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Shakedown analysis of anisotropic asphalt concrete pavements with clay subgrade

机译:粘土路基各向异性沥青混凝土路面减振分析。

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摘要

The essence of a shakedown analysis is to determine the critical shakedown load for a given pavement. Pavements operating above this load are predicted to exhibit increased accumulation of plastic strains under long-term repeated loading conditions that eventually lead to incremental collapse (e.g., deep ruts). Those pavements operating at loads below this critical level may exhibit some initial distress, but will eventually settle down to a steady state in which no further mechanical deterioration occurs. Conventional pavement design procedures assume that the pavement deteriorates indefinitely. However, there is now ample field evidence that this is not always true and that steady-state conditions are frequently achieved. The materials in the various layers of the pavement are modeled as elastic-plastic Mohr-Coulomb materials. Anisotropic strength effects are studied as well as the influences of variable temperature, stiffness, strength, and thickness of the asphalt concrete layer. A lower bound approach is used to provide safe estimates of the critical shakedown load. [References: 35]
机译:减震分析的实质是确定给定路面的临界减震载荷。预计在此载荷以上运行的路面在长期重复载荷条件下会表现出增加的塑性应变累积,最终导致逐渐塌陷(例如深车辙)。在低于该临界水平的载荷下运行的那些人行道可能会表现出一些初始问题,但最终会沉降到稳定状态,在此状态下不会发生进一步的机械劣化。传统的路面设计程序假定路面会无限期地变质。但是,现在有足够的现场证据表明这并不总是正确的,并且经常达到稳态条件。路面各层中的材料都被建模为弹塑性莫尔-库仑材料。研究了各向异性强度效应,以及温度,刚度,强度和厚度对沥青混凝土层的影响。下界方法用于提供临界减振负荷的安全估计。 [参考:35]

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