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Manufacturing and testing of a GFRP composite bogie frame with straight side beam members

机译:带有直边梁构件的GFRP复合转向架框架的制造和测试

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摘要

To replace a traditional steel bogie with a composite one, this study designed and manufactured a composite bogie frame made of glass fiber-reinforced plastics to be applied to the bogie of an urban subway train. To evaluate its structural behavior, the composite bogie frame was tested under critical load conditions encompassing vertical loads and a twisting load. The test revealed that the maximum strain measured under the vertical load corresponded to 16.3% of the failure strain of the GEP224 glass fabric/epoxy sample. According to a durability evaluation using Goodman diagrams, both the measured and the calculated stress data were within the endurance limit. Therefore, the composite bogie frame satisfied the structural safety requirements. The evaluation of the contribution of each load case clearly showed that the vertical and braking loads were the most critical load cases. Adding the braking load cases led to movement of the critical point from the inner joint to the outer joint due to the increased torsion.
机译:为了用复合材料的转向架代替传统的钢制转向架,本研究设计并制造了一种由玻璃纤维增​​强塑料制成的复合式转向架框架,该框架可用于城市地铁的转向架。为了评估其结构性能,在包括垂直载荷和扭转载荷在内的关键载荷条件下对复合转向架框架进行了测试。该测试表明,在垂直载荷下测得的最大应变相当于GEP224玻璃织物/环氧树脂样品的破坏应变的16.3%。根据使用古德曼(Goodman)图进行的耐久性评估,测得的和计算出的应力数据均在耐久极限内。因此,复合转向架框架满足结构安全要求。对每个载荷工况贡献的评估清楚地表明,垂直载荷和制动载荷是最关键的载荷工况。由于增加了扭矩,增加制动载荷工况导致临界点从内关节移动到外关节。

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