• Non ci sono risultati.

9. BIBLIOGRAFIA 1.

N/A
N/A
Protected

Academic year: 2021

Condividi "9. BIBLIOGRAFIA 1."

Copied!
3
0
0

Testo completo

(1)

9. BIBLIOGRAFIA

1. Timoshenko S., Goodier J. N., Theory of Elasticity, Mc Graw Hill, 1990. 2. Feodosev, Resistenza dei Materiali, Editori Riuniti,1991.

3. Timoshenko S., Woinowsky S., Theory of Plates and Shells, Mc Graw Hill, 1959. 4. Jones R. M., Mechanics of Composite Materials, Mc Graw Hill, 1975.

5. Tsai S. W., Hahn H. T., Introduction to Composite Materials, Technomic Publishing Company, 1980.

6. Tsai S. W., Composites Design (Third Edition), Think Composites, 1987.

7. Michael W. Hyer, Stress analysis of fiber-reiforced composite materials, Mc-Graw Hill, 1998.

8. Carmignani C., Dinamica strutturale, Edizioni ETS, 2001.

9. Yamaki N., Elastic Stability of Circular Cylindrical Shells, North-Holland, 1984. 10. Halpin J. C., Tsai S. W., “Effects of Environmental Factors on Composite Materials”,

AFML-TR 67-423, June, 1969.

11. Hermans J. J., “The Elastic Properties of Fiber Reinforced Materials when the Fibers are Aligned”, Proc. Kon. Ned. Akad. Wetensch., Amsterdam, Ser B. Vol 70, No.1, pp. 1-9, 1967.

12. Hill R., “Theory of Mechanical Properties of Fibre-Strengthened Materials – III. Self-Consistent Model”, Journal of Mech. Phys. Solids, August, 1965, pp. 189-198.

13. Adams D. F., Doner D. R., “Transverse Normal Loading of a Unidirectional Composite”, Journal of Composite Materials, April, 1967, pp. 152-164.

14. Adams D. F., Doner D. R., “Longitudinal Shear Loading of a Unidirectional Composite”, Journal of Composite Materials, January, 1967, pp. 4-17.

15. Foye R. L., “An Evaluation of Various Engineering Estimates of the Transverse Properties of Unidirectional Composites”, Proc. 10th Nat. Symp. Soc. Aerosp. Mater. Process Eng., San Diego, Calif., Nov. 9-11, 1966, pp. G-31 to G-42.

16. Foye R. L., “Structural Composites”. Quarterly Progress Reports Nos. 1 and 2, AFML Contract No. AF 33(615)-5150, 1966.

17. Lou K. A., Yaniv G., “Buckling of Circular Cylindrical Composite Shells under Axial Compression and Bending Loads”, Journal of Composite Materials, Vol. 25, February 1991, pp. 162-187.

18. Jones R. M., Morgan H. S., “Buckling and Vibration of Cross-Ply Laminated Circular Cylindrical Shells”, AIAA Journal, Vol. 13, No. 5, May 1975, pp. 664-671.

(2)

19. Jones R. M., “Buckling of Circular Cylindrical Shells with Multiple Orthotropic Layers and Eccentric Stiffeners”, AIAA Journal, Vol. 6, No. 12, December 1968, pp. 2301-2305. “Errata” , AIAA Journal, Vol. 7, No. 10, , pp. 2048.

20. Stavsky Y., Loewy R., “On Vibration of Heterogeneous Orthotropic Cylindrical Shells”, Journal of Sound and Vibration, Vol. 15 (2), March 1971, pp. 235-256.

21. Greenberg J. B., Stavsky Y., “Vibrations of Laminated Filament-Wound Cylindrical Shells”, AIAA Journal, Vol. 19, No.8, August 1981, pp. 1055-1062.

22. Greenberg J. B., Stavsky Y., “Buckling of Composite Orthotropic Cylindrical Shells under Non-Uniform Axial Loads”, Composite Structures, Vol. 30, 1995, pp. 399-406. 23. Greenberg J. B., Stavsky Y., “Vibrations and Buckling of Composite Orthotropic

Cylindrical Shells with Non-Uniform Axial Loads”, Composite Part B, Vol. 29B, 1998, 695-703.

