Force Analysis and Simulation of Optical Fiber Clew for Wired Communication Buoy
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摘要: 针对采用轻质材料的有线通信浮标线团在制导光缆绕制成型中容易发生端板受挤压变形的问题, 结合有线通信浮标线团的结构特性及光纤线团绕制工艺, 对有线通信浮标线团端板和壳体在绕制中受力及变形情况进行分析, 通过板壳力学理论分析给出了端板变形的平衡微分方程、几何方程和物理方程。并根据实际边界条件和轻质材料特性对变形情况进行了仿真, 分析结果确定了影响端板变形的主要因素, 可为有线通信浮标线团设计提供参考。Abstract: To solve the end plate extrusion deformation problem of the wired communication buoy′s optical fiber clew, which is made from lightweight material, in the winding process of guidance optical cable, this paper analyzes the force and deformation of the end plate and shell by considering the structure features and winding process of the optical fiber clew, and employs the theory of plate and shell mechanics to derive the balanced differential equation, geometric equation and physical equation of the end plate deformation. Moreover, a simulation of the end plate deformation is conducted according to real boundary condition and the characteristics of the lightweight material, and the main factors affecting the end plate deformation are determined. The research is of benefit to the design of the wired communication buoy′s optical fiber clew.
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