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Ultrasonic evaluation of polymer additively manufactured parts for defect inspection and structural integrity assessment

机译:超声评估聚合物添加剂制造的零件,以进行缺陷检查和结构完整性评估

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Quality assurance and structural integrity evaluation are the crucial parts of the successful design and service of additively manufactured (AM) components. Discontinuities and flaws in AM parts can affect the mechanical properties of a component during manufacturing and service. It is very important to identify the discontinuities in AM parts in terms of location, size, and geometrical properties using nondestructive testing (NDT) techniques. Existing research in both mechanical testing and nondestructive evaluation involves developing methods for characterizing and inspecting AM components as the use of such materials continues to rise. Although there exist relatively mature ultrasonic inspection techniques for defect detection. AM polymer components face the challenge of considerable internal inhomogeneities caused by the design and printing strategies. It has been shown that the ultrasonic signals are very sensitive to the material inhomogeneities, consequently the reflection/diffractions from the defects will be significantly influenced and defect detection will be very challenging. This work aims to present the potentials and challenges in ultrasonic detection of defects in polymer AM parts. Air-coupled ultrasonic tests to be demonstrated and followed by results and discussions. The role of porosity on detectability in the ultrasonic NDT tests is described and a possible way for attenuation assessment is demonstrated. Finally, the effect of AM part inhomogeneities on detection probability of seeded defects with different sizes and locations in AM parts is presented.
机译:质量保证和结构完整性评估是增材制造(AM)组件成功设计和服务的关键部分。 AM零件中的间断和缺陷会影响零件在制造和维修过程中的机械性能。使用无损检测(NDT)技术确定AM零件在位置,尺寸和几何特性方面的不连续性是非常重要的。机械测试和无损评估方面的现有研究涉及开发用于表征和检查AM组件的方法,因为此类材料的使用不断增长。尽管存在用于缺陷检测的相对成熟的超声检查技术。 AM聚合物组件面临着由设计和印刷策略引起的相当大的内部不均匀性的挑战。已经表明,超声信号对材料的不均匀性非常敏感,因此,缺陷的反射/衍射将受到显着影响,并且缺陷检测将非常具有挑战性。这项工作旨在介绍在超声检测聚合物AM零件中的缺陷方面的潜力和挑战。将演示空气耦合超声测试,然后进行结果和讨论。描述了孔隙度对超声波NDT测试中可检测性的作用,并说明了衰减评估的可能方法。最后,提出了AM零件不均匀性对AM零件中不同尺寸和位置的种子缺陷检测概率的影响。

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