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Measurement of the viscoelastic properties of asphalt mortar and its components with indentation tests

机译:测量沥青砂浆的粘弹性及其用压痕试验的组分测量

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Reliable determination of material properties is a key component for modelling and performance prediction of asphalt pavements. This paper deals with the potential use of instrumented indentation tests for viscoelastic characterisation of asphalt mortar as a new alternative to existing techniques. The main focus lies on the potential of indentation tests for multi-scale measurement of the shear relaxation modulus. A three-dimensional finite element model of a rigid spherical indenter penetrating an asphalt mortar sample is developed and used to model indentation tests performed at different material scales. The asphalt mortar is modelled as an idealised fine aggregate composite with elastic spheres, suspended within a viscoelastic bitumen mastic matrix. Based on the obtained numerical results the scale-dependency of the shear relaxation modulus measured with the indentation test is investigated. It is shown that the measurement scale is effectively controlled by the size of the indenter-specimen contact area, while the effect of indentation depth is minimal. The minimum contact area size required for obtaining representative properties, measured at the mortar scale, is determined. The viscoelastic parameters obtained from the indentation model are compared to those obtained using a representative volume element (RVE) for the asphalt mortar. In this way, the paper provides a new impulse for linking the mortar and asphalt scales in the multiscale modelling of asphalt mixtures. Feasibility of the proposed testing technique is further evaluated experimentally. Viscoelastic indentation tests are performed on asphalt mastics and mortar at two different sizes of contact areas. Experimental results indicate that indentation tests allow reliable characterisation of mortars relaxation modulus on both macro-scale as well as on individual component level.
机译:可靠的材料特性的测定是用于沥青路面的建模和性能预测的关键组成部分。本文涉及仪器缩进试验的含有粘弹性表征沥青砂浆作为现有技术的新替代方案。主要焦点在于对剪切松弛模量的多尺度测量进行压痕试验的潜力。开发了穿透沥青砂浆样品的刚性球形压痕的三维有限元模型,并用于模拟在不同材料尺度上进行的压痕试验。沥青砂浆被建模为具有弹性球的理想细聚合物复合材料,悬浮在粘弹性沥青棉质基质内。基于所获得的数值结果,研究了用压痕试验测量的剪切弛豫模量的比例依赖性。结果表明,测量标度通过压痕样本接触面积的尺寸有效地控制,而压痕深度的效果是最小的。确定在砂浆秤上测量的代表性特性所需的最小接触面积尺寸。将从压痕模型获得的粘弹性参数与使用用于沥青砂浆的代表体积元素(RVE)获得的粘弹性参数。通过这种方式,本文提供了一种用于将砂浆和沥青鳞片连接的沥青混合物的多尺度建模中的脉动和沥青鳞片进行了新的脉冲。实验进一步评估所提出的测试技术的可行性。在两种不同尺寸的接触区域的沥青胶芯和砂浆上进行粘弹性缩进试验。实验结果表明,压痕试验允许在宏观级以及各个组件水平上可靠地表征迫击炮放松模量。

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