National Academies Press: OpenBook
« Previous: 5 Accelerated Methods for Characterization of Aging Response
Suggested Citation:"References." National Research Council. 1996. Accelerated Aging of Materials and Structures: The Effects of Long-Term Elevated-Temperature Exposure. Washington, DC: The National Academies Press. doi: 10.17226/9251.
×

References

Aboudi, J. 1987. Stiffness reduction of cracked solids. Engineering Fracture Mechanics 26(5): 637–650.

Adamson, M.J. 1980. Thermal expansion and swelling of cured epoxy resin used in graphite/epoxy composite materials. Journal of Materials Science15: 1736–1745.

Alcoa (Aluminum Company of America). 1995. Unpublished data, including data from previous years L.M. Karabin and M.L. Macia . Alcoa Center, Pennsylvania: Alcoa Technical Center.

Allen, D.H., and J.W. Lee. 1990. Matrix cracking in laminated composites under monotonic and cyclic loadings. Pp. 65–75 inMicrocracking-Induced Damage in Composites, AMD-Vol. 111, MD-Vol. 22,G.J. Dvorak and D.C Lagoudas , eds. New York : American Society of Mechanical Engineers.

Allison, J.E., and J.W. Jones. 1993. Fatigue behavior of discontinuously reinforced metal-matrix composites . Pp. 269–297 in Fundamentals of Metal Matrix Composites, S. Suresh, A. Mortensen, and A. Needleman , eds. Stoneham, Massachusetts: Butterworths.

Anderson, A.C., and J.H. Healy. 1958.Bond of Resin to Glass . Paper presented at the 13th Annual Technical Conference of the Society of Plastics Industry.

Ardell, A.J. 1972.The effect of volume fraction on particle coarsening: theoretical considerations . Acta Metallurgica20 :61–70.

Arnold C.A., and R.K. Maskell. 1991. Assessing the thermal stability of high-performance polymers. Pp. 1135–1146 in the 36th International SAMPE Symposium, J. Stinson, R. Adsit , and F. Gordaninejad , eds. Covina, California: Society for the Advancement of Material and Process Engineering.

Ashby, M.F. 1972. A first report on deformation-mechanism maps. Acta Metallurgica20:887–897.

Ashby, M.F. 1983. Mechanisms of deformation and fracture. Advances in Applied Mechanics23:117–177.

ASTM (American Society for Testing and Materials). 1994. Standard test method for measurement of creep crack growth rates in metals, ASTM Standard E 1457-92. Pp. 925–935inAnnual Book of ASTM Standards, Vol. 03.01. Philadelphia, Pennsylvania:ASTM.

Bendersky, L., A. Rosen, and A.K. Mukherjee. 1985. Creep and dislocation substructure. International Metals Review 30:1–15.

Bensussan, P.L., D.A. Jablonski, and R.M. Pelloux. 1984. A study of creep crack growth in 2219-T851 aluminum alloy using a computerized testing system. Metallurgical Transactions A.15A:107–120.

Blankenship, C.P. , and E.A. Starke. 1991. Fatigue crack growth behavior of the Al-Cu-Li alloy weldalite 049. Fatigue and Fracture of Engineering Materials and Structures 14(1):103–114

Blohm, C. 1994. Advanced Composites Structures: In Service Experience in the View of a Carrier . Presented at the Workshop on Long-Term Aging of Materials and Structures National Materials Advisory Board , National Research Council, Washington, D.C., August 10–12.

Bobrow, D., A. Arbel, and D. Eliezer. 1991. The effect of elevated-temperature reverse cyclic loading on fracture toughness of aluminum alloy type 2618. Journal of Materials Science26:2045–2049 .

Bodet, R., J. Lamon, and R.E. Tressler. 1993. Effects of chemical environments on the creep behavior of Si-C-O fibers . Pp. 75–84 inthe 6th European Conference on Composite Materials High Temperature Ceramic Matrix Composites—HT-CMC1 September 20–24 , Bordeaux. R. Naslain, J. Lamon, and D. Doumeingts, eds. Cambridge, England: Woodhead Publishing Limited.

Bourke, M.A.M., J.A. Goldstone, M.G. Stout, A.C. Lawson, and J.E. Allison. 1993. Pp. 67–79 in Proceedings of the Conference on Residual Stresses, E.V. Barerra, M. Gungor, and S. Fishman, eds. Warrendale, Pennsylvania: The Metallurgical Society of the American Institute of Mechanical Engineers.

Bowles, D.E. 1984. Effect of microcracks on the thermal expansion of composite laminates . Journal of Composite Materials17:173–187.

Bowles, K.J. 1993. Transverse flexural tests as a tool for assessing damage to PMR-15 composites from isothermal aging in air at elevated temperatures . SAMPE Quarterly24(2):49–53.

Bowles, K.J., D. JayneT.A. Leonhardt. 1993. Isothermal aging effects on PMR-15. SAMPE Quarterly24(2):2–9.

Brady, E.L. 1953. Chemical nature of silica carried by steam . Journal of Physical Chemistry57(10):706–710.

Brechet, Y., J.D. Embury, and S. Tao. 1991. Damage initiation in metal matrix composites . Acta Metallurgica et Materialia39(8):1781.

Suggested Citation:"References." National Research Council. 1996. Accelerated Aging of Materials and Structures: The Effects of Long-Term Elevated-Temperature Exposure. Washington, DC: The National Academies Press. doi: 10.17226/9251.
×

Brewer, W. , and G. Curtis. 1994. Titanium task reviews. NAS1-30013-15. Washington, D.C.: National Aeronautics and Space Administration.

Brown, L.M., and R.K. Ham. 1971. Dislocation particle interactions. P. 12 in Strengthening Methods in Crystals, R.W. Cahn andR.B. Nicholson, eds. Amsterdam, Netherlands:Elsevier.

Browning, C.E. 1978. The mechanisms of elevated temperature property losses in high performance structural epoxy resin matrix materials after exposures to high humidity environments. Polymer Engineering and Science18:16–24.

Brunner, M.D. 1994. MDC Presentation on High Speed Civil Transport. Presentation to the Workshop on Long-Term Aging of Materials and Structures, National Materials Advisory Board, National Research Council , Washington, D.C., August 10–12.

