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Accelerated pavement testing and modeling of reflective cracking in pavements

机译:加速路面测试和路面反射裂缝的建模

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In the field of reflective cracking initiation and propagation in pavement structures, an Accelerated Pavement Testing (APT) has been developed. The numerical method is also supported. Numerical results obtained by calculations made with the finite element CESAR-LCPC software are then compared with the experimental data. The reflective cracking APT experience is the first step in the development of a new laboratory equipment to evaluate the design of bituminous layers to repair pavements. The experiment was performed on a 30 m track where eight discontinuities were established by cut-ting-off the sub-bases in order to ensure a crack development in the bituminous layer. The conditions that promote crack propagation were reproduced by the application of heavy periodic loads using the Fabac ALT-APT test rig. The width of the bituminous layer was decreased to facilitate the observation of the crack propagation, while avoiding creep of the material. The structure has a large number of sensors that measure longitudinal and transverse deformations at the bottom and at the surface of the bituminous layer. The deflections and the displacements are measured at several levels of the structure, as well as the temperature and the lateral edge cracking which is monitored by cracking sensors on both sides of the track. Preliminary results on two joints were used to determine the mechanisms of rupture of the structure. Four more tests with improved sensors have completed the information. Experimental and numerical results are compared in order to validate the analysis of the fatigue process (debonding, damage and cracking) in full scale pavement.
机译:在路面结构中反射裂缝的引发和扩展领域,已经开发了加速路面测试(APT)。还支持数值方法。然后将通过有限元CESAR-LCPC软件进行计算获得的数值结果与实验数据进行比较。反射裂纹APT的经验是开发新的实验室设备以评估沥青层的设计以修复路面的第一步。实验是在30 m的轨道上进行的,其中通过切掉子基底建立了八个不连续点,以确保沥青层中出现裂纹。通过使用Fabac ALT-APT测试台施加较大的周期性载荷来重现促进裂纹扩展的条件。减少沥青层的宽度以促进观察裂纹扩展,同时避免材料的蠕变。该结构具有大量传感器,可测量沥青层的底部和表面的纵向和横向变形。在结构的多个水平上测量挠度和位移,并通过轨道两侧的裂纹传感器监控温度和横向边缘裂纹。两个关节的初步结果用于确定结构破裂的机制。使用改进的传感器进行的另外四项测试已完成了该信息。比较了实验结果和数值结果,以验证对全尺寸路面疲劳过程(脱胶,损坏和开裂)的分析。

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