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首页> 外文期刊>International journal of robotics research and development >EFFECT OF COLD ROLLING ON THE MICROSTRUCTURAL EVOLUTION AND MECHANICAL PROPERTIES OF AUSTENITIC STAINLESS STEEL CONTAINING NIOBIUM
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EFFECT OF COLD ROLLING ON THE MICROSTRUCTURAL EVOLUTION AND MECHANICAL PROPERTIES OF AUSTENITIC STAINLESS STEEL CONTAINING NIOBIUM

机译:冷轧对含铌奥氏体不锈钢显微组织演变和力学性能的影响

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Austenitic stainless steel has excellent ductility. Consequently, it has capability for heavily cold deformation, despite its high strength and high work hardening ability. Austenitic stainless steel predominantly contains high levels of chromium and nickel. Additional elements may be added to enhance performance. The target of this paper is to study several austenitic stainless steel alloys containing different Nb pct. The main merit of Nb is to avoid the sensitization phenomenon during during cooling from high temperatures or heating service. Another target of study is to demonstrate the effects of the chemical composition on strength as well as the effect of cold rolling on the creation of induce martensite phase is also studied. The microstructural investigation shows that grain coarsening was observed on the as-cast structure accompanying with thick grain boundary carbides along with carbide agglomerations at the triple points. Hot deformation diminishes the grains as well as the carbide films surrounding the grains. Solution treatment creates austenitic grains free of grain boundary carbides. Cold deformation creates highly elongated grains associated with wavy pancaked structure. Nb was found to increase the proof strength even at high temperatures. The measured mechanical properties of the alloys under investigation are higher values due to the Nb effect. The flow curve of different alloys has been extensively studied. The detected results have been verified by the microstructural changes during deformation.
机译:奥氏体不锈钢具有出色的延展性。因此,尽管具有高强度和高加工硬化能力,它仍具有严重的冷变形能力。奥氏体不锈钢主要包含高含量的铬和镍。可以添加其他元素以增强性能。本文的目标是研究几种包含不同Nb pct的奥氏体不锈钢合金。 Nb的主要优点是避免在高温冷却或加热过程中出现敏化现象。另一个研究目标是证明化学成分对强度的影响以及冷轧对诱导马氏体相生成的影响。显微组织研究表明,在铸态组织上观察到晶粒粗化,伴随着厚的晶界碳化物以及三点处的碳化物团聚。热变形会减少晶粒以及晶粒周围的碳化膜。固溶处理产生不含晶界碳化物的奥氏体晶粒。冷变形产生与波浪状薄煎饼结构相关的高度伸长的晶粒。发现即使在高温下,Nb也可以提高耐久强度。由于Nb效应,所研究合金的机械性能实测值较高。已经广泛研究了不同合金的流动曲线。变形过程中的微观结构变化已证实了检测结果。

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