Applied Mathematics and Mechanics (English Edition) ›› 2026, Vol. 47 ›› Issue (5): 1131-1156.doi: https://doi.org/10.1007/s10483-026-3385-7
收稿日期:2025-12-18
修回日期:2026-03-21
发布日期:2026-05-06
Received:2025-12-18
Revised:2026-03-21
Published:2026-05-06
Contact:
R. BARRETTA
E-mail:rabarret@unina.it
中图分类号:
. [J]. Applied Mathematics and Mechanics (English Edition), 2026, 47(5): 1131-1156.
G. ROMANO, R. BARRETTA. Fundamental topics in continuum mechanics: grand ideas, errors and horrors[J]. Applied Mathematics and Mechanics (English Edition), 2026, 47(5): 1131-1156.
| [1] | TRUESDELL, C. A. Mechanical foundations of elasticity and fluid dynamics. Journal of Rational Mechanics and Analysis, 1, 125–171, 173–300 (1952) |
| [2] | TRUESDELL, C. A. Hypoelasticity. Journal of Rational Mechanics and Analysis, 4, 83–133, 1019–1020 (1955) |
| [3] | TRUESDELL, C. A. and TOUPIN, R. The Classical Field Theories, Springer, Berlin, 226–793 (1960) |
| [4] | TRUESDELL, C. A. and NOLL, W. The Non-Linear Field Theories of Mechanics, Springer, New York (1992) |
| [5] | ROMANO, G. Continuum Mechanics: Geometric Foundation (2023) https://gioprof1941.web.app |
| [6] | ROMANO, G., BARRETTA, R., and DIACO, M. Spacetime evolutive equilibrium in nonlinear continuum mechanics. Continuum Mechanics and Thermodynamics, 35(5), 1859–1880 (2023) |
| [7] | COLEMAN, B. D. and MIZEL, V. J. Existence of caloric equations of state in thermodynamics. The Journal of Chemical Physics, 40(4), 1116–1125 (1964) |
| [8] | ERINGEN, A. C. Nonlinear Theory of Continuous Media, McGraw-Hill, New York (1962) |
| [9] | RIVLIN, R. S. On the principles of equipresence and unification. Quarterly of Applied Mathematics, 30(2), 227–228 (1972) |
| [10] | NOLL, W. The Foundations of Mechanics and Thermodynamics: Selected Papers of Walter Noll, Springer-Verlag, 324 (1974) |
| [11] | RIVLIN, R. S. Review of “The Foundations of Mechanics and Thermodynamics: Selected Papers of Walter Noll, Springer-Verlag (1974)” (1976) http://gioprof1941.web.app |
| [18] | GURTIN, M. E. The linear theory of elasticity. Encyclopedia of Physics, Springer, Berlin (1972) |
| [19] | WANG, C. C. and TRUESDELL, C. A. Introduction to Rational Elasticity, Noordhoff International Publishing, Leyden, The Netherlands (1973) |
| [20] | GURTIN, M. E. An Introduction to Continuum Mechanics, Academic Press, San Diego (1981) |
| [21] | ODEN, J. T. and REDDY, J. N. Variational Methods in Theoretical Mechanics, Springer-Verlag, Berlin (1982) |
| [22] | MARSDEN, J. E., and HUGHES, T. J. R. Mathematical Foundations of Elasticity, Prentice-Hall, Redwood City, California (1983) |
| [23] | GURTIN, M. E. Topics in finite elasticity. Society for Industrial and Applied Mathematics, Philadelphia, PA (1983) |
| [24] | OGDEN, R. W. Non-linear elastic deformations. Ellis Horwood Series in Mathematics and Its Applications, Chichester, England (1984) |
| [25] | TRUESDELL, C. A. A First Course in Rational Continuum Mechanics, Academic Press, San Diego (1991) |
| [26] | CRISFIELD, M. A. Non-linear Finite Element Analysis of Solids and Structures, Advanced Topics, John Wiley, New Jersey (1996) |
| [27] | PODIO-GUIDUGLI, P. A primer in elasticity. Journal of Elasticity, 58(1), 1–104 (2000) |
| [28] | NGUYEN, Q. S. Stability and Nonlinear Solid Mechanics, John Wiley, New Jersey (2000) |
| [29] | HOLZAPFEL, G. A. Nonlinear Solid Mechanics: a Continuum Approach for Engineering, Wiley, Chichester (2000) |
| [30] | BELYTSCHKO, T., LIU, W. K., and MORAN, B. Nonlinear Finite Elements for Continua and Structures, John Wiley & Sons, New Jersey (2001) |
| [31] | LUBARDA, V. A. Elastoplasticity Theory, CRC Press, Boca Raton (2002) |
