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首页> 外文期刊>Journal of Intelligent Manufacturing >Towards defect monitoring for metallic additive manufacturing components using phased array ultrasonic testing
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Towards defect monitoring for metallic additive manufacturing components using phased array ultrasonic testing

机译:朝着使用相控阵超声波测试的金属添加剂制造部件的缺陷监测

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摘要

Additive manufacturing (AM) is a rising technology bringing new opportunities for design and cost of manufacturing, compared to standard processes like casting and machining. Among the AM techniques, direct energy deposition (DED) processes are dedicated to manufacture functional metallic parts. Despite of their promising perspectives, the industrial implementation of DED processes is inhibited by the lack of structural health control. Consequently, non-destructive testing (NDT) techniques can be investigated to inspect DED-manufactured parts, in an online or offline manner. To date, most ultrasonic NDT applications to metallic AM concerned the selective laser melting process; existing studies tackling DED processes mainly compare various ultrasonic techniques and do not propose a comprehensive control method for such processes. Current researches in the GeM laboratory focus on a multi-sensor monitoring method dedicated to DED processes, with a structural health control loop included, in order to track defect formation during manufacturing. In this way, this paper aims to be a proof of concept and proposes a comprehensive control method that opens the way to in situ ultrasonic control for DED. In this paper, a control method using the phased array ultrasonic testing (PAUT) technique is particularly illustrated on wire-arc additive manufacturing (WAAM) components, and its applicability to laser metal deposition (LMD) is also demonstrated. A specific attention is given to the calibration method, towards a quantitative prediction of the size of the detected flaws. PAUT predictions are cross-checked thanks to X-ray radiography, which demonstrates that the PAUT method enables to detect and dimension defects from 0.6 to 1 mm for WAAM aluminum alloy parts. Then, an applicable scenario of inspection of a WAAM industrial and large-scale part is presented. Finally, perspectives for in situ and real-time application of the chosen method are given. This paper shows that real-time monitoring of the WAAM process is possible, as the PAUT method can be integrated in the manufacturing environment, provides relevant in situ data, and runs with computing times compatible with real-time applications.
机译:添加剂制造(AM)是一个上升的技术,与铸造和加工等标准工艺相比,为制造业的设计和成本带来了新的机会。在AM技术中,直接能量沉积(DED)工艺专用于制造功能金属部件。尽管观点有希望的观点,但缺乏结构性健康控制抑制了DED过程的工业实施。因此,可以调查非破坏性测试(NDT)技术以在线或离线方式检查DED制造的部件。迄今为止,大多数超声波NDT应用于金属的应用涉及选择性激光熔化过程;现有研究采用DED工艺主要比较各种超声技术,并不提出这种过程的综合控制方法。目前在GEM实验室专注于专用于DED工艺的多传感器监测方法的研究,其中包括结构健康控制回路,以便在制造期间跟踪缺陷地层。通过这种方式,本文旨在成为概念证明,并提出了一种全面的控制方法,开辟了对DED的原位超声波控制的方式。在本文中,在线 - 弧添加剂制造(WAAM)组分上特别说明了使用相控阵超声波测试(PAUT)技术的控制方法,并且还证明了其对激光金属沉积(LMD)的适用性。对校准方法的特定注意力朝向检测到的缺陷尺寸的定量预测。由于X射线放射线照相造影,PAUT预测被交叉检查,这表明PAUT方法能够检测和尺寸缺陷,对于WAAM铝合金部件。然后,介绍了WAAM工业和大型部件的应用方案。最后,给出了用于原位和所选方法的实时应用的透视。本文表明,随着PAUT方法可以集成在制造环境中,可以使用与实时应用兼容的计算时间来实现WAAM过程的实时监控。

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