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首页> 外文期刊>Transactions of the Indian Institute of Metals >Effect of Nitrogen on Primary and Steady State Creep Deformation Behaviour of 316LN Austenitic Stainless Steel
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Effect of Nitrogen on Primary and Steady State Creep Deformation Behaviour of 316LN Austenitic Stainless Steel

机译:氮对316LN奥氏体不锈钢初级和稳态蠕变变形行为的影响

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摘要

Effect of nitrogen on primary and steady state creep deformation behaviour of 316LN austenitic stainless steel has been studied. Nitrogen content was varied between 0.07 and 0.22 wt%. Creep tests have been carried out on the steels over the stress range of 120-225 MPa at 923 K. The creep behaviour of the steels has been assessed based on Garofalo relationship, . The rate of exhaustion of primary creep rate 'r' and steady state creep rate '' decrease and time to onset the secondary creep stage increases with nitrogen content. The relationships between the initial creep rate ''and rate of exhaustion of primary creep rate 'r' with steady creep rate '' reveal that the same deformation mechanism prevails during the transient and steady state creep deformations. Attempt has been made to generate a master transient creep curve for the steels having different nitrogen contents using the above parameters. Even though for a steel of specific nitrogen content, master curve has been generated for different stress levels, a master curve for all the steel could not be established. Different deformation characteristics of the steel having different nitrogen content which effect the stacking fault energy as well as precipitation behaviour is considered for the disagreement.
机译:研究了氮对316LN奥氏体不锈钢初级和稳态蠕变变形行为的影响。氮含量在0.07和0.22wt%之间变化。在923K的压力范围内的应力范围内的钢上进行了蠕变试验。基于Garofalo关系评估了钢的蠕变行为,。初级蠕变率'R'和稳态蠕变率的耗尽率降低次蠕变阶段的减少和时间随氮含量增加。初始蠕变率“与初级蠕变速率的耗尽率”与稳定蠕变率的速度率的关系揭示了在瞬态和稳态蠕变变形期间相同的变形机制普遍存在。已经尝试使用上述参数产生具有不同氮含量的钢的主瞬态蠕变曲线。即使对于特定氮气含量的钢,也是针对不同应力水平产生的主曲线,不能建立所有钢的主曲线。具有不同氮含量的钢的不同变形特性,施加堆叠故障能量以及沉淀行为的分歧。

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