Ceramic and Glass Materials

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148 M. Velez


  1. Y.S. Cho, Non-destructive testing of high strength concrete using spectral analysis of surface
    waves, NDT&E Int. (in press).

  2. ASTM C 1383–98: Test Method for Measuring the P-Wave Speed and the Thickness of Concrete
    Plates using the Impact-Echo Method, The American Society for Testing and Materials, West
    Conshohocken, PA.

  3. Y.S. Cho, and F.-B. Lin, Spectral analysis of wave response of multi-layer thin cement mortar
    slab structures with finite thickness, NDT&E Int., 34 , 115–122 (2001).

  4. J.S. Popovics, W. Song, J.D. Achenbach, J.H. Lee, and R.F. Andre, One-side stresswave velocity
    measurement in concrete, J. Eng. Mech., 1346–1353 (1998).

  5. M. Ohtsu, and T. Watanabe, Stack imaging of spectral amplitudes based on impact-echo for flaw
    detection,” NDT&E Int., 35 , 189–196 (2002).

  6. K. Mori, A. Spagnoli, Y. Murakami, G. Kondo, and I. Torigoe, A new-non-contacting non-
    destructive testing method for defect detection in concrete, NDT&E Int., 35 , 399–406 (2002).

  7. ASTM C 947: Test Method for Flexural Properties of Thin-Section Glass-Fiber-Reinforced
    Concrete, The American Society for Testing and Materials, West Conshohocken, PA.

  8. ASTM C 948: Test Method for Dry and Wet Bulk Density, Water Absorption, and Apparent
    Porosity of Thin Sections of Glass-Fiber Reinforced Concrete, The American Society for Testing
    and Materials, West Conshohocken, PA.

  9. ASTM E 136: Test Method for Behavior of Materials in a Vertical Tube Furnace at 750°C, The
    American Society for Testing and Materials, West Conshohocken, PA.

  10. ASTM E119: Test Methods for Fire Tests of Building Construction and Materials, The American
    Society for Testing and Materials, West Conshohocken, PA.

  11. Center for Advanced Cement-Based Materials, Northwestern University: http://acbm.northwest-
    ern.edu/.

  12. L.J. Struble (ed.), Cements Research Progress 1995, The American Ceramic Society, Westerville,
    OH, 1997.

  13. A. Boyd, S. Mindess, and J. Skalny (eds.), Materials Science of Concrete: Cement and Concrete –
    Trends and Challenges, The American Ceramic Society, Westerville, OH, 2002.

  14. Vision 2030: A Vision for the U.S. Concrete Industry, December 2002: http://www.concretesdc.
    org/concrete_roadmap.pdf.

  15. Concrete Projects for Oil Industry, Heidrun & Troll, Norway, http://www.international.ncc.se/
    about_international/Heidrun.pdf.

  16. D.J. Naus, Activities under the Concrete and Containment Technology Program at ORNL,
    Technical Report ORNL/TM-2002/213; http://www.osti.gov/bridge.

  17. ISO 836:2001: Terminology for refractories, International Organization for Standardization,
    Geneva, Switzerland.

  18. ISO 1927:1984: Prepared unshaped refractory materials (dense and insulating), International
    Organization for Standardization, Geneva, Switzerland.

  19. Technology of Monolithic Refractories, Chap. 1 Revised edition, Plibrico Japan Co., Ltd., Tokyo
    Insho Kan Printing Co., Ltd., 1999.

  20. G. Routschka (ed.), Refractory Materials, Chap. 5, Vulkan-Verlag, Essen, Germany, 1997.

  21. S. Banerjee, Monolithic Refractories, Chap. 2, The American Ceramic Society/World
    Scientific, 1998.
    43 M. Velez, A. Erkal, and R.E. Moore, Computer simulation of the dewatering of refractory con-
    crete walls, J. Tech. Assoc. Refractories (Taikabutsu Overseas), 20 (1), 5–9 (2000).

  22. G. Routschka, J. Potschke, and M. Ollig, Gas Permeability of Refractories at Elevated
    Temperatures, Proc. UNITECR’97, 1997, pp. 1550–1565.

  23. M.D.M. Innocentini, M.G. Silva, B.A. Menegazzo, and V.C. Pandolfelli, Permeability of
    refractory castables at high temperatures, J. Am. Ceram. Soc., 84 (3), 645–647 (2001).

  24. Z.-X. Gong, and A.S. Mujumdar, Development of drying schedules for one-side-heating drying
    of refractory concrete slabs based on a finite element model, J. Am. Ceram. Soc., 79 (6)
    1649–1658 (1996).

  25. W.L. Headrick, Quality time – automated equipment helps achieve rapid determination of gas
    permeability, Ceram. Ind., 148 (2) 74–76 (1998).

  26. R.E. Moore, J.D. Smith, and T.P. Sander, Dewatering monolithic refractory castables: experimen-
    tal and practical experience, Proc. UNITECR’97, 1997, pp. 573–583.

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