声发射技术在大幅面增材制造中的应用

Ryan Spencer, Miguel González Núñez, H. Saboonchi, V. Godínez-Azcuaga, U. Vaidya, V. Kunc, A. Hassen
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引用次数: 0

摘要

大幅面增材制造(AM)正在被适应为一种生产大型结构的方法,在较短的交货时间和成本效益的方式。随着增材制造技术和应用的不断发展,对机械监控和零件鉴定的需求越来越大。大型增材制造技术的研究主要集中在制造开发和原料方面,但对结构健康监测(SHM)、缺陷检测和无损评估(NDE)的研究很少。使用传统的无损检测(NDT)技术(如超声波或x射线)扫描大型结构并寻找潜在缺陷可能非常耗时,具有挑战性且成本高昂。声发射(AE)是一种被动技术,可以通过在零件周围分布一组传感器来监测和定位大型结构中的缺陷进展。本研究概述了作为一种可靠性方法实现从声发射到增材制造的必要步骤。本研究将展示的主题是:(a)波传播/速度评估,(b)各向异性印刷结构和材料的声发射衰减特性,(c)挤出机和龙门系统的背景噪声测量,以及(d)通过演示帮助优化传感器的选择和放置,以监测大型AM结构。该工作为大型增材平台的SHM-AE系统的扩展奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Applying Acoustic Emission to Large Format Additive Manufacturing
Large format additive manufacturing (AM) is being adapted as a method of producing large structures in a short lead time and cost-effective way. With the growing advancement in AM techniques and application, machine monitoring and part qualification is highly needed. There has been leading research focused on the manufacturing development and feedstock material but minimum research on the structural health monitoring (SHM), defect detection, and nondestructive evaluation (NDE) for large format AM. Scanning large structure using conventional nondestructive testing (NDT) techniques, such as ultrasound or X-ray, and searching for potential defects can be very time consuming, challenging and cost prohibitive. Acoustic emission (AE) is a passive technique that can be used to monitor and locate defect progression in large structures by distributing group of sensors around the part. This research outlines the necessary procedure for implementing AE to AM as a reliability method. The topics this research will display are: (a) Wave propagation/velocity evaluation, (b) an AE attenuation characterization for the anisotropic printed structure and material, (c) background noise measurements of the extruder and gantry system, and (d) assist in optimal sensor selection and placement for monitoring large AM structures with demonstration. This work establishes the foundation for scaling up the SHM-AE system for the large additive platform.
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