Patents by Inventor Broc William TenHouten

Broc William TenHouten 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).

  • Publication number: 20190193163
    Abstract: One aspect is an apparatus including a plurality of additively manufactured components each having an adhesive injection channel. The components are connected together such that adhesive injection channels are aligned to form an adhesive path that allows adhesive flow between the components. Another aspect is an apparatus, including an additively manufactured component having an adhesive injection channel and an adhesive flow mechanism comprising at least one of an adhesive side end effector or a vacuum side end effector, the adhesive flow mechanism configured to provide adhesive to the adhesive injection channels.
    Type: Application
    Filed: December 27, 2017
    Publication date: June 27, 2019
    Inventors: Kevin Robert Czinger, Antonio Bernerd Martinez, Broc William TenHouten, Chukwubuikem Marcel Okoli, Eli Rogers
  • Publication number: 20190196447
    Abstract: A node to panel interface structure for use in a transport structure such as a vehicle is disclosed. In an aspect, the node includes a base, first and second sides protruding from the base to form a recess for receiving a panel, ports for adhesive injection and/or vacuum generation, one or more adhesive regions disposed on a surface of each side adjacent the panel, and at least one channel coupled between the first and second ports and configured to fill the adhesive regions with an adhesive, the adhesive being cured to form a node-panel interface. The node may be additively manufactured. In an exemplary embodiment, the node may use sealant features for including sealants that border and define the adhesive regions, and that may hermetically seal the region before and after adhesive injection. In another embodiment, the node may include isolation features for including isolators for inhibiting galvanic corrosion.
    Type: Application
    Filed: December 22, 2017
    Publication date: June 27, 2019
    Inventors: Bill David KREIG, Chukwubuikem Marcel OKOLI, David Brian TenHOUTEN, Antonio Bernerd MARTINEZ, Kevin Robert CZINGER, Broc William TenHOUTEN
  • Publication number: 20190184465
    Abstract: Apparatus and methods for joining nodes to tubes with node to tube joints are presented herein. Joining techniques allow the connection of additively manufactured nodes to tubes. In an embodiment, at least one node may be joined to a tube and may be a part of a vehicle chassis. The node to tube joint connection incorporates adhesive bonding between the node to tube to realize the connection. Sealants may be used to provide sealed regions for adhesive injection, which are housed in sealing interfaces co-printed with the additively manufactured nodes. Additionally, seals may act as isolators and reduce galvanic corrosion.
    Type: Application
    Filed: December 14, 2017
    Publication date: June 20, 2019
    Inventors: Bill David Kreig, David Brian TenHouten, Chukwubuikem Marcel Okoli, Kevin Robert Czinger, Broc William TenHouten, Antonio Bernerd Martinez, Narender Shankar Lakshman
  • Publication number: 20190160515
    Abstract: A metal extrusion and nodes based structure is provided. The structure comprises one or more arc members connected by one or more node members, wherein the arc comprises (i) a wing feature which is configured to mate with one or more non-structural components, (ii) an internal passage feature which is configured to be inserted into a connecting feature of the corresponding node member, and (iii) one or more keying features formed from a mating interface with the corresponding node member.
    Type: Application
    Filed: November 21, 2018
    Publication date: May 30, 2019
    Inventors: Broc William TenHOUTEN, Eahab Nagi EL NAGA, Richard Winston HOYLE, Kevin Robert CZINGER
  • Patent number: 10303159
    Abstract: Systems and methods for additive manufacturing of vehicles are provided. An additive manufacturing apparatus can include a printer that additively manufactures structures for a vehicle, and multiple analysis components. Each analysis component can receive information based on a design model of the vehicle and analyze the information based on an analysis factor. Each analysis component analyzes the information based on a different analysis factor. An integrator can receives the analyzed information from the analysis components, update the design model based on the analyzed information, and determine whether the updated design model satisfies criteria. If the updated design model satisfies the criteria, the integrator determines printing instructions for the printer to print one or more structures of the vehicle based on the updated design model, and if the updated design model does not satisfy the criteria, the integrator sends information based on the updated design model to the analysis components.
