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Development of characterisation models for incremental permanent deformation model for asphalt concrete in confined compression

机译:压缩状态下沥青混凝土增量永久变形模型表征模型的建立

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Permanent deformation modelling research at North Carolina State University has produced the so-called incremental model that fits the primary and secondary regions in permanent strain growth. Triaxial repeated load permanent deformation tests are conducted on Federal Highway Administration-Accelerated Loading Facility and NY9.5B mixtures to evaluate the effects of temperature, stress, and load time on permanent deformation and, therefore, to determine the form of the incremental model to account for these effects. The test results suggest that the slope in the log(ε_(vp)) - log(N) plot is constant regardless of these three major factors. This observation provides the basis for two modelling approaches: the functionalised model and the shift model. The functionalised model is formulated by expressing the coefficients of the incremental model in terms of the reduced load time and deviatoric stress. The shift model, based on the time-temperature-stress superposition principle, utilises the strain mastercurve and reduced load time and deviatoric stress shift functions. A composite loading test that is composed of varying load times and deviatoric stresses is proposed as the model calibration test. It is found that the permanent strain growth under the complex loading histories predicted by the calibrated models is in good agreement with the measured permanent strain growth.
机译:北卡罗莱纳州立大学的永久变形模型研究产生了所谓的增量模型,该模型适合永久应变增长中的主要和次要区域。在联邦公路管理局的加速荷载设施和NY9.5B混合物上进行了三轴反复荷载永久变形试验,以评估温度,应力和荷载时间对永久变形的影响,并因此确定增量模型的形式以考虑对于这些效果。测试结果表明,无论这三个主要因素如何,log(ε_(vp))-log(N)图中的斜率都是恒定的。该观察结果为两种建模方法提供了基础:功能化模型和转移模型。通过以减少的加载时间和偏应力表示增量模型的系数来制定功能化模型。该位移模型基于时间-温度-应力叠加原理,利用应变主曲线,缩短的加载时间和偏应力位移功能。提出了一种由变化的载荷时间和偏应力组成的复合载荷试验作为模型校准试验。发现在校准模型预测的复杂载荷历史下的永久应变增长与测得的永久应变增长非常吻合。

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