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Simulation of stress-magnetization coupling about magnetic memory effect of gear defects

机译:齿轮缺陷磁记忆效应的应力-磁化耦合模拟

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摘要

As an important component in the transmission system, gear endures complex stress during the meshing process. The tiny defects of the gear are likely to occur after some amount of load cycles. This will lead to a huge economic loss if the tiny defects are not detected in time. Metal magnetic memory (MMM) technique can effectively find the early defects of ferromagnetic material and it has attracted great attentions. However, the mechanism of metal magnetic memory on ferromagnetic materials under loading and geomagnetic field has not been thoroughly addressed, and the studies on gear defects are rarely reported. This paper adopts the finite element analysis (FEA) software ANSYS to construct a defective gear model and the air around it. The contact-stress and magnetic flux leakage distribution is given through the stress-magnetization coupling model. The simulation results are in accord with the common MMM principle, which are helpful to the understanding of the stress-magnetization coupling mechanism and provide the gist for the further study of gears early defects detection based on MMM technique.
机译:作为传动系统的重要组成部分,齿轮在啮合过程中承受着复杂的应力。在一定数量的负载循环之后,齿轮的微小缺陷很可能会发生。如果不能及时发现微小的缺陷,将导致巨大的经济损失。金属磁记忆(MMM)技术可以有效地发现铁磁材料的早期缺陷,受到了广泛的关注。然而,在载荷和地磁场作用下,铁磁材料上的金属磁记忆机理尚未得到充分解决,关于齿轮缺陷的研究也很少。本文采用有限元分析(FEA)软件ANSYS构造了故障齿轮模型及其周围的空气。通过应力-磁化耦合模型给出了接触应力和磁通量泄漏的分布。仿真结果符合MMM通用原理,有助于理解应力-磁化耦合机理,为进一步研究基于MMM技术的齿轮早期缺陷检测提供依据。

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