Добавил:
Опубликованный материал нарушает ваши авторские права? Сообщите нам.
Вуз: Предмет: Файл:

Поведение конструкций из композитных материалов

..pdf
Скачиваний:
35
Добавлен:
15.11.2022
Размер:
10.12 Mб
Скачать

1.Shames, I.H. Introduction to Solid Mechanics. New York: Prentice-Hall, Inc., 1975.

2.Vinson, J.R. Structural Mechanics: The Behavior of Plates and Shells. New York: Wiley-Interscience, John Wiley and Sons, Inc., 1974.

3.Timoshenko, S.A., and Woinowsky-Krieger. Theory of Plates and Shells. New York: McGraw-Hill Book Company, Inc., 1959.

4.Marguerre, H., and Woemle, H.T. Elastic Plates. New York: Blaisdell Publishing Company, 1969.

5.Sokolnikoff, I.S. Mathematical Theory of Plasticity. New York: MacGraw-Hill Book Company, 1956.

6.Vinson, J.R., and Chou, T.W. Composite Materials and Their Use in Structures. London: Applied Science Publishers, 1975.

7.Halpin, J.C., and Tsai, S.W. “ Environmental Factors in Composite Materials Design,” Air Force Materials Laboratory Technical Report 67-423, 1967.

8.Hashin, Z. “Theory of Fiber Reinforced Materials,” National Aeronautics and Space Administration Contractors Report 1974 (1972).

9.Christensen, R.M. Mechanics of Composite Materials. New York: John Wiley and Sons, Inc., 1979.

10.Hahn, T.H. “Simplified Formulas for Elastic Moduli of Unidirectional Continuous Fiber Composites,” Composites Technology Review, Fall 1980.

11.Vinson, J.R., Walker, W.J., Pipes, R.B., and Ulrich, O.R. “The Effects of Relative Humidity and Elevated Temperatures on Composite Structures,” Air Force Office of

Scientific Research Technical Report 77-0030, February 1977.

12.Pipes, R.B., Vinson, J.R., and Chou, T.W. “ On the Hygrothermal Response of Laminated Composite Systems,” Journal of Composite Materials, April 1976: 130-148.

13.Flaggs, D.L., and Vinson, J.R. “ Hygrothermal Effects on the Buckling of Laminated Composite Plates,” Fibre Science and Technology, Vol. 11, No. 5, September 1978: 353-365.

14.Flaggs, D.L. “ Elastic Stability of Generally Laminated Composite Plates Including Hygrothermal Effects”, MMAE Thesis, University of Delaware, 1978.

15.Sloan, J.G. “The Behavior of Rectangular Composite Material Plates Under Lateral and Hygrothermal Loads”, MMAE Thesis, University of Delaware, 1979.

Кгл. 3

1.Vinson, J.R. Structural Mechanics: The Behavior of Plates and Shells. New York: Wiley-Interscience, John Wiley and Sons, 1974.

2.Vinson, J.R. and Chou, T.W. Composite Materials and Their Use in Structures. London: Applied Science Publishers, 1975.

3.Levy, M., “Sur L’equilibrie Elastique d’une Plaque Rectangulaire,” Compt Rend 129 (1899): 535-539.

4.Vinson, J.R., “ New Techniques of Solutions for Problems in Orthotropic Plates,” Ph.D. Dissertation, University of Pennsylvania, 1961.

5. Vinson, J.R. and Brull, M.A., “ New Techniques of Solutions of Problems in Ortho-

tropic Plates, Transactions of the Fourth United States Congress of Applied Mechanics, 1962.

6.Thomson, W.T. Vibration Theory and Applications, 2nd Edition, Prentice Hall, Inc., (1981).

7.Warburton, G., “The Vibration of Rectangular Plates,” Proceedings of the Institute of Mechanical Engineers, 1968 (1954), 371.

8.Young, D. and Felgar, R., Jr., “Tables of Characteristic Functions Representing Normal Modes of Vibration of a Beam,” The University of Texas Publication Number

4913, (1944).

9. Felgar, R., Jr., “ Formulas for Integral Containing Characteristic Functions of a Vibrating Beam,” Bureau of Engineering Research, The University of Texas Publication,

1950.

10.Dobyns, A.L., “The Analysis of Simply-Supported Orthotropic Plates Subjected to Static and Dynamic Loads,” American Institute of Aeronautics and Astronautics Journal,

(May 1981): 642-650.

11.Sloan, J.G. and Vinson, J.R., “The Behavior of Rectangular Composite Material Plates Under Lateral and Hygrothermal Loads,” AFOSR TR-78-1477, (July 1978).

12.Pipes, R.B., Vinson, J.R. and Chou, T.W., “On the Hygrothermal Response of Laminated Composite Systems,” Journal of Composite Materials, Vol. 3, (April 1976).

