Patents by Inventor Lars Nielsen

Lars Nielsen 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: 10723090
    Abstract: The present disclosure provides a method of manufacturing a composite laminate structure of a wind turbine blade part by means of resin transfer moulding, preferably vacuum-assisted resin transfer moulding. In a resin transfer moulding, fibre-reinforcement material is impregnated with liquid resin in a mould cavity. The mould cavity comprises rigid mould part having a mould surface defining a surface of the wind turbine blade part. The method comprises alternately stacking on the rigid mould part: i. a number of unidirectional fibre-reinforcement layers comprising electrically conductive fibres, such as carbon fibres, and ii.
    Type: Grant
    Filed: February 21, 2017
    Date of Patent: July 28, 2020
    Assignee: LM WP PATENT HOLDING A/S
    Inventors: Lars Nielsen, Klavs Jespersen
  • Publication number: 20200215771
    Abstract: This invention relates to a kit for manufacturing a wind turbine blade component, a method of manufacturing such a wind turbine blade component and a wind turbine blade component thereof. The individual panel sections are interlocked via interlocking devices arranged between adjacent panel sections. The interlocking device comprises first engaging element for engaging the adjacent panel sections, wherein the interlocking device is forced into the panel section by applying force to the interlocking device.
    Type: Application
    Filed: May 22, 2018
    Publication date: July 9, 2020
    Inventors: Klavs JESPERSEN, Lars NIELSEN
  • Patent number: 10690113
    Abstract: The present disclosure relates to a wind turbine blade. The wind turbine blade comprises a load carrying structure made of a fibre-reinforced polymer material. The load carrying structure comprises a plurality of stacked fibre layers or fibre mats in a thickness of the load carrying structure. The plurality of said stacked fibre layers or fibre mats are made of hybrid material comprising both carbon fibres and glass fibres and having a carbon fibre ratio. The carbon fibre ratio is defined as a volume of the carbon fibres divided by a total volume of the glass fibres and carbon fibres. At least a number of said stacked fibre layers or fibre mats have different carbon fibre ratios such that the carbon fibre ratio of fibre material varies through the thickness of the load carrying structure.
    Type: Grant
    Filed: December 19, 2016
    Date of Patent: June 23, 2020
    Assignee: LM WP PATENT HOLDING A/S
    Inventors: Lars Nielsen, Klavs Jespersen
  • Publication number: 20200158664
    Abstract: The present disclosure relates to a method for detecting a fibre misalignment in an elongated structure, such as a wind turbine blade component. The elongated structure has a length along a longitudinal direction and comprises a plurality of stacked reinforcing fibre layers. The plurality of fibre layers comprises fibres having an orientation aligned, unidirectionally, substantially in the longitudinal direction. The method comprises scanning a surface of the elongated structure for identifying one or more surface irregularities, selecting one or more regions of interest comprising said one or more surface irregularities, examining said region of interest using penetrating radiation, and determining a position and/or size of the fibre misalignment based on said examining step.
    Type: Application
    Filed: May 22, 2018
    Publication date: May 21, 2020
    Inventors: Klavs JESPERSEN, Lars NIELSEN, Torsten LAURIDSEN
  • Patent number: 10639856
    Abstract: A method for manufacturing a part for a wind turbine blade, and in particular a part of a shear web for a wind turbine blade, is described. The method comprises pultruding the part, wherein an in-line shaping of the part is performed, to provide a part having a cross-sectional profile which varies in the longitudinal length of the part. Providing a shear web having a portion which varies in cross-sectional profile results in production of a wind turbine blade part which can be accurately controlled to have precise geometrical profile corresponding to a desired blade profile, with minimal waste of materials.
