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Use of the ASTM Standard Reference Test Tire as a Benchmark for On-Board Tire/Pavement Noise Measurement

机译:使用ASTM标准参考测试轮胎作为板载轮胎/路面噪声测量的基准

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There is a growing interest in using a standard reference tire for both assessing changes in test track pavement over time and rank ordering of the performance of different highway pavements. Because of longer-term availability, the ASTM Standard Reference Test Tire (SRTT) is the primary candidate for these applications. Issues of concern for the SRTT include tire-to-tire variation, the relation of the SRTT to other tires currently in use, and the "break-in" period required for stable test tires. To address tire-to-tire variability, seven SRTT's were tested on variety of asphalt concrete (AC) and Portland cement concrete (PCC) surfaces on two occasions. These included five new tires and two that had been in use for some time. Two of the new tires were re-tested with increasing use to examine any break-in period effect. For comparison to other tires currently in use, on-board sound intensity (OBSI) and controlled pass-by measurements were conducted with the SRTT and compared to pass-by levels measured for light vehicles operating on actual highways. To further evaluate the SRTT for use as a reference tire in OBSI measurements, its sensitivity to variations in temperature, tire inflation pressure, test vehicle type, perturbations in test speed, and load were also measured. Based on the evaluations performed, the SRTT appears to be well suited to be used as long-term reference tire for tracking pavement changes and comparing different roadway surfaces.
机译:有一个在使用标准参考轮胎随着时间的推移和不同路面公路的性能等级排序在测试赛道路面既评估的变化越来越大的兴趣。因为长期可用性的,所述ASTM标准试验轮胎(SRTT)是这些应用的主要候选者。对于SRTT关注的问题包括轮胎与轮胎的变化时,SRTT到其他轮胎目前在使用的关系,以及稳定的测试轮胎所需的“磨合”期。以解决轮胎与轮胎的变化,七SRTT的是对各种沥青混凝土(AC)和波特兰水泥混凝土(PCC)表面上的两个场合的测试。这些措施包括五个新轮胎,另两种已经在使用了一段时间。新轮胎的两个人随着使用来检查任何磨合期的效果重新进行测试。对于目前使用相比于其它轮胎,车载声音强度(OBSI)和受控传递通过测量与SRTT进行并与传递由用于实际操作的公路轻型车辆测量的水平。为了进一步评估SRTT用作OBSI测量的参考轮胎,其在温度变化,轮胎充气压力,测试车辆类型,在测试速度扰动,以及负载灵敏度也测量。基于所述评估进行时,SRTT似乎非常适合于被用作长期参考轮胎用于跟踪路面变化和比较不同的道路表面。

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