Bucci, R.J., and H.J. Konish. 1994. Damage Assessment and Life Enhancement of Aged and Aging Aluminum Airframes.Presentation to the Workshop on Long-Term Aging of Materials and Structures, National Materials Advisory Board,National Research Council, Washington, D.C.August 10–12.

Butt, R.I., 1985. The Creep Strength and Rupture Properties of Aluminum Alloy Plate 2124-T851 at 100° and 150°C . Royal Aircraft Establishment Technical Report No. 85058. Procurement Executive, Ministry of Defence. Farnsborough, England : Royal Aircraft Establishment.

Butt, R.I., and R.N. Wilson. 1980. The Creep Strength and Rupture Properties of Aluminum Alloy Plates 2124-T851, 2419-T851 and X2048-T851 at 100°, 120° and 150°C . Technical Report No. 80142. Farnsborough, England:Royal Aircraft Establishment.

1983. Recovery and Recrystallization in Physical Metallurgy , R.W. Cahn andP. Haasen eds. Amsterdam, Netherlands:North-Holland Publishing Company.

Carey, J.E. 1957. Status Report of National Association of Corrosion Engineers . Houston, Texas:NACE.

Chen, C.Q. , and J.F. Knott . 1981. Effects of dispersoid particles on toughness of high-strength aluminium alloys . Metal Science15(8):357–364.

Cho, U.W., and W.N. Findley. 1984. Creep and creep recovery of 2618-T61 aluminum under variable temperature . ASME Journal of Applied Mechanics51:816–820.

Chollon G., M. Czerniak, R. Pailler, X. Bourrat, R. Naslain, P. Olry, and S. Loison. 1993. Silicon carbide fibers: preparation and characterization of SiC-based fibers with a low oxygen content. Pp. 109–118in the 6th European Conference on Composite Materials, High Temperature Ceramic Matrix Composites—HT-CMC1, September 20–24, Bordeaux. R. Naslain, J. Lamon, andD. Doumeingts, eds. Cambridge, England: Woodhead Publishing Limited.

Claeys, S.F., and J.W. Jones. 1984. Role of microstructural instability in long time creep life prediction . Metal Science18:432–438.

Clauer, A.H.R., and B.A. Wilcox. 1974. The Influence of Sub-structure on the Properties of Metals. Contract No. F3361571-C-1714 Final Technical Report 1971-06-01 to 1974-05-31. Washington, D.C.: U.S. Department of Defense.

Cornelia, R.H. 1994. Hygrothermal performance polyimides. Pp. 917–929 inthe 39th International SAMPE Symposium,Vol. 39, Book 1 Covina, California :Society for the Advancement of Materials and Process Engineering.

Courtright, E.L. 1991. Engineering property limitations of structural ceramics and ceramic composites above 1600°C. Ceramic Engineering and Science Proceedings12(9–10):1725–1744.

Davies, C.K.L., P. Nash, and R.N. Stevens. 1980. The effect of volume fraction on Ostwald Ripening. Acta Metallurgica28:179–189.

Dexter, H.B., and D.J. Baker . 1994. Flight service environmental effects on composite materials and structures . Advanced Performance Materials1(1): 51–85.

DiCarlo, J.A., H.M. Yunn, G.N., G.N. Morscher, and J. Goldsby. 1994. Tensile Creep-Rupture Modeling of SiC Fibers, HI-TEMP Review 1994, Vol. III 76-1., Cleveland, Ohio: NASA Lewis Research Center.

DOD (U.S. Department of Defense). 1994. Polymer Matrix Composites , Vol. I. Military Handbook-17. Washington, D.C.:DOD.

Dogan, B., A. Saxena, and K.H. Schwalbe. 1992. Creep crack growth in creep-brittle Ti-6242 alloys. Materials at High Temperatures10:138–143.

Dorn, J.E., and C.D. Starr. 1954. Relation of Properties to Microstructure. Metals Park, Ohio: American Society of Metals.

Doyle, W.M. 1969a. The development of hiduminium-RR58 aluminum alloy for use in the Concorde. Metallurgia80:101–105 .

Doyle, W.M. 1969b. Development of hiduminium-RR58: structural aluminum alloy used in the Concorde . Metal Forming216–220.

Dvorak, G.J. 1985. Analysis of Progressive Matrix Cracking in Composite Laminates. AFOSR-82-0308. Troy, N.Y.:Rensselaer Polytechnic Institute.

Epstein, G., and W. Bandaruk. 1964. The crazing phenomenon and its effects in filament-wound pressure vessels. Pp. 1–8in the Proceedings of the 19th Annual Technical Conference of the Society of Plastics Industry, Section 19D, Chicago, Ill.

Evans, R.W., A.A. Fadlalla, B. Wilshire, R.I. Butt, and R.N. Wilson. 1990. Prediction of long-term creep rupture properties for an aluminum alloy for airframe applications. Pp. 1009–1016in Proceedings of the Fourth International Conference on Creep and Fracture of Engineering Materials and Structures. London: Institute of Materials.

Suggested Citation:"References." National Research Council. 1996. Accelerated Aging of Materials and Structures: The Effects of Long-Term Elevated-Temperature Exposure. Washington, DC: The National Academies Press. doi: 10.17226/9251.
×

Eylon, D., A. Vassel, Y. Combres, R.R. Boyer, P.J. Bania and R.W. Schutz. 1994 . Issues in the development of beta titanium alloys . Journal of Metals46(7) 14–15 .

Filipuzzi, L., and R. Naslain. 1994. Oxidation mechanisms and kinetics of 1D-SiC/C/SiC composite materials: I and II . Journal of the American Ceramic Society77(2) : 459–467 .

Findley, W.N., and J.S. Lai. 1978. Creep and recovery of 2618 aluminum alloy under combined stress with a representation by a viscous-viscoelastic model. ASME Journal of Applied Mechanics44:1–8.

Fox, D.S., N.S. Jacobsen, and J.L. Smialek. 1990. Hot corrosion of silicon carbide and silicon nitride at 1000 degrees . Ceramic Transactions10:227–249 .

Fried, N. 1967. Degradation of composite materials: the effect of water on glass-reinforced plastics . Proceedings of the Fifth Symposium on Naval Structural Mechanics.

