This paper describes a numerical inverse method to extract material strength parameters from the experimental data obtained via mechanical tests at different strainrates and temperatures. It will be shown that this procedure is particularly useful to analyse experimental results when the stress-strain fields in the specimen cannot be correctly described via analytical models. This commonly happens in specimens with no regular shape, in specimens with a regular shape when some instability phenomena occur (for example the necking phenomena in tensile tests that create a strongly heterogeneous stress-strain fields) or in dynamic tests (where the strain-rate field is not constant due to wave propagation phenomena). Furthermore the developed pro...
The knowledge of material mechanical behaviour in different physical conditions is necessary to accu...
peer reviewedInverse methods offer a powerful tool for the determination of the elasto-plastic mater...
Inverse methods offer a powerful tool for the identification of the elasto-plastic material paramete...
This paper describes a numerical inverse method to extract material strength parameters from the exp...
This paper describes a numerical inverse method to extract material strength parameters from the exp...
Abstract. This paper describes a numerical inverse method to extract material strength parameters fr...
This paper describes a numerical inverse method to extract material strength par...
This paper describes a numerical inverse method to extract material strength parameters from the exp...
This paper describes a numerical inverse method to extract material strength parameters from the exp...
This paper describes a numerical inverse method to extract material strength parameters from the exp...
This paper describes a numerical inverse method to extract material strength parameters from the exp...
The main objective of this paper is getting strain-hardening, thermal and strain-rate parameters for...
The main objective of this paper is getting strain-hardening, thermal and strain-rate parameters for...
Mechanical material characterization represents a research challenge. Furthermore, special attention...
peer reviewedInverse methods offer a powerful tool for the determination of the elasto-plastic mater...
The knowledge of material mechanical behaviour in different physical conditions is necessary to accu...
peer reviewedInverse methods offer a powerful tool for the determination of the elasto-plastic mater...
Inverse methods offer a powerful tool for the identification of the elasto-plastic material paramete...
This paper describes a numerical inverse method to extract material strength parameters from the exp...
This paper describes a numerical inverse method to extract material strength parameters from the exp...
Abstract. This paper describes a numerical inverse method to extract material strength parameters fr...
This paper describes a numerical inverse method to extract material strength par...
This paper describes a numerical inverse method to extract material strength parameters from the exp...
This paper describes a numerical inverse method to extract material strength parameters from the exp...
This paper describes a numerical inverse method to extract material strength parameters from the exp...
This paper describes a numerical inverse method to extract material strength parameters from the exp...
The main objective of this paper is getting strain-hardening, thermal and strain-rate parameters for...
The main objective of this paper is getting strain-hardening, thermal and strain-rate parameters for...
Mechanical material characterization represents a research challenge. Furthermore, special attention...
peer reviewedInverse methods offer a powerful tool for the determination of the elasto-plastic mater...
The knowledge of material mechanical behaviour in different physical conditions is necessary to accu...
peer reviewedInverse methods offer a powerful tool for the determination of the elasto-plastic mater...
Inverse methods offer a powerful tool for the identification of the elasto-plastic material paramete...