Achieving ultra-high strength, good toughness and cost reduction in secondary hardening steel via dual precipitation

IF 5.5 2区 材料科学 Q1 MATERIALS SCIENCE, CHARACTERIZATION & TESTING Materials Characterization Pub Date : 2025-05-01 Epub Date: 2025-02-25 DOI:10.1016/j.matchar.2025.114869
Haofei Zhu , Zhiping Xiong , Jianwen Mao , Xingwang Cheng
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Abstract

The dual precipitation of NiAl particles and M2C carbides during ageing plays a critical role in achieving an optimal balance of strength and toughness in low-cobalt secondary hardening steel, yet this remains scarcely investigated. This work investigates the evolution of NiAl and M2C during ageing at 482 °C for durations ranging from 1 h to 150 h, focusing on their influence on the strength and impact toughness of martensitic steel. It was found that after 5 h of ageing, NiAl particles nucleate rapidly with high number density and nearly reaches saturation, suppressing dislocation recovery. This leads to a high yield strength of 1875 MPa. When the ageing time is extended to 32 h, the NiAl particles coarsen and the volume fraction of M2C carbides increases, while the dislocation recovery remains minimal. Consequently, the yield strength increases slightly to 1895 MPa. Notably, the impact toughness improves from 17 J at 5 h to 28 J at 32 h, reflecting to a 65 % improvement. This is predominantly due to the reduction in the number density of brittle NiAl particles which can induce cracks and due to the formation of film-like reversed austenite which can deflect cracks. After 32 h of ageing, the yield strength and impact toughness of the secondary hardening steel are comparable to those of commercial AerMet310 steel. Notably, the cobalt content is reduced from 15.0 wt% to 5.0 wt%, resulting in an approximate 36 % reduction in raw material costs.
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通过双沉淀使二次硬化钢达到超高强度、高韧性和低成本
时效过程中NiAl颗粒和M2C碳化物的双重析出对低钴二次硬化钢实现强度和韧性的最佳平衡起着至关重要的作用,但这方面的研究很少。本研究研究了NiAl和M2C在482°C时效过程中的演变,时效时间从1小时到150小时,重点研究了它们对马氏体钢强度和冲击韧性的影响。时效5h后,NiAl颗粒迅速形核,数量密度高,接近饱和,抑制了位错的恢复。这导致了1875 MPa的高屈服强度。当时效时间延长至32 h时,NiAl颗粒变粗,M2C碳化物体积分数增加,位错恢复最小。因此,屈服强度略有增加,达到1895 MPa。值得注意的是,冲击韧性从5 h时的17 J提高到32 h时的28 J,提高了65%。这主要是由于可诱发裂纹的脆性NiAl颗粒的数量密度降低,以及可使裂纹偏转的膜状反转奥氏体的形成。时效32 h后,二次硬化钢的屈服强度和冲击韧性与商用AerMet310钢相当。值得注意的是,钴含量从15.0% wt%降低到5.0% wt%,从而使原材料成本降低了约36%。
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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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