Frost, H.J. 1985. Transient deformation mechanism maps. Pp. 65–82in Flow and Fracture at Elevated Temperatures, R. Raj, ed. Metals Park, Ohio: ASM International (formerly American Society for Metals).

Fu, L.S. 1980. Creep crack growth in technical alloys at elevated temperature—a review. Engineering Fracture Mechanics13:307–330.

Gangloff, R.P. 1988. Crack tip modeling of hydrogen environment embrittlement: application to fracture mechanics life prediction . Materials Science & Engineering A: Structural Materials: Properties, Microstructure and Processing A103:157–166.

Gangloff, R.P. 1994. Microbe-enhanced fatigue crack propagation in HY130 steel. Corrosion50(5):345–354.

Gao, Z. , and K.L. Reifsnider. 1993. Micromechanics of tensile strength in composite systems. Pp. 453–470in the 4th Symposium on Composite Materials, ASTM STP 1156. Philadelphia, Pennsylvania: American Society for Testing and Materials.

Garrett, G.G., and J.F. Knott. 1978. Influence of compositional and microstructural variations on the mechanism of static fracture in aluminum alloys. Metallurgical Transaction A9A(9):1187–1201 .

Gerold, V. 1979. Precipitation hardening. Pp. 221–260 in Dislocations in Solids, F.R.N. Nabarro , ed. Amsterdam, Netherlands: North-Holland Publishing Company.

Grande, D.L. 1994. High Speed Civil Transport (HSCT) Project Requirement . Paper presented at the Workshop on Long-Term Aging of Materials and Structures, National Materials Advisory Board,National Research Council , Washington, D.C. , August 10–12.

Grandle, J.A., B.P. Somerday, and R.P. Gangloff. 1994. Yield strength and solution composition effects on aqueous environmental cracking of Ti-8V-6Cr-4Zr-4Mo-3Al (Beta C). Pp. 375–392in Proceedings of the Tri-Services Conference on Corrosion, Materials Laboratory, Wright-Patterson Air Force Base, Ohio.

Grayson, M.A., and C.G. Fry. 1992. On the use of a kinetic map to compare the thermal stability of polymeric materials undergoing weight loss. P. 194 of the Proceedings of the 21st North American Thermal Analysis Society. Atlanta, Georgia , September 13–16.

Greszczuk, L.B. 1988. Special Topics in Composites . Paper presented at UCLA Short Course on Advanced Analysis and Design at Composite Materials and Structures .

Hamilton, B.C., and A. Saxena. 1994. Elevated temperature crack growth of aluminum alloy 2519. Pp. 749–756in the Fourth International Conference on Aluminum Alloys, Their Physical and Mechanical Properties, Vol. 1 , T.H. Sanders, Jr., and E.A. Starke, Jr., eds, September 11–16. Atlanta: Georgia Institute of Technology.

Harfert, R.E. 1970. Metallurgical Study of Criteria Used to Achieve Compression of Elevated Temperature Test Time . Air Force Materials Laboratory Technical Report AFML-TR-70-57. Wright-Patterson Air Force Base , Ohio: Wright Laboratories.

Harpur, N.F. 1968. Concorde structural development. Journal of Aircraft5(2):176–183.

Hasegawa, P. 1993. Synthesis of thermally stable Si-C fibre . Pp. 59–66in the 6th European Conference on Composite Materials, High Temperature Ceramic Matrix Composites—HT-CMC1 September 20–24, Bordeaux. R. Naslain , J. Lamon, and D. Doumeingts, eds. Cambridge, England: Woodhead Publishing Limited.

Hashin, Z. 1985. Analysis of cracked laminates: a variational approach. Mechanics of Materials4:121–136 .

Hashin, Z. 1987. Analysis of orthogonally cracked laminates under tension. Journal of Applied Mechanics54:872–879.

Highsmith, A.L., and K.L. Reifsnider. 1982. Stiffness reduction mechanisms in composite laminates. Pp. 103–117in Damage in Composite Materials, ASTM STP 775 , K.L. Reifsnider , ed. Philadelphia, Pennsylvania: American Society for Testing and Materials.

Highsmith, A.L., W.W. Stinchcomb, and K.L. Reifsnider. 1981. Stiffness Reduction Resulting from Transverse Cracking in Fiber-Reinforced Composite Laminates. ESM Dept. Report , Virginia Polytechnic Institute and State University, Blacksburg .

Hipp, R.C., A. Mallow, P.S. McLellan , and M.D. Renieri. 1993. Thermal Aging Screening of Composite Materials. Paper presented at the 4th NASA/DOD Advanced Composite Technology Conference, Salt Lake City, Utah, June 7–14.

Holmes, J.W., Y.H. Park, and J.W. Jones. 1993. Tensile creep and creep-recovery behavior of SiC-fiber-Si3N4 matrix composites . Journal of the American Ceramic Society76(5) : 1281–1293 .

Holroyd, N.J.H.H. 1989. Environment-induced cracking of high-strength aluminum alloys. Pp. 311–345in Environment-Induced Cracking of Metals Proceedings, R.P. Gangloff and M.B. Ives, eds. Houston, Texas: National Association of Corrosion Engineers.

Suggested Citation:"References." National Research Council. 1996. Accelerated Aging of Materials and Structures: The Effects of Long-Term Elevated-Temperature Exposure. Washington, DC: The National Academies Press. doi: 10.17226/9251.
×

IATA (International Air Transport Association). 1991. Conclusions of the IATA Questionnaire on Composite Structure Maintenance . Montreal: IATA.

Imig, L.A. 1976. Crack growth in Ti-8Al-1Mo-1V with real-time and accelerated flight-by-flight loading in fatigue crack growth under spectrum loads. American Society for Testing and Materials, ASTM STP 595:251–264.

Imig, L.A., and L.E. Garrett. 1973. Fatigue-Test Acceleration with Flight-by-Flight Loading and Heating to Stimulate Supersonic Transport Operation. NASA Technical Note D-7380. Hampton, Virginia: National Aeronautics and Space Administration .

Jacobson, N. 1993. Corrosion of silicon-based ceramics in combustion environments. Journal of the American Ceramic Society76(1):3–28.

