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I: Theory of adaptive elasticity, J. Elastic., 6, 313, 10.1007\u002FBF00041724\nCowin, 1978, Internal bone remodeling induced by a medullary pin, J. Biomech., 11, 269, 10.1016\u002F0021-9290(78)90053-2\nCurrey, J. D. (1991) . Private communication.\nFukuda, 1957, On the piezoelectric effect of bone, J. Phys. Soc. Japan, 12, 1158, 10.1143\u002FJPSJ.12.1158\nGjelsvik, 1973, Bone remodelling and piezoelectricity-I, J. Biomech., 6, 69, 10.1016\u002F0021-9290(73)90039-0\nGordon, 1978, Structures or Why Things Don't Fall Down, 17\nGordon, 1988, The science of structures and materials, Scient. Am. Library, 25, 176\nHayes, 1982, Stress-morphology relationships in trabecular bone of the patella, 223\nKoch, 1917, The laws of bone architecture, Am. J. Anat., 21, 177, 10.1002\u002Faja.1000210202\nMartin, 1972, The effects of geometric feedback in the development of osteoporosis, J. Biomech., 5, 447, 10.1016\u002F0021-9290(72)90003-6\nMattheck, 1990, A new method of structural shape optimization based on biological growth, Int. J. Fatigue, 12, 185, 10.1016\u002F0142-1123(90)90094-U\nMattheck, 1990, Engineering components grow like trees, Mat.wiss. 11, Werkstofftech, 21, 143, 10.1002\u002Fmawe.19900210403\nPauwels, 1948, Bedeutung und Kausale Erklarung der Spongiosaarchitektur in neuer Auffassung, Arztl. Wschr, 3, 379\nSrinivasan, 1991, Biomimetics: advancing man-made materials through guidance from nature, Appl. Mech. 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Compos. Mater, 16, 510, 10.1177\u002F002199838201600605\nLoos, 1983, Curing of epoxy matrix composites, Compos. Mater, 17, 135, 10.1177\u002F002199838301700204\nNeat, 1989, Expert adaptive control for drug delivery systems, IEEE Control Syst. 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Sci. & Technol., 28, 103, 10.1016\u002F0266-3538(87)90093-5\nAchenbach, 1989, Effect of interfacial zone on mechanical behavior and failure of fiberreinforced composites, J. Mech. Phys. Solids, 37, 381, 10.1016\u002F0022-5096(89)90005-7\nAdams, 1970, Inelastic analysis of a unidirectional composite subjected to transverse normal loading, J. Compos. Mater., 4, 310, 10.1177\u002F002199837000400303\nADINA Engineering, 1984, ADINA: Theory and Modeling Guide\nBigelow, 1992, The effects of uneven fiber spacing on thermal residual stresses in a unidirectional SCS-6\u002FTi-15-3 laminate, ASTM J. Compos. Technol. Res., JCTRER, 14, 211, 10.1520\u002FCTR10100J\nBrockenbrough, 1990, Plastic deformation of continuous fiber-reinforced metal-matrix composites: effects of fiber shape and distribution, Scr. Metall. Mater., 24, 325, 10.1016\u002F0956-716X(90)90264-H\nBrockenbrough, 1991, Deformation of metal matrix composites with continuous fibers: geometrical effects of fibre distribution and shape, Acta Metall. Mater., 39, 735, 10.1016\u002F0956-7151(91)90274-5\nChen, 1969, Transverse properties of fibrous composites, Mater. Res. Stand., 9, 29\nDvorack, 1985, Periodic hexagonal array models for plasticity analysis of composite materials, 623\nHashin, 1979, Analysis of properties of fiber composites and anisotropic constituents, ASME J. Appl. Mech., 46, 543, 10.1115\u002F1.3424603\nHashin, 1991, Thermoelastic properties of particulate composites with imperfect interface, J. Mech. Phys. Solids, 39, 745, 10.1016\u002F0022-5096(91)90023-H\nJohnson, 1990, Mechanical characterization of SCS-6\u002FTi-15V-3Cr-3Al-3Sn metal matrix composites at room temperature, 193\nLi, 1994, Unidirectional tensile stress-strain response of BP-SiC fiber reinforced Ti-6A1-4V, ASTM J. Compos. Technol. Res., JCTRER, 16, 225, 10.1520\u002FCTR10411J\nLi, 1994, Factors controlling the transverse tensile properties of unidirectional SiC\u002FTi-6Al-4V, Compos. Engng\nNimmer, 1990, Fiber-matrix interface effects in the presence of thermally induced residual stresses, ASTM J. Compos. Technol. Res., JCTRER, 12, 65, 10.1520\u002FCTR10181J\nNimmer, 1991, Micromechanical modeling of fiber\u002Fmatrix interface effects in transversely loaded SiC\u002FTi-6-4 metal matrix composites, ASTM J. Compos. Technol. Res., JCTRER, 13, 3, 10.1520\u002FCTR10068J\nRobertson, 1992, Fiber-matrix interphase effects upon transverse behavior in metal-matrix composites, ASTM J. Compos. Technol. Res., JCTRER, 14, 3, 10.1520\u002FCTR10077J\nSnyder, 1980, Finite element analysis of thermo-elastic-plastic and creep response\nSohi, 1991, Transverse constitutive response of titanium-aluminide metal-matrix composites, 617\nWisnom, 1989, Modeling fiber-matrix interface in undirectional metal matrix composites\nWisnom, 1990, Factors affecting the transverse tensile strength of unidirectional continuous silicon carbide fibre reinforced 6061 aluminum, J. Compos. 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Sci. & Technol., 28, 103, 10.1016\u002F0266-3538(87)90093-5\nAboudi, 1989, Micromechanical analysis of composites by the method of cells, Appl. Mech. Rev., 42, 193, 10.1115\u002F1.3152428\nArenburg, 1991, Analysis of metal matrix composite structures-II. Laminate analysis, Computers & Structures, 40, 1369, 10.1016\u002F0045-7949(91)90408-E\nGayda, 1992, Isothermal fatigue behavior of a [90]8 SiC\u002FTi-15-3 composite at 426°C, Int. J. of Fatigue Jan., 14, 10.1016\u002F0142-1123(92)90148-6\nKyono, 1986, The effect of isothermal exposure on the transverse properties of a continuous fibre metal-matrix composite, J. Mater. Sci., 21, 4269, 10.1007\u002FBF01106541\nLerch, 1991, Tensile Deformation in SiC Reinforced Ti-15V-3Cr-3Al-3Sn\nLerch, 1991, Experimental and Analytical Analysis of Stress-Strain Behavior in a [90\u002F0]2s SiC\u002FTi-15-3 Laminate, NASA TM 104470\nMajumdar, 1992, Inelastic deformation of metal matrix composites: plasticity and damage mechanisms, Philos. Mag. A, 66, 187, 10.1080\u002F01418619208201551\nMajumdar, 1992, Constitutive behavior of metal matrix composites, Vol. 40, 77\nNeedleman, 1987, A continuum model for void nucleation by inclusion debonding, J. Appl. Mech., 54, 525, 10.1115\u002F1.3173064\nNeu, 1993, Nonisothermal material parameters for the Bodner-Partom model\nRobertson, 1993, A nonlinear three-dimensional model for fiber-reinforced laminated composites\nRobertson, 1992, Fiber-matrix interphase effects upon transverse behavior in metal matrix composite, J. Compos. Technol. Res., 14, 3, 10.1520\u002FCTR10077J\nRobertson, 1993, Micromechanical relations for fiber-reinforced composites using the free transverse shear approach, J. Compos. Technol. 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