Sintering model for predicting distortion of additively manufactured complex parts
Journal article, 2024

PurposeThis study aims to provide understanding of the influence of external factors, such as gravity, during sintering of three dimensional (3D)-printed parts in which the initial relative density and cohesion between the powder particles are lower compared with those present in the green parts produced by traditional powder technologies. A developed model is used to predict shrinkage and shape distortion of 3D-printed powder components at high sintering temperatures.Design/methodology/approachThree cylindrical shape connector geometries are designed, including horizontal and vertical tubes of different sizes. Several samples are manufactured by binder jetting to validate the model, and numerical results are compared with the measurements of the sintered shape.FindingsSimulations are consistent with empirical data, proving that the continuum theory of sintering can effectively predict sintering deformation in additively manufactured products.Originality/valueThis work includes the assessment of the accuracy and limits of a multiphysics continuum mechanics-based sintering model in predicting gravity-induced distortions in complex-shaped additively manufactured components.

Sintering

Deformation

Binder jetting

Finite element methods

Author

Elisa Torresani

San Diego State Univ, Dept Mech Engn

Alberto Cabo Rios

Chalmers, Industrial and Materials Science, Materials and manufacture

Thomas Grippi

San Diego State Univ, Dept Mech Engn

Andrii L. Maximenko

San Diego State Univ, Dept Mech Engn

Marco Zago

University of Trento

Ilaria Cristofolini

University of Trento

Eugene A. Olevsky

San Diego State Univ, Dept Mech Engn

Univ Calif San Diego, Dept Nano Engn

Rapid Prototyping Journal

1355-2546 (ISSN)

Vol. 30 11 369-383

Subject Categories (SSIF 2011)

Manufacturing, Surface and Joining Technology

Other Materials Engineering

Metallurgy and Metallic Materials

DOI

10.1108/RPJ-05-2024-0231

More information

Latest update

1/9/2025 1