Jamet, J.F., and P. Lamicq. 1993. Composite thermo-structures: an overview of the French experience . Pp. 735–742 in the 6th European Conference on Composite Materials, High Temperature Ceramic Matrix Composites—HT-CMC1,September 20–24, Bordeaux. R.Naslain, J. Lamon, and D. Doumeingts, eds. Cambridge, England: Woodhead Publishing Limited.

Jeans, L.L., G.C. Grimes, and H.P. Kan. 1980. Fatigue Spectrum Sensitivity Study of Advanced Composite Materials . AFWAL-TR-80-3130. Wright-Patterson Air Force Base, Ohio: Wright Laboratories.

Jia, N.R., R. Bodet, and R.E. Tressler. 1993. Effects of microstructural instability on the creep behavior of Si-C-O (nicalon) fibers in argon. Journal of the American Ceramic Society76(12):3051–3060.

Kan, H. 1994. Issues in Certification of Long-Life Structures. Paper presented at the Workshop on Long-Term Aging of Materials and Structures, National Materials Advisory Board, National Research Council, Washington, D.C., August 10–12.

Kashimoto, A. 1992. The effect of H2O(g) on volatilities of planet-forming major elements . I. Experimental determination of thermodynamic properties of calcium, aluminum, and silicon hydroxide gas molecules in application to the solar nebula. Geochemica et Cosmochemica Acta56:511–532.

Kawabe Y., and S. Muneki. 1993. Strengthening capability of beta-titanium alloys . Pp. 187–197in Beta Titanium Alloys in the 1990s, D. Eylon, R.R. Boyer, and D.A. Koss, eds. Warrendale, Pennsylvania: The Metallurgical Society of the American Institute of Mechanical Engineers .

Kerr, J.R., and J.F. Haskins. 1987. Time-Temperature-Stress Capabilities of Composite Materials for Advanced Supersonic Technology Application. NASA Contractor Report 178272, Contract NAS1-12308. Hampton, Virginia: NASA Langley Research Center.

Kiddle, F.E., R.J. Kite, and R.F. Mousley. 1976. A Study of Thermal Fatigue Acceleration in Box Beams Under Mechanical and Thermal Stresses. Procurement Executive, Ministry of Defence, Aeronautical Research Council Current Papers, C.P. No. 1342, London.

Klimowicz, T.F., and K.S. Vecchio. 1990. Alumina-reinforced aluminum composites. Pp. 255–269in Fundamental Relationships Between Microstructure and Mechanical Properties of Metal Matrix Composites, P.K. Liaw andM. Gungor, eds. Warrendale, Pennsylvania: The Metallurgical Society of the American Institute of Mechanical Engineers .

Lagneborg, N. 1972. Dislocation mechanisms in creep. International Metals Review17:130–146.

Lang, Y., W.C. Porr, and R.P. Gangloff. 1991. Time-dependent crack growth in P/M Al-Fe-V-Si alloy at elevated temperatures . Scripta Metallurgica25:895–901.

Larson, F.R., and J. Miller. 1952. A time-temperature relationship for rupture and creep stresses. Transactions of ASME74:765–771.

Laws, N., G.J. Dvorak, and M. Hejazi. 1983. Stiffness changes in unidirectional composites caused by crack systems . Mechanics of Materials2:123–137 . Amsterdam, Netherlands: North Holland Publishing Company.

Lee, J.W., and I.M. Daniel. 1990. Progressive transverse cracking of crossply composite laminates. Journal of Composite Materials24(Nov.):1225–1291.

Lee, J.W., D.H. Allen, and C.E. Harris. 1989. Internal state variable approach for predicting stiffness reductions in fibrous laminated composites with matrix cracks. Journal of Composite Materials23:1273–1291.

Lee, K.N., N.S. Jacobson, and R.A. Miller. 1994. Refractory oxide coatings on SiC ceramics. MRS BulletinXIX(10):33–358.

Lee, K.N., R.A. Miller, and N.S. Jacobson. 1995. A new generation of plasma-sprayed mullite coatings on SiC . Journal of the American Ceramic Society78(3):705–710 .

Lewandowski, J.J. 1989. Processing and mechanical properties of lightweight structural composites . SAMPE Quarterly20(2):33–37.

Lewandowski, J.J., and J.F. Knott. 1985. Microstructural effects on flow localization in 7XXX Al alloys. Pp. 1193–1200in Strength of Metals and Alloys—ICSMA 7, Vol. 2. London: Pergamon Press.

Lewandowski, J.J., V. Kohler, and N.J.H.H. Holroyd. 1987. Effects of Pb on the sustained load cracking of Al-Mg-Si alloys at ambient temperatures . Materials Science and Engineering96:185–195 .

Lewandowski, J.J., C. Liu, and W.H. Hunt. 1989. Effects of microstructure and particle clustering on fracture of an aluminum metal matrix composite. Materials Science and EngineeringA107:241–255.

Lewandowski, J.J., Y.S. Kim, and N.J.H.H. Holroyd. 1992. Lead-induced solid metal embrittlement of an excess silicon

Suggested Citation:"References." National Research Council. 1996. Accelerated Aging of Materials and Structures: The Effects of Long-Term Elevated-Temperature Exposure. Washington, DC: The National Academies Press. doi: 10.17226/9251.
×

Al-Mg-Si alloy at temperatures of −4 degrees C to 80 degrees C. Metallurgical TransactionsA23A(6):1679–1689.

Lewinsohn, C.A., L.A. Giannuzzi, C.E. Bakis , and R.E. Tressler. 1994. Primary Creep of CVD Silicon Carbide Fibers, HI-TEMP Review 1994, vol. 3,75-1 . NASA Lewis Research Center, Cleveland , Ohio.

Lifshitz, I.M., and V.V. Slyozov. 1961. The kinetics of precipitation from supersaturated solid solutions . 19 : 35–50 .

Lim, S.G., and C.H. Hong. 1989. Prediction of transverse cracking and stiffness reduction in cross-ply laminated composites. Journal of Composite Materials23:695–713.

Liu, C., and J.J. Lewandowski. 1988. Microstructural effects on fracture micromechanisms in lightweight metal matrix composites. Pp. 23–33in Conference on Advanced Structural Materials, D. Wilkinson, ed. Montreal, Canada: CIM.

