Application of the discrete element method and the micropolar theory to simulate the behavior of the material depending on the strain rate. This work was published as a chapter in Creep in Structures VI IUTAM Symposium Proceedings: doi.org/10.1007/978-3-031-39070-8_14 Link to to book: https://link.springer.com/book/10.1007/978-3-031-39070-8?sap-outbound-id=13BC3271F0A4F7627E0E76DB9C2828A066787D19The financial support from subsidy granted by the Polish Ministry of Science and Higher Education within project no. 16.16.130.942 is acknowledged
Recent studies highlighted the advantages of the thermomechanical approach for developing models of ...
The consideration of empty porous solid materials (e. g. granular skeletons) naturally falls into th...
Recent studies highlighted the advantages of the thermomechanical approach for developing models of ...
Diese Dissertation konzentriert sich auf die numerische Modellierung von granularen Materialien mit ...
Micro-mechanical modelling of heterogeneous materials containing microcracks with Discrete Element M...
A constitutive theory is developed for granular material undergoing arbitrarily large deformations. ...
Granular materials are collections of discrete macroscopic particles. They exhibit rich and complex ...
The micro-mechanical behavior of granular materials can be readily modeled with the discrete element...
Materials with obvious internal structure can exhibit behaviour, under loading, that cannot be descr...
Simulation of soil behaviors is always a challenge for engineers due to the non-homogeneous disconti...
The discrete element method (DEM) is an alternative computational tool for augmenting laboratory exp...
General outline and remarks This thesis consists primarily of three manuscripts that have already be...
The micro-structural approach, which relates the mechanical behavior of a material to its micro-fabr...
Recent studies highlighted the advantages of the thermomechanical approach for developing models of ...
Recent studies highlighted the advantages of the thermomechanical approach for developing models of ...
Recent studies highlighted the advantages of the thermomechanical approach for developing models of ...
The consideration of empty porous solid materials (e. g. granular skeletons) naturally falls into th...
Recent studies highlighted the advantages of the thermomechanical approach for developing models of ...
Diese Dissertation konzentriert sich auf die numerische Modellierung von granularen Materialien mit ...
Micro-mechanical modelling of heterogeneous materials containing microcracks with Discrete Element M...
A constitutive theory is developed for granular material undergoing arbitrarily large deformations. ...
Granular materials are collections of discrete macroscopic particles. They exhibit rich and complex ...
The micro-mechanical behavior of granular materials can be readily modeled with the discrete element...
Materials with obvious internal structure can exhibit behaviour, under loading, that cannot be descr...
Simulation of soil behaviors is always a challenge for engineers due to the non-homogeneous disconti...
The discrete element method (DEM) is an alternative computational tool for augmenting laboratory exp...
General outline and remarks This thesis consists primarily of three manuscripts that have already be...
The micro-structural approach, which relates the mechanical behavior of a material to its micro-fabr...
Recent studies highlighted the advantages of the thermomechanical approach for developing models of ...
Recent studies highlighted the advantages of the thermomechanical approach for developing models of ...
Recent studies highlighted the advantages of the thermomechanical approach for developing models of ...
The consideration of empty porous solid materials (e. g. granular skeletons) naturally falls into th...
Recent studies highlighted the advantages of the thermomechanical approach for developing models of ...