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As-Built Geometry and Surface Finish Effects on Fatigue and Tensile Properties of Laser Fused Titanium 6AI-4V

机译:初生几何形状和表面光洁度对激光熔融钛6AI-4V疲劳和拉伸性能的影响

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The as-built material behavior of additive manufactured (AM) Titanium (Ti) 6A1-4V is investigated in this study. A solution heat treated, aged, stress relieved, and hot isostatic pressed Laser Powder Bed Fusion (LPBF) AM process was used to manufacture the specimens of interest. The motivation behind this work is based on the ever-growing desire of aerospace system designers to use AM to fabricate components with novel geometries. Specifically, there is keen interest in AM components with complex internal cooling configurations such as turbine blades, nozzle vanes, and heat exchangers that can improve small scale propulsion performance. Though it is feasible to three-dimensionally print parts that meet the Fit portion of a part characteristic description and identification, the Form and Function portions have proven to be more difficult to conquer. This study addresses both the Form and Function characteristics of the LPBF AM process via the investigation of geometry variation and surface roughness effects pertaining to mechanical properties and fatigue behavior of Ti 6A1-4V. Results show that geometry variation may be the cause of increased vibration fatigue life uncertainty. Also, both fatigue and tensile properties show profound discrepancies associated with surface finish. As-built surface finish specimens have lower fatigue and ductility performance, but the results are more consistent than polished data.
机译:在这项研究中研究了增材制造的(AM)钛(Ti)6A1-4V的建成材料性能。使用溶液热处理,时效,应力消除和热等静压的激光粉末床熔合(LPBF)AM工艺来制造目标样品。这项工作的动机基于航空航天系统设计人员对使用AM来制造具有新颖几何形状的部件的不断增长的需求。具体而言,人们对具有复杂内部冷却配置(例如涡轮叶片,喷嘴叶片和热交换器)的AM组件非常感兴趣,这些组件可以改善小规模的推进性能。尽管三维打印满足零件特征描述和标识的“适合”部分的零件是可行的,但事实证明,“形式”和“功能”部分更难于征服。这项研究通过研究与Ti 6A1-4V的机械性能和疲劳行为有关的几何变化和表面粗糙度影响,探讨了LPBF AM工艺的形式和功能特性。结果表明,几何变化可能是增加振动疲劳寿命不确定性的原因。同样,疲劳性能和拉伸性能均显示出与表面光洁度相关的巨大差异。竣工的表面光洁度标本具有较低的疲劳度和延展性,但结果比抛光数据更一致。

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