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Designing an in-situ ultrasonic nondestructive evaluation system for ultrasonic additive manufacturing

机译:设计超声添加剂制造原位超声波无损评估系统

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Ultrasonic Additive Manufacturing (UAM) is a solid-state layer by layer manufacturing process that utilizes vibration induced plastic deformation to form a metallurgical bond between a thin layer and an existing base structure. Due to the vibration based bonding mechanism, the quality of components at each layer depends on the geometry of the structure. In-situ monitoring during and between UAM manufacturing steps offers the potential for closed-loop control to optimize process parameters and to repair existing defects. One interface that is most prone to delamination is the base/build interface and often UAM component height and quality are limited by failure at the base/build interface. Low manufacturing temperatures and favorable orientation of typical interface defects in UAM make ultrasonic NDE an attractive candidate for online monitoring. Two approaches for in-situ NDE are discussed and the design of the monitoring system optimized so that the quality of UAM components is not affected by the addition of the NDE setup. Preliminary results from in-situ ultrasonic NDE indicate the potential to be utilized for online qualification, closed-loop control and offline certification of UAM components.
机译:超声添加剂制造(UAM)是通过层制造工艺的固态层,其利用振动诱导的塑性变形来在薄层和现有的基础结构之间形成冶金键。由于基于振动的粘合机构,每个层的部件的质量取决于结构的几何形状。 UAM制造步骤期间和之间的原位监控提供了闭环控制的可能性,以优化工艺参数并修复现有缺陷。一个最容易分层的一个接口是基本/构建界面,并且通常UAM组件高度和质量受到基础/构建接口的故障限制。 UAM中典型界面缺陷的低制造温度和良好取向使超声波NDE成为在线监测的有吸引力的候选者。讨论了原位NDE的两种方法,并优化了监控系统的设计,使UAM组件的质量不受添加NDE设置的影响。原位超声波NDE的初步结果表明UAM组件的在线资格,闭环控制和离线认证的可能性。

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