    Type: Grant
    Filed: March 30, 2015
    Date of Patent: May 5, 2020
    Assignee: LM WP PATENT HOLDING A/S
    Inventor: Lars Nielsen
  • Patent number: 10584684
    Abstract: A wind turbine blade, extending longitudinally root end to tip end, having a load carrying structure, a shell body and a lightning protection system is described. The load carrying structure is fiber-reinforced polymer in a plurality of stacked layers comprising electrically conductive fibers. The lightning protection system comprises a lightning receptor arranged freely accessible in or on the shell body and a lightning down-conductor electrically connected to the lightning receptor and is configured to be electrically connected to a ground connection. The blade further comprises a potential equalisation system providing a potential equalising connection between a number of the electrically conductive fibers of the load carrying structure and the lightning protection system.
    Type: Grant
    Filed: December 19, 2016
    Date of Patent: March 10, 2020
    Assignee: LM WP PATENT HOLDING A/S
    Inventors: Lars Nielsen, Klavs Jespersen
  • Patent number: 10399275
    Abstract: A system and method for manufacturing at least a portion of a wind turbine blade is described. The invention relates to a method for ensuring a minimum bond line height between wind turbine blade components, through the use of adhesive spacer elements. The adhesive spacer elements are positioned between the blade components prior to bonding, and act to define a buffer or space between the bonding surfaces of the respective blade components, such that the adhesive bond line height between components can be effectively guaranteed without the need for accurate alignment and positioning techniques.
    Type: Grant
    Filed: April 29, 2015
    Date of Patent: September 3, 2019
    Assignee: LM WP PATENT HOLDING A/S
    Inventors: Lars Nielsen, Jesper Hasselbalch Garm
  • Patent number: 10357931
    Abstract: A system and method for the manufacture of a wind turbine blade component is described, preferably a shear web component for a wind turbine. The shear web is manufactured by using a forming tool to define a flange-shaped cavity at an end of a web member. A resin is injected into the cavity and cured to form a flange cast onto the web member. The forming tool is subsequently removed from the web member to provide a component having a load-bearing flange formed from a cured resin.
    Type: Grant
    Filed: November 18, 2014
    Date of Patent: July 23, 2019
    Assignee: LM WP PATENT HOLDING A/S
    Inventors: Klavs Jespersen, Tim Møller Hansen, Lars Nielsen
  • Publication number: 20190176413
    Abstract: In a method for manufacturing a wind turbine blade half shell, a preformed and cured aerodynamic blade shell member 42 of a fibre reinforced resin is provided. A primarily uniaxial fibre material 66 comprising carbon fibre is laid up on a longitudinal inner area 50 of the preformed shell member 42 and then infused with a resin by vacuum-assisted resin transfer moulding (VARTM), where a longitudinal resin inlet channel 80,82 is arranged on a first lateral side 46 and a vacuum channel 86,88 is arranged on a second lateral side 48 of the laid-up fibre material, and the resin is infused in transverse direction from the first to the second lateral side 46,48.
    Type: Application
    Filed: June 13, 2017
    Publication date: June 13, 2019
    Inventor: Lars NIELSEN
  • Publication number: 20190119706
    Abstract: The invention provides microorganisms and methods for the production of polyhydroxybutyrate (PHB) from gaseous substrates. In particular, the invention provides a non-naturally occurring Wood-Ljungdahl microorganism comprising (a) an enzyme that converts acetyl-CoA to acetoacetyl-CoA, (b) an enzyme that converts acetoacetyl-CoA to 3-hydroxybutyryl-CoA, and (c) an enzyme that converts 3-hydroxybutyryl-CoA to polyhydroxybutyrate, and methods related thereto.
    Type: Application
    Filed: October 4, 2018
    Publication date: April 25, 2019
    Inventors: Ryan Christopher Tappel, James Bruce Yarnton Haycock Behrendorff, Michael Koepke, Esteban Marcellin, Renato de Souza Pinto Lemgruber, Kaspar Valgepea, Lars Nielsen
  • Patent number: 10265936
    Abstract: A method of joining components of a wind turbine blade involves the use of an adhesive arrestor rail positioned at the side of a joining surface of a first member of a wind turbine blade, the rail arranged to form an acute angle to a second opposed joining surface of a second member of a wind turbine blade. The arrestor rail acts to retain flowable adhesive within the bonding area between two joining surfaces, ensuring a full and complete bond is provided between the blade members. The rail provides a valve action, deflecting to allow for excess adhesive to extrude past the rail, indicating that the bonding area between the joining surfaces is filled with adhesive. The arrangement of the arrestor rail results in a tapering edge of the adhesive bond layer between two members. The arrangement provides a reduced likelihood of substantial crack formation in the adhesive bond layer.
