Advances in the Structural Modeling of Elastic Sandwich Panels
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[1] Carlos A. Mota Soares,et al. Optimization of multilaminated structures using higher-order deformation models , 1997 .
[2] Yong Hyup Kim,et al. Predictor-Corrector Approach for the Analysis of Sandwich Panels , 2000 .
[3] D. J. Dawe,et al. Overall and local buckling of sandwich plates with laminated faceplates, part II: Applications , 2001 .
[4] L. Librescu,et al. Vibration of geometrically imperfect panels subjected to thermal and mechanical loads , 1996 .
[5] Koganti M. Rao,et al. Analysis of sandwich plates using a hybrid-stress finite element , 1991 .
[6] Ibrahim K. Ebcioglu. Non-linear theories of sandwich shells , 1973 .
[7] Yeoshua Frostig,et al. Special behavior of unidirectional sandwich panels with transversely flexible core under statical loading , 2002 .
[8] Liviu Librescu,et al. Geometrically nonlinear models of initially imperfect sandwich plates and shells incorporating non-classical effects , 1996 .
[9] W. Becker,et al. Optimized structural sandwich panels with minimum delamination hazards , 2002 .
[10] J. Reddy. A Simple Higher-Order Theory for Laminated Composite Plates , 1984 .
[12] Wilfried Becker,et al. A triangular v. Kármán type finite element for sandwich plates with transversely compressible core , 2004 .
[13] Wang Ying-jiang,et al. Nonlinear stability analysis of a sandwich shallow cylindrical panel with orthotropic surfaces , 1989 .
[14] Ibrahim K. Ebcioǧlu. A general nonlinear theory of sandwich panels , 1989 .
[15] Gottfried Laschet,et al. Pre- and postbuckling finite element analysis of curved composite and sandwich panels , 1990 .
[16] Liviu Librescu,et al. Enhancement of the thermomechanical load carrying capacity of advanced sandwich structures , 1998 .
[17] Liviu Librescu,et al. Thermomechanical load-carrying capacity of sandwich flat panels , 1998 .
[18] Thomas E. Lacy,et al. Numerical modeling of impact-damaged sandwich composites subjected to compression-after-impact loading , 2003 .
[19] Liviu Librescu,et al. Geometrically Nonlinear Theory of Initially Imperfect Sandwich Curved Panels Incorporating Nonclassical Effects , 1997 .
[20] H.-R. Meyer-Piening,et al. Buckling analysis of FRP faced cylindrical sandwich panel under combined loading , 1990 .
[21] Two-dimensional analysis of shallow sandwich panels , 2001 .
[22] R. Shenoi,et al. Free vibration analysis of composite sandwich plates , 1999 .
[23] Ibrahim K. Ebcioglu. On the theory of sandwich panels in the reference state , 1965 .
[24] Ahmed K. Noor,et al. Computational Models for Sandwich Panels and Shells , 1996 .
[25] Buckling of Unbalanced, Sandwich Panels With Titanium and GRP Skins , 1995 .
[26] Liviu Librescu,et al. A Comprehensive Nonlinear Model for Sandwich-Shells with Anisotropic Faces and Compressible Core , 2002 .
[27] António J.M. Ferreira,et al. Non-linear analysis of sandwich shells: the effect of core plasticity , 2000 .
[28] Michael P. F. Sutcliffe,et al. Indentation resistance of sandwich beams , 1999 .
[29] Robert Schmidt. Large deflections of multisandwich shells of arbitrary shape , 1969 .
[30] L. Librescu,et al. Implications of damaged interfaces and of other non-classical effects on the load carrying capacity of multilayered composite shallow shells , 2002 .
[31] Liviu Librescu,et al. Non-linear response of geometrically imperfect sandwich curved panels under thermomechanical loading , 1998 .
[32] L. M. Habip. A review of recent russian work on sandwich structures. , 1964 .
[33] Tarun Kant,et al. Finite element analysis of laminated composite plates using a higher-order displacement model , 1988 .
[34] S. W. Lee,et al. Buckling and postbuckling of soft-core sandwich plates with composite facesheets , 2000 .
[35] Tarun Kant,et al. Analytical solutions for the static analysis of laminated composite and sandwich plates based on a higher order refined theory , 2002 .
