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Tensile creep behavior and strain-rate sensitivity of superalloy GH4049 at elevated temperatures

机译:高温下高温合金GH4049的拉伸蠕变行为和应变率敏感性

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摘要

According to the working temperature and load of superalloy GH4049 in an aero-engine, we systematically study its high temperature mechanical behaviors that have crucial effects on component life. Creep tests are performed in the stress range of 137-600 MPa and the temperature range of 700-900 ℃ The strain-rate sensitivities (SRSs) under simple tension, fatigue and creep conditions are also analyzed in detail at 600℃, 768 ℃ and 832 C, the working temperatures at typical positions on the turbine blade. Through creep experiments of GH4049 under single- and multistage loading conditions, we obtain the relationship between the minimum creep rate and the rupture time, the effect of high temperature strain recovery after creep and the effect of warm-working at high temperatures on the subsequent room-temperature strength. In the SRS analysis, we achieve the SRS indexes under different experimental conditions. Meanwhile, we generalize the SRS definition from simple tension to low-cycle fatigue (LCF) and multistage creep conditions, and verify the validity of these generalizations. The verifications illustrate that the SRS definitions in this paper can quantitatively describe the strain-rate dependence behaviors under LCF and multistage creep. All these fundamental works establish the basis of complex mechanical behavior simulations for GH4049 and the basis of the analysis of structural integrity and reliability.
机译:根据航空发动机GH4049的工作温度和负载,我们系统地研究了其对零件寿命产生关键影响的高温机械性能。在137-600 MPa的应力范围和700-900℃的温度范围内进行了蠕变测试。还详细分析了在简单的拉伸,疲劳和蠕变条件下的应变率敏感性(SRS),分别在600℃,768℃和832 C,是涡轮叶片上典型位置的工作温度。通过GH4049在单阶段和多阶段载荷条件下的蠕变实验,我们得到了最小蠕变率与断裂时间,蠕变后高温应变恢复的影响以及高温下的热加工对随后房间的影响之间的关系。温度强度。在SRS分析中,我们获得了不同实验条件下的SRS指标。同时,我们将SRS定义从简单拉力到低周疲劳(LCF)和多阶段蠕变条件进行了概括,并验证了这些概括的有效性。验证表明,本文中的SRS定义可以定量描述LCF和多级蠕变下的应变率依赖性行为。所有这些基础工作为GH4049的复杂机械行为仿真奠定了基础,并为结构完整性和可靠性分析奠定了基础。

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