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Investigation of steam oxidation behaviour of TP347H FG - Part 2: Exposure at 91 bar

机译:TP347H FG的蒸汽氧化行为研究-第2部分:91 bar的暴露

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Tube specimens of TP347FG were exposed in a test superheater loop in a biomass plant in Denmark. The specimens were exposed to surface metal temperatures in the range of 455-568 ℃, steam pressure of 91 bar and exposure duration of 3500 and 8700 hours. The oxide thickness and morphology was investigated using light optical and scanning electron microscopy. The oxide present on the specimens is a duplex oxide with an inner chromium rich oxide and an outer iron rich oxide. The inner oxide consisted of a primary iron chromium nickel oxide in the original alloy grain and a chromium rich oxide, "healing layer", at the grain boundaries. This gave the appearance of uneven inner oxide and it was clear that the varying subsurface grain size affected inner oxide thickness, especially after longer exposure times. Longer exposure times from 3500 to 8700 hours resulted in increased pit thickness. Comparison of pit thickness revealed that increase of temperature from 455 to 525 ℃ increases the oxidation rate, however a further increase in temperature did not result in thicker inner oxide presumably due to the formation of a better healing layer at grain boundaries. These results are compared with the previous paper where the pressure and temperature was higher. A thicker inner oxide is observed at the lower temperatures and pressures compared with higher temperatures and pressures. Reasons for this behaviour are discussed.
机译:TP347FG的试管样品在丹麦的一家生物质工厂的测试过热器回路中暴露。样品暴露在455-568℃的表面金属温度,91 bar的蒸汽压力下以及3500和8700小时的暴露时间下。使用光学和扫描电子显微镜研究了氧化物的厚度和形态。样品上存在的氧化物是具有内部富铬氧化物和外部富铁氧化物的双相氧化物。内部氧化物由原始合金晶粒中的原生铁铬镍氧化物和晶界处的富铬氧化物“修复层”组成。这产生了内部氧化物不均匀的外观,很明显,变化的表面下晶粒尺寸会影响内部氧化物的厚度,尤其是在较长的暴露时间之后。暴露时间从3500小时延长到8700小时,导致凹坑厚度增加。坑厚度的比较表明,温度从455升高到525℃会增加氧化速率,但是温度的进一步升高并没有导致较厚的内部氧化物,这可能是由于在晶界形成了更好的愈合层所致。将这些结果与压力和温度较高的先前论文进行了比较。与较高的温度和压力相比,在较低的温度和压力下观察到较厚的内部氧化物。讨论了此行为的原因。

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