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Analysis on the fatigue properties of vertical vibration compacted lime-fly ash-stabilized macadam

机译:立式振动压实粉煤灰稳定碎石的疲劳性能分析

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摘要

Although lime-fly ash-stabilized macadam (LFASM) is a common material for the road base course of semi-rigid pavements, the fatigue performance of compacted LFASM has been rarely studied through the vibration testing method (VTM). In this work, LFASM was designed using the VTM instead of the quasi-static testing method. The vibration compaction test method was used to determine optimum water content and maximum dry density, and cast specimens were analyzed through the vibration pressure producing specimen method. The fatigue performances of the LFASM specimens were evaluated, and the fatigue equations of LFASM were then established. The suggested values for the coefficients of the tensile strength structure of LFASM were proposed on the basis of the derived fatigue equations. Results show that the splitting strength of LFASM increased with increasing lime and fly ash contents. However, the rates of the increase in the splitting strength of LFASM gradually declined. The splitting strength of LFASM with skeleton-dense (SD) gradation was higher than that of LFASM with gradation of specification (SG). The fatigue life of LFASM conformed to the two-parameter Weibull distribution, and the established fatigue equations accurately reflected the fatigue life of CRPMs. LFASM with SD gradation showed potentially better fatigue resistance than LFASM with SG. As the contents of lime and fly ash increased, the effect of gradation on the fatigue performance of LFASM became negligible. The failure probability based on the fatigue equations was 50%, the values of the regression coefficient a of the fatigue equations ranged from 1.198 to 1.278, and the values of coefficient b ranged from 0.051 to 0.059. The formula of the tensile strength structure coefficient K-s was proposed. The coefficients for tensile strength structure were recommended after considering various factors. The value of Ks obtained in this work can be used to effectively guide the design of pavement structures. The pavement designed with VTM offers many advantages in terms of crack resistance and durability. (C) 2017 Elsevier Ltd. All rights reserved.
机译:尽管粉煤灰稳定碎石(LFASM)是半刚性路面路基的常用材料,但很少通过振动测试方法(VTM)研究压实LFASM的疲劳性能。在这项工作中,LFASM是使用VTM而不是准静态测试方法设计的。振动压实试验方法用于确定最佳含水量和最大干密度,并通过产生振动压力的试样方法分析铸件试样。评估了LFASM试样的疲劳性能,然后建立了LFASM的疲劳方程。在推导的疲劳方程的基础上,提出了LFASM抗拉强度结构系数的建议值。结果表明,LFASM的劈裂强度随石灰和粉煤灰含量的增加而增加。然而,LFASM的分裂强度的增加率逐渐下降。具有骨架致密(SD)等级的LFASM的劈裂强度高于具有规范(SG)等级的LFASM的劈裂强度。 LFASM的疲劳寿命符合两参数威布尔分布,所建立的疲劳方程可准确反映CRPM的疲劳寿命。具有SD等级的LFASM显示出比具有SG的LFASM更好的抗疲劳性。随着石灰和粉煤灰含量的增加,分级对LFASM疲劳性能的影响可以忽略不计。基于疲劳方程的失效概率为50%,疲劳方程的回归系数a的范围为1.198到1.278,系数b的范围为0.051到0.059。提出了抗拉强度结构系数K-s的公式。在考虑了各种因素后,推荐了抗张强度结构的系数。在这项工作中获得的Ks值可用于有效指导路面结构的设计。 VTM设计的人行道在抗裂性和耐用性方面具有许多优势。 (C)2017 Elsevier Ltd.保留所有权利。

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