Patents Assigned to The United States of America as represented by the United States Energy Research & Development Administration
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Patent number: 4017794Abstract: An electronic circuit has a plurality of input terminals. Application of a first input signal to any one of the terminals initiates a timing sequence. Later inputs to the same terminal are ignored but a later input to any other terminal of the plurality generates a signal which can be used to measure the time difference between the later input and the first input signal. Also, such time differences may be measured between the first input signal and an input signal to any other terminal of the plurality or the circuit may be reset at any time by an external reset signal.Type: GrantFiled: September 18, 1975Date of Patent: April 12, 1977Assignee: The United States of America as represented by the United States Energy Research and Development AdministrationInventor: Delwin M. Romrell
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Patent number: 4017253Abstract: A nozzle employed as a burner within a fluidized bed is coaxially enclosed within a tubular shroud that extends beyond the nozzle length into the fluidized bed. The open-ended shroud portion beyond the nozzle end provides an antechamber for mixture and combustion of atomized fuel with an oxygen-containing gas. The arrangement provides improved combustion efficiency and excludes bed particles from the high-velocity, high-temperature portions of the flame to reduce particle attrition.Type: GrantFiled: September 16, 1975Date of Patent: April 12, 1977Assignee: The United States of America as represented by the United States Energy Research and Development AdministrationInventors: Joseph A. Wielang, William B. Palmer, William B. Kerr
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Patent number: 4017119Abstract: A method for rubblizing an oil shale deposit that has been formed in alternate horizontal layers of rich and lean shale, including the steps of driving a horizontal tunnel along the lower edge of a rich shale layer of the deposit, sublevel caving by fan drilling and blasting of both rich and lean overlying shale layers at the distal end of the tunnel to rubblize the layers, removing a substantial amount of the accessible rubblized rich shale to permit the overlying rubblized lean shale to drop to tunnel floor level to form a column of lean shale, performing additional sublevel caving of rich and lean shale towards the proximate end of the tunnel, removal of a substantial amount of the additionally rubblized rich shale to allow the overlying rubblized lean shale to drop to tunnel floor level to form another column of rubblized lean shale, similarly performing additional steps of sublevel caving and removal of rich rubble to form additional columns of lean shale rubble in the rich shale rubble in the tunnel, anType: GrantFiled: March 25, 1976Date of Patent: April 12, 1977Assignee: The United States of America as represented by the United States Energy Research and Development AdministrationInventor: Arthur E. Lewis
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Patent number: 4016768Abstract: This invention comprises a rotatable annular probe-positioner which carries at least one radially disposed sensing probe, such as a Pitot tube having a right-angled tip. The positioner can be coaxially and rotatably mounted within a compressor casing or the like and then actuated to orient the sensing probe as required to make measurements at selected stations in the annulus between the positioner and compressor casing. The positioner can be actuated to (a) selectively move the probe along its own axis, (b) adjust the yaw angle of the right-angled probe tip, and (c) revolve the probe about the axis common to the positioner and casing. A cam plate engages a cam-follower portion of the probe and normally rotates with the positioner. The positioner includes a first-motor-driven ring gear which effects slidable movement of the probe by rotating the positioner at a time when an external pneumatic cylinder is actuated to engage the cam plate and hold it stationary.Type: GrantFiled: March 15, 1976Date of Patent: April 12, 1977Assignee: The United States of America as represented by the United States Energy Research and Development AdministrationInventors: Douglas N. Mashburn, Richard H. Stevens, Harold C. Woodall
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Patent number: 4016784Abstract: The present invention relates to a tool setting device for use with numerically controlled machine tools, such as lathes and milling machines. A reference position of the machine tool relative to the workpiece along both the X and Y axes is utilized by the control circuit for driving the tool through its program. This reference position is determined for both axes by displacing a single linear variable displacement transducer (LVDT) with the machine tool through a T-shaped pivotal bar. The use of the T-shaped bar allows the cutting tool to be moved sequentially in the X or Y direction for indicating the actual position of the machine tool relative to the predetermined desired position in the numerical control circuit by using a single LVDT.Type: GrantFiled: January 5, 1976Date of Patent: April 12, 1977Assignee: The United States of America as represented by the United States Energy Research and Development AdministrationInventor: Raymond J. Brown
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Patent number: 4016242Abstract: Radioactive iodine and radioactive methyliodide can be more than 99.7 per cent removed from the air stream of a nuclear reactor by passing the air stream through a 2-inch thick filter which is made up of impregnated charcoal prepared by contacting the charcoal with a solution containing KOH, iodine or an iodide, and an oxyacid, followed by contacting with a solution containing a tertiary amine.Type: GrantFiled: February 26, 1976Date of Patent: April 5, 1977Assignee: The United States of America as represented by the United States Energy Research and Development AdministrationInventors: Victor R. Deitz, Charles H. Blachly
