Patents Represented by Attorney R. S. Gaither
  • Patent number: 4180775
    Abstract: A sensor-recorder for recording a representation of the direction and peak amplitude of a transient current. A magnetic thin film is coated on a glass substrate under the influence of a magnetic field so that the finished film is magnetically uniaxial and anisotropic. The film is split into two oppositely magnetized contiguous domains with a central boundary by subjecting adjacent portions of the film simultaneously to magnetic fields that are opposed 180.degree.. With the split-domain sensor-recorder placed with the film plane and domain boundary either perpendicular or parallel to the expected conductive path of a transient current, the occurrence of the transient causes switching of a portion of one domain to the direction of the other domain. The amount of the switched domain portion is indicative of the amplitude of the peak current of the transient, while the particular domain that is switched is indicative of the direction of the current.
    Type: Grant
    Filed: March 16, 1977
    Date of Patent: December 25, 1979
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventor: Edmund J. Hsieh
  • Patent number: 4174190
    Abstract: Several embodiments of an annular linear induction pump for pumping liquid metals are disclosed having the features of generally one pass flow of the liquid metal through the pump and an increased efficiency resulting from the use of thin duct walls to enclose the stator. The stator components of this pump are removable for repair and replacement.
    Type: Grant
    Filed: June 30, 1977
    Date of Patent: November 13, 1979
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventors: Edwin R. Craig, Robert S. Semken
  • Patent number: 4169280
    Abstract: A method for rendering glass nonfogging (to condensation fog) by sandwiching the glass between two electrodes such that the glass functions as the dielectric of a capacitor, a large alternating current (AC) voltage is applied across the electrodes for a selected time period causing the glass to absorb a charge, and the electrodes are removed. The glass absorbs a charge from the electrodes rendering it nonfogging. The glass surface is undamaged by application of the AC voltage, and normal optical properties are unaffected. This method can be applied to optical surfaces such as lenses, auto windshields, mirrors, etc., wherever condensation fog on glass is a problem.
    Type: Grant
    Filed: July 13, 1978
    Date of Patent: September 25, 1979
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventors: David E. Lord, Gary W. Carter, Richard R. Petrini
  • Patent number: 4166760
    Abstract: A plasma confinement apparatus, wherein multiple magnetic mirror cells are linked by magnetic field lines inside of a solenoid with the mirroring regions for adjacent magnetic mirror cells each formed by a separate mirror coil inside of the solenoid. The magnetic mirror cells may be field reversed.
    Type: Grant
    Filed: October 4, 1977
    Date of Patent: September 4, 1979
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventors: T. Kenneth Fowler, William C. Condit
  • Patent number: 4163382
    Abstract: A method and apparatus that significantly increases the sensitivity and flexibility of laser optoacoustic spectroscopy, with reduced size. With the method, it no longer is necessary to limit the use of laser optoacoustic spectroscopy to species whose absorption must match available laser radiation. Instead, "doping" with a relatively small amount of an optically absorbing gas yields optoacoustic signatures of nonabsorbing materials (gases, liquids, solids, and aerosols), thus significantly increasing the sensitivity and flexibility of optoacoustic spectroscopy. Several applications of this method are demonstated and/or suggested.
    Type: Grant
    Filed: April 28, 1978
    Date of Patent: August 7, 1979
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventor: Nabil M. Amer
  • Patent number: 4163689
    Abstract: A nuclear fuel cell for use in a thermionic nuclear reactor in which a small conduit extends from the outside surface of the emitter to the center of the fuel mass of the emitter body to permit escape of volatile and gaseous fission products collected in the center thereof by virtue of molecular migration of the gases to the hotter region of the fuel.
    Type: Grant
    Filed: December 3, 1965
    Date of Patent: August 7, 1979
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventors: Leonard N. Grossman, Alexis I. Kaznoff
  • Patent number: 4163637
    Abstract: Method and apparatus for producing small hollow spheres of glass, metal or plastic, wherein the sphere material is mixed with or contains as part of the composition a blowing agent which decomposes at high temperature (T.gtoreq.600.degree. C.). As the temperature is quickly raised, the blowing agent decomposes and the resulting gas expands from within, thus forming a hollow sphere of controllable thickness. The thus produced hollow spheres (20 to 10.sup.3 .mu.m) have a variety of application, and are particularly useful in the fabrication of targets for laser implosion such as neutron sources, laser fusion physics studies, and laser initiated fusion power plants.
