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首页> 外文期刊>Journal of Materials Science >Fracture resistance characterization of chemically modified crumb rubber asphalt pavement
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Fracture resistance characterization of chemically modified crumb rubber asphalt pavement

机译:化学改性的碎橡胶沥青路面的抗断裂性能

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摘要

The fracture resistance of chemically modified crumb rubber asphalt (CMCRA) pavement was evaluated based on the J-integral concept. The chemical modification process used was developed by the Federal Highway Administration and patented in 1998. The results were compared to that of crumb rubber asphalt (CRA) and control asphalt pavement. Four semi-circular core specimens (76 mm radius and 57 mm thickness) were cut from each gyratory compacted cylinder (GCC) for the fracture resistance tests. Notches with different depth to radius ratios were introduced at the middle of the flat surface of each specimen. Three point bend loading was used to allow the separation of the two surfaces due to tensile stresses at the crack tip. It was found that the CMCRA pavement, had the highest residual strength, at all notch depths tested. The fracture resistance of the CMCRA pavement, based on J(c) was found to be about twice that of the CRA and control pavements. The CRA pavement was found to have a slightly higher fracture resistance than that of the control pavement. Scanning Electron Microscopic examination of the fracture surface of each mixture revealed the microstructural origin of the improved fracture resistance of the CMCRA pavement in comparison with the control pavement. (C) 2002 Kluwer Academic Publishers. [References: 28]
机译:基于J积分概念,评估了化学改性的碎橡胶沥青(CMCRA)路面的抗断裂性。使用的化学改性方法由联邦公路管理局开发,并于1998年获得专利。将结果与碎橡胶沥青(CRA)和对照沥青路面的结果进行比较。从每个旋转压实圆柱体(GCC)上切下四个半圆形岩心样本(半径为76 mm,厚度为57 mm)以进行抗断裂测试。在每个样品的平面中间插入具有不同深度与半径比的槽口。三点弯曲载荷被用于允许由于裂纹尖端处的拉应力而使两个表面分离。发现在所有测试的切口深度处,CMCRA路面具有最高的残余强度。发现基于J(c)的CMCRA路面的抗裂性约为CRA和对照路面的抗裂性的两倍。发现CRA路面的抗断裂性比对照路面略高。扫描电子显微镜检查每种混合物的断裂面,发现与对照路面相比,CMCRA路面的抗断裂性得到了改善。 (C)2002 Kluwer学术出版社。 [参考:28]

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