Abstract
AbstractFor beam directors, tight optical path sealing and low rotational friction torque are critical aspects for the tracking and positioning performance. To maximize sealing pressure and minimize rotational friction torque, a magnetorheological fluid sealing (MRFS) structure design method based on multi-objective COOT (MOCOOT) algorithm optimizer was proposed in this work. The MOCOOT integrates archive, grid strategy, chaotic mapping strategy and COOT optimization algorithm. Firstly, the magnetic field strength of the sealing clearance was derived based on the equivalent magnetic circuit model, the sealing pressure formula of MRFS with pole teeth structures was established, and the friction torque model of MRFS based on Bingham equation was also developed. Then, according to the actual requirements of optical path sealing of beam directors, the constraint conditions of structure parameters were determined, and the optimization target model of sealing pressure and friction torque was constructed. As follows, a multi-objective version of COOT optimization algorithm, named MOCOOT, was proposed to optimize the structural parameters of MRFS structure. Finally, the effectiveness of the proposed method was verified via pressure and rotating friction torque tests implemented on an established experimental platform.
Publisher
Springer Science and Business Media LLC
Reference33 articles.
1. Shwartz J, Wilson GT, Avidor J. Tactical high energy laser. Proc Soc Photo-Optical Instrum Eng (SPIE). 2002;4632:10–20.
2. Li Z, Li S, Wang X, Li D. Numerical simulation and experimental study on magnetorheological fluid seals with flexible pole pieces. IEEE Trans Magn. 2021;57(10):4600607.
3. Wang QY, Shen YR, Jin K, Liu XH. Design and optimization of magnetorheological fluid seal for azimuth axis of beam director. Lubr Eng. 2023;48(04):127–35.
4. Kubik M, Pavlicek D, Machacek O, Strecker Z, Roupec J. A magnetorheological fluid shaft seal with low friction torque. Smart Mater Struct. 2019;28(4):047002.
5. Yang XL, Hao FX, Sun P. Numerical study on key parameters of magnetorheological fluid reciprocating seal with four magnetic sources. J Magnet. 2020;25(2):190–6.