Mechanism on toughness improvement of Ti-B containing weld metal
Sui Shao-hua
Abstract
Sui Shao-hua
Abstract
The acicular ferrite formation mechanism in 500-600 MPa high-strength low-alloy steel weld metal was investigated. The role of inclusions on the nucleation of acicular ferrite in Ti-B containing weld metal was discussed. The influence of inclusions compositions and types on the nucleation of acicular ferrite is studied by electron microscope techniques and X-ray energy dispersive analysis. The results suggest that Ti , Mn, Al, Si oxides provide active nucleation sites for acicular ferrite ,but MnS and MnO·SiO_2 are not a effective for fine acicular ferrite nucleation. The scanning electron micrographs show that there is a shadow zone surrounded the inclusion. It is a plastic zone of matrix. It seems to be more effective for the formation of acicular ferrite.
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The acicular ferrite formation mechanism in 500-600 MPa high-strength low-alloy steel weld metal was investigated. The role of inclusions on the nucleation of acicular ferrite in Ti-B containing weld metal was discussed. The influence of inclusions compositions and types on the nucleation of acicular ferrite is studied by electron microscope techniques and X-ray energy dispersive analysis. The results suggest that Ti , Mn, Al, Si oxides provide active nucleation sites for acicular ferrite ,but MnS and MnO·SiO_2 are not a effective for fine acicular ferrite nucleation. The scanning electron micrographs show that there is a shadow zone surrounded the inclusion. It is a plastic zone of matrix. It seems to be more effective for the formation of acicular ferrite.
Key concepts: Acicular ferrite, Nucleation, Acicular, Materials science, Scanning electron microscope, Metallurgy, Ferrite (magnet), Toughness