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Microstructural and Very High Cycle Fatigue (VHCF) Behavior of Ti6Al4V—A Comparative Study

机译:Ti6Al4V的微结构和超高循环疲劳(VHCF)行为—对比研究

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摘要

In this study, an investigation is carried out to evaluate and compare the material and physical properties of Grade 5 Titanium alloy (Ti6Al4V G5) samples of three different impeller manufacturers. The study aims to identify the efficient impeller core material from different Ti6Al4V G5 manufacturers. Ultrasonic fatigue test for Ti6Al4V samples of 100 horsepower (hp) centrifugal compressor impeller parts is performed before and after heat treatment. The effect of microstructure on Very High Cycle Fatigue (VHCF) behavior of Ti6Al4V is also analyzed and discussed in detail. Optical Microscopy (OM) and Scanning Electron Microscopy (SEM) observation are carried out to investigate the microstructure of different Ti6Al4V material samples. The dynamic elastic properties are measured by the Impulse Excitation Technique (IET) at room temperature. The fracture behavior of the tensile specimens is analyzed by SEM. Post-heat-treatment analysis of Ti6Al4V is also carried out and presented which affects the grain size of the material sample and thus considerable effect in the mechanical properties. Chemical composition investigation of Ti6Al4V using SEM and Energy Dispersive X-ray Spectroscopy (EDS) also included in this study.
机译:在这项研究中,进行了一项调查,以评估和比较三个不同叶轮制造商的5级钛合金(Ti6Al4V G5)样品的材料和物理性能。该研究旨在确定来自不同Ti6Al4V G5制造商的高效叶轮芯材料。在热处理前后,对100马力(hp)离心压缩机叶轮零件的Ti6Al4V样品进行超声疲劳测试。微观结构对Ti6Al4V的超高循环疲劳(VHCF)行为的影响也进行了分析和详细讨论。进行了光学显微镜(OM)和扫描电子显微镜(SEM)观察,以研究不同Ti6Al4V材料样品的微观结构。动态弹性性能是在室温下通过脉冲激励技术(IET)测量的。通过SEM分析拉伸试样的断裂行为。还进行了Ti6Al4V的热处理后分析,该分析会影响材料样品的晶粒尺寸,从而影响机械性能。这项研究还包括使用SEM和能量色散X射线光谱法(EDS)研究Ti6Al4V的化学成分。

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