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Solid-state additive manufacturing for metallized optical fiber integration

机译:用于金属化光纤集成的固态增材制造

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摘要

The formation of smart, Metal Matrix Composite (MMC) structures through the use of solid-state Ultrasonic Additive Manufacturing (UAM) is currently hindered by the fragility of uncoated optical fibers under the required processing conditions. In this work, optical fibers equipped with metallic coatings were fully integrated into solid Aluminum matrices using processing parameter levels not previously possible. The mechanical performance of the resulting manufactured composite structure, as well as the functionality of the integrated fibers, was tested. Optical microscopy, Scanning Electron Microscopy (SEM) and Focused Ion Beam (FIB) analysis were used to characterize the interlaminar and fiber/matrix interfaces whilst mechanical peel testing was used to quantify bond strength. Via the integration of metallized optical fibers it was possible to increase the bond density by 20–22%, increase the composite mechanical strength by 12–29% and create a solid state bond between the metal matrix and fiber coating; whilst maintaining full fiber functionality.
机译:当前,在要求的加工条件下,未涂覆光纤的易碎性阻碍了通过使用固态超声波增材制造(UAM)形成智能的金属基复合材料(MMC)结构。在这项工作中,使用以前无法实现的加工参数水平,将配备金属涂层的光纤完全集成到固态铝基体中。测试了所得制成的复合结构的机械性能以及集成纤维的功能。使用光学显微镜,扫描电子显微镜(SEM)和聚焦离子束(FIB)分析来表征层间和纤维/基质界面,同时使用机械剥离测试来量化粘合强度。通过金属化光纤的集成,可以将粘结密度提高20-22%,将复合机械强度提高12-29%,并在金属基体和纤维涂层之间形成固态粘结。同时保持完整的光纤功能。

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