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Fatigue Behavior of Porous Ti-6Al-4V Made by Laser-Engineered Net Shaping

机译:激光工程网成形的多孔Ti-6Al-4V的疲劳行为

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摘要

The fatigue behavior and fracture mechanisms of additively manufactured Ti-6Al-4V specimens are investigated in this study. Three sets of testing samples were fabricated for the assessment of fatigue life. The first batch of samples was built by using Laser-Engineered Net Shaping (LENS) technology, a Direct Energy Deposition (DED) method. Internal voids and defects were induced in a second batch of samples by changing LENS machine processing parameters. Fatigue performance of these samples is compared to the wrought Ti-6Al-4V samples. The effects of machine-induced porosity are assessed on mechanical properties and results are presented in the form of SN curves for the three sets of samples. Fracture mechanisms are examined by using Scanning Electron Microscopy (SEM) to characterize the morphological characteristics of the failure surface. Different fracture surface morphologies are observed for porous and non-porous specimens due to the combination of head write speed and laser power. Formation of defects such as pores, unmelted regions, and gas entrapments affect the failure mechanisms in porous specimens. Non-porous specimens exhibit fatigue properties comparable with that of the wrought specimens, but porous specimens are found to show a tremendous reduced fatigue strength.
机译:本研究研究了增材制造的Ti-6Al-4V试样的疲劳行为和断裂机理。制造了三组测试样品以评估疲劳寿命。使用激光工程净成形(LENS)技术(直接能量沉积(DED)方法)构建了第一批样品。通过更改LENS机器加工参数,在第二批样品中引起内部空隙和缺陷。将这些样品的疲劳性能与变形的Ti-6Al-4V样品进行比较。评估了机器引起的孔隙度对机械性能的影响,并以SN曲线的形式显示了三组样品的结果。通过使用扫描电子显微镜(SEM)来检查断裂机理,以表征破坏表面的形态特征。由于磁头写入速度和激光功率的结合,对于多孔和非多孔样品观察到了不同的断裂表面形态。孔,未融化区域和气体滞留等缺陷的形成会影响多孔试样的破坏机理。无孔试样的疲劳性能与锻造试样相当,但发现多孔试样的疲劳强度大大降低。

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