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INFLUENCE OF SUBGRADE/SUBBASE NON-UNIFORMITY ON PCC PAVEMENT PERFORMANCE

机译:路基/路基的不均匀性对PCC路面性能的影响

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摘要

Several reconstructed Portland Cement Concrete (PCC) pavement projects in Iowa were recently studied to evaluate the influence of subgrade/subbase non-uniformity on pavement performance. Crack surveys and field tests to evaluate the subgrade/subbase were conducted. Dynamic cone penetrometer, nuclear density gauge, GeoGauge vibration, and Clegg Impact Hammer tests were performed in a grid pattern (2.5 m x 2.5 m over an area of about 7.5 m wide by 30 m long) to develop a database of the subgrade/subbase engineering property values. Results of stiffness, moisture and density, strength, and soil classification were used to produce plots indicating spatial variability of a given property. Natural subgrade soils, fly ash stabilized subgrade, reclaimed hydrated fly ash subbase, and aggregate subbase were studied. The influence of spatial variability of subgrade/subbase was evaluated by modeling elastic properties of the pavement and subgrade using the ISLAB2000 finite element analysis program. Results show that non-uniform subgrade/subbase stiffness increases localized deflections and causes stress concentrations in the pavement, which lead to fatigue cracking and other types of pavement distresses.
机译:最近,对爱荷华州的几个波特兰水泥混凝土路面项目进行了研究,以评估路基/路基不均匀性对路面性能的影响。进行了裂缝调查和现场测试,以评估路基/路基。动态网格渗透仪,核密度仪,GeoGauge振动和Clegg冲击锤测试以网格模式进行(2.5 mx 2.5 m,宽约7.5 m,长30 m),以开发路基/路基工程数据库属性值。刚度,湿度和密度,强度以及土壤分类的结果用于生成表示给定属性的空间变异性的图。研究了天然路基土壤,粉煤灰稳定路基,再生水合粉煤灰路基和骨料路基。通过使用ISLAB2000有限元分析程序对人行道和路基的弹性特性进行建模,可以评估路基/路基空间变异性的影响。结果表明,不均匀的路基/路基刚度增加了局部挠度并导致路面中的应力集中,从而导致疲劳裂纹和其他类型的路面应力。

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