Page 154 - MSAM-4-2
P. 154
Materials Science in Additive Manufacturing Bi-modal powder spreading behavior of ceramics
characteristics and manufacturing process parameters on University of Texas at Austin; 2016. Available from: https://
the densification and mechanical properties of additively hdl.handle.net/2152/89652 [Last accessed on 2025 May 08].
manufactured nickel alloy 718. Addit Manuf. 2023;78:103828.
67. Kaleem MA, Alam MZ, Khan M, Jaffery SHI, Rashid B. An
doi: 10.1016/J.ADDMA.2023.103828 experimental investigation on accuracy of Hausner Ratio
and Carr Index of powders in additive manufacturing
58. Zhao W, Chang J, Wei Q, Wu J, Ye C. Effect of sodium
silicate solution combined yttrium oxide stabilized zirconia processes. Metal Powder Report. 2021;76:S50-S54.
nanopowders on the properties of alumina ceramics doi: 10.1016/J.MPRP.2020.06.061
fabricated by binder jetting additive manufacturing. J Mater 68. Shah RB, Tawakkul MA, Khan MA. Comparative evaluation
Process Technol. 2024;330:118454. of flow for pharmaceutical powders and granules. AAPS
doi: 10.1016/J.JMATPROTEC.2024.118454 PharmSciTech. 2008;9(1):250-258.
59. Wu H, Jiang C, Tang C, et al. Binder jetting printed in doi: 10.1208/S12249-008-9046-8/FIGURES/9
situ mullite strengthened alumina ceramics with excellent 69. Sandler N, Reiche K, Heinämäki J, Yliruusi J. Effect of
mechanical and thermal properties through multi-phase moisture on powder flow properties of theophylline.
infiltration. Virtual Phys Prototyp. 2024;19(1):e2427240. Pharmaceutics. 2010;2(3):275.
doi: 10.1080/17452759.2024.2427240 doi: 10.3390/PHARMACEUTICS2030275
60. Manotham S, Tesavibul P. Effect of particle size on 70. Martins GHB, Morgado WAM, Queirós SMD, Atman APF.
mechanical properties of alumina ceramic processed Large-deviation quantification of boundary conditions on
by photosensitive binder jetting with powder spattering the Brazil nut effect. Phys Rev E. 2021;103(6):062901.
technique. J Eur Ceram Soc. 2022;42(4):1608-1617.
doi: 10.1103/PHYSREVE.103.062901/FIGURES/10/
doi: 10.1016/J.JEURCERAMSOC.2021.11.062 MEDIUM
61. Du W, Ren X, Chen Y, Ma C, Radovic M, Pei Z. Model 71. He Y, Hassanpour A, Bayly AE. Linking particle properties
guided mixing of ceramic powders with graded particle to layer characteristics: Discrete element modelling of
sizes in binder jetting additive manufacturing. In: ASME cohesive fine powder spreading in additive manufacturing.
2018 13 International Manufacturing Science and Addit Manuf. 2020;36:101685.
th
Engineering Conference, MSEC 2018; 2018. p. 1.
doi: 10.1016/J.ADDMA.2020.101685
doi: 10.1115/MSEC2018-6651
72. Xu R, Nan W. Analysis of the metrics and mechanism
62. C566 Standard Test Method for Total Evaporable Moisture of powder spreadability in powder-based additive
Content of Aggregate by Drying. Available from: https://store. manufacturing. Addit Manuf. 2023;71:103596.
astm.org/c0566-19.html [Last accessed on 2025 May 08].
doi: 10.1016/J.ADDMA.2023.103596
63. Bui HM, Fischer R, Szesni N, et al. Development of a
manufacturing process for Binder Jet 3D printed porous 73. Toth JR, Phillips AK, Rajupet S, Sankaran RM, Lacks DJ.
Al2O3 supports used in heterogeneous catalysis. Addit Particle-size-dependent triboelectric charging in single-
Manuf. 2022;50:102498. component granular materials: Role of humidity. Ind Eng
Chem Res. 2017;56(35):9839-9845.
doi: 10.1016/J.ADDMA.2021.102498
doi: 10.1021/ACS.IECR.7B02328/ASSET/IMAGES/
64. Yu AB, Zou RP, Standish N. Modifying the linear packing LARGE/IE-2017-023286_0004.JPEG
model for predicting the porosity of nonspherical particle
mixtures. Ind Eng Chem Res. 1996;35(10):3730-3741. 74. Wu Y, Fan Z, Lu Y. Bulk and interior packing densities
of random close packing of hard spheres. J Mater Sci.
doi: 10.1021/IE950616A/ASSET/IMAGES/LARGE/ 2003;38(9):2019-2025.
IE950616AF00016.JPEG
doi: 10.1023/A:1023597707363/METRICS
65. Juarez-Enriquez E, Olivas GI, Zamudio-Flores PB, Ortega-
Rivas E, Perez-Vega S, Sepulveda DR. Effect of water content 75. Wu Y, An X, Huang F. DEM simulation on packing
on the flowability of hygroscopic powders. J Food Eng. densification of equal spheres under compression. Mater Res
2017;205:12-17. Innov. 2014;18:S41082-S41086.
doi: 10.1179/1432891714Z.000000000825
doi: 10.1016/J.JFOODENG.2017.02.024
76. Zhou J, Zhang Y, Chen JK. Numerical simulation of random
66. Elliott AM, Nandwana P, Siddel D, Compton BG. A
Method for Measuring Powder Bed Density in Binder Jet packing of spherical particles for powder-based additive
Additive Manufacturing Process and the Powder Feedstock manufacturing. J Manuf Sci Eng. 2009;131(3):0310041-
Characteristics Influencing the Powder Bed Density. 0310048.
In: International Solid Freeform Fabrication Symposium. doi: 10.1115/1.3123324/470682
Volume 4 Issue 2 (2025) 15 doi: 10.36922/MSAM02510016

