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Study on inner tension distribution of fiber optic cable spool with structure limitation of end plates on both sides for underwater communication in winding process

机译:两侧水下板端部结构局限性的光缆绕线筒绕线过程内张力分布研究

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摘要

In this paper, inner tension distribution of fiber optic cable spool for underwater communication in winding process is studied which adopts the structure design of end plates on both sides. We consider the axial compression force of the cable caused by the structure limitation of the end plates on both sides, analyze the force of the cable and the end plate, study on the relationship between radial compression deformation, axial extension deformation and inner tension, axial compression force of the cable in winding process, and establish the winding mechanical model of fiber optical cable spool. According to the structural parameters and the winding parameters of the spool, the distribution law of the inner tension with the winding layers is simulated, and the cable layer pressure and the end-plate deformation are also simulated. The inner strain of the spool is measured experimentally by the high-precision optical fiber strain analyzer, which is converted into the actual inner tension distribution. The accuracy of the model is verified by the comparison between the simulation results and the measured data.
机译:本文采用两侧端板的结构设计,研究了水下通信中用于水下通信的光缆线轴的内部张力分布。考虑两侧端板的结构限制所引起的电缆轴向压缩力,分析电缆和端板的力,研究径向压缩变形,轴向延伸变形与内拉力,轴向之间的关系。通过对光缆在缠绕过程中的压缩力的建立,建立了光缆线轴的缠绕力学模型。根据线轴的结构参数和绕线参数,模拟了绕线层内部张力的分布规律,并模拟了电缆层压力和端板变形。线轴的内部应变通过高精度光纤应变分析仪进行实验测量,然后转换为实际的内部张力分布。通过仿真结果与实测数据之间的比较,验证了模型的准确性。

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