Patents Assigned to TPI Composite, Inc.
  • Patent number: 12151259
    Abstract: Devices, systems, and methods of improving paste flow during the manufacture of wind turbine blades are provided. An apparatus for applying adhesive to a composite structure (e.g. wind turbine blade) comprises a paste shoe having a top surface with an aperture to receive a supply of adhesive, and two legs extending downwardly from the top surface and configured to engage a surface of the composite structure to define an interior volume within the paste shoe. A transport mechanism (e.g. wheels, treads) are disposed on each leg to move the paste shoe relative to the composite structure while adhesive is dispensed within the interior volume. A force applicator, applies a force to the paste shoe to maintain a constant interior volume and thus a uniform bead of paste is applied to the composite structure.
    Type: Grant
    Filed: February 4, 2022
    Date of Patent: November 26, 2024
    Assignee: TPI Composites, Inc.
    Inventors: Amir Salimi, Bernie Dayalkumar
  • Patent number: 12145345
    Abstract: Structurally enhanced preformed layers of multiple rigid unidirectional rods are constructed and arranged for use in fabricating load-bearing support structures and reinforcements in a variety of composite components, e.g. wind turbine blades. Individual preform layers include multiple elongate unidirectional strength elements or rods arranged in a single layer along a longitudinal axis of the preform layer. Individual rods include aligned unidirectional structural fibers embedded within a matrix resin such that the rods have a substantially uniform distribution of fibers and high degree of fiber collimation. The relative straightness of the fibers and fiber collimation provide rods and the preform layers with high rigidity and significant compression strength. A plurality of rods are loosely attached, e.g. knitted, together with a coupling that allows for each rod to be axially displaced, e.g. slideable, relative to another rod.
    Type: Grant
    Filed: May 5, 2023
    Date of Patent: November 19, 2024
    Assignee: TPI Composites, Inc.
    Inventors: Stephen Nolet, James Hannan
  • Patent number: 12090714
    Abstract: A method for fabrication of a wind turbine blade includes providing a plug to define a mold, the plug including at least one female surface feature formed therein. Forming a mold, the mold configured for forming a wind turbine blade surface and having a male surface feature(s) corresponding to the at least one female surface feature of the plug. Forming a wind turbine blade surface within the mold, the wind turbine blade surface having a female surface feature(s) corresponding to the male surface feature(s) of the mold. Incorporating at least one optical marker within the female surface feature of the wind turbine blade surface. Providing predetermined optical marker location(s) associated with the wind turbine blade surface. Projecting at least one optical beam directed towards at least one optical marker.
    Type: Grant
    Filed: February 3, 2022
    Date of Patent: September 17, 2024
    Assignee: TPI Composites, Inc.
    Inventors: Amir Salimi, Christopher Raine
  • Patent number: 12070878
    Abstract: Devices, systems, and methods for modular molding of wind turbine blades are provided. Methods of molding wind turbine blades using a modular molding assembly or system and methods of substituting molds are provided. In some embodiments, a modular assembly includes a first base frame and a second base frame hingedly coupled to one another, a first tooling frame disposed on the first base frame, a second tooling frame disposed on the second base frame, a first shell mold coupled to the first tooling frame, and a second shell mold coupled to the second tooling frame. The first shell mold has a first mold surface and a first perimeter and the second shell mold has a second mold surface and a second perimeter. When in an open configuration, the first base frame is coplanar with the second base frame, and, in a closed configuration, the first perimeter contacts the second perimeter.
    Type: Grant
    Filed: February 4, 2022
    Date of Patent: August 27, 2024
    Assignee: TPI Composites, Inc.
    Inventors: Amir Salimi, Karsten Schibsbye
  • Patent number: 12030390
    Abstract: A battery enclosure for a vehicle chassis comprising a base plate having an upper and lower surface and a plurality of edges; an external support structure with a flange portion on a lower surface thereof and disposed on an upper surface of the base plate to circumscribe the base plate edges; a battery tray with a flange portion extending from an upper surface thereof is disposed on an upper surface of the base plate. The battery tray includes a plurality of raised surface features on the upper surface outlining individual cells, each cell configured to receive at least one battery. A lid is disposed on the flange of the battery tray with the external support structure disposed below the battery tray flange, and extending around the battery tray edges.