13.Whitney, J.M., “The Effect of Transverse Shear Deformation on the Bending of Laminated Plates,” Journal of Composite Materials, Vol. 3, (July 1969).

14.Wu, C.I. and Vinson, J.R., “ Nonlinear Oscillations of Laminated Specifically Orthotropic Plates with Clamped and Simply Supported Edges,” Journal of the Acoustical Society of America, 49 5, Pt. 2, (May 1971): 1561-1567.

15.Flaggs, D.L. Elastic Stability of Generally Laminated Composite Plates Including Hygro­ thermal Effects, MMAE Thesis, University of Delaware, (June 1978).

16.Smith, A.P., Jr., The Effect of Transverse Shear Deformation on the Elastic Stability of Orthotropic Plates Due to In-Plane Loads, MMAE Thesis, University of Delaware, (May 1973).

17.Linsenmann, D.R. Stability of Plates of Composite Materials, MMAE Thesis, University of Delaware, (June 1974).

18.Shen, C. and Springer, G.S., “ Moisture Absorption and Desorption of Composite Materials,” Journal of Composite Materials, vol. 10, (January 1976).

19.Vinson, J.R. and Shore, S., “Methods of Structural Optimization for Flat Sandwich Panels,” U.S. Naval Air Engineering Center Technical Report NAEC-ASL-1083, (1965).

20.Vinson, J.R. and Shore, S., “Design Procedures for the Structural Optimization of Flat Sandwich Panels,” U.S. Naval Air Engineering Center Technical Report NAEC-ASL- 1084, (1965).

21.Vinson, J.R. and Shore, S., “Bibliography on Methods of Structural Optimization of Flat Sandwich Panels,” U.S. Naval Air Engineering Center Technical Report NAEC- ASl-1082, (1965).

22.Vinson, J.R. and Shore, S., “Structural Optimization of Corrugated Core and Web-Core Sandwich Panels Subjected to Uniaxial Compression,” U.S. Naval Air Engineering Center Technical Report NAEC-ASL-1109, (1967).

23.Vinson, J.R. and Shore, S., “Structural Optimization of Flat, Corrugated Core and Web-Core Sandwich Panels Under In-Plane Shear Loads, and Combined Uniaxial Compressive and In-Plane Shear Loads,” U.S. Naval Air Engineering Center Technical Report NAEC-ASL-1110, (1967).

24.Vinson, J.R. and Shore, S., “A Method for Weight Optimization of Flat Truss-Core Sandwich Panels Under Lateral Loads,” U.S. Naval Air Engineering Center Technical Report NAEC-ASL-l 111, (1967).

25.Bert, C.W., “Vibration of Composite Structures,” U.S. Office of Naval Research Technical Report OU-AMNE-80-6, (March 1980).

26.Bert, C.W., Reddy, J.N., Reddy, V.S. and Chao, W.C., “Analysis of Thick Rectangular Plates Laminated of Bimodulus Composite Materials,” AIAA Paper, (May 1980).

27.Reddy, J.N. and Bert, C.W., “On the Behavior of Plates Laminated of Bimodulus Composite Materials,” VPJ & SU Report VPI-E-8I -1I and OU-AMNE-81 -1, (April 1981).

28.Reddy, J.N., “Analysis of Layered Composite Plates Accounting for Large Deflections and Transverse Shear Strains,” Recent Advances in Nonlinear Computational Mechanics, Pine Ridge Press (1981).

29.Wilson, D.W. and Vinson, J.R., “Viscoelastic Analysis of Laminated Plate Buckling”, AIAA Journal, Vol. 22, No. 7, July 1984, pp 982-988.

30.Reddy, J.N., “Survey of Recent Research in the Analysis of Composite Plates,”

Composite Technology Review, Vol. pp. (Fall 1982).

Кгл.5

1.Vinson, J.R. and T.W. Chou. Composite Materials and Their Use in Structures, Applied Science Publishers, London. (1975).

2.Wilkins, D.J. and T.S. Love. “ Combined Compression - Torsion Buckling Tests of Laminated Composite Cylindrical Shells.” AIAA Journal of Aircraft, v. 12, No. 11. (Nov. 1975): 885-889.

3.Waltz, T. and J.R. Vinson, “Interlaminar Stresses in Laminated Cylindrical Shells of Composite Materials.” AIAA Journal, Vol. 14, No. 9. (September 1976): 1213-1218.

4.El Naschie, M.S. “ Initial and Post Buckling of Axially Compressed Orthotropic Cylindrical Shells.” AIAA Journal v. 14, No. 10 (October 1976): 1502-1504.

5.Ecord, G.M. “Composite Pressure Vessels for the Space Shuttle Orbiter.” Composites in

Pressure Vessels and Pipings, ASME - PVP-BB-021 (1977): 129-140.