| [32] | ASARO, R. J. and LUBARDA, V. Mechanics of Solids and Materials, Cambridge University Press, Cambridge (2006) |
| [33] | MAN, C. S. and FOSDICK, R. L. The Rational Spirit in Modern Continuum Mechanics, Kluwer Academic Publishers, New York (2005) |
| [34] | TEMAM, R. and MIRANVILLE, A. Mathematical Modeling in Continuum Mechanics, Cambridge University Press, Cambridge (2005) |
| [35] | ODEN, J. T. Finite Elements of Nonlinear Continua, McGraw-Hill, New York (1972) |
| [36] | XIAO, H., BRUHNS, O. T., and MEYERS, A. Elastoplasticity beyond small deformations. Acta Mechanica, 182(1-2), 31–111 (2006) |
| [37] | BERTRAM, A. Elasticity and Plasticity of Large Deformations: an Introduction, Springer-Verlag, Berlin (2008) |
| [38] | GURTIN, M. E., FRIED, E., and ANAND, L. The Mechanics and Thermodynamics of Continua, Cambridge University Press, Cambridge (2010) |
| [39] | EPSTEIN, M. The Geometrical Language of Continuum Mechanics, Cambridge University Press, Cambridge (2010) |
| [40] | ODEN, J. T. An Introduction to Mathematical Modeling: a Course in Mechanics, Wiley, Hoboken, New Jersey (2011) |
| [41] | DE BORST, R., CRISFIELD, M. A., REMMERS, J. J. C., and VERHOOSEL, C. V. Non-Linear Finite Element Analysis of Solids and Structures, John Wiley & Sons Ltd., Chichester (2012) |
| [42] | EPSTEIN, M. The Elements of Continuum Biomechanics, Wiley Online Books (2012) |
| [43] | LIU, I. S. and SAMPAIO, R. On objectivity and the principle of material frame indifference. Mecánica Computacional, 31, 1553–1569 (2012) |
| [44] | BIGONI, D. Nonlinear Solid Mechanics: Bifurcation Theory and Material Instability, Cambridge University Press, Cambridge (2012) |
| [45] | BALACHANDRAN, B. W. Lacarbonara: Nonlinear Structural Mechanics: Theory, Dynamical Phenomena, and Modeling, Springer, New York (2013) |
| [46] | FREED, A. D. Soft Solids: a Primer to the Theoretical Mechanics of Materials, Springer International Publishing, Switzerland (2014) |
| [47] | MARIANO, P. M. and GALANO, L. Fundamentals of the Mechanics of Solids, Springer, New York (2015) |
| [48] | SALENÇON, J. Mecanique des Milieux Continus — Concepts Généraux, École Polytechnique, Paris (2016) |
| [49] | SALENÇON, J. Virtual Work Approach to Mechanical Modeling, John Wiley & Sons, New York (2018) |
| [50] | TAROCO, E. O., BLANCO, P. J., and FEIJÓO, R. A. Introduction to the Variational Formulation in Mechanics, John Wiley & Sons, New York (2020) |
| [51] | MERODIO, J. and OGDEN, R. Basic equations of continuum mechanics. Constitutive Modelling of Solid Continua, Springer Nature, New York (2020) |
| [52] | VARIGNON, P. La Nouvelle Mécanique ou Statique, Joubert, Paris (1725) |
| [53] | BERNOULLI FAMILIE. Die Gesammelten Werke der Mathematiker und Physiker der Familie Bernoulli, Basel, Switzerland (1969) |
| [54] | D’ALEMBERT, J. B. Traité de Dynamique, Coignard, Paris (1743) |
| [55] | EULER, L. Methodus Inveniendi Lineas Curvas Maximi Minimive Proprietate Gaudentes, Marc-Michel Bousquet & Compagnie, Lausanne (1744) |
| [56] | LAGRANGE, J. L. Mécanique Analytique, Cambridge University Press, Cambridge (2009) |
| [57] | POISSON, S. D. Traité de Mécanique, Courcier, Paris (1811) |
| [58] | CAUCHY, A. L. De la pression ou tension dans un corps solide. Exercices de Mathématiques, 2, 42–56 (1827) |
| [59] | CAUCHY, A. L. Sur l’équilibre et le mouvement intérieur des corps considérés comme des masses continues. Exercices de Mathématiques, 4, 293–319 (1829) |
| [60] | GREEN, G. An Essay on the Application of Mathematical Analysis to the Theories of Electricity and Magnetism, wheel house, Nottingham (1828) |
