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FE numerical tests of railway wagon for intermodal transport according to PN-EU standards

机译:根据PN-EU标准的多式联运铁路货车的FE数值测试

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摘要

A special wagon, presented in the paper, can be used for intermodal transport of various types of vehicles. It enables transport of vehicles of 36 tons mass and height of 4m on the GB1 clearance height. An innovative wagon is equipped with a frame-support with marginal parts mounted on standard biaxial bogies and the central part lowered with a rotatable loading platform. The rotating part of wagon acts as a kind of platform, allowing truck to move through it during load/unload. During railway operation, this rotating platform is to become an integrated part of the wagon; the tailboards of the rotating part will be connected to the over-bogie part with the special locks. A unique concept of the wagon structure forced a design approach which was rather unusual for the rail industry. Since the design team aimed at very challenging demands of GB1 envelope and usage of standard bogies, the layout of the wagon had to be thoroughly examined in terms of its overall stiffness. Every major design change had to be simulated in order to accurately predict its influence on the whole wagon structure. FE analysis was used for numerical tests of such a wagon structure in different configurations. The calculations were carried out on the basis of PN-EN standards. Selected results of numerical tests of the prototype version of a such wagon for intermodal transports were presented in the paper.
机译:本文介绍的专用货车可用于各种车辆的联运。它可以运输重量为36吨,高度为4m(按GB1净空高度)的车辆。一种创新的旅行车配备了框架支架,其边缘部分安装在标准的双轴转向架上,而中央部分则通过可旋转的装载平台降低。货车的旋转部分充当一种平台,允许卡车在装卸过程中在其中移动。在铁路运营期间,该旋转平台将成为货车的组成部分。旋转部件的尾板将通过特殊锁扣连接至转向架部件。货车结构的独特概念迫使采用一种设计方法,这在铁路行业中是相当不寻常的。由于设计团队的目标是应对极具挑战性的GB1信封和标准转向架的使用要求,因此必须从整体稳定性方面彻底检查货车的布局。为了准确预测其对整个货车结构的影响,必须模拟每个主要的设计变更。有限元分析用于在不同配置下的这种货车结构的数值测试。该计算是根据PN-EN标准进行的。本文介绍了这种多式联运货车原型的数值测试结果。

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