| Literature DB >> 35591509 |
Junfeng Yuan1, Yang Xiao1, Na Min2, Wei Li3,4, Sixin Zhao5.
Abstract
The present study investigates the morphological evolution of carbonitrides and the effect of these precipitates on grain boundary pinning during pseudo-carburizing a Nb-Ti-Al microalloyed steel. The result indicated that three kinds of complex precipitates with different morphologies containing Nb, Ti, and Al respectively were observed in samples austenitized at different temperatures and times. The NbC and TiN precipitates played an important role in pinning grain boundaries and suppressing the growth of austenite grains, relying on the high thermal stability of TiN precipitates and small size of NbC precipitates. The precipitate characteristics affected the size of austenite grain. Based on the Zener pinning model, the effect of precipitate characteristic on austenite grain size was quantitatively analyzed. It is found that the existence of NbC and TiN precipitated at high temperature makes austenite grain growth difficult when austenite grain boundaries were pinned by fine and diffused precipitates.Entities:
Keywords: austenite grain growth; microalloyed steels; pinning pressure; precipitate
Year: 2022 PMID: 35591509 PMCID: PMC9101549 DOI: 10.3390/ma15093176
Source DB: PubMed Journal: Materials (Basel) ISSN: 1996-1944 Impact factor: 3.748