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A 3D Contact Force Safety Criterion for Flange Climb Derailment of a Railway Wheel

机译:铁路车轮法兰爬升脱轨的3D接触力安全标准

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A revision on the railway safety criteria evolution has shown that the fundamentals of wheel/rail contact phenomena have not been completely addressed. Limitations encountered on the available criteria for safety against derailment have motivated a deeper analysis on the wheel rolling mechanism. The contact mechanics were completely modelled with two tangential components, lateral and longitudinal forces, including spinning effects. An extended three-dimensional formula for the railway wheel flange climb derailment process is derived. Results show that calculated values agree with the classical formulation, and extend its application. This formulation allows the identification of LIV limit values for a three-dimensional rolling-contact mechanism. It can help to identify more reliable limits, relocating the safety margin for the dynamic operation of a railway vehicle.
机译:对铁路安全标准演变的修订表明,车轮/铁路接触现象的基本原理尚未完全解决。现行的防脱轨标准受到限制,促使人们对车轮滚动机构进行更深入的分析。接触力学完全用两个切向分量建模,包括横向和纵向力,包括旋转效应。推导了铁路轮缘爬升脱轨过程的扩展三维公式。结果表明,计算值与经典公式吻合,并扩展了其应用范围。该公式允许识别三维滚动接触机构的LIV极限值。它可以帮助确定更可靠的极限,从而重新定位铁路车辆动态运行的安全裕度。

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