    Type: Grant
    Filed: May 24, 2017
    Date of Patent: May 28, 2019
    Assignee: Divergent Technologies, Inc.
    Inventors: Kevin Robert Czinger, Broc William TenHouten, Richard W. Hoyle, Donald J. Christian, Stuart Paul Macey, Antonio Bernerd Martinez
  • Publication number: 20190146456
    Abstract: A high precision Interface Node is disclosed. The Interface Node includes an integrated structure including one or more complex or sophisticated features and functions. The Interface Node may connect with another component or a Linking Node. The Interface Node is manufactured to achieve high precision functionality while enabling volume production. Current additive manufacturing technologies allow for the printing of high precision features to be manufactured, but generally this is performed at a slower rate. Consequently, in one aspect, the size of the Interface Nodes is reduced in order to overcome at least part of the slower production volume caused by creating the high precision Interface Nodes. The components and Linking Nodes to which the Interface Node is connected may only have basic features and functions. Accordingly, this latter category of components may use a high print rate and thus high production volume.
    Type: Application
    Filed: November 10, 2017
    Publication date: May 16, 2019
    Inventors: Kevin Robert Czinger, Broc William TenHOUTEN, Antonio Bernerd Martinez, Steven Blair Massey, Narender Shankar Lakshman, Bill David Kreig, Jon Paul Gunner, David Brian TenHOUTEN, Eahab Nagi El Naga, Muhammad Faizan Zafar
  • Publication number: 20190105991
    Abstract: A solar extended range electric vehicle, various structures and assemblies within the vehicle, and additive manufacturing techniques for these structure and assemblies are disclosed. In an aspect of the present disclosure, a solar extended-range vehicle includes a frame coupled to an exterior structure, a suspension system mounted to the exterior structure and coupled to a wheel system, at least one electric motor coupled to the wheel system, and at least one stowable solar panel arranged along a region of the frame for supplying power to the electric motor.
    Type: Application
    Filed: October 11, 2017
    Publication date: April 11, 2019
    Inventors: John Russell BUCKNELL, Stuart Paul MACEY, Broc William TenHOUTEN, David Charles O'CONNELL
  • Publication number: 20190105852
    Abstract: Techniques for inlaying a composite material within a tooling shell are disclosed. In one aspect, an additively manufactured tooling shell is provided, into which a composite material is inlaid and cured. A surface of the tooling shell is provided with indentations or another mechanism to enable adherence between the composite material and the tooling shell. The resulting integrated structure is used as a component in a transport structure.
    Type: Application
    Filed: October 11, 2017
    Publication date: April 11, 2019
    Inventors: Richard Winston HOYLE, Broc William TenHouten, Narender Shankar Lakshman
  • Publication number: 20190076925
    Abstract: Techniques for optimizing powder hole removal are disclosed. In one aspect, an apparatus for inserting powder removal features may identify what powder removal features are optimal for a given AM component, as well as the optimal location and physical characteristics of these features. The features are automatedly added to the component, and an FEA test is run. In the event of failure, the offending feature is removed and the process is repeated. If successful then the loose powder may be removed in a post-processing step following AM.
    Type: Application
    Filed: September 12, 2017
    Publication date: March 14, 2019
    Inventors: Narender Shankar LAKSHMAN, Thomas Samuel BOWDEN, JR., John Russell BUCKNELL, Ross Harrison BYERS, Broc William TenHOUTEN, Antonio Bernerd MARTINEZ, Muhammad Faizan ZAFAR, Richard Winston HOYLE, Chukwubuikem Marcel OKOLI
  • Publication number: 20190079492
    Abstract: Apparatus and methods for additively manufacturing lattice structures are disclosed herein. Lattice structures are analyzed and automatedly generated with respect to surface proximity. A lattice structure is varied by changing lattice element variables including lattice density. An automated approach using CAD algorithms or programs can generate data for lattice structures based on design variables including volume, surface, angle, and position.