    Type: Grant
    Filed: September 29, 1978
    Date of Patent: August 7, 1979
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventor: Charles D. Hendricks
  • Patent number: 4162432
    Abstract: Apparatus for producing fast, repetitive pulses of controllable length of an electron beam by phased energy storage in a transmission line of length matched to the number of pulses and specific pulse lengths desired.
    Type: Grant
    Filed: January 11, 1978
    Date of Patent: July 24, 1979
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventor: Leland G. Schlitt
  • Patent number: 4162158
    Abstract: A ferritic, nickel-free alloy steel composition, suitable for cryogenic applications, which consists essentially of about 10-13% manganese, 0.002-0.01% boron, 0.1-0.5% titanium, 0-0.05% aluminum, and the remainder iron and incidental impurities normally associated therewith.
    Type: Grant
    Filed: December 28, 1978
    Date of Patent: July 24, 1979
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventors: Sun-Keun Hwang, John W. Morris, Jr.
  • Patent number: 4162157
    Abstract: A secondary hardening alloy steel composition consisting essentially of about 0.25-0.5% carbon, about 0.5-1.0% manganese, about 1.5-3.0% nickel, about 0-1.0% chromium, about 1.75-2.5% molybdenum, about 0-0.4% vanadium, and an additive selected from about 1-3% aluminum and a combination of at least about 1% aluminum and at least about 1% silicon for a combined Al+Si content of about 2-4%, the balance being iron and impurity elements. The present steel composition has the following characteristics: it exhibits a flat tempering response, it is hardenable upon tempering to a Rockwell C hardness of at least 50, and it has an improved combination of hardness vs. toughness properties after tempering in the secondary hardening range. A method of preparation is also described.
    Type: Grant
    Filed: May 15, 1978
    Date of Patent: July 24, 1979
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventors: Earl R. Parker, Victor F. Zackay, Manjeshwar S. Bhat, Warren M. Garrison, Jr.
  • Patent number: 4157490
    Abstract: Apparatus for precise control of the motion and position of microspheres for examination of their interior and/or exterior. The apparatus includes an x- and y-axis driver mechanism controlled, for example, by a minicomputer for selectively rotating microspheres retained between a pair of manipulator arms having flat, smooth end surfaces. The driver mechanism includes an apertured plate and ball arrangement which provided for coupled equal and opposite movement of the manipulator arms in two perpendicular directions.
    Type: Grant
    Filed: May 17, 1978
    Date of Patent: June 5, 1979
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventor: Berthold W. Weinstein
  • Patent number: 4155046
    Abstract: An amplifier system for high power lasers, the system comprising a compact array of segments which (1) preserves high, large signal gain with improved pumping efficiency and (2) allows the total amplifier length to be shortened by as much as one order of magnitude. The system uses a three dimensional array of segments, with the plane of each segment being oriented at substantially the amplifier medium Brewster angle relative to the incident laser beam and with one or more linear arrays of flashlamps positioned between adjacent rows of amplifier segments, with the plane of the linear array of flashlamps being substantially parallel to the beam propagation direction.
    Type: Grant
    Filed: January 11, 1978
    Date of Patent: May 15, 1979
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventor: Wilhelm F. Hagen
  • Patent number: 4151325
    Abstract: Applying a thin film coating to the surface of a workpiece, in particular, applying a coating of titanium nitride to a klystron window by means of a crossed-field diode sputtering array. The array is comprised of a cohesive group of numerous small hollow electrically conducting cylinders and is mounted so that the open ends of the cylinders on one side of the group are adjacent a titanium cathode plate. The workpiece is mounted so as to face the open ends of the other side of the group. A magnetic field is applied to the array so as to be coaxial with the cylinders and a potential is applied across the cylinders and the cathode plate, the cylinders as an anode being positive with respect to the cathode plate.
    Type: Grant
    Filed: October 22, 1976
    Date of Patent: April 24, 1979
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventor: Kimo M. Welch
  • Patent number: 4143316
    Abstract: A diffusion tube hydrogen meter for improving the sensitivity and response time for the measurement of hydrogen in liquid sodium. The improved hydrogen meter has a composite membrane composed of pure nickel sleeve fitted, for example, over a 2 1/4 Cr-1 Mo steel or niobium diffusion tube. Since the hydrogen permeation rate through 2 1/4 Cr-1 Mo steels is a factor of four higher than pure nickel, and the permeation rate of hydrogen through niobium is two orders of magnitude greater than the 2 1/4 Cr-1 Mo steel, this results in a decrease in response time and an increase in the sensitivity.