[36] J. C. Bruch,et al. Piezoelectric Stiffener-actuators For The Suppression Of The Vibration Of Laminated Composite Beams , 1998 .
[37] J. Webber,et al. Experimental Buckling Loads of Sandwich Panels with Carbon Fibre Faceplates , 1973 .
[38] Anthony N. Palazotto,et al. Progressive failure analysis of a composite shell , 2001 .
[39] Ramesh Talreja,et al. Modeling of Wrinkling in Sandwich Panels under Compression , 1999 .
[40] Bhavani V. Sankar,et al. Compressive Failure of Sandwich Beams with Debonded Face-Sheets , 2000 .
[41] L. Librescu,et al. Frequency-load interaction of geometrically imperfect curved panels subjected to heating , 1996 .
[42] J. R. Vinson,et al. Optimum design of composite honeycomb sandwich panels subjected to uniaxial compression , 1986 .
[43] A. Ehrlacher,et al. A tri-particle model of sandwich panels , 1999 .
[44] N. K. Chandiramani,et al. Postbuckling of laminated flat and curved panels under combined thermal and mechanical loadings , 1993 .
[45] C. Hong,et al. Buckling of unbalanced anisotropic sandwich plates with finite bonding stiffness , 1988 .
[46] K. Rao,et al. Buckling analysis of anisotropic sandwich plates faced with fiber-reinforced plastics , 1985 .
[47] E. Carrera. A refined multilayered finite-element model applied to linear and non-linear analysis of sandwich plates , 1998 .
[48] Tarun Kant,et al. Analytical solutions for free vibration of laminated composite and sandwich plates based on a higher-order refined theory , 2001 .
[49] A. Petras,et al. Failure mode maps for honeycomb sandwich panels , 1999 .
[50] R. A. Shenoi,et al. Dynamic analysis of composite sandwich plates with damping modelled using high-order shear deformation theory , 2001 .
[51] Zhi-Wei Wang. THE GEOMETRICALLY NONLINEAR THEORY OF ANISOTROPIC SANDWICH SHELLS FACED WITH LAMINATED COMPOSITES , 1997 .
[52] I. M. Ibrahim,et al. Modified stiffness formulation of unbalanced anisotropic sandwich plates , 1977 .
[53] J. Vinson. The Behavior of Sandwich Structures of Isotropic and Composite Materials , 1999 .
[54] Y. Frostig,et al. Structural Similitude and Scaling Laws for Sandwich Beams , 2002 .
[55] Yeoshua Frostig,et al. Buckling of sandwich panels with a flexible core—high-order theory , 1998 .
[56] Exact solutions to some honeycomb sandwich beam, plate, and shell problems , 1982 .
[57] Erdogan Madenci,et al. Equivalent single-layer theory for a complete stress field in sandwich panels under arbitrarily distributed loading , 2002 .
[58] R. A. Shenoi,et al. Free vibration analysis of composite sandwich plates based on Reddy's higher-order theory , 2002 .
[59] H. B. Zhou,et al. Free vibration analysis of sandwich plates with laminated faces using spline finite point method , 1996 .
[60] Franz G. Rammerstorfer,et al. The effects of in-plane core stiffness on the wrinkling behavior of thick sandwiches , 2000 .
[61] Yeoshua Frostig. Classical and high-order computational models in the analysis of modern sandwich panels , 2003 .
[62] Vincent Manet,et al. The use of ANSYS to calculate the behaviour of sandwich structures , 1998 .
[63] Hans Irschik,et al. Large thermoelastic deflections and stability of simply supported polygonal panels , 1986 .
[64] Alexander Tessler,et al. A {3,2}-order bending theory for laminated composite and sandwich beams , 1998 .
[65] Yeoshua Frostig,et al. High-order behavior of fully bonded and delaminated circular sandwich plates with laminated face sheets and a “soft” core , 2002 .
[66] Yeoshua Frostig,et al. High‐Order Theory for Sandwich‐Beam Behavior with Transversely Flexible Core , 1992 .
[67] T. LEWI. On displacement-based theories of sandwich plates with soft core , .
[68] John Dugundji,et al. Buckling and Failure of Sandwich Plates with Graphite-Epoxy Faces and Various Cores , 1988 .
[69] Liviu Librescu,et al. Core and Face-Sheet Anisotropy in Deformation and Buckling of Sandwich Panels , 2003 .