    Type: Application
    Filed: September 14, 2017
    Publication date: March 14, 2019
    Inventors: Thomas Samuel BOWDEN, JR., Muhammad Faizan ZAFAR, Ross Harrison BYERS, Narender Shankar LAKSHMAN, Broc William TenHOUTEN, Richard Winston HOYLE, Antonio Bernerd MARTINEZ
  • Publication number: 20190061835
    Abstract: Apparatus and methods for joining nodes, extrusions, and panels are presented herein. Nodes, extrusions, and panels can be joined together using adhesive joining techniques. The adhesive joining techniques can be applied to additively manufactured nodes or extrusions, and sandwich panels. Sandwich panels can be additively manufactured and/or commercial off the shelf (COTS) components. There can be more than one type of a joint formed by the joining techniques. Exemplary types of j oints can use a liquid adhesive in conjunction with a vacuum and/or a film foam adhesive.
    Type: Application
    Filed: August 25, 2017
    Publication date: February 28, 2019
    Inventors: Broc William TenHouten, Kevin Robert Czinger, Chukwubuikem Marcel Okoli, Jon Paul Gunner, David Brian TenHouten, Antonio Bernerd Martinez, John Russell Bucknell, Muhammad Faizan Zafar, Thomas Samuel Bowden, William Bradley Balzer, Stuart Paul Macey, Zachary Meyer Omohundro, Matthew Michael O'Brien
  • Publication number: 20190054532
    Abstract: One aspect is an apparatus including a node having a socket configured to receive a component and a detachable additively manufactured nozzle co-printed with the node and arranged for adhesive injection between the component and the socket. Another aspect is an additively manufactured apparatus including a first additively manufactured component having an area configured to receive a second additively manufactured component. The first component includes an adhesive channel for injecting adhesive into the area when the second component is being connected to the first component. Another aspect is an apparatus including a plurality of additively manufactured components each having an adhesive injection channel. The components are connected together such that adhesive injection channels are aligned to form an adhesive path that allows adhesive flow between the components.
    Type: Application
    Filed: August 21, 2017
    Publication date: February 21, 2019
    Inventors: Jon Paul Gunner, John Russell Bucknell, Broc William TenHouten, Eahab Nagi El Naga, William Bradley Balzer, Antonio Bernerd Martinez
  • Publication number: 20190047037
    Abstract: A metal extrusion and nodes based structure is provided. The structure comprises one or more arc members connected by one or more node members, wherein the arc comprises (i) a wing feature which is configured to mate with one or more non-structural components, (ii) an internal passage feature which is configured to be inserted into a connecting feature of the corresponding node member, and (iii) one or more keying features formed from a mating interface with the corresponding node member.
    Type: Application
    Filed: October 16, 2018
    Publication date: February 14, 2019
    Inventors: Broc William TenHouten, Eahab Nagi El Naga, Richard Winston Hoyle, Kevin Robert Czinger
  • Publication number: 20190048912
    Abstract: Connections between nodes and tubes are provided. An apparatus can include additively manufactured first and second nodes, a tube, and an interconnect connecting the tube to the first and second nodes. An apparatus can include a node having an end portion with inner and outer concentric portions forming an annular gap therebetween, and a tube having an end portion extending into the gap.
    Type: Application
    Filed: August 8, 2017
    Publication date: February 14, 2019
    Inventors: Kevin Robert CZINGER, Broc William TenHOUTEN, John Russell BUCKNELL, Antonio Bernerd MARTINEZ, Eahab Nagi EL NAGA, William Bradley BALZER, Zachary Meyer OMOHUNDRO, Praveen Varma PENMETSA, Matthew Michael O'BRIEN, John Franklin DUNHAM
  • Publication number: 20190039138
    Abstract: Systems and methods of support structures in powder-bed fusion (PBF) are provided. Support structures can be formed of bound powder, which can be, for example, compacted powder, compacted and sintered powder, powder with a binding agent applied, etc. Support structures can be formed of non-powder support material, such as a foam. Support structures can be formed to include inductive components that can be used to facilitate removal of the support structures in the presence of an external magnetic field. Additionally, support structures can be formed to break when a fluid, such as air or water, creates a force and/or pressure at a connection point interface.
