Patents by Inventor Alan Duckham

Alan Duckham 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: 9391241
    Abstract: A light emitting diode with a front surface adapted to emit light and a rear surface is provided with a reflective coating on the rear surface, the reflective coating being primarily silver and containing either 0.4% bismuth or a combination of 0.5% tin, 0.2% copper, and 0.2% samarium.
    Type: Grant
    Filed: March 12, 2014
    Date of Patent: July 12, 2016
    Assignee: Materion Corporation
    Inventors: George M. Wityak, Alan Duckham
  • Publication number: 20140264394
    Abstract: A light emitting diode with a front surface adapted to emit light and a rear surface is provided with a reflective coating on the rear surface, the reflective coating being primarily silver and containing either 0.4% bismuth or a combination of 0.5% tin, 0.2% copper, and 0.2% samarium.
    Type: Application
    Filed: March 12, 2014
    Publication date: September 18, 2014
    Applicant: MATERION CORPORATION
    Inventors: George M. Wityak, Alan Duckham
  • Patent number: 7810704
    Abstract: A method for joining component bodies of material over bonding regions of large dimensions by disposing a plurality of substantially contiguous sheets of reactive composite materials between the bodies and adjacent sheets of fusible material. The contiguous sheets of the reactive composite material are operatively connected by an ignitable bridging material so that an igniting reaction in one sheet will cause an igniting reaction in the other. An application of uniform pressure and an ignition of one or more of the contiguous sheets of reactive composite material causes an exothermic thermal reaction to propagate through the bonding region, fusing any adjacent sheets of fusible material and forming a bond between the component bodies.
    Type: Grant
    Filed: April 15, 2008
    Date of Patent: October 12, 2010
    Assignee: Nanofoil Corporation
    Inventors: Alan Duckham, Jesse E. Newson, Michael V. Brown, Timothy Ryan Rude, Omar M. Knio, Ellen M. Heian, Jai S. Subramanian
  • Patent number: 7635076
    Abstract: A method for joining component bodies of material over bonding regions of large dimensions by disposing a plurality of substantially contiguous sheets of reactive composite materials between the bodies and adjacent sheets of fusible material. The contiguous sheets of the reactive composite material are operatively connected by an ignitable bridging material so that an igniting reaction in one sheet will cause an igniting reaction in the other. An application of uniform pressure and an ignition of one or more of the contiguous sheets of reactive composite material causes an exothermic thermal reaction to propagate through the bonding region, fusing any adjacent sheets of fusible material and forming a bond between the component bodies.
    Type: Grant
    Filed: February 11, 2008
    Date of Patent: December 22, 2009
    Assignee: Indium Corporation of America
    Inventors: Alan Duckham, Jesse E. Newson, Michael V. Brown, Timothy Ryan Rude, Omar M. Knio, Ellen M. Heian, Jai S. Subramanian
  • Publication number: 20090173626
    Abstract: A method for joining component bodies of material over bonding regions of large dimensions by disposing a plurality of substantially contiguous sheets of reactive composite materials between the bodies and adjacent sheets of fusible material. The contiguous sheets of the reactive composite material are operatively connected by an ignitable bridging material so that an igniting reaction in one sheet will cause an igniting reaction in the other. An application of uniform pressure and an ignition of one or more of the contiguous sheets of reactive composite material causes an exothermic thermal reaction to propagate through the bonding region, fusing any adjacent sheets of fusible material and forming a bond between the component bodies.
    Type: Application
    Filed: April 14, 2008
    Publication date: July 9, 2009
    Inventors: Alan Duckham, Jesse E. Newson, Michael V. Brown, Timothy Ryan Rude, Omar M. Knio, Ellen M. Heian, Jai S. Subramanian, Timothy P. Weihs, Yuping Lin, Jonathan Levin, Gary Catig
  • Publication number: 20080314735
    Abstract: A method for bonding components with a reactive multilayer foil, wherein during bonding, the components are held at a temperature or temperature gradient chosen to reduce thermal stress in the resulting bonded product.
    Type: Application
    Filed: June 20, 2008
    Publication date: December 25, 2008
    Inventors: Timothy P. Weihs, Alan Duckham, David Lunking, Jesse Newson
  • Publication number: 20080299410
    Abstract: A method for joining component bodies of material over bonding regions of large dimensions by disposing a plurality of substantially contiguous sheets of reactive composite materials between the bodies and adjacent sheets of fusible material. The contiguous sheets of the reactive composite material are operatively connected by an ignitable bridging material so that an igniting reaction in one sheet will cause an igniting reaction in the other. An application of uniform pressure and an ignition of one or more of the contiguous sheets of reactive composite material causes an exothermic thermal reaction to propagate through the bonding region, fusing any adjacent sheets of fusible material and forming a bond between the component bodies.
