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Asphalt Durability and Self-healing Modelling with Discrete Particles Approach

机译:沥青耐久性和自我愈合建模,采用离散粒子的方法

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Asphalt is an important road paving material, where besides an acceptable price, durability, surface conditions (like roughening and evenness), age-, weather- and traffic-induced failures and degradation are relevant aspects. In the professional road engineering branch empirical models are used to describe the mechanical behaviour of the material and to address large-scale problems for road distress phenomena like rutting, ravelling, cracking and roughness. The mesoscopic granular nature of asphalt and the mechanics of the bitumen between the particles are only partly involved in this kind of approach. The discrete particle method is a modern tool that allows for arbitrary (self-)organization of the asphalt meso-structure and for rearrangements due to compaction/cyclic loading. This is of utmost importance for asphalt during the construction phase and the usage period, in forecasting the relevant distress phenomena and understand their origin on the grain-, contact-, or molecular scales. Contact models that involve visco-elasticity, plasticity, friction and roughness are state-of-the art in fields like particle technology and can now be modified for asphalt and validated experimentally on small samples. The ultimate goal is then to derive micro- and meso-based constitutive models that can be applied to modellingbehaviour of asphalt pavements on the larger scales. Using the new contact models, damage and crack formation in asphalt and their propagation can be modeled. Furthermore, the possibility to trigger self-healing in the material can be investigated from a micromechanical point of view.
机译:沥青是一种重要的铺路材料,其中除了可接受的价格,耐久性,表面条件(如粗糙化和均匀性),年龄,天气和交通引起的故障和退化相关的方面。在专业化道路工程分会实证模型被用来描述材料的机械性能,并解决道路窘迫现象像车辙,纠缠,开裂和粗糙大规模问题。沥青的介观颗粒性质和颗粒之间的沥青的机制仅部分参与了这种做法。离散颗粒的方法是一种现代工具,允许任意的(自)沥青内消旋结构的组织以及用于由于压实/循环载荷重排。这是在施工阶段和使用期限为沥青最重要的,在预测相关的窘迫现象,并了解他们对grain-,非接触,或分子尺度的起源。涉及粘弹性,可塑性,摩擦和粗糙度接触模型是国家的本领域样颗粒技术领域,现在可以改性沥青和验证实验小样本。最终的目标是再推导微而且可以应用到在较大规模modellingbehaviour沥青路面观为基础的本构模型。使用在沥青和它们的传播新的接触模式,损坏和裂缝的形成可以被建模。此外,可能性触发自愈在该材料可以从一个微机械点进行调查。

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