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Influence of specimen position on the build platform on the mechanical properties of as-built direct aged electron beam melted Inconel 718 alloy

机译:标本位置对堆焊平台的影响对铸态直接时效电子束熔化的Inconel 718合金的力学性能的影响

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摘要

Electron powder bed fusion (E-PBF) allows for manufacturing of near-net-shape components of unprecedented complexity. In order to transfer specific benefits into industrial environments, equal properties of any volume built are mandatory. The main objective of this work is to investigate the process-induced material properties in arbitrary build envelope positions. Microstructure, hardness, relative density and fatigue behavior are in focus and thoroughly studied for E-PBF manufactured Inconel 718 alloy. In particular, it can be stated that all specimens have an effective diameter below dimensions set in the initial CAD data. Furthermore, it could be demonstrated that the relative density varies at different positions of the building platform, even for specimens built in direct vicinity. In terms of hardness, specimens at the outer perimeter of the building platform show increased values indicating a higher fraction of strengthening phases. Based on the cyclic tests, a relationship between building platform position and fatigue behavior can be derived. Specimens located in the front of the building platform show superior cyclic properties as compared to specimens in the back of building platform. Notch effects, Le. process induced topography, are revealed to be the most detrimental influencing factor in the condition tested.
机译:电子粉末床熔合(E-PBF)允许制造前所未有的复杂性的近净形部件。为了将特定利益转移到工业环境中,必须构建任何体积的相等属性。这项工作的主要目的是研究在任意构造包络线位置中由过程引起的材料特性。对E-PBF生产的Inconel 718合金的微观结构,硬度,相对密度和疲劳行为进行了重点研究和深入研究。特别是,可以说所有样品的有效直径都低于初始CAD数据中设置的尺寸。此外,可以证明相对密度在建筑平台的不同位置处变化,即使是直接在附近建造的标本也是如此。在硬度方面,建筑平台外周的样品显示出更高的值,表明强化阶段的比例更高。基于循环测试,可以得出建筑平台位置与疲劳行为之间的关系。与建筑平台背面的标本相比,位于建筑平台正面的标本显示出优异的循环性能。缺口效应,Le。过程诱导的地形,被证明是测试条件下最有害的影响因素。

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