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首页> 外文期刊>Journal of materials in civil engineering >Effect of Construction Cracks on the Tensile and Bond Strength of Asphalt Pavements
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Effect of Construction Cracks on the Tensile and Bond Strength of Asphalt Pavements

机译:施工裂缝对沥青路面抗拉强度和粘结强度的影响

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摘要

Traffic loads and environmental (climate) conditions are among the most important variables governing the long-term performance of asphalt pavement developed by pavement designers. Several studies done at Carleton University indicate that construction methods can also affect the long-term performance of asphalt pavement by creating hairline surface cracks that allow water to penetrate the asphalt layer. This reduces the tensile strength of the asphalt layer and destroys the bonds in the asphalt between pavement layers. This paper presents the results and major findings of an experimental investigation performed on large-scale asphalt slabs that were extracted from newly laid pavement from an actual highway project. The laboratory work included testing the slabs under direct tensile stress and subjecting them to temperatures ranging from room temperature (+20 degrees C) to -20 degrees C. The testing included one hundred nineteen 300x100mm asphalt samples, with thicknesses of 50mm for single layer and 100mm for double layer. The research also included evaluating the bonds between asphalt layers built in the field for what the authors believe is the first time. The results showed that construction-induced cracks affect the tensile strength of new asphalt roads and can weaken the bond between the upper and lower layers when overlays are constructed. Statistical analysis confirmed that the differences observed in the results are significant.
机译:交通负载和环境(气候)条件是控制路面设计者开发的沥青路面长期性能的最重要变量。卡尔顿大学(Carleton University)进行的几项研究表明,施工方法还会通过产生细线表面裂缝而使水渗透沥青层,从而影响沥青路面的长期性能。这降低了沥青层的抗张强度并破坏了路面层之间的沥青中的粘结。本文介绍了对从实际公路项目的新铺装路面中提取的大型沥青板进行实验研究的结果和主要发现。实验室工作包括在直接拉伸应力下测试平板,并使其经受从室温(+20摄氏度)至-20摄氏度的温度范围。测试包括119个300x100mm沥青样品,单层厚度为50mm,双层100mm。研究人员还首次评估了在田间建造的沥青层之间的粘结性。结果表明,施工引起的裂缝会影响新型沥青路面的抗拉强度,并在覆盖层施工时削弱上层和下层之间的结合力。统计分析证实结果中观察到的差异是显着的。

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