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Number of items: 14.

Seelig, Thomas and Broedling, N. and Gross, Dietmar (2004):
Modelling microstructural evolution by rearranging point defects in elastic media.
In: International Journal of Engineering Science, 42. pp. 339-351, [Article]

Seelig, Thomas (2004):
On micromechanical modeling of toughening mechanisms and failure in amorphous thermoplastic polymer blends.
[Habilitation]

Rafiee, Sirus and Gross, Dietmar and Seelig, Thomas (2004):
The influence of microcrack nucleation on dynamic crack growth - a numerical study.
In: Engineering Fracture Mechanics, 71. pp. 849-857, [Article]

Rafiee, Sirus and Seelig, Thomas and Gross, Dietmar (2003):
Simulation of dynamic crack curving and branching under biaxial loading by a time domain boundary integral equation method.
In: International journal of fracture, 120. pp. 545-561, [Article]

Seelig, Thomas and Giessen, Erik van der (2002):
Localized plastic deformation in ternary polymer blends.
In: International journal of solids and structures, 39. pp. 3505-3522, [Article]

Seelig, Thomas and Giessen, E. van der and Gross, D. (2001):
Numerical simulation of crack tip fields and toughening mechanisms in ternary polymer blends.
In: Advances in fracture research: ICF 10: International Conference on Fracture <10, 2001>. Hrsg.: K. Ravi-Chandar (u.a.) - Oxford: Pergamon Press, 2001 (auf CD-ROM), [Conference or Workshop Item]

Seelig, Thomas and Rafiee, S. and Gross, D. (2000):
A simple method for the investigation of elastic bodies of finite size containing many cracks.
In: International journal of engineering sciences, 38pp. 1459-1472, [Article]

Seelig, Thomas and Gross, D. and Pothmann, K. (1999):
Numerical simulation of a mixed-mode dynamic fracture experiment.
In: International journal of fracture, 99pp. 325-338, [Article]

Seelig, Thomas and Gross, D. (1999):
On the interaction and branching of fast running cracks - a numerical investigation.
In: Journal of the mechanics and physics of solids, 47pp. 935-952, [Article]

Seelig, Thomas and Gross, D. (1999):
On the stress wave induced curving of fast running cracks - a numerical study by a time-domain boundary element method.
In: Acta mechanica. 132 (1999), S. 47-61, [Article]

Seelig, Thomas (1997):
Analysis of dynamic crack propagation using a time-domain boundary integral equation method.
In: Problems of environmental and damage mechanics. Hrsg.: W. Kosinski (u.a.) S. 217-227, Warszawa: Inst. Podstawowych Problemow Techniki, 1997,
Warszawa, Inst. Podstawowych Problemow Techniki, [Book Section]

Seelig, Thomas (1997):
Analysis of dynamic crack propagation using a time-domain boundary integral equation method.
In: International journal of solids and structures. 34 (1997), S. 2087-2103, [Article]

Seelig, Thomas and Gross, D. (1997):
Dynamic crack propagation analysis by a boundary integral equation method.
In: Advances in fracture research. Vol. 6. Hrsg.: B.L. Karihaloo (u.a.) - New York: Pergamon Press, 1997. S. 2877-2884, New York, Pergamon Press, [Book Section]

Seelig, Thomas (1997):
Zur Simulation der dynamischen Rissausbreitung mit einer Zeitbereichs-Randelementmethode.
Darmstadt: 1997. 116 S.,
Darmstadt, Technische Univ. Darmstadt, TU Darmstadt, [Ph.D. Thesis]

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