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Multiaxial Fatigue Analysis in a High-speed Microgenerator Rotor Shaft

机译:高速微生物转子轴的多轴疲劳分析

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Fatigue evaluation is one of the most concerning issue in the design of mechanical parts subject to alternative forces. Fatigue life estimation is more complicated when loads act on different axes. This paper shows the stress analysis result of the steel shaft of a high-speed microgenerator rotor with 47750 rpm and 100kW which has been carded out with analytical stress formulation. The shaft is subjected to alternative torsional and bending stresses. First, Mean and alternative components of stresses have been calculated; then, using a MATLAB code, multiaxial fatigue life has been calculated with equivalent static yield criteria and Sines method. Having considered five potential critical points on the shaft, fatigue life calculation is done in each critical point. Using different criteria, it is possible to compare results and decide about the fatigue strength of different sections. Consideration of the mean and alternative stresses effects with different axes is the major attempt in this paper.
机译:疲劳评估是替代力的机械部件设计中最有关的问题之一。当负载在不同的轴上行动时,疲劳寿命估计更加复杂。本文显示了高速微生物转子的钢轴的应力分析结果,具有47750 rpm和100kw,它已经用分析应力制剂梳理。轴经受替代的扭转和弯曲应力。首先,已经计算了应力的平均值和替代组分;然后,使用MATLAB码,已经用等效静态屈服标准和诸如SINE方法计算了多轴疲劳寿命。在轴上考虑了五个潜在的关键点,在每个临界点中完成疲劳寿命计算。使用不同的标准,可以比较结果并决定不同部分的疲劳强度。对不同轴的平均和替代压力的考虑是本文的主要尝试。

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