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Comparative Analysis of Aerodynamic Characteristics and Experimental Investigation of a Moving Coil Linear Motor Using Computational Fluid Dynamics

机译:基于计算流体力学的动圈式直线电机气动特性对比分析与实验研究

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This study tries to observe the aerodynamics of a moving coil linear motor (MCLM) under the conditions of high frequency and high speed, a three-dimension aerodynamics analysis and experimental investigation of the designed MCLM provided with different thrust coil bobbins (TCBs) based on dynamic meshes technique using computational fluid dynamics (CFD) are proposed. Results show that with the increase of moving frequency and speed, the air damping of TCB subassembly is nearly proportional to the square of the speed. Punching a number of holes on the end face of the TCB could greatly improve the air flow capacity and enhance the distribution of pressure and velocity of the flow field around. Compared with proposal 1, the air damping of proposal 2 and proposal 3 is decreased by 64.3% and 97.1%, respectively. Simulation results show that the response time and frequency of the designed MCLM with proposal 3 is better than those with proposal 1 and proposal 2. In addition, the experimental frequency and response time of the designed MCLM with proposal 3 are 300Hz at 3dB and 4ms, respectively. As evident in this study, analysis and experimental results show that the air damping can be decreased by the structural optimization of the MCLM, and the designed MCLM with proposal 3 can realize good performance of high frequency and rapid response.
机译:本研究试图观察动圈式直线电机(MCLM)在高频和高速条件下的空气动力学特性,对基于不同推力线圈骨架(TCB)的MCLM设计的三维空气动力学分析和实验研究。提出了一种使用计算流体动力学(CFD)的动态网格技术。结果表明,随着移动频率和速度的增加,TCB组件的空气阻尼几乎与速度的平方成正比。在TCB的端面上打一些孔可以大大提高空气流通能力,并增强周围流场的压力和速度分布。与提案1相比,提案2和提案3的空气阻尼分别降低了64.3%和97.1%。仿真结果表明,建议3的MCLM的响应时间和频率要好于建议1和2的MCLM。此外,建议3的MCLM的实验频率和响应时间为300Hz,3dB和4ms,分别。从本研究中可以明显看出,分析和实验结果表明,通过MCLM的结构优化可以降低空气阻尼,并且采用建议3设计的MCLM可以实现良好的高频和快速响应性能。

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