Patents by Inventor Sven Olle Krabbenborg

Sven Olle Krabbenborg has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 11865858
    Abstract: The present disclosure relates to a method for transferring an embossed structure to a surface of a coating composition (B2a), which includes the steps (1-i) and (2-i) or (1-ii) and (2-ii) and also the steps (3) and optionally (4), where the steps (1-i) and (2-i) or (1-ii) and (2-ii) are performed using a composite (F1B1) which is employed as an embossing die (p2) of an embossing tool (P2) and which is composed of a substrate (F1) and of an at least partially embossed and at least partially cured coating (B1), and the coating composition (B1a) used for producing (B1) of the composite (F1B1) is a radiation-curable coating composition of defined constitution. Also described herein is a composite (F1B1).
    Type: Grant
    Filed: March 28, 2019
    Date of Patent: January 9, 2024
    Assignee: BASF COATINGS GMBH
    Inventors: Jan-Bernd Kues, Susanne Piontek, Joerg Exner, Birgit Kleine-Bley, Robert von der Aa, Michael Lorenz, Frank Bergmann, Wilfried Schipper, Sven Olle Krabbenborg, Joerg Duennewald
  • Publication number: 20230139823
    Abstract: Described herein is a coating composition including a polymer containing hydroxy groups, such as a water soluble polyvinyl alcohol, and further including a tetraalkoxysilane and modified silica nanoparticles having a positively charged surface, where the coating composition shows advantageous properties such as low refractive index, good transparency and low haze.
    Type: Application
    Filed: November 20, 2017
    Publication date: May 4, 2023
    Inventors: Jan Gebers, Sven Olle Krabbenborg, Jan-Bernd Kues
  • Patent number: 11575059
    Abstract: Described herein is a photovoltaic module, which includes PV cells capable of converting light incoming from a front side and from a rear side (3) and a transparent rear side including a rear surface carrying a structured layer (9), where the lower surface of the structured layer (9) is the lower surface of the module, and where the surface of layer (9) is structured by parallel V-shaped grooves of depth h2 or less than h2, where the lateral faces of the grooves of depth less than h2 form a groove angle beta and adjacent faces of neighbouring grooves form a peak of apex angle alpha, characterized in that h2 is from the range 5 to 200 micrometer, and each pair of neighbouring grooves includes one groove of depth h2 and one groove of depth (h2?h1), where h1 ranges from 0.1 h2 to 0.9 h2.
    Type: Grant
    Filed: December 11, 2019
    Date of Patent: February 7, 2023
    Assignee: BASF Coatings GmbH
    Inventors: Markus Mundus, Sven Olle Krabbenborg, Patrice Bujard
  • Publication number: 20230001609
    Abstract: Described herein is a process for preparing a molded article including at least one structured surface, said process including applying a composition, preferably a foam material, into a mold having at least one structured inner surface and curing said composition to provide the molded structured article. The inner surfaces of the mold can be coated with a coating composition to obtain molded structured articles further including a flexible and durable coating layer. The present invention also relates to a structured molded article, preferably a shoe sole, which is obtained by the process.
    Type: Application
    Filed: November 30, 2020
    Publication date: January 5, 2023
    Inventors: Karin Reuter, Tim Buscher, Simon Winzen, Martin Wilhelmer, Sven Olle Krabbenborg
  • Publication number: 20220371263
    Abstract: Described herein is a process for producing a structured article (A1M1) in which a material (M1) including at least one micro- and/or nanostructured surface (SU1) containing a plurality of micro-scale and/or nano-scale surface elements is covered with an at least partially cured coating layer (C2) to provide a composite (M1C2), said composite (M1C2) is attached to an object (A1) and the coating layer (C2) is at least partially peeled off to provide the structured article (A1M1). Also described herein is a composite (M1C2) in which the surface elements of the material (M1) are covered by a protective coating layer (C2).
    Type: Application
    Filed: September 9, 2020
    Publication date: November 24, 2022
    Inventors: Sven Olle KRABBENBORG, Tim BUSCHER
  • Publication number: 20220373881
    Abstract: Disclosed herein is a method for transferring an embossed structure to at least a part of a surface of a coating composition (C2a) using a composite (S1C1) including a substrate (S1) and an at least partially embossed and at least partially cured coating (C1) upon following steps (1), (2-i) and (3-i) or (2-ii) and (3-ii), and also at least step (4) and optionally step (5-i) or (5-ii), where the coating composition (C1a) is a radiation-curable coating composition of defined constitution and the composite (S1C1) is used as embossing mold (e2) of an embossing tool (E2).
