Kinematical barriers enhanced dislocation strengthening mechanisms in cold-worked austenitic steels

Kinematical barriers enhanced dislocation strengthening mechanisms in cold-worked austenitic steels
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运动障碍增强了冷加工奥氏体钢的位错强化机制

DOI:
10.1016/j.scriptamat.2022.115237
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发表时间:
2023-03
期刊:
影响因子:
6
通讯作者:
Jian Wang
Jian Wang
中科院分区:
材料科学1区
文献类型:
--
作者:
Tian Zhang;Jie Tang;Shudong He;Fulin Jiang;Dingfa Fu;Jie Teng;Jian Wang

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我们通过实验研究了三种通过位错、孪晶和堆垛层错变形的冷加工奥氏体钢的微观结构演变和强化行为。研究发现,作为位错运动运动障碍的堆垛层错和孪晶的发展同时受到堆垛层错能量和累积位错的影响,这反过来又加速了位错存储速率,强化了合金,并形成了高应变硬化率。因此,我们提出了一个非加性强化方程,通过将基于位错的二内变量模型与运动学障碍相结合来合理化实验观察。
We experimentally investigated microstructure evolution and strengthening behaviors of three cold-worked austenitic steels that deform via dislocations, twinning and stacking faults. The development of stacking faults and twins acting as kinematical barriers for dislocation motion was found to be influenced by stacking fault energy and accumulated dislocations simultaneously, which in turn accelerate dislocation storage rate, strengthen the alloys, and develop high strain hardening rate. We thus proposed a nonadditive strengthening equation to rationalize experimental observation by combining the dislocation-based two-internal-variable model coupled with kinematical barriers.
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