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Effect of energy density on microstructure control in precipitation hardening steel during powder bed fusion

Dylan Cuskelly et al · Taylor & Francis Group · 2026

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We demonstrate how controlling the heat affected zone during laser powder bed fusion may be used to optimise the phase composition of additively manufactured (AM) components in-situ to reduce post-processing heat treatments. We showcase this approach by promoting in-situ precipitation hardening in martensitic 17-4 PH stainless steel by varying the laser energy density. We link the melting and reheating associated with the layer-wise metal consolidation to the phase evolution and local material hardness, providing guidelines to achieve ‘print and use’ strategies for precipitation hardened alloys. These processing strategies may yield AM parts with lower cost, time, and embodied energy.

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APA 7

al, D. C. E. (2026). Effect of energy density on microstructure control in precipitation hardening steel during powder bed fusion. https://doi.org/10.1080/21663831.2026.2613696

MLA

al, Dylan Cuskelly et. "Effect of energy density on microstructure control in precipitation hardening steel during powder bed fusion." 2026. https://doi.org/10.1080/21663831.2026.2613696.

Chicago

al, Dylan Cuskelly et. 2026. "Effect of energy density on microstructure control in precipitation hardening steel during powder bed fusion.". https://doi.org/10.1080/21663831.2026.2613696.

Harvard

al, D. C. E. 2026, Effect of energy density on microstructure control in precipitation hardening steel during powder bed fusion, Taylor & Francis Group, available at: https://doi.org/10.1080/21663831.2026.2613696 [Accessed 7 Aug. 2026].

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Title
Effect of energy density on microstructure control in precipitation hardening steel during powder bed fusion
Author / contributors
Dylan Cuskelly et al
Publisher
Taylor & Francis Group
Publication year
2026
ISSN
2166-3831
ISSN
2166-3831
Language
English

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