6.Johnson, R., R.J. Reck, and R.C. Davis. “ Design and Fabrication of a Large GraphiteEpoxy Cylindrical Shell.” Proceedings AIAA /ASM E 19th Structures, Structural Dy­ namic and Materials Conference (1978): 300-310.

7.Fujczak, R.R. “Torsional Fatigue Behavior of Graphite-Epoxy Cylinders.” Proceedings of the 2nd International Conference on Composite Materials (ICCM2) (1978): 635-648.

8.Booton, M. and R.C. Tennyson, “Buckling of Imperfect Anisotropic Circular Cylinders Under Combined Loading.” Proceedings AIAA/ASME 19th Structures, Structural Dynamics, Materials Conference (1978): 351-358.

9.Raju, B.B., R. Chandra, and M.S. Rao. “Transient Temperatures in Laminated Composite Conical Shells Due to Aerodynamic Heating.” AIAA Journal, Vol. 6, No. 6 (June 1978): 547-548.

10.Varadan, T.K., “Snap-Buckling of Orthotropic Shallow Spherical Shells.” Journal of Applied Mechanics, Vol. 45, No. 2 (June 1978): 445-447.

11.Rhodes, J. and I.H. Marshall.” Unsymmetrical Buckling of Laterally Loaded Rein­ forced Plastic Shells.” Proceedings of the 2nd International Conference of Composite Materials (ICCM2), (1978): 303-315.

12.Montague, P. “ Experimental Behavior of Double-Skinned, Composite, Circular Cy­ lindrical Shells Under External Pressure.” Journal of Mechanical Engineering Science, vol. 20, No. 1 (1978): 21-34.

13.Humphrey, W.D. “ Degradation Dafa of Kevlar Pressure Vessels”, NBS Publication 563 (1979): 177-185.

14.Bert, C.W. and V.S. Reddy. “Cylindrical Shells of Bimodulus Composite Material.”

Oklahoma University Report OU-AMNE-80-3 (February 1980).

15.Bert, C.W. and M. Kumar. “ Vibration of Cylindrical Shells of Bimodulus Composite Materials.” Oklahoma University Report OU-AMNE-80-20. (October 1980).

16.Yuceoglu, U. and D.P. Updike. “Stress Concentration in Bonded Multi-Layer Cy­ lindrical Shells.” Journal of Engineering Science (1981).

17.Vinson, J.R. “Structural Mechanics: The Behavior of Plates and Shells.” John Wiley and Sons (1974).

18.Anon. “ Buckling of Thin Walled Circular Cylinders,” NASA SP-8007. Revised, August, 1968.

19.White, J.C., “The Flexural Vibrations of Thin Laminated Cylinders.” Journal of Engineering Industry (1961): 397-402.

20. Dong, S.B. “ Free Vibration of Laminated Orthotropic Cylindrical Shells.” Journal of the Acoustical Society of America, vol. 44 (1968): 1628-1635.

21.Bert, C.W., V. Baker and D. Egle, “ Free Vibrtions of Multilayer Anisotropic Cy­ lindrical Shells, Journal of Composite Materials, Vol. 3 (1969): 480-499.

22.Tasi, J. “ Reflection of Extensional Waves at the End of a Thin Cylindrical Shell,”

Journal of the Acoustical Society of America, vol. 44, (1968): 291-292.

23.Tasi, J. “ Effect of Heterogeneity on the Axisymmetric Vibration of Cylindrical Shells,”

Journal of Sound and Vibration, vol. 14 (1971) 325-328.

24.Tasi, J. and Roy, B.N. “Axisymmetric Vibration of Finete Heterogeneous Cylindrical Shells,” Journal of Sound and Vibration, vol. 17, (1971): 83-94.

25.Mirsky, I. “ Vibration of Orthotropic, Thick, Cylindrical Shells,” Journal of the Acousti­ cal Society of America, vol. 36 (1964): 41-51.

26.Mirsky, 1. Axisymmetric Vibrations of Orthotropic Cylinders, Journal of the Acoustic Society of America, vol. 36 (1964): 2106-2112.

27.Dong, S.B. and Tso, “ On a Laminated Orthotropic Shell Theory Including Transverse Shear Deformation”, Journal of Applied Mechanics, vol. 39 (1972): 1091-1097.

28.Sun, C.T. and Whitney, J.M. “Axisymmetric Vibrations of Laminated Composite Cylindrical Shells,” Journal of the Acoustical Society of America, vol. 55 (June 1974): 1238-1246.

29.Ross, C.A., R.L. Sierakowski and C.T. Sun. “ Dynamic Resportse of Composite Materials,” Society of Experimental Mechanics Publication S-014, 1980.

Кгл .6

1.Vinson, J.R. “Structural Mechanics: The Behavior of Plates and Shells”, J. Wiley and Sons, New York, 1974.

2.Vinson, J.R. and T.W. Chou, “Composite Materials and Their Use iti Structures” Applied Science Publishers, London, 1975.

