Ultrasonic Powder Atomization for Additive Manufacturing

David Halapi, L. Varga
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引用次数: 0

Abstract

The following article presents a special case of metal powder production, ultrasonic metal atomization. In this case, ultrasound technology is based on the capillary wave phenomenon. We verify the suitability of the produced powders for 3D metal printing with various tests. In the case of prints with a metal powder bed fusion (PBF), the properties of the raw material of the powder are extremely important. The main results of the tests carried out in the article (SEM images, EDS composition analysis, sieve analysis) were described.
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用于增材制造的超声粉末雾化
下面的文章介绍了金属粉末生产的一个特例——超声波金属雾化。在这种情况下,超声波技术是基于毛细管波现象。我们通过各种测试验证了所生产粉末的3D金属打印适用性。在使用金属粉末床熔融(PBF)打印的情况下,粉末原料的性能非常重要。介绍了本文所进行的主要测试结果(SEM图像、EDS成分分析、筛分分析)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.80
自引率
6.20%
发文量
57
审稿时长
20 weeks
期刊介绍: IJMEMS is a peer reviewed international journal aiming on both the theoretical and practical aspects of mathematical, engineering and management sciences. The original, not-previously published, research manuscripts on topics such as the following (but not limited to) will be considered for publication: *Mathematical Sciences- applied mathematics and allied fields, operations research, mathematical statistics. *Engineering Sciences- computer science engineering, mechanical engineering, information technology engineering, civil engineering, aeronautical engineering, industrial engineering, systems engineering, reliability engineering, production engineering. *Management Sciences- engineering management, risk management, business models, supply chain management.
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