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Aggregate gradation design of asphalt mixture with stone-to-stone contact based on fuller’s model

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【作者】 王立久刘慧赵善宇

【Author】 WANG Li-jiu , LIU Hui , ZHAO Shan-yu School of Civil and Hydraulic Engineering, Dalian University of Technology, Dalian 116024, Liaoning, P. R. China

【机构】 School of Civil and Hydraulic Engineering,Dalian University of Technology

【摘要】 Based on Fuller’s model, a gradation design is presented for the load-carrying capacity of an asphalt mixture with stone-to-stone contact. The coarse aggregate gradation, fine aggregate and filler gradation are respectively designed for their different effiects on an asphalt mixture with stone-to-stone contact. The equation of coarse aggregate gradation is deduced from the Fuller’s model. Fine aggregate gradation is calculated by using Fuller’s equation. The asphalt mixture with the 16 mm maximum size of aggregate is verified. When the coefficient of coarse aggregate gradation is 0.35 and fine aggregate gradation is 0.25, the volume parameters of asphalt mixture meet the technical specifications. Moreover, the high temperature stability and crack resistance at low temperature are all well.

【Abstract】 Based on Fuller’s model, a gradation design is presented for the load-carrying capacity of an asphalt mixture with stone-to-stone contact. The coarse aggregate gradation, fine aggregate and filler gradation are respectively designed for their different effiects on an asphalt mixture with stone-to-stone contact. The equation of coarse aggregate gradation is deduced from the Fuller’s model. Fine aggregate gradation is calculated by using Fuller’s equation. The asphalt mixture with the 16 mm maximum size of aggregate is verified. When the coefficient of coarse aggregate gradation is 0.35 and fine aggregate gradation is 0.25, the volume parameters of asphalt mixture meet the technical specifications. Moreover, the high temperature stability and crack resistance at low temperature are all well.

【基金】 Project supported by the National Mega-Project of Scientific and Technical Programs of Ministry of Science and Technology of China (Grant No.2006BAJ05B07)
  • 【文献出处】 Journal of Shanghai University(English Edition) ,上海大学学报(英文版) , 编辑部邮箱 ,2010年05期
  • 【分类号】U414
  • 【被引频次】1
  • 【下载频次】52
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