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40%冷加工和退火对AISI 316L奥氏体不锈钢中析出物的影响

Influence of 40% Cold Working and Annealing on Precipitation in AISI 316L Austenitic Stainless Steel.

作者信息

Bártová Katarína, Dománková Mária, Bárta Jozef, Pastier Peter

机构信息

Faculty of Materials Science and Technology, Slovak University of Technology, Jána Bottu 25, 917 24 Trnava, Slovakia.

Welding Research Institute, Račianska 71, 831 02 Bratislava, Slovakia.

出版信息

Materials (Basel). 2022 Sep 19;15(18):6484. doi: 10.3390/ma15186484.

Abstract

Intergranular corrosion is one of the most important processes affecting the behaviour of austenitic stainless steels. Factors such as steel chemical composition, the degree of prior deformation and the exposure temperature affect the degree of sensitisation. AISI 316L (0% CW) steel was annealed at 650 °C for 5, 10, 30, 100, 300 and 1000 h to analyse the influence of isothermal annealing on the precipitation of secondary phases. AISI 316L steel after 40% cold working and subsequent annealing at 650 °C for 1, 1.5, 2, 5 and 10 h was investigated. Time-temperature sensitisation (TTS) diagrams were created based on corrosion test (ASTM A 262, practice A) results. In the case of AISI 316L (0% CW), MC, chi and sigma phases precipitated at grain boundaries, and the Laves phase was mainly inside of the grains. In the case of AISI 316L (40% CW), sigma, chi, Laves and MC were identified and precipitated mainly along the grain boundaries as well as on the shear bands within different annealing times. It was confirmed that the increase in the annealing time caused an increase in the amounts of secondary phases. Secondary phases in the equilibrium state were calculated using Thermo-Calc software.

摘要

晶间腐蚀是影响奥氏体不锈钢性能的最重要过程之一。钢的化学成分、预先变形程度和暴露温度等因素会影响敏化程度。对AISI 316L(0%冷加工)钢在650℃下进行5、10、30、100、300和1000小时的退火处理,以分析等温退火对第二相析出的影响。对经过40%冷加工并随后在650℃下进行1、1.5、2、5和10小时退火的AISI 316L钢进行了研究。根据腐蚀试验(ASTM A 262,方法A)结果绘制了时间-温度敏化(TTS)图。对于AISI 316L(0%冷加工),MC、χ和σ相在晶界析出,而Laves相主要在晶粒内部。对于AISI 316L(40%冷加工),在不同退火时间内,鉴定出了σ、χ、Laves和MC相,它们主要沿晶界以及剪切带析出。证实了退火时间的增加导致第二相数量增加。使用Thermo-Calc软件计算了平衡状态下的第二相。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/31a9/9505488/2612099d3e9e/materials-15-06484-g001.jpg

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