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Vibrational Properties of Additively Manufactured Inconel 718

机译:增材制造的Inconel 718的振动特性

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摘要

In a deployed environment, rapid repair of damaged aircraft is essential for assuring mission success. Additive Manufacturing has the potential to build the parts needed for aircraft repair. However, resonant frequencies can cause damage to these parts and their surroundings while also facilitating undesired effects and behaviors. Knowledge of an object's vibrational properties is critically important to avoid these resonant frequencies. The increasing prevalence of additively manufactured metals in the aerospace industry necessitates research into their vibrational properties and the adequacy of modeling tools to predict the different modes of vibration. This research assesses the vibrational properties of additively manufactured Inconel 718 with different laser exposure patterns. The vibrational modes were measured using a laser vibrometer and compared to traditional beams modeled through finite element analysis.
机译:在部署的环境中,对受损飞机的快速维修对于确保任务成功至关重要。增材制造有潜力制造飞机维修所需的零件。但是,共振频率可能会损坏这些零件及其周围环境,同时也会促进不良作用和行为。了解对象的振动特性对于避免这些共振频率至关重要。在航空航天业中,增材制造金属的普及率不断提高,因此有必要对其金属的振动特性和建模工具的适用性进行研究,以预测不同的振动模式。这项研究评估了增材制造的Inconel 718在不同激光照射模式下的振动特性。使用激光振动计测量振动模式,并将其与通过有限元分析建模的传统梁进行比较。

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