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EFFECT OF THE MICROSTRUCTURE ON THE DEFORMATION AND FATIGUE DAMAGE IN A GAMMA-TiAl PRODUCED BY ADDITIVE MANUFACTURING

机译:显微组织对添加剂制造γ-钛合金变形和疲劳损伤的影响

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摘要

In order to design efficient and light components for the gas turbine engine industry, new design criteria are needed for the application of gamma titanium aluminide alloys to safety critical components. In particular, novel manufacturing processes to produce γ-TiAl alloys require investigating the influence of the microstructure in the local damage accumulation processes. In this work, the fatigue properties of a Ti-48Al-2Cr-2Nb alloy produced by additive manufacturing with Electron Beam Melting were examined by performing FCG and HCF tests at room and high temperature, in order to study the behavior of small cracks. By conducting additional monotonic and fatigue experiments, full-field residual strain maps were obtained by means of high-resolution Digital Image Correlation. High local residual inelastic strains were measured inside lamellar colonies, which are detected as the precursor to crack initiation, providing valuable information on the role of the intermetallic phases on the deformation and fatigue damage behavior of gamma-TiAl alloys.
机译:为了设计用于燃气涡轮发动机行业的高效轻质部件,需要新的设计标准,以将γ-钛铝化物合金应用于安全关键部件。特别是,用于生产γ-TiAl合金的新颖制造工艺需要研究微观结构在局部损伤累积工艺中的影响。在这项工作中,通过在室温和高温下进行FCG和HCF测试,检查了通过电子束熔化增材制造的Ti-48Al-2Cr-2Nb合金的疲劳性能,以研究小裂纹的行为。通过进行额外的单调和疲劳实验,借助高分辨率数字图像相关性获得了全场残余应变图。在层状菌落中检测到高局部残余非弹性应变,这些应变被检测为裂纹萌生的前兆,提供了有关金属间相对γ-TiAl合金变形和疲劳损伤行为的作用的有价值的信息。

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