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Relative Pavement Performance for Dual and Wide-Based Tire Assemblies Using a Finite Element Method

机译:使用有限元方法的双基础轮胎组件和相对基础轮胎组件的相对路面性能

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There is a need to assess the realistic tire contact pressure created by a tire in contact with a pavement. The contact pressure is a function of tire type, axle loading, and tire inflation pressure (TiP). The research carried out considered dual tire and wide-based tire assemblies across a range of axle loading and TiP. These contact pressures were incorporated into a finite element package (CAPA-3D) and modelled on a simple pavement structure. The strains from this modelling were sorted to produce key strains associated with the mechanisms of surface distress, near surface distress, deep asphalt distress, and the subgrade. The main distress mechanisms were top down cracking, asphalt cracking/rutting, bottom-up fatigue cracking, and subgrade rutting. This gave a method to fairly compare the dual and wide-based tire assemblies with the same axle loading and TiP. The analysis gave interesting results for the different distress mechanisms of the pavement. The wide-based tire gives consistently higher shear strains for all the areas of distress investigated. There is great variation in surface and near surface shear strains due to the different combinations of axle loading and TiP. It is clear that the wide-based tire is a more damaging tire for all combinations of TiP and axle loading. It is also apparent that how these factors interact has a great influence on the damaging potential of a tire.
机译:需要评估由与路面接触的轮胎产生的实际轮胎接触压力。接触压力是轮胎类型,车轴负载和轮胎充气压力(TiP)的函数。该研究在各种轴负载和TiP范围内进行了考虑的双轮胎和宽基础轮胎组件。这些接触压力被合并到有限元程序包(CAPA-3D)中,并在简单的路面结构上建模。通过此模型对菌株进行分类,以产生与表面应力,近表面应力,深层沥青应力和路基机理相关的关键应变。主要的困扰机制是自上而下的开裂,沥青的开裂/车辙,自下而上的疲劳开裂和路基的车辙。这提供了一种方法,可以比较具有相同轴载荷和TiP的双轮胎和宽轮胎组件。该分析对人行道的不同遇难机理给出了有趣的结果。宽基轮胎在所研究的所有遇险区域中始终提供较高的剪切应变。由于轴载荷和TiP的不同组合,表面和近表面剪切应变有很大的差异。显然,对于TiP和车轴负载的所有组合而言,宽基轮胎是更具破坏性的轮胎。同样显而易见的是,这些因素如何相互作用对轮胎的损坏潜力有很大影响。

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