Liu, C., J.J. Lewandowski, and G.M. Michal. 1993. Residual stresses in aluminum based SiC particulate composite. Pp. 239–257in Proceedings of Conference on Residual Stresses in Composites : Measurement, Modeling and Effects on Thermo-Mechanical Behavior, E.V. Barerra, M. Gungor, and S. Fishman, eds. Warrendale, Pennsylvania: The Metallurgical Society of the American Institute of Mechanical Engineers .

Lloyd, D.J. 1991. Aspects of fracture in particulate reinforced metal matrix composites . Acta Metallurgica et Materialia39(1):59.

Loos, A.C., and G.S. Springer. 1979. Effects of thermal spiking on graphite-epoxy composites. Journal of Composite Materials13:16–34.

Lucas, J.P. 1990. Hydrogen effects on fracture toughness of Ti-6-Al-4V determined by a steadily growing stable crack. Pp. 871–880in Hydrogen Effects on Material Behavior, N.R. Moody andA.W. Thompson, eds. Warrendale, Pennsylvania: The Metallurgical Society of the American Institute of Mechanical Engineers .

Luthra, K., R. Singh, and M. Brun . 1993. SiC fiber reinforced Silcomp (Si-SiC) composites. Pp. 429–436in the 6th European Conference on Composite Materials, High Temperature Ceramic Matrix Composites—HT-CMC1 September 20–24, Bordeaux. R. Naslain, J. Lamon, and D. Doumeingts, eds. Cambridge, England: Woodhead Publishing Limited.

Magendie, F.M., J.C. Seferis , and I.A. Aksay . 1990 . Thermal stability comparison of ceramic and carbon fiber reinforced BMI matrix composites . Pp. 2280–2288in Proceedings of the 35th International SAMPE Symposium and Exhibition, Advanced Materials: The Challenge for the Next Decade . Covina, California : Society for the Advancement of Materials and Process Engineering.

Manoharan, M., and J.J. Lewandowski. 1990. Crack initiation and growth toughness of an aluminum metal-matrix composite. Acta Metallurgica et Materialia38(3):489–496 .

Manoharan, M., L.Y. Ellis, and J.J. Lewandowski. 1990. Laminated composites with improved toughness. Scripta Metallurgica et Materialia24(8):1515–1519.

Manson, S.S., and C.R. Ensign. 1979. A quarter-century of progress in the development of correlation and extrapolation methods for creep rupture data. Journal of Engineering Materials & Technology101:317–325 .

Martin, J.W. 1980. Micromechanisms in Particle-Hardened Alloys. New York: Cambridge University Press.

Martin, J.W., and R.D. Doherty. 1976. Stability of Micro-structures in Metallic Systems. Cambridge Solid State Science Series. New York: Cambridge University Press.

Martinod, H., C. Renon, and J. Calvet. 1969. Fluage de longue duree de l'alliage AU2GN. Memoires Scientifiques Revue de Metallurgie LXVI4(66):303–310.

McCarty, J.E., and D.R. Wilson. 1983. Advanced Composite Stabilizer for Boeing 737 Aircraft . Paper presented at the 6th Conference on Fibrous Composites in Structural Design AMMRC.

McElroy, R.J., and Z.C. Szkopiak. 1972. Dislocation-substructure-strengthening and mechanical-thermal treatment of metals. International Metals Review 17:175–202 .

McGarry, F.J., and A.M. Wilner. 1968. Microcracking in fibrous glass reinforced resin composites. Pp. 1–11, Section 14B in the Proceedings of the 23rd Annual Technical Conference of the Society of Plastics Industry. Washington, D.C.:Society of the Plastics Industry.

McKague, E.L., Jr., J.E. Halkias, and J.D. Reynolds. 1975. Moisture in composites: the effect of supersonic service on diffusion . Journal of Composite Materials9:2–9 .

McKague, E.L., Jr., J.D. Reynolds, and J.E. Halkias. 1978. Swelling and glass transition relations for epoxy matrix material in humid environments . Journal of Applied Polymer Science22 : 1643–1654 .

Minford, E.J., and R.E. Tressler. 1983. Determination of threshold stress intensity for crack growth at high temperatures in silicon carbide ceramics. Journal of the American Ceramic Society66(5):338–340.

Minford, E.J., D.M. Kupp, and R.E. Tressler. 1983. The stable fatigue limit for sintered silicon carbide at elevated temperature. Journal of the American Ceramic Society66(11):769–773 .

Moody, N.R., and J.E. Costa. 1991. A review of micro-structure effects on hydrogen-induced sustained load cracking in structural titanium alloys. Pp. 587–604in Microstructure-Properties Relationships in Titanium Alloys and Titanium Aluminides , Y.W. KimandR.R. Boyer, eds., Warrendale, Pennsylvania: The Metallurgical Society of the American Institute of Mechanical Engineers.

Suggested Citation:"References." National Research Council. 1996. Accelerated Aging of Materials and Structures: The Effects of Long-Term Elevated-Temperature Exposure. Washington, DC: The National Academies Press. doi: 10.17226/9251.
×

Murphy, A.J. 1972. Metals in flight. British Corrosion Journal7:146–147.

Nairn, J.A., and S. Hu. 1992. The formation and effect of outer-ply microcracks in cross-ply laminates: a variational approach. Engineering Fracture Mechanics41:203.

Nam, J.D., and J. Seferis. 1992. Anisotropic thermo-oxidative stability of carbon fiber reinforced polymeric composites. SAMPE Quarterly24(1):10.

Nam, J.D., J.C. Seferis, and D.C. Bonner. 1989. Degradation as a process for high temperature composite materials . Paper presented at the American Institute of Chemical Engineers Annual Meeting, Emerging Technologies in Materials, New York, November 5–10.

Nelson, H.G. 1974. Aqueous chloride stress corrosion cracking of titanium—a comparison with environmental hydrogen embrittlement. P. 445in Hydrogen in Metals, I.M. Bernstein andA.W. Thompson, eds. Metals Park, Ohio: ASM International.

Newcomb, S., and R.E. Tressler. 1993. Slow crack growth in sapphire fiber at 800°C to 1500°C. Journal of the American Ceramic Society76(10):2505–2512.

