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首页> 外文期刊>Journal of testing and evaluation >Using Rolling Dynamic Deflectometer and Overlay Tester to Determine the Reflective Cracking Potential
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Using Rolling Dynamic Deflectometer and Overlay Tester to Determine the Reflective Cracking Potential

机译:使用滚动动态偏转仪和覆盖测试仪确定反射裂纹的电势

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A forensic study was performed using a rolling dynamic deflectometer (RDD) and overlay tester (OT) to investigate the reflective cracks on SH87. Comparative tests were performed on the BU90 that has no cracks. The test results show that BU90 has lower density and lower asphalt content than SH87. This means the hot-mix asphalt (HMA) on BU90 has less resistance to reflective cracking than SH87. The OT confirmed that the cycles to failure are less for BU90 than for SH87. Thus, in terms of individual layer properties, the wearing surface and crack-retarding layer on SH87 has a greater crack resistance than that on BU90 and the asphalt mixes were not the principal reason for the cracking. The three main contributing factors for the reflective cracking on SH87 are: (1) thinner HMA, (2) higher joint movements, and (3) poor bonding between layers. Based on the reliability concept, at 90 % confidence level, the threshold W1-W3 deflection values were found to be 4.4 mils and it is much less than 6.5 mils developed from the IH20 project that has 100 mm of HMA as opposed to 64 mm for the SH87 project. It reaffirms that thicker HMA takes longer to have reflective cracking and it also needs a higher threshold W-Wi deflection value. Thus, the thicker HMA overlay on BU90 (183 mm) would delay the reflective cracks. The methodology presented demonstrates RDD and OT's abilities to characterize the reflective cracking potential and the proposed threshold value provides a good foundation for further refinement when additional data are available.
机译:使用滚动动态偏转仪(RDD)和重叠测试仪(OT)进行法医研究,以研究SH87上的反射裂纹。在没有裂纹的BU90上进行了对比测试。测试结果表明,BU90的密度和沥青含量均低于SH87。这意味着BU90上的热混合沥青(HMA)比SH87具有较小的抗反射龟裂性。 OT确认,BU90的失效周期少于SH87。因此,就单个层的性能而言,SH87的耐磨表面和抗裂层比BU90具有更高的抗裂性,而沥青混合料并不是造成裂纹的主要原因。 SH87上反射裂纹的三个主要影响因素是:(1)HMA较薄;(2)较高的接头运动;(3)层之间的粘结不良。根据可靠性概念,在90%的置信度下,发现W1-W3阈值挠度值为4.4密耳,并且比IH20项目开发的6.5密耳小得多,IH20项目的HMA为100毫米,而HMA为64毫米。 SH87项目。它重申,较厚的HMA需要更长的时间才能产生反射性裂纹,并且还需要更高的W-Wi阈值阈值。因此,BU90上较厚的HMA覆盖层(183毫米)会延迟反射裂缝。提出的方法论证了RDD和OT表征反射裂痕潜力的能力,并且当有更多数据可用时,建议的阈值为进一步优化提供了良好的基础。

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