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首页> 外文期刊>Journal of materials in civil engineering >Early-Age Fatigue Damage Assessment of Cement-Treated Bases under Repetitive Heavy Traffic Loading
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Early-Age Fatigue Damage Assessment of Cement-Treated Bases under Repetitive Heavy Traffic Loading

机译:重复交通负荷下水泥处理基础的早期疲劳损伤评估

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摘要

This paper aims to develop measures to minimize the early-age fatigue damage of prematurely opened cement-treated bases (CTBs) due to repetitive heavy traffic loading. The four-point bending test was used in this study to characterize the early-age fatigue performance as well as the flexural properties of two different locally sourced granular materials stabilized with 3% general purpose (GP) cement. All the flexural tests were executed under stress-controlled mode. The fatigue test results evinced the existence of an endurance limit in cemented granular materials (CGMs) even at 7days curing age. A stress-based fatigue performance model was developed for predicting the early-age fatigue performance of CGMs in service. In addition, the 7-day fatigue test data from this study were validated using existing CGM fatigue models. The numerical results obtained from the CIRCLY program indicated that the level of interaction between the axles of an axle configuration decreases with decreasing CTB layer thickness, resulting in increased pavement fatigue damage. It was also found that the asphalt cover over CTB required to prevent the occurrence of initial fatigue damage to the CTB decreases with increasing CTB modulus, subgrade strength, and CTB layer thickness. The limitations and simplifications in current pavement design and testing methods are also critically discussed and addressed on the basis of the results of this study.
机译:本文旨在制定措施,以尽量减少由于重复的繁忙交通负荷而过早开放的水泥处理基础(CTB)的早期疲劳损伤。在这项研究中使用四点弯曲试验来表征早期疲劳性能以及两种不同的局部固结有3%通用(GP)水泥的颗粒状材料的弯曲性能。所有挠曲测试均在应力控制模式下执行。疲劳测试结果表明,即使在固化7天时,水泥颗粒材料(CGM)也存在耐久性极限。建立了基于应力的疲劳性能模型,用于预测在役的CGM的早期疲劳性能。此外,使用现有的CGM疲劳模型验证了该研究的7天疲劳测试数据。从CIRCLY程序获得的数值结果表明,车轴配置的车轴之间的相互作用水平随C​​TB层厚度的减小而降低,从而导致路面疲劳损伤的增加。还发现,随着CTB模量,路基强度和CTB层厚度的增加,防止CTB发生初始疲劳损伤所需的CTB上的沥青覆盖层会减少。基于本研究的结果,也对当前路面设计和测试方法的局限性和简化性进行了严格的讨论和讨论。

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