3.Sloan, J.G., “The Behavior of Rectangular Composite Material Plates Under Lateral and Hygrothermal Loads”, MMAE Thesis, University of Delaware, 1979.

4.Pipes, R.B., J.R. Vinson and T.W. Chou, “On the Hygrothermal Response of Laminated Composite Systems”, Journal of Composite Materials, April 1976, pp. 130-148.

5.Wu, C.I. and J.R. Vinson, “ Nonlinear Oscillations of Laminated Specially Orthotropic

Plates with Clamped and Simply Supported Edges", Journal of the Acoustical Society of America, 49, Part 2, May 1971, pp. 1561-1567.

6.Flaggs, D.L., “ Elastic Stability of Generally Laminated Composite Plates Including Hygrothermal Effects", MMAE Thesis, University of Delaware, 1978.

7.Smith, A.P., “The Effect of Transverse Shear Deformation on the Elastic Stability of Orthotropic Plates Due to In-plane Loads", MMAE Thesis, University of Delaware, 1973.

8.Linsenmann, D.R., “Stability of Plates of Composite Materials", MMAE Thesis, University of Delaware, 1974.

9.Warburton, G., “The Vibration of Rectangular Plates", Proceedings of the Institute of Mechanical Engineers, 168, 371 (1954).

10.Young, D. and R. Felgar, Jr., “Tables of Characteristic Functions Representing Normal Modes of Vibration of a Beam", University of Texas Publication No. 4913, July 1944.

11.Felgar, R., Jr., “ Formulas for Integrals Containing Characteristic Functions of a Vibrating Beam", Bureau of Engineering Research, University of Texas, 1950.

12.Sloan, J.G. and J.R. Vinson, “The Behavior of Rectangular Composite Material Plates Under Lateral and Hygrothermal Loads", ASME Paper 78 WA/Aero 5.

13.Shen, C. and G.S. Springer, “ Moisture Absorption and Desorption of Composite Materials", Journal of Composite Materials, Vol. 10, January 1976, p. 2-20.

14.Wilson, D.W. and J.R. Vinson, “ Viscoelastic Analysis of Laminated Plate Buckling Including Transverse Shear and Normal Deformations, AIAA Journal, Vol. 22, July 1984, pp. 982-988.

Кгл .7

1.E.M. Wu, “ Mechanics of Composite Materials" in Composite Materials, L.T. Broutman and R.H. Krock (Eds.) Academic Press, Vol. 2, p. 354, 1974.

2.W.J.M. Rankine, Applied Mechanics, 1st edition, London, 1858.

3.B. De. St. Venant, “ Memoire sur les equations generales des mouvements interieurs des corpes solides ductites an dela des limites ou l’elasticite pourrait des ramener a leur premier etat" Comptes Rendus, Paris, France, Vol. 70, pp. 473-480, 1870.

4.H. Tresca, “ Memoire su l’ecoulement des corps solides soumis a de fortes pressions", Comptes Rendus, Paris France, Vol. 59, p. 754, 1864.

5.R. Von Mises, “ Mechanik der festen Koerper im plastisch - deformablen zustand”, Goettinger Nachrichten. Mathematisch, Physikalische KJasse, Vol. 1913, pp. 204-218, 1913.

6.R.S. Sandhu, “A Survey of Failure Theories of Isotropic and Anisotropic Material", AFFDL-TR-72-71, Wright Patterson Air Force Base, Dayton, Ohio, 1972.

7.B.E. Kaminski and R.B. Lantz, “Strength Theories of Failure For Anisotropic Materi­ als", Composite Materials: Testing and design ASTM 460, pp. 160-169, 1969.

8.E.Z. Stowell and T.S. Liu, “On the Mechanical Behavior of Fiber Reinforced Crystal­ line Solids", Journal of the Mechanics and Physics of Solid, Vol. 9, pp. 242-260, 1961.

9.P.W. Kelly, G.J. Davies, Metallurgical Reviews, Vol. 10, 1965.

10.M.E. Waddoups, Advanced Composite Material Mechanics for the Design and Stress Analyst, General Dynamics, Ft. Worth, TX, Report FZM-4763, 1967.

11.J. Marin, Theories of Strength for Combined Stresses and Non Isotropic Materials, J. of Aerospace Sciences, Vol. 24, pp. 265-268, 1957.

12.C.B. Norris, Strength of Orthotropic Materials Subjected to Combined stress, Forest Products Laboratory Report 1816, 1950, 1962.

13.V.D. Azzi and S.W. Tsai, “Anisotropic Strength of Components” Experimental Mecha­ nics, Vol. 5, pp. 286-288, 1965.

14.O. Hoffman, “The Brittle Strength of Orthotropic Materials”, J. Composite Materials, Vol. 1, pp. 200-206, 1967.

15.S.W. Tsai and E.M. Wu, “A General Theory of Strength for Anisotropic Materials”, Jl. Composite Materials, Vol. 5, pp. 58-80, 1971.

