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首页> 外文期刊>Materials Science and Engineering >Evolution of microstructure and mechanical properties in a cold deformed nitrogen bearing TRIP-assisted duplex stainless steel after reversionannealing
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Evolution of microstructure and mechanical properties in a cold deformed nitrogen bearing TRIP-assisted duplex stainless steel after reversionannealing

机译:退火后冷变形含氮TRIP辅助双相不锈钢组织和力学性能的演变

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The effects of cold working and subsequent reversion annealing treatment were studied on the microstructural evolution and mechanical properties enhancement of a new cost effective nitrogen bearing duplex stainless steel (DSS). The cold rolling-reversion annealing cycles were carried out at various temperatures in the range of 1023-1373 K (750-1100 ℃). The mechanical properties of processed materials were investigated by the tensile testing method at room temperature. A series of characterization methods including X-ray diffraction, ferritescope measurement, scanning electron microscopy and dilatometry examination were applied to phase analysis and interpreting the martensite to austenite reversion mechanisms. The results showed that the ferrite would recover and recrystallize prior to any austenite reversion transformation. The non-diffusional reaction was recognized as the predominant reversion mechanism in the entire range of annealing. The diffusional transformation was also activated during isothermal annealing, but as the secondary reversion mechanism. The mechanical behavior evolution of specimens subjected to the partial, incomplete and complete reversion transformation showed that the specimen partially reversed at 650 ℃/180 s reveals a low work hardening capability owing to diffusional reversed stable austenitic phase as well as the high fraction of α-martensite in the microstructure. In addition, comparing work hardening behavior of incomplete reversed specimen (annealed at 800 ℃/180 s) and completely reversed fully recrystallized one (annealed at 1050 ℃/180 s) indicated that the former possesses a higher potential to be strengthened by strain induced martensite formation than latter, due to the existence of less stable austenite phase. However, the work hardening capacity and plasticity of alloy continually increased by raising the annealing temperature.
机译:研究了冷加工和随后的回归退火处理对新型成本有效的含氮双相不锈钢(DSS)的组织演变和力学性能增强的影响。在1023-1373 K(750-1100℃)的不同温度下进行冷轧-回复退火循环。在室温下通过拉伸试验方法研究了加工材料的机械性能。 X射线衍射,铁素体测量,扫描电子显微镜和膨胀计检查等一系列表征方法被用于相分析和解释马氏体到奥氏体回复机制。结果表明,铁素体会在奥氏体回复转变之前恢复并重结晶。在整个退火过程中,无扩散反应被认为是主要的还原机理。在等温退火过程中也激活了扩散转变,但作为二次回复机理。经历部分,不完全和完全回复转变的试样的力学行为演变表明,在650℃/ 180 s时发生部分回复的试样具有较低的加工硬化能力,这是由于扩散的回复稳定奥氏体相以及较高的α-马氏体组织。此外,比较不完全反向试样(在800℃/ 180 s退火)和完全反向完全重结晶(在1050℃/ 180 s退火)的工作硬化行为表明,前者具有较高的被应变诱发马氏体强化的潜力。由于存在较不稳定的奥氏体相,因此形成比后者少。但是,通过提高退火温度,合金的加工硬化能力和塑性持续增加。

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