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Contact-induced deformation and damage of rocks used in pavement materials

机译:路面材料中接触岩石的变形和损伤

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摘要

Performance of stone-based construction materials, such as asphalt and unbound aggregate mixtures is defined to a great extent by the mechanics of the stone-to-stone interactions. Accordingly, the Discrete Element Method (DEM) is gaining popularity as a modelling tool to investigate the mechanical behavior of these materials. Contact and failure laws defining particles force-displacement relationships and the propensity of particles to break are crucial inputs for the DEM simulations. The present study aims at providing an experimental contact mechanics basis for the development of physically based stone-to-stone interaction laws. The attention is focused on investigating stone's force-displacement relationship and damage characteristics at pure normal loading for two stone materials used by the road industry. Experiments are performed at spherical contact profiles for cyclic and monotonically increasing loads. The emphasis lies on the evolution of contact compliance and accumulation of contact induced damage. The effect of surface roughness on the materials response is examined through comparative experiments performed on the specimens with different roughness values. Optical and environmental scanning electron microscopy (ESEM) observations of the contact induced damage at the material surface are presented and discussed in the context of contact mechanics. The implications of the reported experimental findings on the development of mechanics based contact and failure laws for the DEM modelling of stone-based construction materials are discussed. (C) 2017 Elsevier Ltd. All rights reserved.
机译:石基建筑材料(如沥青和未结合的骨料混合物)的性能在很大程度上取决于石与石相互作用的力学。因此,离散元方法(DEM)作为研究这些材料的机械行为的建模工具正变得越来越流行。定义粒子力-位移关系和粒子破裂倾向的接触和破坏定律是DEM模拟的关键输入。本研究旨在为基于物理的石头对石头相互作用定律的发展提供实验接触力学基础。关注的重点是调查道路行业使用的两种石材在纯法向载荷下石材的力-位移关系和损伤特性。在球形接触轮廓上进行实验,以承受周期性和单调增加的载荷。重点在于接触顺应性的演变以及接触引起的损伤的累积。通过对具有不同粗糙度值的样品进行比较实验,检查了表面粗糙度对材料响应的影响。光学和环境扫描电子显微镜(ESEM)观察了材料表面接触引起的损伤,并在接触力学的背景下进行了讨论。讨论了报告的实验结果对基于力学的接触和破坏定律发展的启示,对基于石料的建筑材料进行DEM建模。 (C)2017 Elsevier Ltd.保留所有权利。

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