16.R.C. Burk, “Standard Failure Criteria Needed for Advanced Composites,” Astro­ nautics and Aeronautics, Vol. 21, pp. 58-62, 1983.

Кгл. 8

1.Kuno, James K., “Structural Adhesives Continue to Gain Foothold in Aerospace and Industrial Use,” Structural Adhesives and Bonding, Proceedings of the Structural Adhesives Bonding Conference, arranged by Technology Cohferences Associates, El Segundo, California. (1979)

2.Szepe, F., “Strength of Adhesive-Bonded Lap Joints with Respect to Temperature and Fatigue” Experimental Mechanics, Vol. 6 (1966): 280-286.

3.Volkersen, O. “Die Niet Kraft vertelung in Zug bean Spruchten Niet verb bind ungen mit Konstanten Lasch enguerschnitten,” Luftfahrt forschungen, 15, (1938): 41-47.

4.De Bruyne, N.A., “The Strength of Glued Joints,” Aircraft Engineering, Vol. 16, (1944): 115-118.

5.Goland, M., and E. Reissner, “Stresses in Cemented Joints,” ASME Journal of Applied Mechanics, 11 (1947): A-17-A-27.

6.Kutscha, D. and K.E. Hofer, Jr., “ Feasibility of Joining Advanced Composite Flight Vehicles, AFML-TR-68-391. (January 1969).

7.Lehman, G.M. and A.V. Hawley, “ Investigation of Joints in Advanced Fibrous Composites for Aircraft Structures,” AFFDL-TR-69-43, Vol. 1, (June 1969).

8.Hart-Smith, L.J., “The Strength of Adhesive Bonded Single Lap Joints,” Douglas Aircraft Company lRAD Technical Report MDC-J0472, (April 1970).

9.Hart-Smith, L.J., “Adhesive-Bonded Single Lap Joints,” NASA-CR-112236. (January 1973).

10.Grimes, G.C., et al., “The Development of Nonlinear Analysis Methods for Bonded Joints in Advanced Filamentary Composite structures,” AFFDL-TR-72-97. (AD 905 201). (September 1972).

11.Renton, W.J. and J.R. Vinson. “The Analysis and Design of Composite Material Bonded Joints Under Static and FAtigue Loadings, AFOSR TR 73-1627, (August 1973).

12.Renton, W.J. and J.R. Vinson. “ Fatigue Response of Anisotropic Adherend Bonded Joints,” AMMRC MA-74-8. (September 1974).

13.Renton, W.J. and J.R. Vinson. “The Analysis and Design of Anisotropic Bonded Joints, Report No. 2,” AFOSR TR-75-0125, (August 1974).

14.Renton, W.J. and J.R. Vinson, “ On the Behavior of Bonded Joints in Composite Materials Structures,” Journal of Engineering Fracture Mechanics, Vol. 7. (1975): 41-60.

15.Renton, W.J. and J.R. Vinson. “ Fatigue Behavior of Bonded Joints in Composite Materials Structures,” AIAA Journal of Aircraft, Vol. 12, No. 5. (May 1975): 442-447.

16.Renton, W.J. and J.R. Vinson. “The Efficient Design of Adhesive Bonded Joints,”

Journal of Adhesion, Vol. 7. (1975): 175-193.

17.Rentoo, W.J., J. Pajerowski, and J.R. Vinson. “ On Improvement in Structural Efficiency of Single Lap Bonded Joints,” Proceedings of the Fourth Army Materials Technology Conference-Advances in Joining Technology, (September 1975).

18.Renton, W.J. and J.R. Vinson. “Analysis of Adhesively Bonded Joints Between Panels of Composite Materials,” Journal of Applied Mechanics. (April 1977): 101-106.

19.Renton, W.J., D.L. Flaggs and J.R. Vinson. “The Analysis and Design of Composite Materials Bonded Joints, Report No. III.” AFOSR-TR-78-1512, (1978).

20.Sharpe, W.N., Jr. and T.J. Muha, Jr. “ Comparison of Theoretical and Experimental Shear Stress in the Adhesive Layer of a Lap Joint Model,” AMMRC MS 74-8. (1974).

21.Srinivas, S., “Analysis of Bonded Joints,” NASA TN D-7855, (N75-21673) (April 1975).

22.Oplinger, D.W., “Stress Analysis of Composite Joints,” Proceedings of the Fourth Army Materials Technology Conference-Advances in Joining Technology. (September 1975).

23.Wetherhold, R.C. and J.R. Vinson. “An Analytical Model for Bonded Joint Analysis in Composite Structures Including Hygrothermal Effects,” AFOSR TR 78-1337. (1978).

24.Liu, A.T., “Linear and Elasto-Plastic Stress Analysis for Adhesive Lap Joints,”

University of Illinois T & AM Report 410, (July 1976).

