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Direct Characterization of Aging Diffusion in Asphalt Mixtures Using Micro-Indentation and Relaxation (MIR)

机译:使用微压缩和弛豫(MIR)直接表征沥青混合物中老化扩散的分解

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This study serves as proof of concept for using mixture Micro Indentation and Relaxation (MIR) and possible means of capturing mastic rheological properties in place without binder extraction and recovery. This is achieved via analysis of stress relaxation behavior of samples under constant indentation depth on laboratory fabricated mixture samples. For laboratory compacted samples, indentation is applied on mastic within the mix in the radial direction to explore the aging gradient. The results show significant difference in stiffness of mastic depending on location from the surface. Air content in the mix also appears to be a key factor influencing aging diffusion. The results prove the ability of this testing approach to capture rheological properties of asphalt binders within the mix directly. Testing mastic samples in the laboratory using Dynamic Shear Rheometer (DSR) was conducted to validate the results obtained from the mixture samples. The significant contribution of this study is that it provides direct testing of the material rather than rely on chemical extraction and recovery.
机译:该研究用作使用混合微压痕和弛豫(miR)的概念证明,以及可能在没有粘合剂的提取和恢复的情况下捕获乳香流变学特性的可能手段。这是通过在实验室制造的混合物样品上的恒定压痕深度下样品的应力松弛行为来实现这一点。对于实验室压实的样品,压痕在径向中施加在棉质内的乳胶上,以探索老化梯度。结果表现出胶泥刚度的显着差异,取决于表面的位置。混合中的空气含量也似乎是影响老化扩散的关键因素。结果证明了这种测试方法直接在混合物中捕获沥青粘合剂的流变性能的能力。使用动态剪切流变仪(DSR)测试实验室中的乳香样品以验证从混合物样品获得的结果。本研究的重大贡献是它提供了对材料的直接测试,而不是依赖于化学提取和恢复。

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