    Type: Application
    Filed: October 9, 2018
    Publication date: February 7, 2019
    Inventors: Muhammad Faizan ZAFAR, Broc William TenHOUTEN, Antonio Bernerd MARTINEZ, Keith Allen FLEMING, John Russell BUCKNELL
  • Publication number: 20190030751
    Abstract: Some embodiments of the present disclosure relate to an additively manufactured transport structure. The transport structure includes cavities into which components that use an external interface are inserted. A plurality of components are assembled and integrated into the vehicle. In an embodiment, the components and frame are modular, enabling reparability and replacement of single parts in the event of isolated failures.
    Type: Application
    Filed: July 25, 2017
    Publication date: January 31, 2019
    Inventors: Kevin Robert CZINGER, Broc William TenHOUTEN, Stuart Paul MACEY, David Charles O'CONNELL, Jon Paul GUNNER, Antonio Bernerd MARTINEZ, Narender Shankar LAKSHMAN
  • Publication number: 20190030605
    Abstract: Some embodiments of the present disclosure relate to additively manufactured vehicle exterior structures, designed to enclose the vehicle surface and support required operational loads. The vehicle structure includes cavities into which components that require an external interface are inserted. A plurality of components are assembled and integrated into the vehicle structure. The structure may be 3-D printed using multiple printing techniques applied in parallel or in series. In an embodiment, the components and structure are modular, use multiple materials and manufacturing techniques, and enable reparability and replacement of single parts.
    Type: Application
    Filed: July 25, 2017
    Publication date: January 31, 2019
    Inventors: Broc William TenHOUTEN, Kevin Robert Czinger, Stuart Paul Macey, David Charles O'Connell, Jon Paul Gunner, Antonio Bernerd Martinez, Narender Shankar Lakshman
  • Publication number: 20190011034
    Abstract: Techniques for joining nodes and subcomponents are presented herein. An additively manufactured first node or subcomponent has a groove. An additively manufactured second node or subcomponent has a tongue configured to extend into and mate with the groove to form a tongue-and-groove connection between the first and second node or subcomponent. In some aspects, the tongue-groove connection may extend substantially around a periphery of the node or subcomponent. In other aspects, a first subcomponent having a fluid pipe interface may be coupled via a tongue-groove connection to a second subcomponent having a fluid pipe interface, thereby enabling fluid to flow between subcomponents of the resulting integrated component.
    Type: Application
    Filed: July 7, 2017
    Publication date: January 10, 2019
    Inventors: Antonio Bernerd MARTINEZ, Eahab Nagi El Naga, David Brian TenHouten, John Russell Bucknell, Broc William TenHouten, Chukwubuikem Mercel Okoli, Thomas Samuel Bowden, JR., Muhammad Faizan Zafar
  • Patent number: 10173255
    Abstract: A metal extrusion and nodes based structure is provided. The structure comprises one or more arc members connected by one or more node members, wherein the arc comprises (i) a wing feature which is configured to mate with one or more non-structural components, (ii) an internal passage feature which is configured to be inserted into a connecting feature of the corresponding node member, and (iii) one or more keying features formed from a mating interface with the corresponding node member.
    Type: Grant
    Filed: June 9, 2017
    Date of Patent: January 8, 2019
    Assignee: DIVERGENT TECHNOLOGIES, INC.
    Inventors: Broc William TenHouten, Eahab Nagi El Naga, Richard Winston Hoyle, Kevin Robert Czinger
  • Publication number: 20180354205
    Abstract: Some embodiments of the present disclosure relate to an apparatus including an additively manufactured node. The apparatus includes an additively manufactured interconnect co-printed with the node. The interconnect is configured to connect the node to a component.
    Type: Application
    Filed: June 9, 2017
    Publication date: December 13, 2018
    Inventors: Kevin Robert Czinger, Broc William TenHouten, John Russell Bucknell, Eahab Nagi El Naga, Antonio Bernerd Martinez