25.Allman, D.J., “A Theory for Elastic Stresses Adhesive Bonded Lap Joints,” Quarterly Journal of Mechanics and Applied Mathematics, Vol. XXX. (1977): 4.

26.Humphreys, E.A. and Herakovich, C.T., “Nonlinear Analysis of Bonded Joints with Thermal Effects,” Virginia Polytechnic Institute and State University Report VPI-E- 77-19, (June 1977).

27.Vinson, J.R. and J.R. Zumsteg, “Analysis of Bonded Joints in Composite Materials Structures Including Hygrothermal Effects,” AIAA Paper 79-0798, (1979).

28.Flaggs, D.L. and F.W. Crossman. “ Viscoelastic Response of a Bonded Joint Due to Hygrothermal Exposure,” Modern Developments in Composite Materials and Struc­ tures, ASME. (1979)'

29.Dickson, J.N., T.M. Hsu, and J.M. McKinney, “Development of an Understanding of the Fatigue Phenomenon of Bonded and Bolted Joints in Advanced Filamentary Composite Materials, Vol. 1., Analysis Materials.” AFFDL-TR 72-64 (AD 750 132. (June 1972).

30.Hart-Smith, L.J., “The Strength of Adhesive Double-Lap Joints,” Douglas Aircarft Co. IRAD Technical Report MDC J036F. (November 1969).

31.Hart-Smith, L.J., “Adhesive-Bonded Double Lap Joints,” NASA CR-112235, (January 1973).

32.Keer, L.M. and K. Chantaramungbom. “Stress Analysis for a Double Lap Joint ”

ASME Paper 75-АРМ -7, (June 1975).

33.Sen, J.K., “Stress Analysis of Double-Lap Joints Bonded with a Viscoelastic Adhesive,”

Ph.D. Dissertation, Southern Methodist University. (May 1977).

34.Guess, T.R., R.E. Allred, and F.P. Gerstle, Jr., “Comparison of Lap Shear Test Specimens,” Journal of Testing and Evaluation, Vol. 5, No. 3. (March 1977): 84-93.

35.Renton, W.J., “The Symmetric Lap Joints - What Good Is It? Society of Experimental Stress Analysis Journal (May 1976).

36.Renton, W.J., “Structural Properties of Adhesives.” AFML TR-78-127. (September 1978).

37. Renton, W.J. and W.B. Jones, Jr., “ Instrumented Test Methods for Adhesively Bonded Joints,” Proceedings of the 10th SAMPE Technical Conference. (October 1978).

38.Renton, W.J. and J.R. Vinson. “Shear Property Measurements of Adhesives in Composite Material Bonded Joints,” ASTM 580. (1975): 119-132.

39.Thrall, E.W., Jr., “An Overview of the PABST Program,” Structural Adhesives and Bonding, Proceedings of the Structural Adhesives and Bonding Conference arranged by Technology Conferences Associates, (March 1979).

40.Flaggs, D.L. and J.R. Vinson. “Shear Properties of Promising Adhesives for Bonded Joints in Composite Material Structures,” AIAA Journal of Aircraft. (January 1979).

41.Jonath, A.D., “Some Novel Approaches to the Study of Adhesive Interface Phenom­ ena and Bond Strength,” Structural Adhesives and Bonding, Proceedings of the Struct­

ural Adhesives and Bonding Conference, arranged by Technology Conferences Associates,

(March 1979).

42. Stenersen, A.A., “ Polyimide Adhesives for the Space Shuttle,” Structural Adhesives and Bonding Proceedings of the Structural Adhesives and Bonding Conference, arranged by Technology Conference Associates. (March 1979).

43.Reinhart, T.J., Jr., “ Evolution of Structural Adhesives,” Structural Adhesives and Bonding Proceedings of the Structural Adhesives and Bonding Conference arranged by Technology Conferences Associates, (March 1979).

44.Hennecke, E.G. and Reifsnider, K.L., “ Ultrasonic Testing Methods for Composite Materials,” Composites Technology Review, Vol. 1, No. 2, Winter, 1979.

45.Green, A.T., “Acoustic Emission for NDT of Adhesive-Bonded Structures,” Structural Adhesives and Bonding Proceedings of the Structural Adhesives and Bonding Conference arranged by Technology Conferences Associates, (March 1979).

46.Kutscha, D., “Mechanics of Adhesive-Bonded Lap-Type joints: Survey and Review,”

AFML-TDR -64-298 (December 1964).

47.Kuenzi, E. and G.H. Stevens. “ Determination of Mechanical Properties of Adhesives for Use in the Design of Bonded Joints,” U.S. Forest Service Research Note FPL-Oil,

(1963).

48.Rutherford, J.L., F.C. Bossier, and E.J. Hughes. “ Capacitance Methods for Measuring Properties of Adhesives in Bonded Joints,” Rev. Scientific Inst., Vol. 39, No. 5.: 666-671.

