Vanzetti Matteo, Virgillito Enrico, Aversa Alberta, Manfredi Diego, Bondioli Federica, Lombardi Mariangela, Fino Paolo
Department of Applied Science and Technology (DISAT), Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129 Torino, Italy.
Center for Sustainable Future Technologies IIT@Polito, Istituto Italiano di Tecnologia, Via Livorno 60, 10124 Torino, Italy.
Materials (Basel). 2021 Oct 17;14(20):6157. doi: 10.3390/ma14206157.
Conventionally processed precipitation hardening aluminum alloys are generally treated with T6 heat treatments which are time-consuming and generally optimized for conventionally processed microstructures. Alternatively, parts produced by laser powder bed fusion (L-PBF) are characterized by unique microstructures made of very fine and metastable phases. These peculiar features require specifically optimized heat treatments. This work evaluates the effects of a short T6 heat treatment on L-PBF AlSi7Mg samples. The samples underwent a solution step of 15 min at 540 °C followed by water quenching and subsequently by an artificial aging at 170 °C for 2-8 h. The heat treated samples were characterized from a microstructural and mechanical point of view and compared with both as-built and direct aging (DA) treated samples. The results show that a 15 min solution treatment at 540 °C allows the dissolution of the very fine phases obtained during the L-PBF process; the subsequent heat treatment at 170 °C for 6 h makes it possible to obtain slightly lower tensile properties compared to those of the standard T6. With respect to the DA samples, higher elongation was achieved. These results show that this heat treatment can be of great benefit for the industry.
传统加工的沉淀硬化铝合金通常采用T6热处理,这种处理耗时且通常针对传统加工的微观结构进行优化。相比之下,激光粉末床熔融(L-PBF)制造的零件具有由非常细小的亚稳相组成的独特微观结构。这些特殊特性需要专门优化的热处理。这项工作评估了短时间T6热处理对L-PBF AlSi7Mg样品的影响。样品在540°C下进行15分钟的固溶步骤,然后水淬,随后在170°C下进行2-8小时的人工时效。从微观结构和力学角度对热处理后的样品进行了表征,并与铸态和直接时效(DA)处理的样品进行了比较。结果表明,在540°C下进行15分钟的固溶处理可以溶解L-PBF过程中获得的非常细小的相;随后在170°C下进行6小时的热处理,与标准T6相比,可以获得略低的拉伸性能。与DA样品相比,伸长率更高。这些结果表明,这种热处理对工业可能非常有益。