    Type: Grant
    Filed: June 28, 2021
    Date of Patent: July 9, 2024
    Assignee: TPI Composites, Inc.
    Inventors: Michael F. Howard, McKevin Veloso
  • Patent number: 11981093
    Abstract: A method of forming a composite vehicle components (e.g. walls, floor, roof) having interleaved foam core members and pre-pultruded reinforcing pillars by pultruding the cores and pillars into a vehicle component (e.g. bus sidewall formed as integral component front to rear) and cutting apertures therein for insertion of vehicle accessories (e.g. windows). Also, vehicle components can be formed having interlocking profiled edges where a first component is inserted into a second component, and rotated to bring the two components into locking engagement. A plurality of components can be formed with the same geometry, and oriented 180 degrees offset from each other to bring their profiled edges adjacent to each other.
    Type: Grant
    Filed: October 13, 2021
    Date of Patent: May 14, 2024
    Assignee: TPI Composites, Inc.
    Inventors: Ahsan Uddin, John Perraut
  • Patent number: 11931976
    Abstract: A system for fabrication of a wind turbine blade including a laser projection which identifies the dimensions for a plurality of layup segments; determines the sequence of layup segments within first and second sections of the mold, wherein the sequence of layup segments within the second section of the mold are synchronized with the layup segments within a first section of the mold. The system also includes a projection device visually depicting the boundaries of a plurality of layup segments onto the mold. This system automates fabrication of composite structures by setting a pace for each task and ensuring operators complete each task within the allotted period. The projection system and layup delivery mechanism can advance with respect the mold to ensure the pace is maintained and an overall product cycle time is adhered to.
    Type: Grant
    Filed: December 28, 2022
    Date of Patent: March 19, 2024
    Assignee: TPI COMPOSITES, INC.
    Inventors: Amirhossein Salimi, Carlos Ramirez
  • Patent number: 11919258
    Abstract: Devices, systems, and methods of improving heat transfer between a composite wind turbine blade surface are provided to reduce cure time. The assembly includes molds having heating wires disposed proximate the mold surface for delivering heat to the composite blade during layup and/or resin cure. Additionally, the vacuum bag disposed on top of the composite part includes a plurality of fluid channels for distributing a thermal fluid (e.g. heated/cooled water, air or oil) across the composite surface (opposite the mold surface).
    Type: Grant
    Filed: November 27, 2019
    Date of Patent: March 5, 2024
    Assignee: TPI COMPOSITES, INC.
    Inventors: Karsten Schibsbye, Amir Salimi
  • Publication number: 20240052535
    Abstract: A method of preparing a continuous yarn from comingled discontinuous glass fiber and thermoplastic fiber is described. An exemplary yarn comprising comingled recycled glass fiber and acrylic fiber is described. Methods of preparing fiber-reinforced composite components from the yarn are also described. The fiber-reinforced composite components can be used in a variety of applications. In an exemplary application, the composite is used to provide component parts for a model rocket body and nosecone.
    Type: Application
    Filed: August 14, 2023
    Publication date: February 15, 2024
    Applicants: University of Tennessee Research Foundation, TPI Composites, Inc.
    Inventors: Ryan S. Ginder, Warren James Smith, Daniel Paul Rasmussen, Stephen C. Nolet
  • Patent number: 11884027
    Abstract: Provided herein is a wind turbine blade mold system having built in precision pins to locate structural components (e.g. spar caps) during layup of composite segments. A plurality of pins can be inserted into apertures within the mold, with discs attached to the pins to maintain fixed relative distance to spar caps positioned relative to the pins to ensure precise positioning, thereby preventing/inhibiting movement of the spar cap relative to the mold. The pins can include a first extension that pierce through the layers of composite layups, and protrude above the B-surface of the blade skin. Additionally, the pins can include a marker tip releasably attached to the pin top to provide visual identification of the pin and underlying structural components. The pins can remain embedded within the final molded part.
