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首页> 外文期刊>Journal of engineering for gas turbines and power: Transactions of the ASME >Application of stress relaxation testing in metallurgical life assessment evaluations of GTD111 alloy turbine buckets
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Application of stress relaxation testing in metallurgical life assessment evaluations of GTD111 alloy turbine buckets

机译:应力松弛试验在GTD111合金汽轮机铲斗冶金寿命评价中的应用

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摘要

Stress relaxation and constant displacement rate tensile tests were performed on polycrystalline GTD111 alloy material removed from General Electric MS6001B first stage combustion turbine buckets. Samples were examined in the standard heat treated condition, thermally exposed at 900℃ for 5000 hours and from service run buckets. Creep rates of the material were measured and evaluated directly in terms of temperature capability at 850℃ and 900℃. Stress relaxation tests done at 0.8 percent totalstrain indicated that the creep rate properties in the service exposed airfoil were an order of magnitude higher than the material properties in the standard heat treated condition measured in the root form. In terms of temperature capability, the creeprate properties of the service run airfoil material had decreased by the equivalent of almost 40℃. The stress relaxation test method was demonstrated to be a very useful tool in quantifying the degradation of creep properties in service run components.Creep data that would require years to gather using conventional creep tests was generated in a few days. This now makes realistic life assessment and repair/replace decisions possible during turbine overhauls. The test method's unique ability to measurechanges in creep rate over a large stress range, enabled the technique to distinguish between changes in creep strength due to (normal) microstructural evolution from the combined effects of microstructural evolution and strain related creep damage. Amethod for estimating standard constant load creep rupture life from the stress relaxation creep rate data is also presented along with time-temperature parameter correlations. The data sets examined in this study indicate that creep rupture lives can beestimated within a factor of three from the stress relaxation data. The information and analysis techniques described in this paper are directly applicable to metallurgical lije assessment evaluations and the requalification of repaired General Electricbuckets in Frame 3, 5, 6, 7, and 9 engine models.
机译:对从通用电气MS6001B第一级燃气轮机铲斗中取出的多晶GTD111合金材料进行了应力松弛和恒定位移率拉伸试验。样品在标准热处理条件下进行检查,在 900°C 下热暴露 5000 小时,并从服务运行铲斗中检测。在850°C和900°C的温度能力方面直接测量和评估材料的蠕变率。在0.8%的总应变下进行的应力松弛试验表明,暴露在外翼型中的蠕变率特性比在根部形式中测量的标准热处理条件下的材料特性高一个数量级。在耐温能力方面,服役翼型材料的爬行率特性下降了近40°C。应力松弛试验方法被证明是量化服务运行组件蠕变性能退化的非常有用的工具。使用传统的蠕变测试需要数年时间才能收集的蠕变数据在几天内生成。现在,这使得在涡轮机大修期间进行实际的寿命评估和维修/更换决策成为可能。该测试方法具有在大应力范围内测量蠕变速率变化的独特能力,使该技术能够区分由于(正常)微观结构演变引起的蠕变强度变化与微观结构演变和应变相关蠕变损伤的综合效应。此外,还提出了一种根据应力松弛蠕变速率数据估算标准恒载蠕变断裂寿命的方法以及时间-温度参数相关性。本研究检查的数据集表明,蠕变破裂寿命可以从应力松弛数据的三倍内估计。本文所述的信息和分析技术直接适用于冶金评估评估和修理后的通用电气铲斗的 3、5、6、7 和 9 号机型的重新鉴定。

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