkali silicate and/or alkaline earth silicate or a base layer including an inorganic-organic hybrid matrix and an alkali silicate-free and alkaline earth silicate-free top layer including a matrix of an oxidated silicon compound as the anti-limescale coating on at least one metal surface or inorganic surface of an object or material. The anti-limescale coating can be used for storage or transport devices for water or media containing water. The anti-limescale coating is suitable for pipelines, sand control systems or safety valves in the conveyance of oil or gas or the storage of oil or gas.
    Type: Application
    Filed: November 20, 2013
    Publication date: November 5, 2015
    Applicant: EPG (ENGINEERED NANOPRODUCTS GERMANY) AG
    Inventors: Klaus ENDRES, Christian SCHMIDT, Luis GENOLET, Barbara KUTZKY, Heike SCHNEIDER
  • Patent number: 9169565
    Abstract: Metallic substrates having a deformable vitreous coating, obtainable by applying an alkali metal silicate-containing coating sol to the substrate and thermally densifying the layer thus obtained in a two-stage heat treatment process, the heat treatment being carried out, in the first stage, either (A) in an oxygen-containing atmosphere or (B) in a vacuum at a residual pressure of ?15 mbar and, in the second stage, in a low-oxygen atmosphere up to full densification with formation of a vitreous layer.
    Type: Grant
    Filed: January 4, 2005
    Date of Patent: October 27, 2015
    Assignee: EPG (ENGINEERED NANOPRODUCTS GERMANY) AG
    Inventors: Klaus Endres, Helmut Schmidt, Martin Mennig
  • Patent number: 8901047
    Abstract: A binder is described which comprises A) a hydrolysate or heterocondensate of at least one hydrolysable silicon compound and at least one metal, phosphorus or boron compound, the metal being selected from Al, Ge, Sn, Pb, Ti, Mg, Li, V, Nb, Ta, Zr and Hf, B) an organic polymerizable or polycondensable monomer or oligomer and C) a buffer, so that the pH of the buffered binder is in the range from 2 to 7, and optionally a complexing agent, if appropriate, the at least one hydrolysable silicon compound comprising one or more hydrolysable silicon compounds having at least one nonhydrolysable group or oligomers thereof. The binder is suitable for consolidating bulk or loose substrates.
    Type: Grant
    Filed: February 26, 2009
    Date of Patent: December 2, 2014
    Assignee: EPG (Engineered Nanoproducts Germany) AG
    Inventors: Christian Schmidt, Helmut Schmidt
  • Publication number: 20120255733
    Abstract: A process for sealing or strengthening porous molded articles, rock or porous informations. The process comprises using hyper-fine cement having a particle size D50 of <1 ?m as at least one of a sealing agent and strengthening agent.
    Type: Application
    Filed: June 18, 2012
    Publication date: October 11, 2012
    Applicant: EPG (ENGINEERED NANOPRODUCTS GERMANY) AG
    Inventors: Luis GENOLET, Helmut SCHMIDT
  • Patent number: 8277905
    Abstract: A process for producing a diffractive light guiding element by a continuous, single-stage reel-to-reel method, an apparatus suitable for carrying out the process and a light guiding element obtainable by the process.
    Type: Grant
    Filed: March 14, 2007
    Date of Patent: October 2, 2012
    Assignee: EPG (Engineered Nanoproducts Germany) AG
    Inventors: Martin Mennig, Peter Oliveira
  • Patent number: 8226879
    Abstract: The invention relates to a process for producing a hyper-fine cement, in which cement is wet milled in a nonaqueous solvent, if appropriate in the presence of a grinding aid, as a result of which a hyper-fine cement having a particle size D50 of <1 ?m is obtained. The hyper-fine cement is suitable for sealing or strengthening porous molded articles, rock or porous formations, in particular for the gastight sealing of natural gas reservoirs and also for making polymer materials or components composed of pressed textiles or natural fibers fire resistant.
    Type: Grant
    Filed: September 5, 2008
    Date of Patent: July 24, 2012
    Assignee: EPG (Engineered Nanoproducts Germany) AG
    Inventors: Luis Genolet, Helmut Schmidt
  • Patent number: 8198018
    Abstract: An organic-inorganic hybrid material comprising (a) at least one soluble organic polymer and (b) at least one mono- or polynuclear metal complex having at least one ligand which comprises at least one photochemically and/or thermally polymerizable functional group. Also disclosed is an optical component which is made by using the hybrid material.
    Type: Grant
    Filed: December 19, 2005
    Date of Patent: June 12, 2012
    Assignee: EPG (Engineered Nanoproducts Germany) AG
    Inventors: Martin Mennig, Peter William Oliveira
  • Patent number: 8133579
    Abstract: The invention relates to a metal substrate comprising an ultra-hard composite layer consisting of an inorganic, vitreous matrix containing one or more abrasive fillers. According to the invention, the diameter of the filler particles or, if the filler particles have a platelet-type form, the thickness of the filler particles is less than the layer thickness of the composite layer.
    Type: Grant
    Filed: June 26, 2008
    Date of Patent: March 13, 2012
    Assignee: EPG (Engineered Nanoproducts Germany) AG
    Inventors: Martin Mennig, Helmut Schmidt
  • Patent number: 8101280
    Abstract: An article which comprises a surface of light metal. The surface is provided with an alkali-resistant protective coat comprising (a) an oxide layer which comprises silicon and boron as a basecoat and (b) an oxide layer which comprises silicon as a vitreous topcoat.
    Type: Grant
    Filed: October 23, 2007
    Date of Patent: January 24, 2012
    Assignee: EPG (Engineered Nanoproducts Germany) AG
    Inventors: Murat Akarsu, Ertugrul Arpac, Helmut Schmidt