Mechanical anisotropy and fracture mode of binder jetting 3D printed calcium sulfate moldings

نویسندگان

چکیده

Binder jet three-dimensional (3D) printing has been extensively developed since the early 1990s and is widely applied in various industrial fields. jetting 3D-printed products have anisotropic mechanical properties; however, no study provided a systematic explanation of this mechanism. Herein, we propose that crystal lattice model based on crystallographic logic can explain anisotropy fracture mode nozzle pattern (resolution) print head. In study, calcium sulfate-base powder was hardened by ejecting different amounts water-base ink, phases, anisotropy, cylindrical moldings printed x-, y-, z-directions directions rotated from these axes with binder 3D printer were investigated. The results revealed content sulfate hemihydrate/dihydrate density each direction almost constant, regardless ink/volume ratio; formed hemihydrate amorphous anhydrate dependent ratio to certain extent. modes (crack propagation) at constant lamination thickness reproducibly observed. authors found crack propagation represented Miller index affected This provides new insights comprehensively properties products.

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ژورنال

عنوان ژورنال: Applied Materials Today

سال: 2021

ISSN: ['2352-9407', '2352-9415']

DOI: https://doi.org/10.1016/j.apmt.2021.101160