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使用可变转速对聚醚醚酮生物聚合物棒材进行旋转摩擦焊接

Rotary Friction Welding of Polyetheretherketone Biopolymer Rods Using Variable Rotational Speed.

作者信息

Kuo Chil-Chyuan, Liang Hua-Xhin, Huang Song-Hua, Tseng Shih-Feng

机构信息

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

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

出版信息

Polymers (Basel). 2023 Oct 13;15(20):4077. doi: 10.3390/polym15204077.

Abstract

Polyetheretherketone (PEEK) is a promising biomaterial due to its excellent mechanical properties. Most PPEK manufacturing methods include additive manufacturing, injection molding, grinding, pulse laser drilling, or incremental sheet forming. Rotary friction welding (RFW) is a promising bonding technique in many industries. However, very few studies have focused on the RFW of PEEK. Conventionally, the number of revolutions is fixed during the welding process. Remarkably, the rotary friction welding of PEEK polymer rods using an innovative variable rotational speed is investigated in this study. The average bending strength of the welded part using a three-stage transformation rotational speed was enhanced by about 140% compared with a rotational speed of 1000 rpm. The advantage of computer numerical controlled RFW of PEEK using variable rotational speed is a reduced cycle time of RFW. A reduction in cycle time of about 6% can be obtained using the proposed RFW with a three-stage transformation rotational speed. The innovative approach provides low environmental pollution and high energy efficiency and complies with sustainable development goals.

摘要

聚醚醚酮(PEEK)因其优异的机械性能而成为一种很有前景的生物材料。大多数聚醚醚酮的制造方法包括增材制造、注塑成型、研磨、脉冲激光钻孔或渐进式板材成型。旋转摩擦焊接(RFW)在许多行业中是一种很有前景的连接技术。然而,很少有研究关注聚醚醚酮的旋转摩擦焊接。传统上,焊接过程中的转数是固定的。值得注意的是,本研究对使用创新的可变转速对聚醚醚酮聚合物棒进行旋转摩擦焊接进行了研究。与1000转/分钟的转速相比,采用三段变速转速时焊接部件的平均弯曲强度提高了约140%。使用可变转速对聚醚醚酮进行计算机数控旋转摩擦焊接的优点是减少了旋转摩擦焊接的周期时间。采用提出的三段变速转速的旋转摩擦焊接可使周期时间减少约6%。这种创新方法具有低环境污染和高能源效率,符合可持续发展目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f41b/10610441/80a9d6121922/polymers-15-04077-g001.jpg

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