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含金属粉末的异种聚合物棒材的旋转摩擦焊接

Rotary Friction Welding of Dissimilar Polymer Rods Containing Metal Powder.

作者信息

Kuo Chil-Chyuan, Chen Hong-Wei, Huang Song-Hua

机构信息

Department of Mechanical Engineering, Ming Chi University of Technology, No. 84, Gungjuan Road, Taishan District, New Taipei City 24301, Taiwan.

Research Center for Intelligent Medical Devices, Ming Chi University of Technology, No. 84, Gungjuan Road, Taishan District, New Taipei City 24301, Taiwan.

出版信息

Polymers (Basel). 2023 Nov 8;15(22):4354. doi: 10.3390/polym15224354.

Abstract

Three-dimensional printing is widely used for manufacturing a variety of functional components. However, the 3D printing machine substantially limits the size of the functional components. Rotary friction welding (RFW) is a possible solution to this problem. In addition, there is a notable scarcity of research directed toward the domain knowledge of RFW involving dissimilar polymer rods containing metal powder. In this study, two welding specimens fabricated by polylactic acid (PLA)-containing copper powder and PLA-containing aluminum powder were joined using a turning machine. After RFW, a bending test and a Shore A surface hardness test were performed to investigate the weld quality. It was found that the bending strength of the welded parts fabricated by RFW of PLA and PLA-containing Al powder rods can be enhanced by about 57.5% when the welded part is placed at 45 °C. Surface hardness test results showed that the surface hardness of the weld interface is better than that of the 3D printed parts, and the average surface hardness of the weld interface from RFW of PLA and PLA is the highest. The surface hardness of the weld joint is about 3% higher than that of the base material. The surface hardness of the heat-affected zone is about 3% lower than that of the base material. The average peak temperature of the welded joint is the highest in the RFW of PLA-containing Al powder and PLA-containing Al powder rods. The average peak temperature of the weld joint can be as high as 160 °C. The average peak temperature of the welded joint is the highest in the RFW of PLA-containing Cu powder and PLA-containing Cu powder rods. The average peak temperature of the welded joint can be as high as 144 °C. A technical database was built for the selection of ambient temperatures used for the RFW of dissimilar polymer rods containing metal powder and three base materials.

摘要

三维打印被广泛用于制造各种功能部件。然而,3D打印机极大地限制了功能部件的尺寸。旋转摩擦焊接(RFW)是解决这一问题的一种可能方案。此外,针对涉及含金属粉末的异种聚合物棒材的旋转摩擦焊接领域知识的研究明显匮乏。在本研究中,使用车床将由含铜粉的聚乳酸(PLA)和含铝粉的PLA制成的两个焊接试样进行连接。旋转摩擦焊接后,进行弯曲试验和邵氏A表面硬度试验以研究焊接质量。结果发现,当焊接部件置于45℃时,通过PLA与含铝粉的PLA棒材的旋转摩擦焊接制造的焊接部件的弯曲强度可提高约57.5%。表面硬度测试结果表明,焊接界面的表面硬度优于3D打印部件,且PLA与PLA旋转摩擦焊接的焊接界面平均表面硬度最高。焊接接头的表面硬度比母材高约3%。热影响区的表面硬度比母材低约3%。含铝粉的PLA与含铝粉的PLA棒材旋转摩擦焊接时焊接接头的平均峰值温度最高。焊接接头的平均峰值温度可达160℃。含铜粉的PLA与含铜粉的PLA棒材旋转摩擦焊接时焊接接头的平均峰值温度最高。焊接接头的平均峰值温度可达144℃。建立了一个技术数据库,用于选择含金属粉末的异种聚合物棒材和三种母材旋转摩擦焊接时的环境温度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f883/10675412/d3bba8aae9b2/polymers-15-04354-g001.jpg

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