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12. E 399-90, “Standard Test Method for Plane Strain Fracture Toughness of Metallic Materials.” American
Society for Testing and Materials, Philadelphia, PA, 1990 (Reapproved 1997).
13. D 6068-96, “Standard Test Method for Determining J-R Curves of Plastic Materials.” American
Society for Testing and Materials, Philadelphia, PA, 1996 (Reapproved 2002).
14. E 1820-01, “Standard Test Method for Measurement of Fracture Toughness.” American Society for
Testing and Materials, Philadelphia, PA, 2001.
15. D 256-03, “Standard Test Methods for Determining the Izod Pendulum Impact Resistance of Plastics.”
American Society for Testing and Materials, Philadelphia, PA, 1988.
16. E 23-02a, “Standard Test Methods for Notched Bar Impact Testing of Metallic Materials.” American
Society for Testing and Materials, Philadelphia, PA, 2002.
17. Engineered Materials Handbook, Volume 2: Engineering Plastics . ASM International, Metals Park,
OH, 1988.
18. BS 3505:1986, “British Standard Specification for Unplasticized Polyvinyl Chloride (PVC-U) Pressure
Pipes for Cold Potable Water.” British Standards Institution, London, 1986.
19. Whitney, J.M., Browning, C.E., and Hoogsteden, W., “A Double Cantilever Beam Test for Characterizing
Mode I Delamination of Composite Materials.” Journal of Reinforced Plastics and Composites,
Vol. 1, 1982, pp. 297–313.
20. Prel, Y.J., Davies, P., Benzeggah, M.L., and de Charentenay, F.-X., “Mode I and Mode II Delamination
of Thermosetting and Thermoplastic Composites.” ASTM STP 1012, American Society for Testing
and Materials, Philadelphia, PA, 1989, pp. 251–269.
21. Corleto, C.R. and Bradley, W.L., “Mode II Delamination Fracture Toughness of Unidirectional
Graphite/Epoxy Composites.” ASTM STP 1012, American Society for Testing and Materials,
Philadelphia, PA, 1989, pp. 201–221.
22. Hibbs, M.F., Tse, M.K., and Bradley, W.L., “Interlaminar Fracture Toughness and Real-Time Fracture
Mechanism of Some Toughened Graphite/Epoxy Composites.” ASTM STP 937, American Society
for Testing and Materials, Philadelphia, PA, 1987, pp. 115–130.
23. D 5528-01, “Standard Test Method for Mode I Interlaminar Fracture Toughness of Unidirectional
Fiber-Reinforced Polymer Matrix Composites.” American Society for Testing and Materials,
Philadelphia, PA, 2001.
24. Nose, T. and Fujii, T., “Evaluation of Fracture Toughness for Ceramic Materials by a Single-Edge-
Precracked-Beam Method.” Journal of the American Ceramic Society, Vol. 71, 1988, pp. 328–333.
25. E 1304-97, “Standard Test Method for Plane-Strain (Chevron Notch) Fracture Toughness of Metallic
Materials.” American Society for Testing and Materials, Philadelphia, PA, 1997 (Reapproved 2002).
26. C 1421-01b, “Standard Test Methods for Determination of Fracture Toughness of Advanced Ceramics
at Ambient Temperatures.” American Society for Testing and Materials, Philadelphia, PA, 2001.
27. Newman, J.C., “A Review of Chevron-Notched Fracture Specimens.” ASTM STP 855, American
Society for Testing and Materials, Philadelphia, PA, 1984, pp. 5–31.
28. Shannon, J.L., Jr. and Munz, D.G., “Specimen Size Effects on Fracture Toughness of Aluminum
Oxide Measured with Short-Rod and Short Bar Chevron-Notched Specimens.” ASTM STP 855,
American Society for Testing and Materials, Philadelphia, PA, 1984, pp. 270–280.
29. Nunomura, S. and Jitsukawa, S., “Fracture Toughness for Bearing Steels by Indentation Cracking
under Multiaxial Stress.” Tetsu to Hagane, Vol. 64, 1978 (in Japanese).
30. Warren, R. and Johannsen, B., “Creation of Stable Cracks in Hard Metals Using ‘Bridge’ Indentation.”
Powder Metallurgy, Vol. 27, 1984, pp. 25–29.
31. Bar-On, I., Beals, J.T., Leatherman, G.L., and Murray, C.M., “Fracture Toughness of Ceramic
Precracked Bend Bars.” Journal of the American Ceramic Society, Vol. 73, 1990, pp. 2519–2522.
32. Barratta, F.I. and Dunlay, W.A., “Crack Stability in Simply Supported Four-Point and Three-Point
Loaded Beams of Brittle Materials.” Proceedings of the Army Symposium on Solid Mechanics, 1989—
Mechanics of Engineered Materials and Applications, U.S. Army Materials Technology Laboratory,
Watertown, MA, 1989, pp. 1–11.
33. Underwood, J.H., Barratta, F.I., and Zalinka, J.J., “Fracture Toughness Tests and Displacement and Crack
Stability Analyses of Round Bar Bend Specimens of Liquid-Phase Sintered Tungsten.” Proceedings of
the 1990 SEM Spring Conference on Experimental Mechanics, Albuquerque, NM, 1990, pp. 535–542.

