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Effect of unbalanced and inclined air-gap in double-stator inner-rotor axial flux permanent magnet machine

机译:双定子内转子轴向磁通永磁电机中气隙不平衡和倾斜的影响

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Due to its novelty in structure, the appealing force between rotor and stator disks, axial flux (AF) permanent magnet (PM) machine are easily affected by air-gap asymmetries. In the inner-rotor double-stator AF machine, the rotor disk is assembled between two outer stators. It is usually assumed that the air-gap clearance is ideal condition in electromagnetic analysis. However, manufacturing imperfections in the machine or any perturbation to rotor disk during operation would results in an unbalanced and inclined air-gap clearance, which would generate unbalanced force acting on the structure and further increase the asymmetry extent. Cogging torque, which is imperative requirements for high performance applications, is directly related to modulating effect of the air-gap and slot opening permeance. In this paper, the cogging torque under un-normal air-gap condition of AF machines is first calculated using a combined analytical and numerical methods, followed by a structure analysis to study the effect to mechanical stress, deformation and bending force on bearings. Results and conclusions given in this paper are instructive for successful development of AFPM machines.
机译:由于其结构新颖,转子和定子盘,轴向磁通(AF)永磁(PM)电机之间的吸引力很容易受到气隙不对称的影响。在内转子双定子自动对焦机中,转子盘组装在两个外定子之间。通常假设气隙间隙是电磁分析的理想条件。但是,机器上的制造缺陷或运行过程中对转子盘的任何扰动都会导致不平衡和倾斜的气隙间隙,这将产生作用在结构上的不平衡力并进一步增加不对称程度。齿槽转矩是高性能应用的必要条件,直接关系到气隙和开槽磁导率的调节效果。本文首先采用分析和数值相结合的方法,计算了自动对焦机在非正常气隙条件下的齿槽转矩,然后进行结构分析以研究其对轴承的机械应力,变形和弯曲力的影响。本文给出的结果和结论对成功开发AFPM机器具有指导意义。

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