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通过双纳米沉淀法制备的超强轻质成分复杂钢。

Ultrastrong lightweight compositionally complex steels via dual-nanoprecipitation.

作者信息

Wang Zhangwei, Lu Wenjun, Zhao Huan, Liebscher Christian H, He Junyang, Ponge Dirk, Raabe Dierk, Li Zhiming

机构信息

Max-Planck-Institut für Eisenforschung, Max-Planck-Str. 1, 40237 Düsseldorf, Germany.

School of Materials Science and Engineering, Central South University, 410083 Changsha, China.

出版信息

Sci Adv. 2020 Nov 13;6(46). doi: 10.1126/sciadv.aba9543. Print 2020 Nov.

Abstract

High-performance lightweight materials are urgently needed, given the pressing quest for weight reduction and the associated energy savings and emission reduction. Here, by incorporating the multi-principal element feature of compositionally complex alloys, we develop the concept of lightweight steels further and propose a new class of compositionally complex steels (CCSs). This approach allows us to use the high solid solution strengthening and shift the alloys' compositions into previously unattainable phase regions where both nanosized shearable κ-carbides and non-shearable B2 particles are simultaneously formed. The achievement of dual-nanoprecipitation in our CCSs leads to materials with ultrahigh specific tensile strength (up to 260 MPa·cm g) and excellent tensile elongation (13 to 38%), a combination outperforming all other high-strength high-entropy alloys and advanced lightweight steels. Our concept of CCSs is thus useful for guiding the design of ultrastrong lightweight metallic materials.

摘要

鉴于对减轻重量以及相关的节能和减排的迫切需求,高性能轻质材料亟待开发。在此,通过引入成分复杂合金的多主元特性,我们进一步拓展了轻质钢的概念,并提出了一类新型的成分复杂钢(CCS)。这种方法使我们能够利用高固溶强化作用,并将合金成分转移到以前无法达到的相区,在该相区中同时形成纳米尺寸的可剪切κ碳化物和不可剪切的B2粒子。我们的CCS实现双纳米析出,从而得到具有超高比拉伸强度(高达260 MPa·cm/g)和优异拉伸伸长率(13%至38%)的材料,这一性能组合优于所有其他高强度高熵合金和先进轻质钢。因此,我们的CCS概念有助于指导超强轻质金属材料的设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6465/7673736/8dfd591fafe8/aba9543-F1.jpg

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