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对带有人工缺陷的电弧增材制造(WAAM)样品进行激光超声检测。

Laser Ultrasonic inspection of a Wire + Arc Additive Manufactured (WAAM) sample with artificial defects.

作者信息

Zeng Yan, Wang Xiaokai, Qin Xunpeng, Hua Lin, Xu Man

机构信息

Hubei Key Laboratory of Advanced Technology for Automotive Components, Wuhan University of Technology, Wuhan 430070, China; Hubei Collaborative Innovation Center for Automotive Components Technology, Wuhan University of Technology, Wuhan 430070, China; School of Automotive Engineering, Wuhan University of Technology, Wuhan 430070, China.

Hubei Key Laboratory of Advanced Technology for Automotive Components, Wuhan University of Technology, Wuhan 430070, China; Hubei Collaborative Innovation Center for Automotive Components Technology, Wuhan University of Technology, Wuhan 430070, China; School of Automotive Engineering, Wuhan University of Technology, Wuhan 430070, China.

出版信息

Ultrasonics. 2021 Feb;110:106273. doi: 10.1016/j.ultras.2020.106273. Epub 2020 Oct 10.

Abstract

Certain defects like pores, incomplete fusion and micro cracks are sometimes inevitable in Wire + Arc Additive Manufactured (WAAM) components. However, these defects cannot be detected easily by conventional ultrasonic testing due to the rough surface and high temperature of WAAM components. In this paper, a Laser Ultrasonic (LU) system, consist of a pulsed laser and a laser interferometer, is employed to achieve non-contact inspection of artificial defects (crack, flat bottom hole and through hole) in a WAAM sample without surface machining. First, several WAAM samples with different welding parameters are manufactured by a robotic Gas Metal Arc Manufacture (GMAW) system. The 2D profiles of these samples are measured and reconstructed by a geometric optical measuring instrument for Finite Element (FE) analysis. Then, the multi-physics (Heat Transfer, Solid Mechanics, Pressure Acoustics) coupled FE model is established to simulate LU inspection of defects in the WAAM sample. The propagation of laser ultrasonic waves in the WAAM sample, as well as the mechanism of interaction between ultrasonic waves and defects is investigated numerically. In addition, LU inspection experiments are designed and conducted to obtain the A- and B-scan plots of different defects in the WAAM sample. Finally, quantitative inspection of the artificial defects is realized by analyzing the A- and B-scan plots. This paper verifies the feasibility of LU inspection of WAAM components without surface machining.

摘要

在电弧增材制造(WAAM)部件中,诸如气孔、未完全熔合和微裂纹等某些缺陷有时是不可避免的。然而,由于WAAM部件表面粗糙且温度较高,这些缺陷难以通过传统超声检测轻易检测出来。在本文中,一种由脉冲激光器和激光干涉仪组成的激光超声(LU)系统被用于在不对WAAM样品进行表面加工的情况下,对人工缺陷(裂纹、平底孔和通孔)进行非接触检测。首先,通过机器人气体金属电弧制造(GMAW)系统制造出几个具有不同焊接参数的WAAM样品。利用几何光学测量仪器对这些样品的二维轮廓进行测量和重建,用于有限元(FE)分析。然后,建立多物理场(传热、固体力学、压力声学)耦合有限元模型,以模拟WAAM样品中缺陷的激光超声检测。对激光超声波在WAAM样品中的传播以及超声波与缺陷之间的相互作用机制进行了数值研究。此外,设计并开展了激光超声检测实验,以获取WAAM样品中不同缺陷的A扫描和B扫描图。最后通过分析A扫描和B扫描图实现对人工缺陷的定量检测。本文验证了在不对WAAM部件进行表面加工的情况下进行激光超声检测的可行性。

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