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Fatigue Reliability Assessment of a Metro-Train Bolster

机译:地铁列车枕架的疲劳可靠性评估

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The bolster is a key structure for the metro train. To evaluate its fatigue reliability under the fatigue loading scheme, the full-scale fatigue test and theoretical calculation are performed. The bolster is modeled as a series system of stress concentration zones, namely weak points, and their stresses are calculated using validated finite element method (FEM). Since no fatigue crack is observed after the test and the fatigue life predicted by the Goodman diagram is more than 1 × 10~7 load cycles, the bolster can service for more than 30 years with 90% reliability. To learn more about its fatigue reliability during the real service, a fatigue reliability model is established based on stress-life interference model. 10 load spectra are generated by Poisson processes, and the bolster is also modelled as a series system of six weak points. As a result, its cumulative failure probability is less than 0.002% within its 30-year service under normal atmospheric conditions.
机译:承梁是地铁的关键​​结构。为了评估其在疲劳载荷方案下的疲劳可靠性,进行了全面疲劳试验和理论计算。支撑被建模为一系列应力集中区域(即薄弱点)的系统,并使用经过验证的有限元方法(FEM)计算其应力。由于在测试后未观察到疲劳裂纹,并且通过古德曼(Goodman)图预测的疲劳寿命超过1×10〜7个载荷循环,因此该承梁可以以90%的可靠性使用30年以上。为了进一步了解其在实际使用过程中的疲劳可靠性,基于应力-寿命干扰模型建立了疲劳可靠性模型。通过泊松过程生成10个载荷谱,并且该支撑也被建模为一个由六个弱点组成的串联系统。结果,在正常大气条件下的30年服役期内,其累积故障概率小于0.002%。

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