Kisway, T.; Lawrence, E.; Trask, M.; MacRae, L.; McCorkell, M.; Parsons, E.; Asefzadeh, F.; Wu, D.T.; Michaud, P.-L.; Bishop, D.P.;
et al. Volumetric Infiltration of Brushite and Monetite Cements into Laser Powder Bed Fusion Ti-6Al-4V Lattices: A Feasibility Study of Lattice Geometry and Cement Formulation. Materials 2026, 19, 3973.
https://doi.org/10.3390/ma19183973
AMA Style
Kisway T, Lawrence E, Trask M, MacRae L, McCorkell M, Parsons E, Asefzadeh F, Wu DT, Michaud P-L, Bishop DP,
et al. Volumetric Infiltration of Brushite and Monetite Cements into Laser Powder Bed Fusion Ti-6Al-4V Lattices: A Feasibility Study of Lattice Geometry and Cement Formulation. Materials. 2026; 19(18):3973.
https://doi.org/10.3390/ma19183973
Chicago/Turabian Style
Kisway, Tiffany, Ella Lawrence, Melissa Trask, Lauren MacRae, Meredith McCorkell, Emily Parsons, Farmehr Asefzadeh, David T. Wu, Pierre-Luc Michaud, Donald Paul Bishop,
and et al. 2026. "Volumetric Infiltration of Brushite and Monetite Cements into Laser Powder Bed Fusion Ti-6Al-4V Lattices: A Feasibility Study of Lattice Geometry and Cement Formulation" Materials 19, no. 18: 3973.
https://doi.org/10.3390/ma19183973
APA Style
Kisway, T., Lawrence, E., Trask, M., MacRae, L., McCorkell, M., Parsons, E., Asefzadeh, F., Wu, D. T., Michaud, P.-L., Bishop, D. P., & Sheikh, Z.
(2026). Volumetric Infiltration of Brushite and Monetite Cements into Laser Powder Bed Fusion Ti-6Al-4V Lattices: A Feasibility Study of Lattice Geometry and Cement Formulation. Materials, 19(18), 3973.
https://doi.org/10.3390/ma19183973