首页> 外文会议>PRICM 7;Pacific Rim International Conference on Advanced Materials and Processing >An Investigation on Precipitation Behaviour of Cu-Rich Phase in Super304H Heat-Resistant Steel by Three Dimensional Atom Probe
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An Investigation on Precipitation Behaviour of Cu-Rich Phase in Super304H Heat-Resistant Steel by Three Dimensional Atom Probe

机译:三维原子探针研究Super304H耐热钢中富Cu相的析出行为

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Super304H, a Cu-containing 18Cr-9Ni-3CuNbN heat-resisting steel is wildly used as an superheater/reheater tube material for ultra-super-critical (USC) power plants all over the world. It is recognized that the Cu-rich phase is an important strengthening phase for Super304H. However, the detail precipitation behaviour and its strengthening effect are still not very clear. Investigated material was taken from routine production and was aged at 650°C for different times. The precipitation of Cu-rich phase in Super304H was studied by three dimensional atom probe (3DAP) and TEM. Experimental results show that Cu-rich clusters have been formed at very early stage of 650°C aging. The Cu-rich particle images have been clearly caught just after 650°C aging for 5h. The Cu atoms gradually concentrate to Cu-rich particles and the other elements (such as Cr, Ni etc) diffuse away from Cu-rich particles to γ-matrix with the increasing of aging time. The Cu-rich particle size and its density have been determined as a function of aging time. Cu-rich particles still keep nano-size and distribute homogenously in grains even after long time (1,000h) aging, which is one of the most important reasons for keeping good strength of Super304H heat-resistant steel at high temperatures.
机译:Super304H是一种含铜的18Cr-9Ni-3CuNbN耐热钢,被广泛用作全世界超超临界(USC)发电厂的过热器/再热器管材。公认的是,富铜相是Super304H的重要强化相。但是,具体的降水行为及其强化效果还不是很清楚。被调查的材料取自常规生产,并在650°C下老化了不同的时间。用三维原子探针(3DAP)和透射电镜研究了Super304H中富Cu相的析出。实验结果表明,富含铜的团簇已经在650°C老化的早期形成。 650°C老化5h后,清晰地捕获到了富含Cu的颗粒图像。随着时效时间的增加,Cu原子逐渐富集到富Cu颗粒,其他元素(如Cr,Ni等)从富Cu颗粒扩散到γ-基体。已经确定了富Cu颗粒的尺寸及其密度与时效时间的关系。即使长时间(1,000h)时效后,富铜颗粒仍保持纳米尺寸并均匀地分布在晶粒中,这是在高温下保持Super304H耐热钢良好强度的最重要原因之一。

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