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探索压电驱动在激光粉末床熔融增材制造中的应用

Exploring Piezoelectric Actuation towards Its Applications in Laser Powder Bed Fusion Additive Manufacturing.

作者信息

Griffin Connor, Mei Hanfei, Karna Sivaji, Zhang Tianyu, Giurgiutiu Victor, Yuan Lang

机构信息

Department of Mechanical Engineering, University of South Carolina, Columbia, SC 29208, USA.

出版信息

Sensors (Basel). 2024 Jun 7;24(12):3704. doi: 10.3390/s24123704.

Abstract

Piezoelectric materials, which exhibit a charge distribution across the surfaces in reaction to mechanical strain, find significant utility in actuation and sensing applications. Apart from actuation applications like acoustic devices, motors, and vibration damping, an emerging domain for ultrasonic actuators lies in additive manufacturing processes. Ultrasonic waves applied during solidification aim to modulate grain structure and minimize defects. This research focuses on a fixture designed to facilitate and optimize ultrasonic wave propagation through the build plate in laser powder bed fusion additive manufacturing by utilizing a piezoelectric transducer. Three implementations of piezoelectric transducers were evaluated based on their out-of-plane ultrasonic velocity transmissions. It was determined that a thin plate adhered to the surface of the piezoelectric transducer yielded the most favorable outcomes for implementation, achieving 100% transmission of velocity and energy. Preliminary analysis of melt pool morphology and defects in single-track laser scanning experiments demonstrated the impact of ultrasound on solidification, hinting at a novel approach to enhancing the printability of alloys in laser powder bed fusion additive manufacturing processes. The optimal fixture and the explored transducing efficiency could further guide advanced ultrasound testing to enable in situ defect and texture detection during the additive manufacturing processes.

摘要

压电材料在受到机械应变时会在表面呈现电荷分布,在驱动和传感应用中具有重要用途。除了用于声学设备、电机和减振等驱动应用外,超声致动器的一个新兴领域在于增材制造工艺。凝固过程中施加的超声波旨在调节晶粒结构并减少缺陷。本研究聚焦于一种夹具,该夹具通过利用压电换能器,旨在促进并优化超声波在激光粉末床熔融增材制造过程中穿过基板的传播。基于其面外超声速度传输对压电换能器的三种实施方案进行了评估。结果确定,附着在压电换能器表面的薄板在实施中产生了最有利的结果,实现了速度和能量的100%传输。单道激光扫描实验中熔池形态和缺陷的初步分析证明了超声对凝固的影响,这暗示了一种在激光粉末床熔融增材制造工艺中提高合金可打印性的新方法。最佳夹具和所探索的换能效率可进一步指导先进的超声检测,以便在增材制造过程中进行原位缺陷和织构检测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a38/11207597/859fe04e31a8/sensors-24-03704-g002.jpg

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