In a fracture analysis, predicting the fracture location and the progression of the failure is of high importance. An element deletion algorithm is a powerful tool used to visualize the failure evolution and get rid of the distorted elements that prevent the simulation from converging. Primarily, such an algorithm is only found in commercial software such as Abaqus. A similar algorithm was developed and implemented into the Code_Aster platform in this work. The algorithm's effectiveness was tested through a non-linear analysis on a Cor-Ten specimen with notches under uniaxial tension. The element deletion functionality was implemented by defining a virtual material with low stiffness to the deleted elements. The results obtained demonstrated the code's capability in accurately representing the failure progress along the notches. Moreover, by assigning a virtual material to the deleted elements, a complete fracture of the specimen is observed without facing any convergence issues. Overall, the shape of the fracture for a notched specimen conforms well to the physical failure of a ductile material such as Cor-Ten.

(2022). An Element Deletion Algorithm for an Open-Source Finite Element Software . Retrieved from https://hdl.handle.net/10446/238549

An Element Deletion Algorithm for an Open-Source Finite Element Software

Cappellini, Cristian;
2022-01-01

Abstract

In a fracture analysis, predicting the fracture location and the progression of the failure is of high importance. An element deletion algorithm is a powerful tool used to visualize the failure evolution and get rid of the distorted elements that prevent the simulation from converging. Primarily, such an algorithm is only found in commercial software such as Abaqus. A similar algorithm was developed and implemented into the Code_Aster platform in this work. The algorithm's effectiveness was tested through a non-linear analysis on a Cor-Ten specimen with notches under uniaxial tension. The element deletion functionality was implemented by defining a virtual material with low stiffness to the deleted elements. The results obtained demonstrated the code's capability in accurately representing the failure progress along the notches. Moreover, by assigning a virtual material to the deleted elements, a complete fracture of the specimen is observed without facing any convergence issues. Overall, the shape of the fracture for a notched specimen conforms well to the physical failure of a ductile material such as Cor-Ten.
2022
Inglese
Advances in Design, Simulation and Manufacturing V. Proceedings of the 5th International Conference on Design, Simulation, Manufacturing: The Innovation Exchange, DSMIE-2022, June 7–10, 2022, Poznan, Poland. Volume 1: Manufacturing and Materials Engineering
Ivanov, Vitalii; Trojanowska, Justyna; Pavlenko, Ivan; Rauch, Erwin; Peraković, Dragan
978-3-031-06024-3
137
144
online
Switzerland
Cham
Springer Nature Switzerland AG
DSMIE 2022: 5th International Conference on Design, Simulation, Manufacturing: The Innovation Exchange, Poznan, Poland, 7–10 June 2022
5th
Poznan (Poland)
7–10 June 2022
Poznan University of Technology, Poznan, Poland
internazionale
contributo
Settore ING-IND/16 - Tecnologie e Sistemi di Lavorazione
Code_Aster; Fracture modeling; Numerical analysis; Sustainable manufacturing
indice consultabile alla pagina degli atti
info:eu-repo/semantics/conferenceObject
3
Alomar, Zaki; Cappellini, Cristian; Concli, Franco
1.4 Contributi in atti di convegno - Contributions in conference proceedings::1.4.01 Contributi in atti di convegno - Conference presentations
reserved
Non definito
273
(2022). An Element Deletion Algorithm for an Open-Source Finite Element Software . Retrieved from https://hdl.handle.net/10446/238549
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