首页> 外文会议>Advances in Materials Technology for Fossil Power Plants >Improvement of Long Time Creep Rupture Properties of High WCoB containing 12Cr Rotor Steels for use at 650°C in USC Power Plants
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Improvement of Long Time Creep Rupture Properties of High WCoB containing 12Cr Rotor Steels for use at 650°C in USC Power Plants

机译:USC电厂在650°C下使用的含12Cr转子钢的高WCoB的长期蠕变断裂性能的改善

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A new 12%Cr rotor material has been studied for application in future high-efficiency ultra supercritical pressure steam (USC) power plants designed to operate at 650°C steam temperature while protecting the natural environment and fossil fuel reserves. At steam temperatures exceeding 600°C, conventional 12%Cr steels are not expected to be used as rotor material due to their low creep rupture strength and deterioration of their long-time creep rupture properties. A new WCoB12%Cr steel based on our past research has been developed recently. Both 20 and 80-ton trial rotor shafts were forged and tested especially for their long-time creep rupture properties. Addition of W, Co and B to the steel improved its creep rupture strength at elevated temperatures, while reduction of Ni and Al impurities suppressed deterioration of long time creep rupture properties at about 650°C. These results showed that the new steel has satisfactory properties to be a candidate material for turbine rotor shafts of 650°C-steam generating USC power plants.
机译:研究了一种新型12%Cr转子材料,该材料可用于未来的高效超超临界压力蒸汽(USC)电厂,这些电厂设计为在650°C的蒸汽温度下运行,同时保护自然环境和化石燃料储备。在蒸汽温度超过600°C的情况下,由于常规的12%Cr钢蠕变断裂强度低且长期蠕变断裂性能下降,因此不能用作转子材料。最近根据我们过去的研究开发了一种新的WCoB12%Cr钢。特别是对20吨和80吨的试验转子轴进行了锻造和测试,它们具有长期的蠕变断裂特性。向钢中添加W,Co和B可提高其在高温下的蠕变断裂强度,而减少Ni和Al杂质可抑制约650°C的长时间蠕变断裂性能的下降。这些结果表明,这种新钢具有令人满意的性能,可作为650°C蒸汽产生的USC电厂的涡轮机转子轴的候选材料。

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