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An Efficient Test Method for the Quantification of Technology- Dependent Factors Affecting the Fatigue Behavior of Metallic Additive Manufacturing Components

机译:用于量化影响金属添加剂制造部件疲劳行为的技术依赖性因素的高效试验方法

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Powder bed fusion (PBF) is the most widely used additive manufacturing (AM) technology for producing high-performance metal parts. The fatigue characterization of PBF metals is a fundamental step toward technology acceptance for structural applications. Most published fatigue characterizations have adopted standard specimens with machined gage sections, although, to be competitive with conventional technologies, machining of PBF parts should be minimized. Therefore, the impact of the as-built surface quality on the fatigue performance of PBF parts is a major concern for part design and qualification. We describe a novel testing approach that adopts miniature specimens and plane cyclic bending for the fatigue characterization of as-built PBF metals and assess this approach for the case of a Ti6AI4V alloy against data obtained with standard specimen geometries and test methods. The role of factors such as stress versus build directionality, geometrical notches, and PBF technology on the high-cycle fatigue of Ti6AI4V is then quantified. The proposed method is cost-effective and has flexible applicability. Therefore, it is useful for basic fatigue research of PBF metals and for supporting the qualification of fatigue-critical PBF parts.
机译:粉床融合(PBF)是生产高性能金属部件的最广泛使用的添加剂制造(AM)技术。 PBF金属的疲劳表征是对结构应用的技术验收的基本步骤。大多数公布的疲劳性格都采用了标准标本,虽然与常规技术竞争,但应最大限度地减少PBF部件的加工。因此,竣工表面质量对PBF零件疲劳性能的影响是部分设计和资格的主要问题。我们描述了一种新的测试方法,用于采用微型样品和平面循环弯曲,用于造成的PBF金属的疲劳表征,并评估用标准试样几何形状和试验方法获得的Ti6ai4V合金的这种方法。然后量化了压力与构建方向性,几何缺口和PBF技术的因素等因素对Ti6ai4V的高循环疲劳的作用。所提出的方法具有成本效益并且具有灵活的适用性。因此,它对于PBF金属的基本疲劳研究是有用的,并用于支持疲劳关键的PBF部件的资格。

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