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Patent number: 4016304Abstract: A method for coating small diameter, low density particles with pyrolytic carbon is provided by fluidizing a bed of particles wherein at least 50 per cent of the particles have a density and diameter of at least two times the remainder of the particles and thereafter recovering the small diameter and coated particles.Type: GrantFiled: June 17, 1975Date of Patent: April 5, 1977Assignee: The United States of America as represented by the United States Energy Research and Development AdministrationInventors: Ronald L. Beatty, Dale V. Kiplinger, Bill R. Chilcoat
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Patent number: 4016290Abstract: A method is provided for transferring a polyaminopolycarboxylic acid chelating agent across a cellular membrane by encapsulating the charged chelating agent within liposomes, which liposomes will be taken up by the cells, thereby transferring the chelating agent across the cellular membrane. The chelating agent is encapsulated within liposomes by drying a lipid mixture to form a thin film and wetting the lipid film with a solution containing the chelating agent. Mixing then results in the formation of a suspension of liposomes encapsulating the chelating agent, which liposomes can then be separated.Type: GrantFiled: November 10, 1975Date of Patent: April 5, 1977Assignee: The United States of America as represented by the United States Energy Research and Development AdministrationInventor: Yueh Erh Rahman
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Patent number: 4016237Abstract: Production rates for solvent extraction separation of the rare earths and yttrium from each other can be improved by the substitution of di(2-ethylhexyl) mono-thiophosphoric acid for di(2-ethylhexyl) phosphoric acid. The di(2-ethylhexyl) mono-thiophosphoric acid does not form an insoluble polymer at approximately 50% saturation as does the former extractant, permitting higher feed solution concentration and thus greater throughput.Type: GrantFiled: September 8, 1975Date of Patent: April 5, 1977Assignee: The United States of America as represented by the United States Energy Research and Development AdministrationInventors: George W. Mason, Sonia Lewey
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Patent number: 4012282Abstract: A reusable multiple lead seal assembly provides leak-free passage of stainless-steel-clad instrument leads through the cover on the primary tank of a liquid-metal-cooled fast-breeder nuclear reactor. The seal isolates radioactive argon cover gas and sodium vapor within the primary tank from the exterior atmosphere and permits reuse of the assembly and the stainless-steel-clad instrument leads. Leads are placed in flutes in a seal body, and a seal shell is then placed around the seal body. Circumferential channels in the body and inner surface of the shell are contiguous and together form a conduit which intersects each of the flutes, placing them in communication with a port through the wall of the seal shell. Liquid silicone rubber sealant is injected into the flutes through the port and conduit; the sealant fills the space in the flutes not occupied by the leads themselves and dries to a rubbery hardness.Type: GrantFiled: May 17, 1976Date of Patent: March 15, 1977Assignee: The United States of America as represented by the United States Energy Research and Development AdministrationInventors: Ernest Hutter, John A. Pardini
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Patent number: 4012265Abstract: Low-density microcellular foam having a cell size of not greater than 2 .mu.m and method of making by dissolving cellulose acetate in an acetone-based solvent, gelling the solution in a water bath maintained at 0.degree.-10.degree. C for a selected period of time to allow impurities to diffuse out, freezing the gel, and then freeze-drying wherein water and solvents sublime and the gel structure solidifies into low-density microcellular foam. The foam has a density of 0.065 to 0.6.times.10.sup.3 kg/m.sup.3 and cell size of about 0.3 to 2 .mu.m. The small cell size foam is particularly applicable for encapsulation of laser targets.Type: GrantFiled: September 2, 1975Date of Patent: March 15, 1977Assignee: The United States of America as represented by the United States Energy Research and Development AdministrationInventor: James A. Rinde
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Patent number: 4012209Abstract: An improved liquid film impingement scrubber is provided wherein particulates suspended in a gas are removed by jetting the particle-containing gas onto a relatively small thin liquid layer impingement target surface. The impingement target is in the form of a porous material which allows a suitable contacting liquid from a pressurized chamber to exude therethrough to form a thin liquid film target surface. The gas-supported particles collected by impingement of the gas on the target are continuously removed and flushed from the system by the liquid flow through each of a number of pores in the target.Type: GrantFiled: April 5, 1976Date of Patent: March 15, 1977Assignee: The United States of America as represented by the United States Energy Research and Development AdministrationInventors: William J. McDowell, Charles F. Coleman
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Patent number: 4012230Abstract: An improved tungsten alloy having a tungsten content of approximately 95 weight percent, a nickel content of about 3 weight percent, and the balance being cobalt of about 2 weight percent is described. A method for producing said tungsten-nickel-cobalt alloy is further described and comprises (a) coating the tungsten particles with a nickel-cobalt alloy, (b) pressing the coated particles into a compact shape, (c) heating said compact in hydrogen to a temperature in the range of 1400.degree. C and holding at this elevated temperature for a period of about 2 hours, (d) increasing this elevated temperature to about 1500.degree. C and holding for 1 hour at this temperature, (e) cooling to about 1200.degree. C and replacing the hydrogen atmosphere with an inert argon atmosphere while maintaining this elevated temperature for a period of about 1/2 hour, and (f) cooling the resulting alloy to room temperature in this argon atmosphere.Type: GrantFiled: July 7, 1975Date of Patent: March 15, 1977Assignee: The United States of America as represented by the United States Energy Research and Development AdministrationInventors: James M. Dickinson, Robert E. Riley