Newkirk, M.S., A.W. Urqhart, H.R. Zwicker, and E. Breval. 1986. Formation of LanxideTM Al2O3-Al ceramic composite materials . Journal of Materials Research1(1):81–89.

Nikbin, K.M., D.J. Smith, and G.A. Webster. 1986. An engineering approach to the prediction of creep crack growth. Transactions of ASME108:186–191.

Nix, W.D., and J.C. Gibeling. 1983. Mechanisms of time-dependent flow and fracture of metals. Pp. 1–63in Flow and Fracture at Elevated Temperatures. Metals Park, Ohio: American Society of Metals.

NRC (National Research Council). 1991. Life Prediction Methodologies for Composite Materials. Committee on Life Prediction Methodologies for Composite Materials, National Materials Advisory Board. Washington, D.C.: National Academy Press.

NRC (National Research Council). In Press. Coatings for High-Temperature Structural Materials: Trends and Opportunities . Committee on Coatings for High-Temperature Structural Materials, National Materials Advisory Board, NMAB-475. Washington, D.C.: National Academy Press.

Nyden, M., and J.E. Brown. 1993. Computer-aided molecular design of fire resistant aircraft materials . Pp. 147–of the Proceedings of the International Conference for the Promotion of Advanced Fire Resistant Aircraft Interior Materials, Atlantic City, N.J : Federal Aviation Administration Technical Center.

Opila, E.J. 1994. Oxidation kinetics of chemically vapor-deposited silicon carbon in wet oxygen. Journal of the American Ceramic Society77(3):730–736.

Opila, E.J., and N.S. Jacobson. 1995. SiO(g) formation from SiC in mixed oxidizing/reducing gases. Oxidation of Metals44(5–6):527–544 .

Opila, E.J., D.S. Fox, and R.E. Hann. 1994. Mechanisms and Modeling of SiC Oxidation with Simultaneous Oxide Volatilization.Paper presented at the Electrochemical Society Meeting, Miami Beach, Florida, October 19.

Paplham, W.P., R.A. Brown, I.M. Salin, and J.C. Seferis. 1994. Absorption of water in polyimide resins and composites. Journal of Applied Polymer Science57(2):133–137 .

Parkins, R.,and P.M. Singh. 1990. Stress corrosion crack coalescence. Corrosion46(6):485–499.

Peel, C.J. 1994. Degradation of Aluminum Alloys—Concorde Experience. Paper presented at the Workshop on Long-Term Aging of Materials and Structures, National Materials Advisory Board, National Research Council, Washington, D.C., August 10–12.

Porr, W.C., and R.P. Gangloff. 1994. Elevated temperature fracture of RS/PM alloy 8009: part 1: fracture mechanics behavior . Metallurgical Transactions A25A(2):365–381.

Pride, R.A., B.A. Stein, and F.W. Schmidt. 1968. Mechanical properties of polyimide-resin/glass fiber laminates for various time, temperature and pressure exposures. Pp. 1–8 (Section 17C) in the Proceedings of the 23rd Annual Technical Conference of the SPI Composites Institute. Washington, D.C.: SPI Composites Institute.

Rack, H.J. 1994. Personal communication with E.A. Starke.

Reifsnider, K.L. 1991a. Fatigue of Composite Materials. London: Elsevier.

Reifsnider, K.L. 1991b. Performance simulation of polymer-based composite systems. Pp. 3–26in Durability of Polymer-Based Composite Systems for Structural Applications , A.H. Cardon andG. Verchery, eds. New York: Elsevier.

Reifsnider, K.L. 1992. Use of mechanistic life prediction methods for the design of damage tolerant composite material systems . Pp. 205–223in Cyclic Deformation, Fracture, and Nondestructive Evaluation of Advanced Materials, ASTM STP 1157, M.R. Mitchell andO. Buck, eds. Philadelphia, Pennsylvania: American Society for Testing and Materials.

Reifsnider, K.L., and Z. Gao. 1991. Micromechanical concepts for the estimation of property evolution and remaining life . Pp. 653–657 in ESA SP-321, Proceedings of the International Conference on Spacecraft Structures and Mechanical Testing, Noordwijk, Netherlands, April 24–26.

Reifsnider, K.L., and A. Giacco, 1990. The use of microcrack analysis in performance simulation for composite material systems . Pp. 19–27 in Microcracking-Induced Damage in Composites, AMD-Vol.111,MD-Vol.22, G.J. Dvorak, and D.C. Lagoudas, eds. New York : American Society of Mechanical Engineers.

Reifsnider, K.L., and A.L. Highsmith. 1981. Characteristic damage states: a new approach to representing fatigue damage in composite materials. Pp. 246–260in Materials Experimentation and Design in Fatigue. Guildford, U.K.: Westbury House .

Suggested Citation:"References." National Research Council. 1996. Accelerated Aging of Materials and Structures: The Effects of Long-Term Elevated-Temperature Exposure. Washington, DC: The National Academies Press. doi: 10.17226/9251.
×

Reifsnider, K.L., and W.W. Stinchcomb. 1986. A critical element model of the residual strength and life of fatigue-loaded composite coupons. Pp. 298–313in Composite Materials: Fatigue and Fracture,ASTM STP 907,H.T. Hahn , ed. Philadelphia, Pennsylvania: American Society for Testing and Materials.

Rodriguez, F. 1970. Principles of Polymer Systems. New York: McGraw-Hill.

Rugg, K., and R.E. Tressler. 1995. Delayed failure of ceramic fibers at elevated temperatures. Pp. 375–380in Ceramic Transactions, Vol. 57, High-Temperature Ceramic Matrix Composites, I, Design, Durability, and Performance Westerville, Ohio : American Ceramic Society.

Sadanda, K., and P. Shahinian. 1981. Review of the fracture mechanics approach to creep crack growth in structural alloys . Engineering Fracture Mechanics15:327–342.

Salin, I.M., J.C. Seferis, C.L. Loechelt, and R. Rothchilds. 1992. Time-temperature equivalence in thermogravimetry for BMI composites . SAMPE Quarterly24(1):54.

Saxena, A. 1991. Creep crack growth in high temperature ductile materials. Engineering Fracture Mechanics40:721–736.

Saxena, A., J. Han, and K. Banerji. 1988. Creep crack growth behavior in power plant boiler and steam pipe steels. ASME Journal of Pressure Vessel Technology110:137–146.

