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Investigation of shear failure in airport asphalt pavements under aircraft ground manoeuvring

机译:飞机地面机动下机场沥青路面剪力故障调查

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This study aimed to investigate the effect of aircraft ground manoeuvring operations on shear failure potential of airfield asphalt pavements using the multi-axial stress state criteria. A numerical modelling study was conducted to characterise the stress state in the asphalt layer using an advanced three-dimensional (3-D) finite element (FE) model that has been validated in previous studies. The complex tyre-pavement interactions were characterised with non-uniform distributions of tyre-pavement contact stresses at vertical and tangential directions. Different tyre rolling conditions caused by aircraft ground manoeuvring during landing were simulated including free rolling, full-braking, and turning. The effects of takeoff weight and operating speed were also considered in the analysis. The multi-axial stress states in the bulk asphalt material and at the asphalt layer interface were analysed by means of the Mohr-Coulomb failure criteria in a normal-shear stress plane. The results emphasised the importance of tyre-pavement interaction and considering multi-axial stress state criterion for analysis of pavement shear failure. Aircraft braking or turning significantly increases the shear failure potential in the bulk material and at the asphalt layer interface due to the tangential stresses applied on pavement surface. The effects of aircraft weight and operating speed on pavement shear failure were limited compared to aircraft manoeuvring. The analysis of stress states in the asphalt layer sheds light on the requirement of shear strength and selection of laboratory tests for evaluation of shear failure potential at airfield asphalt pavements.
机译:本研究旨在使用多轴应力状态标准研究飞机地机动操作对机场沥青路面剪切失效潜力的影响。进行了数值建模研究以表征沥青层中的应力状态,使用先前研究已经验证的先进的三维(3-D)有限元(FE)模型。复杂的轮胎路面相互作用具有在垂直和切线方向上的轮胎路面接触应力的不均匀分布。采用飞机地面机动引起的不同轮胎滚动条件,包括自由轧制,全动制动和转动。在分析中也考虑了起飞重量和运行速度的影响。通过普通剪切应力平面中的MOHR-COULOMB破坏标准分析散装沥青材料中的多轴应力状态和沥青层界面。结果强调了轮胎路面相互作用的重要性,并考虑了多轴应力状态标准,用于分析路面剪切失效。由于在路面表面上施加的切向应力,飞机制动或转弯显着提高了散装材料中的剪切失效电位和沥青层界面。与飞机操纵相比,飞机重量和运行速度对人行道剪切失效的影响。沥青层中应力状态分析揭示剪切强度要求及实验检验中的剪切失效潜力的选择。

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