Physical Property Significances for Aerospace Structural Materials

Author:

Wanhill R J H

Publisher

Springer Singapore

Reference22 articles.

1. Arnold SM, Cebon D, Ashby M (2012) Materials selection for aerospace systems. NASA Technical Memorandum NASA/TM-2012-217411, National Aeronautics and Space Administration Center for Aerospace Information, Hanover, MD 21076-1320, USA

2. Ekvall JC, Rhodes JE, Wald GG (1982) Methodology for evaluating weight savings from basic material properties. In: Design of fatigue and fracture resistant structures, ASTM STP 761. American Society for Testing and Materials, Philadelphia, PA 19104, USA, pp 328–341

3. Davis JR (ed) (1997) ASM specialty handbook, heat-resistant materials. ASM International, Materials Park, OH 44073-0002, USA, pp 124–145

4. Buntin WD (1977) Application of fracture mechanics to the F-111 airplane. In: AGARD conference proceedings no. 221 on fracture mechanics design methodology. Advisory Group for Aerospace Research and Development, Neuilly-sur-Seine, France, pp. 3-1–3-12

5. Mar JW (1991) Structural integrity of aging airplanes: a perspective. In: Atluri SN, Sampath SG, Tong P (eds) Structural integrity of aging airplanes. Springer, Berlin, Germany, pp 241–262

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