[70] A. Ferreira,et al. Geometric Non-Linear Analysis of Sandwich Structures , 1998 .
[71] Zhenyu Xue,et al. Preliminary assessment of sandwich plates subject to blast loads , 2003 .
[72] J. Webber,et al. Buckling of Sandwich Panels with Laminated Face Plates , 1972 .
[73] Maria Antonietta Aiello,et al. Local buckling loads of sandwich panels made with laminated faces , 1997 .
[74] Charles W. Bert,et al. Composite Material Mechanics: Structural Mechanics , 1974 .
[75] Hui-Shen Shen,et al. Nonlinear local response of foam-filled sandwich plates with laminated faces under combined transverse and in-plane loads , 2001 .
[76] L. A. P. S. da Silva,et al. Localised formulations for thick “sandwich” laminated and composite structures , 1998 .
[77] H. G. Allen. Analysis and design of structural sandwich panels , 1969 .
[78] Alexander Tessler,et al. A { 1, 2}-ORDER THEORY FOR ELASTODYNAMIC ANALYSIS OF THICK ORTHOTROPIC SHELLS , 1995 .
[79] M. Sainsbury,et al. The Galerkin element method applied to the vibration of damped sandwich beams , 1999 .
[80] Hilary Bart-Smith,et al. Influence of imperfections on the performance of metal foam core sandwich panels , 2002 .
[81] Holm Altenbach,et al. An alternative determination of transverse shear stiffnesses for sandwich and laminated plates , 2000 .
[82] Milton E. Raville. Deflection and stresses in a uniformly loaded, simply supported, rectangular sandwich plate , 1962 .
[83] N J Hoff,et al. Bending and buckling of rectangular sandwich plates , 1950 .
[84] Liviu Librescu,et al. Postbuckling of anisotropic flat and doubly-curved sandwich panels under complex loading conditions , 1998 .
[85] Liviu Librescu,et al. Effect of Face-Sheet Anisotropy on Buckling and Postbuckling of Sandwich Plates , 2000 .
[86] Emmanuel E. Gdoutos,et al. Compression facing wrinkling of composite sandwich structures , 2003 .
[87] Ole Thybo Thomsen,et al. Modeling of Tapered Sandwich Panels Using a High-Order Sandwich Theory Formulation , 2002 .
[88] Charles Libove,et al. A general small-deflection theory for flat sandwich plates , 1948 .
[89] Victor Birman,et al. Analytical models of sandwich plates with piezoelectric strip-stiffeners , 1994 .
[90] E. Reissner,et al. Finite Deflections of Sandwich Plates , 1948 .
[91] K. Mäkinen,et al. THE TRANSVERSE RESPONSE OF SANDWICH PANELS TO AN UNDERWATER SHOCK WAVE , 1999 .
[92] W. Vocke. F. J. Plantema, Sandwich Construction. XX + 246 S. m. Fig. New York/London/Sydney 1966. John Wiley & Sons, Inc. Preis geb. 115 s , 1967 .
[93] L. M. Habip. A survey of modern developments in the analysis of sandwich structures. , 1965 .
[94] F. L. Matthews,et al. Predicting the buckling load of anisotropic sandwich panels: an approach including shear deformation of the faces , 1998 .
[95] Y. Frostig,et al. Boundary condition effects in buckling of soft core sandwich panels , 1999 .
[96] Julio F. Davalos,et al. Modeling and characterization of fiber-reinforced plastic honeycomb sandwich panels for highway bridge applications , 2001 .
[97] F. L. Matthews,et al. Buckling of anisotropic sandwich panels containing holes: Part II: wrinkling , 2001 .
[98] W. S. Hemp. On a theory of sandwich construction , 1948 .
[99] D. W. Alspaugh,et al. Minimum Weight Sandwich Beam Design , 1974 .
[100] Y. Kwon,et al. Impact Study of Sandwich Composite Structures with Delamination , 1998 .
[101] Yi-Yuan Yu,et al. Dynamics and vibration of layered plates and shells - A perspective from sandwiches to laminated composites , 1989 .
[102] George A. Kardomateas,et al. Elasticity Solutions for Sandwich Orthotropic Cylindrical Shells Under External/Internal Pressure or Axial Force , 2001 .