    Type: Application
    Filed: April 15, 2008
    Publication date: December 4, 2008
    Inventors: Alan Duckham, Jesse E. Newson, Michael V. Brown, Timothy Ryan Rude, Omar M. Knio, Ellen M. Heian, Jai S. Subramanian
  • Publication number: 20080145695
    Abstract: An assembly for joining component bodies of material over bonding regions of large dimensions including a plurality of substantially contiguous sheets of reactive composite materials between the bodies and adjacent sheets of fusible material. The contiguous sheets of the reactive composite material are operatively connected by an ignitable bridging material so that an igniting reaction in one sheet will cause an igniting reaction in the other. An application of uniform pressure and an ignition of one or more of the contiguous sheets of reactive composite material causes an exothermic thermal reaction to propagate through the bonding region, fusing any adjacent sheets of fusible material and forming a bond between the component bodies.
    Type: Application
    Filed: February 11, 2008
    Publication date: June 19, 2008
    Applicant: REACTIVE NANOTECHNOLOGIES, INC
    Inventors: Alan Duckham, Jesse E. Newson, Michael V. Brown, Timothy Ryan Rude, Omar M. Knio, Ellen M. Heian, Jai S. Subramanian
  • Publication number: 20080131700
    Abstract: A method for joining component bodies of material over bonding regions of large dimensions by disposing a plurality of substantially contiguous sheets of reactive composite materials between the bodies and adjacent sheets of fusible material. The contiguous sheets of the reactive composite material are operatively connected by an ignitable bridging material so that an igniting reaction in one sheet will cause an igniting reaction in the other. An application of uniform pressure and an ignition of one or more of the contiguous sheets of reactive composite material causes an exothermic thermal reaction to propagate through the bonding region, fusing any adjacent sheets of fusible material and forming a bond between the component bodies.
    Type: Application
    Filed: February 11, 2008
    Publication date: June 5, 2008
    Applicant: Reactive NanoTechnologies, Inc
    Inventors: Alan Duckham, Jesse E. Newson, Michael V. Brown, Timothy Ryan Rude, Omar Knio, Ellen M. Heian, Jai S. Subramanian
  • Patent number: 7354659
    Abstract: A method for joining component bodies of material over bonding regions of large dimensions by disposing a plurality of substantially contiguous sheets of reactive composite materials between the bodies and adjacent sheets of fusible material. The contiguous sheets of the reactive composite material are operatively connected by an ignitable bridging material so that an igniting reaction in one sheet will cause an igniting reaction in the other. An application of uniform pressure and an ignition of one or more of the contiguous sheets of reactive composite material causes an exothermic thermal reaction to propagate through the bonding region, fusing any adjacent sheets of fusible material and forming a bond between the component bodies.
    Type: Grant
    Filed: March 30, 2006
    Date of Patent: April 8, 2008
    Assignee: Reactive Nanotechnologies, Inc.
    Inventors: Alan Duckham, Jesse E. Newson, Michael V. Brown, Timothy Ryan Rude, Omar Knio, Ellen M. Heian, Jai S. Subramanian
  • Publication number: 20080063889
    Abstract: A process and apparatus for the reactive multilayer joining of components utilizing metallization techniques to bond difficult-to-wet materials and temperature sensitive materials to produce joined products.
    Type: Application
    Filed: September 6, 2007
    Publication date: March 13, 2008
    Inventors: Alan Duckham, Timothy Weihs, Jesse Newson, Jonathan Levin, Somasundaram Valliappan
  • Publication number: 20060219759
    Abstract: A method for joining component bodies of material over bonding regions of large dimensions by disposing a plurality of substantially contiguous sheets of reactive composite materials between the bodies and adjacent sheets of fusible material. The contiguous sheets of the reactive composite material are operatively connected by an ignitable bridging material so that an igniting reaction in one sheet will cause an igniting reaction in the other. An application of uniform pressure and an ignition of one or more of the contiguous sheets of reactive composite material causes an exothermic thermal reaction to propagate through the bonding region, fusing any adjacent sheets of fusible material and forming a bond between the component bodies.
    Type: Application
    Filed: March 30, 2006
    Publication date: October 5, 2006
    Inventors: Alan Duckham, Jesse Newson, Michael Brown, Timothy Rude, Omar Knio, Ellen Heian, Jai Subramanian
  • Publication number: 20050136270
    Abstract: An embodiment of the invention includes a method of simulating a behavior of an energy distribution within a soldered or brazed assembly to predict various physical parameters of the assembly. The assembly typically includes a reactive multilayer material. The method comprises the steps of providing an energy evolution equation having an energy source term associated with a self-propagating reaction that originates within the reactive multilayer material. The method also includes the steps of discretizing the energy evolution equation, and determining the behavior of the energy distribution in the assembly by integrating the discretized energy evolution equation using other parameters associated with the assembly.
    Type: Application
    Filed: May 12, 2004
    Publication date: June 23, 2005
    Inventors: Etienne Besnoin, Jiaping Wang, Alan Duckham, Stephen Spey, David Heerden, Timothy Weihs, Omar Knio