| [61] | GREEN, G. On the propagation of light in crystallized media. Transactions of the Cambridge Philosophical Society, 7(1), 121–140 (1839) |
| [62] | HAMILTON, W. R. The Mathematical Papers of Sir William Rowan Hamilton, Cambridge University Press, Cambridge (2000) |
| [63] | JACOBI, C. G. J. De formatione et proprietatibus Determinantium. Journal für die Reine und Angewandte Mathematik, 22, 285–318 (1841) |
| [64] | TRUESDELL, C. A. The creation and unfolding of the concept of stress. Essays in the History of Mechanics, Springer-Verlag, Berlin, 184–238 (1968) |
| [65] | SPIVAK, M. D. A Comprehensive Introduction to Differential Geometry, Perish Inc., Houston (1999) |
| [66] | ABRAHAM, R., MARSDEN, J. E., and RATIU, T. Manifolds, Tensor Analysis, and Applications, Springer-Verlag, New York (1988) |
| [67] | HITCHIN, N. Differentiable Manifolds, University of Oxford, Oxford (2003) |
| [68] | SAMELSON, H. Differential forms, the early days; or the stories of Deahna’s theorem and of Volterra’s theorem. The American Mathematical Monthly, 108(6), 522–530 (2001) |
| [69] | VOLTERRA, V. Delle variabili complesse negli iperspazi. Rendiconti della Reale Accademia dei Lincei, 5, 158–165, 291–299 (1889) |
| [70] | VOLTERRA, V. Sulle funzioni conjugate. Rendiconti della Reale Accademia dei Lincei, 5, 599–611 (1889) |
| [71] | FRIEDMAN, M. Foundations of Space-Time Theories, Princeton University Press, Princeton (1983) |
| [72] | FECKO, M. Differential Geometry and Lie Groups for Physicists, Cambridge University Press, Cambridge (2006) |
| [73] | ROMANO, G., BARRETTA, R., and DIACO, M. A geometric rationale for objectivity, stress rate, covariance and invariance. Continuum Mechanics and Thermodynamics, 30, 175–194 (2018) |
| [74] | ROMANO, G., BARRETTA, R., and DIACO, M. Geometric continuum mechanics. Meccanica, 49(1), 111–133 (2014) |
| [75] | RUBIN, M. B. Continuum Mechanics with Eulerian Formulations of Constitutive Equations, Springer Nature, Switzerland (2021) |
| [76] | ZAREMBA, S. Le principe des mouvements relatifs et les équations de la mécanique physique. Bulletin International de l’Académie des Sciences de Cracovie, 614–621 (1903) |
| [77] | RYSKIN, G. Misconception which led to the “material frame-indifference” controversy. Physical Review A, 32(2), 1239–1240 (1985) |
| [78] | IBRAHIMBEGOVIC, A. and TAYLOR, R. L. On the role of frame-invariance in structural mechanics models at finite rotations. Computer Methods in Applied Mechanics and Engineering, 191(45), 5159–5176 (2002) |
| [79] | LIU, I. S. On Euclidean objectivity and the principle of material frame-indifference. Continuum Mechanics and Thermodynamics, 16(1), 177–183 (2004) |
| [80] | MURDOCH, A. I. Objectivity in classical continuum physics: a rationale for discarding the ‘principle of invariance under superposed rigid body motions’ in favour of purely objective considerations. Continuum Mechanics and Thermodynamics, 15(3), 309–320 (2003) |
| [81] | LIU, I. S. Further remarks on Euclidean objectivity and the principle of material frame-indifference. Continuum Mechanics and Thermodynamics, 17(2), 125–133 (2005) |
| [82] | MURDOCH, A. I. On criticism of the nature of objectivity in classical continuum physics. Continuum Mechanics and Thermodynamics, 17(2), 135–148 (2005) |
| [83] | FREWER, M. More clarity on the concept of material frame-indifference in classical continuum mechanics. Acta Mechanica, 202(1), 213–246 (2009) |
| [84] | LIU, I. S. and SAMPAIO, R. Remarks on material frame-indifference controversy. Acta Mechanica, 225(2), 331–348 (2014) |
