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首页> 外文期刊>Journal of testing and evaluation >Fatigue Performance of Vertical Vibration Compacted Cement-Stabilized Recycled Pavement Materials
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Fatigue Performance of Vertical Vibration Compacted Cement-Stabilized Recycled Pavement Materials

机译:垂直振动压实水泥稳定再生路面材料的疲劳性能

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Cement-stabilized recycled pavement materials (CRPMs) have been increasingly used in road engineering. However, the fatigue performance of CRPMs compacted by vertical vibration compaction method (VVCM) has rarely been studied. This paper focuses on the fatigue performances of the CRPMs (including three ratios of reclaimed cement base material and reclaimed asphalt pavement materials, three contents of virgin aggregate, and two contents of cement) compacted by VVCM and its impacting factors. Then, fatigue equations were established, and tensile strength structure coefficients were obtained. Results show that the ratio of reclaimed cement base material to reclaimed asphalt pavement material obviously affects the fatigue performance of CRPMs under the same stress level. Meanwhile, the analysis of the fatigue equations indicated that when the stress level is 0.80 or 0.85, the fatigue life of CRPMs with a ratio of reclaimed cement base material to reclaimed asphalt pavement material of 7: 3 is higher than that with other ratios. The fatigue life of CRPMs is appreciably improved with increased virgin aggregate content. The tensile strength structure coefficient of CRPMs is established for the pavement design. Verification results of an actual engineering project show that the value of tensile strength structure coefficient recommended in this study can effectively guide pavement structure design.
机译:水泥稳定的再生路面材料(CRPM)已越来越多地用于道路工程中。然而,很少研究通过垂直振动压实法(VVCM)压实的CRPM的疲劳性能。本文着重研究了用VVCM压实的CRPMs的疲劳性能(包括再生水泥基料和再生沥青路面材料的三种比例,原始骨料的三种含量和两种水泥的含量)及其影响因素。然后,建立疲劳方程,并获得抗拉强度结构系数。结果表明,在相同应力水平下,再生水泥基料与再生沥青路面材料的比例明显影响了CRPM的疲劳性能。同时,对疲劳方程的分析表明,当应力水平为0.80或0.85时,再生水泥基础材料与再生沥青路面材料的比率为7:3的CRPM的疲劳寿命高于其他比率。随着原始骨料含量的增加,CRPM的疲劳寿命明显提高。建立用于路面设计的CRPM的抗拉强度结构系数。实际工程项目的验证结果表明,本研究推荐的抗拉强度结构系数值可以有效指导路面结构设计。

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