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An equivalent direct modeling of a rotary shaft with hot-fit components using contact element modal analysis results

机译:使用接触元件模态分析结果对带有热配合部件的旋转轴进行等效的直接建模

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One key factor in designing a motor built-in high-speed motor spindle is to assemble the motor rotor and shaft by means of hot-fit. In a previous study, the optimization approach was recommended by introducing an equivalent local Young's modulus characterizing the effects on the local stiffness of the shaft at the location of hot-fit. This approach, being based on the modal testing results, is a posterior improvement. In this paper, contact pressure between the rotor and the shaft is firstly calculated through contact theory. The stress state is thus determined. The contact element modal analysis then follows with the stress state as a pre-stressed condition. The effects of pre-stress are then adopted for subsequent contact element modal analysis. The accuracy and the validity of the finite element results are verified by modal testing. Finally, an equivalent direct modeling is suggested as an efficient alternative. This equivalent model is constructed with line elements and the model is created based on the results obtained from the contact element modal analysis. The results obtained from this study indicate that the equivalent direct model with line elements is accurate and efficient in analyzing the dynamic behavior of a rotary shaft system with hot-fit components.
机译:设计电动机内置的高速电动机主轴的一个关键因素是通过热配合来组装电动机转子和轴。在先前的研究中,通过引入等效的局部杨氏模量来推荐优化方法,该模量表征了热配合位置对轴的局部刚度的影响。这种基于模态测试结果的方法是后验改进。本文首先通过接触理论计算转子与轴之间的接触压力。由此确定应力状态。然后,以应力状态作为预应力条件进行接触单元模态分析。然后将预应力的影响用于后续的接触单元模态分析。通过模态测试验证了有限元结果的准确性和有效性。最后,建议使用等效的直接建模作为有效的替代方法。该等效模型由线元素构建,并基于从接触元素模态分析获得的结果创建模型。从这项研究中获得的结果表明,带有线元的等效直接模型在分析带有热配合部件的旋转轴系统的动态行为方面是准确而有效的。

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