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There are 570213 results for: content related to: Amorphous and Nanocrystalline Diamond Synthesized by Scarq: Shock Compression and Rapid Quenching

  1. A New Behavior of Carbon Under Shock Compression; Rapid-Quenching of Two New Crystalline Carbon Forms

    High-Pressure Research: Application to Earth and Planetary Sciences

    H. Hirai, K. Kondo, Pages: 417–421, 2013

    Published Online : 18 MAR 2013, DOI: 10.1029/GM067p0417

  2. Fabricating Nanocrystalline Diamond Ceramics by a Shock Compaction Method

    Journal of the American Ceramic Society

    Volume 73, Issue 7, July 1990, Pages: 1983–1991, Ken-ichi Kondo and Sumiichi Sawai

    Version of Record online : 8 MAR 2005, DOI: 10.1111/j.1151-2916.1990.tb05256.x

  3. Dependence of Diamond Transition on Microtexture in Graphite Starting Materials under Shock Compression

    Journal of the American Ceramic Society

    Volume 78, Issue 8, August 1995, Pages: 2079–2084, Hisako Hirai, Satoru Kukino, Takeshi Ohwada and Ken-ichi Kondo

    Version of Record online : 11 JUL 2005, DOI: 10.1111/j.1151-2916.1995.tb08619.x

  4. Shock Compression Synthesis of Diamond

    Advanced Materials

    Volume 6, Issue 5, May 1994, Pages: 346–354, Prof. Akira B. Sawaoka, Masanobu Takamatsu and Dr. Tamotsu Akashi

    Version of Record online : 15 SEP 2004, DOI: 10.1002/adma.19940060503

  5. Shock deformation of brittle solids

    Journal of Geophysical Research: Solid Earth (1978–2012)

    Volume 85, Issue B2, 10 February 1980, Pages: 913–924, D. E. Grady

    Version of Record online : 20 SEP 2012, DOI: 10.1029/JB085iB02p00913

  6. You have free access to this content
    Ries crater and suevite revisited—Observations and modeling Part II: Modeling

    Meteoritics & Planetary Science

    Volume 48, Issue 4, April 2013, Pages: 590–627, N. A. Artemieva, K. Wünnemann, F. Krien, W. U. Reimold and D. Stöffler

    Version of Record online : 5 APR 2013, DOI: 10.1111/maps.12085

  7. Dynamic Equation of State and Strength of Boron Carbide

    ADVANCES IN CERAMICS ARMOR VI: Ceramic Engineering and Science Proceedings, Volume 31

    Jeffrey J. Swab, Sanjay Mathur, Tatsuki Ohji, Pages: 115–142, 2010

    Published Online : 19 NOV 2010, DOI: 10.1002/9780470944004.ch12

  8. Shock Wave Data for Minerals

    Mineral Physics & Crystallography: A Handbook of Physical Constants

    Thomas J. Ahrens, Mary L. Johnson, Pages: 143–184, 2013

    Published Online : 19 FEB 2013, DOI: 10.1029/RF002p0143

  9. Shock temperatures in silica glass: Implications for modes of shock-induced deformation, phase transformation, and melting with pressure

    Journal of Geophysical Research: Solid Earth (1978–2012)

    Volume 94, Issue B5, 10 May 1989, Pages: 5851–5871, Douglas R. Schmitt, Thomas J. Ahrens

    Version of Record online : 20 SEP 2012, DOI: 10.1029/JB094iB05p05851

  10. Raman spectroscopy of laser shocked polystyrene

    Journal of Raman Spectroscopy

    Volume 48, Issue 3, March 2017, Pages: 458–464, Vinay Rastogi, S. Chaurasia, Usha Rao, C. D. Sijoy, V. Mishra, Manmohan Kumar, M. N. Deo, S. Chaturvedi and Surinder M. Sharma

    Version of Record online : 13 OCT 2016, DOI: 10.1002/jrs.5046

  11. Novel Synthesis Techniques

    Intermetallic Compounds - Principles and Practice: Progress, Volume 3

    J. H. Westbrook, R. L. Fleischer, Pages: 723–748, 2002

    Published Online : 1 AUG 2002, DOI: 10.1002/0470845856.ch34

  12. Shock metamorphism of quartz in nature and experiment: I. Basic observation and theory

    Meteoritics

    Volume 29, Issue 2, March 1994, Pages: 155–181, Dieter Stöffler and Falko Langenhorst

    Version of Record online : 15 JUN 2012, DOI: 10.1111/j.1945-5100.1994.tb00670.x

  13. Shock-compressed State of Powders Characterized by Various in Situ and Textural Studies

    High-Pressure Research: Application to Earth and Planetary Sciences

    Yasuhiko Syono, Murli H. Manghnani, Pages: 137–143, 2013

    Published Online : 18 MAR 2013, DOI: 10.1029/GM067p0137

  14. Mineral and melt physics a summary of research in the United States, 1979–1982

    Reviews of Geophysics

    Volume 21, Issue 6, July 1983, Pages: 1487–1503, Raymond Jeanloz

    Version of Record online : 14 JUN 2010, DOI: 10.1029/RG021i006p01487

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    Experimental generation of shock-induced pseudotachylites along lithological interfaces

    Meteoritics & Planetary Science

    Volume 35, Issue 6, November 2000, Pages: 1275–1290, T. Kenkmann, U. Hornemann and D. Stöffler

    Version of Record online : 4 FEB 2010, DOI: 10.1111/j.1945-5100.2000.tb01516.x

  16. Formation of amorphous form from some crystalline silicates by shock compression

    physica status solidi (a)

    Volume 31, Issue 2, 16 October 1975, Pages: K129–K132, T. Mashimo, T. Sωa, A. Sawaoka and S. Saito

    Version of Record online : 17 FEB 2006, DOI: 10.1002/pssa.2210310263

  17. Benchtop Energetics: Hyperthermal Species Detection

    Propellants, Explosives, Pyrotechnics

    Volume 37, Issue 4, August 2012, Pages: 445–458, Emily C. Fossum, Christopher D. Molek, William K. Lewis and Mario E. Fajardo

    Version of Record online : 4 JUN 2012, DOI: 10.1002/prep.201100069

  18. Shock Synthesis of Materials: Effects of Starting Materials and Shock Conditions

    Proceedings of the 21st Annual Conference on Composites, Advanced Ceramics, Materials, and Structures - B: Ceramic Engineering and Science Proceedings, Volume 18, Issue 4

    J. P. Singh, Pages: 563–571, 2008

    Published Online : 26 MAR 2008, DOI: 10.1002/9780470294444.ch67

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    Equation of state for silicate melts: A comparison between static and shock compression

    Geophysical Research Letters

    Volume 41, Issue 1, 16 January 2014, Pages: 50–54, Daisuke Wakabayashi, Nobumasa Funamori, Tomoko Sato and Toshimori Sekine

    Version of Record online : 15 JAN 2014, DOI: 10.1002/2013GL058328

  20. Shock compression of crustal rocks: Data for quartz, calcite, and plagioclase rocks

    Journal of Geophysical Research

    Volume 69, Issue 22, 15 November 1964, Pages: 4839–4874, Thomas J. Ahrens, V. G. Gregson Jr.

    Version of Record online : 7 DEC 2012, DOI: 10.1029/JZ069i022p04839