49.Iosipescu, N., “New Accurate Procedures for Single Shear Testing of Metals,” Journal of Materials, Vol. 2, No. 3 (September 1967).

50. Miller, H.E., J.L. Jergens, and R. Plunkett, “ Measurements of Complex Shear Moduli of Thin Viscoelastic Layers,” University of Minnesota Institute of Technology Technical Report 65-4 (October 1965).

51.AVCO Corporation, “ Evaluation of Test Techniques for Advanced Composite Materials,” Quarterly Report No. 2, Contract F33 (615)-67-6-1719, Air Force Materi­ als Laboratory. (January 1968).

52.Hartman, A. and P. De Rijn, “The Effect of the Rigidity of the Glue Line on the Fatigue Strength of 2024-T Aluminum Alloy Specimens with an Adhesive-Bonded Reinforcing Plate on Both Sides,” National Aero-and Astronautical Research Institute.

53.Wang, D.Y., “The Effect of Stress Distribution on the Fatigue Behavior of Adhesive Bonded Joints,” ASD-TDR-63-93, AFML. (July 1963).

54.Prokhorov, B.F., “Joints Used in Plastic and Composite Shipboard Superstructures. Deckhouses, Light Bulkheads, and Enclosures,” Sudostroyenlye, #9, 1965, U.S. Department of the Navy Translation No. 2076-b.: 44-51.

55.Franzblau, M.C. and J.L. Rutherford, “Study of Micromechanical Properties of

Adhesive Bonded Joints,” Second Quarterly Progress Report; Contract DAAA 21-67- C-0500, (December 1967).

56.Ramberg, W. and W.R. Osgood, “ Description of Stress-Strain Curves by Three Parameters,” NACA TN 902 (July 1943).

57.Sharpe, W.N. and Muha, T.J., “Comparison of Theoretical and Experimental Shear Stress in the Adhesive Layer of a Lap Joint Model,” Proceedings of the Army Symposium of Solid Mechanics, AMMRC 74-9 (1974): 23-41.

58.Hart-Smith, L.J., “Adhesive-Bonded Scarf and Stepped-Lap Joints,” NASA Cr 112237. (January 1973).

59.Erdogan, F. and M. Ratwani, “Stress Distribution in Bonded Joints,” Journal of Composite Materials, Vol. 5. (July 1971): 378-393.

60.Barker, R.M. and F. Hatt. “Analysis of Bonded Joints in Vehicular Structures,” A1AA Journal, Vol. 11, (1973): 1650-1654.

61.Williams, M.L., “Stress Singularities, Adhesion and Fracture,” Proceedings of the Fifth U.S. National Congress of Applied Mechanics. (1966): 451-464.

62.DeVries, K.L., M.L. Williams, and M.D. Chang. “Adhesive Fracture of a Lap Shear Joint,” Experimental Mechanics (March 1974): 89-97.

63.Vinson, J.R. “On the State of Technology in Adhesively Bonded Joints in Composite Material Structures.” Emerging Technologies in Aerospace Structures, Designs, Struct­ ural Dynamics and Materials, ASME (1980).

64.Sawyer, J.W. and P.A. Cooper, “Analyses and Test of Bonded Single Lap Joints with

 

Preformed Adhesives,” AIAA Paper 80-0773. (1980).

65.

Hart-Smith, L.J., “ Further Development

in the Design and Analysis of Adhesive

 

Bonded Structural Joints.” Douglas Paper

6922 presented at the ASTM SYmposium

 

on Joining of Composite Materials. (1980).

 

66.

Delale,

F. and F. Erdogen, “ Viscoelastic

Analysis of Adhesively Bonded Joints.”

 

NASA

Contractor Report 159294. (1980).

 

67.Bickley, W.G., “The Distribution of Stress Round a Circular Hole in a Plate,” Royal Society of London, Vol. 227A, (July 2, 1928): 383-415.

68.Howland, R.C.J., “On Stresses in Flat Plates Containing Rivet Holes,” Proc. 3rd Int. Cong, of Applied Mech. Vol. II, (1930): 74-79.

69.Knight, R.C., “The Action of a Rivet in.a Plate of Fi ite Breadth,” Philosophical Mqgazine S. Vol. 19, No. 127, (March 1935).

70.Theocaris, P., “The Stress Distribution in a Strip Loaded in Tension by Means of a Central Pin,” ASME Journal of Applied Mechanics, (March 1956): 85-90.

71.Harris, H.G., Ojalvo, I.V. and R.E. Hooson, “Stress and Deflection Analysis of Mechanically Fastened Joints,” AFFDL-TR-70-49. (AD 709221). (May 1970).

72.Gould, H.H. and Mikic, B.B., “Areas of Contact and Pressure Distribution in Bolted Joints,” NASA CR 102866. (N70-41982) (June 1970).