24. Khdeir A. A., Reddy J. N., Frederick D., “A Study of Bending, Vibration and Buckling of Cross-Ply Circular Cylindrical Shells with Various Shell Theories”, International Journal of Engeneering Science, Vol. 27, No. 11, 1989, pp. 1337-1351.

25. Soldatos K. P., “On the Buckling and Vibration of Antisymmetric Angle-Ply Laminated Circular Cylindrical Shells”, International Journal of Engeneering Science, Vol. 21, No. 3, 1983, pp. 217-222.

26. Almroth B. O., ”Influence of Edge Conditions on the Stability of Axially Compressed Cylindrical Shells”, AIAA Journal, Vol. 4, No. 1, January 1966, pp. 134-140.

27. Hirano Y., “Buckling of Angle-Ply Laminated Circular Cylindrical Shells”, Journal of Applied Mechanics, Vol. 46, March 1979, pp. 233-234.

28. Hoff N. J., Soong T-C., “Buckling of Circular Cylindrical Shells in Axial Compression”, International Journal of Mechanical Science, Vol. 7, 1965, pp. 489-520. 29. Pfletshinger E., “A new technology for making poles”, Savid spa, Como, Italy,

February 1987.

30. Hoff N. J., Chao C. C., Madsen W. A., “Buckling of Thin-Walled Circular Cylindrical Shell Heated on a Axial Strip, Journal of Applied Mechanics, Trans. ASME, Series E, 31, June 1964, pp. 253-258.

31. Zimmermann R., “Quick Optimum Buckling Design of Axially Compressed Fiber Composite Cylindrical Shells”, AIAA Journal, Vol. 33, No. 10, 1995, pp. 1993-1995. 32. Diaconu C. G., Sato M., Sekine H., “Buckling Characteristics and Layup Optimization

of Long Laminated Composite Cylindrical Shells Subjected to Combined Loads using Lamination Parameters ”, Composite Structures, Vol. 58, 2002, pp. 423-433.

(3)

33. Nshanian Y. S., Pappas M., “Optimal Laminated Composite Shells for Buckling and Vibration”, AIAA Journal, Vol. 21, No. 3, March 1983, pp. 430-437.

34. Goldfeld Y., Arbocz J., Rothwell A., “Design and Optimization of Laminated Conical Shells for Buckling”, Thin-Walled Structures, Vol. 43, 2005, pp. 107-133.

35. Kim J-S., Kim C-G., Hong C-S., “Optimum Design of Composite Structures with Ply Drop using Genetic Algorithm and Expert System Shell”, Composite Structures, Vol. 46, 1999, pp. 171-187.

Riferimenti

Documenti correlati

Figure 6.16: Measured Base Impedance FRF (amplitude in the upper plot, phase in the central plot and coherence in the lower plot) of the electro-magnetic transducer in open-

[r]

The FT-IR spectrum of sample from of the waterproo fing treat- ment of the interior surfaces of an amphora shows the typical transmittance pro file of a diterpenoid resin such as that

This study has demonstrated the strength of the NMR metabolomics approach for the qualitative and quantitative characterization of the Ruditapes decussatus metabolic profile and

Mark Trevethan 1 , Marco Ianniruberto 2 , Naziano Filizola 3 , Roberto Ventura Santos 2 , Andrè Santos 4 , Theodore. Endreny 5 , James

L’ideale superficie sferica su cui sono proiettati tutti gli astri, viene infatti interpretata sia in una visione concettuale, in cui le raffigurazioni me- taforiche di

diatesi. Il morfema del tempo è espresso dalla vocale tematica. L’analisi verbale che scaturisce da tale segmentazione ha l’aspetto nella tabella 1.2. A livello teorico, si

The lower the number of therapeutic alternatives on the market, the higher the negative effect of the shortage on public health. The scores for the availability of treatments are: a)