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首页> 外文期刊>International Journal Cast Metals Research >Occurrence and behaviour of Mo containing precipitates in nodular cast iron at high temperatures
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Occurrence and behaviour of Mo containing precipitates in nodular cast iron at high temperatures

机译:球墨铸铁中高温下含Mo析出物的发生与行为

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摘要

In nodular cast iron, molybdenum is alloyed in the range of 0.5 to 1.5 wt.-% to increase the mechanical properties for high temperature application, especially for thick walled castings like housings of gas or steam turbines. The behaviour of Mo precipitates in the as cast state as well as under long exposure to heat was the object of this investigation. In the as cast state, Mo forms metastable carbidic grain boundary precipitates with iron, silicon and carbon. These transform into stable MoC precipitates during sustained temperature influence. Furthermore, there are finely dispersed Mo containing precipitates found in the matrix. These increase the high temperature strength of Mo alloyed cast iron due to the Orowan mechanism and the occurrence of additional grain boundaries. However, it has been shown that these Mo containing precipitates underlie Ostwald ripening under continuous heat exposure, and a precipitate free area occurs along the ferritic grain boundary.
机译:在球墨铸铁中,钼的合金含量在0.5至1.5 wt .-%的范围内,以提高高温应用的机械性能,特别是对于厚壁铸件(如燃气轮机或蒸汽轮机的壳体)。本研究的目的是在铸态以及长时间暴露于热的条件下,Mo的析出行为。在铸态下,Mo与铁,硅和碳形成亚稳态的碳化物晶界沉淀。在持续的温度影响下,这些转变成稳定的MoC沉淀。此外,在基体中发现有细分散的含钼沉淀物。由于Orowan机理和其他晶界的出现,这些增加了Mo合金铸铁的高温强度。然而,已经表明这些含Mo的沉淀物在连续的热暴露下是Ostwald熟化的基础,并且沿着铁素体晶界出现无沉淀物的区域。

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