Nanostructured materialsSee also what's at your library, or elsewhere.
Broader terms:Narrower terms:Used for:- Nanomaterials
- Nanometer materials
- Nanophase materials
- Nanostructure controlled materials
- Nanostructure materials
- Ultra-fine microstructure materials
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Filed under: Nanostructured materials
Filed under: Nanoparticles -- Toxicology
Filed under: Carbon nanotubes
Items below (if any) are from related and broader terms.
Filed under: Microstructure Hierarchical Structures in Biology as a Guide for New Materials Technology (1994), by National Research Council Commission on Engineering and Technical Systems (page images with commentary at NAP) Microstructural assessment of the series M 50MW ramp materials : final report for period April 1975 - June 1977 (Air Force Materials Laboratory, Air Force Wright Aeronautical Laboratories, Air Force Systems Command, 1978), by Ala.) Southern Research Institute (Birmingham and Air Force Materials Laboratory (U.S.) (page images at HathiTrust) Some unusual features in the microstructure of wrought iron (U.S. Dept. of Commerce, Bureau of Standards :, 1917), by Henry S. Rawdon and United States. National Bureau of Standards (page images at HathiTrust) Material Science Division (The Division, 1977), by Argonne National Laboratory. Materials Science Division (page images at HathiTrust) Low-energy positron flux generator for microstructural characterization of thin films (National Aeronautics and Space Administration, Office of Management, Scientific and Technical Information Division ;, 1991), by Jag J. Singh, Terry L. St. Clair, Abe Eftekhari, and Langley Research Center (page images at HathiTrust) Investigation of microstructural changes in polyetherether-ketone films at cryogenic temperatures by positron lifetime spectroscopy (National Aeronautics and Space Administration, Office of Management, Scientific and Technical Information Division ;, 1991), by Jag J. Singh and Langley Research Center (page images at HathiTrust) A directionally solidified iron-chromium-aluminum-tantalum carbide eutectic alloy (National Aeronautics and Space Administration ;, 1977), by Fredric H. Harf, Lewis Research Center, and United States National Aeronautics and Space Administration (page images at HathiTrust) Resistance of a [gamma]/[gamma]-́[delta] directionally solidified eutectic alloy to recrystallization (National Aeronautics and Space Administration ;, 1975), by Surendra N. Tewari, Charles W. Andrews, Coulson M. Scheuermann, and Lewis Research Center (page images at HathiTrust) Electrical, computer, and systems engineering (The Foundation :, 1980), by Computer National Science Foundation (U.S.). Division of Electrical (page images at HathiTrust) Corrosion resistance of tantalum, T 111, and Cb-1Zr to mercury at 1200 F (National Aeronautics and Space Administration ;, 1971), by L. B. Engel, R. W. Harrison, Lewis Research Center, and General Electric Company (page images at HathiTrust) On the feasibility of quantitative ultrasonic determination of fracture toughness : a literature review (National Aeronautics and Space Administration, Scientific and Technical Information Branch ;, 1980), by L. S. Fu, Lewis Research Center, and United States. National Aeronautics and Space Administration. Scientific and Technical Information Branch (page images at HathiTrust) A study of aluminum-lithium alloy solidification using acoustic emission techniques (National Aeronautics and Space Administration, Office of Management, Scientific and Technical Information Program, 1992), by Daniel P. Henkel, Langley Research Center, and Lehigh University (page images at HathiTrust) Marked influence of crystal structure on the friction and wear characteristics of cobalt and cobalt-base alloys in vacuum to 10⁹̄ millimeter of mercury (National Aeronautics and Space Administration :, 1964), by Donald H. Buckley and Robert L. Johnson (page images at HathiTrust) Fabrication of cermets of uranium nitride and tungsten or molybdenum from mixed powders and from coated particles (National Aeronautics and Space Administration ;, 1969), by Philip D. Takkunen and Lewis Research Center (page images at HathiTrust) Relation of structure to mechanical properties of thin thoria dispersion strengthened nickel-chromium (TD-NiCr) alloy sheet (National Aeronautics and Space Administration ;, 1975), by J. Daniel Whittenberger and Lewis Research Center (page images at HathiTrust) Dislocation structures in single crystal tungsten and tungsten alloys (National Aeronautics and Space Administration ;, 1969), by Joseph R. Stephens and Lewis Research Center (page images at HathiTrust) Statistical design and analysis of optimum seeking experiments to develop a gamma-prime strengthened cobalt-nickel base alloy (National Aeronautics and Space Administration ;, 1969), by Gary Dale Sandrock, Arthur G. Holms, United States National Aeronautics and Space Administration, and Lewis Research Center (page images at HathiTrust) A study of the microstructure and optical properties of thin lead-dielectric cermet films (National Aeronautics and Space Administration ;, 1972), by Robert B. Owen and George C. Marshall Space Flight Center. Astrionics Laboratory (page images at HathiTrust) Effects of cold work and aging on the substructure and precipitation phenomena in the cobalt-base alloy L-605 (National Aeronautics and Space Administration ;, 1971), by Gary Dale Sandrock, Charles W. Andrews, and Lewis Research Center (page images at HathiTrust) Directionally solidified iron-base eutectic alloys (National Aeronautics and Space Administration ;, 1976), by Surendra N. Tewari and United States National Aeronautics and Space Administration (page images at HathiTrust) Stress-rupture strength and microstructural stability of tungsten-hafnium-carbon-wire-reinforced superalloy composites (National Aeronautics and Space Administration ;, 1974), by Donald W. Petrasek, Robert A. Sigorelli, and Lewis Research Center (page images at HathiTrust) Microstructural study of the nickel-base alloy WAZ-20 using qualitative and quantitative electron optical techniques (National Aeronautics and Space Administration ;, 1973), by Stanley G. Young (page images at HathiTrust) The microstructure of a wood pulp fiber (USDA, Forest Service, Forest Products Laboratory, 1928), by George J. Ritter, G. H. Chidester, University of Wisconsin, and Forest Products Laboratory (U.S.) (page images at HathiTrust) Quarterly technical progress report : fuels, materials, and coolant chemistry programs, January-March 1970 (Canoga Park, California : Atomics Internationa, North American Rockwell, 1970., 1970), by Rockwell International. Atomics International Division and U.S. Atomic Energy Commission (page images at HathiTrust) Electron damage and defects in organic crystals (Berkeley, California : Lawrence Berkeley Laboratory, University of California, [1976]., 1976), by David George Howitt, Lawrence Berkeley Laboratory, and U.S. Atomic Energy Commission (page images at HathiTrust) Space nuclear safety and fuels program : January 1981 (Los Alamos, New Mexico : Los Alamos National Laboratory, 1981., 1981), by S. E. Bronisz, Los Alamos Scientific Laboratory, and United States. Department of Energy (page images at HathiTrust) Preparation and characterization of cesium-137 aluminosilicate pellets for radioactive source applications (Oak Ridge, Tennessee : Oak Ridge National Laboratory, 1981., 1981), by F. J. Schultz, K. W. Haff, J. A. Tompkins, F. N. Case, Oak Ridge National Laboratory, and United States. Department of Energy (page images at HathiTrust)
Filed under: Ceramography -- CongressesFiled under: Microstructure -- ExperimentsFiled under: Microstructure -- Mathematical modelsFiled under: Microstructure -- PeriodicalsFiled under: Ultrastructure (Biology)Filed under: Alloys -- Metallurgy -- MicrostructureFiled under: Aluminum alloys -- MicrostructureFiled under: Ceramics -- Mechanical properties -- MicrostructureFiled under: Iron -- MicrostructureFiled under: Metals -- Microstructure Effect of water and alcohol on the grinding of metals (Oak Ridge, Tennessee : U.S. Atomic Energy Commission, Technical Information Service, 1954., 1954), by V. D. Kuzne©±t©Ơsov, V. D. Taranenko, U.S. Atomic Energy Commission, and National Science Foundation (U.S.) (page images at HathiTrust) Effects of physical variables on delayed failure in steel (Wright-Patterson Air Force Base, Ohio : Wright Air Development Center, Air Research and Development Command, United States Air Force, 1956., 1956), by R. D. Johnson, A. R. Troiano, J. G. Morlet, H. H. Johnson, United States. Air Force. Air Research and Development Command, Wright Air Development Center, and Case Institute of Technology (page images at HathiTrust) Filed under: Nickel alloys -- MicrostructureFiled under: Plutonium -- Microstructure Observations on the microstructure of plutonium (U.S. Atomic Energy Commission, 1961), by R. D. Nelson, H. R. Gardner, United States. National Bureau of Standards, United States. Department of Energy. Office of Fusion Energy, United States. National Bureau of Standards. Fracture and Deformation Division, U.S. Atomic Energy Commission, United States. Energy Research and Development Administration, Hanford Works, and Hanford Atomic Products Operation (page images at HathiTrust) Filed under: Porcelain -- Microstructure
Filed under: Steel, High strength -- Microstructure -- Testing The relationship of microstructure to strength and toughness in high-strength steel (Wright-Patterson Air Force Base, Ohio : Directorate of Materials and Processes, Aeronautical Systems Division, Air Force Systems Command, 1963., 1963), by Y. H. Liu, J. W. Spretnak, G. W. Powell, J. H. Bucher, United States. Air Force. Systems Command. Aeronautical Systems Division, and Ohio State University. Research Foundation (page images at HathiTrust) The relationship of microstructure to strength and toughness in high-strength steel (Wright-Patterson Air Force Base, Ohio : Air Force Materials Laboratory, Research and Technology Division, Air Force Systems Command, United States Air Force, 1965., 1965), by J. H. Bucher, J. W. Spretnak, G. W. Powell, J. C. Jasper, J. T. Cammett, Air Force Materials Laboratory (U.S.), United States. Air Force. Systems Command, and Ohio State University. Research Foundation (page images at HathiTrust) Filed under: Zinc alloys -- MicrostructureMore items available under broader and related terms at left. |