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Regression Study on Variables Affecting Vibration Fatigue Behavior of Additive Manufactured Titanium 6AI-4V

机译:添加剂制造的钛6AI-4V振动疲劳行为变量的回归研究

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This discovery type experiment was intended to inspect the vibration fatigue behavior of Laser Powder Bed Fusion (LPBF) Titanium (Ti) 6A1-4V hybrid bending specimens as a function of four parameters: stress amplitude; build type; geometric variation; and surface roughness. These specimens were additively manufactured (AM) with relatively limited disclosure of process parameters but underwent post-fusion treatments of solution heat treatment (SHT), aging, and hot isostatic pressing (HIP), all critical processes to ensure granular uniformity and consistent material strength. Also, specimens were built three distinct ways to assess the effect of build orientation and size. The aerospace industry's interest in using AM parts to improve performance of small scale gas turbine engines was the motivation of this study. Based on the test results in this investigation, the assumption that the material properties of LPBF parts are the same as conventionally made components presents the risk of unacceptably unpredictable fracture behavior, which can quickly lead to disastrous events in turbine engines. The experiment was intended to improve understanding of the effects of stress amplitude; build type; geometric variation; and surface roughness on vibration fatigue to better predict behavior.
机译:此发现类型的实验旨在检查激光粉末床熔合(LPBF)钛(Ti)6A1-4V混合弯曲试样的振动疲劳行为与四个参数的关系:建造类型;几何变化和表面粗糙度。这些样品是通过增材制造(AM)进行的,工艺参数的披露相对有限,但是经过了固溶热处理(SHT),时效和热等静压(HIP)的融合后处理,所有关键过程均能确保颗粒均匀性和一致的材料强度。此外,还通过三种不同的方式构建了标本,以评估构建方向和尺寸的影响。航空航天业对使用增材制造零件来改善小型燃气涡轮发动机性能的兴趣是本研究的动机。根据这项研究中的测试结果,假设LPBF零件的材料特性与常规制造的零件相同,则存在出现无法接受的无法预测的断裂行为的风险,这会迅速导致涡轮发动机发生灾难性事件。该实验旨在增进对应力振幅影响的理解。建造类型;几何变化以及表面粗糙度对振动疲劳的影响,以更好地预测行为。

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