Application of Acoustic Emissions Technique in Assessment of Cracking Performance of Asphalt Pavement Materials

B. Behnia
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Abstract

This chapter focuses on various applications of acoustic emissions (AE) technique in evaluation of cracking in asphalt pavements including (1) assessment of low-temperature cracking of asphalt binders and mixtures and (2) quantitative characterization of rejuvenators’ efficiency in restoring aged asphalt pavements to their crack-resistant state. The AE-based embrittlement temperature results of 24 different asphalt materials consisting of eight different binders, each at three oxidative aging levels are presented. Results show that embrittlement temperatures correlated well with corresponding bending beam rheometer (BBR-based) critical cracking temperatures with R2 = 0.85. This chapter also presents application of AE for evaluation of rejuvenators’ efficiency on asphalt materials at various oxidative aging levels. The Geiger’s iterative source location method was employed to accurately determine embrittlement temperatures throughout the thickness of rejuvenator-treated asphalt samples. Results showed that the low temperature cracking properties of oxidative aged materials after 2 weeks of dwell time of rejuvenator have been recuperated. Moreover, it was observed that cracking characteristics of aged asphalt 6–8 weeks after applying rejuvenator far exceeded that of the virgin materials. The promising results suggest that the AE technique can be considered as a viable approach for the assessment of low temperature behavior of asphalt pavements.
声发射技术在沥青路面材料开裂性能评价中的应用
本章重点介绍了声发射(AE)技术在沥青路面裂缝评价中的各种应用,包括(1)评估沥青粘合剂和混合物的低温裂缝,(2)定量表征再生剂在将老化沥青路面恢复到抗裂缝状态方面的效率。给出了由8种不同粘结剂组成的24种不同沥青材料在3种氧化老化水平下的ae脆化温度结果。结果表明,脆性温度与相应的弯曲梁流变仪(bbr)临界开裂温度相关性良好,R2 = 0.85;本章还介绍了AE在不同氧化老化水平下沥青材料恢复剂效率评价中的应用。采用盖革迭代源定位法精确测定了修复剂处理沥青样品的整个厚度的脆化温度。结果表明,氧化老化材料在活化剂作用2周后,其低温开裂性能得到恢复。使用回春剂6 ~ 8周后,老化沥青的开裂特征远远超过未使用材料。结果表明声发射技术可作为评价沥青路面低温性能的一种可行方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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