| [85] | FREWER, M. Covariance and objectivity in mechanics and turbulence: a revisiting of definitions and applications. arXiv preprint, arXiv:1611.07002 (2016) |
| [86] | LIU, I. S. and LEE, J. D. On material objectivity of intermolecular force in molecular dynamics. Acta Mechanica, 228(2), 731–738 (2017) |
| [87] | ROMANO, G. and BARRETTA, R. Geometric constitutive theory and frame invariance. International Journal of Non-Linear Mechanics, 51, 75–86 (2013) |
| [88] | ROMANO, G., BARRETTA, R., and DIACO, M. The geometry of nonlinear elasticity. Acta Mechanica, 225(11), 3199–3235 (2014) |
| [89] | ROMANO, G. Geometry & Continuum Mechanics, Short Course in Innsbruck (2014) https://gioprof1941.web.app/assets/GioBook/innsbruck_2014.pdf |
| [90] | LEVI-CIVITA, T. Lezioni di Calcolo Differenziale Assoluto, Alberto Stock, Roma (1925) |
| [91] | ROMANO, G. and BARRETTA, R. On Euler’s stretching formula in continuum mechanics. Acta Mechanica, 224(1), 211–230 (2013) |
| [92] | ROMANO, G., BARRETTA, R., and DIACO, M. Rate formulations in nonlinear continuum mechanics. Acta Mechanica, 225(6), 1625–1648 (2014) |
| [93] | PIOLA, G. La meccanica dei corpi naturalmente estesi trattata col calcolo delle variazioni. Opuscoli Matematici e Fisici di Diversi Autori, 2, 201–236 (1833) |
| [94] | PIOLA, G. Nuova analisi per tutte le questioni della meccanica molecolare. Memorie di Matematica e di Fisica della Società Italiana delle Scienze, 21, 155–321 (1836) |
| [95] | PIOLA, G. The Complete Works of Gabrio Piola: Volume I, Commented English Translation, Springer, Milan (2014) |
| [96] | PIOLA, G. The Complete Works of Gabrio Piola: Volume II, Commented English Translation, Springer, Milan (2018) |
| [97] | COSSERAT, E. and COSSERAT, F. Théorie des Corps Déformables, Hermann et Fils, Paris (1909) |
| [98] | DUHEM, P. Le potentiel thermodynamique et la pression hydrostatique. Annales Scientifiques de L’école Normale Supérieure, 10, 183–230 (1893) |
| [99] | ERINGEN, A. C. Theory of micropolar elasticity. Fracture, Academic Press, New York, 662–729 (1968) |
| [100] | ERINGEN, A. C. Mechanics of micromorphic continua. Mechanics of Generalized Continua, Springer-Verlag, Berlin, 18–35 (1968) |
| [101] | ROMANO, G., BARRETTA, R., and DIACO, M. Micromorphic continua: non-redundant formulations. Continuum Mechanics and Thermodynamics, 28(6), 1659–1670 (2016) |
| [102] | ROMANO, G., BARRETTA, R., and DIACO, M. On the role of control windows in continuum dynamics. Acta Mechanica, 229(4), 1849–1868 (2018) |
| [103] | ROMANO, G. and BARRETTA, R. Advancements in continuum mechanics and electrodynamics by a spacetime geometric approach. Acta Mechanica, 235(7), 4357–4399 (2024) |
| [104] | ROMANO, G., BARRETTA, R., and DIACO, M. Solid-fluid interaction: a continuum mechanics assessment. Acta Mechanica, 228(3), 851–869 (2017) |
| [105] | VON BUQUOY, G. Analytische Bestimmung des Gesetzes der Virtuellen Geschwindigkeiten in Mechanischer und Statischer Hinsicht, Breitkopf und Härtel, Leipzig (1812) http://dx.doi.org/10.3931/e-rara-14843 |
| [106] | VON BUQUOY, G. Exposition d’un Nouveau Principe Général de Dynamique, Dont le Principe des Vitesses Virtuelles N’est Qu’un cas Particulier, Courcier, Paris (1815) |
| [107] | MESHCHERSKY, I. V. The Dynamics of a Point of Variable Mass, M. Sc. dissertation, St. Petersburg University, St. Petersburg (1897) |
| [12] | RIVLIN, R. S. Red herrings and sundry unidentified fish in nonlinear continuum mechanics. Collected Papers of R. S. Rivlin, Springer, New York, 2765–2782 (1997) |
| [13] | NOLL, W. On the continuity of the solid and fluid states. Journal of Rational Mechanics and Analysis, 4, 3–81 (1955) |
