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3D打印塑料部件自然老化和人工老化后无人机臂塑料-金属接头机械阻力的评估

Assessment of the Drone Arm's Plastic-Metal Joint Mechanical Resistance Following Natural and Artificial Aging of the 3D-Printed Plastic Component.

作者信息

Vasić Miloš R, Vučetić Snežana, Miljić Vesna, Vorkapić Miloš, Terzić Anja, Ćosić Mladen, Bajić Danica M

机构信息

Institute for Testing of Materials, Bulevar Vojvode Mišića 43, 11000 Belgrade, Serbia.

Faculty of Technology, University of Novi Sad, Bulevar cara Lazara 1, 21000 Novi Sad, Serbia.

出版信息

Materials (Basel). 2025 Jun 1;18(11):2591. doi: 10.3390/ma18112591.

Abstract

As drone technologies advance, there is an increasing need for structural components that are lightweight, durable, and easily replaceable. Additive manufacturing (AM) with PLA offers a cost-effective solution to improve mechanical performance, especially when enhanced with embedded metal inserts. However, the long-term durability of PLA-metal joints under environmental aging conditions remains underexplored. This study evaluates the mechanical integrity of 3D-printed PLA drone arms produced with reduced infill density with embedded brass inserts. To replicate realistic service conditions, the samples underwent natural aging and five artificial aging protocols involving thermal cycling, humidity, UV/IR exposure, and freeze-thaw cycles. Mechanical performance was assessed through pull-out and tensile strength testing, supported by FTIR spectroscopy, colorimetric, wettability analysis, and finite element modeling. Notably, to our knowledge, wettability analysis has not previously been applied to this type of material, and metal-plastic contact zones have not been tested under such comprehensive aging protocols. Results showed a 70% reduction in pull-out strength under harsh conditions, though the joints remained functional. Numerical modeling confirmed that stress concentration begins on the inner side of the arm. With optimal print settings, the arm can support a 2.31 kg payload (20% confidence), while the metal inserts withstand up to 17.9 kg.

摘要

随着无人机技术的发展,对轻质、耐用且易于更换的结构部件的需求日益增加。使用聚乳酸(PLA)的增材制造(AM)提供了一种经济高效的解决方案来提高机械性能,特别是当用嵌入式金属插件增强时。然而,在环境老化条件下PLA-金属接头的长期耐久性仍未得到充分研究。本研究评估了采用降低填充密度并嵌入黄铜插件生产的3D打印PLA无人机臂的机械完整性。为了模拟实际使用条件,样品经历了自然老化和五种人工老化方案,包括热循环、湿度、紫外线/红外线照射以及冻融循环。通过拉拔和拉伸强度测试评估机械性能,并辅以傅里叶变换红外光谱(FTIR)、比色法、润湿性分析和有限元建模。值得注意的是,据我们所知,润湿性分析此前尚未应用于此类材料,并且金属-塑料接触区域也未在如此全面的老化方案下进行测试。结果表明,在恶劣条件下拉拔强度降低了70%,不过接头仍能正常工作。数值模拟证实应力集中始于臂的内侧。通过优化打印设置,臂可支撑2.31千克的有效载荷(置信度为20%),而金属插件可承受高达17.9千克的重量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d056/12156079/cb2b84fc04f9/materials-18-02591-g001.jpg

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