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◆ Journal of Materials Research and Technology2025-12-09· Materials science

Enhancement of strength and ductility in 17-4 PH stainless steel fabricated by laser powder bed fusion via two-step aging heat treatment

Rongrong Huang, Rui Ma, Hongyun Zhao, Yiming Sun, Yazhou Liu, Qi Chen, Danyang Lin, Bo Chen, Xiaoguo Song, Caiwang Tan

原始摘要(英文原文)· Original abstract
This study designed two-step aging treatments based on a conventional heat treatment process to simultaneously enhance the strength and ductility of 17-4 PH stainless steel (SS) fabricated by laser powder bed fusion (LPBF). The matrix consisted primarily of martensite, with a small amount of reverted austenite. The two-step aging treatment promoted martensite tempering and the further precipitation of Cu-rich particles. The contribution of precipitation strengthening was significantly enhanced owing to the increased volume fraction of Cu-rich precipitates, whereas the Orowan bypassing mechanism remained the dominant interaction mode. The newly formed fine Cu-rich precipitates in the DH450 samples were coherent with the matrix, which facilitated a partial transition to the dislocation-shearing mechanism. As the secondary aging temperature increased, the newly formed precipitates coarsened, leading to a decrease in tensile strength. The redistribution of austenite-stabilizing elements during the secondary aging process enhanced the reverted austenite content, facilitating strain-induced martensitic transformation, enhancing the work-hardening capability, and contributing to improved ductility. The optimum mechanical properties were obtained in DH450, with a yield strength of 876.06 MPa, an ultimate tensile strength of 1049.61 MPa, and an elongation of 19 %. Thus, this study achieved a synergistic improvement in strength and plasticity through a two-step aging process, providing a basis for the heat-treatment design of LPBF 17-4 PH SS.
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Enhancement of strength and ductility in 17-4 PH stainless steel fabricated by laser powder bed fusion via two-step aging heat treatment — 科研速览 Science Skim