92 results on '"Hackl, Klaus"'
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2. A model for the evolution size and composition of olivine crystals
3. Direct stress minimization in electro‐mechanical metamaterials
4. Frequency domain full waveform inversion with small‐scale laboratory measurements for reconnaissance in mechanized tunneling
5. Model‐free data‐driven inelasticity in Haigh‐Westergaard space ‐ a study how to obtain data points from measurements
6. Inverse modeling of cancellous bone using artificial neural networks
7. Simulations of a multiscale bone material model
8. Modeling of wear processes by a regularized damage‐plasticity model based on the emulated RVE
9. Variational based effective models for inelastic materials
10. Model‐free Data‐Driven simulation of inelastic materials using structured data sets, tangent space information and transition rules ‐ convergence test
11. The effective equations for the ultrasonic response of wet cortical bone
12. Data‐Driven simulation of inelastic materials using structured data sets and tangential transition rules
13. A fully coupled two‐phase bone material model
14. Topology and material optimization of anisotropic materials including a filter to smooth fiber pathways
15. Seismic exploration in tunneling using full waveform inversion with a frequency domain model
16. Sensitivity analysis of non‐local damage in soft biological tissues
17. A variational material model for shape memory alloys under thermal cycling
18. Structural and material optimization based on thermodynamic principles
19. Evaluation of source signature during Full Waveform Inversion for seismic reconnaissance in tunneling
20. An Efficient Treatment of the Laplacian in a Gradient‐Enhanced Damage Model
21. Numerical investigation of wear processes by a gradient‐enhanced damage‐plasticity model
22. An accurate and fast regularization approach to thermodynamic topology optimization
23. Finite element investigations on the cyclic behavior of shape memory alloys
24. On the Identification of the Contact Parameters of the Discrete Element Method for Complex Particle Ensembles
25. Effect of grain orientations on the thermal grain boundary grooving in a three‐dimensional setting
26. On a relaxation‐based and time‐incremental approach to damage modeling
27. On an accurate and fast regularization approach to thermodynamic based topology optimization
28. Grain boundary kinetics in polycrystalline material using orientation dependent interface energy
29. The coupling of plasticity with a relaxation‐based approach to damage modeling
30. Finite element implementation and simulation of the functional fatigue in shape memory alloys
31. Numerical modeling of dynamic recrystallization in polycrystals
32. Topology and material orientation optimization based on evolution equations
33. A variational model for the functional fatigue in polycrystalline shape memory alloys
34. An evolution equation based approach to topology optimization
35. A relaxation-based approach to damage modeling
36. Relating DEM contact parameters to macroscopic material parameters
37. Forward and Inverse Viscoacoustic Modelling in a Tunnel Environment
38. A micromechanical model for the transformation induced plasticity in polycrystalline steels
39. A regularization approach for damage models based on a displacement gradient
40. Modeling the evolution of microstructures in finite plasticity
41. Modeling Dynamic Recrystallization in Polycrystalline Materials via Probability Distribution Functions
42. Identification of the Velocity Field of 2D and 3D Tunnel Models with Frequency Domain Full Waveform Inversion
43. Compendium on the Principle of the Minimum of the Dissipation Potential for Non‐Isothermal Processes
44. Modeling and Simulation of Damage Processes based on a Gradient-Enhanced Free Energy Function
45. Functional Fatigue in polycrystalline Shape Memory Alloys
46. A Variational Approach to Dynamic Recrystallization Using Probability Distributions
47. Frequency Domain Waveform Inversion in a Tunnel Environment
48. A constitutive model for granular materials with microstructures using the concept of energy relaxation
49. Viscoelastic effects and shrinkage as accompanying phenomena of the curing of polymers. Single- and multiscale effects
50. Cosserat Parameter Identification within the Frame of the Discrete Element Method
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