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Structural analysis for the design of a lightweight composite railway axle

机译:轻质复合材料铁路车轴设计结构分析

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摘要

The unsprung masses associated with the axles of a railway vehicle result in costly impact damage to the rail infrastructure. A hybrid metallic-composite (HMC) railway axle is evaluated using finite element analysis. The axle mass is 74 kg, 63 lighter than an equivalent hollow steel axle. The HMC railway axle comprises a full length, carbon fibre reinforced, epoxy matrix composite tube with secondary overwrapping for stiffness and EA1N grade steel collars creating the wheel seats and journal surfaces. Maximum axle deflection is 1.72 mm with a misalignment at the journals of 0.21 degrees, potentially requiring a bearing reassessment. Nominal bending stress in the axle is 99.3 MPa (Tsai-Wu damage index of 0.18). Peak bending and torsional stresses result in Tsai-Wu damage indexes of 0.71 and 0.42, respectively. The methodology in this paper can be extended to the design of future lightweight composite shafts to benefit many other industries.
机译:与铁路车辆车轴相关的簧下质量会对铁路基础设施造成代价高昂的冲击损坏。使用有限元分析评估混合金属复合材料 (HMC) 铁路车轴。车轴质量为74kg,比同等空心钢车桥轻63%。HMC铁路车轴包括一个全长的碳纤维增强环氧基复合管,带有用于提高刚度的二级外包装和EA1N级钢环,形成轮座和轴颈表面。最大轴挠度为 1.72 mm,轴颈处的错位为 0.21 度,可能需要重新评估轴承。车轴内的标称弯曲应力为99.3 MPa(Tsai-Wu损伤指数为0.18)。峰值弯曲应力和扭转应力导致的Tsai-Wu损伤指数分别为0.71和0.42。本文中的方法可以扩展到未来轻质复合材料轴的设计,以使许多其他行业受益。

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