73.Waszczak, J.P. and T.A. Cruse, “ Failure Mode and Strength Prediction of Anisotropic Bolt Bearing Specimens,” J. Composite Materials, Vol. 5. (1971): 421-25.

74.Cruse, T.A., Konish, H.J., Jr. and Waszczak, J.P., “Strength Analysis for Design with Composite Materials Using Metals Technology,” Proceedings of the Colloquium on Structural Reliability, the Impact of Advanced Materials on Engineering Design, edited by J.L. Swedlow, T.A. Cruse and J.C. Halpin, Carnegie Mellon University. (1972): 222-236.

75.Dickson, J.M., T.M. Hsu, and J. McKinney. “Development of an Understanding of the Fatigue Phenomena in Bonded and Bolted Joints in Advanced Filamentary Composite Materials, Vol. 1,” AFFDL-TR-72-64, (June 1972).

76.Waszczak, J.P. and T.A. Cruse. “A Synthesis Procedure for Mechanically Fastened Joints in advanced Composite Materials,” AFML-TR-73-145, Vol. II, (AD 771 795). (September 1973).

77.Oplinger, D.W. and K.R. Gandhi, “Stresses in Mechanically Fastened Orthotropic Laminates,” Proceedings of 2nd Conference on Fibers, Composites and Flight Vehicle Design, AFFDL-TR-74-103. (Sept. 1974): 811-842.

78.Murphy, M.M. and E.M. Lenoe, “Stress Analysis of Structural Joints and Interfaces-A Selective Annotated Bibliography,” AMMRC Manuscript AMMRC MS 74-10. (Sept. 1974).

79.Van Siclen, Robert C, “ Evaluation of Bolted Joints in Graphite/Epoxy,” Proceedings of the Army Symposium on Solid Mechanics, September 1974, (AD 786543): 120-138.

80.“ Exploratory Application of Filament-Wound Reinforced Plastics for Aircraft Land­ ing Gear,” AFML-TR-66-309. (December 1966).

81.Nelson, W.D. et al., “ Composite Conceptual Wing Design,” AFML-TR-73-57, (March 1973).

82.Padawer, G.E., “The Strength of Bolted Connections in Graphite/Epoxy Composites Reinforced by Colaminated Boron Film,” Composite Materials: Testing and Design, ASTM STD 497.

83.Padawer, G.E., “ Film Reinforced Multifastened Mechanical Joints in Fibrous Com­ posites,” AIAA Journal of Aircraft, Vol. 10, No. 9, (September 1973).

84.Cherry, F.D., “The Elimination of Fastener Hole Stress Concentrations Through the Use of Softening Strips,” AFFDL-TR-72-130, (September 1972).

85.Advanced Composites Design Guide, Vol. II Analysis, Third Edition, (January 1973).

86.Gatewood, B.E. and R.W. Gehring, “ Inelastic Mechanical Joint Analysis Method with Temperature and Mixed Materials,” Proceedings of the Army Symposium on Solid Mechanics, (AD 786-543). (September 1974): 193-210.

87.Gatewood, B.E., “Thermal Loads on Joints,” Thermal Stresses, McGraw-Hill Book Company, New York (1957).

88.Switzky, H., M.J. Forray, and M. Newman, “Thermo-Structural Analysis Manual,” WADD TR 60-517, (September 1960).

89.Lobbett, J.W. and E.A. Rob, “Thermo-Mechanical Analysis of Structural Joint Study,” WADD TR 61-151, (January 1962).

90.Oplinger, D.W. and K.R. Gandhi, “Analysis Studies of Structural Performance in Mechanically Fastened Fiber-Reinforced Plates,” Proceedings of the Army Sym­ posium on Solid Mechanics, (AD 786-543). (September 1974).

91.Hoffman, O., “The Brittle Strength of Orthotropic Materials,” Journal of Composite Materials, Vol. 1, (1967): 200-206.

92.Oplinger, D.W., “Stress Analysis of Composite Joints,” Fourth Army Materials Technology Conference - Advances in Joining Technology. (1975).

93.Ojalvo, I., “Survey of Mechanically Fastened Splice Joint Analyses,” Fourth Army Materials Technology Conference, (1975).

94.Stockdale, J.H. and F.L. Matthews, “The Effect of Clamping Pressure on Bolt Bearing Loads in Glass Fibre-Reinforced Plastics,” C om posites. (January 1976): 34-38.

95.Kim, R.Y. and J.M. Whitney, “ Effect of Temperature and Moisture on Pin Bearing Strength of Composite Laminates,” Journal of Composite Materials. (April 1976): 149-155.

96.Quinn, W.J. and F.L. Matthews, “The Effect of Stacking Sequence on the Pin-Bearing Strength of Glass Fiber Reinforced Plastic,” J. Composite Materials, Vol. 11, (April 1977): 139-145.