Schutz, R.W. 1993. An overview of beta titanium alloy environment behavior. Pp. 75–91in Beta Titanium Alloys in the 1990s, D. Eylon, R.R. Boyer, and D.A. Koss, eds. Warrendale, Pennsylvania: The Metallurgical Society of the American Institute of Mechanical Engineers .

Sensmeier, M.D. 1994. Degradation of Polymeric Composites. Presentation to the Workshop on Long-Term Aging of Materials and Structures, National Materials Advisory Board , National Research Council, Washington, D.C., August 10–12.

Shapery, R.A. 1990. A theory of mechanical behavior of elastic media with growing damage and other changes in structure . Journal of Mechanics and Physics of Solids38:215–153.

Shen, C.H., and G.S. Springer. 1976. Moisture absorption and desorption of composite materials. Journal of Composite Materials10(Jan):2–20.

Shiflet, G.J., H.I. Aaronson, and T.H. Courtney. 1979. Kinetics of coarsening by the ledge mechanism. Acta Metallurgica27:377–385.

Simo, J.C., and J.W. Ju. 1987. Strain- and stress-based continuum damage models. International Journal of Solids and Structures23(7):821–839 .

Sims, C.T. 1986. Superalloys: genesis and character. Pp. 3–26 in Superalloys II, C.T. Sims, N.S. Stoloff, and W.C. Hagel, eds. New York: John Wiley & Sons.

Singer, R., and W. Blum. 1977. The influence of thermomechanical treatments on the creep resistance of RR58 at elevated temperature. Zietschrift fuer Metallkunde68:328–336.

Singh, P.M. 1991. Simulation and prediction of crack growth controlled by random factors . Pp. 1219–1233in Proceedings of the 3rd NACE IRCS, Life Prediction of Corrodible Structures , Vol. 2, R.N. Parkins, ed. Houston, Texas: National Association of Corrosion Engineers .

Singh, P.M., and J.J. Lewandowski. 1993a. Effects of heat treatment and reinforcement size on reinforcement fracture during tension testing of a SiCp discontinuously reinforced aluminum alloy. Metallurgical Transactions A24A(11):2451–2464.

Singh, P.M., and J.J. Lewandowski. 1993b. Poisson ratio measurements for an Al-based metal matrix composite during elastic and plastic deformation. Scripta Metallurgica et Materialia29(2):199–204.

Singh, P.M., J.J. Lewandowski, and N.J.H.H. Holroyd. 1992a. Modeling of lead-induced slow crack growth in excess silicon Al-Mg-Si alloys at ambient temperatures. Pp 29–39in Jaffee Memorial Symposium on Clean Materials Technology, R. Viswanathan, ed. Metals Park, Ohio: ASM International.

Singh, P.M., and R. Parkins. 1990. Stress-corrosion crack coalescence. Corrosion46:485–489 .

Singh, P.M., N.J.H.H. Holroyd, J.J. Lewandowski, and J.T. Evans. 1992b. Simulation of lead induced slow crack growth in Al-Mg-Si alloys. Pp. 567–583in Parkins Symposium on Fundamental Aspects of Stress Corrosion Cracking , S.M. Bruemmer, E.I. Meletis, R.H. Jones, W.W. Gerberich, F.P. Ford, and R.W. Staehle, eds. Warrendale, Pennsylvania: The Metallurgical Society of the American Institute of Mechanical Engineers .

Speight, M.V. 1968 . Growth kinetics of grain boundary precipitates. Acta Metallurgica16:133–135.

Spuhler, E.H., A.H. Knoll, and G.W. Stickley. 1963. Survey of Candidate Aluminum Materials for Supersonic Aircraft Applications . Paper presented at the National Aeronautic and Space Engineering and Manufacturing Meeting, Los Angeles, California, September 23–27.

Stenzenberger, H.D., K.U. Heinen, and D.O. Hummel. 1976. Thermal degradation of poly(bismaleimides). Journal of Polymer Science: Polymer Chemistry14 : 2911–2925 .

Strang, W.J., and R.M. McKinlay. 1978. Concorde in service. Aeronautical Journal83:39–52.

Stringer, J., and R. Viswanathan. 1990. Keynote address: life assessment techniques and coating evaluations for combustion turbine blades. Pp. 1–18in Life Assessment and Repair Technology for Combustion Turbine Hot Section Components: Proceedings of an International Conference. Materials Park, Ohio: ASM International.

Talreja, R. 1985. A continuum mechanics characterization of damage in composite materials . Proceedings of the Royal Society of LondonA399:195–216 .

Suggested Citation:"References." National Research Council. 1996. Accelerated Aging of Materials and Structures: The Effects of Long-Term Elevated-Temperature Exposure. Washington, DC: The National Academies Press. doi: 10.17226/9251.
×

Tressler, R.E. 1993. High temperature stability of non-oxide structural ceramics. Materials Research Society Bulletin18(9):58–63.

Tressler, R.E., and J.A. DiCarlo. 1993. High temperature mechanical properties of advanced fibers. Pp. 33–50in the 6th European Conference on Composite Materials, High Temperature Ceramic Matrix Composites—HT-CMC1, September 20–24, 1993, Bordeaux. R. Naslain , J. Lamon, and D. Doumeingts, eds. Cambridge, England: Woodhead Publishing Limited.

Vassel, A. 1993. Microstructural instabilities in beta-titanium alloys. Pp. 173–185in Beta Titanium Alloys in the 1990s.D. Eylon, R.R. Boyer, and D.A. Koss, eds. Warrendale, Pennsylvania: The Metallurgical Society of the American Institute of Mechanical Engineers.

Vasudevan, A.K., and R. Doherty. 1987. Grain boundary ductile fracture in precipitation hardened aluminum alloys .Acta Metallurgica35(6):1193–1219.

Vosteen, L.F. , and R.N. Hadcock, 1994. Composite Chronicles: A Study of the Lessons Learned in the Development, Production, and Service of Composite Structures. NASACR 4620. Washington, D.C.: National Aeronautics and Space Administration.

Wagner, C. 1961. Theorie der alterung von niederschlagen durch umlosen. Zietschrift fuer Electrochemie65 : 581–591 .

