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A Study on Analysis Method Considering Camber for the Carbody Deflection of the Urban Transit Vehicles

机译:考虑城市过境车辆车队偏转时的分析方法研究

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The carbody structure of electric multiple unit(here in after EMU) shall be designed withstand the loading conditions without permanent deformation or any form of damage. And the carbody shall have a minimum design life of 25 years or more in Korea. Loading conditions have a longitudinal compressive force and a vertical load. Camber of the carbody is defined as its curved shape viewed in side elevation. Carbody camber shall be a smooth arc from end to end of the carbody and shall be measured from a datum line drawn between the intersections of the arc with the center lines of the carbody bolsters to a line tangent to the arc midway between bolsters. The carbody shall be built with positive camber such that camber shall remain positive with the carbody at maximum load and shall not bind due to deflection caused by variations of service load. To assess the strength and stiffness of the designed carbody, carbody's designer shall be demonstrated by a programme of finite element analysis and testing shall be carried out in accordance with Korean standard technical specifications. The carbody is manufactured by giving the slope of the deflection to be compensated strength and stiffness. The deflection is camber. So this study analyzes that how camber affects safety and durability of carbody according to the load conditions and revenue service on main-line. Methods and analytical model of carbody structure is introduced to demonstrate them.
机译:电动多单元(此处在EMU之后)的机器人结构应设计在没有永久变形或任何形式的损伤的情况下承受负载条件。并且在韩国的车身将有25岁或以上的最低设计寿命。装载条件具有纵向压缩力和垂直载荷。当在侧视图中观察其弯曲形状,车体的弧形被定义为其弯曲形状。车身弧形应是从车体的端到端的光滑弧,并且应从在电弧的交叉点之间绘制的基准线测量,当时滑板的中心线与螺栓之间的弧线切向的线。汽车人员应采用正面弯曲,使得Camber应在最大负荷下与车身保持一致,并且由于服务负荷变化引起的偏转而不会绑定。为了评估设计的车身的强度和刚度,Carbody的设计师应通过有限元分析程序进行证明,应按照韩国标准技术规范进行。通过给出偏转的斜率来制造车身以补偿强度和刚度。偏转是弯曲的。因此,这项研究分析了弯头根据主线上的负荷条件和收入服务如何影响汽车人员的安全性和耐用性。引入了车身结构的方法和分析模型来证明它们。

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