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Publication list for
Heinz E. Pettermann
as author or essentially involved person
(SCI, SSCI and AHCI publications only)

47 records (1995 - 2022)

The complete list of publications of the TU Vienna is available from the publication database beginning with the publication year 2002. The database may but need not necessarily contain publications dated earlier than 2002.


Publications in Scientific Journals


P. Hoffmann, S. Moser, C. Kofler, M. Nelhiebel, D. Tscharnuter, B. Karunamurthy, H. E. Pettermann, M. Todt:
"Thermomechanical fatigue damage modeling and material parameter calibration for thin film metallizations";
International Journal of Fatigue, 155 (2022), 106627.

B. Werner, O. Červinek, D. Koutný, A.G. Reisinger, H. E. Pettermann, M. Todt:
"Numerical and experimental study on the collapse of a triangular cell under compression";
International Journal of Solids and Structures, 236-237 (2022), 111295.

M. Springer, A. Turon, H. E. Pettermann:
"A thermo-mechanical cyclic cohesive zone model for variable amplitude loading and mixed-mode behavior";
International Journal of Solids and Structures, 159 (2019), 257 - 271.

H. E. Pettermann, A. DeSimone:
"An anisotropic linear thermo-viscoelastic constitutive law";
Mechanics of Time-Dependent Materials, 22 (2018), 4; 421 - 433.

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M. Schwab, M. Todt, H. E. Pettermann:
"A multiscale approach for modelling impact on woven composites under consideration of the fabric topology";
Journal of Composite Materials, 52 (2018), 21; 2859 - 2874.

M. Schwab, M. Todt, J Tauchner, D. Schlie, H. E. Pettermann:
"Modeling, simulation, and experiments of high velocity impact on laminated composites";
Composite Structures, 205 (2018), 42 - 48.

More information

M. Springer, H. E. Pettermann:
"Fatigue life predictions of metal structures based on a low-cycle, multiaxial fatigue damage model";
International Journal of Fatigue, 116 (2018), 355 - 365.

M. Schwab, H. E. Pettermann:
"Modeling and Simulation of Damage and Failure in Large Composite Components Subjected to Impact Loads";
Composite Structures, 158 (2016), 208 - 216.

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M. Schwab, M. Todt, M. Wolfahrt, H. E. Pettermann:
"Failure Mechanism Based Modelling of Impact on Fabric Reinforced Composite Laminates Based on Shell Elements";
Composites Science and Technology, 128 (2016), 131 - 137.

More information

J. Gager, H. E. Pettermann:
"FEM Modeling of Multilayered Textile Composites Based on Shell Elements";
Composites - Part B: Engineering, 77 (2015), 46 - 51.

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T. Flatscher, C. Schuecker, H. E. Pettermann:
"A Constitutive Ply Model for Stiffness Degradation and Plastic Strain Accumulation: Its Application to the Third World Wide Failure Exercise (Part A)";
Journal of Composite Materials, 47 (2013), 2575 - 2593.

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T. Flatscher, M. Wolfahrt, G. Pinter, H. E. Pettermann:
"Simulations and Experiments of Open Hole Tension Tests - Assessement of Intra-Ply Plasticity, Damage and Localization";
Composites Science and Technology, 72 (2012), 10; 1090 - 1095.

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J. Gager, H. E. Pettermann:
"Numerical Homogenization of Textile Composites Based on Shell Element Discretization";
Composites Science and Technology, 72 (2012), 7; 806 - 812.

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H. E. Pettermann, J. Hüsing:
"Modeling and Simulation of Relaxation in Viscoelastic Open Cell Materials and Structures";
International Journal of Solids and Structures, 49 (2012), 2848 - 2853.

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D. Duschlbauer, H. J. Böhm, H. E. Pettermann:
"Modeling Interfacial Effects on the Thermal Conduction Behavior of Short Fiber Reinforced Composites";
International Journal of Materials Research, 2011 (2011), 6; 717 - 726.

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T. Flatscher, H. E. Pettermann:
"A Constitutive Model for Fiber-Reinforced Polymer Plies Accounting for Plasticity and Brittle Damage Including Softening - Implementation for Implicit FEM";
Composite Structures, 93 (2011), 9; 2241 - 2249.