[103] Yi-Yuan Yu,et al. INFLUENCE OF TRANSVERSE SHEAR AND EDGE CONDITION ON NONLINEAR VIBRATION AND DYNAMIC BUCKLING OF HOMOGENEOUS AND SANDWICH PLATES , 1966 .
[104] A. Noor,et al. Assessment of computational models for sandwich panels and shells , 1995 .
[105] G. G. Stokes. "J." , 1890, The New Yale Book of Quotations.
[106] Adrian P. Mouritz,et al. Review of advanced composite structures for naval ships and submarines , 2001 .
[107] Stephen R. Swanson. An examination of a higher order theory for sandwich beams , 1999 .
[108] Liviu Librescu,et al. A general linear theory of laminated composite shells featuring interlaminar bonding imperfections , 2001 .
[109] Jack R. Vinson,et al. The Behavior of Shells Composed of Isotropic and Composite Materials , 1992 .
[110] Nonlinear High-Order Response of Imperfect Sandwich Beams with Delaminated Faces , 2001 .
[111] Yeoshua Frostig,et al. Branching behavior in the nonlinear response of sandwich panels with a transversely flexible core , 2000 .
[112] L. Librescu,et al. A nonlinear theory for doubly curved anisotropic sandwich shells with transversely compressible core , 2003 .
[113] Liviu Librescu,et al. Elastostatics and Kinetics of Anisotropic and Heterogeneous Shell-Type Structures , 1975 .
[114] Thermal behavior of a titanium honeycomb-core sandwich panel , 1991 .
[115] Yi‐Yuan Yu,et al. Nonlinear Flexural Vibrations of Sandwich Plates , 1962 .
[116] J. Hohe. A direct homogenisation approach for determination of the stiffness matrix for microheterogeneous plates with application to sandwich panels , 2003 .
[117] Robert E. Fulton,et al. Effect of Face-Sheet Stiffness on Buckling of Curved Plates and Cylindrical Shells of Sandwich Construction in Axial Compression , 1965 .
[118] Elena Bozhevolnaya,et al. Nonlinear closed-form high-order analysis of curved sandwich panels , 1997 .
[119] V Birmani,et al. Theory and applications of cylindrical sandwich shells with piezoelectric sensors and actuators , 1994 .
[120] Franz G. Rammerstorfer,et al. Wrinkling of thick orthotropic sandwich plates under general loading conditions , 2000 .
[121] Liviu Librescu,et al. Dynamic Response of Adaptive Cross-Ply Cantilevers Featuring Interlaminar Bonding Imperfections , 2000 .
[122] Liviu Librescu,et al. Buckling and Nonlinear Response of Sandwich Curved Panels to Combined Mechanical Loads-Implications of Face-Sheet Elastic Tailoring , 2000 .
[123] E. Madenci,et al. Nonlinear thermoelastic analysis of composite panels under non-uniform temperature distribution , 2000 .
[124] D. J. Dawe,et al. Free vibration of sandwich plates with laminated faces , 2002 .
[125] Yeoshua Frostig,et al. High-order behavior of sandwich panels with a bilinear transversely flexible core , 2001 .
[126] Tarun Kant,et al. An unsymmetric FRC laminate C° finite element model with 12 degrees of freedom per node , 1988 .
[127] L. Librescu,et al. Effects of Interfacial Damage on the Global and Local Static Response of Cross-Ply Laminates , 1999 .
[128] Y. Frostig,et al. High-order bending of sandwich beams with a transversely flexible core and unsymmetrical laminated composite skins , 1995 .
[129] R. E. Fulton,et al. Non-Linear Equations for a Shallow Unsymmetrical Sandwich Shell of Double Curvature , 1961 .
[130] Jongman Kim,et al. Design of sandwich structures under contact loading , 2003 .
[131] Liviu Librescu,et al. Recent developments in the modeling and behavior of advanced sandwich constructions: a survey , 2000 .
[132] J. Mayers,et al. General instability and face wrinkling of sandwich plates - Unified theory and applications. , 1966 .
[133] Wilfried Becker,et al. Effective stress-strain relations for two-dimensional cellular sandwich cores: Homogenization, material models, and properties , 2002 .
[134] M. Kataoka-Filho,et al. Optimization of nonhomogeneous facesheets in composite sandwich plates , 1999 .
[135] T. R. Tauchert,et al. Large-amplitude vibration of graphite-reinforced aluminum cylindrical panels subjected to rapid heating , 1993 .
