通过超声波辅助非活性焊料超快速焊接 Cf/Al

IF 6.7 2区 材料科学 Q1 ENGINEERING, INDUSTRIAL
Zhengwei Li , Zhiwu Xu , Zhongwei Ma , Shu Chen , He Zhang , Tengying Guo , Jiuchun Yan
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引用次数: 0

摘要

本研究在焊接碳纤维增强铝复合材料(Cf/Al)时采用了超声波振动。研究了超声波作用时间对焊点形成、碳纤维分布和焊点机械性能的影响。结果表明,在超声波振动的帮助下,非活性焊料可在低温(250 °C)下几十秒内润湿碳纤维。较短的超声波作用时间会导致铝基材受到轻微侵蚀,从而限制碳纤维进入接合处。如果超声波作用时间过长,则会对铝造成大面积侵蚀。60 秒后,接缝中的碳纤维分布均匀。碳纤维润湿的特点是其表面出现非晶-非晶氧化物,这可能是由于焊料空化引起的温度和压力升高所致。延长超声波时间可提高接头的硬度和剪切强度。当超声波时间超过 15 秒时,失效裂纹会在基底上扩展。这项研究为焊接表面能较低的材料提供了参考价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ultrarapid soldering Cf/Al by inactive solder by ultrasonic assistance

Ultrasonic vibration was applied when soldering carbon fiber-reinforced aluminum composites (Cf/Al) in this work. The effects of ultrasonic action time on joint formation, carbon fiber distribution, and mechanical properties of the joints were studied. Results show that, with the assistance of ultrasonic vibration, inactive solder can wet the carbon fiber within dozens of seconds at low temperature (250 °C). Short ultrasonic action time leads to minor erosion of aluminum substrate, thereby restricting the movement of carbon fibers into joint. Extensive erosion of the aluminum occurs with prolonged ultrasonic action time. A uniform distribution of carbon fibers in joint is achieved at 60 s. Wetting of carbon fiber is characterized by amorphous-nanocrystalline oxides on its surface, which can be attributed to the elevated temperature and pressure induced by the cavitation of the solder. Extending ultrasonic time enhances the hardness and the shear strength of the joint. The failure cracks propagate through the substrate when ultrasonic time exceeds 15 s. This work provides referential value when soldering materials with low surface energies.

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来源期刊
Journal of Materials Processing Technology
Journal of Materials Processing Technology 工程技术-材料科学:综合
CiteScore
12.60
自引率
4.80%
发文量
403
审稿时长
29 days
期刊介绍: The Journal of Materials Processing Technology covers the processing techniques used in manufacturing components from metals and other materials. The journal aims to publish full research papers of original, significant and rigorous work and so to contribute to increased production efficiency and improved component performance. Areas of interest to the journal include: • Casting, forming and machining • Additive processing and joining technologies • The evolution of material properties under the specific conditions met in manufacturing processes • Surface engineering when it relates specifically to a manufacturing process • Design and behavior of equipment and tools.
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