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基于导波的定向能量沉积工艺制造的薄壁结构的压电激光超声检测与监测

Piezoelectric-laser ultrasonic inspection and monitoring of thin-walled structure fabricated by directed energy deposition process based on guided waves.

作者信息

Wen Fuzhen, Gao Shiming, Song Xu, Shi Fan

机构信息

Department of Mechanical and Aerospace Engineering, The Hong Kong University of Science and Technology, Sai Kung, Hong Kong, China.

Department of Mechanical and Automation Engineering, The Chinese University of Hong Kong, Shatin, Hong Kong, China.

出版信息

Ultrasonics. 2024 Mar;138:107255. doi: 10.1016/j.ultras.2024.107255. Epub 2024 Jan 28.

Abstract

Thin-walled metallic structures produced by the Directed Energy Deposition (DED) Additive Manufacturing (AM) process are prone to various fabrication defects, which hinder the wider applications of the technique in practice. In-situ inspection and monitoring methodologies are in high demand for improved quality control of printed parts. This paper presents an ultrasonic guided-wave-based method and a prototype that can potentially be used for in-situ inspection of thin-walled structures produced by DED. Lamb waves are excited by a Lead zirconate titanate (PZT) piezoelectric transducer bonded on the DED substrate remotely from the thin wall. The substrate works as a waveguide to transmit the waves which then propagate along the thin wall. A non-contact laser vibrometer is applied to measure the guide wave signals by scanning the surface of the thin wall. The mechanisms of guided wave generation and propagation along the substrate and printed part are theoretically studied. It allows for choosing proper inspection parameters to enhance the measurement sensitivity of guided waves and help interpret the signals for defect detection. Experiments were conducted with DED-produced stainless steel (316L) thin-walled structure. The new method is demonstrated in one example to detect and localize a small defect caused by inconsistent powder delivery of a fabricated thin wall sample, via analysing the B-scan ultrasonic guided wave signals. The new technique provides strong potential for in-situ online monitoring of the DED process.

摘要

通过定向能量沉积(DED)增材制造(AM)工艺生产的薄壁金属结构容易出现各种制造缺陷,这阻碍了该技术在实际中的广泛应用。对于提高打印部件的质量控制,原位检测和监测方法的需求很高。本文提出了一种基于超声导波的方法和一个原型,可潜在地用于原位检测由DED生产的薄壁结构。由粘结在远离薄壁的DED基板上的锆钛酸铅(PZT)压电换能器激发兰姆波。基板用作波导来传输波,然后波沿着薄壁传播。应用非接触式激光测振仪通过扫描薄壁表面来测量导波信号。从理论上研究了导波沿基板和打印部件产生和传播的机制。这使得可以选择合适的检测参数来提高导波的测量灵敏度,并有助于解释用于缺陷检测的信号。对由DED生产的不锈钢(316L)薄壁结构进行了实验。通过分析B扫描超声导波信号,在一个示例中展示了该新方法能够检测和定位由制造的薄壁样品粉末输送不一致引起的小缺陷。这项新技术为DED工艺的原位在线监测提供了强大的潜力。

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