[136] Zhen-Qiang Cheng,et al. Nonlinear flexural vibration of rectangular moderately thick plates and sandwich plates , 1993 .
[137] G. A. Wempner. Theory for Moderately Large Deflections of Thin Sandwich Shells , 1965 .
[138] Maurice A. Biot,et al. Mathematical Methods in Engineering. (Scientific Books: Mathematical Methods in Engineering. An Introduction to the Mathematical Treatment of Engineering Problems) , 1941, The Journal of the Royal Aeronautical Society.
[139] Ahmed K. Noor,et al. Hierarchical adaptive modeling of structural sandwiches and multilayered composite panels , 1994 .
[140] A. Kühhorn,et al. A nonlinear theory for sandwich shells including the wrinkling phenomenon , 1992 .
[141] Wesley J. Cantwell,et al. The low velocity impact response of an aluminium honeycomb sandwich structure , 2003 .
[142] Alexander Tessler,et al. An improved plate theory of {1,2}-order for thick composite laminates , 1993 .
[143] J. I. Foss. FOR THE SPACE AGE. A BIBLIOGRAPHY OF SANDWICH PLATES AND SHELLS , 1962 .
[144] M. Baruch,et al. HIGH-ORDER BUCKLING ANALYSIS OF SANDWICH BEAMS WITH TRANSVERSELY FLEXIBLE CORE , 1993 .
[145] George A. Kardomateas,et al. Buckling and Initial Postbuckling Behavior of Sandwich Beams Including Transverse Shear , 2002 .
[146] Manuel Stein,et al. Compressive buckling of simply supported curved plates and cylinders of sandwich construction , 1952 .
[147] A higher-order sandwich plate theory accounting for 3-D stresses , 2000 .
[148] I. M. Ibrahim,et al. Analysis of sandwich plates with unbalanced cross-ply faces , 1975 .
[149] Liviu Librescu,et al. Linear and non-linear dynamic response of sandwich panels to blast loading , 2004 .
[150] Tai-Yan Kam,et al. Optimum design of laminated composite foam-filled sandwich plates subjected to strength constraint , 1999 .
[151] J P H Webber. Governing Equations for Thick Sandwich Shells with Honeycomb Cores and Laminated Faces , 1974 .
[152] Tom Bitzer,et al. Honeycomb Marine Applications , 1994 .
[153] M. Ahmer Wadee,et al. Interactively Induced Localized Buckling in Sandwich Structures With Core Orthotropy , 1998 .
[154] Erdogan Madenci,et al. Analysis of thick sandwich construction by a {3,2}-order theory , 2001 .
[155] Robin S. Langley,et al. Free vibration analysis of coplanar sandwich panels , 1997 .
[156] N. J. Hoff,et al. The Buckling of Sandwich-Type Panels , 1945 .
[157] B. Sankar,et al. A Comparative Study on the Impact Resistance of Composite Laminates and Sandwich Panels , 1997 .
[158] C. Bert,et al. Buckling of cylindrical and conical sandwich shells with orthotropicfacings. , 1968 .
[159] Johann Arbocz,et al. Computerized buckling analysis of shells , 1985 .
[160] Victor Birman,et al. Optimum distribution of smart stiffeners in sandwich plates subjected to bending or forced vibrations , 1996 .
[161] Serge Abrate,et al. Localized Impact on Sandwich Structures With Laminated Facings , 1997 .
[162] Sergey V Shkarayev,et al. Analysis of sandwich panels with multiple-site damage , 1999 .
[163] Gerald Wempner,et al. General theory of sandwich plates with dissimilar facings , 1965 .
[164] Gerald Wempner. Theory for moderately large deflections of sandwich shells with dissimilar facings , 1967 .
[165] William L. Ko,et al. Compressive and shear buckling analysis of metal matrix composite sandwich panels under different thermal environments , 1993 .
[166] Somanath Nagendra,et al. Composite Sandwich Structure Optimization with Application to Satellite Components , 1996 .
[167] J. Cadorette,et al. A 1 ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? , 2004 .
[168] E. Carrera,et al. STATIC BUCKLING OF MODERATELY THICK, ANISOTROPIC, LAMINATED AND SANDWICH CYLINDRICAL SHELL PANELS , 1990 .