Abstract No.:
7358

 Scheduled at:
Friday, May 06, 2022, Hall G1 11:40 AM
Cold Gas Spraying III


 Title:
Assessment of agglomerated ceramic powders under impact by cold spraying

 Authors:
Geoffrey Celeste* / MINES ParisTech, France
Vincent Guipont / Centre des matériaux - CMAT, Mines ParisTech - PSL, UMR CNRS 7633, France
Djamel Missoum-Benziane/ Centre des matériaux - CMAT, Mines ParisTech - PSL, UMR CNRS 7633, France
Guillaume Kermouche/ Science des matériaux et des structures – SMS, Mines Saint-Etienne, UMR CNRS 5307, France
Sergio Sao-Joao/ Science des matériaux et des structures – SMS, Mines Saint-Etienne, UMR CNRS 5307, France
Severine Girard-Insardi/ Science des matériaux et des structures – SMS, Mines Saint-Etienne, UMR CNRS 5307, France

 Abstract:
Most of ductile metals can be deposited by cold spray (CS). For brittle ceramic, such solid-state deposition process is still questionable, but some recent work on Ti02 or hydroxyapatite powders have shown that coarse ceramic powder could be deposited by CS. It is claimed that the porous architecture of a ceramic powder with agglomerated ultra-fine grains play an important role on the impact behavior. The aim of this work is to investigate the deformation behavior of a ceramic agglomerated powders under impact and clarify the phenomena. Different powders including 3Y-TZP, 8Y-TZP, Y2O3 were selected in order to study its architecture (particle size, porosity, density, crystallite size, etc.). Cold spray experiments with various spraying distances to vary the particles velocities upon impact were carried out. Isolated particles (“splat” experiments) were observed in order to investigate the deformation and fragmentation of the powder. In parallel and for one selected and representative powder, in situ SEM microcompression test at 10?2 s?1 on cross-sectioned 3Y-TZP granules (flatpunch nano-indentation and micro-pilar compression) were performed to identify a Drücker-Prager model suitable for a porous ceramic granule. The deformation behaviors were then implemented in a simulation of a particle impact for further comparison with experimental results.

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