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Unified fatigue characteristics model for cement-stabilized macadam under various loading modes

机译:各种加载模式下水泥稳定碎石的统一疲劳特性模型

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Cement-stabilized macadam is widely employed as a base-layer of pavement in China, because of its high strength and stiffness. However, fatigue cracking of the cement-stabilized macadam based pavement is prone to occur under multiple traffic loads, which affects the service life of the pavement. The main objective of this work is to reveal the fatigue characteristics of cement-stabilized macadam under various loading modes by developing a unified fatigue characteristics model. To this end, an unconfined compressive strength test, indirect tensile strength test, and four-point bending strength test were conducted for the cement-stabilized macadam samples under various loading rates. A power function was employed to the pattern of variation of strength with loading rates. The stress ratio of the fatigue test associated with the loading rate was obtained and defined as the rate-dependent stress ratio. Also, the fatigue tests under various loading modes were implemented based on the rate-dependent stress ratio and nominal stress ratio. The preliminary laboratory experimental results showed that it is challenging to compare fatigue performance under different loading modes based on nominal stress ratio. However, the problems of uncertainty and non-uniqueness of fatigue characteristics under various loading modes were resolved by employing the idea of rate-dependent stress ratio in the correlation analyses. Based on that, the new strength structure coefficient associated with the loading rate was proposed in this study. Therefore, the proposed research results provided the fundamental understanding of the fatigue resistance design of pavement with semi-rigid base-layer. (C) 2019 Elsevier Ltd. All rights reserved.
机译:水泥稳定碎石由于其高强度和刚度而在中国被广泛用作路面的基础层。然而,在多种交通负荷下,水泥稳定的碎石基路面的疲劳开裂容易发生,这会影响路面的使用寿命。这项工作的主要目的是通过建立统一的疲劳特性模型来揭示水泥稳定碎石在各种载荷模式下的疲劳特性。为此,在各种加载速率下对水泥稳定的碎石样品进行了无边压缩强度测试,间接拉伸强度测试和四点弯曲强度测试。幂函数用于强度随负载率变化的模式。获得与加载速率相关的疲劳测试的应力比,并将其定义为与速率相关的应力比。同样,基于速率相关的应力比和标称应力比,在各种载荷模式下进行了疲劳测试。初步的实验室实验结果表明,根据标称应力比比较不同载荷模式下的疲劳性能具有挑战性。然而,在相关分析中采用了速率相关应力比的思想,解决了各种载荷模式下疲劳特性的不确定性和非唯一性问题。在此基础上,提出了与加载速率有关的新的强度结构系数。因此,所提出的研究结果为半刚性基层路面的抗疲劳设计提供了基本的认识。 (C)2019 Elsevier Ltd.保留所有权利。

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