    Type: Grant
    Filed: February 1, 2022
    Date of Patent: January 30, 2024
    Assignee: TPI COMPOSITES, INC.
    Inventors: Amir Salimi, Christopher Raine
  • Patent number: 11879427
    Abstract: A wind turbine blade assembly includes a first blade half and a second blade half fixed to the first blade half, defining a blade interior therebetween. The wind turbine blade assembly includes a shear web includes at least one aperture formed therein. The wind turbine blade assembly includes at least one bulkhead attached to the shear web, wherein the shear web and the at least one bulkhead are disposed in the blade interior. In some embodiments the at least one bulkhead includes a frame and a removable lid in order to expose the blade interior and the lid is returnably fixable to the at least one bulkhead. In some embodiments the first and second bulkheads include fluid conduits disposed therethrough and are spaced from one another to define first and second air circulation zones.
    Type: Grant
    Filed: August 11, 2022
    Date of Patent: January 23, 2024
    Assignee: TPI Composite, Inc.
    Inventors: Karsten Schibsbye, Amir Salimi
  • Patent number: 11850807
    Abstract: A method to design the kits and layup the reinforcement layers and core using projection system, comprising a mold having a contoured surface; a layup projection generator which: defines a plurality of mold sections; identifies the dimensions and location for a plurality of layup segments. A model-based calibration method for alignment of laser projection system is provided in which mold features are drawn digitally, incorporated into the plug(s) which form the wind turbine blade mold, and transferred into the mold. The mold also includes reflective targets which are keyed to the molded geometry wherein their position is calculated from the 3D model. This method ensures the precision level required from projection system to effectively assist with fabrication of wind turbine blades. In this method, digital location of reflectors is utilized to compensate for the mold deformations.
    Type: Grant
    Filed: January 12, 2023
    Date of Patent: December 26, 2023
    Assignee: TPI Composites, Inc.
    Inventors: Amirhossein Salimi, Scott Larson
  • Patent number: 11732694
    Abstract: A method for fabrication of a composite component, e.g. wind turbine blade, comprises forming a composite structure within a mold, the composite structure including a resin dispersed throughout the fibers in the composite structure and applying a surface treatment, e.g. sanding, to at least one region of the composite structure. A Fourier Transform Infrared (FTIR) spectrometer is employed to irradiate the treated surface area with infrared light; and determining the amount of infrared light absorbed in the treated area of the composite structure to measure the chemical bond (distribution efficacy, chemical composition, and cure state) of the composite product. Calibration models for a variety of materials are made using a partial least squares 2-variable regression. These calibration files incorporate spectrum from samples of varying resin-hardener mix ratio, and at varying degree of cure.
    Type: Grant
    Filed: April 8, 2021
    Date of Patent: August 22, 2023
    Assignee: TPI Composites Inc.
    Inventor: Richard Mignacca
  • Patent number: 11725624
    Abstract: The disclosed subject matter provides a system and method for facilitating bonding of various turbine blade components, including trailing edge inserts, or flatbacks, to the trailing edge of a wind turbine blade. The system disclosed herein ensures a consistent force is applied from root to top thereby preventing defects, e.g. paste voids, from forming. Additionally, a consistent bonding gap can be achieved due to the consistent application of force from the root to tip of the blade.
    Type: Grant
    Filed: October 19, 2021
    Date of Patent: August 15, 2023
    Assignee: TPI Composites, Inc.
    Inventor: Michael Villar
  • Patent number: 11685080
    Abstract: A mold for forming a flange of a wind turbine blade comprising a first flange portion including a plurality of lamina and having a generally planar shape and a second perpendicular flange including a plurality of lamina. A plurality of copper wires are disposed within the lamina for conducting heat delivered from a base portion through the first and second flange portions. The mold is free of fluid conduits with the flange portions moveable relative to the base portion.