    Type: Grant
    Filed: December 2, 2013
    Date of Patent: April 23, 2019
    Assignee: LM WP PATENT HOLDING A/S
    Inventor: Lars Nielsen
  • Patent number: 10246931
    Abstract: A sliding window assembly including a window frame and at least three panes disposed within the window frame in offset vertical planes. The panes are arranged for sliding movement together upwardly within the window frame or together downwardly within the window frame. One or more of the panes can be fixed. The panes have a fully open position and a fully closed position. In the closed position, respective edges of the panes overlap while in the open position, the entire panes overlap. The panes can be connected to a counterweight arrangement by a pulley arrangement, which includes a vertically movable balancing weight that is equal to the weight of the panes, or the panes can be connected together to counterbalance each other.
    Type: Grant
    Filed: June 24, 2016
    Date of Patent: April 2, 2019
    Assignee: JELD-WEN, Inc.
    Inventors: Richard McKenna, Lars Nielsen
  • Publication number: 20190039337
    Abstract: The present disclosure provides a method of manufacturing a composite laminate structure of a wind turbine blade part by means of resin transfer moulding, preferably vacuum-assisted resin transfer moulding. In a resin transfer moulding, fibre-reinforcement material is impregnated with liquid resin in a mould cavity. The mould cavity comprises rigid mould part having a mould surface defining a surface of the wind turbine blade part. The method comprises alternately stacking on the rigid mould part: i. a number of unidirectional fibre-reinforcement layers comprising electrically conductive fibres, such as carbon fibres, and ii.
    Type: Application
    Filed: February 21, 2017
    Publication date: February 7, 2019
    Inventors: Lars NIELSEN, Klavs JESPERSEN
  • Patent number: 10179439
    Abstract: A method of manufacturing a portion of a wind turbine blade is described. The method comprising the steps of: laying up a primary fiber material in a mold; infusing said primary fiber material with a primary resin; substantially curing said primary resin in said primary fiber material to form a cured blade element; laying up a secondary fiber material on top of at least a portion of said cured blade element; infusing said secondary fiber material with a secondary resin different to said primary resin, wherein said secondary resin has a higher strength level than said primary resin; and curing said secondary resin in said secondary fiber material to form an integrated reinforced section on said cured blade element.
    Type: Grant
    Filed: January 30, 2015
    Date of Patent: January 15, 2019
    Assignee: LM WP PATENT HOLDING A/S
    Inventors: Rasmus C Ostergaard, Lars Nielsen, Klavs Jespersen
  • Publication number: 20190011254
    Abstract: The present disclosure relates to a method for detecting a fibre misalignment in an elongated structure, such as a wind turbine blade component. The elongated structure has a length along a longitudinal direction and comprises a plurality of stacked reinforcing fibre layers. The plurality of fibre layers comprises fibres having an orientation aligned, unidirectionally, substantially in the longitudinal direction. The method comprises scanning the elongated structure along at least a part of the length by emitting an x-ray beam in an angle compared to the orientation of the fibres. The method comprises detecting scattered rays, and determining an intensity of the detected scattered rays. The method comprises estimating a size of the fibre misalignment based on the determined intensity.
