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Aggregation-free fatigue constrained topology optimization using the constrained natural element method

Communication avec acte
Auteur
CHEN, Yanda
ccMONTEIRO, Eric
ccKOUTIRI, Imade
ccFAVIER, Véronique
86289 Laboratoire Procédés et Ingénierie en Mécanique et Matériaux [PIMM]

URI
http://hdl.handle.net/10985/24978
DOI
10.7712/140123.10206.18876
Date
2023-06

Résumé

Fatigue resistance is one of the most important design criteria to ensure the safety of mechanical structures. In this paper, a topology optimization methodology for volume minimization under local fatigue constraints based on the augmented Lagrangian method and the constrained natural element method is proposed. The Sines fatigue criteria is used to define the equivalent alternating and average stresses to address fatigue resistance of additive manufactured Ti-6Al-4V alloy structure for infinite life. Since the fatigue criteria under consideration is based on stress invariants, the fatigue-driven problem has the same difficulties as the stress-based topology optimization problem, so that similar strategies can be used to circumvent the problem of stress singularity and the need for a large number of evaluation points. Although a large number of constraints are required to maintain the local nature of stress, the formulation presented requires only one adjoint vector, which leads to an efficient sensitivity assessment. Several numerical examples are presented to demonstrate the effectiveness of the proposed method.

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Documents liés

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  • Fatigue-constrained topology optimization using the constrained natural element method 
    Article dans une revue avec comité de lecture
    CHEN, Yanda; ccMONTEIRO, Eric; ccKOUTIRI, Imade; ccFAVIER, Véronique (Elsevier BV, 2024-02)
    This research presents a topology optimization framework to achieve volume minimization with multi-axial high cycle fatigue criteria constraints by constrained natural element method. To solve the local minimization problem, ...
  • Topology Optimization Using the Constrained Natural Element Method 
    Communication avec acte
    CHEN, Yanda; ccMONTEIRO, Eric; ccKOUTIRI, Imade; ccFAVIER, Véronique (Association for Structural and Multidisciplinary Optimization in the UK (ASMO-UK), 2022-07)
    This paper focuses on a new topology optimization method for structures combining the solid isotropic material with penalization method (SIMP) and the constrained natural element method (CNEM). Common numerical instabilities ...
  • Stress-constrained topology optimization using the constrained natural element method 
    Article dans une revue avec comité de lecture
    CHEN, Yanda; ccMONTEIRO, Eric; ccKOUTIRI, Imade; ccFAVIER, Véronique (Springer Science and Business Media LLC, 2024-04)
    This paper presents a topology optimization framework to achieve volume minimization with Crossland fatigue constraints under proportional loading using the Constrained Natural Element Method. The local minimization problem ...
  • Microstructure and defect sensitivities in the very high-cycle fatigue response of Laser Powder Bed Fused Ti–6Al–4V 
    Article dans une revue avec comité de lecture
    ccBROT, Grégoire; ccKOUTIRI, Imade; ccBONNAND, Vincent; ccFAVIER, Véronique; ccDUPUY, Corinne; ccRANC, Nicolas; AIMEDIEU, Patrick; LEFEBVRE, Fabien; HAUTEVILLE, Robin (2023)
    This work aims to analyze the sensitivity of the very high-cycle fatigue behavior of LPBF-Ti-6Al-4V to microstructure and porosity variations. To do so ultrasonic fatigue testing is performed on five grades of LPBF-Ti-6Al-4V. ...
  • Designing very high-cycle fatigue specimens of additively manufactured Ti-6Al-4V with different porosities and microstructures 
    Communication avec acte
    BROT, Grégoire; ccFAVIER, Véronique; ccKOUTIRI, Imade; BONNAND, Vincent; ccDUPUY, Corinne; ccRANC, Nicolas; LEFEBVRE, Fabien (Elsevier, 2022-03-17)
    High cycle fatigue properties of material obtained with additive manufacturing (AM) processes such as LPBF (Laser Powder Bed Fusion) remain misunderstood. These properties are complex due to the porous and anisotropic ...

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