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Patent number: 4011463Abstract: An improved high-voltage pulse generator has been provided which is especially useful in ultrasonic testing of rock core samples. An N number of capacitors are charged in parallel to V volts and at the proper instance are coupled in series to produce a high-voltage pulse of N times V volts. Rapid switching of the capacitors from the paralleled charging configuration to the series discharging configuration is accomplished by using silicon-controlled rectifiers which are chain self-triggered following the initial triggering of a first one of the rectifiers connected between the first and second of the plurality of charging capacitors. A timing and triggering circuit is provided to properly synchronize triggering pulses to the first SCR at a time when the charging voltage is not being applied to the parallel-connected charging capacitors.Type: GrantFiled: June 12, 1975Date of Patent: March 8, 1977Assignee: The United States of America as represented by the United States Energy Research and Development AdministrationInventor: George E. Fasching
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Patent number: 4011153Abstract: A process for desulfurizing and liquefying coal by heating said coal at a temperature of 375.degree.-475.degree. C in the presence of a slurry liquid, hydrogen, carbon monoxide, steam, and a catalyst comprising a desulfurization catalyst and an alkali metal salt.Type: GrantFiled: April 1, 1975Date of Patent: March 8, 1977Assignee: The United States of America as represented by the United States Energy Research and Development AdministrationInventor: Yuan C. Fu
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Patent number: 4011373Abstract: An uncharged positive-electrode composition contains particulate lithium sulfide, another alkali metal or alkaline earth metal compound other than sulfide, e.g., lithium carbide, and a transition metal powder. The composition along with a binder, such as electrolytic salt or a thermosetting resin is applied onto an electrically conductive substrate to form a plaque. The plaque is assembled as a positive electrode within an electrochemical cell opposite to a negative electrode containing a material such as aluminum or silicon for alloying with lithium. During charging, lithium alloy is formed within the negative electrode and transition metal sulfide such as iron sulfide is produced within the positive electrode. Excess negative electrode capacity over that from the transition metal sulfide is provided due to the electrochemical reaction of the other than sulfide alkali metal or alkaline earth metal compound.Type: GrantFiled: April 29, 1976Date of Patent: March 8, 1977Assignee: The United States of America as represented by the United States Energy Research and Development AdministrationInventors: Thomas D. Kaun, Donald R. Vissers, Hiroshi Shimotake
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Patent number: 4011372Abstract: A negative electrode that includes a lithium alloy as active material is prepared by briefly submerging a porous, electrically conductive substrate within a melt of the alloy. Prior to solidification, excess melt can be removed by vibrating or otherwise manipulating the filled substrate to expose interstitial surfaces. Electrodes of such as solid lithium-aluminum filled within a substrate of metal foam are provided.Type: GrantFiled: December 9, 1975Date of Patent: March 8, 1977Assignee: The United States of America as represented by the United States Energy Research and Development AdministrationInventors: Zygmunt Tomczuk, Theodore W. Olszanski, James E. Battles
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Patent number: 4010733Abstract: Herein is disclosed a flat plate solar heat collector unit. The solar collector is integrated as a structural unit so that the collector also functions as the building roof. The functions of efficient heat collection, liquid coolant flow passages, roof structural support and building insulation are combined into one unit.Type: GrantFiled: June 3, 1975Date of Patent: March 8, 1977Assignee: The United States of America as represented by the United States Energy Research and Development AdministrationInventor: Stanley W. Moore
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Patent number: 4011462Abstract: The disclosure relates to a laser apparatus for generating a line-tunable pulsed infrared difference frequency output. The apparatus comprises a CO.sub.2 laser which produces a first frequency, a CO laser which produces a second frequency and a mixer for combining the output of the CO.sub.2 and CO lasers so as to produce a final output comprising a difference frequency from the first and second frequency outputs.Type: GrantFiled: November 26, 1975Date of Patent: March 8, 1977Assignee: The United States of America as represented by the United States Energy Research and Development AdministrationInventors: Martin S. Piltch, John P. Rink, Charles R. Tallman
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Patent number: 4011076Abstract: Thin-walled beryllium structures are prepared by plasma spraying a mixture of beryllium powder and about 2500 to 4000 ppm silicon powder onto a suitable substrate, removing the plasma-sprayed body from the substrate and placing it in a sizing die having a coefficient of thermal expansion similar to that of the beryllium, exposing the plasma-sprayed body to a moist atmosphere, outgassing the plasma-sprayed body, and then sintering the plasma-sprayed body in an inert atmosphere to form a dense, low-porosity beryllium structure of the desired thin-wall configuration. The addition of the silicon and the exposure of the plasma-sprayed body to the moist atmosphere greatly facilitate the preparation of the beryllium structure while minimizing the heretofore deleterious problems due to grain growth and grain orientation.Type: GrantFiled: March 18, 1976Date of Patent: March 8, 1977Assignee: The United States of America as represented by the United States Energy Research and Development AdministrationInventors: Victor M. Hovis, Jr., Walter G. Northcutt, Jr.