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LCF on turbogenerator rotors and coil retaining rings: material characterization and sensitivity analyses

机译:涡轮发电机转子和线圈固定环上的LCF:材料表征和灵敏度分析

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Turbogenerator rotors and coil retaining rings (CRRs) are highly loaded components typically subjected to LCF at any machine switch-on and switch-off. The present study aims at LCF characterization of two widely applied steels, 26 NiCrMoV 14 5 (for rotor manufacturing) and 18Mn18Cr (for CRR). Material anisotropy is also considered by performing an extended experimental campaign on specimens machined along different (tangential and radial) directions from trial components. The experimental tests, carried out with the use of a novel testing-constraining device for misalignment auto-compensation and with an original methodology for strain controlling, led to the determination of static, cyclic and fatigue curves for all the investigated cases. The research was completed by sensitivity analyses on the adopted models, thus determining fatigue curve tolerance bands, and by a statistical Analysis of Variance to compare the LCF performance of the different materials along the two considered machining directions. Results showed a significantly better performance of 18Mn18Cr and a weak anisotropy effect, remarkable just at the highest strain values, on a reduced portion of the LCF life range.
机译:汽轮发电机转子和线圈固定环(CRR)是高负荷组件,通常在任何机器接通和断开时都会受到LCF的影响。本研究旨在对两种广泛应用的钢(转子制造中的26 NiCrMoV 14 5和CRR中的18Mn18Cr)进行LCF表征。还可以通过对沿与试验部件不同(切向和径向)方向加工的样品进行扩展的实验,来考虑材料的各向异性。实验测试是使用新颖的测试约束设备进行失准自动补偿,并使用原始的应变控制方法进行的,从而确定了所有调查案例的静态,循环和疲劳曲线。通过对采用的模型进行灵敏度分析,从而确定疲劳曲线公差带,并通过方差统计分析来比较不同材料沿两个考虑的加工方向的LCF性能,从而完成了该研究。结果表明,在降低了LCF寿命的情况下,18Mn18Cr的性能显着提高,各向异性效应很弱,仅在最高应变值时才显着。

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