    Type: Grant
    Filed: September 7, 1977
    Date of Patent: March 6, 1979
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventors: Prodyot Roy, David W. Sandusky, Robert T. Hartle
  • Patent number: 4140557
    Abstract: A structural steel which possess both high strength and high toughness and has particular application of cryogenic uses. The steel is produced by the utilization of thermally induced phase transformation following heating in a three-phase field in iron-rich alloys of the Fe-Ni-Ti system, with a preferred composition of 12% nickel, 0.5% titanium, the remainder being iron.
    Type: Grant
    Filed: January 23, 1978
    Date of Patent: February 20, 1979
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventors: Earl R. Parker, Victor F. Zackay
  • Patent number: 4140978
    Abstract: Method and apparatus for producing laser radiation by two-photon optical pumping of an atomic or molecular gaseous medium and subsequent lasing action. A population inversion is created as a result of two-photon absorption of the gaseous species. Stark tuning is utilized, if necessary, in order to tune the two-photon transition into exact resonance. In particular, gaseous ammonia (NH.sub.3) or methyl fluoride (CH.sub.3 F) is optically pumped by a pair of CO.sub.2 lasers to create a population inversion resulting from simultaneous two-photon excitation of a high-lying vibrational state, and laser radiation is produced by stimulated emission of coherent radiation from the inverted level.
    Type: Grant
    Filed: April 29, 1977
    Date of Patent: February 20, 1979
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventors: William K. Bischel, Ralph R. Jacobs, Donald Prosnitz, Charles K. Rhodes, Patrick J. Kelly
  • Patent number: 4140943
    Abstract: A device for generating a homogeneous ion-electron plasma from which a large ion beam can be extracted. The device utilizes hairpin-shaped filaments lining at least portions of the wall of the chamber which have been rotated 90 degrees from prior known approaches. This provides a very significant result in that the DC current flowing through the filaments produces a small solenoidal magnetic field that impedes the emitted electrons from striking the walls of the chamber, which may be of a cylindrical or rectangular configuration. This improves the efficiency of the ion source and provides additional space for more filaments, while providing a very uniform plasma density profile which is noise-free.
    Type: Grant
    Filed: June 1, 1977
    Date of Patent: February 20, 1979
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventor: Kenneth W. Ehlers
  • Patent number: 4138317
    Abstract: A system for guiding charged laser targets to a predetermined focal spot of a laser along generally arbitrary, and especially horizontal, directions which comprises a series of electrostatic sensors which provide inputs to a computer for real time calculation of position, velocity, and direction of the target along an initial injection trajectory, and a set of electrostatic deflection means, energized according to a calculated output of said computer, to change the target trajectory to intercept the focal spot of the laser which is triggered so as to illuminate the target of the focal spot.
    Type: Grant
    Filed: June 5, 1978
    Date of Patent: February 6, 1979
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventors: Gary D. Porter, Anatoly Bogdanoff
  • Patent number: 4135412
    Abstract: Mechanism which compensates for backlash error in a lead screw position indicator by decoupling the indicator shaft from the lead screw when reversing rotation. The position indicator then displays correct information regardless of the direction of rotation of the lead screw.
    Type: Grant
    Filed: December 14, 1977
    Date of Patent: January 23, 1979
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventor: Jerry L. Chrislock
  • Patent number: 4133854
    Abstract: Method for producing small hollow spheres of glass, metal or plastic, wherein the sphere material is mixed with or contains as part of the composition a blowing agent which decomposes at high temperature (T .gtorsim. 600.degree. C). As the temperature is quickly raised, the blowing agent decomposes and the resulting gas expands from within, thus forming a hollow sphere of controllable thickness. The thus produced hollow spheres (20 to 10.sup.3 .mu.m) have a variety of application, and are particularly useful in the fabrication of targets for laser implosion such as neutron sources, laser fusion physics studies, and laser initiated fusion power plants.
    Type: Grant
    Filed: June 16, 1977
    Date of Patent: January 9, 1979
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventor: Charles D. Hendricks