Microstructural development via synergic application of Binder jJetting and Quenching and Partitioning (QP) on commercial AISI 4340

IF 5.5 2区 材料科学 Q1 MATERIALS SCIENCE, CHARACTERIZATION & TESTING Materials Characterization Pub Date : 2025-02-13 DOI:10.1016/j.matchar.2025.114839
M. Belfi , M. Mariani , P. Martin , M. Santofimia , A. Gruttadauria , F. Deirmina , N. Lecis , S. Barella
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Abstract

This study investigates the microstructural development of commercial low-alloyed AISI 4340 steel through the synergistic application of Binder Jetting and Quenching and Partitioning (QP) processes. The material in the as-sintered condition exhibited significant variations in microstructure and mechanical properties, primarily influenced by the processing route. Carbon content was influenced by the building technique as decarburization was observed at different intensities mainly during the heating stage of sintering, driven by carbothermic reduction. Vacuum-debinding was found to be optimal, leading to the most homogeneous microstructure, predominantly granular bainite with superior hardness and tensile strength. Different QP treatments were optimized considering the decarburization effect on the optimal as-sintered condition, stabilizing 4–8 % retained austenite in a martensitic matrix, with optimal results observed after isothermal holding at either 220 °C or 240 °C for 30 min. These conditions resulted in high UTS values of 1231 MPa and 1151 MPa, respectively, compared to 750 MPa in the as-sintered state. Despite high tensile properties, A% was limited by the presence of residual porosity. This study highlights the critical importance of controlled debinding and sintering atmospheres as well as decarburization-informed QP treatments in achieving desirable microstructural and mechanical properties in additively manufactured AISI 4340 steel components.

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在商用AISI 4340上协同应用粘结剂喷射和淬火和分配(QP)的微观组织发展
本研究通过粘结剂喷射和淬火和分配(QP)工艺的协同应用,研究了商用低合金AISI 4340钢的显微组织发展。在烧结状态下,材料的显微组织和力学性能发生了显著变化,主要受加工路线的影响。碳含量受建筑工艺的影响,主要在烧结加热阶段,碳热还原驱动下,观察到不同强度的脱碳。真空脱脂效果最佳,组织最均匀,以粒状贝氏体为主,硬度和抗拉强度均较高。考虑到脱碳对最佳烧结状态的影响,优化了不同的QP处理,稳定了马氏体基体中4 - 8%的残余奥氏体,在220°C或240°C等温保温30分钟后获得了最佳效果。这些条件下的UTS值分别为1231 MPa和1151 MPa,而烧结状态下的UTS值为750 MPa。尽管拉伸性能高,但残余孔隙率限制了A%。这项研究强调了在增材制造的AISI 4340钢部件中,控制脱脂和烧结气氛以及脱碳的QP处理对于实现理想的显微组织和机械性能的重要性。
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来源期刊
Materials Characterization
Materials Characterization 工程技术-材料科学:表征与测试
CiteScore
7.60
自引率
8.50%
发文量
746
审稿时长
36 days
期刊介绍: Materials Characterization features original articles and state-of-the-art reviews on theoretical and practical aspects of the structure and behaviour of materials. The Journal focuses on all characterization techniques, including all forms of microscopy (light, electron, acoustic, etc.,) and analysis (especially microanalysis and surface analytical techniques). Developments in both this wide range of techniques and their application to the quantification of the microstructure of materials are essential facets of the Journal. The Journal provides the Materials Scientist/Engineer with up-to-date information on many types of materials with an underlying theme of explaining the behavior of materials using novel approaches. Materials covered by the journal include: Metals & Alloys Ceramics Nanomaterials Biomedical materials Optical materials Composites Natural Materials.
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