Powder reusability in Metal Binder Jetting
Повторное использование порошка в металлопечати методом Binder Jetting
2023-01-03
SCID: 54.1/wqdqgtzd
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17-4PH stainless steel powder316L stainless steel powdermetal binder jettingpowder feedstock degradationpowder moisture contentpowder morphologypowder packing densitypowder reusabilityrecycling broken green partsscanning electron microscopy
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Abstract (AI)
Metal binder jetting is a potential mass-production additive manufacturing technique that enables faster production of complex structures with isotropic material properties. In metal binder jetting, the quality of parts is heavily influenced by the powder characteristics, and even small variations in powder feedstock can result in poor-quality parts. Powder management is crucial in this technology because the powder is processed in a high-humidity environment in the machine, and the binder is mixed with the powder as well. In this paper, the characteristics of 316l and 17-4PH stainless steel powders under the machine atmosphere and their reusability are studied in detail. Powder samples were taken from the build box at a fixed interval of time and their moisture content, packing density, and morphology were analysed through scanning electron microscopy. Based on the results obtained, it was observed that moisture content of the powder increases with time up to a few hours when it gets constant. Additionally, it was observed that after the first reuse cycle of the powder, the finest powder particles almost disappear, which may have a detrimental effect on the density of the generated parts. Finally, the recycling of broken green parts was also investigated by means of a new approach. Taking into account that broken green parts are generally scrapped in metal binder jetting, the recyclability of this material could reduce the high material costs related to the process.
Key Findings
1
A new approach for recycling broken green parts was investigated, potentially reducing material costs by reusing normally scrapped material.
2
After the first reuse cycle, the finest powder particles almost disappear from the powder feedstock.
3
Loss of the finest particles from reused powder may detrimentally affect the density of produced parts.
4
Moisture content of 316L and 17-4PH stainless steel powders increases over time in the machine atmosphere and reaches a steady (constant) level after a few hours.
5
Powder packing density and morphology change with exposure time in the machine atmosphere as shown by SEM and packing density measurements.
Research Object
316L and 17-4PH stainless steel powders used in metal binder jetting
Research Subject
Reusability-related changes in powder properties under machine atmosphere—moisture uptake over time, packing density, particle morphology (including loss of finest particles) —and recycling of broken green parts affecting part density and material cost
Publication Details
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2023-01-03
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