    Type: Application
    Filed: December 19, 2016
    Publication date: January 10, 2019
    Inventors: Lars NIELSEN, Klavs JESPERSEN
  • Publication number: 20190010919
    Abstract: The present disclosure relates to a wind turbine blade. The wind turbine blade comprises a load carrying structure made of a fibre-reinforced polymer material. The load carrying structure comprises a plurality of stacked fibre layers or fibre mats in a thickness of the load carrying structure. The plurality of said stacked fibre layers or fibre mats are made of hybrid material comprising both carbon fibres and glass fibres and having a carbon fibre ratio. The carbon fibre ratio is defined as a volume of the carbon fibres divided by a total volume of the glass fibres and carbon fibres. At least a number of said stacked fibre layers or fibre mats have different carbon fibre ratios such that the carbon fibre ratio of fibre material varies through the thickness of the load carrying structure.
    Type: Application
    Filed: December 19, 2016
    Publication date: January 10, 2019
    Inventors: Lars NIELSEN, Klavs JESPERSEN
  • Publication number: 20190003462
    Abstract: A wind turbine blade, extending longitudinally root end to tip end, having a load carrying structure, a shell body and a lightning protection system is described. The load carrying structure is fiber-reinforced polymer in a plurality of stacked layers comprising electrically conductive fibers. The lightning protection system comprises a lightning receptor arranged freely accessible in or on the shell body and a lightning down-conductor electrically connected to the lightning receptor and is configured to be electrically connected to a ground connection. The blade further comprises a potential equalisation system providing a potential equalising connection between a number of the electrically conductive fibers of the load carrying structure and the lightning protection system.
    Type: Application
    Filed: December 19, 2016
    Publication date: January 3, 2019
    Inventors: Lars NIELSEN, Klavs JESPERSEN
  • Publication number: 20190001592
    Abstract: A method of manufacturing a composite laminate structure of a wind turbine blade part is performed by resin transfer moulding. The fibre-reinforcement material is impregnated with liquid resin in a mould cavity which includes a rigid mould part having a mould surface defining a surface of the wind turbine blade part. The method includes alternately stacking on the rigid mould part: i) a number of fibre-reinforcement layers including electrically conductive fibres and ii) a flow strip layer in form of a layer of flow strips having a strip width and which are arranged so as to form voids having a void width between two juxtaposed strips. The method includes sealing a second mould part against the rigid mould part in order to form the mould cavity, optionally evacuating the mould cavity, supplying a resin to the mould cavity, and curing the resin to form the composite laminate structure.
    Type: Application
    Filed: December 19, 2016
    Publication date: January 3, 2019
    Inventors: Lars NIELSEN, Klavs JESPERSEN
  • Publication number: 20170130512
    Abstract: A sliding window assembly including a window frame and at least three panes disposed within the window frame in offset vertical planes. The panes are arranged for sliding movement together upwardly within the window frame or together downwardly within the window frame. One or more of the panes can be fixed. The panes have a fully open position and a fully closed position. In the closed position, respective edges of the panes overlap while in the open position, the entire panes overlap. The panes can be connected to a counterweight arrangement by a pulley arrangement, which includes a vertically movable balancing weight that is equal to the weight of the panes, or the panes can be connected together to counterbalance each other.
    Type: Application
    Filed: June 24, 2016
    Publication date: May 11, 2017
    Inventors: Richard McKenna, Lars Nielsen
  • Patent number: 9599094
    Abstract: A method of manufacturing an aerodynamic shell part for a wind turbine blade is described. The aerodynamic she part comprises a recess for arrangement and connection of a spar cap within said recess. The method comprising the steps of: a) providing a first mold part having a first forming surface that defines a part of an exterior of the aerodynamic shell part, b) laying up fiber-reinforcement material and optionally also sandwich core material in the first mold on the first forming surface, c) arranging one or more inserts having an exterior shape corresponding to at least sides of the recess of the aerodynamic shell part, d) supplying resin to said fiber-reinforcement material and optional sandwich core material, e) curing or preconsolidating the resin, and f) removing the one or more inserts.
    Type: Grant
    Filed: December 18, 2013
    Date of Patent: March 21, 2017
    Assignee: LM WP PATENT HOLDING A/S
    Inventors: Martin Dahl, Lars Nielsen