固定式燃气轮机组燃气轮机和轴向压缩机转子叶片的结构耐久性台架试验

IF 0.9 Q4 ENERGY & FUELS
S. N. Gavrilov, N. Yu. Isakov, A. V. Sandovskii, N. I. Fokin, N. O. Simin, O. V. Romanova
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引用次数: 0

摘要

转子叶片的结构耐久性测试是完善新开发的燃气轮机组(GTU)叶片系统的最重要阶段。获得叶片结构耐久(疲劳)极限值后,设计人员就可以评估 GTU 叶片系统的振动可靠性。实验数据还为验证叶片的计算模型提供了机会。动力机械公司的专家目前正在开发一系列新型 GTU,其中包括 GTE-170 燃气轮机组。根据原始设备设计文件制造的 GTE-170 机组轴向压缩机和燃气轮机转子叶片,目前正在 TsKTI 研究与生产协会 (NPO) 的疲劳试验台上进行结构耐久性研究。在试验台上,通过在叶片尖端周围区域施加变频电磁场来激发叶片振动。根据粘贴在最大振动应力区的应变片的读数,确定叶片的结构耐久极限。在支架上对 14 级轴向压缩机和 4 级燃气轮机中使用的 300 多个叶片进行了疲劳测试。结果数据显示,GTE-170 机组轴向压缩机和燃气轮机的转子叶片具有很高的振动可靠性。根据对比疲劳试验的结果,确定了更换钢种和重新设计叶片外形对其振动强度的影响。台架试验结果证实,有必要对新开发和更新的叶片在更换材料和重新设计外形时的结构耐久性进行实验研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Structural Endurance Stand Tests of the Gas Turbine and Axial Compressor Rotor Blades of Stationary Gas Turbine Units

Structural Endurance Stand Tests of the Gas Turbine and Axial Compressor Rotor Blades of Stationary Gas Turbine Units

Structural endurance testing of rotor blades is the most important stage of perfecting newly developed blade systems for gas turbine units (GTUs). Obtaining the values of a blade’s structural endurance (fatigue) limit allows designers to evaluate the vibration reliability of a GTU’s blade system. Experimental data also provide an opportunity to verify calculated models of blades. Specialists at the Power Machines company are now working on a line of new GTUs that includes the GTE-170 gas turbine unit. The rotor blades of the GTE-170 unit’s axial compressor and gas turbine, manufactured according to original equipment design documents, are currently being studied for structural endurance on the TsKTI Research and Production Association (NPO) fatigue testing stand. Blade vibration is excited on the stand by applying a variable-frequency electromagnetic field to the area around the tip of a blade. The blade’s limit of structural endurance is determined proceeding from the readings from strain gauges glued in the zones of maximum vibration stresses. Fatigue tests of more than 300 blades used in 14 stages of axial compressors and four gas turbine stages have been run on the stand. The resulting data show that the rotor blades of the GTE-170 unit’s axial compressor and gas turbine have high vibration reliability. Based on results from comparative fatigue tests, it has been determined how replacing the grade of steel and redesigning a blade’s profile affect its vibrational strength. Stand test results have confirmed the need to perform experimental studies of the structural endurance of both newly developed and updated blades when changing their material and redesigning their profiles.

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CiteScore
1.30
自引率
20.00%
发文量
94
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