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Parts internal structure definition using lattice patterns optimization for mass reduction in additive manufacturing

Communication avec acte
Auteur
CHOUGRANI, Laurent
ABED, Stéphane
ccPERNOT, Jean-Philippe
178374 Laboratoire des Sciences de l'Information et des Systèmes : Ingénierie Numérique des Systèmes Mécaniques [LSIS- INSM]
ccVERON, Philippe

URI
http://hdl.handle.net/10985/11408
Date
2016

Résumé

With the rise of additive manufacturing, complex internal structure optimization is now a relevant topic. Additive manufacturing allows designers and engineers to go further in their modeling, designing and optimization process, allowing new complex shapes to be produced, including the optimization of their internal structure. However modeling, design and optimization tools still represent a limitation to that new horizon of printable shapes. In this article, we define the framework in term of new designs, 3D modeling and optimization approach dedicated to the shape definition of patterned (or organized) lattice structures1 produced using additive manufacturing processes. The goal being to generate shapes that fit the mechanical requirements with an “as reduced as possible” mass, this issue is still today a niche market for Aerospace and Automotive, but could soon lead to a wider range of applications. Optimizing topology can be slow, so we will show a way of reducing computation time by using relative criteria for removing material. This new approach is based on the use of organized lattice structures to allow a wide range of shapes, thus opening the field for finding better optimized shapes. Once the patterned lattice structure is defined, it is send to a Finite Element solver software that returns the constraints and/or displacements map. This is then used as a basis for a statistical calculus that determines the elements that can or cannot be removed from the lattice. After a few iterations, the general structure is no longer patterned, but organized in a way that suits its mechanical environment, allowing lighter general structure and ensuring its rigidity. This approach is illustrated with examples coming from a prototype software.

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I2M_TMCE-2016_VERON.pdf
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  • Laboratoire d’Ingénierie des Systèmes Physiques Et Numériques (LISPEN)

Documents liés

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  • Lattice structure lightweight triangulation for additive manufacturing 
    Article dans une revue avec comité de lecture
    CHOUGRANI, Laurent; ABED, Stéphane; ccPERNOT, Jean-Philippe; ccVERON, Philippe (Elsevier, 2017)
    Additive manufacturing offers new available categories of geometries to be built. Among those categories, one can find the well developing field of lattice structures. Attention has been paid on lattice structures for their ...
  • Parts internal structure definition using non-uniform patterned lattice optimization for mass reduction in additive manufacturing 
    Article dans une revue avec comité de lecture
    CHOUGRANI, Laurent; ABED, Stéphane; ccPERNOT, Jean-Philippe; ccVERON, Philippe (Springer Verlag, 2018)
    Today, being able to generate and produce shapes that fit mechanical and functional requirements and having as low as possible mass is crucial for aerospace and automotive applications. Besides, the rise of new additive ...
  • Parametric design of graded truss lattice structures for enhanced thermal dissipation 
    Article dans une revue avec comité de lecture
    VAISSIER, Benjamin; CHOUGRANI, Laurent; ccPERNOT, Jean-Philippe; ccVERON, Philippe (Elsevier, 2019)
    Truss lattice structures are intricate geometries, whose fabrication has recently been simplified by the development of Additive Manufacturing (AM) technologies. These lightweight geometries present great volume densities ...
  • Investigation on reducing geometry files size through floating points indexing 
    Communication avec acte
    VAISSIER, Benjamin; CHOUGRANI, Laurent; ccPERNOT, Jean-Philippe; ccVERON, Philippe (CAD Solutions, LLC, 2019)
    In a context of full cooperative data exchanges, frequent transfers between specialized software and remote design and manufacturing, fluidity is the key. It is thus important to reduce the size of data encoding files in ...
  • Genetic-algorithm based framework for lattice support structure optimization in additive manufacturing 
    Article dans une revue avec comité de lecture
    VAISSIER, Benjamin; CHOUGRANI, Laurent; ccPERNOT, Jean-Philippe; ccVERON, Philippe (Elsevier, 2019)
    The emergence and improvement of Additive Manufacturing technologies allow the fabrication of complex shapes so far inconceivable. However, to produce those intricate geometries, support structures are required. Besides ...

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