    Type: Application
    Filed: September 24, 2020
    Publication date: November 24, 2022
    Inventors: Sven Olle Krabbenborg, Tim Buscher, Joerg Duennewald
  • Publication number: 20220285573
    Abstract: Described herein is a photovoltaic module, which includes PV cells capable of converting light incoming from the front side and from the rear side, the module including a front side exposing an upper external surface designed for receiving direct sunlight and a rear side exposing a lower external surface designed for receiving diffuse light, where the lower external surface is formed, at least in part, by a microstructured layer, characterized in that the microstructured layer includes pyramidal microstructures whose triangular bases are fixed in the layer. The microstructured layer results in anisotropic transmission properties. The module shows improved efficiency compared to similar bifacial PV modules.
    Type: Application
    Filed: August 5, 2020
    Publication date: September 8, 2022
    Inventors: Sven Olle Krabbenborg, Jan-Bernd Kues, Markus Mundus, Vjosa Schmidt, Patrice Bujard
  • Publication number: 20220149220
    Abstract: Described herein is a photovoltaic module, which includes PV cells capable of converting light incoming from a front side and from a rear side (3) and a transparent rear side including a rear surface carrying a structured layer (9), where the lower surface of the structured layer (9) is the lower surface of the module, and where the surface of layer (9) is structured by parallel V-shaped grooves of depth h2 or less than h2, where the lateral faces of the grooves of depth less than h2 form a groove angle beta and adjacent faces of neighbouring grooves form a peak of apex angle alpha, characterized in that h2 is from the range 5 to 200 micrometer, and each pair of neighbouring grooves includes one groove of depth h2 and one groove of depth (h2?h1), where h1 ranges from 0.1 h2 to 0.9 h2.
    Type: Application
    Filed: December 11, 2019
    Publication date: May 12, 2022
    Inventors: Markus Mundus, Sven Olle Krabbenborg, Patrice Bujard
  • Publication number: 20210129415
    Abstract: The present disclosure relates to a method for transferring an embossed structure to at least a part of a surface of a coating (B2), using a composite (F1B1) composed of a substrate (F1) and of an at least partially embossed and at least partially cured coating (B1), where the coating (B2) and the coating (B1) of the composite (F1B1) have embossed structures which are mirror images of one another. Also described herein is a composite (B2B1F1). Further described herein is a use of this composite for producing an at least partially embossed coating (B2) in the form of a free film or a composite (B2KF2) composed of a substrate (F2), at least one adhesive (K), and the coating (B2).
    Type: Application
    Filed: March 28, 2019
    Publication date: May 6, 2021
    Applicant: BASF Coatings GmbH
    Inventors: Jan-Bernd KUES, Susanne PIONTEK, Joerg EXNER, Joerg LENZ, Birgit KLEINE-BLEY, Wilfried SCHIPPER, Robert VON DER AA, Frank BERGMANN, Michael LORENZ, Sven Olle KRABBENBORG, Joerg DUENNEWALD
  • Publication number: 20210023873
    Abstract: The present disclosure relates to a method for transferring an embossed structure to a surface of a coating composition (B2a), which includes the steps (1-i) and (2-i) or (1-ii) and (2-ii) and also the steps (3) and optionally (4), where the steps (1-i) and (2-i) or (1-ii) and (2-ii) are performed using a composite (F1B1) which is employed as an embossing die (p2) of an embossing tool (P2) and which is composed of a substrate (F1) and of an at least partially embossed and at least partially cured coating (B1), and the coating composition (B1a) used for producing (B1) of the composite (F1B1) is a radiation-curable coating composition of defined constitution. Also described herein is a composite (F1B1).
    Type: Application
    Filed: March 28, 2019
    Publication date: January 28, 2021
    Inventors: Jan-Bernd Kues, Susanne Piontek, Joerg Exner, Birgit Kleine-Bley, Robert von der Aa, Michael Lorenz, Frank Bergmann, Wilfried Schipper, Sven Olle Krabbenborg, Joerg Duennewald
  • Publication number: 20190305165
    Abstract: Described herein is a structured reflector for a photovoltaic module, where the structured reflector provides improved light conversion and efficiency, and a photovoltaic module comprising the reflector. In a photovoltaic module, a reflector sheet is arranged below photovoltaic cells, with a microstructured surface of the reflector sheet facing towards the cells. The microstructured surface comprises three-dimensional reflectors in the form of cones, whose apexes direct towards an upper surface of the photovoltaic module and whose aperture ranges from 100° to 140°.
    Type: Application
    Filed: May 9, 2017
    Publication date: October 3, 2019
    Inventors: Patrice Bujard, Vjosa Statovci, Jan-Bernd Kues, Adrian von Muehlenen, Tobias Hintermann, Jan Gebers, Sven Olle Krabbenborg