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首页> 外文期刊>Transportation Research Record >Quantification of Pavement Damage Caused by Dual and Wide-Base Tires
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Quantification of Pavement Damage Caused by Dual and Wide-Base Tires

机译:双基胎和宽基胎引起的路面损坏的量化

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A study conducted in 2001 on the heavily instrumented Virginia Smart Road measured pavement responses to a new generation of single wide-base tire (445/50R22.S) and to dual tires (275/80R22.5). The new single wide-base tire has a wider tread and a greater load-carrying capacity than conventional wide-base tires. The potential fatigue damage resulting from different tire configurations was evaluated. After successful field testing, a finite element (FE) parametric study was conducted to investigate different failure mechanisms that were not evaluated in the field. In this study, dual tires and two new generations of wide-base tires (445/50R22.5 and 455/55R22.5) were evaluated. The main difference between the two generations of wide-base tires is that the 455/55R22.5 is wider than the 445/50R22.5; hence, it further reduces the contact stress at the pavement surface under the same nominal tire pressure. In the developed FE models, geometry and dimensions were selected to simulate accurately the axle configurations typically used in North America; actual tire tread sizes and applicable contact pressure for each tread were considered; laboratory-measured pavement material properties were incorporated; and models were calibrated and properly validated against stress and strain measurements obtained from the experimental program. Four failure mechanisms were considered: fatigue cracking, primary rutting, secondary rutting, and top-down cracking. Results indicated that the new generations of wide-base tire would cause the same or relatively greater pavement damage than conventional dual tires. Because overall truck weight is reduced by approximately 450 kg when wide-base tires are used, it is reasonable to implement the load limits currently applied to the dual-tire assembly on the 455/55R22.5 wide-base tire.
机译:2001年,在配备有大量仪器的Virginia Smart Road上进行的一项研究测量了路面对新一代单宽基轮胎(445 / 50R22.S)和双轮胎(275 / 80R22.5)的响应。与传统的宽基轮胎相比,新型单宽基轮胎具有更宽的胎面和更大的承载能力。评估了由不同轮胎配置导致的潜在疲劳损伤。在成功进行现场测试之后,进行了有限元(FE)参数研究,以研究未在现场进行评估的不同失效机制。在这项研究中,对双轮胎和两个新一代的宽基轮胎(445 / 50R22.5和455 / 55R22.5)进行了评估。两代宽基轮胎之间的主要区别在于455 / 55R22.5比445 / 50R22.5宽;因此,在相同的标称轮胎压力下,它进一步减小了路面上的接触应力。在已开发的有限元模型中,选择了几何形状和尺寸以精确模拟北美通常使用的车轴配置;考虑了实际轮胎胎面尺寸和每个胎面的适用接触压力;结合了实验室测量的路面材料性能;并根据从实验程序获得的应力和应变测量值对模型进行了校准和正确验证。考虑了四个失效机制:疲劳裂纹,一次车辙,二次车辙和自上而下的裂纹。结果表明,与传统的双轮胎相比,新一代的宽基轮胎会造成相同或相对更大的路面损坏。由于使用宽底轮胎时卡车的总重量减少了约450公斤,因此在455 / 55R22.5宽底轮胎上实施当前应用于双轮胎组件的载荷限制是合理的。

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