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Stress Analysis of Submarine Cable Tension and Torsion Test Device Based on Finite Element Method

机译:基于有限元法的潜艇电缆张力和扭转试验装置的应力分析

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In order to ensure that the tension and torsion test system can complete the normal test of submarine cable torsion, it is very important to analyze the maximum torque that the system can withstand. In this paper, the finite element simulation software ANSYS is used to model the submarine cable tension and torsion test system. The torque of 1kNm, 5kNm and 10kNm is applied to the model and solved. The main force position of the torsion device was evaluated by analyzing the changes of displacement, stress and strain after the model was twisted. The results show that after applying the maximum allowable torque of 10kNm to the submarine cable tension and torsion test system, the system is not damaged, and the displacement, stress and strain changes are consistent with the actual situation, and the work of torsion testing of the submarine cable can be completed. This paper provides a method and data reference for the evaluation of the operating parameters of the submarine cable tension and torsion experimental system.
机译:为了确保张力和扭转测试系统可以完成潜艇电缆扭转的正常测试,分析系统可以承受的最大扭矩非常重要。本文采用了有限元仿真软件ANSYS来模拟潜艇电缆张力和扭转测试系统。将1kNM,5kNM和10kNM的扭矩应用于模型并解决。通过分析模型扭曲后的位移,应力和应变的变化来评估扭转装置的主力位置。结果表明,在将10kNM的最大允许扭矩施加到潜艇电缆张力和扭转测试系统后,该系统不会损坏,并且位移,应力和应变变化与实际情况一致,以及扭转测试的工作潜艇电缆可以完成。本文提供了对潜艇电缆张力和扭转实验系统的操作参数进行评估的方法和数据参考。

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