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Laboratory Measurement of the Actual Tire-Pavement Contact Pressure Using a Static Test Device

机译:使用静态测试设备的实验室实际轮胎-路面接触压力测量

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It is well-known that the tire-pavement contact pressure (TPCP) is hardly circular or uniformly distributed as often assumed. In this study, using a simple but effective static test set-up, numerous actual TPCPs between a loaded wheel-tire and the surface of an asphalt-mix slab were measured in the laboratory. Various TPCP loading conditions were investigated, including varying the tire inflation pressures, varying the load levels, and using different tire types, different tire tread patterns, and tire ages. Analysis of the results indicated that a linear proportional relationship existed between the following variables: (a) Tire inflation pressure and TPCP, (b) load level and the effective tire-pavement contact area, and (c) load level and TPCP. At a fixed constant tire inflation pressure, an increment in the load level significantly impacted the tire edges compared to the middle zone, and at a constant wheel loading, an increase in the tire inflation pressure will result in possibly a 1.5 times increase in the TPCP. This is detrimental to pavements and is undesirable. Furthermore, the TPCP under new tires was observed to be closer to being uniformly distributed than that under the old tires. In other words, in terms of distresses, if all other factors are equal, an old tire will likely cause more damage to an asphalt pavement than a new tire.
机译:众所周知,轮胎-路面接触压力(TPCP)几乎不像通常那样呈圆形或均匀分布。在这项研究中,使用简单但有效的静态测试设置,在实验室中测量了负载轮胎和沥青混合料板表面之间的许多实际TPCP。研究了各种TPCP加载条件,包括改变轮胎充气压力,改变负载水平以及使用不同的轮胎类型,不同的轮胎胎面花纹和轮胎年龄。结果分析表明,以下变量之间存在线性比例关系:(a)轮胎充气压力和TPCP,(b)载荷水平和有效的轮胎-路面接触面积,以及(c)载荷水平和TPCP。在固定的恒定轮胎充气压力下,与中间区域相比,负荷水平的增加会显着影响轮胎边缘;在恒定的车轮负载下,轮胎充气压力的增加将导致TPCP升高1.5倍。这对人行道是有害的并且是不希望的。此外,观察到新轮胎下的TPCP比旧轮胎下的TPCP更接近均匀分布。换句话说,在遇险方面,如果所有其他因素都相同,则旧轮胎可能比新轮胎对沥青路面造成的损坏更大。

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