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首页> 外文期刊>International Journal of Fatigue >Importance of local microstructure for damage tolerant light weight design of Ti-6Al-4V forgings
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Importance of local microstructure for damage tolerant light weight design of Ti-6Al-4V forgings

机译:局部组织对Ti-6Al-4V锻件耐损伤轻量化设计的重要性

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摘要

Forged parts made of titanium are generally used in aerospace industry, e.g. for engine mounts, pylon fitting and frame parts, housings, gear box components, engine disks and so on. To achieve damage tolerant together with light weight design of such parts the local microstructure resulting from thermomechan-ical treatment has to be considered. Therefore a new approach is introduced in this paper containing methodologies for the determination of local microstructural-based S/N-curves. They can be embedded in a lifetime prediction based on local stresses. Long crack growth and fatigue tests were performed on Ti-6Al-4V with different types of microstructures and distinct differences were found in respect of fatigue and crack propagation. It is shown that the microstructural parameters primary α-grain size and (α+β)-content dominate the fatigue behavior based on rotating bending S/N-curves whereas the long crack growth is mainly affected by primary α-grain size and connectivity of α-grains. In addition first results regarding characterization of crack initiation phase and short crack growth of mill-annealed Ti-6Al-4V are presented for clarification of the fatigue process in respect of microstructure.
机译:钛制成的锻造零件通常用于航空航天工业,例如用于发动机支架,塔架配件和车架零件,外壳,齿轮箱组件,发动机盘等。为了实现耐损伤性以及此类零件的轻量化设计,必须考虑由热机械处理产生的局部微观结构。因此,本文引入了一种新方法,其中包含用于确定基于局部微结构的S / N曲线的方法。可以将它们嵌入基于局部应力的寿命预测中。对具有不同类型的微观结构的Ti-6Al-4V进行了长时间的裂纹扩展和疲劳测试,发现在疲劳和裂纹扩展方面存在明显差异。结果表明,基于旋转弯曲S / N曲线的微观结构参数主要是α晶粒尺寸和(α+β)含量主导了疲劳行为,而长裂纹扩展主要受初始α晶粒尺寸和连接性的影响。 α-颗粒。此外,提出了关于裂纹萌生阶段和经过退火的Ti-6Al-4V的短裂纹扩展特征的初步结果,目的是从微观结构方面阐明疲劳过程。

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