Magnetic coupling underwater propeller magnetic force coupling array and propeller performance coupling design method

CN120068262BActive Publication Date: 2026-08-28TIANJIN HAOYE TECH CO LTD
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Patent Information

Application Number
CN202510132956.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-06
Publication Date
2026-08-28
Estimated Expiration
2045-02-06

AI Technical Summary

Technical Problem

[0003]然而,现有的磁耦合推进器设计多停留在理论或实验验证阶段,缺乏系统化的优化设计方法,尤其是在螺旋桨性能与磁力耦合结构的协同设计方面存在不足,导致磁耦合推进器的推力输出和效率难以满足深海复杂环境的需求

Benefits of technology

1.本发明采用面源法优化螺旋桨的设计,通过调整叶片形状、数量等参数,提高推进器的推拉力性能,根据优化后的螺旋桨设计,确定合适的桨毂尺寸,为磁力耦合阵列的设计提供基础,基于桨毂尺寸,设计磁力耦合阵列结构,通过确定磁体的排布方式和参数,保证推进器在深海环境下的性能和耐压要求,采用S型排布方式,优化磁体阵列的布局,不仅增加了磁体阵列的磁转矩,还减小了震动,提高了推进器的稳定性,将磁耦合结构与螺旋桨多次进行迭代优化设计,通过调整磁体布局、螺旋桨参数等,减小磁耦合结构的直径,实现磁耦合结构与螺旋桨性能的最优匹配,实现了磁耦合水下推进器磁力耦合阵列设计与螺旋桨性能耦合设计,保证了推进器的性能、耐压要求和稳定性,为水下推进技术领域提供了创新的解决方案。

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Abstract

The application discloses a magnetic coupling underwater propeller magnetic force coupling array and a propeller performance coupling design method, and belongs to the technical field of underwater propellers.The application optimizes the geometric parameters of propeller blades through a surface source method, and designs a magnetic coupling array structure according to the size of a propeller hub, so as to guarantee the performance and pressure resistance requirements of the propeller in a deep sea environment, increase the magnetic torque in combination with the layout of the S-shaped magnetic force coupling array, and reduce vibration, the optimal design of the magnetic coupling structure is realized through multiple iteration optimization design, the thrust, efficiency and dynamic balance performance of the propeller are effectively improved, the operation vibration and energy consumption are significantly reduced, the size of the propeller hub, the magnetic body packaging material and the array structure design are optimized by fully considering the requirements of the deep sea high pressure and the corrosion environment, the long-term stability and high efficiency of the system under extreme conditions are ensured, and the collaborative optimization of the propeller and the magnetic force coupling array is realized through joint analysis model and iteration optimization.
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Citation Information

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