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Experimental study on structural response of rigid pavements under moving truck load.

机译:卡车荷载作用下刚性路面结构响应的试验研究。

摘要

The structural adequacy of a rigid pavement can normally be predicted based on its structural response to the applied loads. While considerable knowledge of pavement behaviour under static loads is available word-wide, only very limited number of studies have been carried out in the past to determine the effect of dynamic loads on rigid pavement deteriorations. Hence, opinions differ as to which type of load (static or dynamic) results in greater values of base deflection or flexural stress.ududIn the present study, a rigid pavement test section consisting of two jointed reinforced concrete pavements and two jointed plain (unreinforced) concrete pavements was constructed and tested under both quasi-static and dynamic truck loads. Truck load was allowed to wander at predetermined locations on top of the instrumented pavement. Nominal speeds from 5 km/h to 55 km/h were used in the study. Various devices including strain gauges, displacement transducers, vertical accelerometers and thermocouples were installed at different depths along the test section. A total of 5184 time history responses of the test section were recorded. Results indicate the importance of dynamic analysis in rigid pavement design.
机译:通常可以基于刚性路面对施加载荷的结构响应来预测其刚性。尽管可以在整个单词范围内获得有关静态载荷下路面行为的大量知识,但过去仅进行了非常有限的研究来确定动态载荷对刚性路面劣化的影响。因此,对于哪种类型的载荷(静态或动态)导致更大的基础变形或挠曲应力,存在不同的看法。 ud ud在本研究中,刚性路面试验段由两个钢筋混凝土路面和两个平原路面组成(无钢筋)混凝土路面是在准静态和动态卡车荷载下建造和测试的。允许卡车负载在人行道上方的预定位置徘徊。在研究中使用了从5 km / h到55 km / h的额定速度。沿着测试部分的不同深度安装了各种设备,包括应变仪,位移传感器,垂直加速度计和热电偶。总共记录了5184个测试部分的时间历史响应。结果表明动态分析在刚性路面设计中的重要性。

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