路基
底基层
车辙
开裂
结构工程
岩土工程
限制
工程类
有限元法
模数
压力(语言学)
粒状材料
沥青
材料科学
复合材料
机械工程
数学
离散数学
拓扑空间
一般拓扑结构
哲学
扩展拓扑
语言学
作者
R R Elliott,M R Thompson
摘要
Mechanistic design concepts for conventional flexible pavement (asphalt concrete (AC) surface + granular base/subbase) for highways are proposed and validated. The procedure is based on ILLI-PAVE, a stress dependent finite element computer program, coupled with appropriate transfer functions. Two design criteria are considered: AC flexural fatique cracking and subgrade rutting. Fatique cracking is controlled by limiting the tensile strain at the bbottom of the AC layer. Subgrade rutting is controlled by limiting the stress-ratio at the granular layer-subgrade interface. Algorithms were developed relating pavement response parameters (stresses, strains, deflections) to AC thickness, AC moduli, granular layer thickness, and subgrade moduli. Extensive analyses of the AASHO Road Test flexible pavement data are presented supporting the validity of the proposed concepts. (Author)
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