Patents Assigned to Martin Marietta Energy Systems, Inc.
  • Patent number: 4835106
    Abstract: A rotor assembly for processing liquids, especially whole blood samples, is disclosed. The assembly includes apparatus for separating non-liquid components of whole blood samples from liquid components, apparatus for diluting the separated liquid component with a diluent and apparatus for transferring the diluted sample to an external apparatus for analysis. The rotor assembly employs several movable capillary tubes to handle the sample and diluents. A method for using the rotor assembly to process liquids is also described.
    Type: Grant
    Filed: July 17, 1987
    Date of Patent: May 30, 1989
    Assignee: Martin Marietta Energy Systems, Inc.
    Inventors: Wayne F. Johnson, Carl A. Burtis, William A. Walker
  • Patent number: 4827728
    Abstract: A seven-effect absorption refrigeration cycle is disclosed utilizing three absorption circuits. In addition, a heat exchanger is used for heating the generator of the low absorption circuit with heat rejected from the condenser and absorber of the medium absorption circuit. A heat exchanger is also provided for heating the generator of the medium absorption circuit with heat rejected from the condenser and absorber of the high absorption circuit. If desired, another heat exchanger can also be provided for heating the evaporator of the high absorption circuit with rejected heat from either the condenser or absorber of the low absorption circuit.
    Type: Grant
    Filed: March 21, 1988
    Date of Patent: May 9, 1989
    Assignee: Martin Marietta Energy Systems, Inc.
    Inventors: Robert C. DeVault, Wendell J. Biermann
  • Patent number: 4780047
    Abstract: An advanced servo manipulator has modular parts. Modular motor members drive individual input gears to control shoulder roll, shoulder pitch, elbow pitch, wrist yaw, wrist pitch, wrist roll, and tong spacing. The modules include a support member, a shoulder module for controlling shoulder roll, and a sleeve module attached to the shoulder module in fixed relation thereto. The shoulder roll sleeve module has an inner cylindrical member rotatable relative to the outer cylindrical member, and upon which a gear pod assembly is mounted. A plurality of shafts are driven by the gears, which are in turn driven by individual motor modules to transmit rotary power to control elbow pitch as well as to provide four different rotary shafts across the bendable elbow joint to supply rotary motive power to a wrist member and tong member.
    Type: Grant
    Filed: April 5, 1985
    Date of Patent: October 25, 1988
    Assignee: Martin Marietta Energy Systems, Inc.
    Inventors: William E. Holt, Daniel P. Kuban, H. Lee Martin
  • Patent number: 4770930
    Abstract: A multilayered thermal insulating composite is formed of a first layer of zirconia-bonded zirconia fibers for utilization near the hot phase or surface of a furnace or the like. A second layer of zirconia-bonded metal oxide fibers is attached to the zirconia fiber layer by a transition layer formed of intermingled zirconia fibers and metal oxide fibers. The thermal insulation is fabricated by vacuum molding with the layers being sequentially applied from aqueous solutions containing the fibers to a configured mandrel. A portion of the solution containing the fibers forming the first layer is intermixed with the solution containing the fibers of the second layer for forming the layer of mixed fibers. The two layers of fibers joined together by the transition layer are saturated with a solution of zirconium oxynitrate which provides a zirconia matrix for the composite when the fibers are sintered together at their nexi.
    Type: Grant
    Filed: November 24, 1986
    Date of Patent: September 13, 1988
    Assignee: Martin Marietta Energy Systems, Inc.
    Inventors: George E. Wrenn, Jr., Cressie E. Holcombe, Jr.
  • Patent number: 4743340
    Abstract: The present invention is directed to a highly pure, partially stabilized, fibrous zirconia composite for use as thermal insulation in environments where temperatures up to about 2000.degree. C. are utilized. The composite of the present invention is fabricated into any suitable configuration such as a cone, cylinder, dome or the like by vacuum molding an aqueous slurry of partially stabilized zirconia fibers into a desired configuration on a suitably shaped mandrel. The molded fibers are infiltrated with zirconyl nitrate and the resulting structure is then dried to form a rigid structure which may be removed and placed in a furnace. The structure is then heated in air to a temperature of about 600.degree. C. for driving off the nitrate from the structure and for oxidizing the zirconyl ion to zirconia. Thereafter, the structure is heated to about 950.degree. to 1,250.degree. C. to fuse the zirconia fibers at their nexi in a matrix of zirconia.
    Type: Grant
    Filed: December 20, 1985
    Date of Patent: May 10, 1988
    Assignee: Martin Marietta Energy Systems Inc.
    Inventors: George E. Wrenn, Jr., Cressie E. Holcombe, Jr., John Lewis, Jr.
  • Patent number: 4722828
    Abstract: Nickel-iron aluminides are described that are based on Ni.sub.3 Al, and have significant iron content, to which additions of hafnium, boron, carbon and cerium are made resulting in Ni.sub.3 Al base alloys that can be fabricated at higher temperatures than similar alloys previously developed. Further addition of molybdenum improves oxidation and cracking resistance. These alloys possess the advantages of ductility, hot fabricability, strength, and oxidation resistance.
    Type: Grant
    Filed: May 6, 1985
    Date of Patent: February 2, 1988
    Assignee: Martin Marietta Energy Systems, Inc.
    Inventor: Chain T. Liu
  • Patent number: 4711761
    Abstract: Alloys are described which contain nickel, aluminum, boron, iron and in some instances manganese, niobium and titanium.
    Type: Grant
    Filed: August 3, 1983
    Date of Patent: December 8, 1987
    Assignee: Martin Marietta Energy Systems, Inc.
    Inventors: Chain T. Liu, Carl C. Koch
  • Patent number: RE32843
    Abstract: The present invention is directed to the fabrication of ceramic composites which possess improved mechanical properties especially increased fracture toughness. In the formation of these ceramic composites, the single crystal SiC whiskers are mixed with fine ceramic powders of a ceramic material such as Al.sub.2 O.sub.3, mullite, or B.sub.4 C. The mixtures which contain a homogeneous disperson of the SiC whiskers are hot pressed at pressures in a range of about 28 to 70 MPa and temperatures in the range of about 1600.degree. to 1950.degree. C. with pressing times varying from about 0.75 to 2.5 hours. The resulting ceramic composites show an increase in fracture toughness of up to about 9 MP.am.sup.1/2 which represents as much as a two-fold increase over that of the matrix material.
    Type: Grant
    Filed: April 3, 1986
    Date of Patent: January 24, 1989
    Assignee: Martin Marietta Energy Systems, Inc.
    Inventor: George C. Wei