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A dataset for the development, verification, and validation of microstructure-sensitive process models for near-alpha titanium alloys

机译:用于开发,验证和确认近α钛合金的微结构敏感工艺模型的数据集

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摘要

Near-alpha titanium alloys are used for moderate-temperature applications in the early stages of the compressor in gas turbine engines. The quasi-static and fatigue properties of these alloys depend heavily on microstructure due to the absence of hard second phases and inclusions which can nucleate voids or cracks. Moreover, these alloys are known to exhibit a significant reduction in fatigue life when subjected to high mean stress or upon the application of dwell-fatigue cycles. Previous analysis has elucidated the microstructural features that drive these properties; the most important features are the volume fraction, size, and shape of clusters of similarly oriented alpha particles or microtextured regions (MTRs). To date, there have been few efforts to elucidate in a quantitative fashion the evolution of MTRs during thermomechanical processing (TMP). To meet this need, we have performed hot-compression tests on Ti-6Al-2Sn-4Zr-2Mo-0.1Si billet material with high-aspect-ratio MTRs at 0°, 45°, and 90° to the direction of primary metal flow during manufacture (i.e., the billet axis), thoroughly characterized the initial and final microstructures, and quantified field variables via finite-element method (FEM) process simulations for each experiment. These data can be used for a variety of purposes including the development, verification, and validation of models for microstructure/texture/microtexture evolution and defect formation.
机译:在燃气涡轮发动机压缩机的早期阶段,近阿尔法钛合金用于中等温度应用。这些合金的准静态和疲劳性能在很大程度上取决于微观结构,这是由于缺少坚硬的第二相和夹杂物,这些夹杂物会使空洞或裂纹成核。此外,已知这些合金在承受高平均应力时或在施加保疲劳循环时会显着降低疲劳寿命。先前的分析已经阐明了驱动这些特性的微观结构特征。最重要的特征是类似取向的α粒子或微纹理区域(MTR)的簇的体积分数,大小和形状。迄今为止,很少有努力以定量方式阐明热机械加工(TMP)过程中MTR的演变。为了满足这一需求,我们对Ti-6Al-2Sn-4Zr-2Mo-0.1Si坯料进行了热压缩试验,其高纵横比的MTR相对于原始金属方向为0°,45°和90°制造过程中的流动(即坯料轴),通过每个实验的有限元方法(FEM)过程仿真,彻底表征了初始和最终的微观结构,并量化了现场变量。这些数据可用于多种目的,包括开发,验证和验证用于微观结构/纹理/微观纹理演变和缺陷形成的模型。

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