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Tensile, Low Cycle Fatigue, and Very High Cycle Fatigue Characterizations of Advanced Single Crystal Nickel-Based Superalloys

机译:高级晶体镍高温合金的拉伸,低循环疲劳和非常高的循环疲劳特性

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Tensile and fatigue life variabilities are investigated for new-generation single crystal Ni-based superalloys: the 3rd generation CMSX-4 Plus, the 6th generation TMS-238, and a newer Ni-based superalloy, TROPEA containing Pt. Consistently from the results of previous research, very high cycle fatigue (VHCF) properties at the chosen condition of T = 1000°C/R_ε = -1/f= 20 kHz are mainly influenced by the solidification/homogenization pore size and position. TROPEA alloy has the best low cycle fatigue (LCF) life among all tested alloys at 650°C and R_σ = 0.05/f= 0.5 Hz. To better understand the influence of chemical composition on the LCF endurance, tensile properties were investigated using nine different single crystalline alloys at 650°C with the strain rate of 5 × 10~(-4) s~(-1). The yield stress is directly affected by the chemical composition of the Ni-based superalloys, and alloys with high contents of Ti and Ta have a higher yield stress, due to an increased shearing resistance of γ' precipitates. Hence, the yield stress is the main control parameter of LCF at the selected condition. No influence of chemical composition on VHCF life durability has been observed, in good agreement with previous studies.
机译:对新一代单晶Ni的高温合金研究了拉伸和疲劳寿命变性:第3代CMSX-4加,第6代TMS-238和含有PT的新型Ni的高温合金。从先前研究的结果一致,在T = 1000℃/r_ε= -1 / f = 20kHz的所选条件下非常高的周期疲劳(VHCF)性质主要受凝固/均质化孔径和位置的影响。 Tropea合金在650°C和R_σ= 0.05 / f = 0.5Hz的所有测试合金中具有最佳的低循环疲劳(LCF)寿命。为了更好地了解化学成分对LCF耐久性的影响,在650℃下使用九种不同的单晶合金研究了拉伸性能,其中应变率为5×10〜(-4)S〜(-1)。屈服应力由Ni基超合金的化学组​​成直接影响,并且由于γ'沉淀物的剪切抗性增加,具有高含量的Ti和Ta的合金具有更高的屈服应力。因此,屈服应力是所选条件下LCF的主控制参数。没有对先前研究的一致性观察到化学成分对VHCF寿命耐久性的影响。

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