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T. Flatscher, C. Schuecker, H. E. Pettermann:
"Prediction of Plastic Strain Accumulation in Continuous Fiber Reinforced Laminates by a Constitutive Ply Model";
International Journal of Fracture, 158 (2009), 2; 145 - 156.

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M.H. Luxner, J. Stampfl, H. E. Pettermann:
"Nonlinear Simulations on the Interaction of Disorder and Defects in Open Cell Structures";
Computational Materials Science, 47 (2009), 2; 418 - 428.

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M.H. Luxner, A. Woesz, J. Stampfl, P. Fratzl, H. E. Pettermann:
"A Finite Element Study on the Effects of Disorder in Cellular Structures";
Acta Biomaterialia, 5 (2009), 381 - 390.

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G. Wimmer, W. Kitzmüller, G. Pinter, T. Wettemann, H. E. Pettermann:
"Computational and Experimental Investigation of Delamination in L-Shaped Laminated Composite Components";
Engineering Fracture Mechanics, 76 (2009), 18; 2810 - 2820.

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G. Wimmer, H. E. Pettermann:
"Prediction of Delamination Growth in Laminated Structures Loaded by Quasi-Static and Cyclic Loads";
Journal of Composite Materials, 43 (2009), 12; 3303 - 3324.

More information

G. Wimmer, C. Schuecker, H. E. Pettermann:
"Numerical Simulation of Delamination in Laminated Composite Components - A Combination of a Strength Criterion and Fracture Mechanics";
Composites - Part B: Engineering, 40 (2009), 2; 158 - 165.

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C. Schuecker, H. E. Pettermann:
"Constitutive Ply Damage Modeling, FEM Implementation, and Analysis of Laminated Structures";
Computers and Structures, 86 (2008), 9; 908 - 918.

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C. Schuecker, H. E. Pettermann:
"Fiber Reinforced Laminates: Progressive Damage Modeling Based on Failure Mechanisms";
Archives of Computational Methods in Engineering, 15 (2008), 2; 163 - 184.

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G. Wimmer, H. E. Pettermann:
"A Semi-Analytical Model for the Simulation of Delamination in Laminated Composites";
Composites Science and Technology, 68 (2008), 12; 2332 - 2339.

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M.H. Luxner, J. Stampfl, H. E. Pettermann:
"Numerical simulations of 3D open cell structures - Influence of structural irregularities on elasto-plasticity and deformation localization";
International Journal of Solids and Structures, 44 (2007), 2990 - 3003.

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D. Duschlbauer, H. J. Böhm, H. E. Pettermann:
"Computational Simulation of Composites Reinforced by Planar Random Fibers: Homogenization and Localization by Unit Cell and Mean Field Approaches";
Journal of Composite Materials, 40 (2006), 24; 2217 - 2234.

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C. Schuecker, D. H. Pahr, H. E. Pettermann:
"Accounting for Residual Stresses in FEM Analyses of Laminated Structures Using the Puck Criterion for Three-Axial Stress States";
Composites Science and Technology, 66 (2006), 13; 2054 - 2062.

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C. Schuecker, H. E. Pettermann:
"A Continuum Damage Model for Fiber Reinforced Laminates Based on Ply Failure Mechanisms";
Composite Structures, 76 (2006), 1-2; 162 - 173.

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M.H. Luxner, J. Stampfl, H. E. Pettermann:
"Finite Element Modeling Concepts and Linear Analyses of 3D Regular Open Cell Structures";
Journal of Materials Science, 40 (2005), 22; 5859 - 5866.

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I. Sabirov, D. Duschlbauer, H. E. Pettermann, O. Kolednik:
"The Determination of the Local Conditions for Void Initiation in Front of a Crack Tip for Materials with Second Phase Particles";
Materials Science and Engineering A, 393 (2005), 275 - 285.

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D. H. Pahr, C. Schuecker, F. G. Rammerstorfer, H. E. Pettermann:
"Numerical Investigations of Perforated Laminates in the Presence of Residual Ply Stresses";
Journal of Composite Materials, 38 (2004), 22; 1977 - 1991.

