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Ultrasonic assessment of additive manufactured Ti-6Al-4V

机译:添加剂的超声波评估Ti-6Al-4V

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Additive Manufacturing (AM) processes offer the potential for manufacturing cost savings and rapid insertion into service through production of near net shape components for complicated structures. Use of these parts in high reliability applications such as those in the aerospace industry will require nondestructive characterization methods to ensure post-process material quality in as-built condition. Ultrasonic methods can be used for this quality verification. Depending on the application, the service life of AM components can be sensitive to the part surface condition. The surface roughness and layered structure inherent to the electron-beam powder-bed fusion process necessitates new approaches to evaluate subsurface material integrity in its presence. Experimental methods and data analytics may improve the evaluation of as-built additively manufactured materials. This paper discusses the assessment of additively manufactured EBM Ti-6Al-4V panels using ultrasonic methods and the data analytics applied to evaluate material integrity. The assessment was done as an exploratory study as the discontinuities of interest in these test samples were not known when the measurements were performed. Water immersion ultrasonic techniques, including pulse-echo and through transmission with 10 MHz focused transducers, were used to explore the material integrity of as-built plates. Subsequent destructive mechanical tests of specimens extracted from the plates provided fracture locations indicating critical flaws. To further understand the effect of surface-roughness, an evaluation of ultrasonic response in the presence of as-built surfaces and with the surface removed was performed. The assessment of additive manufactured EBM Ti-6Al-4V panels with ultrasonic techniques indicated that ultrasonic energy was attenuated by the as-built surface roughness. In addition, feature detection was shown to be sensitive to experimental ultrasonic parameters and flaw morphology.
机译:添加剂制造业(AM)工艺通过生产用于复杂结构的近净形状部件,提供制造成本节约和快速插入服务的可能性。在高可靠性应用中使用这些部件,例如航空航天工业中的应用,将需要非破坏性的表征方法,以确保在嵌造状态下进行过程后材料质量。超声波方法可用于此质量验证。根据应用程序,AM组件的使用寿命可以对零件表面条件敏感。电子束粉床融合过程固有的表面粗糙度和分层结构需要新的方法来评估其存在的地下材料完整性。实验方法和数据分析可以改善对嵌入的添加材料的评估。本文讨论了使用超声方法的增创橡胶TI-6AL-4V面板的评估和应用于评估材料完整性的数据分析。评估是作为探索性研究,因为在进行测量时不知道这些测试样品中的不连续性。水浸性超声技术,包括脉冲回波和通过10 MHz聚焦传感器的传输,用于探讨竣工板的材料完整性。从平板中提取的试样的后续破坏性机械测试提供了指示临界缺陷的裂缝位置。为了进一步了解表面粗糙度的效果,进行了在嵌造表面存在和表面的存在下进行超声波响应的评估。具有超声技术的添加剂制造的EBM Ti-6Al-4V面板的评估表明,通过砂表面粗糙度衰减超声能量。此外,特征检测显示对实验超声参数和缺陷形态敏感。

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