    Type: Grant
    Filed: September 9, 2021
    Date of Patent: June 27, 2023
    Assignee: TPI Composites, Inc.
    Inventors: Jim Hannan, Andrew McDonald
  • Patent number: 11679576
    Abstract: Structurally enhanced preformed layers of multiple rigid unidirectional rods are constructed and arranged for use in fabricating load-bearing support structures and reinforcements in a variety of composite components, e.g. wind turbine blades. Individual preform layers include multiple elongate unidirectional strength elements or rods arranged in a single layer along a longitudinal axis of the preform layer. Individual rods include aligned unidirectional structural fibers embedded within a matrix resin such that the rods have a substantially uniform distribution of fibers and high degree of fiber collimation. The relative straightness of the fibers and fiber collimation provide rods and the preform layers with high rigidity and significant compression strength. A plurality of rods are loosely attached, e.g. knitted, together with a coupling that allows for each rod to be axially displaced, e.g. slideable, relative to another rod.
    Type: Grant
    Filed: February 18, 2020
    Date of Patent: June 20, 2023
    Assignee: TPI Composites, Inc.
    Inventors: Stephen Nolet, James Hannan
  • Patent number: 11674496
    Abstract: A wind turbine rotor blade is bonded together at the leading and trailing edges, and including a shear web or webs (the main vertical stiffening member that runs the span of the rotor blade) as an integral part, sharing the inner and outer skins of one or both sides of the blade. The integrated shear web(s) is made into the skin shell, and is an uninterrupted, continuous extension of the shell laminate that is joined to the shell component/components without requiring a secondary bond of any sort. The laminates in the shell and the shear web(s) may differ or be the same.
    Type: Grant
    Filed: May 24, 2021
    Date of Patent: June 13, 2023
    Assignee: TPI Composites, Inc.
    Inventor: Zachary Brekenfeld
  • Patent number: 11660789
    Abstract: A method of removing a vacuum bag from a composite mold. Removable strips are placed around the perimeter of the component parts and across the parts to create natural break points in the consumable materials used during manufacture of a composite product, e.g. wind turbine blade. The vacuum bag, and other consumable layers, are placed over the removable strip such that when the strips are pulled, the strip tears, in a controlled and complete manner, through each layer of consumables. This eliminates the need to use a knife/scissor to remove the finished product, thereby avoiding risk of injury.
    Type: Grant
    Filed: October 1, 2021
    Date of Patent: May 30, 2023
    Assignee: TPI Composites, Inc.
    Inventor: Kirk M. Baker
  • Patent number: 11642775
    Abstract: A wind turbine blade rotating and braking apparatus comprising: a root device including: a root support member having an upper surface with a radius of curvature and configured to receive a portion (e.g. root) of a wind turbine blade, rollers having a longitudinal axis parallel to the longitudinal axis of the blade and configured to rotate the blade; braking mount on the sides of the root support member; and a braking mechanism (e.g. strap or band) fixedly attached to the first mount, releasably attached to the second mount and extending above the blade to apply a braking force to the blade. Once applied, the braking force can be maintained by a locking pin.
    Type: Grant
    Filed: April 2, 2019
    Date of Patent: May 9, 2023
    Assignee: TPI Composites, Inc.
    Inventor: Mehmet Üyünük
  • Patent number: 11613049
    Abstract: A mold for forming a wind turbine blade comprising first and second mold surfaces including a flange portion having an opening therein, wherein the first and second mold surfaces are configured for relative movement therebetween from an open position to a closed position. The opening of the first flange portion is aligned with the opening of the second flange portion when in the closed position, and a first magnet is disposed within the opening in the opening of the first mold surface, and a second magnet is disposed within the opening of the second mold surface.
    Type: Grant
    Filed: May 17, 2021
    Date of Patent: March 28, 2023
    Assignee: TPI Composites, Inc.
    Inventors: Jim Hannan, Andrew McDonald