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T. Daxner, F. G. Rammerstorfer, J. Segurado, H. E. Pettermann:
"Numerical Simulations of the Creep Deformation of MMCs in 4-Point Bending Mode";
Journal of Engineering Materials and Technology, 125 (2003), 1; 50 - 55.

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D. Duschlbauer, H. J. Böhm, H. E. Pettermann:
"Numerical Simulation of Thermal Conductivity of MMCs: Effect of Thermal Interface Resistance";
Materials Science and Technology, 19 (2003), 8; 1107 - 1114.

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D. Duschlbauer, H. E. Pettermann, H. J. Böhm:
"Heat Conduction of a Spheroidal Inhomogeneity with Imperfectly Bonded Interface";
Journal of Applied Physics, 94 (2003), 3; 1539 - 1549.

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D. Duschlbauer, H. E. Pettermann, H. J. Böhm:
"Mori-Tanaka Based Evaluation of Inclusion Stresses in Composites with Nonaligned Reinforcements";
Scripta Materialia, 48 (2003), 3; 223 - 228.

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E. Neubauer, C. Eisenmenger-Sittner, H. Bangert, D. Duschelbauer, H. E. Pettermann, G. Korb:
"Tailored Interfaces In Cu-C composite Materials Using Coated Fibers And Hot Pressing Methods";
Mat. Tech & Adv. Perf. Mat., 18 (2003), 3; 144 - 149.

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E. Neubauer, C. Eisenmenger-Sittner, H. Bangert, D. Duschlbauer, H. E. Pettermann, G. Korb:
"Tailored Interfaces in Cu-C Composite Materials Using Coated Fibers and Hot Pressing Methods";
Materials Technology, 18 (2003), 3; 144 - 149.

H. E. Pettermann, H. J. Böhm, J. Alcalá:
"Normalized Diagrams for Micro-Mechanical Estimates of the Elastic Response of Composite Materials";
Metallurgical and Materials Transactions A - Physical Metallurgy and Materials Science, 33A (2002), 10; 3187 - 3199.

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H. E. Pettermann:
"Numerical simulations of a compositionally graded structure using a hierarchical approach";
Materials Science and Engineering A, 276 (2000), 1-2; 277 - 282.

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A. Saigal, A.E. Giannakopoulos, S. Suresh, H. E. Pettermann:
"Electrical Response during Indentation of a 1-3 Piezoelectric Ceramic-Polymer Composite";
Journal of Applied Physics, 86 (1999), 1; 603 - 606.

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A. F. Plankensteiner, H. J. Böhm, F. G. Rammerstorfer, H. E. Pettermann:
"Multiscale Modeling of Highly Heterogeneous Particulate MMCs";
Journal de Physique, 8 (1998), 301 - 308.

H. E. Pettermann, H. J. Böhm, F. G. Rammerstorfer:
"Some Direction Dependent Properties of Matrix-Inclusion Type Composites with Given Reinforcement Orientation Distributions";
Composites - Part B: Engineering, 28B (1997), 3; 253 - 265.

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H. E. Pettermann, T.J. Reiter, F. G. Rammerstorfer:
"Computational Simulation of Internal Bone Remodeling";
Archives of Computational Methods in Engineering, 4 (1997), 295 - 323.

E. Weissenbek, H. E. Pettermann, S. Suresh:
"Elasto-Plastic Deformation in Compositionally Graded Metal-Ceramic Structures";
Acta Materialia, 45 (1997), 8; 3401 - 3417.

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H. E. Pettermann, H. J. Böhm:
"Effective Thermoelastic Behavior of Composites with a Given Orientation Distribution of Inclusions";
ZAMM - Zeitschrift für Angewandte Mathematik und Mechanik, 75 (1995), Supplement 1; 161 - 162.

H. E. Pettermann, T.J. Reiter, F. G. Rammerstorfer:
"Ein Simulationsalgorithmus der natürlichen Anpassung des orthotropen Knochenmaterials";
Biomedizinische Technik, 40 (1995), E2; 127 - 129.