首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >COMPARISON OF NI-BASED 625 ALLOY AND ATI 20-25+NB™ STAINLESS STEEL FOILS AFTER LONG-TERM EXPOSURE TO GAS TURBINE ENGINE EXHAUST
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COMPARISON OF NI-BASED 625 ALLOY AND ATI 20-25+NB™ STAINLESS STEEL FOILS AFTER LONG-TERM EXPOSURE TO GAS TURBINE ENGINE EXHAUST

机译:长期暴露于燃气轮机发动机后基于NI的625合金与ATI 20-25 + NB™不锈钢箔的比较

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A field test program to validate the high temperature oxidation resistance of the ATI 20-25+Nb™ alloy in a Solar Turbines Incorporated Mercury™ 50 gas turbine engine has exceeded 66,000 operating hours. The primary goal of this program is to assess the effect of the actual recuperator operating environment on the high temperature degradation of primary surface recuperator (PSR) materials. As PSRs are generally fabricated from thin foil materials, excessive degradation can cause perforation or collapse, leading to decreased performance or failure. To avoid such issues, PSRs are generally fabricated from highly-alloyed austenitic stainless steels or nickel-base superalloys. This field test program evaluates and compares the long-term performance of the iron-based austenitic ATI 20-25+Nb™ stainless steel (UNS S3 5140) with the more highly alloyed nickel-based 625 alloy (UNS N06625) in an in-situ turbine exhaust environment. Sub-size air cell samples of alloy 625 and ATI 20-25+Nb™ alloy, exposed for 66,000 hours (running time) in turbine exhaust, were removed and tested for materials characterization. Analysis showed that both alloys exhibit excellent long-term resistance to environmental degradation, even after service exposures equivalent to over 7.5 years.
机译:用于验证Solar Turbines Incorporated Mercury™50燃气涡轮发动机中ATI 20-25 + Nb™合金的高温抗氧化性的现场测试程序已超过66,000个工作小时。该程序的主要目标是评估实际换热器运行环境对一次表面换热器(PSR)材料高温降解的影响。由于PSR通常是由薄箔材料制成的,因此过度降解会导致穿孔或塌陷,从而导致性能下降或故障。为避免此类问题,PSR通常由高合金奥氏体不锈钢或镍基高温合金制成。该现场测试程序评估并比较了铁基奥氏体ATI 20-25 + Nb™不锈钢(UNS S3 5140)与合金化程度更高的镍基625合金(UNS N06625)的长期性能。涡轮机原位排气环境。去除了在涡轮机排气中暴露了66,000小时(运行时间)的625合金和ATI 20-25 + Nb™合金的小尺寸空气室样品,并进行了材料表征测试。分析表明,即使在使用了7.5年以上之后,这两种合金仍具有出色的长期耐环境降解性。

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