Binder Jetting - Impact of powder reuse and curing on powder characteristics, green parts, and sintering densification of 17-4 PH stainless steel
Artikel i vetenskaplig tidskrift, 2026

The influence of powder reuse on binder-jetted green parts, powder characteristics, and sintering densification was investigated for 17-4 PH stainless steel. Reusing overflow powder led to consistent printing results despite a slight humidity pickup. Powder oxidation after curing in ambient air demonstrated decreased powder packing during printing, which was connected to increased powder flowability. In comparison, curing in inert Ar preserved the powder's flowability and oxygen content. The green densities reduced from 4.71 to 4.47 g/cm3 after 20 build jobs, while the powder's oxygen content increased by 20% due to four curing cycles in ambient air. Dilatometry of the reused samples with lower green densities revealed higher shrinkages and a change in the shrinkage anisotropy. The shrinkage of the reused samples increased mainly in the powder spreading and compaction roller axis direction as opposed to the build direction. Despite higher shrinkage, the density of the reused samples decreased compared to the virgin samples from 91.5% to 88.3% for sintering in Ar, whereas a lower reduction from 99.2% to 98.9% was detected when sintering in H2. Samples processed in H2 exhibited higher sintering densification due to the formation of delta-ferrite, which was not observed for sintering in Ar. The absence of delta-ferrite was caused by a high residual carbon content, above 0.17 wt.%, due to inefficient debinding in Ar. The high carbon content also inhibited martensite formation, as indicated by a low microhardness of 159 HV0.1 compared to 315 HV0.1 for sintering in H2.

curing

sintering shrinkage

powder oxidation

17-4 PH stainless steel

powder reuse

Binder Jetting

Författare

Kai Zissel

Chalmers, Industri- och materialvetenskap, Material och tillverkning

Sophie Dubiez-Le Goff

Linde GmbH

Eduard Hryha

Chalmers, Industri- och materialvetenskap, Material och tillverkning

Powder Metallurgy

0032-5899 (ISSN) 1743-2901 (eISSN)

Vol. In Press

Kompetenscentrum för additiv tillverkning - metall (CAM2)

VINNOVA (2022-03076), 2022-11-01 -- 2027-10-31.

VINNOVA (2016-05175), 2017-09-01 -- 2022-08-31.

Ämneskategorier (SSIF 2025)

Materialkemi

Metallurgi och metalliska material

Annan materialteknik

DOI

10.1177/00325899261479464

Mer information

Senast uppdaterat

2026-09-08