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SCALE ADHESION, SULFUR CONTENT, AND TBC FAILURE ON SINGLE CRYSTAL SUPERALLOYS

机译:单晶高温合金的结垢,硫含量和TBC失效

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The scale adhesion of single crystal superalloys was studied as a function of sulfur content. Cyclic oxidation tests of as-received PWA 1480 (6 ppmw S) at 1100℃ resulted in severe scale spallation and produced weight losses of >30 mg/cm~2 after 500 1 -h cycles. However, samples desulfurized by hydrogen annealing (<0.1 ppmw S) produced adherent scales and weight gains of only ~1 mg/cm~2 after 1000 1-hr cycles. Similar data, obtained as a function of intermediate sulfur contents, were used to construct an adhesion map, ultimately suggesting a critical sulfur content equivalent to ~1 monolayer of total interfacial segregation potential. Rene'N5, desulfurized by hydrogen annealing (<0.01 ppmw S), produced adherent scales and weight gains of ~1 mg/cm~2 after oxidation at 1150℃ for 1000 1-h cycles as compared to a loss of 40 mg/cm~2 for as-received samples. Hydrogen annealing also improved scale adhesion for alloys doped with Y (15-100 ppmw), without removing sulfur, but perhaps due to decarburization. Similar overall compositional effects were exhibited in water immersion-induced spallation tests. A critical Y/S ratio for adhesion was indicated to be ~1:1 atomic, or 3:1 by weight. PWA 1484 (1.2 ppmw S) was also improved by hydrogen annealing (0.01 ppmw S) or melt desulfurization (0.25 ppmw S). The cyclic furnace life at 1100℃ for 250 μm thick PS-8YSZ TBC's on PWA 1484, without a bond coat, was improved accordingly from ~20 h to 600-800 h. Life was further extended to > 2000 h by geometric modifications that avert standard edge delamination and buckling failure modes.
机译:研究了单晶高温合金的水垢附着力与硫含量的关系。最初的PWA 1480(6 ppmw S)在1100℃下的循环氧化测试导致严重的氧化皮剥落,经过500个1 h循环后,重量损失> 30 mg / cm〜2。然而,经过1000次1小时循环后,通过氢退火(<0.1 ppmw S)脱硫的样品产生了附着的水垢,重量增加仅为〜1 mg / cm〜2。根据中间硫含量的函数获得的相似数据被用于构建粘附图,最终表明临界硫含量等于总界面偏析电位的〜1个单层。 Rene'N5经氢退火(<0.01 ppmw S)脱硫,在1150℃氧化1000个1-h循环后产生附着的水垢和重量增加〜1 mg / cm〜2,而损失为40 mg / cm接收到的样本为〜2。氢退火还改善了掺Y(15-100 ppmw)合金的氧化皮附着力,但没有去除硫,但这可能是由于脱碳所致。在水浸诱导的散裂试验中表现出相似的总体组成效果。粘附的临界Y / S比为〜1:1原子或3:1重量。 PWA 1484(1.2 ppmw S)也通过氢退火(0.01 ppmw S)或熔融脱硫(0.25 ppmw S)得到改善。 PWA 1484上无粘结涂层的250μm厚PS-8YSZ TBC在1100℃时的循环炉寿命从约20 h提高到600-800 h。通过避免标准边缘分层和屈曲破坏模式的几何修改,使用寿命进一步延长至> 2000 h。

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