动车车轮荷载作用下路基循环塑性变形特性

B. Dareeju, C. Gallage, M. Dhanasekar, T. Ishikawa
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引用次数: 3

摘要

虽然塑性变形是轨道频繁劣化的控制因素,但在铁路桥梁过渡区设计中,一般不考虑路基及其他工程层的循环塑性变形。然而,使用传统的实验室测试设备和技术很难复制火车交通下细粒路基/路堤层的实际应力行为。为此,研制了一种新型扭转单剪仪——多环剪切仪,用于评价移动轮载条件下路基材料的实际应力状态及其相应的循环塑性变形特性。采用理论模型试验结果验证了多环剪切试验结果;建立了多环剪切仪模拟动车轮载条件下路基循环塑性变形特性的能力。本文介绍了路基材料的主应力旋转对铁路循环塑性变形的影响,以及评价主应力旋转对铁路轨道劣化影响的试验方法的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cyclic plastic deformation characteristics of subgrade under moving train wheel load
Cyclic plastic deformation of subgrade and other engineered layers is generally not taken into account in the design of railway bridge transition zones, although the plastic deformation is the governing factor of frequent track deterioration. Actual stress behavior of fine grained subgrade/embankment layers under train traffic is, however, difficult to replicate using the conventional laboratory test apparatus and techniques. A new type of torsional simple shear apparatus, known as multi-ring shear apparatus, was therefore developed to evaluate the actual stress state and the corresponding cyclic plastic deformation characteristics of subgrade materials under moving wheel load conditions. Multi-ring shear test results has been validated using a theoretical model test results; the capability of the multi-ring shear apparatus for replicating the cyclic plastic deformation characteristics of subgrade under moving train wheel load conditions is thus established. This paper describes the effects of principal stress rotation (PSR) of the subgrade materials to the cyclic plastic deformation in a railroad and impacts of testing methods in evaluating the influence of principal stress rotation to the track deterioration of rail track.
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