| [14] | NOLL, W. The genesis of the non-linear field theories of mechanics. The Non-Linear Field Theories of Mechanics, Springer, New York (2004) |
| [15] | FUNG, Y. C. Foundations of Solid Mechanics, Prentice-Hall, Englewood Cliffs, New Jersey (1965) |
| [16] | TRUESDELL, C. A. The Elements of Continuum Mechanics, Springer Verlag, Berlin (1966) |
| [17] | MALVERN, L. E. Introduction to the Mechanics of a Continuous Medium, Prentice Hall, Englewood Cliffs, New Jersey (1969) |
| [108] | MESHCHERSKY, I. V. Works on the Mechanics of Bodies with Variable Mass (in Russian), Gostekhizdat, Moscow (1949) |
| [109] | HILL, R. Some basic principles in the mechanics of solids without a natural time. Journal of the Mechanics and Physics of Solids, 7(3), 209–225 (1959) |
| [110] | BERNSTEIN, B. Hypo-elasticity and elasticity. Archive for Rational Mechanics and Analysis, 6(1), 89–104 (1960) |
| [111] | LEE, E. H. Elastic-plastic deformations at finite strains. Journal of Applied Mechanics, 36(1), 1–6 (1969) |
| [112] | BILBY, B. A., LARDNER, L. R. T., and STROH, A. N. Continuous distributions of dislocations and the theory of plasticity. Proceedings of the Ninth International Congress of Applied Mechanics, Brussels, 35–44 (1956) |
| [113] | SADIK, S. and YAVARI, A. On the origins of the idea of the multiplicative decomposition of the deformation gradient. Mathematics and Mechanics of Solids, 22(4), 771–772 (2017) |
| [114] | KONDAUROV, V. I. and NIKITIN, L. V. Finite strains of viscoelastic muscle tissue. Journal of Applied Mathematics and Mechanics, 51(3), 346–353 (1987) |
| [115] | TAKAMIZAWA, K. and HAYASHI, K. Strain energy density function and uniform strain hypothesis for arterial mechanics. Journal of Biomechanics, 20(1), 7–17 (1987) |
| [116] | RODRIGUEZ, E. K., HOGER, A., and MCCULLOCH, A. D. Stress-dependent finite growth in soft elastic tissues. Journal of Biomechanics, 27(4), 455–467 (1994) |
| [117] | ZHUAN, X. and LUO, X. Y. Volumetric growth of soft tissues evaluated in the current configuration. Biomechanics and Modeling in Mechanobiology, 21(2), 569–588 (2022) |
| [118] | CHEN, Y. C. A mechanical theory of growth. Journal of Elasticity, 155(1), 787–807 (2024) |
| [119] | SIMO, J. C. A framework for finite strain elastoplasticity based on maximum plastic dissipation and the multiplicative decomposition: part I, continuum formulation. Computer Methods in Applied Mechanics and Engineering, 66(2), 199–219 (1988) |
| [120] | LUBARDA, V. A. Constitutive analysis of large elasto-plastic deformation based on the multiplicative decomposition of deformation gradient. International Journal of Solids and Structures, 27(7), 885–895 (1991) |
| [121] | BRUHNS, O. T. The Prandtl-reuss equations revisited. Journal of Applied Mathematics and Mechanics, 94(3), 187–202 (2014) |
| [122] | BRUHNS, O. T. Large deformation plasticity: from basic relations to finite deformation. Acta Mechanica Sinica, 36(2), 472–492 (2020) |
| [123] | TRUESDELL, C. Das ungelöste hauptproblem der endlichen elastizitätstheorie. Journal of Applied Mathematics and Mechanics, 36(3-4), 97–103 (1956) |
| [124] | CARROLL, M. M. Must elastic materials be hyperelastic? Mathematics and Mechanics of Solids, 14(4), 369–376 (2009) |
| [125] | BARRETTA, R., VACCARO, M. S., and USSORIO, D. On nonlinear mechanics of nonlocal elastic trusses. Mechanics Research Communications, 150, 104560 (2025) |
| [126] | VACCARO, M. S., USSORIO, D., and BARRETTA, R. On effective stress rate in non-linear continuum mechanics. Continuum Mechanics and Thermodynamics (2026) https://doi.org/10.1007/s00161-026-01449-5 |
| 阅读次数 | ||||||
|
全文 |
|
|||||
|
摘要 |
|
|||||

Email Alert
RSS