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Microstructure evolution and mechanical properties of 316L austenitic stainless steel with aluminum addition by warm rolling
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作者 Xin GUO Pei-qing La +2 位作者 Heng Li Yu-peng Wei Xue-feng Lu 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2018年第10期1068-1077,共10页
Microstructure evolution and mechanical properties of 316L austenitic stainless steel with aluminum addition by warm rolling at 550 ℃ were investigated. It is found that sample is composed of an ashen austenite matri... Microstructure evolution and mechanical properties of 316L austenitic stainless steel with aluminum addition by warm rolling at 550 ℃ were investigated. It is found that sample is composed of an ashen austenite matrix, a gray black ferrite phase and a small number of NiCx. The average grain sizes are 21.62, 19.66 and 19.49 μm for samples with the rolling deformation of 30%, 50% and 70%, respectively. The yield strength and tensile strength of samples with solid solution time of 30 min and deformation of 70% are higher. The fracture modes are similar and belong to toughness fracture. The fracture surfaces of the samples are composed of relatively large equal-axis ductile dimples (5-15 μm) and fine scattered ones around the dimples (〈 5 μm). As the rolling deformation increases, the quantity of subgrain boundary increases and the 〈 101 〉 orientation is more prominent. {001 } 〈 110 〉 rotation-cube textures are present in ferrite phase of samples and weak Goss texture is formed in austenite pole images. 展开更多
关键词 AISI 316l austenitic stainless steel Warm rolling Tensile property Fracture mechanism Deformationtexture
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纳米多晶316L奥氏体不锈钢高温蠕变行为的原子尺度研究
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作者 王冰 王千 +2 位作者 罗容 阚前华 古斌 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2023年第5期19-27,共9页
通过分子动力学模拟研究了纳米多晶316L奥氏体不锈钢在不同峰值应力下的高温蠕变变形行为和蠕变机制.数值模拟结果表明纳米多晶316L奥氏体不锈钢的高温蠕变变形是由位错、晶粒内部和晶界扩散以及晶界滑移之间的交互作用引起.在初始蠕变... 通过分子动力学模拟研究了纳米多晶316L奥氏体不锈钢在不同峰值应力下的高温蠕变变形行为和蠕变机制.数值模拟结果表明纳米多晶316L奥氏体不锈钢的高温蠕变变形是由位错、晶粒内部和晶界扩散以及晶界滑移之间的交互作用引起.在初始蠕变和稳态蠕变阶段,纳米多晶316L奥氏体不锈钢高温蠕变的主导性机制是晶粒内部和晶界的扩散以及晶界的滑移.在加速蠕变阶段,一些晶界被摧毁后,位错滑移成为纳米多晶316L奥氏体不锈钢的主要蠕变机制.这项工作旨在揭示纳米多晶316L奥氏体不锈钢的高温蠕变机理,为增强型抗蠕变316L奥氏体不锈钢的设计和制造提供指导. 展开更多
关键词 316l austenitic stainless steels CREEP Molecular dynamics simulation DISLOCATION Diffusion Grain boundaries sliding
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