Artigo
Finite element model for the description of intrinsic heat treatment induced aging in 18Ni300 maraging steel during direct laser powder deposition
Journal
— 2026 — Springer Nature
Informações chave
Autores:
Publicado em
2 de setembro de 2026
Resumo
Laser additive manufacturing techniques have received in recent times increased attention in the case of the production of customized, high-value components from high-strength, age-hardenable maraging steels. These alloys require cooling to form a carbon-free lath martensite (α′) phase that is then age-strengthened through precipitation at approximately 480 °C. Homogenization and aging are currently accomplished through costly post-manufacturing heat treatments that can, in principle, be replaced by the intrinsic heat treatment (IHT) effect of additive manufacturing, caused by repeated localized heating of the workpiece. This work aims to estimate the precipitation hardening time experienced by a thin wall of maraging steel during additive laser powder deposition at the rate of 1 single track overlap per minute and a unidirectional laser travel speed of 10 mm/s. For this, a heat transfer finite element deposition model is developed from in-situ workpiece temperature measurements and then the local thermal histories are used to interpret the microhardness profiles of such thin walls. The model can estimate the intrinsic aging time by considering a 380–580 °C aging temperature range found through differential thermal analysis. The hardness in the as-built condition and the estimated intrinsic aging time fit the established early-stage hardening kinetics law exponent for maraging steels, thereby validating the intrinsic age-hardening conditions that led to the IHT aging in thin walls.
Detalhes da publicação
Autores da comunidade :
Ivan Diogo Mendonça Rodrigues
ist157632
Maria Amélia Martins de Almeida
ist13287
Versão da publicação
VoR - Versão publicada
Editora
Springer Nature
Ligação para a versão da editora
https://rdcu.be/vHx85GUYP4fa
Título do contentor da publicação
Journal
Domínio Científico (FOS)
materials-engineering - Engenharia dos Materiais
Palavras-chave
- Additive manufacturing
- Maraging steel
- Direct laser deposition
- Intrinsic het treatment
- FEA modeling
Idioma da publicação (código ISO)
eng - Inglês
Acesso à publicação:
Acesso Aberto
Entidade financiadora da bolsa/projeto
Fundação para a Ciência e a Tecnologia
Nome da bolsa/projeto: CeFEMA Project UID/04540/2025
Identificador da Entidade Financiadora: https://doi.org/10.13039/501100001871
Tipo de identificador da Entidade Financiadora: Crossref Funder
Número de bolsa/projeto: UID/04540/2025
Entidade financiadora da bolsa/projeto
Fundação para a Ciência e a Tecnologia
Nome da bolsa/projeto: PhD grant SFRH/BD/145658/2019
Número de bolsa/projeto: SFRH/BD/145658/2019