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Power Ultrasonic Additive Manufacturing: Process Parameters, Microstructure, and Mechanical Properties

机译:功率超声添加剂制造:工艺参数,微观结构和机械性能

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Additive manufacturing (AM) for fabricating 3D metallic parts has recently received considerable attention. Among the emerging AM technologies is ultrasonic additive manufacturing (UAM) or ultrasonic consolidation (UC), which uses ultrasonic vibrations to bond similar or dissimilar materials to produce 3D builds. This technology has several competitive advantages over other AM technologies, which includes fabrication of dissimilar materials and complex shapes, higher deposition rate, and fabrication at lower temperatures, which results in no material transformation during processing. Although UAM process optimization and microstructure have been reported in the literature, there is still lack of standardized and satisfactory understanding of the mechanical properties of UAM builds. This could be attributed to structural defects associated with UAM processing. This article discusses the effects of UAM process parameters on the resulting microstructure and mechanical properties. Special attention is given to hardness, shear strength, tensile strength, fatigue, and creep measurements. Also, pull-out, push-out, and push-pin tests commonly employed to characterize bond quality and strength have been reviewed. Finally, current challenges and drawbacks of the process and potential applications have been addressed.
机译:用于制造3D金属部件的添加剂制造(AM)最近受到了相当大的关注。在新兴的AM技术中是超声添加剂制造(UAM)或超声波固结(UC),其使用超声波振动来粘合相似或不同的材料以产生3D构建。该技术与其他AM技术有几种竞争优势,其包括在较低温度下制造不同材料和复杂的形状,更高的沉积速率和制造,这导致加工过程中没有材料变换。虽然文献中报告了UAM工艺优化和微观结构,但仍然缺乏对UAM构建的机械性能的标准化和令人满意的理解。这可能归因于与UAM处理相关的结构缺陷。本文讨论了UAM工艺参数对所产生的微观结构和机械性能的影响。特别注意硬度,剪切强度,拉伸强度,疲劳和蠕变测量。此外,普遍采用粘合质量和强度的引出,推出和推销试验已经过综述。最后,已经解决了过程和潜在应用的当前挑战和缺点。

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