Weatherly, G.C., and R.B. Nicholson. 1968. An electronmicroscope investigation of the interfacial structure of semi-coherent precipitates. Philosophical Magazine17:801–831 .

Webb, J.N. 1977. Introduction to a library of creep and strain recovery data for DTD 5070A aluminum alloy. Technical Report No. 76066. Farnsborough, England: Royal Aircraft Establishment.

Whitehead, R.S., H. Kan, R. Cordero, and E. Saether. 1986. Certification Testing Methodology for Composite Smactures Final Report for Naval Air Development Center, March 1984–December 1985.

Williams, J.C., and A.M. Johnson. 1994. HSCT Aging Engine Issues. Presentation at the Workshop on Long-Term Aging of Materials and Structures, National Materials Advisory Board, National Research Council, Washington, D.C., August 10–12.

Wilshire, B., and R.W. Evans. 1994. Acquisition and analysis of creep data. Journal of Strain Analysis29(3):159–165.

Wilson, R.N. 1973. Influence of 3% prestrain on the creep strength of Al-2. 5% Cu-1. 2% Mg alloys at 150 degrees C. Journal of the Institute of Metals 101(July–August):188–196.

Withers, P., and W. Clyne. 1993. An Introduction to Metal Matrix Composites. Cambridge Solid State Science Series. New York : Cambridge University Press.

Wolff, E.G. 1993. Moisture effects on polymer matrix composites . SAMPE Journal29(3):11–19.

Xu, Y.L., and K.L. Reifsnider. 1993. Micromechanical modeling of composite compressive strength. Journal of Composite Materials27(6):572-588.

Yoon, K.B., A. Saxena, and P.K. Liaw. 1993. Characterization of creep-fatigue crack growth behavior under trapezoidal wave shape using Ct-parameter. International Journal of Fracture59 :95–114.

Young, G.A., Jr., and J.R. Scully. 1993. Effects of hydrogen on the mechanical properties of a Ti-Mo-Nb-Al alloy. Scripta Metallurgica et Materialia28(4):507–512.

Young, G.A., Jr., and J.R. Scully. 1994. Internal hydrogen embrittlement of solution heat treated and aged Ti-15-V-3Cr-3Al-3Sn and Ti-15Mo-3Nb-3Al. Corrosion50(12):919–933.

Young, L.M., G.A. Young, Jr., J.R. Scully , and R.P. Gangloff. 1995. Aqueous environment enhanced crack propagation in high strength beta titanium alloys . Metallurgical and Materials Transactions A26A:1257–1271.

Zheng, Z., R.E. Tressler, and K.E. Spear. 1992. The effect of Na contamination on oxidation of silicon crystal silicon carbide .Corrosion Science33(4):545–556 .

Suggested Citation:"References." National Research Council. 1996. Accelerated Aging of Materials and Structures: The Effects of Long-Term Elevated-Temperature Exposure. Washington, DC: The National Academies Press. doi: 10.17226/9251.
×
Page 45
Suggested Citation:"References." National Research Council. 1996. Accelerated Aging of Materials and Structures: The Effects of Long-Term Elevated-Temperature Exposure. Washington, DC: The National Academies Press. doi: 10.17226/9251.
×
Page 46
Suggested Citation:"References." National Research Council. 1996. Accelerated Aging of Materials and Structures: The Effects of Long-Term Elevated-Temperature Exposure. Washington, DC: The National Academies Press. doi: 10.17226/9251.
×
Page 47
Suggested Citation:"References." National Research Council. 1996. Accelerated Aging of Materials and Structures: The Effects of Long-Term Elevated-Temperature Exposure. Washington, DC: The National Academies Press. doi: 10.17226/9251.
×
Page 48
Suggested Citation:"References." National Research Council. 1996. Accelerated Aging of Materials and Structures: The Effects of Long-Term Elevated-Temperature Exposure. Washington, DC: The National Academies Press. doi: 10.17226/9251.
×
Page 49
Suggested Citation:"References." National Research Council. 1996. Accelerated Aging of Materials and Structures: The Effects of Long-Term Elevated-Temperature Exposure. Washington, DC: The National Academies Press. doi: 10.17226/9251.
×
Page 50
Suggested Citation:"References." National Research Council. 1996. Accelerated Aging of Materials and Structures: The Effects of Long-Term Elevated-Temperature Exposure. Washington, DC: The National Academies Press. doi: 10.17226/9251.
×
Page 51
Suggested Citation:"References." National Research Council. 1996. Accelerated Aging of Materials and Structures: The Effects of Long-Term Elevated-Temperature Exposure. Washington, DC: The National Academies Press. doi: 10.17226/9251.
×
Page 52
Next: Appendix Biographical Sketches of Committee Members »
Accelerated Aging of Materials and Structures: The Effects of Long-Term Elevated-Temperature Exposure Get This Book
×
 Accelerated Aging of Materials and Structures: The Effects of Long-Term Elevated-Temperature Exposure
MyNAP members save 10% online.
Login or Register to save!
Download Free PDF

READ FREE ONLINE

  1. ×

    Welcome to OpenBook!

    You're looking at OpenBook, NAP.edu's online reading room since 1999. Based on feedback from you, our users, we've made some improvements that make it easier than ever to read thousands of publications on our website.

    Do you want to take a quick tour of the OpenBook's features?

    No Thanks Take a Tour »
  2. ×

    Show this book's table of contents, where you can jump to any chapter by name.

    « Back Next »
  3. ×

    ...or use these buttons to go back to the previous chapter or skip to the next one.

    « Back Next »
  4. ×

    Jump up to the previous page or down to the next one. Also, you can type in a page number and press Enter to go directly to that page in the book.

    « Back Next »
  5. ×

    Switch between the Original Pages, where you can read the report as it appeared in print, and Text Pages for the web version, where you can highlight and search the text.

    « Back Next »
  6. ×

    To search the entire text of this book, type in your search term here and press Enter.

    « Back Next »
  7. ×

    Share a link to this book page on your preferred social network or via email.

    « Back Next »
  8. ×

    View our suggested citation for this chapter.

    « Back Next »
  9. ×

    Ready to take your reading offline? Click here to buy this book in print or download it as a free PDF, if available.

    « Back Next »
Stay Connected!