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3D printed fiber optic faceplates by custom controlled fused deposition modeling

机译:通过定制控制的熔融沉积建模进行3D打印的光纤面板

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摘要

A 3D printing technique for manufacturing air-clad coherent fiber optic faceplates is presented. The custom G-code programming is implemented on a fused deposition modeling (FDM) desktop printer to additively draw optical fibers using high-transparency thermoplastic filaments. The 3D printed faceplate consists of 20000 fibers and achieves spatial resolution 1.78 LP/mm. Transmission loss and crosstalk are characterized and compared among the faceplates printed from four kinds of transparent filaments as well as different faceplate thicknesses. The printing temperature is verified by testing the transmission of the faceplates printed under different temperatures. Compared with the conventional stack-and-draw fabrication, the FDM 3D printing technique simplifies the fabrication procedure. The ability to draw fibers with arbitrary organization, structure and overall shape provides additional degree of freedom to opto-mechanical design. Our results indicate a promising capability of 3D printing as the manufacturing technology for fiber optical devices.
机译:提出了一种用于制造气包相干光纤面板的3D打印技术。定制的G代码编程是在熔融沉积建模(FDM)台式打印机上实施的,以使用高透明度的热塑性长丝来附加地拉伸光纤。 3D打印面板由20000根光纤组成,并实现了1.78 LP / mm的空间分辨率。在通过四种透明灯丝以及不同面板厚度印刷的面板之间,对传输损耗和串扰进行了表征和比较。通过测试在不同温度下打印的面板的透射率来验证打印温度。与传统的堆叠和绘制制造相比,FDM 3D打印技术简化了制造过程。拉制具有任意组织,结构和整体形状的光纤的能力为光机械设计提供了额外的自由度。我们的结果表明3D打印作为光纤设备的制造技术具有令人鼓舞的能力。

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