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Interaction of subgrade resistance and dimensions of asphalt pavement surface cracks on propagation of secondary distresses

机译:路基阻力与沥青路面表面裂缝尺寸对次生病害传播的影响

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800x600 Reactions created in road construction and secondary distresses made in pavement are dependent on dimensions and geometry of cracks, resistance of subgrade and existing pavement layers. Thus, this essay assessed the effect of changes in crack’s geometry and also the amount of subgrade resistance on settlement in the cracking place. Since pavement layers thickness has a drastic effect on the resistance of the layers, cracks propagation and secondary distresses, in this essay, different types of strong, semi-strong, and weak pavements have been considered according to combination of different thicknesses for the pavement layers which are respectively wearing layer with the thickness of 5, 10, 20 centimeters, base course with thickness of 10, 20, 40 centimeters and sub base with thickness of 15, 30 and 60 centimeter. Also, as pavement can be constructed in grounds with different resistance and so subgrade resistance has an important role in pavement settlement and distresses, in this essay, subgrade have been studied in three types of dense sand (strong soil), fine sand (semi-strong soil), and soft clay (weak soil) with different geotechnical properties. So, for preventing the mentioned problems, layers’ behavioral properties are considered as Mohr Coulomb-plastic and by three-dimensional modeling with finite element software of ABAQUS, we studied the degree of subgrade and cracked pavement surface settlement with different forms of cracking in different types of pavement and subgrade situations, like different thickness and behavioral properties. Then, to check results and validating software, by field observation, level of settlement in different cracking places was gathered and compared to the numerical results of the software. Results of finite element software show that by 25% increase in crack opening, the level of settlement of the surface layer and the surface of subgrade would increase by 49% and 38% respectively. Also the level of the surface and subgrade settlement would rise by increase in crack depth; and the measurements for 25% increase in crack depth are 16% for surface and 13% for subgrade. In addition, by increasing in the width of crack in soils with different resistance, width line slope of crack-settlement in weak soil would be about triple compared to strong soil, and by increase in depth of crack in soils with different resistance, depth line slope of crack-settlement in weak soil would be about twice compared to strong soil. By the use of probabilistic analysis, It was determined that in 95% confidence interval, cracking on deformation of surface and subgrade, is significantly under the influence of subgrade type and as the subgrade weakens, the amount of deformation will increase more. Normal 0 false false false EN-US X-NONE FA MicrosoftInternetExplorer4.
机译:800x600道路施工中产生的反作用和路面中的次生病害取决于裂缝的尺寸和几何形状,路基的阻力以及现有的路面层。因此,本文评估了裂缝几何形状的变化以及路基阻力对裂缝处沉降的影响。由于路面层的厚度对层的抵抗力,裂缝的扩展和二次应力的影响很大,因此,本文根据路面层不同厚度的组合考虑了不同类型的强,半强和弱路面。分别是厚度为5、10、20厘米的耐磨层,厚度为10、20、40厘米的基础层和厚度为15、30和60厘米的底层。同样,由于可以在具有不同抵抗力的地面上建造路面,因此路基阻力在路面沉降和遇险中起着重要作用,因此,本文研究了三种类型的致密砂土(强土),细砂土(半砂土)。强土)和具有不同岩土特性的软土(弱土)。因此,为防止上述问题,将层的行为特性视为Mohr Coulomb-plastic,并通过ABAQUS的有限元软件进行三维建模,我们研究了不同形式的不同开裂形式的路基和开裂路面的沉降程度路面类型和路基情况,例如不同的厚度和行为特性。然后,为了检查结果并验证软件,通过现场观察,收集了不同裂缝位置的沉降水平,并与软件的数值结果进行了比较。有限元软件的结果表明,裂纹开口增加25%,表层和路基表面的沉降水平将分别增加49%和38%。而且,随着裂缝深度的增加,地表和路基沉降量也会增加。裂纹深度增加25%的测量值,表面为16%,路基为13%。另外,通过增加不同抵抗力的土壤的裂缝宽度,弱化土壤的裂缝沉降宽度线斜率将比强土壤增加约三倍,并且通过增加抵抗力的土壤的裂缝深度,深度线较弱的土壤,裂缝的沉降斜率约为两倍。通过概率分析,可以确定,在95%的置信区间内,对地表和路基变形的影响明显受路基类型的影响,随着路基的减弱,变形量将增加更多。正常0否否否EN-US X-NONE FA MicrosoftInternetExplorer4。

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